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UNDP - Regional Service Centre for Europe and the CIS HIGH CURRENT 1/37 UNITED NATIONS DEVELOPMENT PROGRAMME REGIONAL CENTER FOR EUROPE AND THE CIS ELECTRICAL HIGH CURRENT SYSTEMS TECHNICAL SPECIFICATION

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UNDP - Regional Service Centre for Europe and the CIS

HIGH CURRENT

1/37

UNITED NATIONS DEVELOPMENT PROGRAMME

REGIONAL CENTER FOR EUROPE AND THE CIS

ELECTRICAL HIGH CURRENT SYSTEMS TECHNICAL

SPECIFICATION

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INDEX :

HIGH CURRENT SYSTEMS TECHNICAL SPECIFICATION : 3

001- PANELS : 3

007- CABLES : 14

009- LUMINAIRES: 20

010- SWITCH, SOCKET AND LAMP HOLDERS: 21

011- CABLE TRAYS: 23

015- UNDERFLOOR DUCTING SYSTEM (WITH FLUSH SOCKET BOX): 25

018- BUILDING INTERIOR INSTALLATION: 28

022- EMERGENCY LIGHTING AND DIRECTION INSTALLATION: 33

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HIGH CURRENT SYSTEMS TECHNICAL SPECIFICATION :

001- PANELS :

The panal type is standing type for the main panels and panels with big power consumptions. If the panel power consumption is low the panel type can be wall mounted type.

Distribution boards are the ones with sizes up to 0.5 m2 and these panels shall be wall mounted type. These panels shall be used for distributing the energy between floors or for supplying the energy to the mechanical room with a few small motors. Waterpfoor distribution panels are composed of the separate pieces that attached each other. Electricity meter boards must be separate from the main panel. Other type of panels can be used for the purpose beyond above mentioned ones. All type of fuses, measurement devices, electric meters, relays and connection equipments shall comply with TSE requlations. if this standart is not exist, it shall comply with EN, HD, IEC requlations. A- Main Distribution Panel, Front Controlled:

1- Main distribution panels, front controlled, manufactured in factory, shall

consist of type tested panels.

2- Main distribution panels shall comply with electrical and mechanical regulation specified in this document and its attachments. It also shall comply with the project that employer approved. Panels shall be indoor, free standing, fixed to the floor and prefabricated type. If the main panel is wall mounted type (for buildings with small power consumption) the panel features shall be same with the distribution panel ones.

3- All electric materials that used inside panels according to single line diagram

and material list shall be submitted after completing all electrical mechanical connections and routine test are made. Panel shall be submitted in working condition

4- Main panels shall comply with DIN EN 60439-1 (VDE 0660 section 500) and

IEC 60439-1 (fire) and all tests shall be done.

5- Protection degree shall comply with IEC 529 or VDE 0470 section 1.

6- Main distribution panels that is front controlled;

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- LCIE - ASEFA - KEMA - ASTA

etc. type tests shall be done at one of the above laboratories. Type test report shall be given together with the offer.

8 pcs of the following tests shall be done at the laboratories, (comply with IEC 60439-1).

- IEC 60439-1, section 8.2.1;

Inspecting temperature rise limits,

- IEC 60439-1, section 8.2.2; Inspecting insulation features tests,

- IEC 60439-1, section 8.2.3;

Inspecting short-circuit withstand tests,

- IEC 60439-1, section 8.2.4; Inspecting protection circuit efficiency tests,

- IEC 60439-1, section 8.2.5; Inspecting insulation lengths and surface insulation lengths

- IEC 60439-1, section 8.2.6; Mechanical operability,

- IEC 60439-1, section 8.2.7; Inspection of the degree of protection,

- IEC 61641, VDE 0660 section 500 Add.2’; Internal arc test

7- Manufacturer shall do following 3 routine tests (Employer shall join the tests

that are done at manufacture’s factory).

- IEC 60439-1, section 8.3.1; Coupling inspection and if necessary electrical operability

- IEC 60439-1, section 8.3.2; Insulation tests,

- IEC 60439-1, section 8.3.3;

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Protection precautions shall be taken and protection circuit’s electrical continuance tests shall be done.

8- Front controlled distribution panels shall comply with following regulations

- “Regulations for Electrically High Current Installations” published in the Official Gazette with amendment dated 30.11.2000 and numbered 24266.

- “Regulations for Grounding in Electric Installations” published in the Official

Gazette with amendment dated 21.08.2001 and numbered 24500.

- “Regulations for Interior Electric Installation” published in the Official Gazette with amendment dated 16.06.2004 and numbered 25494.

9- All electric, electronic fixed and with socket circuit devices shall comply with

(IEC) and international electrotechnic comission standards, unless otherwise specified.

10- Freestanding panels shall be made of min. 2mm, smooth surface DKP steel

metal and shall be manufactured by perforated 50x5 mm L or U profiles jointing together with bolts. Moreover it shall be resistant against short circuit (min. 36 kA ). All plastic elements inside panel shall comply with IEC 695-2-1 and shall endure 5 second against 960 °C and shall be self-extinguishing.

Door edges and if exist window edges of the door shall be bended 1 cm towards inside for strengthening purpose.

11- Panels shall be transferred from factory as separate parts, each part shall

not be longer then 2400 mm in total length. Eyebolts of the panels makes transfer easier (eyebolts shall be over the panel at factory delivery stage).

12- Lateral surface of the panel shall be sheet metal plates that attached by

bolts from outside. This feature will enable the panel to be extended.

13- All panels shall be manufactured with hinged type sheet metal front doors Switch control handle shall be placed over the front door. The holes that is opened for the control handle of the switch shall be properly opened and the holes shall be isolated according to IP class (IP 54).

14- Rear side of the panel shall be manufactured with hinge-type doors or with

bolts. If back surface of the panel is on the wall or column, bolts shall be used and for the other panels hinge-type doors shall be used.

15- Locks of the movable doors shall be one type, double lock. Locks shall not

damage the paint of the panel. Controller shall approve the lock design.

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Plastic seal to provide IP54 shall be put between the body and the door against dust and humid.

16- Special apparatus shall be provided for connection between panels’ all iron

parts and equipotential cupper bars Additional precaution shall be taken by using multiple twistable wires to provide better electrical connection between panel doors and panel body. Regarding equipotential bar and protection conductors and grounding conductor sections etc.; 21.08.2001 dated and 24500 numbered ‘’Grounding of the Electrical Installation Regulation’’ shall be complied.

17- Iron parts of the panel shall be painted with 1 layer red lead and 2 layers matt gun-sprayed paints.

18- Opening of a panel from back door (to reach bars) shall only be possible if

circuit breaker is OFF.

19- If front panel door is closed, circuit breaker shall be in test position mode and after this all function tests shall be done.

Energy switches shall be controlled without opening the doors. A window shall be opened over the small part of the door for this purpose.

20- If multiple wired and flexible conductorss will be used for connection at terminals. Thimbles shall be used at the end of the cables. More then one cable shall not be connected to the terminal.

Slitless type of cable shoes shall be used, if connection is done without electric terminals.

21- Labels shall be placed under each switch or fuse to show supllying location.

Also labels shall be placed at both ends of the cables, showing where it comes and where it goes.

22- Panel numbers which specified in the project shall be written over a suitable

place of the panel. Writing shall be over a black alclad aluminum plate with pantograph.

23- Bus-bar entrance into the panels shall be from the top. Incoming and

outgoing cables to the panel shall be from the top or bottom; isolation shall be done according to the IP class of the panel. NOT: If there is sprinkler in an area, cable entrance into the panel shall be from the bottom. Regading bottom entery type panles, at the junction points of the bottom side of the panel and cable channel that point shall be covered properly to perevent mouse entrance etc.

Foreign object entrance inside the panel must be prevented, mouse etc.

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Inside panel shall be ventilated. Bare parts of the panel shall be protected against random touch. Regarding nominal voltage over 42 V; if reaching height is less than 180 cm, whole parts of the panel that are not covered with insulation materials, shall be covered with sheet iron or heat resistant insulating materials to prevent random touch. Conductive parts’ being painted by lac or enamelling methods never be accepted as protection method. Minimum 70 cm empty space is required in front of the panel; this space is required when doors of the panel is opened vertically. The doors shall be copable of opening 110 degree at both sides.

Where panel heigth is longer than 1 m, the door shall be fixed by spanish type of latches at bottom, top and edge sides (as it were paper cabinets).

Heat resistant and nonconducting separators (pertinaks etc.) shall be placed between knife-type fuses. It shall grip connecting terminals of the fuse bases and it shall exceed fuse handles. The separators will prevent arc spreading adjacent fuse. If the distance between fuses is more than 9 cm, separator will not be necessary.

Bar transition points between the panels shall be covered by heat resistant and nonconducting separators. Each panel shall have a separate door, there shall not be open transition from side panel.

24- Transparent, incombustible plate shall cover the area that is separated for

the control bars laid vertically and horizontally, preventing contact to this area by mistake.

25- Vertical bars shall withstand shot circuit current and its current shall be

calculated appropriately.

26- Panels that placed over the floor and main panel shall be mounted over the plastered concrete base that is 10 cm in height. Regarding bottom entry type panels, only the bottom side shall be open, the other sides shall be closed and the front side shall be hinged cabinet type and openable.

27- Phase bars with enough amperage shall be mounted at the top or in the

middle of the panel horizontally. These bars shall be painted with epoxy paint and colours shall be as follows.

Phase : BLACK, BROWN, GRAY Phase bars shall be in a separate fully closed area at the top or in the middle of the panel. A screw and transparent door is necessary to reach these bars.

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28- Neutral and grounding bars shall be placed at the bottom of the panel. These bars shall be painted with epoxy paint. Colour shall be as follows;

Noutral (Mp) : LIGHT BLUE Grounding (SL) : YELLOW + GREEN

29- Up to 1600 A, 2 pcs of circuit breaker can be installed one after the anaother.

Total 14 pcs of cables, up to 240 mm² can be connected to the bars that are just under the circuit breaker for terminating purpose. Bar must be used for connection of fuses and switches that are bigger than 100 A. Conductors inside panel shall be connected to the panel body throug special crochets.

30- Bars shall definitely be highly conductive, complying with ISO 1337, to be

%99,9 pure, Cu ETP type, inside of the bar is full of electrolytic cupper lama. Cupper bar will be calculated according to the dynamic effect of the short circuit current.

31- Operation safety shall be provided according to the IEC 439-1 form 1, 2b,

3b and 4.

32- Power and control circuits shall be insulated from each other against electric shock.

33- Electrical connectios of the sign lamps, control buttons and control switches

that are on the panel door shall be fixed to the door properly with raw type electrical terminals. The opposed parts of the cables that comes from the panel body shall be fixed by raw type electrical terminals too. Between these two terminals multiple wired and flexible conductors shall be used.

34- Security of the person shall be provided, against spreading of the arc, inside

panel according to AS 3439-1.

35- Panels shall be earthquake resistant according to UBC, CBC (Test certificates shall be given).

36- Over current limiting devices shall be placed inside panels. Devices shall

comply with VDE section 1 (overvoltage category: IV) and IEC 664 category IV norms.

37- Over current limiting device test documents shall comply with IEC 1024 and

VDE 0675 Part 6.

38- Speed of the over current limiting devices shall be less then 100 ns. Over current limiting devices shall have multi functional therminals for bus bar and cable connections.

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Technical values: - Nominal voltage : 255 V - Nominal frequency : 50-60 Hz - Min. Insulation resistance : 10000 Mohm - Short circuit endurance : 40-70-100 kA / 50 Hz - Working temperature : -40°C +80°C - Mounting type : 35 mm DIN rail interlaced type - Protection class : IP 20

39- Surge arresters shall be single pole and shall be installed between each

phase and nature - grounding. It shall have alarm contact and fault lamp over itself.

40- Surge arresters shall be mounted in a separate area inside panel, if this is

not possible it shall have at least 15 cm between other devices.

41- A lighting lamp is necessary for each panel; it will be ON when panel door is open.

42- Panel dimensions:

Height : 1800-2200 mm Width : 500-1300 mm Depth : 350-1000 mm

There shall be 400 mm gap at the bottom of the panel.

43- Panels shall have 3 years guarantee against corrosion.

44- Panels shall have %15 spare area inside.

45- Panel production shall be started after drawings and calculation results are approved that are prepared according to the project and the technical regulations.

4 copies of the manufacture drawings and documentations shall be prepared to give the controller for approval.

Manufacture drawings shall be consisting of the followings; - Outside drawings of the panels (front, rear, side, top wievs) and details (lock hinge, module connections, suspension eye, etc.) - Interior drawings of the panels (front, back) - 3- pole and 1- pole electrical connection diagrams - Short circuit calculations

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- Cable lists and codes - Material detail list (colour, brand, values, project codes) - List of labels

46- One copy of the manufacture drawing shall be saved inside a nylon case at

the main panel room. Also, single line diagram shall be hanged at a suitable place, in the main panel room inside frame with window.

B- Sub Distribution Panels:

1- Sub distribution panels shall comply with all the standards of the front

controlled main distribution panels and the project that provided by employer. These panels shall be manufactured in a factory. Type tests are required.

2- Manufacturing drawings of the panels shall be prepared according to the

regulations, project and shall be approved. Smooth surfaced 1,5 mm sheet metal can be used for manufacturing of panels up to 0,5 m2. Panels up to 0,5 mm2 could be made undersurface.

Regarding panels bigger than 0.3 m2, the door of the panel shall be strengthened by sheet metal profile, from inside of the panel, against twisting. Door edges shall be strengthened by bending 1 cm inward.

The doors of the panal shall open outwards 110°. Regarding the panels that are placed behind wainscot, the wainscot door shall be minimum 5 cm bigger at sides than panel door. Wainscot door shall not prevent panel door’s opening. The door hinges shall be hidden type

Regarding the top entry panels, the empty area must not be filled with wood, paper etc. materials, it shall be covered by special methods.

The iron components shall be paineted by 1 layer of red lead and 2 layers of gun-sprayed paint or oven-drying method.

Regarding the panel up to 60 A, using bara is not necessary for phases, if it is more than 60A connections shall not be done by cables, it shall be done by bars. The bar colours shall be; phases black-brawn, grey; neutral light blue; earth yellow with grey band. Even if phases are not made of bars, neutral and earth (equipotential) shall be made of Cu bar. The phase inlet side of the automatic fuses shall be done by using comb shaped bars.

The load balance must be done between phases under full load. The load balance shall be cehcked by pliers ammeter or ammeter of the panel.

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3- There shall be chassis or bridge to carry electrical equipments inside panel body. There shall be interior door that is inserted and removed easily to cover the equipments. This interior door shall have holes for fuses, control equipments etc. The inner door shall be copable of being inserted and extracted easily. Over the inner doors, there shall be mouthpiece around the windows frame that is opened for fuses with aim of being interferied from outside.

4- Dimension of the panel shall be choosen according to the equipments

dimensions inside the panel. There shall be spare area inside panel too. The door shall be locked type. Same key shall open all of the locks.

5- Entire iron parts of the panel must be connected within each other and with

equopotantial bar. The connnection between panel doors and panel body shall be enhanced by using multi wired, flexible conductors. Equopotantial bar, protection wires, section of earthing wire, other cases related to earthing shall comply with the requlation of ‘’Grounding of Electrical Installations’’ published, dated 21.08.2001 and numbered 24500.

6- There shall be plastic seal around the doors of the surface panels.

Leaktightness shall be provided against humid and dust according to IP 31 class.

7- There shall be phase, nature and grounding bars inside panels. Phase and

nature bars shall be insulated from the casing. Bars shall be made of pure copper and its cross section shall be chosen according to the current. Feeding and outgoing lines shall be attached to the panel by rail type terminals. Terminal shall be durable to fire and heat.

8- There shall be a sheet metal place to put diagrams inside the panel.

Dimensions of this metal place shall be appropriate A4 in size.

9- There shall be around %20 spare terminals installed inside the sub distribution panels.

The lines shall be connected to panel by non flamable and insulated electric terminals. The neutral lines shall be connected to insulated cupper bar. Phase conductors of the columns that enter the panel shall be connected to the fixed electrical terminals, the neutral line shall be connected to cupper bar. There shall be earthing bar that are gathering the protection lines, earthing connection shall comply with the existing earthing installtion.

10- Surface mounted panels’ outgoing lines shall have fittings. %20 spare fitting

shall be installed inside the panel.

11- Fittings shall be fire proof and shall fit with cable cross section. It shall be made of bakalitte or incombustable material.

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Regarding surface panels that used in dusty areas, all entrances shall be done by fittings. There shall be seal system at the doors. This type of manufacturing does not enough for waterproof feature.

12- If required, sub panels that are fed from the diesel-generator, main supply

or UPS supply can be placed side by side, two or all of them can be collected in one big casing. Controller shall approve the design. Sheet metal curtains shall separate each unit.

13- W-Automat type fuses is for lighting panels. C type fuses (delayed) and NH

type fuses is for power panels.

14- Regarding lighting panels, 0-1 and 1-0-2 control switches or light buttons shall be collected in a separate area of the panel. This helps to control the circuit without opening the door. This area can be at the bottom or side of the panel.

15- Regarding power panels, control buttons, switches and signal lamps shall

be mounted over the movable door of the panel.

16- Regarding sub distribution panels, there shall be signal lamps (1pc for each phase, 3 pcs in total) that show if there is voltage inside the panel. The lamps shall be mounted over the door.

Regarding distribution panels, if there are sign lamps at the outer door, the inner doors shall not damage its conducters

17- There must be metalic or plastic labels under each fuses or switches, showing the supplied area information.

18- All command and control cabling shall be numbered and coded.

19- All fuses, compact switch, measuring devices etc. shall be coded in

accordance with the project This code shall be installed over the material.

20- If multi fine-wire conductors is used for connection at terminals. Ferrules shall be used at the both ends of the cables.

21- More then one conductor shall not be connected in one terminal.

22- Automatic fuses; impulse relays, contactors, relays and electrical devices shall be placed side by side.

23- Panels shall have 3 years guarantee against corrosion.

24- Manufacturing drawings those are prepared according to the project,

regulations and calculations; as 4 copies, shall be approved by controller before starting the production of the panels.

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Manufacturing drawings shall consist of the followings;

- Outside drawings of the panels (front, rear, side, top wievs) and details (lock hinge, etc.) - Interior drawings of the panels - 3- pole and 1- pole electrical connection diagrams - Short circuit calculations

- Cable lists and codes

- Material detail list (colour, brand, values, project codes)

- List of labels

C- Front Controlled Distribution and Power Panels:

1- These panels shall have all the features of front controlled main distribution panels. Moreover, distribution panels shall be fixed type and power panels shall be drawer type. These panels shall be manufactured in a factory. Type tests are required.

2- Regarding distribution/ power panels, fuse, contactor, relay etc. shall be put

in the drawer inside panel or over the bridge. Circuit breaker, control button and signal lamps shall be put in front of the drawer iside panel.

3- 380/220 V insulation transformers shall be used inside power panels,

according to the number and power of the electrical devices inside the panel.

4- All control cabling shall be numbered and codded.

5- Command and control cables shall be different colour insulated according

to their voltage level.

D- Waterproof Distribution Panels:

It shall be comply with the specifications of the distribution panels. In dusty, humid areas and areas that should be protected against mechanical impacts, weatherproof panels shall be produced to be able to connect each other. It should have seals on joints and doors. As materials; casting alluminium, polycarbonate etc. can be used.

Copper bars must be used for more than 16 mm2 section connections.

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Fuses can be controlled after opening the cover and switches can be controlled when cover is closed.

E- Energy Meter Panels:

Panels shall be made of 1,5 mm DKP sheet metal in thickness.

Mecheanical features of the panels shall be same with main panel and distribution panel.

Panel capacity shall be enough for electricity meters, incoming fuse, outgoing fuses, current measuring transformers and residiual current switch.

Panel shall have two sections one is for the energy provider and onather one is for the consumers.

The part belongs to the Energy Distribution Institution shall starts from cutoutbox, ends at electricity meters (connection points included), it shall be closed and shall not be opened easily. It shall be sealable at the connection points with main panel body. The sealed part shall not cover indicator part of the panel for being read easily.

007- CABLES :

A- General:

1- All cabling system that is used in the building shall be halogen free type.

2- Different type and colour cables will be used. There shall be unity in cable

colours to make maintenance easy in the future.

3- BLACK, BROWN, RED for phases (R, S,T) and LIGHT, BLUE for neutral (Mp) and YELLOW+GREEN for grounding (SL) conductor will be used.

O, J series cables shall be used (J means, grounding cable colour is YELLOW+GREEN and O means, grounding cable colour is LIGHT BLUE).

4- Regarding H07Z-U, H07Z-K, LIHCH, NHXMH, N2XH, NHXH-E90, SIMH-O

FE180 E90, SIMH-O NYFGbY (YVŞV) etc. cables shall be manufactured according to TSE, VDE regulations with colours specified as follows;

Column Lines:

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O series N2XH type cables.

- PHASE 1 (R) : BLACK (labelled with number 1) - PHASE 2 (S) : BLACK (labelled with number 2) - PHASE 3 (T) : BROWN(or black labelled with number 3) - NEUTRAL (Mp) : LIGHT BLUE GROUNDING (SL) H07Z-K type insulated YELLOW and GREEN

3 Phase Motor Supplies:

J series N2XH type cables.

- PHASE 1 (R) : BLACK - PHASE 2 (S) : BROWN - PHASE 3 (T) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

1 Phase Motor Supply:

J series N2XH type cables.

- PHASE (R/S/T) : BROWN - NEUTRAL (Mp) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

1 Phase Lighting:

J series NHXMH type cables.

- PHASE (R/S/T) : BROWN - NEUTRAL (Mp) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

3 Phase Lighting (4 core cable):

O series NHXMH type cables

- PHASE 1 (R) : BLACK (labelled with number 1) - PHASE 2 (S) : BLACK (labelled with number 2) - PHASE 3 (T) : BROWN (or black labelled with number 3) - NEUTRAL (Mp) : LIGHT BLUE

GROUNDING (SL) HO7Z-K type yellow green insulated conductor.

3 Phase Lighting (5 core cable):

J series NHXMH type cables

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- PHASE 1 (R) : BLACK (labelled with number 1) - PHASE 2 (S) : BLACK (labelled with number 2) - PHASE 3 (T) : BROWN (or black labelled with number 3) - NEUTRAL (Mp) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

Normal and Springy Switches:

O series NHXMH type cables.

- PHASE (IN) : BLACK - PHASE (OUT) : LIGHT BLUE

Commutator Switch:

O series NHXMH type cable.

- PHASE (IN) : BLACK - PHASE (OUT) : BROWN - PHASE (OUT) : LIGHT BLUE

5- H07Z-U cables are used with suspended installation and with pipes. H07Z-

U cable colours will be as follows.

1 Phase Lighting: - PHASE (R/S/T) : BLACK - NEUTRAL (Mp) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

3 Phase Lighting:

- PHASE 1 (R) : BLACK - PHASE 2 (S) : BROWN - PHASE 3 (T) : RED - NEUTRAL (Mp) : LIGHT BLUE - GROUNDING (SL) : YELLOW + GREEN

Normal and Springy Switches:

- PHASE (IN) : BLACK - PHASE (OUT) : BROWN

Commutator Switch :

- PHASE (IN) : BLACK - PHASE (OUT) : BROWN - PHASE (OUT) : RED

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6- Control cable colour shall be BLACK with number on it.

7- Column cables shall be laid in squentially, first cable out will be from right,

second cable out will be on the left of the first cable and last cable out will be from left side.

Cables will be connected to the cable ladder with special metalic crochet and to the cable trayer with special link.

8- Regarding cable identification labels, it shall be used 1 pc in each 30 m and

at the beginning, at the end of the cable.

9- Labels shall be metallic; having column number and panel name that is supplied by. Cables shall be caved in and labels shall be attached to the cable firmly.

10- Regarding sub panel cable outlets, only metallic labels is required with line

number on it.

B- H07Z-U Type Conductors:

1- It can be used interior and only inside pipes. It shall be halogen free and VDE certificated.

2- Cables shall be suitable for nominal 450/750 V. Withstand to heat, cold, humit and having sheaths in different colours.

3- If installation is flush mounted, this cables will be laid inside PVC pipes for

lighting and socket lines.

C- H07Z-K Type Connectors:

1- It can be used inside panels, for grounding, for moving equipments by inside pipes, internally. It shall be halogen free and shall comply with VDE 0282 section 9/HD 22.9 S1.

2- Cables shall be suitable for nominal 450/750V, having sheats in different

colours.

D- LIHCH Type Cables:

1- Interior and for moving equipments it can be used. It shall be halogen free and VDE certificated.

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2- Cables should be suitable for nominal 300/500V voltage, having sheaths in different colours.

E- LICH-FE180 Type Cables:

1- It shall be used Interiorly and for moving equipments. It shall be halogen

free and flame retardant.

2- Insulation resilience shall be minimum 180 minutes.

3- Continuance tests of smoke density, fire propagation, fire retardation, corrosive gas, halogen free, current durability for 180 min. shall done complying with IEC and VDE regulations.

4- Cables shall be suitable for nominal 300/500V, conductors can be in

different colours, sheaths is orange. 5- This cables can be used at following places.

- Voice installation - Fire alarm lines (siren) - FM 200 extinguishing lines (siren)

F- NHXMH Type Cables:

1- It shall be used interior, surface installation or inside pipes. It shall comply

with VDE 0250 section 214. It shall be halogen free.

2- 2- Cables shall be suitable for nominal 300/500V. Withstand to heat, cold, humit and having sheaths of the conductors in different colours.

3- This cables shall be used at installation areas or areas having accessible

suspended ceiling, for lighting and socket installation.

G- N2XH Type Cables:

1- It can be used at external places, undergrounds it shall complying with VDE 0276. It must be halogen free.

2- Cables shall be suitable for nominal 0,6/1 kV voltage. It shall withstand to

heat, cold, humit and having sheaths in different colours. It shall have different numbers to be differantiated easily.

3- This cable shall be used, unless otherwise specified, for main feeding lines,

motor feeding and control lines.

H- NYFGbY (YVŞV) Type Cables :

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1- It shall be used at exterior places, undergrounds and it shall comply with TS

212, VDE 0271-0276, IEC 60502. It shall withstand against mechanical forces, flat steel pipe armoured, with diagonal catch steel bands.

2- Both conductor and cable exterior casing shall be polivinil-klorid (PVC)

based thermoplastic non-conductor.

3- Cables shall be suitable for nominal 0,6/1 kV, having sheaths in different colours. It shall withstand heat, cold and humit.

4- If not otherwise specified, it shall be used for exterior lighting installation I- Heat resistant cables ( SIMH-O ) :

1- These cables are insulated with special silicone, it shall witstand heat, acid

and alkali materials. It shall comply with TSE 3164, BS 6387.

2- 2- Qualifications of the cable shall not be changed between -60°C and +200°C. Core can be thin-coated copper, single or thin multi wire conductor. Cables shall be suitable for nominal 500V.

3- 3- This cable shall be halogen free.

4- This cables shall be used with incandescent filament, halogen, etc.

luminaries, internal connection and power supply of the luminaries that have high heat emission.

J- Fire Resistant Cables (SIMH-O FE180 E90, NHXH-E90):

1- It can be used for internal, surface mounted installation and inside pipe type installations. It shall be halogen free, complying with VDE (DIN VDE 0472, section 804 A and C type tests, IEC 332.1, 332.3 C type tests), fire retardant.

2- Cables shall be suitable for nominal 0,6/1 kV, shall bear fire during 90

minutes (under load).

3- Exterior sheath of the wire can be at different colours, cable exterior case has to be red.

4- This cables shall be used with devices that is in operation during and after

fire.

- Fume exhaust aspirator. - Diesel-generator area, fresh air fans. - Diesel-generator area, exhaust aspirators. - Garage exhaust fans

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- Pressure setting fans for fire escape stair - Exhaust aspirators for main panel room. - Exhaust aspirators for transformer area. - Fire jockey pumps - Fire pumps

009- LUMINAIRES:

1- Luminaires used in illumination installations shall be supplied according to

the principals that is given in the project appendix or in accordance with the brands to be determined at the bill of quantities or unit price list.

2- Prior to supplying luminaires, samples, catalogues shall be submitted to the

controllership to get opinion and their approval. Orders shall be made upon this.

3-

Luminaire shall work safely in normal operation and shall not cause any danger for environment. Luminaires shall comply with IEC EN 60598-1 standards.

4- Ballasts shall comply with the TS or VDE and all relevant international codes

and standards. Ballast shall be filled with poliester or similar material. Ballasts and luminaire bodies shall not make any vibration. Electronic ballasts shall be used.

5- Aluminum surfaces to be used as reflector shall be smooth and bright. This

surface and armature reflector shall be made material covered with eloxal 8-10 micron in thickness. Samples shall be manufactured before mass production.

6- Regarding incandescent filament spreading high heat, (SIMH-O) cables

shall be used for inter part connection and (NYMHY) cables shall be used for moving part connection inside luminaries.

The conductors of the luminaire shall be formed in bundle form and shall be connected to the luminaire body. The ballast loss must be minimum.

7- Iron works of the luminaires shall be made with great care, curved carefully

and there will not be any punctures or weldinig slag on the finished luminaire.

8- Luminaire shall be same type and shall have same power as showed in the

project.

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9- Metallic surface of the luminaries that is not eloxal shall be painted as 1 level prime paint, 2 level oven drying. Colour of the paint, for last level shall be determined by controller.

10- Sealing shall be provided for waterproof luminaires. Sealing shall be provided for fluorescents luminaires with waterproof holders.

11- Regarding luminaries with diffuser; diffuser parts shall be opal and base parts shall be porcelain. Plastic seal shall be used between diffuser and base parts.

12- Luminaires shall be made of minimum 0,5 mm DKP sheet metal (luminaires that decorative and used in suspended sealing min 0,7 mm; luminaires that decorative and used in aluminum suspended sealing, min 1 mm DKP sheet metal shall be used). Special profiled body, made of lamps or ballasts, shall be strengthened by additional twists on the body, luminaire shall be shaped in a way that enabling discharging heat and hot weather outside of the luminaire. Luminaire’s frame shall have special air channels, it shall have special frame, it shall enable easy mounting and intervention, the light distribution shall be symmetrical bat wing like shaped, number and shape of the luminaire shall comply with lighting calculations of the project.

Effectiveness of the luminaire shall not be less than %70. If required, the manufacturer must be capable of improving the effectiveness of the luminaire by reliable laboratory test reports.

010- SWITCH, SOCKET AND LAMP HOLDERS:

A- Switches:

1- All switches shall have TSE documents.

2- Inside of the all switches shall definitely be either porcelain or incombustible

bakalitte.

3- Switches’ properties are 10A, 500V at least with overturned catchet.

4- Colour and physical properties of switches shall be determined with the controllership jointly.

B- Sockets:

1- Flushed Sockets:

- Sockets shall definitely be grounded type. - All switches shall have TSE documents.

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- Single phase sockets shall be at least 16A. - Sockets shall be lid-type if specified in the project (at WC’s where flust

mounted installation is done). - Switches shall be mounted as per descriptions in the project. - Sockets that are supplied from UPS shall be different from other sockets.

It must have a tip except from grounding contacts.

2- Surface Sockets With Thermoplastic Casings:

- Inside of the sockets shall definitely be either porcelain or incombustible plastic.

- Sockets shall definitely be grounded type. - All sockets shall have TSE documents - Single phase sockets shall be at least 16A and three-phase sockets shall

be at least 25A. - Sockets shall have self-closing spring lids. - Sockets shall be used at places where there is no water tightness and no

impact effects. - Switches shall be mounted as per descriptions in the project.

3- Metal Casting (Aluminum) Sheltered (Weatherproof) Sockets:

- Inside of the sockets shall definitely be either porcelain or incombustible

bakalite insulated material. - Sockets shall be grounded type. - Single phase sockets shall be at least 16A and three-phase sockets shall

be 25 A, 63 A. - Sockets shall be enveloped in a metal casing and shall have spring-type,

self-closing, shall have (aluminum) cast metal lids. - Switches shall be mounted at the height specified by controller.

C- Lamp Holders:

1- Lamp holders where fluorescent bulbs are not used shall be made of

porcelain material.

2- Lamp holders shall not be affected by the heat that is emitted by the bulbs. the light bulbs shall be taken out comfortably.

3- Lamp sockets for fluorescent light bulbs shall be made of plastic material

resistant to high heat and they shall be incombustible. Contacts of the light bulbs, starters and lamp sockets shall be made of bronze and should not lose flexibility in time.

4- Lamp sockets of the fluorescent lamps used in humid and dusty

environments shall be watertight.

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011- CABLE TRAYS:

A- Cable Ladders:

1- Cable ladders are used for vertical cable carrying.

2- Cable ladder shall be made of either 1.5 or 2 mm sheet iron according to

the width of the cable and if the width is 40 mm 1.5 mm sheet iron shall be used, if the width is 60 mm 2.0 mm sheet iron shall be used.

3- Cable ladder stairs shall be made of 1.5 mm sheet iron. Stairs shall be fixed

as, minimum 3 pcs in each 1 m interval.

4- At places where the tray is changing altitude and direction, a level changing module, etc. shall be used.

5- If cable ladders have to be cut, welded, perforated, curled for special

productions, these points shall be cleaned and hot dip galvanized type.

6- Ladders shall be attached each other with stainless material coated bolts, nuts, washers, etc.

7- To attach cables to the ladder, stainless material coated metallic crochets

shall be used. Extra fee shall not be paid for this.

8- Cable ladder unit in bill of quantity is kg. All addition and turning materials (turning 900, T connection, quart connection, inward curling, outward curling, level changing modules) reduction modules prices included in the BOQ. No extra fee will be paid for these modules.

B- Galvanize Coated Sheet Iron Cable Trays TS 914 EN 1SO 1461:

1- Cable trays made of perforated sheet iron (with inward curled sides) shall

be used for horizontal cable distribution at places specified in the project.

2- Cable trays shall be made of either 1.5 or 2 mm sheet iron according to the width of the cable, if width is 25 cm, 1.5 mm sheet iron will be used, if the width is wider, 2.0 mm sheet iron will be used. The height of the cable tray’s sides shall be 40-50-60 mm.

3- Cable trays shall be perforated in 1/3 rate to enable ventilation, to prevent

dust and to connect additional modules.

4- Strong current and weak current cables shall be separated with separators or shall be laid into different trays. Plastic cable connectors shall be used one each 50 cm for connecting cables to cable trays.

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5- At locations where the cable tray changes altitude or direction, a level changing module shall be used. Consoles and rots shall be used for fixing and its location and form shall be decided together with the controller.

6- Cable tray shall be cleaned and hot dip galvanized after being perforated or

curled Hot dipped galvanized cable trays shall be used for humid areas, technical areas and otopark areas. Using the hot dipped galvanized cable trays for outside area is advisable.

7- When cable trays are connected each other all connection points shall be

made with stainless material coated bolts, nuts, washers, etc.

8- Special junction boxes shall be used for taking branches. Junction boxes shall be mounted over junction bridges. Mounting height of the junction bridges shall be suitable for cables pass through comfortably. If JB will be mounted to the cable tray, junction box shall be mounted over the lug that is attached to the cable trays.

9- Cable tray units in quotation list is kg. All addition and turning materials

(turning 900, T connection, quart connection, inward curling, outward curling, level changing modules), reduction modules, suspension module prices included in the BOQ. No extra fee will be paid for these modules.

C- Galvanize Cable Trays TS EN 10346:

1- Pregalvanize cable trays shall be used at all closed places .

2- Pregalvanize cable trays shall have similar features with galvanize coated sheet iron cable trays (011/B).

D- Vertical Transfer Module Of Cable Tray :

1- Vertical transfer modules are necessary at the cable entry point of the

surface mounted panels to prevent complexity.

2- Dimension of the vertical transfer modules shall be same as cable trays.

3- Sheet metal used in manufacturing shall be cleaned and pregalvanized or hot dip galvanized after being perforated or curled

Cables shall be fixed with enough intervals. Max fixing interval is given at the following table. Support element shall not harm cables in mechanically.

Cale external dimension

[D] (mm)a

Max. Fixing interval (mm)b

General For Caravan

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Horizotal Vertical Horizontal Vertical

D≤9 250 400 150 150

9<D≤15 300 400 150 150

15<D≤20 350 450 150 150

20<D≤40c 400 550 - -

a For flat cables, dimension shall be taken from main axis

b For horizontal distribution, If vertical distribution is more than 300’ this values can be used for vertical distribution too . If less than 300’ interval, vertical values shall be used.

c If cable dimension is bigger than 40 mm and cable section is bigger than 300mm2 manifacturer advices shall be taken into account.

015- UNDERFLOOR DUCTING SYSTEM (WITH FLUSH SOCKET BOX):

A- General:

1- If the flooring height is enough (min 75, max. 110 mm), underfloor ducting

can be used. System is composed of underfloor ducts, underfloor junction box and underfloor socket box, all part must be completely under the floor. All cabling and joint boxes shall be coded and numbered. Ducts and junction boxes shall be installed using water gauges. Top of the ducts, shall be covered by rabitz wires, all equipment shall be covered by finish cement.

B- Underfloor Ducting:

1- Duct shall be 28 mm in height; 190-250-350 mm in width and it shall not be perforated. Duct shall match completely with underfloor ducting JBs and socket boxes.

2- Ducts shall be made of bottom part, top part and section parts. Section parts

shall be attached to the bottom part by spot-welding and top duct part shall be attached to the bottom duct part by press bending method.

3- The whole ducting system shall comply with DIN EN 50 085, galvanize

coating shall comply with TS EN 10346.

4- Section parts shall divide the channel into 3 parts. Height of the section parts shall prevent ducting’s bending. There shall be no holes between top parts.

5- Outlet JB could be 6, 12, 18, 24 modules, as needed.

Calculating module method;

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1 socket………..2 module 1 data………….1 module 1 telephone…..1 module

6- Floor duct muffs shall be used at the ducting joints.

7- Ducts shall not be cut, if the parts has to be cut, it shall have galvanize paint

later on.

8- Special corner components shall be used where ducts turn downwards or upwards. Corner components shall have same features with floor ducting.

9- Duct terminating units shall be used at the end of the ducts.

10- For each section of the junction boxes, a guide wire shall be left. If wiring

between two junction boxes is required, a second guide wire shall be attached to the first one, together with conductor. There will be a continuously guide wire between junction boxes.

C- Underfloor Duct Junction Box:

1- Underfloor duct JBs are necessary at the points where socket outlet is

required, where floor ducts change direction and where there is a telephone reglet / socket terminal.

2- There shall be openable steel parts at the 4 sides of the underfloor duct JB.

Base part of the junction box shall be made of galvanized steel, 1,5 mm in thickness. There shall be stoppers to prevent duct entering the junction box.

There shall be no hole that is not covered by a duct and cause entering plaster, mortar into the JB.

3- There shall be protection lid over the junction box during installation

process. Later on, this lid will be changed with required lid. The temporal lead will prevent JB against impurity.

4- There shall be 4 pcs of adjustment screws each, at the bottom part of the

junction box and at top part of the covering sheets. It will provide proper coarse control and fine control, while mounting the top part of the junction box, making it at the same level with the floor level.

5- Different types of barrier or aluminum foil shall be used to prevent

connection of the different cables (telephone, data, and power cables). All duct JB parts shall be made of galvanized steel.

6- Inside of the underfloor duct JB shall be empty or shall enable placing socket

boxes.

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7- JB shall be made of polyamide material.

D- Underfloor Socket Boxes and Plugs:

1- Underfloor socket box casing shall be made of incombustible and non-deformable material. There shall be hinged type lid over it. Lid shall be 4 mm in thickness, hot dipped galvanize coated, and shall be supported with steel part and top part shall be suitable to be covered with same material of the floor covering.

There shall be 2 pieces of movable part over the movable lid for opening the lid and pulling out the plugs and cables (one is for low current and one is for high current).

2- Floor socket box shall be suitable both for floor junction box and for raised

floor equipments. There shall be special cable holder parts for incoming and outgoing cables.

3- Sockets shall be as single or double socket groups, made of incombustible,

no deformable materials and shall be fixed with plates that are knitted inside special boxes. Cases shall be connected to the perforated adjustment housings over the socket boxes by lugs.

4- Normal power sockets and uninterruptible power sockets shall be different. Precautions shall be taken for not plugged in the normal loads to the uninterruptible power sockets.

5- Controller approval is essential for socket box color.

6- Socket boxes shall be suitable to flexibility and every type of changes. Plugs

and socket shall have enough depth and height not to prevent lids from closing. Plug and socket location design shall not cause any complexity in cable entrance and exits.

The movable top part of the socket box shall have enough dimensions for extracting the 3 socket cables and 2 data cables.

7- UPS and main power switch colors shall be in different colors (including data

sockets).

8- The locations of the socket boxes shall comply with the project and shall be made of fire resistant materials. There shall be grounding terminals inside the sheet metal body.

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018- BUILDING INTERIOR INSTALLATION:

A- General:

1- Interior Installation,

- “Electrically High Current Installations Regulations” published in the Official Gazette with amendment dated 30.11.2000 and numbered 24246. - “Interior Electric Installation Regulations” published in the Official Gazette with amendment dated 16.06.2004 and numbered 25494. - “Protection of the Buildings against Lightning Regulations” published in the Official Gazette with amendment dated 21.07.1991 and numbered 20936. - “Grounding in Electric Installations Regulations” published in the Official Gazette with amendment dated 21.08.2001 and numbered 24500. - “Fire Protection of Buildings Regulations” published in the Official Gazette dated 09.09.2009 numbered 27344. - “General conditions of protection of Safety Measure Regulations” published by Police Department and Communication Brach Office with amendment dated 25.02.1991 and 40/91-150. - “MV Metallic Casing Modular Cells Technical Regulations” published by TEDAŞ dated Ocak 2005.

Regulations shall be applied; other points to consider TSE, EN, HD, IEC or similar regulations shall be supplied.

2- Installation will start from middle voltage and continue to the receivers.

Materials shall have features specified in the related sections.

3- Al conductors that will be used in the installation shall be in one piece in all installation. No addition is acceptable.

4- Conductor is responsible for all feeding, control and weak current cable

installation up to the receivers. Contractor will get the cost of the laid cables, based on BOQ value. Contractor is responsible to connect both ends of the cables (to the panel, lighting unit, weak current installation, automation field device etc.) No extra fee will be paid for this work

If lying of the every type of receiver, control and weak current cables are installed by 3rd patries, a time will be given to complete the work and labor unit price will be prepared, and payment will be made together with contractor attachments in a given time.

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5- Installation and connection fee will not be paid for the panels, lighting

luminaries and devices that will be supplied by the contractor.

Connection fee will be paid for the panels, lighting luminaires and devices that will be supplied by the employer according to BOQ.

6- Although taking all precautions for every type of holes, if drilling a hole will

be required in the future. Diamond drill or Hilti shall be used, cutter will not be accepted

7- Electrical contractor shall cooperation with other contractors while opening

the holes, channels at floors and walls and (no extra fee will be paid for this work).

8- Incombustible plastic or porcelain terminators shall be used in the

installation. Soluble and combustible type terminals can never be used.

9- Lighting and socket circuits of installation shall be separate and protected with separate fuses. If compulsory situation requires, if there is only one socket, it can be connected to the lighting panel or vice versa.

10- The current of the panels under full load shall be balanced.

11- Neutral cable section shall be same or half of the phase cable section

12- Distribution panels shall be at 170 cm height from the floor. The height could be changed by control engineer approval.

Flush Installation:

1- Flush installation shall be done where esthetical beauty is important and

construction type is appropriate. Contractor shall check the pipes inside concrete that have already installed, if there is a pipe that is not working, it shall be repaired primarily. No extra fee will be paid for this work.

2- Galvanize, steel or halogen free pipes shall be used and maximum 3 pipes

can be laid side by side.

If more than 3 pipes shall be laid, 4 cm distance is required between pipe groups. Otherwise pipes shall be coved by wire lath (Rabitz wire). No extra fee will be paid for this.

3- Junction boxes shall be at 220 cm height from the floor. junction boxes that

belongs to same room or hall shall be at the same level and properly installed. If not installed properly and overflows out of the plaster, contractor is responsible from all expenses to correct them. Junction boxes level shall be under the suspended ceiling level.

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4- Conductors or cables shall be laid after completing the plastering work.

Cabling shall be done after first whitewash is dried completely. The cabling colors shall be as; phase black-brawn-grey, neutral light blue, PE wire yellow with green bands. There shall be lustur connector at the lighting sorties.

5- Halogen free junction boxes shall comply with TSE regulations. More than

4 pipes cannot be inserted inside round shape junction boxes. If more than 4 pipes need to be installed, 100x100 mm or 120x120 mm square type junction boxes shall be used.

6- Regarding casing and lids of the flush installation; square junction boxes

shall be made of 1 mm steel. Lid shall be connected to the casing with 4 bolts and lid shall spills 5 mm from edges. Flush square junction boxes shall be made of incombustible, hard plastic materials. Controller approval is important in this case.

7- Enough number of electric workers shall be on the site while pouring

concrete. Laid pipes shall not be damaged.

Inside suspended ceiling, the installation shall be done using NHXMH type wires with no pipes. Inside of the fluorescent lamps could be used as junction boxes when following conditions are met Inside aluminum and wooden suspended ceiling, NHXMH type cables shall be hooked to the concrete or wood. Inside plaster suspended ceiling, if the cables are not seen from outside, NHXMH type cables shall be released.

8- Downpipes under the surface coat shall be installed horizontally or

vertically. Junctions boxes shall be at same align with sockets or switches. At dilatation places, pipe hatches shall be protected with stronger pipes against mechanical effects, and they shall be equipped with sleeves to make the pipes move freely.

Regarding to prevent interaction between connector parts carrying the current and lids of junction boxes, pressband papers shall be placed inside metal body junction boxes.

9- Spiral or hard, polyvinyl chloride, halogen free pipes shall be used inside

inaccessible type ceiling. 10- If not otherwise specified in the special technical specifications, all flush

mounted installation shall be done according to TS or international standards and inside halogen free pipes.

Surface Installation:

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1- This installation shall be done at car parks, station areas, boiler rooms, areas where accessible suspended ceiling exists and humid areas. Where there is no suspended ceiling, cables shall be laid over the wall or inside cable trays. Cables shall be attached to the wall by crochets and by plastic cable cords to the cable trays.

2- Accessible suspended ceiling cables shall be carried inside cable trays at

main route. After main route, cables shall be attached to the ceiling by rail crochet. Transition junction boxes shall be used inside suspended ceiling for switch, socket, button, control devices etc. if the descents shall be inside flush installation. Flush halogen free pipe shall be used between junction box and device casing.

3- Crochets shall be bakelite up to 4x10 mm² cable cross section and metallic

for cables with bigger cross section. Crochet and fixing materials shall be stainless type or galvanize coated type.

4- Crochets shall carry the weight of the cables. Distance between two

crochets shall not exceed 30 cm.

5- If more than 2 cables shall be holded by one crochet, special rail type crochets shall be used.

6- Metallic labels shall be used for line and column cables.

7- Waterproof materials shall be used in humid places. Stainless bolts shall be

used for security (grounding) lines’ connection to the luminaries and junction boxes.

In dusty places or places which are under threat of fire, waterproof installation shall be done by using plastic insulated conductors inside galvanized gas pipes instead of antigron type cables.

8- Regarding esthetical beauty, switch and socket descending over the wall

starting from ceiling or junction boxes shall be done inside halogen free pipes complying with cable cross section. Pipes shall be attached to the wall by antigron or rail crochets. No extra fee will be paid for these pipes.

9- Curves shall not be done having less radius of 12 times of the cable

diameter (regarding 1 core cables 15 times cable radius is regarded).

10- Plastic or metallic fixing plug shall be used as support block according to the load type.

B- Illumination Socket Outlets:

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1- For lines 2,5 mm² and for outlet lines 1,5 mm² cables shall be used. Inside halogen free pipes; H07Z-U type halogen free conductors, NHXMH type halogen free cables and incombustible type SIMH-O or NHXH-E90 type halogen free cables can be used.

2- Line (linye) can be described as the ones that feed the one area or different

outlets. If one line outlet is taken as a branch no matter if it is veavien or normal, it is accepted as normal. Regarding commutator switch outlets, 2 outlets that controls the same switch is commutator type outlet and others are parallel.

Different type of sortie descriptions is given separately. Line expenses are included in the outlet prices. No extra fee will be paid except from the one that is described in the unit price list.

3- Regarding outlets having grounding (security) lines, grounding line shall

start from sub panels and end at luminaries. Waterproof materials shall be used and fittings shall be used before switches and junction boxes at moistly places.

4- Regarding 3-phase outlets, phase orders and balance shall be done

properly.

5- All pipes of lighting sorties shall be terminated with wooden blocks. Measurement for these blocks shall be 14x16x3 cm for ceiling luminaires and 5x8x3 cm for suspended luminaires.

6- Sortie switches shall be laid 110 cm from floor, Appliques shall be laid 190 cm from floor and if several switches/extinguishing buttons placed in same room, they all shall be aligned with same level. Sockets shall be laid 40 cm from floor. Telephone, TV and call buttons shall be installed in same align if they are being installed together with sockets. Switch and socket heights shall only be changed by permission of the control engineer.

7- Switches, extinguishing buttons, sockets, telephone sockets, call buttons etc. shall only be put together with combined cases.

8- If not constrained, no transition shall be done from lamp to lamp. No junction boxes shall be placed to the ceiling. Trasition from lamp to lamp is allowed, if there is no column/girder/wall to put junction boxes on, luster terminals shall be installed in order to reach to sortie ends easily. If the voltage drop is proper, more than 9 light sorties can be mounted in one circuit. Interbody of fluorescent luminaires can be used as junction boxes with fireproof type terminals, but no parallel sortie cost shall be paid for these interconnections.

C- Socket Outlets:

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1- For lines and outlets 2,5 mm² cables shall be used. Inside halogen free pipes; H07Z-U type halogen free conductors, NHXMH type halogen free cables, and incombustible SIMH-O, SIMH-O FE 180 E 90 or NHXH-E90 type halogen free cables can be used.

2- Each socket outlet is a normal socket that belongs to same line, the rest is

parallel sortie.

3- Regarding outlets having grounding (security) lines, grounding line shall start from sub panels, end at the socket. Antigron materials shall be used and fitting shall be used before socket and junction boxes for waterproof socket outlets. Minimum 16A fuse shall be used.

4- Where places dusty and under fire risk, installation shall not be done by

using antigron materials. Waterproof installation shall be done inside galvanized gas pipes, using plastical insulated cables.

5- Regarding raised floor, floor duck or parapet channel installations; there are

not like described above. Such socket sorties will be paid as 3-phase sockets (feeding line and socket installation fee).

022- EMERGENCY LIGHTING AND DIRECTION INSTALLATION:

A- General:

1- When main power supply and diesel generator power supply is cut,

emergency lighting shall start working for entering and leaving the building safely;

- When Main power supply is cut and until diesel-generator groups take the loads over itself within 10-15 seconds. - Diesel-generator group not work because of the fire, flooding, sabotage or general failure. - Diesel-generator not work because of the earthquake.

Emergency situation direction installation shall be done to direct people towards exits inside a building.

2- Emergency lighting and directing units shall comply with TS 8710 -TS EN

60598-2-22 regulations and shall have TSE, CE certificate.

3- Control equipment that is inside the emergency lighting and directing units of fluorescent lamps shall comply with TS EN 61347-2-7 regulations shall have TSE, CE certificates.

4- Connections electric terminals to the network shall have TSE, CE certificates.

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5- Lamp holders shall have TSE, CE certificates.

6- The lamps shall be European or American oak.

7- Regarding surface and flush installation; the labels of the devices shall be visible while changing the lamp. Both cleaning with water or petrol ether during 15 seconds, the label shall still be readable.

8- Emergency luminaries can be seen in lighting drawings. Emergency

lightings are used as follows;

- Independent emergency situation lighting fixtures (having accumulator, charge circuit, main voltage inspector and bulb driving circuit). - Lighting fixtures that are used for normal lighting (accumulator, emergency situation conversion units are installed inside luminaire or inside a box that is DKP sheet metal or thermoplastic and all necessary connections shall be done).

9- Regarding units with fluorescent lamps minimum 4 yearslong lived, high

temperature resisted, chargeable, dry type nicel-cadmium or nickel-metal- hydride type accumulator. The connections between electronical circuit and acumulator shall enable service with passing connector and shall have a device preventing reverse connection. Regarding devices with halogen spot, 4 yearlong lived, 12 Volt closed type maintenance free lead acid batteries.

10- There shall be over discharge and low voltage protection circuit for accumulators with low voltage, at the end of the emergency situation.

11- After working during 1 hour under abnormal conditions, at 70 °C at network

voltage; it shall keep working during minimum half of the decelerated working time, under emergency mode. During normal working situation, air temperature shall not exceed 50 °C, around 5 mm surrounding of the accumulator.

12- There shall be red or green indicator over the device, showing accumulator is being charged.

13- Regarding working at interruption type lamps; they shall not work while

electricity is ON, the lamp shall start working within 1 second when electricity is OFF Regarding working continuously type lamps, it shall keep working when electricity is OFF too.

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14- There shall be pre-heating circuit for flamas, for continuously working with fluorescent lamps type models.

15- Emergency situation lighting luminaires of the fire and service escalators;

control principle drawings can be seen in the detailed project.

16- Emergency situation lighting and direction installation shall be done according to the described in the internal installation section.

17- Emergency situation lightings cannot be supplied by a central battery or

UPS at first and second-degree earthquake areas. They shall have their own accumulators.

18- The devices shall have Ministry of Science, Industry and Technology

Administration approved, guarantee certificates.

19- There shall be minimum one emergency lighting, maximum 2 km away from the locations where fire cabinet, fire extinguisher tube, fire alarm button, first aid equipment, security signs etc exits.

20- Minimum 1 lux lighting level shall be provided at any point over the floor

through the escape route up to 2 m in width.

21- Minimum 0,5 lux must be provided over the floor, regarding areas that bigger than 60 m² to the escaping route and collecting areas (except 0,5 m edge of the collecting area).

22- Minimum 15 lux lighting level shall be provided and around %10 of the

general lighting level, regarding the areas that the devices shall be out of the circuit when electricity is OFF; at electricity distribution room, production and industrial process control rooms, boiler rooms, chemical bath rooms, areas where the devices cannot suddenly stop when electricity is OFF, areas where having risk and danger, the rooms that is important such as vault room.

23- The height of the luminaire mounting is 2-4.5 for emergency lighting devices

and 2-2.5 m for emergency directing devices.

B- Emergency Situation Lighting Luminaries:

1- Contractor shall prove that installation is complied with ‘’ FIRE PREVENTION OF THE BUILDINGS REQULATIONS’’.

2- Emergency situation lighting voltage supplement shall be 220 V.

nonflammable cables shall be used for the armatures that are supplied by UPS or central battery system. If the armatures have their own batteries normal cables can be used.

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3- There shall be following information over the label of the armature.

- Nominal working voltage - Bulb type and power - Working method - Accumulator voltage, type and average life

4- There shall be current and voltage values and manufacturing date over the

accumulator.

5- Contractor shall place a label over the emergency situation luminaries having a date of the production, after completing the connections of the emergency situation luminaries.

6- Accumulators shall have low voltage protection circuit.

7- All connections shall be done with passing type terminals suitable for fast

installing.

C- Emergency Situation Directing Luminaries:

1- Emergency situation direction luminaries shall work 24 hours

uninterruptedly.

2- Through a LED that is placed over a luminaire, it shall be viewed an accumulator being charged.

3- Direction luminaries can be single or double sided type. Such luminaries

shall have steel or aluminum casing. The casing shall be painted with oven drying electrostatic powder paint. Directing shall be over the semitransparent plexiglas plate. Directing signs shall be over the green plate with white text. It shall contain related symbols according to regulations (EXIT, EMERGENCY EXIT, RUNNING MEN, ARROW, DOOR SIGN, LEDDER SIGN, etc.)

4- Accumulator and kit of the luminaries that is installed inside the suspended

ceiling shall be inside a box. This box will be like casing of the luminaries and shall be inside suspended ceiling. There shall be a transparent plexiglas that sagging downwards. This material thickness shall be at least 7-8mm.

5- Regarding both type of luminaries, height of the writing and shapes shall be

15cm. The writing shall be seen from 25 m away.

D- Emergency Situation Conversion Units :

General Features:

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1- Regarding the luminaires that have a kit for being used as an emergency luminaire shall be controlled in similar way with switches like other luminaires.

2- The device must be fed continuously with the same phase of the luminaire

(that is not switched). A LED shall be mounted to the luminaire visibly, showing that accumulator is working or not.

3- There shall be passing type electric terminals for cable connections, suitable

for fast mounting.

Emergency situation converting units (KIT) for fluorescent lamps:

1- It shall comply with general features and emergency situation general features regulations.

2- Emergency situation lighting conversion unit shall be electronical module,

high temperature bearing type, chargeable, dry type nickel cadmium accumulator package – during 3 hours.

3- Regarding up to 36 W lamps; luminous flux shall not be less than %15 of the normal value; and regarding up to 65 W lamps; luminous flux shall not be less than %10of the normal value.

4- Unit shall work conveniently with electronic and sheet metal ballast.

Emergency situation converting units( KIT) for 12 V halogen lamps:

1- It shall comply with general features and emergency situation general features regulations.

2- Regarding emergency situation lighting conversion units, they shall have

electronic module and 12 V, closed type, maintenance free lead acid accumulators.

3- Unit shall work conveniently with 12 V halogen lamps, up to 50 W and ballast lumen factor shall be %100.

4- Unit shall be work conveniently with electronic and sheet metal ballast.

5- The connection between electronic module and accumulator shall enable service, with passing shoe, connection cables shall be in two different colors against reverse connection according to their polarity.

END SECTION HIGH CURRENT SYSTEMS

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UNITED NATIONS DEVELOPMENT PROGRAMME

REGIONAL CENTER FOR EUROPE AND THE CIS

ELECTRICAL LOW CURRENT SYSTEMS TECHNICAL

SPECIFICATION

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INDEX :

LOW CURRENT SYSTEMS TECHNICAL SPECIFICATION : 3

055- CLOSED CIRCUIT TELEVISION INSTALLATION (CCTV) : 3

057- ACCESS CONTROL SYSTEM : 12

066- FAST INTERNET AND DATA DISTRIBUTION INSTALLATION : 17

100- TESTS AND ASSUMPTIONS: 25

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LOW CURRENT SYSTEMS TECHNICAL SPECIFICATION :

055- CLOSED CIRCUIT TELEVISION INSTALLATION (CCTV) :

A- Video Management Software :

Softwares of CCTV and Card Access systems should be fully integrated. The NVMS shall be available as a stand-alone software offering or pre-loaded on turn-key workstations and servers running Microsoft Windows with configurable storage. The Network Video Management Software (NVMS) shall be an enterprise level software solution that shall be scalable from one client, server, and camera to hundreds of clients, servers, and cameras. The Network Video Management Software (NVMS)shall consist of server software applications and client software applications. The Network Video Management Software (NVMS) shall include the following applications:

- Server Software Applications - Control Center Server - Control Center Admin Tool - Control Center Gateway - Client Software Applications - Control Center Client - Control Center Web Client - Control Center Player - Control Center Camera Installation Tool - Control Center Mobile

The Network Video Management Software (NVMS) shall permit server and client software applications to be installed and run on both the same computer or on separate computers. The Network Video Management Software (NVMS) shall support edge based storage and processing of video and audio. The Network Video Management Software (NVMS) shall support High Definition Stream Management (HDSM) architecture which includes: Support for industry standard JPEG2000 compression format. Support for reducing the required client bandwidth and processing power by only transmitting what is necessary to view the video stream at full quality

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(e.g. if a user is viewing a 16MP camera in a 1MP window then a 1MP representation of the 16MP image shall be transmitted). The Network Video Management Software (NVMS) shall support recording and management of video and audio sources including:

- IP Cameras (1 – 5 Megapixel) - IP Cameras (2 – 16 Megapixel) - Analog cameras via analog encoders

The Network Video Management Software (NVMS) shall support recording and monitoring video streams from sources with bandwidth up to 90 Mbit/sec, frame rate up to 60 fps, and video resolution up to 16 MP (4872 x 3248). The Network Video Management Software (NVMS) shall require no proprietary recording hardware, no hardware multiplexer or time-division technology for video and audio recording or monitoring. The Network Video Management Software (NVMS) shall not limit the storage capacity and shall allow for upgrades of recording capacity. The Network Video Management Software (NVMS) shall digitally sign recorded video using 256-bit encryption so video can be authenticated for evidentiary purposes. The Network Video Management Software (NVMS) shall be capable of being upgraded from one version to another without having to uninstall the previous version. The Network Video Management Software (NVMS) shall automatically detect if client application software is out of date with respect to the current installed server software and upgrade it. The Network Video Management Software (NVMS) shall run as a service configured to automatically start when the server or workstation is powered on and automatically recover from failure or attempted tampering. The Network Video Management Software (NVMS) shall allow system administration, and live and recorded video monitoring all from a single client application that can be located anywhere on the network. The Network Video Management Software (NVMS) shall automatically discover all Control Center Server instances running on computers connected to the same network as the Control Center Client. The Network Video Management Software (NVMS) shall provide a search functionality to discover Control Center Server instances running on

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computers connected on a different network segment than the Control Center Client by using IP addresses or hostnames. The Network Video Management Software (NVMS) shall automatically discover video and audio sources that are connected to the same network as the Control Center Server. The Network Video Management Software (NVMS) shall provide a search functionality to discover video and audio sources that are connected on a different network segment than the Control Center Server. The Network Video Management Software (NVMS) shall provide administration of all system connections from a single window. The Network Video Management Software (NVMS) shall detect if the video signal is lost and alert the system administrator. The Network Video Management Software (NVMS) shall provide the capability to rename all video and NVRs. The Network Video Management Software (NVMS) shall record video based on a recording schedule that can be defined individually for each video source. The schedule shall be created with the following parameters:

- Recording Mode - Continuous - Motion - Alarms - Motion and Alarms - Time and Date Settings - Daily - Weekly

The Network Video Management Software (NVMS) shall provide a pre-event and post-event recording option. The Network Video Management Software (NVMS) shall provide a reference frame recording option in the absence of events. The Network Video Management Software (NVMS) shall perform motion detection on each individual video source with adjustable sensitivity, threshold and detection zones. The Network Video Management Software (NVMS) shall perform dynamic bandwidth management to ensure that the total bandwidth does not overload the system.

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The Network Video Management Software (NVMS) shall authenticate users before granting access to the system.

The Network Video Management Software (NVMS) shall support searching through recorded video based on various search criteria including time, date, video source, and events. The Network Video Management Software (NVMS) shall support searching through recorded video based on motion in user defined areas (pixel search). The Network Video Management Software (NVMS) shall support searching through recorded video based on time, date, video source, and image region and have the results displayed as a series of thumbnail images. The Network Video Management Software (NVMS) shall support searching through recorded video based on license plates detected in the images of the video source. (optional) The Network Video Management Software (NVMS) shall support the ability to export recorded video in the following formats:

- Native - JPEG - PNG - TIFF - AVI

The Network Video Management Software (NVMS) shall support the ability to take a snapshot of a live or recorded image and export it from the system. The Network Video Management Software (NVMS) shall support the ability to export a live stream of images in the following formats:

- JPEG - PNG - TIFF

The Network Video Management Software (NVMS) shall support reviewing video that was exported in the Native format. The Network Video Management Software (NVMS) shall support authenticating video that was exported in the Native format to validate that it was not tampered with. The Network Video Management Software (NVMS) shall support converting video that was exported in the Native format to an industry standard format.

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B- Indoor 2 Megapixel Dome Camera :

1/3” progressive scan CMOS image censor feature. 2MP (Megapixel) (True Day/Night) features. Active pixel number shall be 2048 (H) x 1536 (V) or better. Camera view area shall be 4.5 mm (H) x 3.4 mm (V) or better. Minimum light requirements shall be 0,2 lüks / F1.2, At black white mode 0,02 lüks / F1.2 or better. Dynamic gap shall be 100db or better. Lens over the camera shall be 3-9 mm, F1.2, P-iris. There shall be remore facus arrangement and zoom features. Camera point of view shall be 28°-84° Camera shall support H.264 (MPEG-4 Part 10/AVC) or MJPEG (Motion JPEG) zipping format. At max. Resolution 20 fps, 1920x1080, at normal resolution 30fps shall be provided. Electronical shutter control (1/6 - 1/8.000) shall be automatic or Manuel. Iris control shall be made automatic or manual. Day/night control shall be made automatic or manual. Flicker control shall be 50Hz-60Hz White light balance shall be automatic or manually choosable. Minimum 4 privacy area shall be defined inside camera view point There shall be voice imput over the camera. Camera shall support G.711 PCM 8kHz voice zipping. There shall be video output for external monitor connection. There shall be I / O terminals for alarm connection Camera shall support 100BASE-TX and PoE 802.3af network interface, for video and control data entrance.

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Camera shall support ONVIF Standard. Smoked glass model shall be optional. Camera shall have multi stream giving features H.264 and MJPEG formatted simultaneously. Camera shall be accessible with standard web scanner. Control port, network mask, gateaway and static IP features shall be supported. Camera shall support configuratioın of the location, Logical ID and camera name features. Camera shall support - pose control; - Flicker control, - Iris control; - Day/Night control; - White balance control; - Saturation / Sharpening control

Camera shall be True Day&Night. If light level drops it shall pass to black and white mode automatically. Withing camera view point; there shall be limitless number of movement detection zone configuration feature. Remote zoom and focus feature. Camera shall support

- Zipping Format; - Zipping Quality, - Maximum bit rate; - Key Frame gap - Image rate

Camera shall support UDP data communication

Camera version shall be remotely upgraded Camera shall support 12VDC, 24VAC and IEEE 802.3af standard PoE features

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Max. 5W power consumption There shall be RJ45 connector Ethernet port There shall be password protection feature HTTPS passwording, log holding feature Camera shall support , IPv4, HTTP, HTTPS, SOAP, DNS, NTP, RTSP, RTCP, RTP, TCP, UDP, IGMP, ICMP, DHCP, Zeroconf, ARP, RTP/UDP, RTP/UDP multicast, RTP/RTSP/TCP, RTP/RTSP/HTTP/TCP, RTP/RTSP/HTTPS/TCP, HTTP

Camera shall work at minimum -10C / 50 C and humidity 20–80% Camera shall have certification of FCC, CE, UL

C- Indoor 1 Megapixel Dome Camera :

1/2,7” progressive scan CMOS image censor feature. 1MP (Megapixel) (True Day/Night) features.

Active pixel number shall be 2048 (H) x 720 (V) or better. Camera view area shall be 5.9 mm (H) x 3.3 mm (V) or better. Minimum light requirements shall be 0,2 lux / F1.2, At black white mode 0,02 lux / F1.2 or better. Dynamic gap shall be 69db or better. Lens over the camera shall be 3-9 mm, F1.2, P-iris. Remore facus arrangement and zoom features. Camera point of view shall be 35°-98°

Camera shall support H.264 (MPEG-4 Part 10/AVC) or MJPEG (Motion JPEG) zipping format. At max. resolution 30 fps, shall be provided. Electronically shutter control (1/6 - 1/8.000 ) shall be automatic or manual. Iris control shall be made automatic or manual. Day/night control shall be made automatic or manual. Flicker control shall be 50Hz-60Hz

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White light balance shall be automatic or manually choosable. Minimum 4 privacy area shall be defined inside the camera view point There shall be voice input over the camera. Camera shall support G.711 PCM 8kHz voice zipping. There shall be video output for external monitor connection. There shall be I / O terminals for alarm connection Camera shall support 100BASE-TX and PoE 802.3af network interface, for video and control data entrance. Camera shall support ONVIF Standard. Camera shall have multi stream giving features H.264 and MJPEG formatted simultaneously Camera shall be accessible with standard web scanner. Control port, network mask, gateaway and static IP features shall be supported. Camera shall support configuratioın of the location, Logical ID and camera name features. Camera shall have smoked glass feature

Camera shall support

- pose control; - Flicker control, - Iris control; - Day/Night control; - White balance control; - Saturation / Sharpening control

Camera shall be True Day&Night. If light level drops it shall pass to black and white mode automatically. Within camera view point; there shall be limitless number of movement detection zone configuration feature. Remote zoom and focus feature.

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Camera shall support

- Zipping Format; - Zipping Quality, - Maximum bit rate; - Key Frame gap - Image rate

Camera shall support UDP data communication Camera version shall be remotely upgraded Camera shall support 12VDC, 24VAC and IEEE 802.3af standard PoE features Max. 5W power consumption There shall be RJ45 connector Ethernet port There shall be password protection feature HTTPS passwording, log holding feature Camera shall support , IPv4, HTTP, HTTPS, SOAP, DNS, NTP, RTSP, RTCP, RTP, TCP, UDP, IGMP, ICMP, DHCP, Zeroconf, ARP, RTP/UDP, RTP/UDP multicast, RTP/RTSP/TCP, RTP/RTSP/HTTP/TCP, RTP/RTSP/HTTPS/TCP, HTTP

Camera shall work at minimum -10C / 50 C and humidity 20–80% Camera shall have certification of FCC, CE, UL

D- Recording and Managing Features :

Regarding and management servers are not NVR type. It will be server and storage unit type. This system is more flexible and easily extandable. There shall be min 1 pc of minimum 6 core processor. Processor speed shall be 2,4 Ghz and L3 total tampon memory capacity shall be 12 MB. Memory capacit shall be minimum 8 GB and DDR3-1333MHz. Memory fault protection and correction features shall be Advanced ECC or Chipkill.

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There shall be a disc housing, 12 pcs 2.5” hot plug architecture. SAS(7.200-15000 rms) SATA (7.200 rms) or SSD. Additionally 2 pcs 2,5” disk. Totally 14 pcs 2.5” disc shall be installed. Over the server 7.200 rpm, 6 Gbps SAS hot plug architecture 3.5” fixed disks. Recarding will be 90 days, 6 FPS picture speed and camera recording resolution will be same as camera viewing resolution ( example: 1 MP recording and 1 MP resolution) There shall be minimum RAID 5 disc control interface over the server. Interface shall have minimum 512 MB cache memory. This control interface shall protect the data without being effected electricit CUT OFF. There shall be 4 pcs of PCI Express architectural expanding housing. There shall be minimum 2 pcs ( each one 1 Gbit) RJ-45 konector. There shall be display card with 8 MB memory capacity. There shall be power supplies over the server, each one is 750 W. There shall be 6 pcs USB connection; 2 pc at rear , 2 pc at front and 2 pc over the main board. Server shall be rack type and max 2U.

057- ACCESS CONTROL SYSTEM :

A- Card Access System (CAS) Hardware Features :

System shall be IP – based. There shall be direct TCP/IP port, the systems with converter will not be accepted. System shall be convenient to work under network. System shall keep working, if connection between door control panel and or software cut off ( of-line) System shall be extendible up to 4000 user System shall keep data in memory up to 200.000 event. When memory is full, it shall keep recording over the past records. System shall support up to 30.000 user at of-line mode.

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There shall be min. 2 reader connection housing. Also 4 input and 4 output housing. System power supply shall be fed from door lock power supply(min 1,5 A - 12 VDC). System shall be protected against strokes. Dry type accumulator features shall be 12 VDC - 7 Amp. Each panel shall have its own power supply unit. There shall be min RS232 and RS-485 serial connection socket. Main power supply shall be protected with fuse and power circuit output shall be thermic fuse protected. System shall protect itself with a thermic relay at short circuit. Sytem shall be capable of having network connection with other panels over the RS-485 or TCP/IP. System shall be upgraded to new firm wares. System shall work together with Wiegand, Clock & Data readers. System box shall be protected against sabotage. If the lid opens software shall record it. There shall be 1 pc of buzzer over the system. System shall give alarm if the door is being forced. System shall release all doors at emergency case at fire, earthquake etc. situations.

System shall be compatible with single and double doors.

B- Card Access System (CAS) Software Features :

CAS software and hardware shall be of the same manufacturer company. CAS software shall work with processor logic. A spare license for processor shall not be required. Limitless processor shall connectable to the system. CAS software shall start working with the system automatically.

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There shall be a watchdog (assistant software). This shall restart the system if any fault happens at the server. Watchdog shall audit the system, shall give fault report and shall make SQL maintenance. CAS software shall support Windows Server 2003/2008 / 2012, XP (SP2) /VISTA / Win7 / Win8 systems. System shall support 2,000,000 users and 8192 doors. System shall control different model and type of CAS hardware’s. System shall support SQL 2005, SQL2008 and SQL2012; required licenses shall be provided. System shall support 32 pcs time zone. For one used 16 pcs of cards shall be appointed. There shall be a “duress code” feature. Under threat, door shall be opened with a code. By creating a secret alarm, operators shall be warned. One reader shall choose 2 different reader formats; for example 37 bit and HID Corpare1000 shall work at the same time. System shall provide panel and global antipassback features. If a user goes out without using card, cannot enter inside. CAS shall inform the operator if users try to enter. There shall be + card feature. Only authorized user shall use card or PIN code one after the other. Holiday days shall be programmed over the system. System panels shall communicate over the Serial (RS-232), TCP/IP and modem. Speed shall be 9600 bps - 115200 bps System shall be used for 1-64 panels with only 1 license. 30,000 transition group shall be defined over the system. Panel input and outputs shall be associated with each other. There shall be language support feature, including Turkish English. System shall be able to give special authorities to the users.

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There shall be map option. Event shall be signed over this map. Departments shall be separatable. A department shall be up to 1024 people. There shall be instant and archive reporting feature. There shall be different colors for report user groups. User information shall be capable of being entered at once, all together. There shall be pop-up feature. If requires passing user data shall be brought to the screen automatically. Special information entrance shall be available. If CAS information will be integrated to the another system; data shall be able to transported over a serial port. There shall be periodical back up feature.

For each user a passing authority shall be defined. It can be arranged according to working hours. Doors shall be opened manually, if required. . There shall be automatic database processing feature. User and card information shall be transferred to inside or outside . There shall be 2,000,000 visitor data storage capacity by integrated visitor software. Different authority operators shall be defined at the system. At the same time, only one authority shall be defined. Doors shall be viewed over a schematic diagram. Data shall be received from human recourse managers regularly. User pictures can be saved at an external hard disk. UPS camera or picture format shall define the user pictures to the system. Users can be able to send their name, card no etc. data to the system. Alarm and operation scenarios shall be programmable. System shall support ONVIF, RTSP, Jpeg/Mjpeg, PSIA formats.

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Events at door shall be recorded.

C- Card Reader Features :

Mifare, approach type card reader shall be used. Card readers shall work at 13,56 Mhz Card reader shall support Wiegand 26-bit, Stable 26-bit, 32 bit, 32 bit inverse, 34 bit, 40 bit and Clock & Data formats. Card reader shall read from minimum 70 mm distance There shall be a damper protection against sabotage. Card reader shall have 5-16VDC power supply unit. A voice shall be given off, the light shall change its color when a card is read. MiFare type card reader shall be decorative. For external use min IP65 card reader shall be used. Card reader shall be made of polycarbonate material, UV protected. Card readers shall work between -31ºC +63ºC, %95 humidity. It shall comply with ISO 9001:2000 standards. Minimum 3 years guarantee shall be provided.

D- Mifare Type Card Features :

Cards shall be 13,6 MHz MiFare standard, approach type Card surface shall be bright. Cards shall be maintenance free Cards shall be durable to the external conditions. Cards dimensions shall be same as credit card dimension. Colorful print shall be press able . Cards shall be flexible, ISO-14443/A compatible. Cards shall be usable with 13,56 MHz readers. Readers shall have 26bit Wiegand output.

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Card capacity shall be 256 Byte, 1K or 4K

066- FAST INTERNET AND DATA DISTRIBUTION INSTALLATION :

A- General :

1- This section contains the system of local area network (LAN) to provide connection between PC’s and data processing center. Regarding computers not connected to data processing center; to provide connection between telephones, fire alarm, TV etc. to their own centers.

2- Copper cabling system of local network that will be installed shall be in

accordance with EIA/TIA-568.B.2-1 Category 6, and regarding fiber optic cabling system shall be in accordance with EIA/TIA-568.B.3; in order to make network infrastructure permanent and to make it more suitable for future modifications.

3- Access Points that are installed each floor shall be connected to data

centers.

4- There shall be extra 2 m cable at assembly points and patch panels locations.

5- The products that are offered shall be produced by only one manufacturer.

6- Companies that give offer shall include the certificates that are given by an

independent testing agency.

7- Contractor company that will make the infrastructure of the system, shall have certificate and shall guaranty the system performance for 25 years.

8- After cabling is concluded, Contractor Company shall take guarantee

certificate that is valid for 25 years from Manufacturer Company and shall submit it to the employer

9- Fiber converter that is inside patch panel, 1U or 2U organizers, switches,

fused sockets, rack, fan with thermostat, patch panel cords etc. shall be included.

10- Companies that will give their offer shall give reference of the manufacturers

too. Moreover, Turkish and English supplementary information about offered units shall be given, system work shall be explained, if there is any difference between specification, it shall be explained.

B- Substructure Installation:

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1- All of the cable components that create the infrastructure of communication shall be terminated in device cabinets.

2- Regarding LAN, each user shall connect to their own data sockets with

factory-made elastic patch cords

3- Used copper wires shall be terminated in copper box in device cabinets and in data sockets.

4- Regarding inside rack cabinets, connection between switches and their

connection boxes shall be made with factory-made elastic patch cords

5- If more than one switch is used for structural cabling, it shall be available for backbone switch usage. Connection between the backbone switch and other switches shall be made with fiber optic cables.

6- Regarding connection between data sockets and patch panel shall be done

with 4 pair, one-piece, solid copper conductors. Distance between user data socket and patch panel shall be maximum 90 meters. Distance shall be taken into account while deciding patch panel location.

7- Copper cables and patch cables that are used between users and switches

in device cabinets shall not be more than 100 meters at all. Device cabinets shall be placed according to this, during project design.

8- Fiber optic cables shall be concluded on FO connection box.

9- Halogen free cables shall be used for infrastructure installation.

(CAT-6 H UTP type cables and 4, 8, 12 cores fiber optic cables shall be used).

10- Fiber optic patch cords shall be used for connection between fiber optic

patch panels and switches, inside rack cabinets.

11- Replacement of users shall be done easily through changing patch cords inside the rack cabin.

12- Fiber termination process shall be done. 1 pc of SC connector is required

for each core, by epoxy sticking or fusion method. The tail’s one end shall have 1 pc SC and the other end shall be empty. This 1 or 2 m tails shall be added to each fiber core.

13- Connections between fiber optic patch panels and switches shall be made

with patch cords that both end (factory-made) terminated. The patch cord feature shall be same with the FO cable features. One end shall be SC type and the other end shall have suitable connector.

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14- After cabling is completed, tests for showing system works properly shall be made. Result of the tests shall be delivered to the company executive as CD and written report. These tests shall include:

- ISO / IEC 11801 and 11802 standards test for copper cabling system (cable,

jack, connection box, patch cables included). - OTDR test for fiber optic cabling system. - Power meter test for fiber optic cabling.

15- Servers shall be inside cabins and cabinets shall have enough power

modules.

16- All active and inactive devices shall be inside suitable sized cabinets.

17- Socket and connection panels shall be easily mounted. Data sockets shall have protection against external effects (dust, wet etc.).

18- Internal cabling shall be done inside cable tray or halogen free pipe starting

from the cabinet to the socket. Putting cables inside the cable tray shall be done carefully and any damage to the cable shall be prevented.

19- Low current and high current installation shall be laid separately and data

cables shall not be affected electromagnetically by other cables. Cables shall be protected against external physical effects.

20- UPS sockets shall have a different color from normal sockets. There shall

be legs that prevents normal plugs in.

21- There shall be 3 pcs of UPS sockets for each server in the IT room (system room). Sockets shall be fed from distribution panel with an independent line.

22- Detectors shall be placed in the IT rooms and UPS room.

23- If not specified otherwise, UPS shall generate power during 10 minutes and

can feed the entire computer system. If there is no UPS in the approved project, there shall be at least a UPS for computer system. UPS shall be placed inside another room but not inside the IT room.

24- All cable ends (cabin and data sockets) shall be enumerated systematically

and before submission of the work, this study shall be given to the controller as a list inside a paper or inside a CD.

25- Horizontal UTP cables shall be concluded at a raja type UTP patch panels.

UTP patch panels shall be metal and shall have same brand name with the other equipment.

26- There shall be %20 more than needed amount of RJ-45 connection boxes

in case of user increase in the future.

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Grounding of the computer system shall be in accordance with the ‘’Grounding of the Electrical Installation Regulations ‘’.

C- Passive Devices :

CAT-6 H UTP Cable :

1- CAt-6 H UTP category 6 cable shall be LSZH ( low smoke halogen free)

and shall be convenient to the ISO 11801 and 11802 regulations.

2- Cable shall support 250 Mhz connection at 100 meters.

3- Parameter of cable conductor shall be 23 AWG (0.57 mm), single wire and copper conductor. Separators shall be used between cables to reduce signal interaction.

4- Accordance of the cables to ISO/IEC 11801 and 11802 regulations shall be

approved by international independent testing organizations (ETL, UL etc.). Manufacturing company inspections shall be repeated every 3 or 6 months.

5- Regarding 4 pcs of double helical conductor’s sheath, high density PVC

shall be used.

6- Insertion loss value shall be max.32 dB and return loss value shall be max. 37 dB at 250 MHz, 100 meters.

Fiber Optic Cable :

1- As seen in the project, 4 or 8, 12 core fiber optic cable is used for the

internet and data distribution substructure.

2- Fiber optic cables shall be in convenient with ISO/IEC 11801 and 11802.

3- Fiber optic cables shall be halogen-free to be protected to rodents (mouse etc.) shall be protected with corrugated steel armours.

4- Terminating fiber optic cables shall be done carefully. Terminating fiber optic

cables shall be done by “fusion splice” method to decrease the loss and reflection to negligible level compared with making by hand.

5- Bending radius of cables shall be 30 times of cable radius (It shall be

considered when montaging).

6- Contractor shall make measurement after completing all connections and shall compare the results with the factory values seeing if there is any difference.

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7- Working temperature of fiber optic cables shall be between -20°C and +60°C.

8- Cores of fiber optic cables shall have different colors for easier connecting

and measuring (250 microns). All cores shall be put into a tube by using “Loose Tube” technique. Moreover, special gel shall be used inside the tube against water.

9- Bandwidth shall be at least 850 nm wave length at 500 Mhz.km and 1300

wave length at 500 Mhz.km.

10- If length of cable is up to than 600 meters, for 10 Gigabit applications, fiber cores shall be multimode 50 micron OM3 type. Otherwise, single mode (9 micron) fibers shall be used.

11- Core number of the fiber optic cable shall be enough for the system and all

cores shall be terminated in the same panel.

Patch Cables :

Accordance of the cables to ISO/IEC 11801 and 11802 regulations shall be approved by international independent testing organizations (ETL, UL etc.). Manufacturing company inspections shall be repeated every 3 or 6 months.

Patch Cable- 1 m :

1- 1 meter fiber optic cables shall be used connecting patch panel and

Ethernet switch. 2- Patch cords (multiple wires) shall have CAT6 standards RJ-45 at both

ends. It shall be factory manufactured. 3- Patch cords shall have service life 750 times plugging and removing. 4- Patch cord shall have return loss value maximum 18,30 dB, next value shall

be maximum 42,70 dB.

Patch Cable - 3 m :

1- 3 meters patch cable shall be used for connecting CAT6 UTP sockets with computers.

2- Other features shall be same with the 1 meter patch cable. Regarding data;

both terminations of the cables shall be CAT6 standard RJ-45. Regarding telephone; one termination shall be CAT6 standard RJ-45 and other termination shall be CAT6 standard RJ-11 or RJ-12.

3- Fiber optic termination kits (connector, adaptor, pigtail, patchcord):

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4- All fiber optic termination kits shall be convenient to ISO 11801 and 11802

regulations.

5- Fiber optic connectors and adaptors shall have same features with fiber- SC type.

6- Pigtails shall have same features with fiber optic cable cores, shall have

one end empty, one end terminated with SC connector, 1 or 2 meters in length and 0.9 mm in diameter.

7- Patch cables shall have 2.1 mm or 3.0 mm outer diameter. It shall have;

one end with a connector that suitable with switch and other end terminated with 2 pcs of SC connectors.

8- Termination of fiber optic cable shall be done with fusion method. To protect

connection points, additional protective materials shall be used as precautions.

Cu Patch Panel (Cu Ara Kutusu)- 24 Port / 48 Port :

1- Cu patch panels shall be LSZH type and shall be convenient to ISO 11801

and 11802 regulations, category 6 UTP.

2- Accordance of patch panel to ISO 11801 and 11802 regulations shall be approved by independent international testing organizations (ETL, UL etc.). The organization shall be inspected every 3 or 6 months.

3- Cu patch panels shall be produced either with using RJ45 jacks that are

used in all closed type sockets or with using 4, 6 or 8 sectioned PCB blocks.

4- There shall be labeling area at Cu patch panel and labeling shall be regular and permanent.

5- Patch panel shall be metal framed.

6- Patch panel near end cross talk attenuation (NEXT) shall be maximum -

48,7dB and insertion loss shall be maximum 0,09 dB at 250 Mhz.

FO Patch Panel :

1- All fiber optic cables shall be terminated at fiber patch panels that have 19” standards and shall have enough area to plug SC adapter.

2- Enough number of adaptors shall be placed at the fiber optic patch panel

for termination.

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3- There shall be labeling area at fiber optic patch panel and labeling shall be regular and permanent.

4- At fiber optic patch panels, spare or empty ports (not connected to active

devices) shall be covered with adaptor or doors to be protected from dust.

5- Grippers that shall carry the mechanical weights of the fiber optic cables shall be placed at the patch panel.

6- There shall be enough area for fusion termination at patch panel.

Data Sockets:

1- Data sockets, category 6 UTP type; shall comply with ISO/IEC 11801 and

11802 regulations.

2- Accordance of the category 6 data socket to ISO 11801 and 11802 regulations shall be approved by independent international testing organizations (ETL, UL etc.). The organization shall be inspected every 3 or 6 months.

3- There shall be areas for labeling at the sockets.

4- Data socket near end cross talk attenuation (NEXT) shall be maximum -

48,7 dB and insertion loss shall be maximum 0,09 dB at 250 Mhz.

5- Regarding one port application, line spaces shall be closed with a lid. Lid shall have same brand name.

6- Data sockets that use two ports shall be made by two modules.

7- Sockets shall be mounted minimum 40 cm in height from the ground and it

shall be mounted together with UPS sockets according to usage purpose and sitting plan of the room. If underfloor type socket system is used, it shall comply with its own specifications.

D- Active Products :

1- Device shall support enough ports at one single chassis and its capacity

shall provide enough ethernet connection.

2- Devices can be installed to 19” cabinet. Mounting materials for installation shall be given togather.

3- If more than one switch is used for structural cabling, connection between

backbone switch and other edge switches shall be done with fiber optic cables.

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4- Device shall be guaranteed for at least 3 years.

5- Offered switch shall understand protocol areas according to L2/L3/L4 OSI layers and shall make traffic prioritization according to combination of these areas.

6- Devices shall enable working with one or more devices together.

7- Device shall be administrated by a terminal or a modem. Statistical

information, alarms and other information can be found easily. Device or stacking problems shall be reported to the system administrator via SMS or e-mail.

8- The latest and most advanced software shall be downloaded at the device

and it can be upgraded if required. 9- All doors of the device shall have MDI/MDIX support.

10- Switching capacity of device shall not be blocked when it is full and it shall

be designed as Non-Blocking type.

11- Device shall have VLAN virtual network (IEEE 802.1Q) support.

12- Device shall have spare power supply.

13- Devices will feed 230 V, 50 Hz network voltage and power cables shall be halogen-free.

E- Cabinet :

1- Cabins shall be suitable to 19” regulations and shall enough capacity for

patch panel and active devices.

2- Front face of the cabins shall have glass cover and shall have a lock.

3- Devices cabinets in IT room shall be accessible from 4 sides.

4- All device cabinets except the one at IT room shall be accessible from front and edgewise easily and shall have enough size of covering 19” materials and shall be wall-mounted type.

5- There shall be wheels under the standing type cabinets. At least 2 pcs of

wheels shall have brake.

6- All device cabinets shall be fastened where they are firmly, according to the Earthquake Regulations.

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7- If necessary, device cabinets shall be added side by side and both side faces shall be demountable.

8- All cabinets shall have electrostatic powder paint.

9- To provide enough ventilation at the device cabinets, there shall be weather

louvers and fan motors that run automatically when temperature increases.

10- Enough amounts of UPS sockets for active devices shall be put in at device cabinets.

11- Each cabinets shall have the following materials.

- 1 Piece, set fused socket group, - 1 Piece, shelf - 1 Piece, double fan and thermostat.

SYSTEMS THAT ARE PROVIDED BY KEY PLAZA: FIRE ALARM - BOSH EMERGENCY ANNOUNCEMENT - BOSH IP TELEPHONE CENTRAL AND IP TELEPHONES ARE SUPPLIED BY THE EMMPLOYER

100- TESTS AND ASSUMPTIONS:

1- Regarding all high and low current cable pulleys, factory functioning test reports shall be submitted to the controller.

2- All TSE documents belong to low voltage, its Turkish explanations,

operating manuals and catalogues, functioning documents, factory tests, etc. shall be submitted to the controller.

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3- All conductor continuity tests of insulation and screen shall be submitted to the controller.

4- AS- BUILT projects with correct equipment layout shall be submitted to the

controller.

5- Contractor shall control electrical room dimensions, shaft dimensions, at the beginning of the work. Aplications shall starts after this control.

6- Temporary admission process will start by controller, only after contractor completing AS- BUILT projects, equipment catalogues, test reports, all line labelling process that belongs to electrical panels, cable test reports, all powering works of the facility.

7- Controller shall have investigating right at place for the factory tests, preparing documents, for acceptance process etc.. Contractor shall have quality certificates prepared by the manufacturing companies. Contractor is responsible for all expenses belong to the above process.

END SECTION LOW CURRENT SYSTEMS