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Master: EN 301 489-3 V1-4-1.doc - Date: May 11, 2004 Test Report: 4R08120 Applicant: Advanced Radiotech Corp. 1F, 288-3, Hsin Ya Road Chien Chen District Kaohsiung, Taiwan (R.O.C) Equipment Under Test: FLEX 12EX Model Number: FLEX 12EX In Accordance With: EN 301 489-3 V1.4.1 (2002-04) Electromagnetic compatibility and Radio spectrum Matters (ERM); Electromagnetic Compatibility (EMC) standard for radio equipment and services; Part 3: Specific conditions for Short-Range Devices (SRD) operating on frequencies between 9 kHz and 40 GHz Tested By: Nemko Canada Inc. 303 River Road, R.R. 5 Ottawa, Ontario K1V 1H2 Authorized By: Daniel Hynes, EMC Specialist Date: 26 May 2004 Total Number of Pages: 40

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

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Page 1: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Master: EN 301 489-3 V1-4-1.doc - Date: May 11, 2004

Test Report: 4R08120 Applicant: Advanced Radiotech Corp. 1F, 288-3, Hsin Ya Road Chien Chen District Kaohsiung, Taiwan (R.O.C) Equipment Under Test: FLEX 12EX Model Number: FLEX 12EX In Accordance With: EN 301 489-3 V1.4.1 (2002-04)

Electromagnetic compatibility and Radio spectrum Matters (ERM); Electromagnetic Compatibility (EMC) standard for radio equipment and services; Part 3: Specific conditions for Short-Range Devices (SRD) operating on frequencies between 9 kHz and 40 GHz

Tested By: Nemko Canada Inc. 303 River Road, R.R. 5 Ottawa, Ontario K1V 1H2

Authorized By: Daniel Hynes, EMC Specialist Date: 26 May 2004 Total Number of Pages: 40

Page 2: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 2 of 40

Table of Contents Measurement Uncertainty........................................................................................................................................... 3 Lab Environmental Conditions................................................................................................................................... 3 Declaration.................................................................................................................................................................. 4 Summary of Test Results ............................................................................................................................................ 5 Engineering Considerations...................................................................................................................................... 12 Performance Criterion Clause 6 of EN 301 489-3.................................................................................................... 13 General Information Regarding the Equipment Under Test (EUT) ......................................................................... 16 Equipment Configuration ......................................................................................................................................... 17 Enclosure Port, Radiated Electromagnetic Field Emissions..................................................................................... 18 AC Ports, Conducted Emissions............................................................................................................................... 20 AC Ports, Current Harmonics ................................................................................................................................... 25 AC Ports, Voltage Fluctuations ................................................................................................................................ 26 Electrostatic Discharge ............................................................................................................................................. 29 Radio Frequency, Conducted Continuous ................................................................................................................ 31 Radio Frequency Electromagnetic Field Amplitude Modulated .............................................................................. 33 Surges ....................................................................................................................................................................... 35 Fast Transients .......................................................................................................................................................... 37 Voltage Dips and Short Interruptions ....................................................................................................................... 39

Nemko Canada Inc. authorizes the applicant to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Canada Inc. accepts no responsibility for damages, if any suffered by any third party as a result of decisions made or actions based on this report. This report shall not be reproduced except in full without the written approval of the testing laboratory.

Page 3: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 3 of 40

Measurement Uncertainty Accuracy of Measurement Measurement uncertainty was calculated using the methods described in CISPR 16-4 Specification for radio disturbance and immunity measuring apparatus and methods – Part 4: Uncertainty in EMC measurements and Nemko Canada Inc. procedure EMC/MUC/001 Uncertainty in EMC Measurements. Test Specific Measurement Uncertainty

Measurement Test Specification Ulab 9kHz – 150kHz 4.0dB Conducted disturbance 150kHz – 30MHz 3.6dB

30MHz – 200MHz Horizontal polarization

4.7dB

200MHz – 1000MHz Horizontal polarization

4.7dB

30MHz – 200MHz Vertical polarization

4.9dB Radiated disturbance

200MHz – 1000MHz Vertical polarization

4.9dB

Lab Environmental Conditions Lab Conditions Ambient Temperature: 15°C to 35°C, Relative Humidity: 30% to 60%, Atmospheric Pressure: 86kPa (860mbar) to 106kPa (1 060mbar)

Page 4: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 4 of 40

Declaration Product Name: FLEX 12EX Model No: FLEX 12EX Trademark: Advanced Radiotech Corporation Serial No: 000001 Name of Applicant: Advanced Radiotech Corporation Name of Manufacturer: Advanced Radiotech Corporation

TEST RESULT

Nemko Canada Inc., Ottawa, Ontario Canada PASS

FAIL

In the configuration tested, the EUT complied with the requirements of: EN 301 489-3 V1.4.1 (2002-04)

X

Note: See Summary of Test Results and Engineering Considerations for full details.

Tested by: 26 May 2004 Signature Date David Duchesne, EMC Specialist

Reviewed by: 26 May 2004 Signature Date Daniel Hynes, EMC Specialist

Nemko Canada Inc., a testing laboratory, is accredited by the Standards Council of Canada.

The tests included in this report are within the scope of this accreditation.

Page 5: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 5 of 40

Summary of Test Results

General These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with EN 301 489-3 V1.4.1 (2002-04) Electromagnetic compatibility and Radio spectrum Matters (ERM); Electromagnetic Compatibility (EMC) standard for radio equipment and services; Part 3: Specific conditions for Short-Range Devices (SRD) operating on frequencies between 9 kHz and 40 GHz All tests were performed using measurement equipment defined in CISPR 16 following the provisions of EN 301 489-1 (V1.4.1) (2002-08) – Electromagnetic compatibility and Radio spectrum Matters (ERM); ElectroMagnetic Compatibility (EMC) standard for radio equipment and services; Part 1: Common technical requirements

Short Range Device Type Equipment Type Technical nature of the primary function

I Transfer of messages (digital or analogue signals) II Transfer of audio (speech or music) III Others

Notes None

Classification of SRD equipment The product family of Short Range Devices is divided into three classes of equipment, each having its own set of minimum performance criteria. This classification is based upon the impact on persons and/or goods in case the equipment does not operate above the specified minimum performance level under EMC stress. Class of SRD equipment Risk assessment of receiver performance

1 Highly reliable SRD communication media; e.g. serving human life inherent systems (may result in a physical risk to a person)

2 Medium reliable SRD communication media; e.g. causing inconvenience to persons, which cannot simply be overcome by other means

3 Standard reliable SRD communication media; e.g. inconvenience to persons, which can simply be overcome by other means (e.g. manual)

Notes A non-exhaustive list of SRD equipment and its classification is given in annex B. of EN 301 489-3 V1.4.1 (2002-04).

Page 6: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 6 of 40

Summary of Test Results, continued

EMC Emissions EMC emissions measurements for radio and associated ancillary equipment overview

Equipment test requirement

Environmental Phenomenon Application

Radio and ancillary equipment for fixed

use (e.g. base stations equipment)

Radio and ancillary equipment for

vehicular use (e.g. mobile equipment)

Radio and ancillary equipment for portable

use (portable equipment)

Reference Clause in the EN 301 489 –1 V1.4.1 (2002-08)

Radiated Emission Enclosure of ancillary equipment

Applicable for stand alone testing

Applicable for stand alone testing

Applicable for stand alone testing 8.2

Conducted Emission DC power input/output port Applicable Applicable Not Applicable 8.3 Conducted Emission AC mains input/output port Applicable Not Applicable Not Applicable 8.4

Harmonic current emissions AC mains input port Applicable Not Applicable Not Applicable 8.5

Voltage Fluctuations and flicker AC mains input port Applicable Not Applicable Not Applicable 8.6

Conducted Emission Telecommunication port Applicable Not Applicable Not Applicable 8.7

Immunity Immunity tests for radio and associated ancillary equipment overview

Equipment test requirement

Environmental Phenomenon Application

Radio and ancillary equipment for fixed

use (e.g. base stations equipment)

Radio and ancillary equipment for

vehicular use (e.g. mobile equipment)

Radio and ancillary equipment for portable

use (portable equipment)

Reference Clause in the EN 301 489 –1 V1.4.1 (2002-08)

RF electromagnetic field (80 MHz to

2000 MHz) Enclosure Applicable Applicable Applicable 9.2

Electrostatic discharge Enclosure Applicable Applicable Applicable 9.3

Fast transients common mode

Signal, telecommunication and control ports, DC and

AC power ports Applicable Not Applicable Not Applicable 9.4

RF common mode 0.15 MHz to 80 MHz

Signal, telecommunication and control ports, DC and

AC power ports Applicable Applicable Not applicable 9.5

Transients and surges DC power input ports Not applicable Applicable Not applicable 9.6 Voltage dips and

Interruptions AC mains power input ports Applicable Not Applicable Not Applicable 9.7

Surges, line to line and line to ground

AC mains power input ports, telecommunication ports Applicable Not Applicable Not Applicable 9.8

Page 7: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 7 of 40

Summary of Test Results, continued

Clause 8 of EN 301 489-1– Methods of measurement and limits for EMC emissions Clause 8.4 – Limits for conducted emissions of equipment intended to be used in telecommunication centres only AC power input/output ports

Limits dB(µV) Frequency Range MHz Quasi-Peak Average

Result (Pass/Fail)

0.15 to 0.50 79 66 0.50 to 30 73 60 N/A

Notes 1. The lower limit shall apply at the transition frequency. 2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz. Clause 8.4 – Limits for conducted emissions AC power input/output ports

Limits dB(µV) Frequency Range MHz Quasi-Peak Average

Result (Pass/Fail)

0.15 to 0.50 66 to 56 56 to 46 0.5 to 5 56 46 5 to 30 60 50

Pass

Notes 1. The lower limit shall apply at the transition frequency. 2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz. Clause 8.3 – Limits for conducted emissions of equipment intended to be used in telecommunication centres only DC power input/output ports

Limits dB(µV) Frequency Range MHz Quasi-Peak Average

Result (Pass/Fail)

0.15 to 0.50 79 66 0.50 to 30 73 60 N/A

Notes 1. The lower limit shall apply at the transition frequency. 2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz. Clause 8.3 – Limits for conducted emissions DC power input/output ports

Limits dB(µV) Frequency Range MHz Quasi-Peak Average

Result (Pass/Fail)

0.15 to 0.50 66 to 56 56 to 46 0.5 to 5 56 46 5 to 30 60 50

N/A

Notes 1. The lower limit shall apply at the transition frequency. 2. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz.

Page 8: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 8 of 40

Summary of Test Results, continued

Emissions, continued Clause 8.2 – Limits for radiated emissions from ancillary equipment intended for use in telecommunication centres only, and measured on a stand alone basis (measuring distance of 10m)

Frequency Range MHz Quasi-Peak Limits dB(µV/m) Result (Pass/Fail) 30 to 230 40

230 to 1000 47 N/A

Clause 8.2 – Limits for radiated emissions from ancillary equipment, measured on a stand-alone basis (measuring distance of 10m)

Frequency Range MHz Quasi-Peak Limits dB(µV/m) Result (Pass/Fail) 30 to 230 30

230 to 1000 37 Pass

Notes 1. The lower limit shall apply at the transition frequency. 2. Additional provisions may be required for cases where interference occurs. Clause 8.7 – Limits for conducted emissions from telecommunication ports of equipment intended for use in telecommunication centres only

Voltage Limits dB(µV) Current Limits dB(µA) Frequency range MHz Quasi- Peak Average Quasi- Peak Average

Result (Pass/Fail)

0.15 to 0.50 97 to 87 84 to 74 53 to 43 40 to 30 0.50 to 30 87 74 43 30 N/A

Notes 1. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz. 2. The current and voltage disturbance limits are derived for use with an impedance stabilization network (ISN) which

presents a common mode (asymmetric mode) impedance of 150Ω to the telecommunication port under test (conversion factor is 20 log10 150/1 = 44dB)

Clause 8.7 – Limits for conducted emissions from telecommunication ports Voltage Limits dB(µV) Current Limits dB(µA) Frequency Range MHz

Quasi- Peak Average Quasi- Peak Average Result

(Pass/ Fail) 0.15 to 0.50 84 to 74 74 to 64 40 to 30 30 to 20 0.50 to 30 74 64 30 20 N/A

Notes 1. The limit decreases linearly with the logarithm of the frequency in the range 0.15 to 0.50MHz. 2. The current and voltage disturbance limits are derived for use with an impedance stabilization network (ISN) which

presents a common mode (asymmetric mode) impedance of 150Ω to the telecommunication port under test (conversion factor is 20 log10 150/1 = 44dB)

3. Class B – Provisionally, a relaxation of 10dB over the frequency range of 6 to 30MHz is allowed for high-speed services having significant spectral density in this band. However, this relaxation is restricted to the common mode disturbance converted by the cable from the wanted signal. The provision relaxation of 10dB will be reviewed no later than three years after the date of withdrawal based on the results and interference cases seen in this period. Wherever possible it is recommended to comply with the limits without the provisional relaxation.

Page 9: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 9 of 40

Summary of Test Results, continued

AC Ports, Current Harmonics Harmonics Current Limits (Reference standard EN 61000-3-2: 2000) Class A Limits Result (Pass/Fail): Pass Class D Limits Result (Pass/Fail): N/A

Harmonic order N

Maximum Permissible Harmonic Current

A

Harmonic order n

Maximum Permissible Harmonic Current Per

Watt mA/W

Maximum Permissible Harmonic

Current A Odd Harmonics Odd Harmonics

3 5 7 9

11 13

15 ≤ n ≤ 39

2.30 1.14 0.77 0.40 0.33 0.21

0.15 n

15

3 5 7 9

11 13 ≤ n ≤ 39

(odd harmonics only)

3.4 1.9 1.0 0.5

0.35

n85.3

2.30 1.14 0.77 0.40 0.33

0.15 n

15

Even Harmonics Even Harmonics 2 4 6

8 ≤ n ≤ 40

1.08 0.43 0.30

0.23 n8

N/A N/A N/A

Notes None

AC Ports, Voltage Fluctuations Voltage Fluctuations Limits (Reference standard EN 61000-3-3: 1995) Limits: Refer to EN 61000-3-3: 1995 for calculation. Result (Pass/Fail): Pass Notes None

Page 10: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 10 of 40

Summary of Test Results, continued

Clause 9 of EN 301 489-1 Test Methods and levels for immunity tests Clause 9.2, 9.3 – Immunity, Enclosure

Application Environmental Phenomenon Test Specification Units Basic Standard Performance

Criterion Result

(Pass/ Fail)

RF electromagnetic field

80-1000, 1400-2000 3 80

MHz V/m (unmodulated, r.m.s.) % AM (1kHz)

EN 61000-4-3 CT/CR Pass enclosure

electrostatic discharge +/- 4 (Contact Discharge) +/- 8 (Air Discharge)

kV (charge voltage) kV (charge voltage) EN 61000-4-2 TT/RT Pass

Notes None Clause 9.4, 9.5, 9.6, 9.7, and 9.8 – Immunity, Signal Ports, Telecommunication Ports, control ports, DC and AC power ports

Application Environmental Phenomenon Test Specification Units Basic

Standard Performance

Criterion Result

(Pass/ Fail)

RF common mode 0.15-80 3 80

MHz V (Unmodulated, r.m.s.) % AM (1 kHz)

EN 61000-4-6 CT/CR Pass

fast transients common mode

+/- 1.0 5/50 5

kV (Peak) Tr/Th ns Repetition Frequency kHz

EN 61000-4-4 TT/RT Pass

30 10.0

% Reduction ms TT/RT Pass

60 100.0

% Reduction ms

EN 61000-4-11 TT/RT Pass voltage dips and

interruptions >95 5000

% Reduction ms

EN 61000-4-11 TT/RT Pass

AC Mains

Surges 1.2/50 (8/20) +/- 0.5 Line to Line +/- 1.0 Line To Earth

Tr/Th µs kV (Peak) kV (Peak)

EN 61000-4-5 TT/RT Pass

RF common mode 0.15-80 3 80

MHz V (Unmodulated, r.m.s.) % AM (1 kHz)

EN 61000-4-6 CT/CR Pass

fast transients common mode

+/- 0.5 5/50 5

kV (Peak) Tr/Th ns Repetition Frequency kHz

EN 61000-4-4 TT/RT Pass

Signal, Telecommunication , and Control Ports

See Note 1

Surges (See Note 2) +/- 0.5 Line to Earth 1.2/50 (8/20)

kV (Peak) Tr/Th µs EN 61000-4-5 TT/RT N/A

RF common mode 0.15-80 3 80

MHz V (Unmodulated, r.m.s.) % AM (1 kHz)

EN 61000-4-6 CT/CR N/A DC Power Input Ports

See Note 1 fast transients common

mode

+/- 0.5 5/50 5

kV (Peak) Tr/Th ns Repetition Frequency kHz

EN 61000-4-4 TT/RT N/A

DC Power Input Ports (nominal 12V and 24V DC)

Surge and Transients (in the vehicular environment) N/A

Notes 1. Applicable only to cables which according to the manufacturer’s specification supports communication on cable lengths greater than 3m. 2. Applicable only to telecommunications port, and only if it connects directly to a telecommunication network.

Page 11: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 11 of 40

Summary of Test Results, continued

Clause 7 of EN 301 489-3 Immunity Clause 7.1.2 Special conditions The following special conditions set out, relate to the emissions test methods used in EN 301 489-1 [1], clause 8. Reference to clauses in EN 301 489-1 [1]

Special product-related conditions, additional to or modifying the test conditions in EN 301 489-1 [1], clause 8

8.3.2 and 8.4.2: Test method; DC power input/output ports, and AC mains input/output ports

Attention: The exclusion band for transmitters shall be considered for transmitters operating at frequencies below 30 MHz (see clause 4.3.2).

Clause 7.2.2 Special conditions The following special conditions set out, relate to the immunity test methods and performance criteria used in EN 301 489-1 [1], clause 9. Reference to clauses in EN 301 489-1 [1]

Special product-related conditions, additional to or modifying the test conditions in EN 301 489-1 [1], clause 9

9.2.2: Test method; Radio frequency electromagnetic field

Attention: The width of the steps for the test frequency increments is class- dependent:

• For SRDs of class 1 or class 2, the stepped frequency increments shall be 1 % of the momentary used test frequency;

• For SRDs of class 3, the stepped frequency increments shall be 10 % of the momentary used test frequency.

9.5.2: Test method; Radio frequency, common mode

Attention: The width of the steps for the test frequency increments is class-dependent:

• For SRDs of class 1 or class 2, the stepped frequency increments shall be 1 % of the momentary used test frequency in the frequency range 5 MHz to 80 MHz;

• For SRDs of class 3, the stepped frequency increments shall be10 % of the momentary used test frequency in the frequency range 5 MHz to 80 MHz.

9.7.3: Performance criteria; Voltage dips and interruptions

Attention: The performance criteria are equipment class dependent: For a voltage dip corresponding to a reduction of the supply voltage of 30 % for 10 ms the performance criteria CT or CR specified in clauses 6.4 or 6.6 shall apply as appropriate. For a voltage dip corresponding to a reduction of the supply voltage of 60 % for 100 ms the following class-dependent performance criteria shall apply:

• For transmitters, belonging to class 1 equipment, the performance criteria CT (see clause 6.4);

• For transmitters, belonging to class 2 or 3 equipment, the performance criteria TT (see clause 6.5);

• For receivers, belonging to class 1 equipment, the performance criteria CR (see clause 6.6);

• For receivers, belonging to class 2 or 3 equipment, the performance criteria TR (see clause 6.7).

For a voltage interruption corresponding to a reduction of the supply voltage of > 95 % for 5 000 ms the performance criteria TT or TR specified in clauses 6.5 or 6.7 shall apply as appropriate.

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Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 12 of 40

Engineering Considerations Product Modification To achieve compliance the following change(s) were made during compliance testing: None Justification

1. The EUT was deemed as Type I for “Short Range Device Type”. 2. The EUT was deemed as Class 3 for SRD Equipment. 3. The EUT was deemed as “Radio and ancillary equipment for fixed use”.

Deviations The following deviations from, additions to, or exclusions from the test specification have been made: None Test Report Revision History Issue # Details of changes made to test report

- Original Report Issued N/A N/A N/A N/A N/A N/A

Page 13: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 13 of 40

Performance Criterion Clause 6 of EN 301 489-3

General Performance Criteria The performance criteria for the different classes of SRD equipment in combination with the different equipment types during and after immunity test are specified in this clause:

• Performance criteria A for immunity tests with phenomena of a continuous nature; • Performance criteria B for immunity tests with phenomena of a transient nature; • Performance criteria for immunity tests with power interruptions exceeding a certain time are specified in

clause 7.2.2, table 6 of EN 301 489-3 V1.4.1 (2002-04). The equipment shall meet the performance criteria as specified in the following clauses, for the appropriate class of SRD equipment.

Performance Table Class 1 SRD equipment Criteria During test After test

A

Operate as intended No loss of function For equipment type II the minimum performance shall be 12 dB SINAD No unintentional responses

Operate as intended For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions

B

May be loss of function (one or more) No unintentional responses

Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions

Class 2 SRD equipment Criteria During test After test

A

Operate as intended No loss of function For equipment type II the minimum performance shall be 6 dB SINAD No unintentional responses

Operate as intended For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions

B

May be loss of function (one or more) No unintentional responses

Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions

Class 3 SRD equipment Criteria During test After test

A and B

May be loss of function (one or more) No unintentional responses

Operate as intended, for equipment type II the communication link may be lost, but shall be recoverable by user No degradation of performance Lost functions shall be self-recoverable

Page 14: Reference Standard: EN 301 489-3 V1.4.1 (2002-04) · Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120 Nemko Canada Inc., Ottawa, Ontario Canada Equipment

Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

Nemko Canada Inc., Ottawa, Ontario Canada Equipment (EUT): FLEX 12EX

Page 14 of 40

Performance Criterion Clause 6 of EN 301 489-3, continued

Clause 6.4 Performance criteria for Continuous phenomena applied to Transmitters (CT) For equipment of type I or II including ancillary equipment tested on a stand alone basis, the performance criteria A of the applicable class as given in clause 6.3 shall apply. For equipment of type II or type III that requires a communication link that is maintained during the test, it shall be verified by appropriate means supplied by the manufacturer that the communication link is maintained during each individual exposure in the test sequence. Where the EUT is a transmitter, tests shall be repeated with the EUT in standby mode to ensure that any unintentional transmission does not occur.

Clause 6.5 Performance criteria for Transient phenomena applied to Transmitters (TT) For equipment of type I or II, including ancillary equipment tested on a stand alone basis, the performance criteria B of the applicable class as given in clause 6.3 shall apply, except for power interruptions exceeding a certain time the performance criteria deviations are specified in clause 7.2.2. For equipment of type II or type III that requires a communication link that is maintained during the test, this shall be verified by appropriate means supplied by the manufacturer during each individual exposure in the test sequence. Where the EUT is a transmitter, tests shall be repeated with the EUT in standby mode to ensure that any unintentional transmission does not occur.

Clause 6.6 Performance criteria for Continuous phenomena applied to Receivers (CR) For equipment of type I or II, including ancillary equipment tested on a stand alone basis, the performance criteria A of the applicable class as given in clause 6.3 shall apply. For equipment of type II or III that requires a communication link that is maintained during the test, it shall be verified by appropriate means supplied by the manufacturer that the communication link is maintained during each individual exposure in the test sequence. Where the EUT is a transceiver, under no circumstances shall the transmitter operate unintentionally during the test.

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Reference Standard: EN 301 489-3 V1.4.1 (2002-04) Test Report No: 4R08120

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Performance Criterion Clause 6 of EN 301 489-3, continued

Clause 6.7 Performance criteria for Transient phenomena applied to Receivers (TR) For equipment of type I or II, including ancillary equipment tested on a stand alone basis, the performance criteria B of the applicable class as given in clause 6.3 shall apply, except for power interruptions exceeding a certain time the performance criteria deviations are specified in clause 7.2.2. For equipment of type II or type III that requires a communication link that is maintained during the test, this shall be verified by appropriate means supplied by the manufacturer during each individual exposure in the test sequence. Where the EUT is a transceiver, under no circumstances shall the transmitter operate unintentionally during the test.

Clause 6.8 Performance criteria for ancillary equipment tested on a stand alone basis The provision of EN 301 489-1 [1], clause 6.4, shall apply.

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General Information Regarding the Equipment Under Test (EUT) Date Received In Laboratory: April 26, 2004 Nemko Identification Number: Refer to Nemko Canada receiving report. EUT Mains Input Voltage and Frequency Voltage: 230VAC Frequency: 50Hz Description & Theory of Operation The EUT is a radio remote control system designed for control of industrial equipment and machinery. (i.e. overhead traveling cranes, jib cranes, gantry cranes, tower cranes, ect…) The EUT consist of a transmitter handset and a receiver unit. EUT Clock and Operational Frequencies Not supplied by client. Exercise/Monitoring method The Tx and Rx were monitored for corruption. The output relays of the “Receiver Unit” were connected to a test jig that would indicate a closed or open state. The output relays of the “Receiver Unit” were controlled by the “Transmitter Unit” via a wireless link. The outputs were monitored for involuntary state change. Software Version Not supplied by client.

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Equipment Configuration Equipment Configuration List Item Description Identification: (MN#, SN#, PN#, Rev.)

(A) Receiver Unit (B) Transmitter Unit

MN# FLEX 12EX, SN#000003

(C) Test Jig (5 120VAC Light Bulbs) None EUT Ports Item Description Indoor/Outdoor Type (See Legend) Qty

i. AC Mains Input Indoor or Outdoor 1 1 ii. COM1-COM8 Indoor or Outdoor 4 8

iii. K1-K24 Indoor or Outdoor 4 24 Inter-Connection Cables Item Description Shielded Ferrite Length (m)

(1) S.T. PVC Control Cable 0.75MM2 X16C 600V No None 1.5 Legend: 1 = AC Power Input/Output, 2 = DC Power Input/Output, 3 = Telecom, 4 = Non-telecom I/O, 5 = Maintenance, 6 = Fiber Optic Notes None Configuration of the Equipment Under Test (EUT)

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Enclosure Port, Radiated Electromagnetic Field Emissions Test Date: May 12, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Enclosure Investigation Data Test Distance (meters): 10 Dome: Almonte

Freq. (MHz)

Ant.

Pol. V/H

RCVD Signal

(dBµV)

Ant. Factor (dB)

Amp. Gain (dB)

Cable Loss (dB)

Field Strength

(dBµV/m)

Limit (dBµV/m)

Margin (dB)

Detector

Amp.

46.0000 BL V 6.5 9.5 N/A 0.9 16.9 30.0 13.1 Q-Peak N/A 238.7000 BL V 7.9 11.6 N/A 2.0 21.5 37.0 15.5 Q-Peak N/A 110.0000 BL V 7.2 11.7 N/A 1.4 20.3 30.0 9.7 Q-Peak N/A 146.2000 BL V 7.6 10.5 N/A 1.5 19.6 30.0 10.4 Q-Peak N/A 59.0000 BL V 7.5 7.6 N/A 0.9 16.0 30.0 14.0 Q-Peak N/A

321.5000 BL V 8.7 14.1 N/A 2.2 25.0 37.0 12.0 Q-Peak N/A Legend: Antenna Legend: BL = Bilog, Detector Legend: Q-Peak = 120kHz RBW Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass Enclosure Port, Radiated Electromagnetic Field Emissions Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Receiver Rohde & Schwarz ESVS-30 FA001445 June 27/03 June 27/04 1 Year Bilog Schaffner CBL6112B FA001503 Nov. 18/03 Nov. 18/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use

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Enclosure Port, Radiated Electromagnetic Field Emissions, continued Enclosure Port, Radiated Electromagnetic Field Emissions Setup Photos Front View

Rear View

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AC Ports, Conducted Emissions Test Date: May 12, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Spectrum plots for each frequency band can be found at the back of this section. *All plots were generated with a peak detector. Port Investigation Data Port under test: AC Mains Input Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass AC Ports, Conducted Emissions Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year LISN Rohde & Schwarz ESH2-Z5 FA000571 June 02/03 June 02/04 Extended Spectrum Analyzer Hewlett-Packard 8566B FA001432 April 14/03 July 14/04 Extended Spectrum Analyzer Display Hewlett-Packard 85662A FA001432 April 14/03 July 14/04 Extended Transient Limiter Hewlett-Packard 1194 7A FA001150 April 16/03 July 16/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use

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AC Ports, Conducted Emissions, continued AC Ports, Conducted Emissions Setup Photos

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AC Ports, Conducted Emissions, continued AC Ports, Conducted Emissions Plots

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AC Ports, Conducted Emissions, continued AC Ports, Conducted Emissions Plots, continued

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AC Ports, Conducted Emissions, continued AC Ports, Conducted Emissions Plots, continued

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AC Ports, Current Harmonics Test Date: May 12, 2004 Engineer’s Name: David Duchesne Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Port Investigation Data Port under test: AC Mains Input Results: The EUT required less than 75 watts. (No limits apply) Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass AC Ports, Current Harmonics Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Power Source California Instruments 5001ix FA001770 July 16/03 July 16/04 1 Year Waveform Analyzer California Instruments PACS-1 FA001770 July 16/03 July 16/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use

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AC Ports, Voltage Fluctuations Test Date: May 13, 2004 Engineer’s Name: David Duchesne Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Port Investigation Data Port under test: AC Mains Input Results: Refer to California Instruments CTS - V2.0.6 data at end of section. Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass AC Ports, Voltage Fluctuations Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Power Source California Instruments 5001ix FA001770 July 16/03 July 16/04 1 Year Waveform Analyzer California Instruments PACS-1 FA001770 July 16/03 July 16/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use

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AC Ports, Voltage Fluctuations, continued AC Ports, Voltage Fluctuations Detailed Setup Photos

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AC Ports, Voltage Fluctuations, continued AC Ports, Voltage Fluctuations California Instruments CTS - V2.0.6 Data

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Electrostatic Discharge Test Date: May 11, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Contact Discharge Discharge Point Number at +/- Test Voltage (kV) Result Receiver Unit Case Screws None 2, 4 No Discharge Transmitter Handset Screws None 2, 4 No Discharge Indirect Discharge Discharge Point Number at +/- Test Voltage (kV) Result HCP (All Sides) of Receiver Unit 25 2, 4 No Degradation VCP (All Sides) of Receiver Unit 25 2, 4 No Degradation HCP (All Sides) of Transmitter Handset 25 2, 4 No Degradation VCP (All Sides) of Transmitter Handset 25 2, 4 No Degradation Air Discharge Discharge Point Number at +/- Test Voltage (kV) Result Receiver Unit Case None 2, 4, 8 No Discharge Transmitter Handset Case None 2, 4, 8 No Discharge Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass

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Electrostatic Discharge, continued Electrostatic Discharge Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year ESD Gun KeyTek MZ-15/EC FA000791 Nov. 06/03 Nov. 06/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use Electrostatic Discharge Setup Photos

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Radio Frequency, Conducted Continuous Test Date: May 11, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Swept Frequency Test

Start Freq. (MHz) Stop Freq. (MHz) Step Size (%) Dwell Time (s) Level (Volts) 0.150 80 1 3 3

Modulation Details Modulation Type: AM Freq. Mod (kHz): 1 % Modulation: 80 Additional Spot Frequencies investigated (MHz): All EUT clock frequencies within specified test band. Dwell Time (s): 3 Ports Investigated Test Port Coupling Method Result AC Mains Input CDN No Degradation Relay Outputs Bulk Current Injection Clamp No Degradation Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass

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Radio Frequency, Conducted Continuous, continued Radio Frequency, Conducted Continuous Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. Extended Signal Generator IFR 2024 FA001674 April 16/03 July 16/04 NCR Amplifier AR 150A220 FA001744 NCR NCR 1 Year CDN FCC FCC-801-M3-16 FA001776 Oct. 07/03 Oct. 07/04 1 Year Bulk Injection Current Probe FCC F-120-9A FA001599 Oct. 07/03 Oct. 07/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use Radio Frequency, Conducted Continuous Setup Photos

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Radio Frequency Electromagnetic Field Amplitude Modulated Test Date: May 12, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz Swept Frequency Test

Start Freq. (MHz) Stop Freq. (MHz) Step Size (%) Dwell Time (s) Level (Volts) 80 1000 1 3 3

1400 2000 1 3 3 Modulation Details Modulation Type: AM Freq. Mod (kHz): 1 % Modulation: 80 Additional Spot Frequencies investigated (MHz): All EUT clock frequencies within specified test band. Dwell Time (s): 3 Enclosure Investigated Facility: Almonte Chamber Result: No Degradation Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass

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Radio Frequency Electromagnetic Field Amplitude Modulated, continued Radio Frequency Electromagnetic Field Amplitude Modulated Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Signal Generator IFR 2024 FA001674 April 16/03 April 16/04 NCR Amplifier AR 150A220 FA001744 NCR NCR NCR Amplifier AR 30W1000B FA001743 NCR NCR NCR 1-2GHz Amplifier HUGHES 8020H09F000 FA001862 NCR NCR Extended Horn Antenna #3 EMCO 3115 FA001452 April 15/03 July 15/04 NCR Biconilog EMCO 3146 FA000815 NCR NCR Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use Radio Frequency Electromagnetic Field Amplitude Modulated Setup Photos

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Surges Test Date: May 11, 2004 Engineer’s Name: David Duchesne Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz AC Power Ports Waveshape (1,2/50 µs – 8/20µs) Phase (synchronized to the voltage phase): 0, 90, 180, and 270

Repetition Rate - time between each surge (s): 30 Number of test at the selected points: 5 Test Port Line to Line Line to Earth Test Voltage +/- (kV) Result

0.5 AC Mains Input 0.5, 1.0 No Degradation

Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass

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Surges, continued Surges Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Control Centre KeyTek ECAT E-Class Series 100 FA000739 Jan. 27/04 Jan. 27/05 1 Year EFT/SURGE

Coupler/Decoupler KeyTek E4551 FA000742 Jan. 27/04 Jan. 27/05

1 Year Surge Network Module KeyTek E501 FA000741 Jan. 27/04 Jan. 27/05 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use Surges Setup Photos

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Fast Transients Test Date: May 11, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz AC Power Ports Waveshape 5/50 Tr/Th ns Freq. (Hz) Burst Duration (ms) Burst Period (ms) Phase: Asynchronous 5000 15 300

CPL reference with earth: L1–N–PE, N–PE, L1–PE, L1–N, PE, L1, N

Test Port Test Voltage +/- (kV) Result AC Mains Input 0.5, 1 No Degradation Signal, Telecommunication, and Control Ports Waveshape 5/50 Tr/Th ns Freq. (Hz) Burst Duration (ms) Burst Period (ms) Phase: Asynchronous 5000 15 300

CPL reference with earth: Negative–Return, Negative, Return

Test Port Test Voltage +/- (kV) Result Relay Outputs 0.5 No Degradation Notes None Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass Fast Transients Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Control Centre KeyTek ECAT E-Class Series 100 FA000739 Jan. 27/04 Jan. 27/05 1 Year EFT/Burst Module KeyTek E411 FA000740 Jan. 27/04 Jan. 27/05 NCR Capacitive Clamp KeyTek CCL-4/S FA000743 Jan. 27/04 Jan. 27/05 1 Year EFT/SURGE

Coupler/Decoupler KeyTek E4551 FA000742 Jan. 27/04 Jan. 27/05

Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use

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Fast Transients, continued Fast Transients Setup Photos

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Voltage Dips and Short Interruptions Test Date: May 12, 2004 Engineer’s Name: David Duchesne Tested as per: Table Top Mains Input Voltage: 230VAC Mains Input Frequency: 50Hz AC Power Ports Seq. # % Reduction Duration (ms) Start Phase Rep Result

1 >95 10 0 3 No Degradation 2 >95 10 180 3 No Degradation 3 30 500 0 3 No Degradation 4 30 500 180 3 No Degradation 5 >95 5000 0 3 See Notes 6 >95 5000 180 3 See Notes

Notes During Sequence 5 and 6 the EUT loss power but returned to it’s idle state. (The inherent nature of this product is to return to an idle state after a certain amount of time has lapsed. The client stated that this was a function of the product and that it would not become unsafe as such) Deviations Refer to Engineering Considerations. Test Result Final Test Result: Pass

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Voltage Dips and Short Interruptions, continued Voltage Dips and Short Interruptions Test Equipment Used CAL Cycle Equipment Manufacturer Model No. Asset/Serial No. Last Cal. Next Cal. 1 Year Power Source California Instruments 5001ix FA001770 July 16/03 July 16/04 1 Year Electronic Output Switch California Instruments EOS-1 FA001771 July 16/03 July 16/04 Note: N/A = Not Applicable, NCR = No Cal Required, COU = CAL On Use Voltage Dips and Short Interruptions Setup Photos