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SCC Inc. Installatin Instructins Document No. TS-1100 April 4, 2018 TS Series TS… Tiuchscreen Kits fir use with LMV3..., LMV5... and RWF… Cintrils Tiuchscreen Plate Kit Descriptin TS… series touchscreen kits provide a human machine interface (HMI) when used with a Siemens LMV3... or LMV5... linkageless control. Each kit provides boiler burner data collecton and trending for a hydronic or steam boiler. An optonal RW… control for load or water level modulaton easily interfaces with a TS… series touchscreen kit. Each TS… touchscreen kit includes a 6" or 10" touchscreen along with a plate kit to be mounted inside a control panel (by others). A PLC frst-out annunciator opton is available for additonal analog, digital, and temperature inputs. Wlexible communicaton interface optons to the building management system (BMS) provide streamlined data collecton and monitoring. SCC Inc.

TS… Tiuchscreen Kits fir use with LMV3, LMV5 and RWF… Cintrils Installation... · TS Series Installaton Instructons Document No. TS-1100 Cimpatble Cintrils and cccessiries Controls

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Page 1: TS… Tiuchscreen Kits fir use with LMV3, LMV5 and RWF… Cintrils Installation... · TS Series Installaton Instructons Document No. TS-1100 Cimpatble Cintrils and cccessiries Controls

SCC Inc. Installatin InstructinsDocument No. TS-1100

April 4, 2018

TS SeriesTS… Tiuchscreen Kits fir use with LMV3..., LMV5... and RWF… Cintrils

Tiuchscreen Plate Kit

Descriptin TS… series touchscreen kits provide a human machine interface (HMI) when used with a Siemens LMV3... or LMV5... linkageless control. Each kit provides boiler burner data collecton and trending for a hydronic or steam boiler. An optonal RW… control for load or water level modulaton easily interfaces with a TS… series touchscreen kit.

Each TS… touchscreen kit includes a 6" or 10" touchscreen along with a plate kit to be mounted inside a control panel (by others).

A PLC frst-out annunciator opton is available for additonal analog, digital, and temperature inputs.

Wlexible communicaton interface optons to the building management system (BMS) provide streamlined data collecton and monitoring.

SCC Inc.

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Installaton Instructons TS SeriesDocument No. TS-1100

Table if Cintents

Compatble Controls and Accessories.........................................................................................5Controls..................................................................................................................................5Accessories.............................................................................................................................5

Physical Connectons...................................................................................................................6External Devices..........................................................................................................................7Connecton to LMV3...............................................................................................................7Connecton to LMV5...............................................................................................................8

Logging In....................................................................................................................................9Actvaton..................................................................................................................................11Confguraton.............................................................................................................................12General Setup Optons.........................................................................................................14Changing Language..............................................................................................................17Changing Boiler/Burner Graphic..........................................................................................17Screen Setngs.....................................................................................................................18Saved Images........................................................................................................................19Boiler IP Addresses...............................................................................................................20Default IP Addresses.............................................................................................................21Expanded Annunciator IP Address.......................................................................................22BMS Network Ethernet Port.................................................................................................23Expanded Annunciator Base Setup......................................................................................24Digital Inputs....................................................................................................................25Additonal Digital Input Optons......................................................................................25Monitored Digital Outputs..............................................................................................26

Expanded Annunciator Optons Setup.................................................................................29Analog Inputs (V&mA).....................................................................................................30Monitored Analog Outputs.............................................................................................31Draft Control (V&mA)......................................................................................................32Additonal Draft Optons..................................................................................................32 TD Inputs ( TD)..............................................................................................................33Economizer ( TD)............................................................................................................34

Email.....................................................................................................................................35Text Messages..................................................................................................................36Other Optons..................................................................................................................37

Backup/ estore....................................................................................................................38System Setngs................................................................................................................38Email Setngs..................................................................................................................39Expanded Annunciator Setngs......................................................................................39 estore Wactory Defaults..................................................................................................39

Boiler Overview.........................................................................................................................40Curve Data............................................................................................................................41Worcing Screen Saver............................................................................................................43

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TS Series Installaton InstructonsDocument No. TS-1100

emote Control.........................................................................................................................44Boiler Available Status..........................................................................................................46Hand-Off-Auto Wlowchart (Serial Connecton).....................................................................48

Alarms.......................................................................................................................................49Inputs and Outputs...................................................................................................................54Wuel Statstcs.............................................................................................................................56LMV Controller Data..................................................................................................................58Draft Control..............................................................................................................................60Overview..............................................................................................................................61Draft Control Switch.............................................................................................................62Draft Control Sequence........................................................................................................63Draft Status Messages..........................................................................................................63Draft Alarms..........................................................................................................................64Draft System Setup...............................................................................................................65Sensor Locaton...............................................................................................................65Sensor Confguraton.......................................................................................................65LMV3… equired Parameters..........................................................................................66LMV5… equired Parameters..........................................................................................67Checking Draft Damper Travel.........................................................................................68Setng Igniton Positon...................................................................................................69

Economizer................................................................................................................................70Expanded Annunciator..............................................................................................................71Load Controller.....................................................................................................................72

Weedwater.................................................................................................................................74Boiler Circulatng Pump.............................................................................................................75VSD............................................................................................................................................77Yaskawa Setup......................................................................................................................78

Analog Inputs............................................................................................................................80Setngs......................................................................................................................................81Datalog/Trends..........................................................................................................................83Trends...................................................................................................................................84Datalog.................................................................................................................................85

egister Lookup.........................................................................................................................86Using the Clipboard..............................................................................................................87

Using External USB Drive..........................................................................................................88Saving Screen Captures.............................................................................................................89Changing Passwords..................................................................................................................91Gateway/BMS............................................................................................................................93Gateway/BMS – Mapping.........................................................................................................94LMV Phases.............................................................................................................................115LMV5 Lockout/Error Codes.....................................................................................................116LMV3 Error Codes...................................................................................................................119Sample Monitored Value Applicatons....................................................................................122

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Installaton Instructons TS SeriesDocument No. TS-1100

Soft Limits...........................................................................................................................122Procedure......................................................................................................................122Riring............................................................................................................................123

Time-Based Actons............................................................................................................124Procedure......................................................................................................................124Riring............................................................................................................................125

Pump Control.....................................................................................................................126Procedure......................................................................................................................126Riring............................................................................................................................127

Creatng User Value Scripts.....................................................................................................128Purpose..............................................................................................................................128Wormat................................................................................................................................128Syntax Summary.................................................................................................................129Example Scripts..................................................................................................................135

Adding ADP- TC3 eal-Time Clock Module............................................................................136Installaton..........................................................................................................................136Actvatng............................................................................................................................137

LMV5 Confguraton for Modbus............................................................................................138LMV3 Confguraton for Modbus............................................................................................139 RW55 Confguraton for Modbus..........................................................................................140 RW40 Confguraton for Modbus..........................................................................................141 RW10 Confguraton for Modbus..........................................................................................142Yaskawa VSD Confguraton for Modbus.................................................................................143Supported Models..............................................................................................................143Procedure...........................................................................................................................143

Danfoss VSD Confguraton for Modbus..................................................................................144Supported Models..............................................................................................................144Procedure...........................................................................................................................144

Allen-Bradley VSD Confguraton for Modbus.........................................................................145Supported Models..............................................................................................................145Procedure...........................................................................................................................145

ABB VSD Confguraton for Modbus........................................................................................146Supported Models..............................................................................................................146Procedure...........................................................................................................................146

Loading Software Updates......................................................................................................147Preparing Media.................................................................................................................147Loading Wiles to Touchscreen.............................................................................................149Loading Wiles to PLC............................................................................................................151

emote Monitoring via Android or iOS Devices.....................................................................152

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TS Series Installaton InstructonsDocument No. TS-1100

Cimpatble Cintrils and cccessiries

Controls

• LMV5... with internal load controller• LMV5... with RW40 or RW55 external load controller• LMV3... with RW10, RW40 or RW55 external load controller

Accessories

• Weedwater control via RW40 or RW55 (steam boilers only)• Connecton to certain variable speed drives (combuston air fan)• SCC Inc. Expanded Annunciaton system

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Installaton Instructons TS SeriesDocument No. TS-1100

Physical Cinnectins

The touchscreen communicates with the connected equipment via Modbus. Use the supplied terminal connectons provided with the plate kit to wire the touchscreen, plate kit, and controllers. Connect any S-485 devices in a daisy-chain with terminaton at the end of the chain (typically a 120-Ohm resistor). The following addresses are required for the connected equipment:

Table 1: Required cddressing if Cintrillers

Device Requiredcddress

Cimmunicatin Type

LMV3x (via OCI412.10 or OCI413.20) 1 Modbus TU ( S-485)LMV5x 1 Modbus TU ( S-232) RW10 (for load control) 2 Modbus TU ( S-485) RW40 (for load control) 2 Modbus TU ( S-485) RW55 (for load control) 2 Modbus TU ( S-485) RW40 (for feedwater) 3 Modbus TU ( S-485) RW55 (for feedwater) 3 Modbus TU ( S-485)VSD (Danfoss WC Series) 11 Modbus TU ( S-485)VSD (Allen-Bradley PowerWlex 40/400) 12 Modbus TU ( S-485)VSD (ABB ACH/ACS550) 13 Modbus TU ( S-485)VSD (Yaskawa A1000/V1000) 31 Modbus TU ( S-485)Expanded Annunciator N/A Modbus TCP/IP (Ethernet)

Communicaton via Modbus must be set with the following values:• 19200 baud• 8 stop bits• 1 data bit• no parity

See the appendixes for Modbus confguraton details for each device.

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TS Series Installaton InstructonsDocument No. TS-1100

External Devices

Connecton to LMV3...

External devices such as draft controls or combuston air dampers must be placed in the low gaspressure switch and/or high oil pressure switch limit for remote control of the burner to be possible. This is because the limit string does not lose voltage upon a remote disable.

Connect the signal to actvate the external device to terminal X6-03.3.

Wor gas fuel trains, connect the provenlimits in series with the low gaspressure switch to terminal X5-01.2.

Wor oil fuel trains, connect the provenlimits in series with the high oil pressureswitch to terminal X5-02.2. Wor thisfeature to work, parameter 277 or 377(High Oil PS) must be set to 1 (high oilpressure switch).

If the unit uses both fuels, wire relays toX5-03.2 (fuel 0 selected) and X5-03.3(fuel 1 selected). These relays arenecessary to prevent back feedingvoltage and to bypass other gas optonsrequired to connect to X5-02.2 such ashigh gas pressure, POC or valve proving(shown as "Gas Opton").

Set parameter 214 (Max Time Start elease) to a value long enough to ensure that the external device will prove open at every start. This parameter holds the LMV3... in phase 22 untl terminal X5-01.2 or X5-02.2 has proven.

Note that using this method will result in lockout code 20 (low gas pressure switch) or 21 (high oil pressure switch) if the external device fails to prove.

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Installaton Instructons TS SeriesDocument No. TS-1100

External Devices (cintnued)

Connecton to LMV5...

External devices such as draft controls or combuston air dampers must be placed in the start release circuit for gas and/or oil for remote control of the burner to be possible. This is because the limit string does not lose voltage upon a remote disable.

Connect the signal to actvate the external device to terminal X4-03.3.

Connect line voltage through the provenlimits to terminal X7-03.2 (gas) and/orterminal X6-01.1 (oil). Note that theseterminals can both be connectedsimultaneously.

Set the start release tme to a value longenough to ensure that the externaldevice will prove open at every start.This parameter holds the LMV5... inphase 21 untl the appropriate startrelease has proven.

Set the following parameters:• Params & Display > BurnerControl > Confguraton > ConfgIn/Output > Start eleaseGas = StartRelGas

• Params & Display > BurnerControl > Confguraton > ConfgIn/Output > Start eleaseOil = actvated

• Params & Display > BurnerControl > Times > TimesGeneral > MaxTmeStart el = <alliwable tme fir external limits ti priven

Note that using this method will result in lockout code 47 (no start release gas) or lockout code 36 (no start release oil) if the external device fails to prove.

Page 8 SCC Inc.

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TS Series Installaton InstructonsDocument No. TS-1100

Ligging In

Rhen the touchscreen is powered up, the OVE VIER screen will appear.

Press McIN MENU in the lower left corner to go to the MAIN MENU screen.

Wrom here, different screens can be accessed depending on the access level. There are three access levels available:

• USE : Allows access to viewing data, changing setpoints, and manual operaton. No username or password required.

• TECH: Same access as USE level as well as access to changing operatonal parameters. Username and password required. The username is TECH. The default password is 9876.

• SETUP: Same access as TECH level as well as access to programming touchscreen confguraton setngs. Username and password required. The username is SETUP. The default password is STA T.

The ACTIVATION screen may appear instead of the OVE VIER screen following a software update.

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Installaton Instructons TS SeriesDocument No. TS-1100

Ligging In (cintnued)

In order to log in at the desired access level, press LOG IN. The LOGIN screen will appear.

Tap the area next to NAME and a keypad will appear.

Use the keypad to enter the username for the desired access level. Rhen fnished, press ENTER.

Next, tap the area next to PASSRO D and the same keypad will appear again. Enter the password and then press ENTER.

Rhen both the username and password have been entered, press cPPLY. If successful, the CU ENT USE will change from USE to TECH or SETUP depending on the username and password that were entered. Touch CLOSE to leave the login screen.

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TS Series Installaton InstructonsDocument No. TS-1100

cctvatin

Software upgrades may require that an actvaton code is entered following the download. If the touchscreen is started without actvaton, the actvaton screen will appear. The touchscreen will automatcally proceed to the OPTIONS screen for confguraton once actvated (see Configuraton secton for additonal detail).

If the Expanded Annunciator is not actvated, the actvaton screen will automatcally appear when atemptng to navigate to any Expanded Annunciator screen.

Contact SCC Inc. technical support with the code listed and an actvaton key will be provided. Once it is entered, press cPPLY.

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin

Access level: SETUP

The touchscreen needs to be confgured for the connected equipment. Once logged in at the SETUP level, the LOG IN buton will now read LOG OUT.

Press SETTINGS to display the SETTINGS screen, then press OPTIONS to display the OPTIONS screen.

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TS Series Installaton InstructonsDocument No. TS-1100

Cinfguratin (cintnued)

On the OPTIONS screen, the touchscreen is confgured for the components it is connected to.

UNCONFIGURED LMV5… WITHOUT EXPcNDED cNNUNCIcTION

LMV3… WITH RWF55 LOcD CONTROLLER LMV5… WITH EXPcNDED cNNUNCIcTION

Different optons will appear on the screen depending upon the controller selected.

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin (cintnued)

General Setup Optons

CONTROLS – Select which Siemens controller(s) are connected to the touchscreen. Note that if an RWF… conturolleur is mognted on the boileur our bgurneur that it may actgally be a feedwateur conturolleur. Do not select the RWF… as paurt of the load conturolleur combinaton if it is a feedwateur conturolleur.

• LMV5x Only: Select this opton to connect a LMV5... and its internal load controller.• LMV5x/RWF40: Select this opton to connect a LMV5... with an RW40 as an external load controller.

• LMV5x/RWF55: Select this opton to connect a LMV5... with an RW55 as an external load controller.

• LMV3x Only: Select this opton to connect a LMV3... with no load controller.• LMV3x/RWF10: Select this opton to connect a LMV3... with an RW10 as an external load controller.

• LMV3x/RWF40: Select this opton to connect a LMV3... with an RW40 as an external load controller.

• LMV3x/RWF55: Select this opton to connect a LMV3... with an RW55 as an external load controller.

CONTROLS (when LMV3x selected and sifware versiin is V3.30 ir ilder) – Select the actuators being used on an LMV3x controller.

• Nine• cir Only: Choose this opton when only an air actuator is being used.• Fuel Only: Choose this opton when only a fuel actuator is being used.• cir & Fuel: Choose this opton when both air and fuel actuators are being used.

TYPE (frst selectin) – Select the type of boiler that the touchscreen is connected to. This is confgured automatcally to match the local A L when the control is an LMV5....

• Hydrinic: Select this opton for a hot water boiler.• Steam: Select this opton for a steam boiler.

TYPE (secind selectin) – Select the temperature units.• °C: Select this opton to display temperatures in degrees Celsius.• °F: Select this opton to display temperatures in degrees Wahrenheit.

FDWcTER – Select whether a feedwater system with a Siemens controller is connected.• Disabled• RWF40: Select this opton if the feedwater is controlled by an RW40.• RWF55: Select this opton if the feedwater is controlled by an RW55.

PUMP – Select whether the boiler circulaton pump should be controlled by the Expanded Annunciator.

• Disabled• Enabled

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TS Series Installaton InstructonsDocument No. TS-1100

Cinfguratin (cintnued)

VSD – Select whether a compatble VSD system is installed on the combuston air fan. The VSD mgst also be connected via Modbgs.

• Disabled• Yaskawa: Select this opton if connected VSD is manufactured by Yaskawa. Tested models are A1000 and V1000.

• Danfiss: Select this opton if connected VSD is manufactured by Danfoss. Tested models are the WC Series.

• PiwerFlex: Select this opton if connected VSD is manufactured by Allen-Bradley. Tested models are the PowerWlex 40 and PowerWlex 400.

• cBB: Select this opton if connected VSD is manufactured by ABB. Tested models are the ACS550 and ACH550.

LINK RWF – Select whether the Modbus commands to an LMV... are redirected to the corresponding RW… load controller. To change touch for > 1s (hold down).

• Ni• Yes

LMV3 EC – Select how LMV3… error codes are represented on the screen and via Modbus. To change touch for > 1s (hold down).

• LMV3 Cides Directly: LMV3… codes are not manipulated.• LMV5 w/Embedded LMV3: LMV3... codes are converted to corresponding LMV5... codes(when possible, otherwise code '43' is used) and the original LMV3... codes are transmited as the diagnostc code.

• LMV5 w/Diag Cide 0: Same as above, except '0' is transmited as the diagnostc code.

GcS/OIL (FUEL0/FUEL1) – Sets the tag name for the fuel (up to six characters) and selects whether the fuel should represent a blue or an orange fame.

Ec – Select whether the Expanded Annunciator opton is present.• Disabled• Enabled

EXTRc RWF – Select whether additonal RW55 controls are connected serially via S-485 to the Expanded Annunciator.

• Nine• 1x RWF55: Use Modbus address 1, 19200 baud, 8 stop bits, 1 data bit, no parity.• 2x RWF55: Use Modbus addresses 1 & 2, 19200 baud, 8 stop bits, 1 data bit, no parity.

RTD – Select whether the TD input opton is enabled in the Expanded Annunciator.• Disabled• Enabled

cNcLOG – Select whether the analog input opton is enabled in the Expanded Annunciator.• Disabled• Enabled

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin (cintnued)

ECONOMIZER – Select whether the economizer opton is enabled in the Expanded Annunciator.• Disabled • Enabled: Uses economizer TD input opton for temperature sensors. The LMV52 stack temperature sensor may be used for one of the inputs.

• Use RTD: Same as above, but uses the regular TD input opton for the economizer. Setng this opton will automatcally set the RTD opton to Enabled. Use this setni when the only optons fted to the Epanded Anngnciatour aure the analoi inpgt and economizeur optons as the conturolleur will urecoinize the economizeur haurdwaure as RTD haurdwaure in this paurtcglaur configuraton.

DRcFT – Select whether the draft control opton is enabled in the Expanded Annunciator.• Disabled • Enabled: Uses three Expanded Annunciator digital inputs for status, one TD input for resistance feedback and one analog input for the draft sensor. Setng this opton will automatcally set the cNcLOG and RTD optons to Enabled.

O2 – Select whether the O2 and efciency are calculated using the dry or wet method.• Dry: The dry basis O2 trim data (efciency, O2) are calculated from the wet basis O2 trim data reported by the LMV52. CO2 and excess air are also calculated.

• Wet: The wet basis O2 trim data (efciency, O2) is supplied by the LMV52 directly and CO2 and excess air are not calculated.

TcG – Sets the tag name for the boiler (up to six characters).

LOCK FOR CONTROL BY LEcD/LcG – Set automatcally by the Lead/Lag Master to allow remote confguraton when connected. This may be overridden when no longer connected to a Lead/Lag Master. To change touch for > 1s (hold down).

• Ni• Yes

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TS Series Installaton InstructonsDocument No. TS-1100

Cinfguratin (cintnued)

Changing Language

Press SPcNISH/ESPcÑOL to change the language from English to Spanish or ENGLISH/INGLÉS tochange the language from Spanish to English.

Changing Boiler/Burner Graphic

Press COLOR/SHcPE to pull up the current image of the boiler and burner. This sets the visual representaton for the boiler vessel and burner on the OVE VIER screen.

Touch the boiler vessel porton of the image to scroll through the available choices boiler choices. Touch the burner porton of the image to scroll through the available burner choices. Rhen complete press EXIT to confrm changes.

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin (cintnued)

Screen Setngs

Press SCREEN SETTINGS to adjust the touchscreen setngs.

SCREEN ScVE TIME – Select between off (no screen saver), 1m, 2m, 5m, 10m, 30m, or 60m.

SCREEN ScVE TYPE – Selects the screen saver type.• Status: Shows the process variable, setpoint, and current status in a large font.

• •

• Blank: Screen saver is a blank screen.

cUTO LOG OUT – Sets how long a user remains logged in. Select between 5m, 10m, 30m, 60m, or 120m.

BRIGHTNESS – Sets the touchscreen brightness.

TIME – Sets the touchscreen tme. +1HR and -1HR butons are available for quick changes. Note that if the selected controller is an LMV5..., the tme will automatcally be set from the LMV5....

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TS Series Installaton InstructonsDocument No. TS-1100

Cinfguratin (cintnued)

Saved Images

Press ScVED IMcGES to view screen captures stored on the USB drive.

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin (cintnued)

Boiler IP Addresses

Press BOILER cDDRESS to adjust the boiler address setngs.

The boiler address is used to give a unique identfer to each boiler. This must be set if the touchscreen is connected to a Lead/Lag Master or if multple touchscreen kits are connected on the same Ethernet network.

Press OTHER when a user-specifc IP address is desired in standalone applicatons.

Press cPPLY to confrm the changes.

SITE NcME – Sets the site name, which is used in the subject of email sent by the touchscreen (up to 20 characters).

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TS Series Installaton InstructonsDocument No. TS-1100

Cinfguratin (cintnued)

Press CURRENT cDDRESS IS... to see the current IP address.

Default IP Addresses

Biiler 1: 192.168.1.60Biiler 2: 192.168.1.61Biiler 3: 192.168.1.62Biiler 4: 192.168.1.63Biiler 5: 192.168.1.64Biiler 6: 192.168.1.65Biiler 7: 192.168.1.66Biiler 8: 192.168.1.67Subnet: 255.255.255.0Default Gateway: 192.168.1.1

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Installaton Instructons TS SeriesDocument No. TS-1100

Cinfguratin (cintnued)

Expanded Annunciator IP Address

The Expanded Annunciator comes with a default IP address 192.168.1.59. To change this, press EXPcNDED cNNUNCIcTOR. If moure than one Epanded Anngnciatour is connected in the same netwourk, all of the IP adduresses mgst be chanied to gniqge adduresses to avoid dgplicaton.

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Cinfguratin (cintnued)

To change the Expanded Annunciator IP address a temporary serial connecton between the touchscreen and Expanded Annunciator controller must be established. To make the serial connecton, use a standard Ethernet cable and connect it between 'COM1' on the touchscreen (disconnect existng cable) and ' J45 Serial 1' on the Expanded Annunciator. Once this connecton is made, press CONNECT SERIcL LINK to display the setngs screen.

RESET TO DEFcULT – Sets the IP address back to 192.168.1.59. Once this is pressed wait for the Expanded Annunciator to load the change and reboot to see the new setngs.

McTCH TO BOILER – Sets the IP address 10 below the boiler IP address. Wor example, if the IP address of the boiler is 192.168.1.60, the Expanded Annunciator IP address will be 192.168.1.50. This is required when multple Expanded Annunciator units are connected in the same network.

Once the desired new IP address has been entered, press cPPLY NEW to send the changes to the Expanded Annunciator. The unit will reboot with the new IP address. emove the temporaryserial connecton and press DISCONNECT SERIcL LINK. The new IP address should be shown and communicaton with the Expanded Annunciator should be established.

BMS Network Ethernet Port

The 10" touchscreens have a second Ethernet port that can be addressed by pressing BMS. This port allows the BMS to connect with Ethernet without having to change the IP addresses of other networked devices. The default BMS IP address is 192.168.2.60.

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Cinfguratin (cintnued)

Expanded Annunciator Base Setup

Press Ec BcSE CONFIG to confgure base Expanded Annunciator setngs. Use the arrows to scroll between the confguraton pages.

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Cinfguratin (cintnued)

Diiital Inpgts

LIMIT 1-13 – Sets the user-confgured name for each limit. The name may be up to 20 characters long. Press X for > 1s (hold down) to clear the name and reset input confguraton. Note that in the scureen shown limits 11-13 aure locked ogt since they aure beini ureseurved four gse with the duraf conturol opton.

cLcRM – Select how each individual limit will alarm. Alarms are subject to a short (fve-second) delay to ensure the alarm conditon is present.

• Nine: Rill not alarm regardless of the positon the input is in.• Is Off: Rill alarm when the input is deactvated.• Is On: Rill alarm when the input is actvated.• FO Off: Wor frst-out applicatons, will alarm when the input is deactvated only if the previous input is actvated (not available for limit 1).

RESET – Select the reset type for the alarm. Manual reset alarms may be reset by pressing RESET Ec cLcRMS on the ALA MS page.

• cuti: Alarm will automatcally reset.• Manual: Alarm will require a manual reset.

Additonal Diiital Inpgt Opptons

Assigning the name 'Alarm eset PB' (case-sensitve) to any of the digital inputs will cause that input to act as a reset buton for the Expanded Annunciator. Use this opton when a hard-wired reset buton is preferred.

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Cinfguratin (cintnued)

Monitoured Diiital Opgtpgts

The monitored digital outputs can be confgured to take an acton based upon the value in any of the Modbus registers. Each monitored digital output can consider two conditons using a logical functon. To enable or disable the second conditon, touch the slider switch.

IF MODBUS cDDRESS – Sets the Modbus register index to monitor and the divider to apply to it. The name of the chosen address will then be displayed.

IS – Select the logic applied to the value. Can be <, <=, >, >=, = or a BIT comparison.

SETPOINT – Select the setpoint that the logic will be used to compare against. Wor bit comparisons, setpoint must be the specifc bit of the word (0-15) for the result to be accurate.

CONDITION – Select whether the conditon is normal or inverted. • CONDITION: Rill apply the result of the conditon.• INVERTED CONDITION: Rill apply the opposite of the result of the conditon.

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Cinfguratin (cintnued)

LOGIC – Select the logic applied between the conditons. • cND: Rill apply AND gate (and) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE WALSEWALSE T UE WALSET UE WALSE WALSET UE T UE T UE

• OR: Rill apply O gate (or) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE WALSEWALSE T UE T UET UE WALSE T UET UE T UE T UE

• NcND: Rill apply NAND gate (negatve and) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE T UEWALSE T UE T UET UE WALSE T UET UE T UE WALSE

• NOR: Rill apply NO gate (negatve or) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE T UEWALSE T UE WALSET UE WALSE WALSET UE T UE WALSE

• XOR: Rill apply XO gate (exclusive or) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE WALSEWALSE T UE T UET UE WALSE T UET UE T UE WALSE

• XNOR: Rill apply XNO gate (negatve exclusive or) logic.

CONDITION 1 CONDITION 2 RESULTWALSE WALSE T UEWALSE T UE WALSET UE WALSE WALSET UE T UE T UE

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Cinfguratin (cintnued)

cPPLY – Select whether any delay is applied to the output. • NO DELcY: Rill turn the output on or off immediately.• DELcY ON: Rill turn the output on only after the specifed delay.• DELcY OFF: Rill turn the output off only after the specifed delay.

(DELcY TIME) OF – Sets the delay setpoint in seconds.

OPTIONS – Select the additonal output optons. Latched outputs may be reset by pressing cLcRM RESET on the ALA MS page.

• LcTCH = NO, cLcRM = NO: Rill not latch the output or generate an alarm with the output.

• LcTCH = YES, cLcRM = NO: Rill latch the output but will not generate an alarm with theoutput.

• LcTCH = NO, cLcRM = YES: Rill not latch the output but will generate an alarm with theoutput.

• LcTCH = YES, cLcRM = YES: Rill latch the output and will generate an alarm with the output.

The current state of the logic is also displayed with true in green and false in red.

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Cinfguratin (cintnued)

Expanded Annunciator Optons Setup

Press Ec OPTION CONFIG to confgure optonal Expanded Annunciator setngs.

Press V&mc and RTD to switch between analog and TD inputs, and the arrows to scroll between the confguraton pages within the types.

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Cinfguratin (cintnued)

Analoi Inpgts (V&mA)

NcME – Sets the user-confgured name for each input. The name may be up to 20 characters long. Press RESET TcG for > 1s (hold down) to clear the name and reset input confguraton.

Once a name is entered, the input is actvated and the remaining confguraton informaton will appear. Note that Analog Input 4 is locked out since it is being reserved for use with the draft control opton.

UNIT – Sets the user-confgured unit tag. The name may be up to 4 characters long.

TYPE – Select between 0-10V, 2-10V, 0-20mA, or 4-20mA.

FILTER – Sets the flter tme used to average the incoming signal. This is useful when the signal isnot steady (such as a draft sensor).

MIN, McX – Sets the range of the input.

TOTcLS – Sets the totalizaton for the input. • Nine• Minute: Totalizaton is calculated by the minute.• Hiur: Totalizaton is calculated by the hour.

LOW, HIGH – Sets the alarm setpoints for the input. Rhen the input is below the low setpoint it generates a low alarm and when the input is above the high setpoint it generates a high alarm.

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Cinfguratin (cintnued)

cLcRM – Select the alarms generated by the input. Manual reset alarms may be reset by pressing RESET Ec cLcRMS on the ALA MS page.

• Nine• Liw Only: Only an auto reset low alarm is generated.• LiwMR: Only a manual reset low alarm is generated.• High Only: Only an auto reset high alarm is generated.• HighMR: Only a manual reset high alarm is generated.• Liw High: Both an auto reset low alarm and auto reset high alarm are generated.• LiwMR High: Both a manual reset low alarm and auto reset high alarm are generated.• Liw HighMR: Both an auto reset low alarm and manual reset high alarm are generated.• LiwMR HighMR: Both a manual reset low alarm and manual reset high alarm are generated.

Monitoured Analoi Opgtpgts

The monitored analog outputs can be confgured to take an acton based upon the value in any of the Modbus registers.

IF MODBUS cDDRESS – Sets the Modbus register index to monitor and the divider to apply to it. The name of the chosen address will then be displayed.

MIN, McX – Sets the scale for the analog output. If the actual value falls outside of the scaled range, the minimum or maximum value will be the output. Wor example, if address 12, 'LMV ACTUAL VALUE' is being monitored with a range of 0-150 (psi) and the actual is 160PSI, the output would be 100%. If it were 75PSI, the output would be 50%.

TOTcLS, LOW, HIGH, cLcRM – These optons are identcal to and confgured the same way as the analog input optons of the same names.

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Cinfguratin (cintnued)

Duraf Conturol (V&mA)

TYPE – Select between 0-10V, 2-10V, 0-20mA, or 4-20mA.

FILTER – Sets the flter tme used to average the incoming signal. This is useful when the signal isnot steady.

HYSTERESIS – Sets allowable discrepancy between the setpoint and draft sensor. Used to lower the duty cycle on the draft actuator.

SENSOR MIN, SENSOR McX – Sets the range of the input. The minimum may be a negatve number.

DRIVE MIN, DRIVE McX – Sets the limits of the damper in angular degrees.

PULSE ON, PULSE OFF – Sets the duraton of the on and off damper drive pulses.

POT MIN, POT McX – Sets the range of the feedback pot to scale from 0 to 90 degrees.

cUTO CcLIBRcTE – Manually actvates the potentometer calibraton. This can only be performed when the LMV is in phase 12 (idle). The damper is paced from open to closed and the potentometer readings are recorded. The potentometer will automatcally re-calibrate each end positon with every cycle of the damper.

Additonal Duraf Opptons

Assigning the name 'Draft Switch Auto' (case-sensitve) to any of the digital inputs will cause that input to replace the virtual OPEN-AUTO switch (actvaton = AUTO). Use this opton when a hard-wired switch is preferred.

Assigning the name 'Draft Weedback' (case-sensitve) to Analog Input 3 will cause that input to be used for draft damper feedback. Use this opton when an analog feedback signal (instead of resistve) is preferred. The feedback signal must represent 0-100% of the operatng range. Using this opton will also release TD 4 for general use (normally it is reserved for draft damper feedback when draft control is optoned).

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Cinfguratin (cintnued)

RTD Inpgts (RTD)

NcME – Sets the user-confgured name for each input. The name may be up to 20 characters long. Press RESET TcG for > 1s (hold down) to clear the name and reset input confguraton.

Once a name is entered, the input is actvated and the remaining confguraton informaton will appear. Note that TD Input 4 is locked out since it is being reserved for use with the draft control opton, although the low and high alarms can stll be set if desired.

TYPE – Select between Pt1000, Pt100, or LG-Ni1000. To change, touch for > 1s (hold down).

OFFSET – Sets the offset in degrees applied to the input. This may be used to compensate for errors introduced by long wire runs.

LOW, HIGH, cLcRM – These optons are identcal to and confgured the same way as the analoginput optons of the same names.

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Cinfguratin (cintnued)

conomizeur (RTD)

WcTER IN, WcTER OUT, STcCK IN, STcCK OUT (OFFSETS) – Sets the offset in degrees applied to the input. This may be used to compensate for errors introduced by long wire runs.

TYPE – Select between Pt1000, Pt100, or LG-Ni1000.

USE LMV FOR STcCK IN – Select whether the stack temperature in is from the LMV52 input instead of the TD input.

• Ni• Yes

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Cinfguratin (cintnued)

Email

Press EMcIL to confgure email setngs.

The touchscreen can be confgured to send email to up to six addresses. This requires that the touchscreen is connected to a network with Internet access. Emails are sent automatcally whenalarms occur and may be sent manually to send screen captures and other data from the touchscreen. To confgure an email address, press the ON/OFF buton to the left of the address line, then enter the address.

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Cinfguratin (cintnued)

TeEt Messaies

A template is provided to allow text messages to be sent via email. Press the phone icon on the right to bring up the template.

To check that the email addresses are valid and were entered correctly, press SEND TEST EMcIL.

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Optheur Opptons

Additonal email optons are available by pressing EMcIL SETUP for > 5s (hold down). This displays the EMAIL MANUAL screen.

A custom email message can be sent from this screen. Enter a subject and a message (100 characters or less). Press SEND EMcIL to send the message.

Press EMcIL SERVER SETTINGS to display the EMAIL SE VE screen. The default email server setngs can be changed if necessary. Press RESTORE SCC DEFcULTS to restore the server setngs to the factory defaults. Note that if using the default setngs, the return address cannotbe changed or the mail server will reject the message.

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Cinfguratin (cintnued)

Backup/ estore

Press BcCKUP to backup or restore setngs.

System setngs, email setngs or Expanded Annunciator setngs can all be saved to an external USB drive or internal SD card (10" only, selected from Backup Destnatin) for backup and migraton to other units. The data is saved in a fle (.csv or .txt) and can be edited using a standard text editor or spreadsheet applicaton. Wor the desired group, press ScVE to save the current setngs and press RESTORE to overwrite the current setngs. If a backup fle does not exist or invalid parameters are found, an error message will be displayed.

System Setnis

System setngs are the confguraton optons. This is the data found on the OPTIONS screen as well as some additonal system data such as color/shape and screen setngs.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT\TSKSETUP.CSV, xx is 6 for 6", 10 for 10"

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Cinfguratin (cintnued)

mail Setnis

Email setngs include the six confgurable email addresses.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT\EMAIL.TXT, xx is 6 for 6", 10 for 10"

Epanded Anngnciatour Setnis

Expanded Annunciator setngs include all confguraton data from the base and optons.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT\EASETUP.CSV, xx is 6 for 6", 10 for 10"

Restoure Factoury Defaglts

System setngs or Expanded Annunciator setngs can individually be restored to the factory defaults. This is without site confguraton (as the panel was shipped). Choose Default in the Backup Destnatin feld, then press RESTORE for the desired setngs group.

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Biiler Overview

Access level: USER

The boiler overview screen displays the real-tme data of the boiler. Wrom the MAIN MENU screen, press BOILER OVERVIEW. The BOILE OVE VIER screen will appear.

Only the parameters that are optoned and actve are shown. Any others are hidden from the display for clarity. Touching the area displaying the O2 trim data will display additonal data. The following parameters may be shown on the overview screen:

Phase: The phase of the boiler is always displayed in a horizontal bar at the top of the screen.PV: Displays the actual value of the boiler.SP: Displays the current setpoint of the boiler.Fuel In Use: Displays the current fuel being used (uses fuel tags).Firing Rate: Displays the fring rate of the boiler from 0-100%.Manual cctve: Displayed in red text if the boiler is in manual mode.cir, Fuel cctuatirs: Displays the positon of the air and/or fuel actuator.cux cctuatirs: Displays the positon of the auxiliary actuators if equipped (LMV5... only).VSD Output: Displays the speed of the VSD from 0-100%.Shell Temp: Displays the current boiler shell temperature.Startups: Displays the number of boiler startups on the selected fuel.Hiurs: Displays the number of hours run on the selected fuel.Flue Temp: Displays the current fue gas temperature (LMV52 only).cmbient: Displays the current ambient temperature (LMV52 only).Efficiency: Displays the current combuston efciency (LMV52 only).O2: Displays the current O2 percentage in the stack (LMV52 only).Excess cir: Displays the current excess air percentage in the stack (LMV52 only).CO2: Displays the current CO2 percentage in the stack (LMV52 only).Lead/Lag Status: Displays the current lead/lag status when connected to a Lead/Lag Master (opton LOCK FOR CONTROL BY LEcD/LcG must also be set to Yes).

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Biiler Overview (cintnued)

Curve Data

After commissioning the LMV…, a graphical curve of the actuator and VSD positoning can be generated. Press the image of the curve graph to generate a new curve graph or to view the existng.

Pressing the cCTION buton for >1s displays the opton menu.

Minimum Liad, Maximum Liad – Sets the range of allowable modulaton. These must be set tounlock the CREcTE GRcPH buton. These setnis mgst be within the uranie of allowable modglaton our the cgurve ieneuraton will not be sgccessfgl.

CREcTE GRcPH – Actvates the curve generaton. This commands the LMV... to run at fring ratesfrom the minimum to maximum incrementally and will record the data. Theure mgst be sgfcientload four the cgurve ieneuraton purocess to be completed our it will have to be urestaurted.

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Biiler Overview (cintnued)

Rhile the curve is being generated, the progress is shown. If it takes longer than 60 seconds to record any point (LMV... shuts down for any reason or the point is out of the allowable modulaton range), the functon will be aborted with an error and may be restarted at another tme. Rhen the functon is complete, the LMV... will return to the state it was in when the functon began, and the graph will display with an orange line indicatng the current positon on the graph where the LMV... is operatng. Pressing ERcSE GRcPH will clear all stored graph data.

Press COPY TO USB to save the graph data to a .csv fle. If email is confgured, press EMcIL GRcPH to send an email with the graph data .csv fle atached. Note that a USB drive must be inserted to send email since the atached fle is frst stored on the USB drive.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT, xx is 6 for 6", 10 for 10"Wilename = LMV_CU VE_DATA_mm_dd_yyyy.CSV, mmddyyyy are date

If the LMV is held at any even point on the graph (10%, 20%, 30%, etc.) the OVERWRITE POINT buton will appear. To overwrite the saved data with the current data, touch for > 2s (hold down). The 6" touchscreen kit will graph 10 points and the 10" touchscreen kit will graph 20 points.

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Biiler Overview (cintnued)

Worcing Screen Saver

Touching either of the top corners for > 1s (hold down) will force the screen saver to display (if confgured).

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Remite Cintril

Access level: USER

The HAND-OWW-AUTO mode of the boiler may be set at any tme. The EMOTE CONT OL screen can be accessed from either the MAIN MENU or from the BOILE OVE VIER screen. Wrom the MAIN MENU screen, press REMOTE CONTROL. Wrom the BOILE OVE VIER screen, touch the boiler image in the area shown.

The EMOTE CONT OL screen will appear.

HcND-OFF-cUTO – Sets the mode of the boiler to manually on, manually off, or automatc. See Table 2 for additonal detail.

• HcND: The boiler is commanded to run.• OFF: The boiler is commanded to remain off. • cUTO: The boiler is commanded to operate off of the remote commands (if present). This is subject to the watchdog tmer, which will revert to local if remote commands are invalid or not present.

Warning: If the LMV5 is in fring rate control mode, an external automatc reset temperature control must be present on the boiler since the internal load control thermostat functon is not actve in this mode.

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Remite Cintril (cintnued)

McNUcL cCTIVE/INcCTIVE – Select manual forced operaton when in HcND.• INcCTIVE • cCTIVE

McNUcL RcTE – Sets the fring rate when manual operaton is enabled.

Table 2: LMV cctins in HcND/OFF/cUTOPisitin Lical/Remite Remite Mide Setpiint Used Firing Rate Used

HAND (Manual Inactve) Local n/a R1/R2 Internal LCHAND (Manual Actve) emote Burner On R3 emoteOWW emote Burner Off R3 n/aAUTO (Mode Auto) emote Automatc R3 Internal LCAUTO (Mode On) emote Burner On R3 emoteAUTO (Mode Off) emote Burner On R3 n/aAUTO (Ratchdog Expired) Local n/a R1/R2 Internal LC

Pressing the PROGRcM STOP buton displays the program stop menu.

After the new program stop is selected, touch cPPLY for > 1s (hold down) to save change. Press EXIT when fnished.

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Remite Cintril (cintnued)

Boiler Available Status

If connected to a Lead/Lag Master, touching the lead/lag status message from the OVERVIEW orREMOTE CONTROL screen will display the BOILE AVAILABLE detail screen. Note that a status of'BOILE NOT AVAILABLE' does not mean that a boiler can't be operated, only that the Lead/Lag Master is not allowed to control it due to a requirement not being satsfed.

The criteria for a boiler to be available are listed. Criteria that are currently actve will display with a bright green background. Criteria that are currently inactve will display with a dull green background. This helps determine why a boiler is not available to the Lead/Lag Master.

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Remite Cintril (cintnued)

All of the possible status messages are displayed in Table 3.

Table 3: Lead/Lag Status MessagesMessage Defnitin

LEAD/LAGx BOILE The current boiler designaton.LEAD/LAGx BOILE – RSB ACTIVE ON TEMP

The current boiler designaton, also indicates that warm standby is actve due to temperature.

LEAD/LAGx BOILE – RSB MIN UN

The current boiler designaton, also indicates that warm standby is actve due to unsatsfed minimum run tmer after temperature satsfed.

WO ME LEAD – CHANGEOVE IN P OG ESS

The boiler is transitoning from a lead boiler to a lag boiler.

BOILE NOT AVAILABLE The boiler is not available due to one of the following reasons (boiler control switch is off, boiler is not in automatc mode, boiler is in lockout, or boiler with LMV5x controller is not set for IntLC Bus or EtLC Bus). Touching the status message (shown below) will display the current status of these qualifers.

OVE IDE MODE The override input on the lead/lag master is actvated and is the source of control.

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Remite Cintril (cintnued)

Hand-Off-Auto Wlowchart (Serial Connecton)

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clarms

Access level: USER

Alarms are displayed on a dedicated alarm screen. The last 100 alarms are stored in memory and tme stamped. Rhen an alarm is present, a link to the alarm screen will fash over the ttle bar of the OVE VIER screen. Otherwise, this screen may be accessed from the main menu.

To access the alarm screen from the main menu, press cLcRMS. The ALA MS screen will appear.

The ALA MS screen lists current alarms as well as older alarms. The color of the alarm indicates the category of the alarm:

• Red – LMV lockouts. The text fashes when the alarm is currently actve.• Orange – LMV faults. • Yelliw/Green – Communicaton faults. The background is yellow when the alarm is currently actve and green when communicaton is present.

• Blue – All other alarms such as analog alarms, pump alarms, and expanded annunciator alarms. The text fashes when the alarm is currently actve.

Informaton about the most recent alarms will be displayed with the following informaton:• Ni. – Number of the alarm in the list (1 is most recent).• Date – Displays the date that the alarm occurred.• cctve – Displays the tme when the alarm became actve.• Cleared – Displays the tme when the alarm was cleared.

The icons at the top of the screen may be used to navigate through the list of alarms:

• Move up one alarm on the list.

• Move down one alarm on the list.

• Navigate up one page on the list.

• Navigate down one page on the list.

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clarms (cintnued)

Wrom the ALA MS screen, press LOCKOUTS to access the lockout history (only appears for LMV5… controllers) or press FcULTS to access the fault history. The 9 most recent lockouts are displayed and the 21 (LMV5…) or 25 (LMV3…) most recent faults are displayed. Index 0 is the most recent and higher numbers are older entries.

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clarms (cintnued)

Press the left and right arrows at the botom of the screen to toggle between lockouts/faults.

The following informaton is displayed on the screen for each lockout:

LOCKOUT/FcULT CODE – Displays the LMV lockout or fault code.

DESCRIPTION – Lists a descripton of the lockout or fault in red text.

DIcGNOSTIC CODE – Displays the LMV diagnostc code.

ERROR CLcSS – Not used.

ERROR PHcSE – Displays what phase the LMV was in when the lockout or fault occurred.

TIMESTcMP – Displays the date and tme when the lockout occurred (lockouts only).

FUEL – Displays the fuel being used when the lockout or fault occurred.

OUTPUT – Displays the fring rate when the lockout or fault occurred.

STcRTUP COUNTER – Displays the start number when the lockout or fault occurred.

HOURS COUNTER – Displays the total number of hours run when the lockout occurred (lockoutsonly).

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clarms (cintnued)

Press COPY TO USB to save the complete lockout or fault history to a fle (.csv). If email is confgured, press EMcIL HISTORY to send an email with the lockout or fault history fle atached. Note that a USB drive must be inserted to send email since the atached fle is frst stored on the USB drive.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT, xx is 6 for 6", 10 for 10"Wilename (lockouts) = LMV_LOCKOUT_HISTO Y_mm_dd_yyyy.CSV, mmddyyyy are dateWilename (faults) = LMV_WAULT_HISTO Y_mm_dd_yyyy.CSV, mmddyyyy are date

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clarms (cintnued)

Wrom the ALA MS screen, press the RESET Ec cLcRMS buton to clear expanded annunciator alarms designated as manual reset or latched. This buton has no effect on LMV alarms.

Press COPY TO USB to save the complete lockout or error history to a fle (.csv). If email is confgured, press EMcIL to send an email with the lockout or error history fle atached. Note that a USB drive must be inserted to send email since the atached fle is frst stored on the USB drive.

The resultng CSV fle is in a tab-separated format and can be viewed with any text editor or spreadsheet applicaton. On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT, xx is 6 for 6", 10 for 10"Wilename = ALA MS_mm_dd_yyyy.CSV, mmddyyyy are date

NOTE: If a boiler circulatng pump is optoned with the Expanded Annunciator, an alarm is generated when feedback is not received within 20 seconds of the pump being commanded on. If this alarm appears, it must be reset using the RESET Ec cLcRMS buton. The alarm will also automatcally clear if pump feedback is received while an alarm is present.

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Inputs and Outputs

Access level: USER

The status of the LMV inputs and outputs may be viewed at any tme. Wrom the MAIN MENU screen, press IN/OUT DETcIL. The INPUT DETAIL screen will appear.

The informaton on the INPUT DETAIL screen will vary based upon the load controller chosen.

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Inputs and Outputs (cintnued)

All inputs that are currently actve will display as ON with a bright green background. All inputs that are currently inactve will display as OWW with a dull green background. To view the OUTPUTDETAIL screen, press OUTPUTS. The OUTPUT DETAIL screen will appear.

Rhen the LMV controller is in alarm, the ALA M output will fash bright red. Rhen the controller is not in alarm, the alarm output will be a dull red background. All other outputs that are currently actve will display as ON with a bright green background. All other outputs that arecurrently inactve will display as OWW with a dull green background.

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Fuel Statstcs

Access level: USER

Both the LMV3... and LMV5… controllers keep track of certain fuel statstcs. Wrom the MAIN MENU screen, press FUEL STcTISTICS. The WUEL STATISTICS screen will appear.

MIN OUTPUT GcS/OIL – Displays the minimum allowable load output programmed in the LMV controller.

McX OUTPUT GcS/OIL – Displays the maximum allowable load output programmed in the LMVcontroller.

HOURS RUN GcS/OIL – Displays the hours that the LMV controller has run on gas or oil.

STcRTUPS GcS/OIL – Displays the number of startups that the LMV controller has had on gas oroil.

TOTcLIZED GcS/OIL – Displays the totalized volume of gas (in cubic feet) or oil (in gallons) that has been used.

CURRENT FLOW – Displays the current fow rate of gas or oil.

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Fuel Statstcs (cintnued)

Press USB to save a summary of the fuel statstcs to a fle (.txt). If email is confgured, press EMcIL to send an email with the fle atached. Note that a USB drive must be inserted to send email since the atached fle is frst stored on the USB drive.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT, xx is 6 for 6", 10 for 10"Wilename = LMV_WUEL_STATS_mm_dd_yyyy.TXT

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LMV Cintriller Data

Access level: USER

The statc details of the LMV controller may be viewed at any tme. Wrom the main menu, press LMV DcTc. The software revision for the touchscreen is shown on this screen.

LMV CONTROL TYPE (cSN) – Displays the model number of the LMV controller.

LMV PcRcMETER SET CODE – Displays the parameter set code of the LMV controller.

LMV PcRcMETER SET VERSION – Displays the parameter set version of the LMV controller.

LMV CONTROL ID DcTE – Displays the date of manufacture of the LMV controller (MM/DD/YY).

LMV CONTROL ID NUMBER – Displays the unit ID number of the LMV controller.

LMV BURNER SOFTWcRE VERSION – Displays the software version of the LMV controller.

LMV LOcD CONTROL SW VERSION – Displays the load controller software version (LMV5... only).

LMV IDENTIFICcTION – Displays the burner ID of the LMV controller.

cZL5 CONTROL TYPE (cSN) – Displays the model number of the A L display (LMV5… only).

cZL5 PcRcMETER SET CODE – Displays the parameter set code of the A L display (LMV5... only).

cZL5 PcRcMETER SET VERSION – Displays the parameter set version of the A L display (LMV5...only).

cZL5 SOFTWcRE VERSION – Displays the software version of the A L display (LMV5... only).

cZL5 IDENTIFICcTION NUMBER – Displays the unit ID number for the A L display (LMV5... only).

cZL5 CONTROL ID DcTE – Displays the date of manufacture of the A L display (MM/DD/YY) (LMV5... only).

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LMV Cintriller Data (cintnued)

Press USB to save a summary of the LMV controller data to a fle (.txt). If email is confgured, press EMcIL to send an email with the fle atached. Note that a USB drive must be inserted to send email since the atached fle is frst stored on the USB drive.

On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT\LMV_ID_DATA.TXT, xx is 6 for 6", 10 for 10"

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Draf Cintril

Access level: USER/TECH/SETUP

If the draft control opton is confgured with the Expanded Annunciator, press DRcFT or DRcFT ECONOMIZER to access the detail screen. If only draft control is optoned, the buton will link directly to the D AWT DETAIL screen, else it will link to the D AWT/ECONOMI E overview. This screen can be accessed from the USE level, but setngs may only be changed from the TECH orSETUP levels.

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Draf Cintril (cintnued)

Overview

DRcFT cLcRM – A draft alarm is currently actve.

OPEN PROVEN – The draft damper has proven the open positon switch.

CLOSED PROVEN – The draft damper has proven the closed positon switch.

IGNITION PROVEN – The draft damper has proven the igniton positon switch.

SETPOINT – Sets the desired draft setpoint (TECH or SETUP required).

DRcFT CONTROL SWITCH – Displays the draft control Open/Auto switch.

CURRENT STcTUS – Displays the current status or alarm message.

RESET cLcRM – Draft alarms must be manually reset using this buton.

POSITION – Displays the current positon in angular degrees.

DRcFT – Displays the current draft reading.

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Draf Cintril (cintnued)

Draft Control Switch

Press DRcFT CONTROL SWITCH from either the D AWT/ECONOMI E or D AWT DETAIL screen to access the draft control switch.

This will display the draft control Open/Auto switch.

OPEN – Commands the draft damper open.

cUTO – Allows the draft damper to be controlled automatcally to maintain the setpoint.

McNUcL cCTIVE/INcCTIVE – Select manual forced operaton when in cUTO.• INcCTIVE – Auto commands will come from the automatc setpoint control.• cCTIVE – Auto commands will come from the open and close butons.

OPEN (McNUcL cCTIVE) – Commands the draft damper open while this buton is touched.

CLOSE (McNUcL cCTIVE) – Commands the draft damper closed while this buton is touched.

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Draf Cintril (cintnued)

Draft Control Sequence

If the draft control switch is in OPEN, the command to the draft damper will be a constant open.If the draft control switch is in AUTO, the command to the draft damper will follow the sequence of operaton as shown in Table 4.

Table 4: Draf Cintril Sequence if Operatin (Switch in cUTO)Phase Cimmand Nite

Draft Alarm Open equires manual reset.0, 1, 2 Open Lockout/safety state.10, 12 Close Idle state.20 to 34 Open Rill alarm if open not proven before phase 30. (Alarm code 1)36 to 54 Igniton Rill alarm if igniton not proven before phase 40. (Alarm code 2)60, 62 Modulate Automatc open and close pulses to maintain the setpoint.70 to 78 Open Rill alarm if open not proven before phase 74. (Alarm code 3)80 to 83 Open Valve proving test.

Draft Status Messages

The possible status messages are shown in Table 5.

Table 5: Draf Cintril Status MessagesMessage Defnitin

COMMAND IS MANUAL POSITION The draft damper is being commanded manually open and closed.COMMAND IS IDLE STATE There is no command to the draft damper (stays as is).COMMAND IS D IVE TO OPEN The draft damper is being commanded to open.COMMAND IS SRITCH OPEN POSITION The draft damper is being commanded to open by external input.COMMAND IS D IVE TO CLOSED The draft damper is being commanded to close.COMMAND IS D IVE TO IGNITION The draft damper is being commanded to the igniton positon.COMMAND IS MODULATING OPE ATION The draft damper is in modulaton mode (open/close pulses).

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Draf Cintril (cintnued)

Draft Alarms

If the required draft damper positoning has not been proven by the specifed phase a draft alarm will occur. The draft damper will go to the open positon when a draft alarm is present. Draft alarms are reset by pressing ESET ALA M on the D AWT DETAIL screen.

The possible alarm messages are shown in Table 6.

Table 6: Draf Cintril clarm MessagesMessage Cide Defnitin

NOT OPEN BY PHASE 30 1 Open positon has not been proven by phase 30 (prepurge).NOT TO IGN. BY PHASE 40 2 Igniton positon has not been proven by phase 40 (preigniton).NOT OPEN BY PHASE 74 3 Open positon has not been proven by phase 74 (postpurge).

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Draf Cintril (cintnued)

Draft System Setup

The draft control system can be setup up to rotate either clockwise or counter-clockwise and to operate with a positve or a negatve setpoint.

Sensour Locaton

The draft pressure sensor can be located either above or below the draft damper. If it is located above the draft damper, the setpoint will be negatve and the sensor reading will be more proneto fuctuaton. If it is located below the damper, the setpoint will be positve and the sensor reading should be more stable as there is more air volume in the furnace of the boiler.

Sensour Configuraton

The recommended differental pressure sensor is the Siemens type 7MW with display. To confgure the desired range, open the access cover to expose the programming butons.

Press Mide repeatedly untl parameter 5 is displayed. This is theminimum scaling. Enter a number that matches what was enteredduring the draft sensor setup using the Up and Diwn butons, payingatenton to the polarity as this should be a negatve value.

Press Mide again untl parameter 6 is displayed. This is the maximumscaling. Enter a number that matches what was entered during the draftsensor setup using the Up and Diwn butons. This should be a positvevalue.

Press Mide repeatedly untl parameter 14 is displayed. This is thedisplay units. Choose "in H2O" using the Up and Diwn butons. Closethe access cover and the normal display screen will automatcally returnafter 30 seconds.

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Draf Cintril (cintnued)

LMV3… Reqgiured Paurameteurs

Parameters must be set to allow the draft damper to have enough tme to reach the required positons.

Identfy the model of draft damper to determine how it will take to travel fully:• SQM50.26: 8 seconds• SQM50.36: 12 seconds• SQM50.46: 25 seconds• SQM53.46: 25 seconds• SQM56.56: 37 seconds• SQM56.66: 50 seconds

Identfy the LMV3… actuators used to determine how long they will take to travel fully:• SQM33.5: 5 seconds• SQM33.7: 17 seconds

Subtract the LMV3… actuator travel tme from the draft damper travel tme to determine the required tme (referred to as delta tme below). If the result is zero or less no parameter changes are necessary.

Set up the required parameters through the A L (OEM password required):1. Parameter 211 (Wan amp Up Time): <delta tmen

If fuel 0 is a gas fuel, also change the following:2. Parameter 226 (Pre-Igniton Time): <delta tmen3. Parameter 233 (Afterburn Time): <delta tmen

If fuel 0 is an oil fuel, also change the following:4. Parameter 266 (Pre-Igniton Time): <delta tmen5. Parameter 273 (Afterburn Time): <delta tmen

If fuel 1 is a gas fuel, also change the following:6. Parameter 326 (Pre-Igniton Time): <delta tmen7. Parameter 333 (Afterburn Time): <delta tmen

If fuel 1 is an oil fuel, also change the following:8. Parameter 366 (Pre-Igniton Time): <delta tmen9. Parameter 373 (Afterburn Time): <delta tmen

The end goal is to have the draft damper reach the required positons 2-4 seconds before the alarm point. The delta tme value for each point can be increased or decreased as necessary to stay in this range. eaching the positon earlier than needed will not cause any nuisance alarms but will unnecessarily extend the start tme of the burner.

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Draf Cintril (cintnued)

LMV5… Reqgiured Paurameteurs

Parameters must be set to allow the draft damper to have enough tme to reach the required positons. This is done by matching the air damper travel tme and distance traveled to slightly exceed that of the damper.

Identfy the model of draft damper to determine how it will take to travel fully (referred to as damper travel below):

• SQM50.26: 8 seconds• SQM50.36: 12 seconds• SQM50.46: 25 seconds• SQM53.46: 25 seconds• SQM56.56: 37 seconds• SQM56.66: 50 seconds

Set up the required parameters through the A L (OEM password required):1. Params & Display > atoControl > Times > Operaton ampMod > <damper traveln2. Params & Display > atoControl > Times > TimeNoWlame > <damper traveln3. Params & Display > atoControl > Gas Setngs > SpecialPositons > PrepurgePos > PrepurgePosAir > 90.0°

4. Params & Display > atoControl > Gas Setngs > SpecialPositons > PostpurgePos > PostpurgePosAir > 90.0°

5. Params & Display > atoControl > Gas Setngs > SpecialPositons > HomePos > HomePosAir > 1.0°

If oil or a second fuel is used, also change the following:6. Params & Display > atoControl > Oil Setngs > SpecialPositons > PrepurgePos > PrepurgePosAir > 90.0°

7. Params & Display > atoControl > Oil Setngs > SpecialPositons > PostpurgePos > PostpurgePosAir > 90.0°

8. Params & Display > atoControl > Oil Setngs > SpecialPositons > HomePos > HomePosAir > 1.0°

The end goal is to have the draft damper reach the required positons 2-4 seconds before the alarm point. The damper travel value can be increased or decreased as necessary to stay in this range. eaching the positon earlier than needed will not cause any nuisance alarms but will unnecessarily extend the start tme of the burner.

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Draf Cintril (cintnued)

Checkini Duraf Dampeur Turavel

It is important to positon the damper to the actuator and to ensure that the actuator can travel freely throughout the range. At the damper this can be done by using the "MAN/AUTO" switch on the actuator:

Set the switch to "MAN" and use the up/down arrows to move the actuator.

This can also be done from the touchscreen by using the setup switch panel. This is accessed on the D AWT DETAIL page by pressing on the ttle bar for > 2s (hold down):

This allows the damper to be moved from the open to closed positon easily.

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Draf Cintril (cintnued)

Setni Iiniton Positon

Use the igniton positon cam to set the desired damper opening for igniton. The arrow on the cam will point at the angular degree mark for the opening.

Test the positon using the setup switch panel to move the damper to the igniton positon. Notethat this can only be done from the open positon. If the damper is in the closed positon and the switch calls for the igniton positon, it will not move. If the positon is adjusted toward closed while in the igniton positon, the damper will move as it is adjusted. If the positon is adjusted toward open, the damper will have to be moved back to open and then igniton again to test the new positon.

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Ecinimizer

Access level: USER

If the economizer opton is confgured with the Expanded Annunciator, press ECONOMIZER or DRcFT ECONOMIZER to access the detail screen. If only the economizer is optoned, the buton will link directly to the ECONOMI E DETAIL screen, else it will link to the D AWT/ECONOMI E overview.

The ECONOMI E DETAIL page shows the current connected economizer temperatures.

Stack Inlet – The stack temperature as it enters the economizer.

Stack Outlet – The stack temperature as it leaves the economizer.

Inlet Water – The water temperature as it enters the economizer.

Outlet Water – The water temperature as it leaves the economizer.

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Expanded cnnunciatir

Access level: USER/TECH/SETUP

If the Expanded Annunciator is optoned, press EXPcNDED cNNUN. to access the detail screen. The software revision for the Expanded Annunciator is show on this screen.

If extra RW55 controls are optoned, press EXTRc RWF to access that screen. Press EXP. cNNUN. to return to the EXPANDED ANNUNCIATO screen.

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Expanded cnnunciatir (cintnued)

Load Controller

If the load controller is optoned, press LOcD CONTROL to access that screen. Press PREVIOUS to return to the EXPANDED ANNUNCIATO screen. The operaton of the Expanded Annunciator load controller is modeled after the operaton of the RW load controller. Similar nomenclature is used for the inputs and outputs. To opton the load controller, one of the analog or TD input names must contain the string "E1". This is the process variable. A second input can be used forshell temperature if it contains the string "E3". If a shell temperature is used low-fre hold belowthe ALA M (K6) parameter is automatc. Note that both "E1" and "E3" can be applied to the same input, meaning low-fre hold could be used from the same outlet water temperature sensor if desired.

SETPOINT – Sets the desired setpoint (TECH required).

PV (E1) – Displays the current value of E1 (process variable).

OUTPUT (Y) – Displays the current output.

E3 – Displays the current value of E3 (alarm variable).

PROPORTIONcL – Sets the proportonal band for PID control (TECH required). The proportonal porton of the control output is generated by the actual value relatve to the setpoint less the proportonal band. A smaller proportonal band has a larger impact upon the process. Wor example, if the actual value is 95, the setpoint is 100 and the proportonal band is 20, the control output will be 25% of the PID scale (setpoint minus actual, divided by the proportonal band). The control output will modulate whenever the actual value is within the effectve proportonal band (80 to 100 in example). If the actual value is above or below the proportonal band limits the control output will be the PID maximum or PID minimum. Setng the proportonal band to 0 effectvely disables the PID control.

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Expanded cnnunciatir (cintnued)

INTEGRcL – Sets the integral tme for PID control (TECH required). The integral porton of the control output makes contnuous adjustments based upon the error between the setpoint and the actual value. A shorter integral tme has a larger impact upon the process. Wor example, if the output using the proportonal band alone is 25% and the integral tme is set to 15s, the control output will double to 50% in 15s if the control variables remain constant. This 'integral windup' will contnue untl the control output reaches the PID maximum or PID minimum. Setng the integral tme to 0 disables the integral porton.

DERIVcTIVE – Sets the derivatve tme for PID control (TECH required). The derivatve porton of the control output makes periodic adjustments based upon the rate of change in the actual value. A larger derivatve tme has a larger impact upon the process. Wor example, if the output using the proportonal band alone is 25%, the derivatve tme is set to 10s and the actual value decreases by 2, the control output will increase by 20% (10×2) in antcipaton of how much the current rate of change would affect the process 10s into the future. Setng the derivatve tme to 0 disables the derivatve porton. Derivatve should be used with cauton as it can create an unstable control loop. Rhen used, it is recommended that derivatve tme not exceed 25% of the integral tme.

cLcRM (K6) – Sets the desired alarm setpoint. Rhen the alarm output (K6) is actve, the outputsignal will be automatcally restricted to the minimum. This is the automatc low-fre hold functon. (TECH required).

SWITCH ON (HYS1) – Sets the switch-on setpoint. The output will switch on when the PV < SETPOINT + HYS1. This may be a negatve or positve value. (TECH required).

SWITCH OFF (HYS3) – Sets the switch-off setpoint. The output will switch on when the PV > SETPOINT + HYS3. This may be a negatve or positve value. (TECH required).

PID MIN, PID McX – Sets the desired output limits from 0% to 100%. (TECH required).

STcTUS INDICcTORS – Displays the status of the thermostat (K1) output or alarm (K6) output.

CONFIG MV1 FOR Y (cNcLOG) – Confgures Monitored Analog Output 1 to transmit the load controller output. Use this opton when a hard-wired analog output from the load controller is desired.

CONFIG MV3 FOR K1 (DIGITcL) – Confgures Monitored Digital Output 3 to transmit the load controller thermostat output. Use this opton when a hard-wired digital enable from the load controller is desired.

CONFIG MV4 FOR K6 (DIGITcL) – Confgures Monitored Digital Output 4 to transmit the load controller alarm output. Use this opton when a hard-wired digital alarm from the load controller is desired.

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Feedwater

Access level: USER/TECH/SETUP

If the feedwater opton is confgured, press FEEDWcTER to access the detail screen. This screen can be accessed from the USE level, but setngs may only be changed from the TECH or SETUPlevels.

The vessel will animate to show the level of fll based upon the scaling of the input in the RW. The setpoint (in percent of fll) will appear as a red line. The actual fll percent will appear at the differental pressure transmiter graphic. Touching the setpoint on the RW (green display) will allow the feedwater setpoint to be changed (TECH required).

Note that the RW must be confgured as specifed in document RWF... Modglatni Feedwateur Conturol Valve Applicaton Ggide for the graphical tank level to functon correctly.

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Biiler Circulatng Pump

Access level: USER/TECH/SETUP

If the boiler pump (hydronic systems only) opton is confgured with the Expanded Annunciator, press BOILER PUMP to access the detail screen. This screen can be accessed from the USE level, but setngs may only be changed from the TECH or SETUP levels.

COMMcND MODE – Selects the command mode is the method of pump control used. Setng may only be changed at the SETUP access level.

• CYCLE WITH BOILER: The pump will be commanded on when the boiler is commanded on. The pump will remain on after the boiler command is removed for the duraton of the off delay period.

• CONTINUOUS RUN: The pump will be commanded on as long as the HAND-OWW-AUTO switch is not in OWW on the EMOTE OPE ATION screen.

OFF DELcY – Sets the amount of tme that the pump stays on after the boiler turns off when thepump is set to mode 'CYCLE RITH BOILE '. Setng may be changed at TECH access level.

STcTUS – Displays the status of the pump is displayed.• RUNNING: The pump is currently on.• IDLE: The pump is currently off because it is commanded to be off.• cLcRM: The pump is currently off because it is in alarm.

COMMcND – Displays whether or not the pump is currently being commanded on.• ENcBLED: The pump is being commanded on.• DIScBLED: The pump is being commanded off.

OUTPUT – Displays the logic of the pump output.• NORMcL: The pump is output is normally open.• REVERSE: The pump is output is normally closed.

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Biiler Circulatng Pump (cintnued)

If the boiler pump is commanded on and operaton is not proven within 30 seconds, a tmed pump alarm will occur. To reset this, press RESET cLcRM on the BOILE PUMP screen, or the pump will automatcally reset once operaton is proven.

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VSD

Access level: USER/TECH/SETUP

If the VSD opton is confgured, press VSD to access the detail screen. This screen can be accessed from the USE level, but setngs may only be changed from the TECH or SETUP levels.

The peak output current and DC bus voltages are recorded during operaton. To reset the peak readings, press the values for > 1s (hold down, TECH required).

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VSD (cintnued)

Yaskawa Setup

If a Yaskawa VSD (available from SCC) is used, touch VSD SETUP to access the VSD SETUP screen.

Midel – Selects the model of VSD used (SETUP required).• V1000• c1000

Ramp Up/Diwn – Sets the ramp up or down tme in the VSD (SETUP required).

Input Viltage – Sets the input voltage as per the motor nameplate (SETUP required).

Mitir Current – Sets the current as per the motor nameplate (SETUP required). Touching this brings up a template to calculate current with service factor. Touch cPPLY to calculate and enterthe motor current.

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VSD (cintnued)

RPM / Mitir Piles – Selects the PM and poles as per the motor nameplate (SETUP required).• 1750 / 4• 3500 / 2

Braking Resistir – Selects whether a braking resistor is connected to the VSD (SETUP required).• Ni• Yes

Touching REcD PcRcMETERS will read the current motor informaton as stored in the VSD. Touching WRITE PcRcMETERS (SETUP required) will write the supplied motor informaton as well as the parameters required by the LMV… to the VSD. The screen will display 'R ITING TO VSD...' while the parameters are being writen.

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cnalig Inputs

Access level: USER

If the analog or TD optons are confgured with the Expanded Annunciator, press cNcLOG INPUTS to access the detail screen.

If totalizaton is enabled for any of the analog inputs, touching the totalized value > 1s (hold down) will reset the value to 0 (TECH required). Toggle between analog and TD inputs with the RTD and V&mc butons on the lower right.

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Settings

Access level: USER/TECH/SETUP

To access load controller setngs (LMV, RW, or EA internal), press SETTINGS to access the detailscreen.

Depending upon the load controller, different input optons will appear.

LOCcL SETPOINT – Sets the desired setpoint (TECH required). This parameter may be limited by Et MinSetpoint and Et MaESetpoint on a LMV5... controller.

PROPORTIONcL – Sets the proportonal band of the load controller (TECH required). A proportonal band of 10 means that the fring rate of the boiler will be 100% when the actual value is 10 below the setpoint. On the LMV5x, the proportonal band is a percentage of 14.5 PSI (for steam boilers) or 212°W (for hydronic boilers). On an RW10, RW40, or RW55 load controller, the proportonal band is an absolute number.

INTEGRcL – Sets the tme of the integral component of the load controller (TECH required). The integral component corrects for steady state error between the setpoint and actual value. Shorter tmes are more aggressive. A setng of zero eliminates the integral component.

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Settings (cintnued)

DERIVcTIVE – Sets the tme of the derivatve component of the load controller (TECH required). The derivatve component corrects for the rate of increase/decrease of the actual value. Longer tmes are more aggressive. A setng of zero eliminates the derivatve component and typically works well on boilers.

cLcRM (K6) – Sets the desired alarm setpoint (TECH required).

SWITCH ON (HYS1) – Sets the burner on setpoint for RW load controllers (TECH required).• RWF40/RWF55: Sets the burner on threshold (added to the setpoint). Wor example, a value of -5 means the burner will turn on when the actual value is 5 below setpoint.

• RWF10: Sets the burner on threshold (subtracted from the setpoint). Wor example, a value of 5 means the burner will turn on when the actual value is 5 below setpoint.

SWITCH OFF (HYS3) – Sets the burner off setpoint for RW load controllers (TECH required).• RWF40/RWF55: Sets the burner off threshold (added to the setpoint). Wor example, a value of 5 means the burner will turn on when the actual value is 5 above setpoint.

• RWF10: This setng behaves differently for steam and hydronic boilers. Wor steam boilers, the span of the pressure transducer affects this setng. Wor example, if the span of the pressure transducer is 0-60 PSI, a value of 10 for ALH1 means the burner will turn off when the actual value is 6 (60×10%) above the burner on point. Wor hydronic boilers, a value of 10 means the burner will turn off when the actual value is 10 above the burner on point.

LMV5 OP MODE – Displays the LMV5... load controller operatng mode (LMV5... only).

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Datalig/Trends

Access level: USER/TECH/SETUP

Wour trends available that can record two variables at user-defned intervals. Datalogging up to eight variables to a USB drive is also available. Wrom the MAIN MENU screen, press TRENDS (USE ) or DcTcLOG TRENDS (TECH or SETUP). The T END 1 or DATALOG screen will appear.

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Datalig/Trends (cintnued)

Trends

The USB drive must be inserted to use the trend opton. Data will be stored for the previous 7 days.

To scroll between the trends, press << and nn beside the ttle bar.

ON/OFF – Enables or disables the selected trend.

TREND NcVIGcTION • << – Scroll back to view previous trend data. The trend will scroll back by a sample, second, minute, hour or day depending upon the setng of the ScMPLES/SECONDS/MINUTES/HOURS/DcYS buton. This will pause the trend display automatcally.

• ScMPLES/SECONDS/MINUTES/HOURS/DcYS – Sets the scroll range for viewing recorded trend data.

• PcUSE – This will pause or play the trend display. 'PAUSED' will display in red text when paused and touching again will restore the trend to the current display.

• nn – Scroll forward when viewing previous trend data. The trend will scroll back by a minute, hour or day depending upon the setng of the ScMPLES/SECONDS/MINUTES/HOURS/DcYS buton.

VcRIcBLES TO LOG (BLUE, RED) – Sets the Modbus register index to trend (TECH required).

MIN, McX – Sets the range for the trend data (TECH required).

TIME BcSE – Select a tme base for trending. Choices are 10s, 20s, 30s, 1m, 2m, 5m, 10m, 15m, 30m, 60m (TECH required).

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Datalig/Trends (cintnued)

Datalog

LOG VcLUES – Sets the Modbus register index to log (TECH required).

ON/OFF – Enables or disables logging the selected value (TECH required).

TIME BcSE – Select a tme base for logging. Choices are 10s, 20s, 30s, 1m, 2m, 5m, 10m, 15m, 30m, 60m (TECH required).

STcRT LOG/STOP LOG – Enables or disables all logging (TECH required).

RESET – Sets all log values to '0' (TECH required).

TRENDS – Navigates to the T END 1 screen (TECH required).

The resultng fle is in a tab-separated format (.csv) and can be viewed with any text editor or spreadsheet applicaton. On the USB drive, data can be found at: Path = \PUBLIC\P OJECTS\KITxx\DATA\TEXT, xx is 6 for 6", 10 for 10"Wilename = DATALOG_mm_dd_yyyy.CSV, mmddyyyy are date

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Register Liikup

Access level: USER/TECH/SETUP

Modbus register indices can be looked up using text strings.

Enter a string or register index to search, then press LOOKUP.

STRING TO LOOKUP – Input the string or register number to search for. Examples are 'WUEL' or '12' (would display the descripton of index 12).

DESCRIPTION – Displays the full name of the register containing the search string.

INDEX – Displays the index of the register that matches the descripton.

CURRENT VcLUE – Displays the current value of the register. This is a raw value (not scaled).

COPY INDEX TO CLIPBOcRD – Copies the register index and matching divider to the clipboard. This can be pasted into monitored output, trend or datalog confguraton (TECH required).

NEXT – Scroll to the next register index matching the descripton. 'END OW LIST EACHED' will display if there are no more matching descriptons.

WRITE – Sets the value to manually write to a register. This can be used to test functonality such as remote setpoint or enables. Press WRITE to apply value (TECH required).

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Register Liikup (cintnued)

Using the Clipboard

If there is data in the clipboard, the confguraton screens for the monitored outputs, trends andthe datalog will have corresponding butons that can be used to paste the data.

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Using External USB Drive

Access level: USER

A USB drive can be used to save screen captures, datalog fles, and for saving or loading backup fles. A display reading 'The USB device is connected.' will appear to confrm that the USB drive is ready to use.

Once removed, the display will read 'The USB device is unplugged.'

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Saving Screen Captures

Access level: USER

The current screen image may be copied to a USB drive. Any screen may be captured by pressing the camera icon > 5s (hold down) untl the screen displays 'SNAPSHOT SAVED TO USB'.

If there is no USB drive inserted or there is an error while trying to save the snapshot, a messagewill display saying 'SNAPSHOT SAVE E O '.

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Saving Screen Captures (cintnued)

If email is confgured, an email containing the screen capture as an atachment can be sent by pressing EMcIL. Note that screen captures always require a USB drive to be inserted, even to send an email.

There is no limit to the number of screen captures that may be saved to the USB drive other than the capacity of the USB drive itself. Saved images may be viewed or deleted by going to theSAVED IMAGES screen accessible from the SYSTEM SETUP screen.

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Changing Passwirds

Access level: SETUP

By default, the TECH access level password is 9876 and the SETUP access level password is STA T. These default passwords may be changed at any tme. To change passwords, press LOGINfrom the main menu. Enter the appropriate informaton to log in at the SETUP access level and press cPPLY. The CU ENT USE will change to SETUP.

After that is done, press PcSSWORD CHcNGE.

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Changing Passwirds (cintnued)

The SETUP password may be changed from this screen. Enter the new password twice and presscPPLY to make the change. To allow the TECH user access to change the TECH password, press cLLOW PcSSWORD CHcNGES.

If password changes have been allowed, the TECH user may now change their password by following the same procedure as described above for the SETUP user. To disallow the TECH user from changing the TECH password, press RESTRICT PcSSWORD CHcNGES.

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Gateway/BMS

Access level: TECH/SETUP

The standard BMS interface offered is via Modbus TCP/IP. The standard port 502 is used for this connecton. The connecton to the BMS is via the Ethernet port(s) on the touchscreen. The addresses shown are 0-based (begin at 0) and are in decimal format.

Supported functon codes:FC3 (read holding registers), address 0 = 40001.FC4 (read input registers), address 0 = 30001.FC6 (single register write), address 0 = 40001.FC16 (multple register write), address 0 = 40001.

Addresses with access are read-only, access R are read-write.

The following additonal protocols are available with a TS Series Protocol Converter (see Docgment No. TS-6100 for additonal detail):

• BACnet/IP• BACnet MS/TP• Metasys N2• Ethernet/IP• Lonworks

Warning: If the LMV5 is in fring rate control mode, an external automatc reset temperature control must be present on the boiler since the internal load control thermostat functon is not actve in this mode. Also note that the integrated thermal shockfeatures do not operate in this mode, so these features must be duplicated if needed.

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Gateway/BMS – Mapping

LMV = LMV3… or LMV5… controller data RW LC = RW10, RW40 or RW55 load controller dataWEEDRATE = RW40 or RW55 feedwater controller dataEA = Expanded Annunciator data

Access marked with an asterisk (*) are EEP OM backed and should not be contnuously writen.

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES

0 LMV PHASE Unsigned Int 16 see LMV Phases1 LMV WUEL ACTUATO Signed Int 16 x102 LMV GAS ACTUATO Signed Int 16 x103 LMV OIL ACTUATO Signed Int 16 x104 LMV AI ACTUATO Signed Int 16 X105 LMV AUX1 ACTUATO Signed Int 16 x106 LMV AUX2 ACTUATO Signed Int 16 x107 LMV AUX3 ACTUATO Signed Int 16 x108 LMV VSD OUTPUT Unsigned Int 16 x109 LMV CU ENT WUEL Unsigned Int 16 0=gas/fuel0,1=oil/fuel110 LMV CU ENT OUTPUT Unsigned Int 16 x10, see Nite 1 below11 LMV CU ENT SETPOINT Unsigned Int 1612 LMV ACTUAL VALUE Unsigned Int 1613 LMV WLAME SIGNAL Unsigned Int 16 x1014 LMV WUEL TH OUGHPUT Unsigned Int 1615 LMV CU ENT O2 Unsigned Int 16 x1016 LMV GAS UNIT Unsigned Int 16 0=metric,1=standard17 LMV OIL UNIT Unsigned Int 16 0=metric,1=standard18 LMV TEMPE ATU E UNIT Unsigned Int 16 0=metric,1=standard19 LMV P ESSU E UNIT Unsigned Int 16 0=metric,1=standard20 LMV SENSO SELECTION Unsigned Int 16 see Nite 2 below21 LMV STA TUP COUNTE Unsigned Int 3223 LMV HOU COUNTE Unsigned Int 3225 LMV CU ENT E O CODE Unsigned Int 16 see LMV... Lickiut/Errir Cides26 LMV CU ENT DIAGNOSTIC CODE Unsigned Int 16 see LMV... Lickiut/Errir Cides27 LMV CU ENT E O CLASS Unsigned Int 16 not used28 LMV CU ENT E O PHASE Unsigned Int 16 see LMV Phases29 LMV TEMP LIMIT OWW TH ESHOLD Unsigned Int 1630 LMV SUPPLY AI TEMPE ATU E Unsigned Int 1631 LMV WLUE GAS TEMPE ATU E Unsigned Int 1632 LMV COMBUSTION EWWICIENCY Unsigned Int 16 x1033 LMV CU ENT CO2 Unsigned Int 16 x1034 LMV CU ENT EXCESS AI Unsigned Int 16 x1035 LMV INPUT RO D Unsigned Int 16 word of bits

35 bit 0 LMV CONT OLLE SRITCH Boolean35 bit 1 LMV WAN CONTACTO Boolean35 bit 2 LMV OIL SELECTED Boolean35 bit 3 LMV GAS SELECTED Boolean35 bit 5 LMV OIL P ESS SR MAX Boolean35 bit 6 LMV OIL P ESS SR MIN Boolean

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES35 bit 7 LMV VALVE P OVING SR Boolean35 bit 8 LMV SAWETY LOOP Boolean35 bit 10 LMV GAS P ESS SR MIN Boolean35 bit 11 LMV GAS P ESS SR MAX Boolean35 bit 13 LMV AI P ESSU E SR Boolean35 bit 14 LMV STA T ELEASE OIL Boolean35 bit 15 LMV HEAVY OIL STA T Boolean37 LMV OUTPUT RO D Unsigned Int 16 word of bits

37 bit 0 LMV ALA M Boolean37 bit 4 LMV IGNITION Boolean37 bit 5 LMV STA T SIGNAL Boolean37 bit 6 LMV WAN OUTPUT Boolean37 bit 7 LMV OIL PUMP Boolean37 bit 8 LMV WUEL VALVE SV OIL Boolean37 bit 9 LMV WUEL VALVE V1 OIL Boolean37 bit 10 LMV WUEL VALVE V2 OIL Boolean37 bit 11 LMV WUEL VALVE V3 OIL Boolean37 bit 12 LMV WUEL VALVE SV GAS Boolean37 bit 13 LMV WUEL VALVE V1 GAS Boolean37 bit 14 LMV WUEL VALVE V2 GAS Boolean37 bit 15 LMV WUEL VALVE PV GAS Boolean38* R LMV P OG AM STOP Unsigned Int 16 see Nite 3 below39* R LMV LOAD CONT OL MODE Unsigned Int 16 see Nite 4 below40 LMV MANUAL/AUTOMATIC Unsigned Int 16 0=auto,1=on,2=off41 R LMV MODBUS LOCAL/ EMOTE Unsigned Int 16 0=local,1=remote42* R LMV MODBUS RATCHDOG Unsigned Int 1643 R LMV MODBUS OPE ATING MODE Unsigned Int 16 0=auto,1=on,2=off44 R LMV MODBUS SETPOINT R3 Unsigned Int 1645 R LMV MODBUS OUTPUT Unsigned Int 16 x10, see Nite 1 below46* R LMV MODBUS WUEL SELECTION Unsigned Int 16 0=gas/fuel0,1=oil/fuel147* R LMV SETPOINT R1 Unsigned Int 1648* R LMV SETPOINT R2 Unsigned Int 1649 R LMV REEKDAY Unsigned Int 16 0=Sun,1=Mon,…,6=Sat 50 R LMV YEA 2-DIGIT Unsigned Int 1651 R LMV MONTH Unsigned Int 1652 R LMV DAY Unsigned Int 1653 R LMV HOU Unsigned Int 1654 R LMV MINUTE Unsigned Int 1655 R LMV SECOND Unsigned Int 1656* R LMV HOU S UN GAS ESET Unsigned Int 3258* R LMV HOU S UN OIL S1 ESET Unsigned Int 3260* R LMV HOU S UN OIL S2 ESET Unsigned Int 3262* R LMV HOU S UN OIL S3 ESET Unsigned Int 3264* R LMV HOU S UN TOTAL ESET Unsigned Int 3266 LMV HOU S UN TOTAL WIXED Unsigned Int 3268 LMV HOU S CONNECTED TO PORE Unsigned Int 3270* R LMV STA TUPS GAS ESET Unsigned Int 3272* R LMV STA TUPS OIL ESET Unsigned Int 3274* R LMV STA TUPS TOTAL ESET Unsigned Int 32

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES76 LMV STA TUPS TOTAL WIXED Unsigned Int 3278* R LMV TOTAL VOLUME GAS/WUEL0 Unsigned Int 3280* R LMV TOTAL VOLUME OIL/WUEL1 Unsigned Int 3282 LMV NUMBE OW LOCKOUTS Unsigned Int 1683 LMV EXT A TEMPE ATU E SENSO Unsigned Int 1684 LMV A L5 ASN ST ING String (8 words)92 LMV A L5 PA AMETE SET CODE Unsigned Int 1693 LMV A L5 PA AMETE SET VE Unsigned Int 1694 LMV A L5 ID DATE YEA 2-DIGIT Unsigned Int 1695 LMV A L5 ID DATE MONTH Unsigned Int 1696 LMV A L5 ID DATE DAY Unsigned Int 1697 LMV A L5 ID NUMBE Unsigned Int 1698 LMV BU NE CONT OL ST ING String (8 words)106 LMV BC PA AMETE SET CODE Unsigned Int 16107 LMV BC PA AMETE SET VE Unsigned Int 16108 LMV BC ID DATE YEA 2-DIGIT Unsigned Int 16109 LMV BC ID DATE MONTH Unsigned Int 16110 LMV BU NE CONT OL ID DATE DAY Unsigned Int 16111 LMV BU NE CONT OL ID NUMBE Unsigned Int 16112 LMV SOWTRA E VE SION A L Unsigned Int 16 read in hexadecimal113 LMV SR VE BU NE CONT OL Unsigned Int 16 read in hexadecimal114 LMV SR VE LOAD CONT OL Unsigned Int 16 read in hexadecimal115 LMV BU NE ID ST ING String (8 words)123 LMV MINIMUM OUTPUT GAS Unsigned Int 16 x10, see Nite 1 below124 LMV MAXIMUM OUTPUT GAS Unsigned Int 16 x10, see Nite 1 below125 LMV MINIMUM OUTPUT OIL Unsigned Int 16 x10, see Nite 1 below126 LMV MAXIMUM OUTPUT OIL Unsigned Int 16 x10, see Nite 1 below127* R LMV LOAD LIMIT MODULATING Unsigned Int 16 x10, see Nite 1 below128* R LMV LOAD LIMIT STAGING Unsigned Int 16 0=S1,1=S2,2=S3129 LMV TEMP LIMIT ON TH ESHOLD Signed Int 16 x10, -50% to 0%130 LMV ANGE TEMPE ATU E SENSO Unsigned Int 16 0=302W,1=752W,2=1562W131 LMV ADAPTION ACTIVE Unsigned Int 16 0=inactve,1=actve132 LMV ADAPTION STATE Unsigned Int 16 see Nite 5 below133 R LMV STA T ADAPTION Unsigned Int 16 0=reset,1=start,2=abort134* R LMV ADAPTION OUTPUT Unsigned Int 16 x10135* R LMV P-VALUE Unsigned Int 16 x10136* R LMV I-VALUE Unsigned Int 16137* R LMV D-VALUE Unsigned Int 16140 OPE ATION MODE WUEL 0 Unsigned Int 16 see Nite 8 below141 OPE ATION MODE WUEL 1 Unsigned Int 16 see Nite 8 below142 CYCLES EVE T TO PILOT Unsigned Int 32144 LOR ANGE T IM WUEL 0 Signed Int 16 x10145 HIGH ANGE T IM WUEL 0 Signed Int 16 x10146 LOR ANGE T IM WUEL 1 Signed Int 16 x10147 HIGH ANGE T IM WUEL 1 Signed Int 16 x10148 ANALOG INPUT T IM Signed Int 16 x10149 CU ENT T IM CO ECTION Signed Int 16 x10150 ABSOLUTE SPEED PM Unsigned Int 16151 MAINS VOLTAGE Unsigned Int 16

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES158 EQUIPMENT WAULTS Unsigned Int 16 word of bits

158 bit 0 EQUIPMENT WAULT LMV5 Boolean158 bit 1 EQUIPMENT WAULT LMV3 Boolean158 bit 2 EQUIPMENT WAULT RW10 LC Boolean158 bit 3 EQUIPMENT WAULT RW40 LC Boolean158 bit 4 EQUIPMENT WAULT RW55 LC Boolean158 bit 5 EQUIPMENT WAULT RW40 WR Boolean158 bit 6 EQUIPMENT WAULT RW55 WR Boolean158 bit 7 EQUIPMENT WAULT EA Boolean158 bit 8 EQUIPMENT WAULT VSD Boolean159 R LOCKOUT ST ING CODE TO LOOKUP Unsigned Int 16 see Nite 6 below160 LOOKUP LOCKOUT CODE ST ING String (40 words) see Nite 6 below180 CU ENT PHASE ST ING String (40 words)200 LMV5 40 UNMANIPULATED Unsigned Int 16 0=auto,1=on,2=off201 R EMOTE CONT OL HAND-OWW-AUTO Unsigned Int 16 0=hand,1=off,2=auto202 R EMOTE CONT OL MANUAL MODE Unsigned Int 16 0=inactve,1=actve203 R EMOTE CONT OL MANUAL OUTPUT Unsigned Int 16 x10210 CU ENT WUEL AI POINT 0 Unsigned Int 16 x10211 CU ENT WUEL AI POINT 1 Unsigned Int 16 x10212 CU ENT WUEL AI POINT 2 Unsigned Int 16 x10213 CU ENT WUEL AI POINT 3 Unsigned Int 16 x10214 CU ENT WUEL AI POINT 4 Unsigned Int 16 x10215 CU ENT WUEL AI POINT 5 Unsigned Int 16 x10216 CU ENT WUEL AI POINT 6 Unsigned Int 16 x10217 CU ENT WUEL AI POINT 7 Unsigned Int 16 x10218 CU ENT WUEL AI POINT 8 Unsigned Int 16 x10219 CU ENT WUEL AI POINT 9 Unsigned Int 16 x10220 CU ENT WUEL AI POINT 10 Unsigned Int 16 x10221 CU ENT WUEL AI POINT 11 Unsigned Int 16 x10222 CU ENT WUEL AI POINT 12 Unsigned Int 16 x10223 CU ENT WUEL AI POINT 13 Unsigned Int 16 x10224 CU ENT WUEL AI POINT 14 Unsigned Int 16 x10225 CU ENT WUEL AI POINT 15 Unsigned Int 16 x10226 CU ENT WUEL AI POINT 16 Unsigned Int 16 x10227 CU ENT WUEL AI POINT 17 Unsigned Int 16 x10228 CU ENT WUEL AI POINT 18 Unsigned Int 16 x10229 CU ENT WUEL AI POINT 19 Unsigned Int 16 x10230 CU ENT WUEL AI POINT 20 Unsigned Int 16 x10231 CU ENT WUEL WUEL POINT 0 Unsigned Int 16 x10232 CU ENT WUEL WUEL POINT 1 Unsigned Int 16 x10233 CU ENT WUEL WUEL POINT 2 Unsigned Int 16 x10234 CU ENT WUEL WUEL POINT 3 Unsigned Int 16 x10235 CU ENT WUEL WUEL POINT 4 Unsigned Int 16 x10236 CU ENT WUEL WUEL POINT 5 Unsigned Int 16 x10237 CU ENT WUEL WUEL POINT 6 Unsigned Int 16 x10238 CU ENT WUEL WUEL POINT 7 Unsigned Int 16 x10239 CU ENT WUEL WUEL POINT 8 Unsigned Int 16 x10240 CU ENT WUEL WUEL POINT 9 Unsigned Int 16 x10241 CU ENT WUEL WUEL POINT 10 Unsigned Int 16 x10

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES242 CU ENT WUEL WUEL POINT 11 Unsigned Int 16 x10243 CU ENT WUEL WUEL POINT 12 Unsigned Int 16 x10244 CU ENT WUEL WUEL POINT 13 Unsigned Int 16 x10245 CU ENT WUEL WUEL POINT 14 Unsigned Int 16 x10246 CU ENT WUEL WUEL POINT 15 Unsigned Int 16 x10247 CU ENT WUEL WUEL POINT 16 Unsigned Int 16 x10248 CU ENT WUEL WUEL POINT 17 Unsigned Int 16 x10249 CU ENT WUEL WUEL POINT 18 Unsigned Int 16 x10250 CU ENT WUEL WUEL POINT 19 Unsigned Int 16 x10251 CU ENT WUEL WUEL POINT 20 Unsigned Int 16 x10252 CU ENT WUEL VSD POINT 0 Unsigned Int 16 x10253 CU ENT WUEL VSD POINT 1 Unsigned Int 16 x10254 CU ENT WUEL VSD POINT 2 Unsigned Int 16 x10255 CU ENT WUEL VSD POINT 3 Unsigned Int 16 x10256 CU ENT WUEL VSD POINT 4 Unsigned Int 16 x10257 CU ENT WUEL VSD POINT 5 Unsigned Int 16 x10258 CU ENT WUEL VSD POINT 6 Unsigned Int 16 x10259 CU ENT WUEL VSD POINT 7 Unsigned Int 16 x10260 CU ENT WUEL VSD POINT 8 Unsigned Int 16 x10261 CU ENT WUEL VSD POINT 9 Unsigned Int 16 x10262 CU ENT WUEL VSD POINT 10 Unsigned Int 16 x10263 CU ENT WUEL VSD POINT 11 Unsigned Int 16 x10264 CU ENT WUEL VSD POINT 12 Unsigned Int 16 x10265 CU ENT WUEL VSD POINT 13 Unsigned Int 16 x10266 CU ENT WUEL VSD POINT 14 Unsigned Int 16 x10267 CU ENT WUEL VSD POINT 15 Unsigned Int 16 x10268 CU ENT WUEL VSD POINT 16 Unsigned Int 16 x10269 CU ENT WUEL VSD POINT 17 Unsigned Int 16 x10270 CU ENT WUEL VSD POINT 18 Unsigned Int 16 x10271 CU ENT WUEL VSD POINT 19 Unsigned Int 16 x10272 CU ENT WUEL VSD POINT 20 Unsigned Int 16 x10273 CU ENT WUEL AUX POINT 0 Unsigned Int 16 x10274 CU ENT WUEL AUX POINT 1 Unsigned Int 16 x10275 CU ENT WUEL AUX POINT 2 Unsigned Int 16 x10276 CU ENT WUEL AUX POINT 3 Unsigned Int 16 x10277 CU ENT WUEL AUX POINT 4 Unsigned Int 16 x10278 CU ENT WUEL AUX POINT 5 Unsigned Int 16 x10279 CU ENT WUEL AUX POINT 6 Unsigned Int 16 x10280 CU ENT WUEL AUX POINT 7 Unsigned Int 16 x10281 CU ENT WUEL AUX POINT 8 Unsigned Int 16 x10282 CU ENT WUEL AUX POINT 9 Unsigned Int 16 x10283 CU ENT WUEL AUX POINT 10 Unsigned Int 16 x10284 CU ENT WUEL AUX POINT 11 Unsigned Int 16 x10285 CU ENT WUEL AUX POINT 12 Unsigned Int 16 x10286 CU ENT WUEL AUX POINT 13 Unsigned Int 16 x10287 CU ENT WUEL AUX POINT 14 Unsigned Int 16 x10288 CU ENT WUEL AUX POINT 15 Unsigned Int 16 x10289 CU ENT WUEL AUX POINT 16 Unsigned Int 16 x10290 CU ENT WUEL AUX POINT 17 Unsigned Int 16 x10

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES291 CU ENT WUEL AUX POINT 18 Unsigned Int 16 x10292 CU ENT WUEL AUX POINT 19 Unsigned Int 16 x10293 CU ENT WUEL AUX POINT 20 Unsigned Int 16 x10294 CU ENT WUEL SHOR AI Unsigned Int 16 0=no,1=yes295 CU ENT WUEL SHOR WUEL Unsigned Int 16 0=no,1=yes296 CU ENT WUEL SHOR VSD Unsigned Int 16 0=no,1=yes297 CU ENT WUEL SHOR AUX Unsigned Int 16 0=no,1=yes298 CU ENT WUEL MIN LOAD Unsigned Int 16299 CU ENT WUEL MAX LOAD Unsigned Int 16300 RW LC INPUT RO D Unsigned Int 16

300 bit 12 RW LC INPUT 1 WAULT Boolean300 bit 13 RW LC INPUT 2 WAULT Boolean300 bit 14 RW LC INPUT 3 WAULT Boolean301 RW LC OUTPUT RO D Unsigned Int 16

301 bit 0 RW LC STAGE MODE Boolean301 bit 1 RW LC MANUAL OPE ATION Boolean301 bit 2 RW LC BINA Y INPUT 1 Boolean301 bit 3 RW LC BINA Y INPUT 2 Boolean301 bit 4 RW LC STAT ACTIVE Boolean301 bit 5 RW LC UP ACTIVE Boolean301 bit 6 RW LC DORN ACTIVE Boolean301 bit 7 RW LC K6 ACTIVE Boolean302 RW LC E1 U16 Unsigned Int 16 x10303 RW LC E2 U16 Unsigned Int 16 x10304 RW LC E3 U16 Unsigned Int 16 x10305 RW LC R U16 CU ENT SP Unsigned Int 16 x10306 R RW LC SP1 U16 Unsigned Int 16 x10307 R RW LC SP2 U16 Unsigned Int 16 x10308 R RW LC AL U16 ALA M SP Unsigned Int 16 x10309 R RW LC PB1 U16 P OPO TIONAL Unsigned Int 16 x10310 R RW LC DT U16 DE IVATIVE Unsigned Int 16 x10311 R RW LC T U16 INTEG AL Unsigned Int 16 x10312 R RW LC HYS1 U16 Unsigned Int 16 x10313 R RW LC HYS3 U16 Unsigned Int 16 x10314 R RW LC DTT U16 RATCHDOG Unsigned Int 16 x10315 RW LC E3 U16 UNWILTE ED Unsigned Int 16 x10316 R RW LC EM EMOTE OPE ATION Unsigned Int 16 0=local,1=SP,2=fring rate317 R RW LC OWW EMOTE OWW Unsigned Int 16 0=on,1=off318 R RW LC K1 EM BU NE CONT OL Unsigned Int 16 0=off,1-on319 R RW LC K6 EMOTE K6 CONT OL Unsigned Int 16 0=off,1-on320 R RW LC SP U16 EMOTE SETPOINT Unsigned Int 16 x10321 R RW LC Y U16 EMOTE OUTPUT Unsigned Int 16 x10322 RW LC Y U16 OUTPUT Unsigned Int 16 x10330 RW LC E1 WLOAT Wloat 32332 RW LC E2 WLOAT Wloat 32334 RW LC E3 WLOAT Wloat 32336 RW LC R WLOAT CU ENT SP Wloat 32338 R RW LC SP1 WLOAT Wloat 32340 R RW LC SP2 WLOAT Wloat 32

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES342 R RW LC AL WLOAT ALA M SP Wloat 32344 R RW LC PB1 WLOAT P OPO TIONAL Wloat 32346 R RW LC DT WLOAT DE IVATIVE Wloat 32348 R RW LC T WLOAT INTEG AL Wloat 32350 R RW LC HYS1 WLOAT Wloat 32352 R RW LC HYS3 WLOAT Wloat 32354 R RW LC DTT WLOAT RATCHDOG Wloat 32356 R RW LC E3 WLOAT UNWILTE ED Wloat 32358 R RW LC SP WLOAT EMOTE SETPOINT Wloat 32360 R RW LC Y WLOAT EMOTE OUTPUT Wloat 32362 RW LC Y WLOAT OUTPUT Wloat 32370 RW WR INPUT RO D Unsigned Int 16

370 bit 12 RW WR INPUT 1 WAULT Boolean370 bit 13 RW WR INPUT 2 WAULT Boolean370 bit 14 RW WR INPUT 3 WAULT Boolean371 RW WR OUTPUT RO D Unsigned Int 16

371 bit 0 RW WR STAGE MODE Boolean371 bit 1 RW WR MANUAL OPE ATION Boolean371 bit 2 RW WR BINA Y INPUT 1 Boolean371 bit 3 RW WR BINA Y INPUT 2 Boolean371 bit 4 RW WR STAT ACTIVE Boolean371 bit 5 RW WR UP ACTIVE Boolean371 bit 6 RW WR DORN ACTIVE Boolean371 bit 7 RW WR K6 ACTIVE Boolean372 RW WR LEVEL PE CENT Unsigned Int 16373 RW WR SETPOINT PE CENT Unsigned Int 16374 RW WR E1 U16 Unsigned Int 16 x10375 RW WR E2 U16 Unsigned Int 16 x10376 RW WR E3 U16 Unsigned Int 16 x10377 RW WR R U16 CU ENT SP Unsigned Int 16 x10378 R RW WR SP1 U16 Unsigned Int 16 x10379 RW WR SP2 U16 Unsigned Int 16 x10380 RW WR Y U16 Unsigned Int 16 x10382 RW WR E1 WLOAT Wloat 32384 RW WR E2 WLOAT Wloat 32386 RW WR E3 WLOAT Wloat 32388 RW WR R WLOAT CU ENT SP Wloat 32390 R RW WR SP1 WLOAT Wloat 32392 RW WR SP2 WLOAT Wloat 32394 RW WR Y WLOAT Wloat 32400 LMV LOCKOUT E O CODE CU ENT Unsigned Int 16 see LMV... Lickiut/Errir Cides401 LMV LOCKOUT DIAG CODE CU ENT Unsigned Int 16 see LMV... Lickiut/Errir Cides402 LMV LOCKOUT E CLASS CU ENT Unsigned Int 16 not used403 LMV LOCKOUT E PHASE CU ENT Unsigned Int 16 see LMV Phases404 LMV LOCKOUT WUEL CU ENT Unsigned Int 16 0=gas/fuel0,1=oil/fuel405 LMV LOCKOUT OUTPUT CU ENT Unsigned Int 16 x10, see Nite 1 below406 LMV LOCKOUT YEA 2-DIG CU ENT Unsigned Int 16407 LMV LOCKOUT MONTH CU ENT Unsigned Int 16408 LMV LOCKOUT DAY CU ENT Unsigned Int 16

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES409 LMV LOCKOUT HOU CU ENT Unsigned Int 16410 LMV LOCKOUT MINUTE CU ENT Unsigned Int 16411 LMV LOCKOUT SECOND CU ENT Unsigned Int 16412 LMV LOCKOUT STA TUPS CU ENT Unsigned Int 32414 LMV LOCKOUT HOU S CU ENT Unsigned Int 32416 LMV LOCKOUT E O CODE -1 Unsigned Int 16 see LMV... Lickiut/Errir Cides417 LMV LOCKOUT DIAG CODE -1 Unsigned Int 16 see LMV... Lickiut/Errir Cides418 LMV LOCKOUT E O CLASS -1 Unsigned Int 16 not used419 LMV LOCKOUT E O PHASE -1 Unsigned Int 16 see LMV Phases420 LMV LOCKOUT WUEL -1 Unsigned Int 16 0=gas/fuel0,1=oil/fuel421 LMV LOCKOUT OUTPUT -1 Unsigned Int 16 x10, see Nite 1 below422 LMV LOCKOUT YEA 2-DIG -1 Unsigned Int 16423 LMV LOCKOUT MONTH -1 Unsigned Int 16424 LMV LOCKOUT DAY -1 Unsigned Int 16425 LMV LOCKOUT HOU -1 Unsigned Int 16426 LMV LOCKOUT MINUTE -1 Unsigned Int 16427 LMV LOCKOUT SECOND -1 Unsigned Int 16428 LMV LOCKOUT STA TUPS -1 Unsigned Int 32430 LMV LOCKOUT HOU S -1 Unsigned Int 32432 LMV LOCKOUT E O CODE -2 Unsigned Int 16 see LMV... Lickiut/Errir Cides433 LMV LOCKOUT DIAG CODE -2 Unsigned Int 16 see LMV... Lickiut/Errir Cides434 LMV LOCKOUT E O CLASS -2 Unsigned Int 16 not used435 LMV LOCKOUT E O PHASE -2 Unsigned Int 16 see LMV Phases436 LMV LOCKOUT WUEL -2 Unsigned Int 16 0=gas/fuel0,1=oil/fuel437 LMV LOCKOUT OUTPUT -2 Unsigned Int 16 x10, see Nite 1 below438 LMV LOCKOUT YEA 2-DIG -2 Unsigned Int 16439 LMV LOCKOUT MONTH -2 Unsigned Int 16440 LMV LOCKOUT DAY -2 Unsigned Int 16441 LMV LOCKOUT HOU -2 Unsigned Int 16442 LMV LOCKOUT MINUTE -2 Unsigned Int 16443 LMV LOCKOUT SECOND -2 Unsigned Int 16444 LMV LOCKOUT STA TUPS -2 Unsigned Int 32446 LMV LOCKOUT HOU S -2 Unsigned Int 32448 LMV LOCKOUT E O CODE -3 Unsigned Int 16 see LMV... Lickiut/Errir Cides449 LMV LOCKOUT DIAG CODE -3 Unsigned Int 16 see LMV... Lickiut/Errir Cides450 LMV LOCKOUT E O CLASS -3 Unsigned Int 16 not used451 LMV LOCKOUT E O PHASE -3 Unsigned Int 16 see LMV Phases452 LMV LOCKOUT WUEL -3 Unsigned Int 16 0=gas/fuel0,1=oil/fuel453 LMV LOCKOUT OUTPUT -3 Unsigned Int 16 x10, see Nite 1 below454 LMV LOCKOUT YEA 2-DIG -3 Unsigned Int 16455 LMV LOCKOUT MONTH -3 Unsigned Int 16456 LMV LOCKOUT DAY -3 Unsigned Int 16457 LMV LOCKOUT HOU -3 Unsigned Int 16458 LMV LOCKOUT MINUTE -3 Unsigned Int 16459 LMV LOCKOUT SECOND -3 Unsigned Int 16460 LMV LOCKOUT STA TUPS -3 Unsigned Int 32462 LMV LOCKOUT HOU S -3 Unsigned Int 32464 LMV LOCKOUT E O CODE -4 Unsigned Int 16 see LMV... Lickiut/Errir Cides465 LMV LOCKOUT DIAG CODE -4 Unsigned Int 16 see LMV... Lickiut/Errir Cides

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Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES466 LMV LOCKOUT E O CLASS -4 Unsigned Int 16 not used467 LMV LOCKOUT E O PHASE -4 Unsigned Int 16 see LMV Phases468 LMV LOCKOUT WUEL -4 Unsigned Int 16 0=gas/fuel0,1=oil/fuel469 LMV LOCKOUT OUTPUT -4 Unsigned Int 16 x10, see Nite 1 below470 LMV LOCKOUT YEA 2-DIG -4 Unsigned Int 16471 LMV LOCKOUT MONTH -4 Unsigned Int 16472 LMV LOCKOUT DAY -4 Unsigned Int 16473 LMV LOCKOUT HOU -4 Unsigned Int 16474 LMV LOCKOUT MINUTE -4 Unsigned Int 16475 LMV LOCKOUT SECOND -4 Unsigned Int 16476 LMV LOCKOUT STA TUPS -4 Unsigned Int 32478 LMV LOCKOUT HOU S -4 Unsigned Int 32480 LMV LOCKOUT E O CODE -5 Unsigned Int 16 see LMV... Lickiut/Errir Cides481 LMV LOCKOUT DIAG CODE -5 Unsigned Int 16 see LMV... Lickiut/Errir Cides482 LMV LOCKOUT E O CLASS -5 Unsigned Int 16 not used483 LMV LOCKOUT E O PHASE -5 Unsigned Int 16 see LMV Phases484 LMV LOCKOUT WUEL -5 Unsigned Int 16 0=gas/fuel0,1=oil/fuel485 LMV LOCKOUT OUTPUT -5 Unsigned Int 16 x10, see Nite 1 below486 LMV LOCKOUT YEA 2-DIG -5 Unsigned Int 16487 LMV LOCKOUT MONTH -5 Unsigned Int 16488 LMV LOCKOUT DAY -5 Unsigned Int 16489 LMV LOCKOUT HOU -5 Unsigned Int 16490 LMV LOCKOUT MINUTE -5 Unsigned Int 16491 LMV LOCKOUT SECOND -5 Unsigned Int 16492 LMV LOCKOUT STA TUPS -5 Unsigned Int 32494 LMV LOCKOUT HOU S -5 Unsigned Int 32496 LMV LOCKOUT E O CODE -6 Unsigned Int 16 see LMV... Lickiut/Errir Cides497 LMV LOCKOUT DIAG CODE -6 Unsigned Int 16 see LMV... Lickiut/Errir Cides498 LMV LOCKOUT E O CLASS -6 Unsigned Int 16 not used499 LMV LOCKOUT E O PHASE -6 Unsigned Int 16 see LMV Phases500 LMV LOCKOUT WUEL -6 Unsigned Int 16 0=gas/fuel0,1=oil/fuel501 LMV LOCKOUT OUTPUT -6 Unsigned Int 16 x10, see Nite 1 below502 LMV LOCKOUT YEA 2-DIG -6 Unsigned Int 16503 LMV LOCKOUT MONTH -6 Unsigned Int 16504 LMV LOCKOUT DAY -6 Unsigned Int 16505 LMV LOCKOUT HOU -6 Unsigned Int 16506 LMV LOCKOUT MINUTE -6 Unsigned Int 16507 LMV LOCKOUT SECOND -6 Unsigned Int 16508 LMV LOCKOUT STA TUPS -6 Unsigned Int 32510 LMV LOCKOUT HOU S -6 Unsigned Int 32512 LMV LOCKOUT E O CODE -7 Unsigned Int 16 see LMV... Lickiut/Errir Cides513 LMV LOCKOUT DIAG CODE -7 Unsigned Int 16 see LMV... Lickiut/Errir Cides514 LMV LOCKOUT E O CLASS -7 Unsigned Int 16 not used515 LMV LOCKOUT E O PHASE -7 Unsigned Int 16 see LMV Phases516 LMV LOCKOUT WUEL -7 Unsigned Int 16 0=gas/fuel0,1=oil/fuel517 LMV LOCKOUT OUTPUT -7 Unsigned Int 16 x10, see Nite 1 below518 LMV LOCKOUT YEA 2-DIG -7 Unsigned Int 16519 LMV LOCKOUT MONTH -7 Unsigned Int 16520 LMV LOCKOUT DAY -7 Unsigned Int 16

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TS Series Installaton InstructonsDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES521 LMV LOCKOUT HOU -7 Unsigned Int 16522 LMV LOCKOUT MINUTE -7 Unsigned Int 16523 LMV LOCKOUT SECOND -7 Unsigned Int 16524 LMV LOCKOUT STA TUPS -7 Unsigned Int 32526 LMV LOCKOUT HOU S -7 Unsigned Int 32528 LMV LOCKOUT E O CODE -8 Unsigned Int 16 see LMV... Lickiut/Errir Cides529 LMV LOCKOUT DIAG CODE -8 Unsigned Int 16 see LMV... Lickiut/Errir Cides530 LMV LOCKOUT E O CLASS -8 Unsigned Int 16 not used531 LMV LOCKOUT E O PHASE -8 Unsigned Int 16 see LMV Phases532 LMV LOCKOUT WUEL -8 Unsigned Int 16 0=gas/fuel0,1=oil/fuel533 LMV LOCKOUT OUTPUT -8 Unsigned Int 16 x10, see Nite 1 below534 LMV LOCKOUT YEA 2-DIG -8 Unsigned Int 16535 LMV LOCKOUT MONTH -8 Unsigned Int 16536 LMV LOCKOUT DAY -8 Unsigned Int 16537 LMV LOCKOUT HOU -8 Unsigned Int 16538 LMV LOCKOUT MINUTE -8 Unsigned Int 16539 LMV LOCKOUT SECOND -8 Unsigned Int 16540 LMV LOCKOUT STA TUPS -8 Unsigned Int 32542 LMV LOCKOUT HOU S -8 Unsigned Int 32544 LMV E O E O CODE CU ENT Unsigned Int 16 see LMV... Lickiut/Errir Cides545 LMV E O DIAG CODE CU ENT Unsigned Int 16 see LMV... Lickiut/Errir Cides546 LMV E O E O CLASS CU ENT Unsigned Int 16 not used547 LMV E O E O PHASE CU ENT Unsigned Int 16 see LMV Phases548 LMV E O WUEL CU ENT Unsigned Int 16 0=gas/fuel0,1=oil/fuel549 LMV E O OUTPUT CU ENT Unsigned Int 16 x10, see Nite 1 below550 LMV E O STA TUPS CU ENT Unsigned Int 32552 LMV E O E O CODE -1 Unsigned Int 16 see LMV... Lickiut/Errir Cides553 LMV E O DIAG CODE -1 Unsigned Int 16 see LMV... Lickiut/Errir Cides554 LMV E O E O CLASS -1 Unsigned Int 16 not used555 LMV E O E O PHASE -1 Unsigned Int 16 see LMV Phases556 LMV E O WUEL -1 Unsigned Int 16 0=gas/fuel0,1=oil/fuel557 LMV E O OUTPUT -1 Unsigned Int 16 x10, see Nite 1 below558 LMV E O STA TUPS -1 Unsigned Int 32560 LMV E O E O CODE -2 Unsigned Int 16 see LMV... Lickiut/Errir Cides561 LMV E O DIAG CODE -2 Unsigned Int 16 see LMV... Lickiut/Errir Cides562 LMV E O E O CLASS -2 Unsigned Int 16 not used563 LMV E O E O PHASE -2 Unsigned Int 16 see LMV Phases564 LMV E O WUEL -2 Unsigned Int 16 0=gas/fuel0,1=oil/fuel565 LMV E O OUTPUT -2 Unsigned Int 16 x10, see Nite 1 below566 LMV E O STA TUPS -2 Unsigned Int 32568 LMV E O E O CODE -3 Unsigned Int 16 see LMV... Lickiut/Errir Cides569 LMV E O DIAG CODE -3 Unsigned Int 16 see LMV... Lickiut/Errir Cides570 LMV E O E O CLASS -3 Unsigned Int 16 not used571 LMV E O E O PHASE -3 Unsigned Int 16 see LMV Phases572 LMV E O WUEL -3 Unsigned Int 16 0=gas/fuel0,1=oil/fuel573 LMV E O OUTPUT -3 Unsigned Int 16 x10, see Nite 1 below574 LMV E O STA TUPS -3 Unsigned Int 32576 LMV E O E O CODE -4 Unsigned Int 16 see LMV... Lickiut/Errir Cides577 LMV E O DIAG CODE -4 Unsigned Int 16 see LMV... Lickiut/Errir Cides

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Installaton Instructons TS SeriesDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES578 LMV E O E O CLASS -4 Unsigned Int 16 not used579 LMV E O E O PHASE -4 Unsigned Int 16 see LMV Phases580 LMV E O WUEL -4 Unsigned Int 16 0=gas/fuel0,1=oil/fuel581 LMV E O OUTPUT -4 Unsigned Int 16 x10, see Nite 1 below582 LMV E O STA TUPS -4 Unsigned Int 32584 LMV E O E O CODE -5 Unsigned Int 16 see LMV... Lickiut/Errir Cides585 LMV E O DIAG CODE -5 Unsigned Int 16 see LMV... Lickiut/Errir Cides586 LMV E O E O CLASS -5 Unsigned Int 16 not used587 LMV E O E O PHASE -5 Unsigned Int 16 see LMV Phases588 LMV E O WUEL -5 Unsigned Int 16 0=gas/fuel0,1=oil/fuel589 LMV E O OUTPUT -5 Unsigned Int 16 x10, see Nite 1 below590 LMV E O STA TUPS -5 Unsigned Int 32592 LMV E O E O CODE -6 Unsigned Int 16 see LMV... Lickiut/Errir Cides593 LMV E O DIAG CODE -6 Unsigned Int 16 see LMV... Lickiut/Errir Cides594 LMV E O E O CLASS -6 Unsigned Int 16 not used595 LMV E O E O PHASE -6 Unsigned Int 16 see LMV Phases596 LMV E O WUEL -6 Unsigned Int 16 0=gas/fuel0,1=oil/fuel597 LMV E O OUTPUT -6 Unsigned Int 16 x10, see Nite 1 below598 LMV E O STA TUPS -6 Unsigned Int 32600 LMV E O E O CODE -7 Unsigned Int 16 see LMV... Lickiut/Errir Cides601 LMV E O DIAG CODE -7 Unsigned Int 16 see LMV... Lickiut/Errir Cides602 LMV E O E O CLASS -7 Unsigned Int 16 not used603 LMV E O E O PHASE -7 Unsigned Int 16 see LMV Phases604 LMV E O WUEL -7 Unsigned Int 16 0=gas/fuel0,1=oil/fuel605 LMV E O OUTPUT -7 Unsigned Int 16 x10, see Nite 1 below606 LMV E O STA TUPS -7 Unsigned Int 32608 LMV E O E O CODE -8 Unsigned Int 16 see LMV... Lickiut/Errir Cides609 LMV E O DIAG CODE -8 Unsigned Int 16 see LMV... Lickiut/Errir Cides610 LMV E O E O CLASS -8 Unsigned Int 16 not used611 LMV E O E O PHASE -8 Unsigned Int 16 see LMV Phases612 LMV E O WUEL -8 Unsigned Int 16 0=gas/fuel0,1=oil/fuel613 LMV E O OUTPUT -8 Unsigned Int 16 x10, see Nite 1 below614 LMV E O STA TUPS -8 Unsigned Int 32616 LMV E O E O CODE -9 Unsigned Int 16 see LMV... Lickiut/Errir Cides617 LMV E O DIAG CODE -9 Unsigned Int 16 see LMV... Lickiut/Errir Cides618 LMV E O E O CLASS -9 Unsigned Int 16 not used619 LMV E O E O PHASE -9 Unsigned Int 16 see LMV Phases620 LMV E O WUEL -9 Unsigned Int 16 0=gas/fuel0,1=oil/fuel621 LMV E O OUTPUT -9 Unsigned Int 16 x10, see Nite 1 below622 LMV E O STA TUPS -9 Unsigned Int 32624 LMV E O E O CODE -10 Unsigned Int 16 see LMV... Lickiut/Errir Cides625 LMV E O DIAG CODE -10 Unsigned Int 16 see LMV... Lickiut/Errir Cides626 LMV E O E O CLASS -10 Unsigned Int 16 not used627 LMV E O E O PHASE -10 Unsigned Int 16 see LMV Phases628 LMV E O WUEL -10 Unsigned Int 16 0=gas/fuel0,1=oil/fuel629 LMV E O OUTPUT -10 Unsigned Int 16 x10, see Nite 1 below630 LMV E O STA TUPS -10 Unsigned Int 32632 LMV E O E O CODE -11 Unsigned Int 16 see LMV... Lickiut/Errir Cides633 LMV E O DIAG CODE -11 Unsigned Int 16 see LMV... Lickiut/Errir Cides

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TS Series Installaton InstructonsDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES634 LMV E O E O CLASS -11 Unsigned Int 16 not used635 LMV E O E O PHASE -11 Unsigned Int 16 see LMV Phases636 LMV E O WUEL -11 Unsigned Int 16 0=gas/fuel0,1=oil/fuel637 LMV E O OUTPUT -11 Unsigned Int 16 x10, see Nite 1 below638 LMV E O STA TUPS -11 Unsigned Int 32640 LMV E O E O CODE -12 Unsigned Int 16 see LMV... Lickiut/Errir Cides641 LMV E O DIAG CODE -12 Unsigned Int 16 see LMV... Lickiut/Errir Cides642 LMV E O E O CLASS -12 Unsigned Int 16 not used643 LMV E O E O PHASE -12 Unsigned Int 32 see LMV Phases644 LMV E O WUEL -12 Unsigned Int 16 0=gas/fuel0,1=oil/fuel645 LMV E O OUTPUT -12 Unsigned Int 16 x10, see Nite 1 below646 LMV E O STA TUPS -12 Unsigned Int 16648 LMV E O E O CODE -13 Unsigned Int 16 see LMV... Lickiut/Errir Cides649 LMV E O DIAG CODE -13 Unsigned Int 16 see LMV... Lickiut/Errir Cides650 LMV E O E O CLASS -13 Unsigned Int 16 not used651 LMV E O E O PHASE -13 Unsigned Int 16 see LMV Phases652 LMV E O WUEL -13 Unsigned Int 16 0=gas/fuel0,1=oil/fuel653 LMV E O OUTPUT -13 Unsigned Int 16 x10, see Nite 1 below654 LMV E O STA TUPS -13 Unsigned Int 32656 LMV E O E O CODE -14 Unsigned Int 16 see LMV... Lickiut/Errir Cides657 LMV E O DIAG CODE -14 Unsigned Int 16 see LMV... Lickiut/Errir Cides658 LMV E O E O CLASS -14 Unsigned Int 16 not used659 LMV E O E O PHASE -14 Unsigned Int 16 see LMV Phases660 LMV E O WUEL -14 Unsigned Int 16 0=gas/fuel0,1=oil/fuel661 LMV E O OUTPUT -14 Unsigned Int 16 x10, see Nite 1 below662 LMV E O STA TUPS -14 Unsigned Int 32664 LMV E O E O CODE -15 Unsigned Int 16 see LMV... Lickiut/Errir Cides665 LMV E O DIAG CODE -15 Unsigned Int 16 see LMV... Lickiut/Errir Cides666 LMV E O E O CLASS -15 Unsigned Int 16 not used667 LMV E O E O PHASE -15 Unsigned Int 16 see LMV Phases668 LMV E O WUEL -15 Unsigned Int 16 0=gas/fuel0,1=oil/fuel669 LMV E O OUTPUT -15 Unsigned Int 16 x10, see Nite 1 below670 LMV E O STA TUPS -15 Unsigned Int 32672 LMV E O E O CODE -16 Unsigned Int 16 see LMV... Lickiut/Errir Cides673 LMV E O DIAG CODE -16 Unsigned Int 16 see LMV... Lickiut/Errir Cides674 LMV E O E O CLASS -16 Unsigned Int 16 not used675 LMV E O E O PHASE -16 Unsigned Int 16 see LMV Phases676 LMV E O WUEL -16 Unsigned Int 16 0=gas/fuel0,1=oil/fuel677 LMV E O OUTPUT -16 Unsigned Int 16 x10, see Nite 1 below678 LMV E O STA TUPS -16 Unsigned Int 32680 LMV E O E O CODE -17 Unsigned Int 16 see LMV... Lickiut/Errir Cides681 LMV E O DIAG CODE -17 Unsigned Int 16 see LMV... Lickiut/Errir Cides682 LMV E O E O CLASS -17 Unsigned Int 16 not used683 LMV E O E O PHASE -17 Unsigned Int 16 see LMV Phases684 LMV E O WUEL -17 Unsigned Int 16 0=gas/fuel0,1=oil/fuel685 LMV E O OUTPUT -17 Unsigned Int 16 x10, see Nite 1 below686 LMV E O STA TUPS -17 Unsigned Int 32688 LMV E O E O CODE -18 Unsigned Int 16 see LMV... Lickiut/Errir Cides689 LMV E O DIAG CODE -18 Unsigned Int 16 see LMV... Lickiut/Errir Cides

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Installaton Instructons TS SeriesDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES690 LMV E O E O CLASS -18 Unsigned Int 16 not used691 LMV E O E O PHASE -18 Unsigned Int 16 see LMV Phases692 LMV E O WUEL -18 Unsigned Int 16 0=gas/fuel0,1=oil/fuel693 LMV E O OUTPUT -18 Unsigned Int 16 x10, see Nite 1 below694 LMV E O STA TUPS -18 Unsigned Int 32696 LMV E O E O CODE -19 Unsigned Int 16 see LMV... Lickiut/Errir Cides697 LMV E O DIAG CODE -19 Unsigned Int 16 see LMV... Lickiut/Errir Cides698 LMV E O E O CLASS -19 Unsigned Int 16 not used699 LMV E O E O PHASE -19 Unsigned Int 16 see LMV Phases700 LMV E O WUEL -19 Unsigned Int 16 0=gas/fuel0,1=oil/fuel701 LMV E O OUTPUT -19 Unsigned Int 16 x10, see Nite 1 below702 LMV E O STA TUPS -19 Unsigned Int 32704 LMV E O E O CODE -20 Unsigned Int 16 see LMV... Lickiut/Errir Cides705 LMV E O DIAG CODE -20 Unsigned Int 16 see LMV... Lickiut/Errir Cides706 LMV E O E O CLASS -20 Unsigned Int 16 not used707 LMV E O E O PHASE -20 Unsigned Int 16 see LMV Phases708 LMV E O WUEL -20 Unsigned Int 16 0=gas/fuel0,1=oil/fuel709 LMV E O OUTPUT -20 Unsigned Int 16 x10, see Nite 1 below710 LMV E O STA TUPS -20 Unsigned Int 32712 LMV E O E O CODE -21 Unsigned Int 16 see LMV... Lickiut/Errir Cides713 LMV E O DIAG CODE -21 Unsigned Int 16 see LMV... Lickiut/Errir Cides714 LMV E O E O CLASS -21 Unsigned Int 16 not used715 LMV E O E O PHASE -21 Unsigned Int 16 see LMV Phases716 LMV E O WUEL -21 Unsigned Int 16 0=gas/fuel0,1=oil/fuel717 LMV E O OUTPUT -21 Unsigned Int 16 x10, see Nite 1 below718 LMV E O STA TUPS -21 Unsigned Int 32720 LMV E O E O CODE -22 Unsigned Int 16 see LMV... Lickiut/Errir Cides721 LMV E O DIAG CODE -22 Unsigned Int 16 see LMV... Lickiut/Errir Cides722 LMV E O E O CLASS -22 Unsigned Int 16 not used723 LMV E O E O PHASE -22 Unsigned Int 16 see LMV Phases724 LMV E O WUEL -22 Unsigned Int 16 0=gas/fuel0,1=oil/fuel725 LMV E O OUTPUT -22 Unsigned Int 16 x10, see Nite 1 below726 LMV E O STA TUPS -22 Unsigned Int 32728 LMV E O E O CODE -23 Unsigned Int 16 see LMV... Lickiut/Errir Cides729 LMV E O DIAG CODE -23 Unsigned Int 16 see LMV... Lickiut/Errir Cides730 LMV E O E O CLASS -23 Unsigned Int 16 not used731 LMV E O E O PHASE -23 Unsigned Int 16 see LMV Phases732 LMV E O WUEL -23 Unsigned Int 16 0=gas/fuel0,1=oil/fuel733 LMV E O OUTPUT -23 Unsigned Int 16 x10, see Nite 1 below734 LMV E O STA TUPS -23 Unsigned Int 32736 LMV E O E O CODE -24 Unsigned Int 16 see LMV... Lickiut/Errir Cides737 LMV E O DIAG CODE -24 Unsigned Int 16 see LMV... Lickiut/Errir Cides738 LMV E O E O CLASS -24 Unsigned Int 16 not used739 LMV E O E O PHASE -24 Unsigned Int 16 see LMV Phases740 LMV E O WUEL -24 Unsigned Int 16 0=gas/fuel0,1=oil/fuel741 LMV E O OUTPUT -24 Unsigned Int 16 x10, see Nite 1 below742 LMV E O STA TUPS -24 Unsigned Int 32744 USE VALUE 1 Unsigned Int 16 see Nite 7 below745 USE VALUE 2 Unsigned Int 16 see Nite 7 below

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TS Series Installaton InstructonsDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES746 USE VALUE 3 Unsigned Int 16 see Nite 7 below747 USE VALUE 4 Unsigned Int 16 see Nite 7 below748 USE VALUE 5 Unsigned Int 16 see Nite 7 below749 USE VALUE 6 Unsigned Int 16 see Nite 7 below750 USE VALUE 7 Unsigned Int 16 see Nite 7 below751 USE VALUE 8 Unsigned Int 16 see Nite 7 below752 USE VALUE 9 Unsigned Int 16 see Nite 7 below753 USE VALUE 10 Unsigned Int 16 see Nite 7 below754 USE VALUE 11 Unsigned Int 16 see Nite 7 below755 USE VALUE 12 Unsigned Int 16 see Nite 7 below756 USE VALUE 13 Unsigned Int 16 see Nite 7 below757 USE VALUE 14 Unsigned Int 16 see Nite 7 below758 USE VALUE 15 Unsigned Int 16 see Nite 7 below759 USE VALUE 16 Unsigned Int 16 see Nite 7 below760 RW EA1 INPUT RO D Unsigned Int 16

760 bit 12 RW EA1 INPUT 1 WAULT Boolean760 bit 13 RW EA1 INPUT 2 WAULT Boolean760 bit 14 RW EA1 INPUT 3 WAULT Boolean761 RW EA1 OUTPUT RO D Unsigned Int 16

761 bit 0 RW EA1 STAGE MODE Boolean761 bit 1 RW EA1 MANUAL OPE ATION Boolean761 bit 2 RW EA1 BINA Y INPUT 1 Boolean761 bit 3 RW EA1 BINA Y INPUT 2 Boolean761 bit 4 RW EA1 STAT ACTIVE Boolean761 bit 5 RW EA1 UP ACTIVE Boolean761 bit 6 RW EA1 DORN ACTIVE Boolean761 bit 7 RW EA1 K6 ACTIVE Boolean762 RW EA1 E1 U16 Unsigned Int 16 x10763 RW EA1 E2 U16 Unsigned Int 16 x10764 RW EA1 E3 U16 Unsigned Int 16 x10765 RW EA1 R U16 CU ENT SP Unsigned Int 16 x10766 RW EA1 SP1 U16 Unsigned Int 16 x10767 RW EA1 SP2 U16 Unsigned Int 16 x10768 RW EA1 AL U16 ALA M SP Unsigned Int 16 x10769 RW EA1 HYS1 U16 Unsigned Int 16 x10770 RW EA1 HYS3 U16 Unsigned Int 16 x10771 RW EA1 Y U16 OUTPUT Unsigned Int 16 x10780 RW EA2 INPUT RO D Unsigned Int 16

780 bit 12 RW EA2 INPUT 1 WAULT Boolean780 bit 13 RW EA2 INPUT 2 WAULT Boolean780 bit 14 RW EA2 INPUT 3 WAULT Boolean781 RW EA2 OUTPUT RO D Unsigned Int 16

781 bit 0 RW EA2 STAGE MODE Boolean781 bit 1 RW EA2 MANUAL OPE ATION Boolean781 bit 2 RW EA2 BINA Y INPUT 1 Boolean781 bit 3 RW EA2 BINA Y INPUT 2 Boolean781 bit 4 RW EA2 STAT ACTIVE Boolean781 bit 5 RW EA2 UP ACTIVE Boolean781 bit 6 RW EA2 DORN ACTIVE Boolean

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Installaton Instructons TS SeriesDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES781 bit 7 RW EA2 K6 ACTIVE Boolean782 RW EA2 E1 U16 Unsigned Int 16 x10783 RW EA2 E2 U16 Unsigned Int 16 x10784 RW EA2 E3 U16 Unsigned Int 16 x10785 RW EA2 R U16 CU ENT SP Unsigned Int 16 x10786 RW EA2 SP1 U16 Unsigned Int 16 x10787 RW EA2 SP2 U16 Unsigned Int 16 X10788 RW EA2 AL U16 ALA M SP Unsigned Int 16 x10789 RW EA2 HYS1 U16 Unsigned Int 16 x10790 RW EA2 HYS3 U16 Unsigned Int 16 x10791 RW EA2 Y U16 OUTPUT Unsigned Int 16 x10800 EA DIGITAL INPUT RO D Unsigned Int 16

800 bit 0 EA INPUT 1 Boolean800 bit 1 EA INPUT 2 Boolean800 bit 2 EA INPUT 3 Boolean800 bit 3 EA INPUT 4 Boolean800 bit 4 EA INPUT 5 Boolean800 bit 5 EA INPUT 6 Boolean800 bit 6 EA INPUT 7 Boolean800 bit 7 EA INPUT 8 Boolean800 bit 8 EA INPUT 9 Boolean800 bit 9 EA INPUT 10 Boolean800 bit 10 EA INPUT 11 Boolean800 bit 11 EA INPUT 12 Boolean800 bit 12 EA INPUT 13 Boolean801 EA STATUS RO D Unsigned Int 16

801 bit 0 EA PUMP P OVEN Boolean801 bit 1 EA PUMP ALA M Boolean801 bit 2 EA AI1 HIGH ALA M Boolean801 bit 3 EA AI1 LOR ALA M Boolean801 bit 4 EA AI2 HIGH ALA M Boolean801 bit 5 EA AI2 LOR ALA M Boolean801 bit 6 EA AI3 HIGH ALA M Boolean801 bit 7 EA AI3 LOR ALA M Boolean801 bit 8 EA AI4 HIGH ALA M Boolean801 bit 9 EA AI4 LOR ALA M Boolean801 bit 10 EA AO1 HIGH ALA M Boolean801 bit 11 EA AO1 LOR ALA M Boolean801 bit 12 EA AO2 HIGH ALA M Boolean801 bit 13 EA AO2 LOR ALA M Boolean802 EA ALA M RO D Unsigned Int 16

802 bit 0 EA ALA M INPUT 1 Boolean802 bit 1 EA ALA M INPUT 2 Boolean802 bit 2 EA ALA M INPUT 3 Boolean802 bit 3 EA ALA M INPUT 4 Boolean802 bit 4 EA ALA M INPUT 5 Boolean802 bit 5 EA ALA M INPUT 6 Boolean802 bit 6 EA ALA M INPUT 7 Boolean802 bit 7 EA ALA M INPUT 8 Boolean

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TS Series Installaton InstructonsDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES802 bit 8 EA ALA M INPUT 9 Boolean802 bit 9 EA ALA M INPUT 10 Boolean802 bit 10 EA ALA M INPUT 11 Boolean802 bit 11 EA ALA M INPUT 12 Boolean802 bit 12 EA ALA M INPUT 13 Boolean803 EA TD 1 Unsigned Int 16 x10804 EA TD 2 Unsigned Int 16 x10805 EA TD 3 Unsigned Int 16 x10806 EA TD 4 Unsigned Int 16 x10807 EA ANALOG INPUT 1 U16 Unsigned Int 16808 EA ANALOG INPUT 2 U16 Unsigned Int 16809 EA ANALOG INPUT 3 U16 Unsigned Int 16810 EA ANALOG INPUT 4 U16 Unsigned Int 16811 EA ECONOMI E RATE IN Unsigned Int 16 x10812 EA ECONOMI E RATE OUT Unsigned Int 16 x10813 EA ECONOMI E STACK IN Unsigned Int 16 x10814 EA ECONOMI E STACK OUT Unsigned Int 16 x10815 EA D AWT WEEDBACK Unsigned Int 16 x10816 EA D AWT ALA M Unsigned Int 16817 EA D AWT ALA M CODE Unsigned Int 16818 EA D AWT ALA M PHASE Unsigned Int 16819 EA D AWT D IVE RO D Unsigned Int 16

819 bit 0 EA D AWT OPEN POSITION Boolean819 bit 1 EA D AWT CLOSE POSITION Boolean819 bit 2 EA D AWT STA T POSITION Boolean819 bit 3 EA D AWT MODULATE Boolean820 EA D AWT SRITCH Unsigned Int 16 0=open,1=auto821 EA D AWT SENSO U16 Unsigned Int 16 x100828 EA ANALOG INPUT 1 WLOAT Wloat 32830 EA ANALOG INPUT 2 WLOAT Wloat 32832 EA ANALOG INPUT 3 WLOAT Wloat 32834 EA ANALOG INPUT 4 WLOAT Wloat 32836 EA D AWT SENSO WLOAT Wloat 32838 EA ANALOG INPUT 1 TOTALI ED Unsigned Int 32 x10840 EA ANALOG INPUT 2 TOTALI ED Unsigned Int 32 x10842 EA ANALOG INPUT 3 TOTALI ED Unsigned Int 32 x10844 EA ANALOG INPUT 4 TOTALI ED Unsigned Int 32 x10846 EA MONITO OUT 1 TOTALI ED Unsigned Int 32 x10848 EA MONITO OUT 2 TOTALI ED Unsigned Int 32 x10850 EA LC INPUT RO D Unsigned Int 16

850 bit 0 EA LC STAT ACTIVE Boolean850 bit 3 EA LC K6 ACTIVE Boolean851 EA LC OUTPUT RO D Unsigned Int 16

851 bit 4 EA LC STAT ACTIVE Boolean851 bit 7 EA LC K6 ACTIVE Boolean852 EA LC E1 U16 Unsigned Int 16 x10853 EA LC E3 U16 Unsigned Int 16 x10854 EA LC R U16 CU ENT SP Unsigned Int 16 x10855 R EA LC SP1 U16 Unsigned Int 16 x10

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Installaton Instructons TS SeriesDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES856 R EA LC AL U16 ALA M SP Unsigned Int 16 x10857 R EA LC PB1 U16 P OPO TIONAL Unsigned Int 16 x10858 R EA LC DT U16 DE IVATIVE Unsigned Int 16 X10859 R EA LC T U16 INTEG AL Unsigned Int 16 x10860 R EA LC HYS1 U16 Unsigned Int 16 x10861 R EA LC HYS3 U16 Unsigned Int 16 x10862 R EA LC EM EMOTE OPE ATION Unsigned Int 16863 R EA LC OWW EMOTE OWW Unsigned Int 16864 R EA LC K1 EMOTE BU NE CONT OL Unsigned Int 16865 R EA LC SP U16 EMOTE SETPOINT Unsigned Int 16 x10866 R EA LC Y U16 EMOTE OUTPUT Unsigned Int 16 x10867 EA LC Y U16 OUTPUT Unsigned Int 16 x10868 EA LC E1 WLOAT Wloat 32870 EA LC E3 WLOAT Wloat 32872 EA LC R WLOAT CU ENT SP Wloat 32874 R EA LC SP1 WLOAT Wloat 32876 R EA LC AL WLOAT ALA M SP Wloat 32878 R EA LC PB1 WLOAT P OPO TIONAL Wloat 32880 R EA LC DT WLOAT DE IVATIVE Wloat 32882 R EA LC T WLOAT INTEG AL Wloat 32884 R EA LC HYS1 WLOAT Wloat 32886 R EA LC HYS3 WLOAT Wloat 32888 R EA LC SP WLOAT EMOTE SETPOINT Wloat 32890 R EA LC Y WLOAT EMOTE OUTPUT Wloat 32892 EA LC Y WLOAT OUTPUT Wloat 32894 EA MONITO ED OUT 1 Unsigned Int 16 x10895 EA MONITO ED OUT 2 Unsigned Int 16 x10896 EA MONITO ED ALA MS Unsigned Int 16

896 bit 0 EA MONITO 3 ALA M Boolean896 bit 1 EA MONITO 4 ALA M Boolean900 VSD W EQUENCY EW PE CENT Unsigned Int 16 x100901 VSD OUTPUT W EQUENCY PE CENT Unsigned Int 16 x100902 VSD OUTPUT VOLTAGE Unsigned Int 16 x10903 VSD DC BUS VOLTAGE Unsigned Int 16904 VSD STATUS RO D Unsigned Int 16

904 bit 0 VSD UNNING Boolean904 bit 1 VSD E O SPEED Boolean904 bit 4 VSD SPEED AG EE Boolean904 bit 5 VSD EADY STATE Boolean904 bit 6 VSD ALA M STATE Boolean904 bit 7 VSD WAULT STATE Boolean905 VSD OUTPUT PM Unsigned Int 16906 VSD OUTPUT CU ENT Unsigned Int 16 x100907 VSD W EQUENCY EWE ENCE HE T Unsigned Int 16 x10908 VSD OUTPUT W EQUENCY HE T Unsigned Int 16 x10909 VSD ALA M CODE Unsigned Int 16910 VSD WAULT CODE Unsigned Int 16911 VSD DC BUS PEAK Unsigned Int 16912 VSD OUTPUT CU ENT PEAK Unsigned Int 16

Page 110 SCC Inc.

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TS Series Installaton InstructonsDocument No. TS-1100

Midbus MappingcDDRESS cCCESS DESCRIPTION FORMcT NOTES913 VSD OUTPUT PORE Unsigned Int 16 x1000914 VSD TOTALI ED PORE Unsigned Int 32 x100990 TSK SOWTRA E MODEL ST ING String (5 words)995 TSK SOWTRA E VE SION ST ING String (2 words)

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Installaton Instructons TS SeriesDocument No. TS-1100

Gateway – Mapping (cintnued)

Note 1 – This value is a percent x10. If the value exceeds 1000, it indicates stages.• 1001: 1 stage• 1002: 2 stages• 1003: 3 stages

Note 2 – LMV5 sensor selecton.• 0: Pt100• 1: Pt1000• 2: Ni1000• 3: temperature sensor • 4: pressure sensor • 5: Pt100/Pt1000 • 6: Pt100/Ni1000 • 7: no sensor

Note 3 – LMV program stop. • 0: deactvated (LMV5, LMV3)• 1: prepurge phase 24 (LMV5, LMV3)• 2: prepurge WG phase 32 (LMV5), igniton positon phase 36 (LMV3)• 3: igniton positon phase 36 (LMV5), interval 1 phase 44 (LMV3)• 4: interval 1 phase 44 (LMV5), interval 2 phase 52 (LMV3)• 5: interval 2 phase 52 (LMV5)• 6: postpurge phase 72 (LMV5)• 7: postpurge WG phase 76 (LMV5)

Note 4 – LMV5 operatng mode.• 0: external load control X5-03• 1: internal load control• 2: internal load control bus• 3: internal load control X62• 4: external load control X62• 5: external load control bus

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TS Series Installaton InstructonsDocument No. TS-1100

Gateway – Mapping (cintnued)

Nite 5 – LMV5 adapton state.• 0: undefned• 1: identfcaton completed, parameter determined• 2: undefned• 3: adapton aborted by user• 4: temperature difference too small, temperature will be lowered with low fre• 5: monitoring tme running• 6: delivery of identfcaton load set• 7: error during identfcaton (path)• 8: error during identfcaton (internal)• 9: monitoring tme running• 10: changeover from modulatng to multstage during an identfcaton• 11: tmeout monitoring tme• 12: tmeout heatng output on path with monitoring

Nite 6 – Lockout code string lookup. Rrite the lockout code to convert to register 159 as a decimal number and the string representaton will be returned to register 160. Wor example, writng '33' to register 159 will result in register 160 returning 'SAWETY LOOP OPEN'. Rritng '0' to register 159 will result in the current lockout string being returned.

Nite 7 – If the user values are based upon Modbus addresses, the multplier will be the same asthe Modbus address represented. If the user values are based upon scripts, the multplier will be x10.

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Installaton Instructons TS SeriesDocument No. TS-1100

Gateway – Mapping (cintnued)

Nite 8 – LMV3 fuel train. Mide Fuel Train Fuel-cir Rati Cintril Ignitin Fuel cct. cir cct. Minitired VSD

1 G mod modulatng electronic direct spark x x x2 Gp1 mod modulatng electronic pilot between V1/V2 x x x3 Gp2 mod modulatng electronic pilot before V1/V2 x x x4 Lo mod modulatng electronic direct spark x x x5 Lo 2-stage 2-stage electronic direct spark x x6 Lo 3-stage 3-stage electronic direct spark x x7 G mod pneu modulatng pneumatc direct spark x8 Gp1 mod pneu modulatng pneumatc pilot between V1/V2 x9 Gp2 mod pneu modulatng pneumatc pilot before V1/V2 x10 LoGp mod modulatng electronic gas pilot x x x11 LoGp 2-stage 2-stage electronic gas pilot x x12 Lo mod (2 valves) modulatng electronic direct spark x x x13 LoGp mod (2 valves) modulatng electronic gas pilot x x x14 G mod pneu modulatng pneumatc direct spark15 Gp1 mod pneu modulatng pneumatc pilot between V1/V216 Gp2 mod pneu modulatng pneumatc pilot before V1/V217 Lo 2-stage 2-stage electronic direct spark x18 Lo 3-stage 3-stage electronic direct spark x19 G mod pneu modulatng pneumatc direct spark x x20 Gp1 mod pneu modulatng pneumatc pilot between V1/V2 x x21 Gp2 mod pneu modulatng pneumatc pilot before V1/V2 x x22 Lo mod modulatng electronic direct spark x x23 Ho mod circ mod. electronic, pump control direct spark x x x24 Ho 2-stage circ 2-st. electronic, pump control direct spark x x25 Ho mod modulatng electronic direct spark x x x26 Ho 2-stage 2-stage electronic direct spark x x27 Ho 3-stage 3-stage electronic direct spark x x28 G mod mech modulatng mechanical direct spark x x29 Gp2 mod mech modulatng mechanical pilot before V1/V2 x x255 not defned --- ---

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TS Series Installaton InstructonsDocument No. TS-1100

LMV Phases

NUMBER DESCRIPTION0 LOCKOUT PHASE1 SAWETY PHASE2 SAWETY PHASE10 HOME UN POSITION12 STANDBY STATIONA Y20 SAWETY ELAY ON21 ELEASE OW STA TUP22 WAN MOTO ON24 D IVE TO PU GE30 P EPU GE32 P EPU GE WG 34 P EPU GE35 VSD D IVE TO IGNITION36 D IVE TO IGNITION38 P EIGNITION SPA K ON39 GAS VALVE TEST MINIMUM P ESSU E40 PILOT VALVE OPEN42 SPA K OWW44 WLAME STABILI ATION50 WUEL VALVE OPEN SAWETY TIME52 WLAME STABILI ATION54 D IVE TO LOR WI E 60 NO MAL OPE ATION62 D IVE TO LOR WI E POST64 D IVE TO IGNITION65 WLAME STABILI ATION66 IGNITION/PILOT ON67 MAIN VALVE OWW68 PILOT RAITING TIME69 PILOT RAITING - STA TUP70 WUEL VALVE CLOSED AWTE BU N TIME72 D IVE TO POSTPU GE74 MANDATO Y POSTPU GE76 MANDATO Y POSTPU GE78 OPTIONAL POSTPU GE79 DI ECT STA T (APS CHECK)80 GV TEST EVACUATION OW TEST SPACE81 GV TEST ATMOSPHE IC P ESSU E TEST82 GV TEST WILL TEST SPACE83 GV TEST P ESSU E TEST90 GAS SHO TAGE RAITING TIME97 NO CONWIGU ATION98 RAITING TO ESTABLISH COMMUNICATION99 COMMUNICATION WAULT

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Installaton Instructons TS SeriesDocument No. TS-1100

LMV5 Lickiut/Errir Cides

LMV5 Lickiut/Errir CidesCODE DECIMcL CODE HEX DESCRIPTION

0 0 NO E O 1 1 OM E O 2 2 AM E O 3 3 INTE NAL COMMUNICATION E O 4 4 UNSUCCESSWUL SYNC OW 2uCs5 5 WAULT DU ING WLAME AMP TEST6 6 WAULT INTE NAL HA DRA E TEST16 10 DIGITAL OUTPUT WAULT17 11 SHO T CI CUIT CONTACT WEEDBACK21 15 ACTUATO WAULT/VSD SPEED NOT EACHED22 16 WAULT IN ATIO CONT OL SYSTEM23 17 LMV5 INTE NAL COM E O 24 18 CO UPTION IN COMBUSTION CU VE DATA25 19 ACTUATO POT E O 26 1A ACTUATO CU VE TOO STEEP27 1B ACT CU VE P OG AMMING ACTIVE PHASE 6228 1C ACTUATO IGNITION POSITION NOT SET29 1D UNNING TIME WAULT ACTUATO S/VSD30 1E ACTUATO /VSD NOT EACHED POSITION31 1W VSD MODULE CONNECTION E O 33 21 SAWETY LOOP OPEN34 22 TEMP LIMITE OWW (CHECK SENSO )35 23 EXT ANEOUS LIGHT DU ING STA TUP36 24 EXT ANEOUS LIGHT DU ING SHUTDORN37 25 NO WLAME AT END OW SAWETY TIME38 26 LOSS OW WLAME PHASE 60-6239 27 AI P OVE SR ON SHOULD BE OWW40 28 AI P OVE SR OWW SHOULD BE ON41 29 WAN CONTACT SIGNAL ON SHOULD BE OWW42 2A WAN CONTACT SIGNAL OWW SHOULD BE ON43 2B WG P ESSU E SR ON SHOULD BE OWW44 2C WG P ESSU E SR OWW SHOULD BE ON45 2D CPI (POC) ON SHOULD BE OWW46 2E CPI (POC) OWW SHOULD BE ON47 2W LOR GAS P ESSU E SRITCH OPEN48 30 HIGH GAS P ESSU E SRITCH OPEN49 31 VALVE P OVE – GAS SIDE LEAK50 32 VALVE P OVE – BU NE SIDE LEAK51 33 OIL P ESSU E RHEN OIL PUMP OWW52 34 LOR OIL P ESSU E RHEN PUMP UNNING53 35 HIGH OIL P ESSU E SRITCH OPEN54 36 NO STA T ELEASE WO OIL55 37 NO HEAVY OIL DI ECT STA T56 38 SHO TAGE OW GAS P OG AM IN P OG ESS57 39 PA AMETE OW MAX SAWETY TIME WAULTY58 3A NO BU NE ID DEWINED59 3B NO SE VICE PASSRO D DEWINED64 40 R ONG CONTACT POSITION OW SAWETY TIME

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TS Series Installaton InstructonsDocument No. TS-1100

LMV5 Lickiut/Errir CidesCODE DECIMcL CODE HEX DESCRIPTION

65 41 R ONG CONTACT POSITION OW IGNITION66 42 R ONG CONTACT POSITION OW WUEL ELAY67 43 PLAUSIBILITY CHECK WAULT68 44 WAULT AT DEACTIVATED INPUTS69 45 SHUTDORN VIA SAWETY LIMIT TEST70 46 P OG AM STOP ACTIVATED71 47 STA T ELEASE GAS IS OWW72 48 TRO WLAME SIGNALS RITH ONE PA METE I ED80 50 WAULT DU ING KEY VALUE CHECK81 51 TIME BLOCK OVE WLOR82 52 STACK E O 83 53 WAULTY ESET STATE OCCU ED87 57 INVALID PA AMETE I ATION88 58 INTE NAL COMMUNICATION (uC1<>uC2)89 59 EEP OM PAGE IS ON ABO T90 5A C C E O OW PA AMETE ANGE91 5B PAGE ON ABO T92 5C PAGE ON R _ ESTO (BACKUP ESTO E MADE)93 5D PAGE OPEN TOO LONG94 5E PAGE HAS UNDEWINED STATUS95 5W LAST BACKUP ESTO E INVALID (INTE UPTED)96 60 WAULT COPYING A PA AMETE PAGE97 61 WAULT RITH EEP OM INITIALI ATION112 70 WAULT DU ING ESTO ING LOCKOUT INWO113 71 MANUAL LOCKOUT VIA CONTACT114 72 PLAUSIBILITY WAULT RITH WAULT ENT Y128 80 R ONG STATE OW AUX3 ACTUATO 129 81 R ONG STATE OW AI ACTUATO 130 82 R ONG STATE OW GAS ACTUATO 131 83 R ONG STATE OW OIL ACTUATO 132 84 R ONG STATE OW AUX1 ACTUATO 133 85 R ONG STATE OW AUX2 ACTUATO 134 86 R ONG STATE OW INTE NAL LOAD CONT OLLE 135 87 R ONG STATE OW A L136 88 PLAUSIBILITY WAULT (NMT)144 90 OM-C C E O ON AUX3 WEEDBACK145 91 OM-C C E O ON AI WEEDBACK146 92 OM-C C E O ON GAS WEEDBACK147 93 OM-C C E O ON OIL WEEDBACK148 94 OM-C C E O ON AUX1 WEEDBACK149 95 OM-C C E O ON AUX2 WEEDBACK150 96 OM-C C E O ON LC WEEDBACK151 97 OM-C C E O ON A L WEEDBACK152 98 CANBUS DEVICE RITH SAME ADD ESS CONWLICT153 99 CANBUS IS OWW154 9A CANBUS RA NING LEVEL155 9B CANBUS QUEUE OVE UN160 A0 AUX3 ACTUATO DETECTED A WAULT161 A1 AI ACTUATO DETECTED A WAULT

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Installaton Instructons TS SeriesDocument No. TS-1100

LMV5 Lickiut/Errir CidesCODE DECIMcL CODE HEX DESCRIPTION

162 A2 GAS ACTUATO DETECTED A WAULT163 A3 OIL ACTUATO DETECTED A WAULT164 A4 AUX1 ACTUATO DETECTED A WAULT165 A5 AUX2 ACTUATO DETECTED A WAULT166 A6 LOAD CONT OL DETECTED A WAULT167 A7 A L DETECTED A WAULT169 A9 VSD MODULE DETECTED A WAULT171 AB O2 MODULE DETECTED A WAULT176 B0 WAULT DU ING TEST OW PO T OUTPUTS177 B1 WAULT DU ING SHO T CI CUIT TEST181 B5 O2 MONITO WAULT186 BA O2 SENSO TEST WAILED187 BB O2 T IM CONT OL EMOVED190 BE INVALID PA AMETE I ATION O2 CONT OL191 BW O2 CONT OL AUTO DEACTIVATION197 C5 A L HAS DETECTED OLD UNIT VE SIONS209 D1 R ONG STATE OW VSD MODULE211 D3 R ONG STATE OW O2 MODULE225 E1 OM-C C E O ON VSD MODULE WEEDBACK227 E3 OM-C C E O ON O2 MODULE WEEDBACK240 W0 PLAUSIBILITY WAULT (INTE POLATION)241 W1 WAULT CALCULATING P ECONT OL242 W2 WAULTY TEMP VALUES W OM O2 MODULE243 W3 O2 T IM CONT OL WAULT244 W4 O2 MODULE WAULT (WG )245 W5 CANBUS WEEDBACK WAULT X60 TEMP INPUT246 W6 WG WAULT

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TS Series Installaton InstructonsDocument No. TS-1100

LMV3 Errir Cides

LMV3 Errir CidesCODE DESCRIPTION2 NO WLAME AT END OW SAWETY TIME3 AI P ESSU E WAILU E4 EXT ANEOUS LIGHT7 LOSS OW WLAME12 VALVE P OVING14 P OOW OW CLOSU E18 AI P ESSU E SRITCH SPEED DEPENDENT19 COMBUSTION P ESSU E POC20 P ESSU E SRITCH – MINIMUM21 P ESSU E SRITCH – MAXIMUM22 SAWETY LOOP / BU NE WLANGE23 LOR GAS / HEAVY OIL DI ECT STA T50 INTE NAL E O 51 INTE NAL E O 55 INTE NAL E O 56 INTE NAL E O 57 INTE NAL E O 58 INTE NAL E O 60 INTE NAL E O – NO VALID HEAT SOU CE61 WUEL CHANGEOVE 62 INVALID WUEL SIGNALS O INWO MATION65 INTE NAL E O 66 INTE NAL E O 67 INTE NAL E O 70 INTE NAL E O – WUEL/AI ATIO CONT OL71 SPECIAL POSITION UNDEWINED72 INTE NAL E O – WUEL/AI ATIO CONT OL73 INTE NAL E O – WUEL/AI ATIO CONT OL75 INTE NAL E O – WUEL/AI ATIO CONT OL76 INTE NAL E O – WUEL/AI ATIO CONT OL80 CONT OL ANGE LIMIT OW VSD81 VSD ELECT OMAGNETIC INTE WE ENCE82 E O DU ING VSD SPEED STANDA DI ATION83 SPEED E O VSD84 CU VE SLOPE ACTUATO S85 ACTUATO EWE ENCING E O 86 E O WUEL ACTUATO 87 E O AI ACTUATO 90 INTE NAL E O – BASIC UNIT91 INTE NAL E O – BASIC UNIT93 E O WLAME SIGNAL ACQUISITION95 E O ELAY SUPE VISION96 E O ELAY SUPE VISION97 E O ELAY SUPE VISION98 E O ELAY SUPE VISION99 INTE NAL E O – ELAY CONT OL100 INTE NAL E O – ELAY CONT OL105 INTE NAL E O – CONTACT SAMPLING

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Installaton Instructons TS SeriesDocument No. TS-1100

LMV3 Errir CidesCODE DESCRIPTION106 INTE NAL E O – CONTACT EQUEST107 INTE NAL E O – CONTACT EQUEST108 INTE NAL E O – CONTACT EQUEST110 INTE NAL E O – VOLTAGE MONITO TEST111 PORE WAILU E112 MAINS VOLTAGE ECOVE Y113 INTE NAL E O – MAINS VOLTAGE115 INTE NAL E O – SYSTEM COUNTE 116 DESIGN TH ESHOLD EXCEEDED117 LIWETIME EXCEEDED – OPE ATION NOT ALLORED120 WUEL METE ING INTE WE ENCE121 INTE NAL E O – EEP OM ACCESS122 INTE NAL E O – EEP OM ACCESS123 INTE NAL E O – EEP OM ACCESS124 INTE NAL E O – EEP OM ACCESS125 INTE NAL E O – EEP OM EAD ACCESS126 INTE NAL E O – EEP OM R ITE ACCESS127 INTE NAL E O – EEP OM ACCESS128 INTE NAL E O – EEP OM ACCESS129 INTE NAL E O – EEP OM ACCESS130 INTE NAL E O – EEP OM ACCESS131 INTE NAL E O – EEP OM ACCESS132 INTE NAL E O – EEP OM EG INITIALI ATION133 INTE NAL E O – EEP OM EQUEST SYNC134 INTE NAL E O – EEP OM EQUEST SYNC135 INTE NAL E O – EEP OM EQUEST SYNC136 ESTO E STA TED137 INTE NAL E O – BACKUP/ ESTO E146 TIMEOUT – BAS MODBUS150 TUV TEST154 T IM WUNCTION – INVALID ANALOG155 T IM WUNCTION – INVALID CU VE156 T IM WUNCTION – TIMEOUT157 T IM WUNCTION – TEST WAIL165 INTE NAL E O 166 INTE NAL E O – RATCHDOG TEST167 MANUAL LOCKING168 INTE NAL E O – MANAGEMENT169 INTE NAL E O – MANAGEMENT170 INTE NAL E O – MANAGEMENT171 INTE NAL E O – MANAGEMENT200 NO E O 201 P EVENTION OW STA TUP202 INTE NAL E O – OPE ATING MODE SELECT203 INTE NAL E O 204 P OG AM STOP205 INTE NAL E O 206 COMBINATION OW UNITS NOT ALLORED207 A L VE SION COMPATIBILITY E O

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TS Series Installaton InstructonsDocument No. TS-1100

LMV3 Errir CidesCODE DESCRIPTION208 INTE NAL E O 209 INTE NAL E O 210 SELECTED MODE NOT ELEASED WO BASIC UNIT240 INTE NAL E O 242 INVALID PA AMETE I ATION245 INTE NAL E O 250 INTE NAL E O

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Installaton Instructons TS SeriesDocument No. TS-1100

Sample Minitired Value cpplicatins

Soft Limits

Monitored digital outputs can be confgured to provide soft (non safety-related) limits.

Purocedgure

An example of a soft limit is a high fue temperature shutdown on the operatng limits (control switch input).

Confgure the monitored digital output to actvate when the fue temperature is above the desired shutdown setpoint. This is shown under 'CONDITION 1'. The fue temperature is available from the LMV5 via Modbus. Wrom the Modbus mapping, it is known that this value is represented without a divider, so a divider of 1 is entered. If the value is copied using the register lookup functon, this will be done automatcally. Since the acton should be true when the monitored value is above the setpoint, choose n as the functon.

'CONDITION 2' will not be used, so set the slider switch to OFF. Apply a short on delay to provide a flter tme to verify a steady signal.

If desired, the acton can be latched and/or create an alarm when true. Latching would require amanual reset via the ALA MS screen to clear the conditon.

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TS Series Installaton InstructonsDocument No. TS-1100

Sample Minitired Value cpplicatins (cintnued)

Wiurini

Rire the monitored digital output into the control switch string in series with the existng limits to complete the process. Note that the terminals MVx-1 and MVx-2 refer to the specifc monitored output used (for example, monitored output 3 would use terminals MV3-1 and MV3-2).

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Installaton Instructons TS SeriesDocument No. TS-1100

Sample Minitired Value cpplicatins (cintnued)

Time-Based Actons

Monitored digital outputs can be confgured to provide a tme-based acton such as a valve opening.

Purocedgure

An example of a tme-based acton could be a blow-down valve that opens once a day for 30 seconds. The tme selected for this acton will be 23:59.

Confgure 'CONDITION 1' of the monitored digital output to actvate when the hour is equal to '23'. The tme and date data is available from the LMV5 via Modbus. Wrom the Modbus mapping, it is known that this value is represented without a divider, so a divider of 1 is entered.If the value is copied using the register lookup functon, this will be done automatcally. Since the acton should be true when the monitored value equals the setpoint, choose = as the functon.

Actvate 'CONDITION 2' by setng the slider switch to ON, then confgure the monitored digital output to actvate when the minute is equal to '59', following the above guidelines.

Choose cND as the logic applied between the conditons. Apply a 20 second on delay to keep the output inactve for the frst 20 seconds of the conditon being true. This is done since the acton is only desired for 30 seconds instead of the full minute. Allow some extra tme for communicaton of the data.

If desired, the acton can be latched and/or create an alarm when true. Latching would require amanual reset via the ALA MS screen to clear the conditon.

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TS Series Installaton InstructonsDocument No. TS-1100

Sample Minitired Value cpplicatins (cintnued)

Wiurini

Rire the monitored digital output into the external acton to complete the process. Note that the terminals MVx-1 and MVx-2 refer to the specifc monitored output used (for example, monitored output 3 would use terminals MV3-1 and MV3-2).

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Installaton Instructons TS SeriesDocument No. TS-1100

Sample Minitired Value cpplicatins (cintnued)

Pump Control

Monitored digital outputs can be confgured to provide pump control for feedwater pumps or blend pumps based on the current LMV phase.

Purocedgure

An example could be a blend pump that needs to circulate when a boiler is operatng, with an off delay to allow for extra circulaton after the boiler shuts down.

Confgure 'CONDITION 1' of the monitored digital output to actvate when the phase is greater than or equal to '30' (prepurge begins). The phase data is available from the LMV5 via Modbus. Wrom the Modbus mapping, it is known that this value is represented without a divider, so a divider of 1 is entered. If the value is copied using the register lookup functon, this will be done automatcally. Since the acton should be true when the monitored value is greater than or equal to the setpoint, choose n= as the functon.

Actvate 'CONDITION 2' by setng the slider switch to ON, then confgure the monitored digital output to actvate when the phase is greater than '70' (afterburn begins), following the above guidelines.

Choose cND as the logic applied between the conditons. Apply a 120 second off delay to keep the output actve for an additonal 120 seconds.

If desired, the acton can be latched and/or create an alarm when true. Latching would require amanual reset via the ALA MS screen to clear the conditon.

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TS Series Installaton InstructonsDocument No. TS-1100

Sample Minitired Value cpplicatins (cintnued)

Wiurini

Rire the monitored digital output into the pump start contact to complete the process. Note that the terminals MVx-1 and MVx-2 refer to the specifc monitored output used (for example, monitored output 3 would use terminals MV3-1 and MV3-2).

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Installaton Instructons TS SeriesDocument No. TS-1100

Creatng User Value Scripts

User value scripts will only work on revision 17M1 and newer. Up to 16 user scripts can be added for additonal value calculatons.

Purpose

User scripts allow additonal data to be monitored, processed or displayed. This is useful when non-standard annunciaton is required on the touchscreen or via BMS. The resultng data can also be used with monitored values to expand upon the logic that triggers them.

Wormat

User scripts are simple text (.txt) fles. To be recognized, the fle must be named "displayX.txt", where the X represents the script number from 0 to 15 (such as display0.txt). These fles must be placed in the "userval" folder of the SD card. They can also be loaded from a USB drive (also place in the "userval" folder) using the "Manage" popup (see Useur Valge Scuripts for additonal detail).

Variables

There are 16 retentve and 16 non-retentve variables available to use for writng scripts. The retentve variables are m0-m15 and the non-retentve variables are v0-v15.

Cimments

"#" is used to indicate that the line contains a comment. Any content after the "#" is ignored as long as it is on the same line.

Breaks

Each command must be on a new line. There are no end of line characters such as ";".

Length

The maximum number of lines per script is 100.

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TS Series Installaton InstructonsDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Syntax Summary

Keywird Descriptin Examplename= The name for the value. name=Temperaturesufx= The sufx (units) for the value. sufx=PSIstate= Indicates the value is discrete/binary and supplies

the true/false text.state=On,Off

show= Indicates whether the value should be displayed on a boiler overview screen.

show=int:1,0,v0:2

math= Math functon to be applied to data. math=index:100,int:2,add,v0logic= Logic functon to be applied to data. logic=index:112,int:200,gt,v0ret= eturns the specifed variable to the "User Values"

screen.ret=v0:2

v0=v1=...v15=

Assigns a value to the indicated non-retentve variable.

v0=12.5

m0=m1=...m15=

Assigns a value to the indicated retentve variable. m0=12.5

Syntax Detail: name=Any text after "name=" is acceptable (including spaces). The total length of the user value display is 60 characters including the value and sufx.

Syntax Detail: suffix=Any text after "sufx=" is acceptable (including spaces). The total length of the user value display is 60 characters including the value and name.

Syntax Detail: state=Any text after "state=" is acceptable (including spaces). The total length of the user value displayis 60 characters including the name and sufx. The text must contain the true and false annunciatons (in that order) separated by a comma. This keyword should only be included if the output is intended to be discrete/binary.

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Installaton Instructons TS SeriesDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Syntax Detail: shiw=This keyword is used to indicate that a variable should be displayed on one of the boiler overview screens.

equired parameters, separated by a comma:

VisibilityThe data will be visible on the overview screen when the value of the visibility data is greater than zero. The format is the type of data followed by the value/address, separated by a colon.

Keywird Descriptin Exampleint The value is an integer. Any value greater than zero

will force visibility to true.int:1

index A Modbus register is used to supply the visibility. The number indicates the Modbus index.

index:112

var An internal non-retentve variable is used to supplythe visibility. Use 0-15 (not v0-v15).

var:0

mem An internal retentve variable is used to supply the visibility. Use 0-15 (not m0-m15).

mem:0

PositionIndicates which overview screen positon the data should appear on.0: Overview, line 1 1: Overview, line 2

VariableIndicates which variable is to be displayed ("v0:x"…"v15:x" or "m0:x"…"m15:x"). The value after ":" indicates how many decimal places to show. Using "iv0:0"…"iv15:0" or "im0:0"…"im15:0" willshow the result as a rounded integer without regard for decimal places. Using "rv0:0"…"rv15:0" or "rm0:0"…"rm15:0" will show the result as a raw foatng point number without rounding. Usethe value "0" after ":" for iv, im, rv and rm.

Examples: #shows v0 on overview, line 1 continuously as an integershow=int:1,0,iv0:0 #shows v1 on overview, line 2 continuously with one decimalshow=int:1,1,v1:1

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TS Series Installaton InstructonsDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Syntax Detail: math=This keyword is used to indicate that math should be performed.

equired parameters, separated by a comma:

Variable XThe data used for the frst variable (indicated as "x" in functon descriptons).

Variable YThe data used for the second variable (indicated as "y" in functon descriptons).

Variable X and Variable Y assignments:

Keywird Descriptin Exampleint The value is an integer. int:1foat The value is a foat. foat:12.5index A Modbus register is used to supply the value. The

number indicates the Modbus index.index:112

var An internal non-retentve variable is used to supplythe value. Use 0-15 (not v0-v15).

var:0

mem An internal retentve variable is used to supply the value. Use 0-15 (not m0-m15).

mem:0

Functions:

Keywird Descriptinadd+

Additon of the two variables.output = x + y

sub-

Subtracton of the two variables.output = x - y

mult*

Multplicaton of the two variables.output = x * y

div/

Division of the two variables.output = x / y

mod%

Modulo of the two variables (modulo is remainder of division operaton).output = x % y

pow^

Exponent of the two variables, x to the power of y.output = xy

root oot of the two variables, y root of x.output = x1/y

min Output is the lower of the two variables.max Output is the higher of the two variables.abs The absolute value of the x is returned (y is ignored).

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Installaton Instructons TS SeriesDocument No. TS-1100

Creatng User Value Scripts (cintnued)

ReturnIndicates which variable the result is returned to ("v0"…"v15" or "m0"…"m15").

Examples:#calculate 10 * 2 and put the result in v0math=int:10,int:2,mult,v0#calculate Modbus[12] * 0.8 and put the result in v0math=index:12,float:0.8,mult,v0

Compound Example (convert Modbus[12] from Fahrenheit to Celsius):#subtracts 32 from Modbus[12] and stores in v0math=index:12,int:32,sub,v0 #divide v0 by 9 and store in v0 againmath=var:0,int:9,div,v0 #multiply v0 by 5 and store in v0 againmath=var:0,int:5,mult,v0

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TS Series Installaton InstructonsDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Syntax Detail: ligic=This keyword is used to indicate that logic should be performed. Unlike math, with logic either a "1" or a "0" are returned to the indicated variable (except for functons "lsh", "rsh" and "fip").

equired parameters, separated by a comma:

Variable XThe data used for the frst variable (indicated as "x" in functon descriptons).

Variable YThe data used for the second variable (indicated as "y" in functon descriptons).

Variable X and Variable Y assignments:

Keywird Descriptin Exampleint The value is an integer. int:1foat The value is a foat. foat:12.5index A Modbus register is used to supply the value. The

number indicates the Modbus index.index:12

var An internal non-retentve variable is used to supplythe value. Use 0-15 (not v0-v15).

var:0

mem An internal retentve variable is used to supply the value. Use 0-15 (not m0-m15).

mem:0

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Installaton Instructons TS SeriesDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Functions:

Keywird Descriptinge>=

True if x is greater than or equal y, else false.

gt>

True if x is greater than y, else false.

le<=

True if x is less than or equal to y, else false.

lt<

True if x is less than y, else false.

ne<>!=

True if x is not equal to y, else false.

eq===

True if x is equal to y, else false.

or||

True is either x or y are true, else false.

and&&

True if both x and y are true, else false.

bit Status of bit y of word x.bor|

Boolean O (x O y).

band&

Boolean AND (x AND y).

bxor^

Boolean XO (x XO y).

not!

The opposite of x is returned (y is ignored).

lsh<<

Left shifts bits of word x by y positons.

rsh>>

ight shifts bits of word x by y positons.

fip~

Inverts bits of x (y is ignored).

ReturnIndicates which variable the result is returned to. Specifying "xv0"..."xv15" or "xm0"..."xm15" will set the selected variable to 0. Specifying "sv0=xxx"..."sv15=xxx" or "sm0=xxx"..."sm15=xxx" will set the selected variable to the value xxx.

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TS Series Installaton InstructonsDocument No. TS-1100

Creatng User Value Scripts (cintnued)

Examples:#returns Modbus[60] > 2000 and put result in v0logic=index:60,int:2000,gt,v0 #returns Modbus[0] = 60 and put result in v0logic=index:0,int:60,eq,v0

Syntax Detail: ret=Indicates which variable is to be returned to the "User Values" screen as well as the corresponding Modbus register ("v0:x"…"v15:x" or "m0:x"…"m15:x"). The value after ":" indicates how many decimal places to show on the "User Values" screen. Using "iv0:0"…"iv15:0"or "im0:0"…"im15:0" will show the result as a rounded integer without regard for decimal places. Using "rv0:0"…"rv15:0" or "rm0:0"…"rm15:0" will show the result as a raw foatng pointnumber without rounding. Use the value "0" after ":" for iv, im, rv and rm. egardless of the display format chosen the Modbus representaton will be x10.

Example Scripts

Monitors temperature and displays "Temperature: High" when it is above 200 on the "User Values" screen and on the "Overview" screen.#script 1name=Temperaturestate=High,Normallogic=index:12,int:200,gt,v0ret=iv0:0show=int:1,0,iv0:0

Averages the temperatures of EA TD1- TD4 for display on the "User Values" screen.#script 2name=Averagesuffix=°Fmath=index:803,index:804,add,v0 math=var:0,index:805,add,v0math=var:0,index:806,add,v0math=var:0,int:4,div,v0ret=v0:1

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Installaton Instructons TS SeriesDocument No. TS-1100

cdding cDP-RTC3 Real-Time Click Midule

Adds an external real-tme clock module to keep tme during power outages. Uses Modbus to relay tme informaton.

Installaton

Install the ADP- TC3 using DIN rail or the supplied foot mounts. The ADP- TC3 can be powered with 24VAC or 24VDC. Connect to Modbus S-485 as part of the chain of devices. Locatng the ADP- TC3 beside the OCI412.10 or OCI413.20 would allow sharing the same power and Modbus wiring.

A C 1632 lithium batery is supplied with the ADP- TC3 and must be installed for proper functonality. To install, face the negatve side of the batery outwards. The negatve side is the side without any labels. Ensure the batery is fully seated in the holder.

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TS Series Installaton InstructonsDocument No. TS-1100

cdding cDP-RTC3 Real-Time Click Midule (cintnued)

Actvatng

Update the touchscreen to at least revision 17M1 or equivalent. If a load controller opton usingthe LMV3 is selected, there will be an opton to enable the real-tme clock.

Rith access level SETUP (see TS-1100 for additonal details), press SETTINGS and then SCREEN SETTINGS.

Press RTC DIScBLED on the lower left of the popup and it will change to display RTC ENcBLED. The real-tme clock module will now be online. Set the date and tme from this screen as well.

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Installaton Instructons TS SeriesDocument No. TS-1100

LMV5 Cinfguratin fir Midbus

The LMV5... controller must be properly confgured for Modbus operaton. Use the Select < and Select n butons to navigate up and down the screen and the Enter buton when the desired opton is selected with the cursor. Use Esc to go back to the previous menu. Rhen a parameter needs to be changed, the Select < and Select n butons allow the value to be changed and Enterconfrms the change. Press the Esc buton to return after the change is made.

Wirst, actvate the Modbus port on the A L (no password required):1. Operaton > OptgModeSelect > Type of Gateway = Midbus2. Operaton > OptgModeSelect > GatewayBcSin (older units GatewayDDCin)3. The A L should now read 'Gateway Mode actve'.

Next, set up the required parameters through the A L (no password required):1. Params & Display > Access w-out PR > A L > Modbus > Address = 1

2. Params & Display > Access w-out PR > A L > Modbus > Baudrate = 19200 bit/s3. Params & Display > Access w-out PR > A L > Modbus > Parity = ni4. Params & Display > Access w-out PR > A L > Modbus > Timeout = 30s

Last, change the controller mode to allow Modbus operaton (no password required):1. Params & Display > Access w-out PR > LoadController > Confguraton > LC_OptgMode = IntLC Bus

The changes take effect immediately (no reboot required).

Log in to the A L at the Service level (default password 9876) and change the following:1. Params & Display > Access Serv > LoadController > Confguraton > Ext MaxSetpoint = 100%

If X62.1 and X62.2 are switched with a Local/ emote switch or similar as part of a remote enable package, disconnect the wires from these terminals. Wailing to do so may result in the control not acceptng a remote setpoint properly.

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TS Series Installaton InstructonsDocument No. TS-1100

LMV3 Cinfguratin fir Midbus

The LMV3.. controller must have a compatble OCI opton installed (OCI412.10 or OCI413.20) in order to communicate with the system via Modbus.

The service (heatng engineer) password must be entered for these parameters to be accessed. The default service password is 9876. If the password has been changed, please consult the equipment OEM for the correct password.

To confgure the LMV3... controller to communicate using Modbus, use the following procedure:1. Hold down both the F and the c butons untl the display reads 'Code', followed by a string of seven underscores.

2. Use the + and - butons to enter the password. Press ENTER (the buton to the right of the display) after each entry, and again once the complete password is entered. If the password is incorrect, 'Error' will be displayed and the process will have to be restarted.

3. If the password is entered successfully, the screen will display 'Para' and then '400: Set' with the '400:' fashing.

4. Use the - buton to navigate to '100: PArA', then press ENTER.5. Use the + and - butons to navigate to a fashing '141:'. If this value does not read 1, press ENTER and then use the + and - butons to change it to 1, then press ENTER to confrm the change. This parameter actvates Modbus. To return to the parameter navigaton, press the + and - butons simultaneously (ESC). The display should return to fashing '141:'. This procedure will be used to change all parameters.

6. Change '142:' to 120. This parameter sets the tmeout.7. Change '145:' to 1. This parameter sets the Modbus address.8. Change '146:' to 1. This parameter sets the baud rate to 19200 bit/s.9. Change '147:' to 0. This parameter sets the parity to none.10. Rhen all the parameters are entered, press ESC in two successions to back up to the main screen. The changes take effect immediately (no reboot required).

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Installaton Instructons TS SeriesDocument No. TS-1100

RWF55 Cinfguratin fir Midbus

The RW55 must be properly confgured for Modbus operaton.

Use the up and down arrow butons to navigate through the menus and the Enter buton when the desired menu is selected. Use Esc to go back to the previous menu. Rhen a parameter needs to be changed, the up and down arrow butons allow the value to be changed and Enter confrms the change. The parameter name will fash on the green display when the parameter entry mode is entered. Press the Esc buton to return after the change is made.

To confgure the RW55 controller to communicate using Modbus, use the following procedure:1. Press Enter to go into the menu list. The green display should read 'Opr'.2. ConW > IntW > r485 > bdrt = 2 (19200 bit/s baud rate)3. ConW > IntW > r485 > dt = 30 (tmeout)4. Wor load controller applicatons:ConW > IntW > r485 > Adr = 2

5. Wor feedwater applicatons:ConW > IntW > r485 > Adr = 3

6. Press Esc in four successions or untl the parameter menus are completely exited. The changes take effect immediately (no reboot required).

If either the shell or inlet temperature sensor is connected to the RW55 via analog input 3:1. ConW > InP > InP3 > dW3 = 0 (analog input flter)

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TS Series Installaton InstructonsDocument No. TS-1100

RWF40 Cinfguratin fir Midbus

The RW40 must have the Modbus opton in order to communicate with the system. The last three characters of the part number must be 'B97' for Modbus to be optoned. If the last three characters of the part number are 'A97', Modbus is not optoned.

To actvate Modbus on the RW40, make the following and parameters:1. Press and hold PGM untl the green display shows cL.2. Press and hold PGM untl the green display shows C111.3. Press PGM twice so that the green display shows C113.4. Press the down arrow untl the second red digit from the right fashes. Use the up arrow to change this value to 7. This parameter sets the baud rate at 19,200 bit/s.

5. Wor load controller applicatons:a. Press the down arrow untl the second red digit from the left fashes. Use the up arrow to change this value to 2.

b. Press the down arrow untl the frst red digit on the left fashes. Use the up arrow to change this value to 0.

6. Wor feedwater applicatons:a. Press the down arrow untl the second red digit from the left fashes. Use the up arrow to change this value to 3.

b. Press the down arrow untl the frst red digit on the left fashes. Use the up arrow to change this value to 0.

7. Press PGM. The red display should now read xx70 with xx depending upon the boiler number. If it does not, use the down and up arrows to adjust the value and then press PGM to confrm and save the values.

8. Press EXIT to return to the normal display. The changes take effect immediately (no reboot required).

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RWF10 Cinfguratin fir Midbus

The RW10 must have the Modbus opton in order to communicate with the system. This is an opton card that is inserted into the controller when required.

To confgure the RW10 controller to communicate using Modbus, use the following procedure:1. Press the LEVEL (left-most) buton untl the red display reads 'CN-t'.2. Press the LEVEL buton again; the red display should read 'PSEL'.3. If the value of 'PSEL' does not read Mid, use the up and down arrow butons to change the value.

4. Press the MODE (loop with arrow on end, second from left) buton to move to the next parameter, 'U-No'. Change the value to 2 with the up and down arrow butons and then press MODE. This parameter sets the Modbus address.

5. Change parameter 'bPS' to 19.2 and then press MODE. This parameter sets the baud rate to 19,200 bit/s.

6. Change parameter 'P tY' to Nine and then press MODE. This parameter sets the parity to none.

7. Change parameter 'SdRt' to 20 and then press MODE. This parameter sets the tmeout.8. Once 'PSEL' is displayed again, press and hold the LEVEL buton to save the changes. The unit will reboot with the new parameters and the changes will take effect immediately.

If an analog transmiter is being used for steam pressure or water temperature the unit must beconfgured to display one decimal point:1. Press the LEVEL (left-most) buton untl the red display reads 'CN-t'.2. Press the MODE (loop with arrow on end, second from left) buton three tmes to display parameter 'dP'. Change the value to 1.

3. Press and hold the LEVEL buton to save the changes. The unit will reboot with the new parameters and the changes will take effect immediately.

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TS Series Installaton InstructonsDocument No. TS-1100

Yaskawa VSD Cinfguratin fir Midbus

Supported Models

The following are tested and supported:• A1000• V1000

Procedure

To confgure the VSD to communicate using Modbus, use the following procedure:1. Press the ↓ (down arrow) buton untl the red display reads 'PAr'.2. Press the ENTER buton again; the red display should read 'A1-01' with the 'A' fashing.3. Press the ↑ (up arrow) buton untl the frst digit in the red display fashes 'H', then press ENTER.

4. Press the ↑ (up arrow) buton untl the second digit in the red display fashes '5', then press ENTER.

5. The red display should read 'H5-01', then press ENTER. 'H5-01' is the Modbus address. Enter 1F using the arrow keys (→ moves to the next digit) then press ENTER. This sets the address to 31 but it is entered as a hexadecimal number.

6. Press ESC untl 'H5-01' is displayed again. Press the ↑ (up arrow) buton to navigate to parameter 'H5-02' then press enter.

7. 'H5-02' is the baud rate. Enter 04 using the arrow keys then press ENTER. This setng is 19,200 bit/s.

8. Press ESC untl 'H5-02' is displayed again. Press the ↑ (up arrow) buton to navigate to parameter 'H5-03' then press enter.

9. 'H5-03' is the parity. Enter 00 using the arrow keys then press ENTER. This setng is no parity.

10. Press ESC multple tmes untl the normal display appears.11. Power cycle the VSD to apply the new setngs.

Consult the VSD literature for further details on how to confgure parameters, enumerated fault/alarm code listngs and connecton terminal informaton.

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Installaton Instructons TS SeriesDocument No. TS-1100

Danfiss VSD Cinfguratin fir Midbus

Supported Models

The following are tested and supported:• WC Series

Procedure

Change the following parameters:1. 8-30 Protocol: [2] Midbus RTU2. 8-31 Address: 113. 8-32 Baud ate: [3] 19200 Baud4. 8-33 Parity / Stop Bits: [2] Ni Parity, 1 Stip Bits5. Power cycle the VSD to apply the new setngs.

Consult the VSD literature for further details on how to confgure parameters, enumerated fault/alarm code listngs and connecton terminal informaton.

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TS Series Installaton InstructonsDocument No. TS-1100

cllen-Bradley VSD Cinfguratin fir Midbus

Supported Models

The following are tested and supported:• PowerWlex 40• PowerWlex 400

Procedure

Change the following parameters:1. A103 (Comm Data ate): 4 (19200)2. A104 (Comm Node Address): 123. A107 (Comm Wormat): 0 = (8 data bits, ni parity, 1 stip bit)4. Power cycle the VSD to apply the new setngs.

Consult the VSD literature for further details on how to confgure parameters, enumerated fault/alarm code listngs and connecton terminal informaton.

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Installaton Instructons TS SeriesDocument No. TS-1100

cBB VSD Cinfguratin fir Midbus

Supported Models

The following are tested and supported:• ACH550• ACS550

Procedure

Change the following parameters:1. 9802 COMM P OT SEL: STD MODBUS2. 5302 EWB STATION ID: 133. 5303 EWB BAUD ATE: 19.2 kb/s4. 5304 PA ITY: 8 NONE 15. 5305 EWB CT L P OWILE: DCU PROFILE6. 5310 EWB PA 10: 1027. 5311 EWB PA 11: 1038. 5312 EWB PA 12: 1049. 5313 EWB PA 13: 10610. 5314 EWB PA 14: 10711. 5315 EWB PA 15: 10912. 5316 EWB PA 16: 11113. Power cycle the VSD to apply the new setngs.

Consult the VSD literature for further details on how to confgure parameters, enumerated fault/alarm code listngs and connecton terminal informaton.

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TS Series Installaton InstructonsDocument No. TS-1100

Liading Sifware Updates

Software updates can be feld-applied using a USB drive (touchscreens) or an SD card (PLCs).

Preparing Media

If a software update is necessary, the fles will be distributed in a IP folder. To load the contentsto the device, the contents of the IP folder must be copied to the root directory of a USB drive or SD card.

TOUCHSCREEN PLC

TOUCHSCREEN PLC

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Liading Sifware Updates (cintnued)

Ensure that the USB drive or SD card is completely empty, then paste the contents.

TOUCHSCREEN PLC

TOUCHSCREEN PLC

TOUCHSCREEN PLC

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TS Series Installaton InstructonsDocument No. TS-1100

Liading Sifware Updates (cintnued)

Check that the contents are as follows before proceeding. This should match the contents of the IP folder.

TOUCHSCREEN PLC

Loading Wiles to Touchscreen

To copy the fles into a touchscreen, insert the USB drive, then press YES when asked if you wantto proceed with the installaton.

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Installaton Instructons TS SeriesDocument No. TS-1100

Liading Sifware Updates (cintnued)

Rhen the installaton is complete, remove the USB drive and press Restart.

The device will then reboot with the new software and the process is complete. If an actvaton is necessary, contact SCC Inc. technical support with the actvaton code displayed and enter thekey given to complete the actvaton process.

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TS Series Installaton InstructonsDocument No. TS-1100

Liading Sifware Updates (cintnued)

Loading Wiles to PLC

To copy the fles into a PLC, frst power the device off. Once it is powered off, insert the SD card. Rhen the device is powered on, the 'SD' LED will fash as the device loads the software. Rhen itis fnished loading, the 'SD' LED will be a steady green and the 'E ' LED will be fashing red. Eject the SD card and the PLC will reboot with the new software (no power cycle required).

The PLC may require actvaton when the updates are complete. If an actvaton is necessary, contact SCC Inc. technical support with the actvaton code displayed and enter the key given to complete the actvaton process. If the default IP address of the PLC had been changed, it will benecessary to establish a serial link and perform that procedure again.

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Installaton Instructons TS SeriesDocument No. TS-1100

Remite Minitiring via cndriid ir iOS Devices

emote monitoring of a touchscreen is possible using an Android or iOS device (phone or tablet). The touchscreen display can be viewed or manipulated as if the user was at the actual touchscreen (in real tme). To establish a connecton, the phone or tablet must be connected to the same network as the touchscreen. This requires that the network for the touchscreen contain a wireless access point.

To download the app, search for VijeiDesign'cir in the Google Play Store or AppleApp Store. Once downloaded, open the app.

Once open, the app will automatcally searchfor available devices. Touching 'Add Device' willallow the IP address of the desired touchscreento be manually entered.

Navigate to the gear icon to change setngs.Note that when 'View-Only' is selected, an icon appears on the top right corner of the screen. Selectng 'Keep awake while connected' will keep the screen lock from actvatng.

Touch the device to connect to. Acknowledge the warning shown if remote control is desired, then touch 'OK'. If view-only access is desired, touch 'View-Only'.

The remote device is now connected. If remote control was enabled, touching the display will manipulate the touchscreen remotely, otherwise a message will appear statng that 'View-Only' modewas selected.

REMOTE CONTROL VIEW-ONLY

Touching the camera icon will allow the screen image to be saved.

Informaton in this publicaton is based on current specifcatons. The company reserves the right to make changes in specifcatons and models as design improvements are introduced. Product or company names mentoned herein may bethe trademarks of their respectve owners. 2018 SCC Inc.Document No. TS-1100 Your feedback is important to us. If you have SCC Inc.Country of Origin: USA comments about this document, please sent them 1250 Lunt AvenuePage 152 to [email protected] Elk Grove Village, IL 60007

USA