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Electromagnetic Compatibility Test Report Test Report No: MLT 040315 Issued on: March 04, 2015 Product Name ENTR Door Unit Tested According to ETSI EN 300 328 V1.8.1:2012-06 IEC 61000-4-2 Tests Performed for MUL-T-LOCK Kiryat Yavne, P.O.Box 637, Yavne 8110601, Israel QualiTech EMC Laboratory 30 Hasivim Street,P.O.Box 7500 Petah-Tikva, 4951169, Israel Tel: +972-3-926-6994 Fax: +972-3-928 7490

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Page 1: Electromagnetic Compatibility Test Report - vachette.fr 2015... · Electromagnetic Compatibility Test Report Test Report No: MLT 040315 Issued on: March 04, 2015 Product Name ENTR

Electromagnetic Compatibility Test Report

Test Report No: MLT 040315

Issued on: March 04, 2015

Product Name ENTR Door Unit

Tested According to ETSI EN 300 328 V1.8.1:2012-06

IEC 61000-4-2

Tests Performed for MUL-T-LOCK

Kiryat Yavne, P.O.Box 637, Yavne 8110601, Israel

QualiTech EMC Laboratory 30 Hasivim Street,P.O.Box 7500 Petah-Tikva, 4951169, Israel Tel: +972-3-926-6994 Fax: +972-3-928 7490

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The information contained herein is the property of QualiTech, EMC Lab and is supplied without liability for errors or omissions. The copyright for this document vests in QualiTech, EMC Lab. All rights reserved. This Test Report may not be reproduced, by any method, without the written permission of the QualiTech, EMC Lab. If and when such permission is granted, the report must be reproduced only in the full format.

Test Personnel

Tests Performed By: -------------------------------------

Dmitry Isaev

Report Prepared By: ------------------------------------- Bina Talkar

Report Approved By: ------------------------------------- Rami Nataf EMC Lab. Manager QualiTech EMC Laboratory

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Test Report details:

Test commencement date: 02.12.2014

Test completion date: 19.02.2015

Customer’s Representative: Aharon Vardi

Issued on: 04.03.2015

Equipment Tested

Production Model ☑

Equipment preliminary model

Assessment information: This report contains an assessment of the EUT against Electromagnetic Compatibility based upon tests carried out on the samples submitted. The results contained in this report relate only to the items tested. Manufactured products will not necessarily give identical results due to production and measurement tolerances. QualiTech, EMC Lab does not assume responsibility for any conclusion and generalization drawn from the test results with regards to other specimens or samples of type of the equipment represented by test item.

The EUT was set up and exercised using the configuration, modes of operation and arrangements defined in this report only.

Customer’s declaration Per customer’s declaration, the output power is 4.7dBm IFEU0000000063 Unit.

Modifications:

Modifications made to the EUT: None Modifications made to the Test Standard: None

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Summary of Compliance:

Test type Technical Requirement of

EN 300 328 V1.8.1(2012-06) Test Method EN 300 328

V1.8.1(2012-06) Test results

RF Output Power Clause 4.3.2.1 Clause 5.3.2.2.1.1 Pass

Power Spectral Density Clause 4.3.2.2 Clause 5.3.3.2.2 Pass

Duty Cycle, Tx sequence, Tx gap Clause 4.3.2.3 Clause 5.3.2.2.1.2 NA, <10dBm EIRP

Medium Utilization(MU) Factor Clause 4.3.2.4 Clause 5.3.2.2.1.3 NA, <10dBm EIRP

Adaptivity (adaptive equipment using modulations other than FHSS)

Clause 4.3.2.5 Clause 5.3.7.2.2 NA, <10dBm EIRP

Occupied Channel Bandwidth Clause 4.3.2.6 Clause 5.3.8.2.2 Pass

Transmitter Unwanted Emissions in the out-of-band Domain

Clause 4.3.2.7 Clause 5.3.9.2.2 Pass

Transmitter Unwanted Emissions in the Spurious Domain(Radiated)

Clause 4.3.2.8 Clause 5.3.10.2.2 Pass

Receiver Spurious Emission(Radiated) Clause 4.3.2.9 Clause 5.3.11.2.2 Pass

Receiver Blocking Clause 4.3.2.10 Clause 5.3.7.2.1.2 NA, <10dBm EIRP

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Table of Contents

1.  GENERAL .............................................................................................................................................................. 6 

1.1.  Purpose: .......................................................................................................................................... 6 1.2.  Referenced documents: .................................................................................................................. 6 1.3.  Description of the EUT system: .................................................................................................... 7 

1.3.1.  General Description: .................................................................................................................................. 7 1.3.2.  EUT Cards/Modules List: .......................................................................................................................... 7 1.3.3.  Clock Frequencies Table: .......................................................................................................................... 7 

1.4.  Test Facility & Uncertainty of Measurement .............................................................................. 8 1.5.  Uncertainty of Measurement ........................................................................................................ 9 

2.  TEST RESULTS ................................................................................................................................................... 10 

2.1.  RF Output Power ......................................................................................................................... 10 2.2.  Spectral Power Density ................................................................................................................ 11 2.3.  Occupied Channel Bandwidth .................................................................................................... 13 2.4.  Transmitter Unwanted Emissions in the out-of-band Domains – Conducted measurements .. ....................................................................................................................................................... 15 2.5.  Transmitter Unwanted Emissions in the Spurious Domains ................................................... 32 2.6.  Receiver Spurious Emissions – Radiated measurement ........................................................... 52 

3.  IMMUNITY TO ELECTROSTATIC DISCHARGE ....................................................................................... 63 

4.  APPENDIX ........................................................................................................................................................... 67 

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1. General

1.1. Purpose:

The purpose of this report is to verify compliance to Electromagnetic Compatibility and Radio Spectrum Matters outlined in the referenced specifications.

1.2. Referenced documents:

Note: Latest versions of the following standards were applied according to the Official Journal:

ETSI EN 300 328 V1.8.1 Electromagnetic compatibility and Radio Spectrum Matters (ERM); wideband Transmission systems; Data transmission equipment operating in the 2.4 GHz ISM band and using modulation techniques; Harmonized EN covering essential requirements under article 3.2 of the R & TTE Directive

IEC 61000-4-2 Electrostatic Discharge (ESD) Immunity test

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1.3. Description of the EUT system:

General description of the EUT, configuration used for Emission testing were defined by the manufacturer.

1.3.1. General Description:

ENTR Door Unit

1.3.2. EUT Cards/Modules List:

No  Hardware Component  Manufacturer’s Catalog Number 

Hardware Revision  Quantity 

1  BLE PCB  81130245  0A  1 

2  Main PCB  81130090  0C  1 

3  Motor PCB  81130162  0B  1 

1.3.3. Clock Frequencies Table:

Frequency [MHz] Location

8MHz  Main 

16MHz  Main 

32.768kHz  BLE 

16MHz  BLE 

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1.4. Test Facility & Uncertainty of Measurement

Accreditation/ Registration reference:

- A2LA Certificate Number: 1633.01

Test Facility Description

The tests were performed at the EMC Laboratory, QualiTech Division, ECI Telecom Group

Address: 30, Hasivim St., Petah Tikva, Israel. Tel: 972-3-926-6994

3m Anechoic Chamber:

The 3m-screened chamber is used in two configurations: the semi-anechoic configuration for Radiated Emission measurements and the full-anechoic configuration for Radiated Immunity tests.

Semi Anechoic Configuration:

Measurement distance 3m

Chamber dimensions 9.5m x 6.5m x 5.2m

Antenna height 1 - 4m

Shielding Effectiveness

Magnetic field 80dB at 15 kHz 90dB at 100 kHz

Electric field 120dB from 1MHz to 1GHz 110dB from 1GHz to 10GHz

Absorbing material Ferrite tiles on the walls and ceiling

Emerson and Cuming absorbing material in selected positions on the walls

Normalized Site Attenuation measured at 5 positions

3.9dB, 30MHz to 200MHz 3dB, 200MHz to 1000MHz

Transmission Loss measured at 5 positions, at 1.5m height 3dB, 1GHz to 18GHz

Full-Anechoic Configuration:

Measurement distance 3m

Chamber dimensions 7m x 4m x 3m

Antenna height 1.55m at Horizontal & Vertical polarizations

Shielding Effectiveness

Magnetic field 80dB at 15 kHz 90dB at 100 kHz

Electric field 120dB from 1MHz to 1GHz 110dB from 1GHz to 10GHz

Absorbing material Ferrite tiles on the walls and ceiling Emerson and Cuming absorbing

material in selected positions on the walls and floor

Field Uniformity to EN61000-4-3 3dB 80MHz to 18GHz

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1.5. Uncertainty of Measurement

Parameter EMC Lab uncertainty ± EN 300-328 Table 6 Measurement

Uncertainty

Radio frequency accuracy=1x10^-7 1x10^-5

Total RF Power, conducted 1.42 ±1.5dB

RF Power density, Conducted 1.74 ±3dB

Spurious emissions, conducted 1.74 ±3dB

All emissions, radiated 4.20 ±6dB

Temperature 0.5 ºC ±1 ºC

Humidity 0.03 ±5%

DC and low frequency voltages 0.0002 ±3%

NOTE: For the test methods, according to the present document, the measurement uncertainty figures are calculated in accordance with TR 100 028-1 [2] and correspond to an expansion factor (coverage factor) k = 2 (which provide confidence levels of 95 % in the case where the distributions characterizing the actual measurement uncertainties are normal (Gaussian).

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2. Test Results

2.1. RF Output Power

Test Method: Radiated measurements per ETSI EN 300 328 V1.8.1, Sec. 5.3.2.2.1.1

Operating Condition: Under normal test conditions and extremes of the operating temperature range, PRBS9 (See Appendix A)

Limits:

For adaptive equipment using wide band modulations other than FHSS, the maximum RF output power (e.i.r.p) shall be 20dBm. The maximum RF output power for non-adaptive equipment shall be declared by the supplier and shall not exceed 20 dBm. See clause 5.3.1 m). For non-adaptive equipment using wide band modulations other than FHSS, the maximum RF output power (e.i.r.p) shall be equal to or less than the value declared by the supplier. Test Results:

Carrier Frequency,

MHz

Temperature, ºC

Measured Power, dBm

EUT Antenna Gain*, dBi

Calculated EIRP**, dBm

Limit, dBm

Delta, dB

Pass/Fail

2402.000

25 1.90 2.00 3.90 20.00 -16.10 Pass

60 1.72 2.00 3.72 20.00 -16.28 Pass

-10 1.73 2.00 3.73 20.00 -16.27 Pass

2442.000

25 1.73 2.00 3.73 20.00 -16.27 Pass

60 1.23 2.00 3.23 20.00 -16.77 Pass

-10 1.34 2.00 3.34 20.00 -16.66 Pass

2480.000

25 1.54 2.00 3.54 20.00 -16.46 Pass

60 1.15 2.00 3.15 20.00 -16.85 Pass

-10 1.21 2.00 3.21 20.00 -16.79 Pass

*According to manufacturer declaration **EIRP = Measured Power + EUT Antenna Gain

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2.2. Spectral Power Density

Test Method: Radiated measurements per ETSI EN 300 328 V1.8.1, Sec. 5.3.3.2.1

Operating Condition: Under normal test conditions, PRBS9 (See Appendix A)

Limits:

The maximum e.i.r.p. spectral density is limited to 10 mW per MHz (10dBm/MHz).

Test Results:

Frequency, [MHz] Measured Average Power,

[dBm/MHz] Limit,

[dBm/MHz] Delta, dB Pass/ Fail

2402.0 -24.30 10.00 -34.30 Pass

2442.0 -24.36 10.00 -34.36 Pass

2480.0 -24.55 10.00 -34.55 Pass

Plot 2.2.1 Spectral Power Density test results, F = 2402 MHz

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Plot 2.2.2 Spectral Power Density test results, F = 2442 MHz

Plot 2.2.3 Spectral Power Density test results, F = 2480 MHz

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2.3. Occupied Channel Bandwidth

Test Method: Conducted measurements per ETSI EN 300 328 V1.8.1, Sec. 5.3.8.2.1

Operating Condition: Under normal test conditions, PRBS9 (See Appendix A)

Limits: The Occupied Channel Bandwidth shall fall completely within 2400 – 2483.5MHz band. In addition, for non-adaptive systems using wide band modulations other than FHSS and with e.i.r.p greater than 10 dBm, the occupied channel bandwidth shall be less than 20MHz.

Test Results:

Frequency, [MHz]

Data Rate

99% power BW, [MHz]

Lower Frequency, [MHz]

Higher Frequency, [MHz]

Bandwidth Limit, [MHz]*

Pass/Fail

2402.00 PRBS9 1.05 2401.51 NA 20.00 Pass

2480.00 PRBS9 1.07 NA 2480.57 20.00 Pass

*applicable only for EUT with e.i.r.p. greater than 10dBm

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Plot 2.3.1 Occupied Channel Bandwidth test results, F = 2402 MHz

Plot 2.3.2 Occupied Channel Bandwidth test results, F = 2480 MHz

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2.4. Transmitter Unwanted Emissions in the out-of-band Domains – Conducted measurements

Test Method: Conducted measurements per ETSI EN 300 328 V1.8.1, Sec.5.3.9.2.1

Operating condition: Under normal test conditions and extremes of the operating temperature range, PRBS9 (See Appendix A)

Limits:

The Transmitter Unwanted Emissions in the out-of-band Domains shall not exceed the values in the table below.

Transmitter limits:

Frequency Range, MHz Limit, dBm/MHz e.i.r.p.

2400.0 – 2BW -20.0

2400.0 – BW -10.0

2483.5 + BW -10.0

2483.5 + 2BW -20.0

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Test Results:

Channel Frequency,

[MHz] Frequency Range

Emission Amplitude,

dBm

Antenna Gain [dBi]

Cable loss [dB]

EIRP calculated, [dBm]

Limit, [dBm]

Pass/Fail

Normal test conditions

2402

2400 - BW -27.03 2.00 0.50 -24.53 -10.00 Pass

2400 - 2BW -32.28 2.00 0.50 -29.78 -20.00 Pass

Below 2400 - 2BW -37.26 2.00 0.50 -34.76 -30.00 Pass

2480

2480 + BW -33.65 2.00 0.50 -31.15 -10.00 Pass

2480 + 2BW -31.12 2.00 0.50 -28.62 -20.00 Pass

Above 2480 + 2BW -41.06 2.00 0.50 -38.56 -30.00 Pass

Extreme test conditions, T = +60ºC

2402

2400 - BW -26.99 2.00 0.50 -24.49 -10.00 Pass

2400 - 2BW -32.57 2.00 0.50 -30.07 -20.00 Pass

Below 2400 - 2BW -37.19 2.00 0.50 -34.69 -30.00 Pass

2480

2480 + BW -34.71 2.00 0.50 -32.21 -10.00 Pass

2480 + 2BW -36.43 2.00 0.50 -33.93 -20.00 Pass

Above 2480 + 2BW -39.92 2.00 0.50 -37.42 -30.00 Pass

Extreme test conditions, T = -10 ºC

2402

2400 - BW -26.73 2.00 0.50 -24.23 -10.00 Pass

2400 - 2BW -31.95 2.00 0.50 -29.45 -20.00 Pass

Below 2400 - 2BW -36.81 2.00 0.50 -34.31 -30.00 Pass

2480

2480 + BW -33.17 2.00 0.50 -30.67 -10.00 Pass

2480 + 2BW -35.26 2.00 0.50 -32.76 -20.00 Pass

Above 2480 + 2BW -38.74 2.00 0.50 -36.24 -30.00 Pass

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Plot 2.4.1 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2402MHz, normal conditions

Display line is Video trigger

Plot 2.4.2 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2480MHz, normal conditions

Display line is Video trigger

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Plot 2.4.3 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 1MHz (BW), normal conditions

Display line is Video trigger

Plot 2.4.4 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 2MHz (2BW), normal conditions

Display line is Video trigger

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Plot 2.4.5 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2388.0 – 2398.0 MHz range, normal conditions

Display line is Video trigger

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Plot 2.4.6 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz 2483.5 + 1MHz (BW), normal conditions

Display line is Video trigger

Plot 2.4.7 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2483.5 + 2MHz (2BW), normal conditions

Display line is Video trigger

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Plot 2.4.8 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2485.5 + 2495.5 MHz range, normal conditions

Display line is Video trigger

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Plot 2.4.9 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2402MHz, extreme temperature T = +50ºC

Display line is Video trigger

Plot 2.4.10 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2480MHz, extreme temperature T = +50ºC

Display line is Video trigger

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Plot 2.4.11 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 1MHz (BW), extreme temperature T = +50ºC

Display line is Video trigger

Plot 2.4.12 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 2MHz (2BW), extreme temperature T = +50ºC

Display line is Video trigger

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Plot 2.4.13 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2388.0 – 2398.0 MHz range, extreme temperature T = +50ºC

Display line is Video trigger

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Plot 2.4.14 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz 2483.5 + 1MHz (BW), extreme temperature T = +50ºC

Display line is Video trigger

Plot 2.4.15 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2483.5 + 2MHz (2BW), extreme temperature T = +50ºC

Display line is Video trigger

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Plot 2.4.16 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2485.5 + 2495.5 MHz range, extreme temperature T = +50ºC

Display line is Video trigger

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Plot 2.4.17 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2402MHz, extreme temperature T = -10ºC

Display line is Video trigger

Plot 2.4.18 Transmitter Unwanted Emissions in the out-of-band Domains test results, 2484 MHz, Fc = 2480MHz, extreme temperature T = -10ºC

Display line is Video trigger

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Plot 2.4.19 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 1MHz (BW), extreme temperature T = -10ºC

Display line is Video trigger

Plot 2.4.20 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2400.0 – 2MHz (2BW), extreme temperature T = -10ºC

Display line is Video trigger

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Plot 2.4.21 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2402MHz, 2388.0 – 2398.0 MHz range, extreme temperature T = -10ºC

Display line is Video trigger

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Plot 2.4.22 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz 2483.5 + 1MHz (BW), extreme temperature T = -10ºC

Display line is Video trigger

Plot 2.4.23 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2483.5 + 2MHz (2BW), extreme temperature T = -10ºC

Display line is Video trigger

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Plot 2.4.24 Transmitter Unwanted Emissions in the out-of-band Domains test results, Fc = 2480MHz, 2483.5 + 10MHz range, extreme temperature T = -10ºC

Display line is Video trigger

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2.5. Transmitter Unwanted Emissions in the Spurious Domains

Test Method: Radiated measurements per ETSI EN 300 328 V1.8.1, Sec.5.3.10.2.1 and Sec.5.3.10.2.2

Operating condition: Under normal test conditions, lowest and highest operating frequency, PRBS9, with 50Ohm termination (See Appendix A)

Limits:

The Transmitter Unwanted Emissions in the Spurious Domains shall not exceed the values in the table below.

Transmitter limits:

Frequency Range, MHz

Limit

Bandwidth, kHz Power, dBm

Equivalent Field Strength@3m, dBµV/m

30 - 47 -36.0 e.r.p. 59.23 100

47 – 74 -54.0 e.r.p. 41.23 100

74 – 87.5 -36.0 e.r.p. 59.23 100

87.5 -118 -54.0 e.r.p. 41.23 100

118 – 174 -36.0 e.r.p. 59.23 100

174 – 230 -54.0 e.r.p. 41.23 100

230 – 470 -36.0 e.r.p. 59.23 100

470 – 862 -54.0 e.r.p. 41.23 100

862 – 1000 -36.0 e.r.p. 59.23 100

1000 - 12750 -30.0 e.i.r.p. 65.23 1000

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Test Results (Conducted Measurements):

Frequency, MHz

Emission Level,

dBµV/m

Antenna Polarization

Substitution Method ERP/EIRP Limit [dBm]

Delta, dB

Pass/Fail

Signal generator

output, [dBm]

Antenna Gain (G)*, [dBd]/[dBi]

Cable Loss, dB

Calculated ERP/EIRP [dBm]**

Lower channel Fc = 2402MHz

All emissions are at least 10dB below the Limit Pass

Upper channel Fc = 2480MHz

All emissions are at least 10dB below the Limit Pass

*[dBd] for ≤1GHz, [dBi] for >1GHz **ERP for ≤1GHz, EIRP for >1GHz Note: All measurements were taken using a notch filter at the spectrum analyzer input, adjusted to the operating frequency.

Test Results (Radiated Measurements):

Frequency, MHz

Emission Level,

dBµV/m

Antenna Polarization

Substitution Method ERP/EIRP Limit [dBm]

Delta, dB

Pass/Fail

Signal generator

output, [dBm]

Antenna Gain (G)*, [dBd]/[dBi]

Cable Loss, dB

Calculated ERP/EIRP [dBm]**

Lower channel Fc = 2402MHz

737.18 38.5 V -59.0 0.0 0.3 -59.3 -54.0 -5.3 Pass

4803.547 58.8 V -48.0 10.9 1.0 -38.1 -30.0 -8.1 Pass

Upper channel Fc = 2480MHz

736.84 38.6 V -59.0 0.0 0.3 -59.3 -54.0 -5.3 Pass

4959.627 60.3 V -46.7 10.9 1.0 -36.8 -30.0 -6.8 Pass

*[dBd] for ≤1GHz, [dBi] for >1GHz **ERP for ≤1GHz, EIRP for >1GHz Note: All measurements were taken using a notch filter at the spectrum analyzer input, adjusted to the operating frequency.

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Plot 2.5.1 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2402MHz, Vertical

Plot 2.5.2 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.3 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2402MHz, Vertical

Plot 2.5.4 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.5 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 2 GHz range, Fc = 2402MHz, Vertical

Plot 2.5.6 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 2 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.7 Transmitter Unwanted Emissions in the Spurious Domain test results, 2 – 3 GHz range, Fc = 2402MHz, Vertical

Plot 2.5.8 Transmitter Unwanted Emissions in the Spurious Domain test results, 2 – 3 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.9 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2402MHz, Vertical

Plot 2.5.10 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.11 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2402MHz, Vertical

Plot 2.5.12 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.5.13 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2480MHz, Vertical

Plot 2.5.14 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2480MHz, Horizontal

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Plot 2.5.15 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2480MHz, Vertical

Plot 2.5.16 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2480MHz Horizontal

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Plot 2.5.17 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 2 GHz range, Fc = 2480MHz, Vertical

Plot 2.5.18 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 2 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.5.19 Transmitter Unwanted Emissions in the Spurious Domain test results, 2 – 3 GHz range, Fc = 2480MHz, Vertical

Plot 2.5.20 Transmitter Unwanted Emissions in the Spurious Domain test results, 2 – 3 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.5.21 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2480MHz, Vertical

Plot 2.5.22 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.5.23 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2480MHz, Vertical

Plot 2.5.24 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.5.25 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2402 MHz

Plot 2.5.26 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2402 MHz

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Plot 2.5.27 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 3 GHz range, Fc = 2402 MHz

Plot 2.5.28 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2402 MHz

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Plot 2.5.29 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2402 MHz

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Plot 2.5.30 Transmitter Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2480MHz

Plot 2.5.31 Transmitter Unwanted Emissions in the Spurious Domains test results, 500 – 1000 MHz range, Fc = 2480MHz

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Plot 2.5.32 Transmitter Unwanted Emissions in the Spurious Domain test results, 1 – 3 GHz range, Fc = 2480MHz

Plot 2.5.33 Transmitter Unwanted Emissions in the Spurious Domain test results, 3 – 10 GHz range, Fc = 2480MHz

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Plot 2.5.34 Transmitter Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2480MHz

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2.6. Receiver Spurious Emissions – Radiated measurement

Test Method: Radiated measurements per ETSI EN 300 328 V1.7.1, Sec. 5.7.6, Option (b)

Operating condition: Under normal test conditions (See Appendix A)

Limits:

The spurious emissions of the receiver shall not exceed the values in the table below: Narrowband spurious emission limits for receivers:

Test Results:

Frequency, MHz

Emission Level,

dBµV/m

Antenna Polarization

Substitution Method ERP/EIRP

Limit [dBm]

Delta, dB

Pass/Fail Signal

generator output, [dBm]

Antenna Gain (G)*, [dBd]/[dBi]

Cable Loss, dB

Calculated ERP/EIRP,

[dBm]**

Lower channel Fc = 2402MHz, PRBS9

405.260 33.2 V -63.0 0.0 0.3 -63.3 -57.0 -6.3 Pass

743.110 35.4 V -62.0 0.0 0.3 -62.3 -57.0 -5.3 Pass

1054.130 42.3 V -62.0 6.3 0.4 -56.1 -47.0 -9.1 Pass

1390.060 43.3 H -63.5 8.0 0.5 -56.0 -47.0 -9.0 Pass

Upper channel Fc = 2480MHz, PRBS9

270.290 34.6 V -62.5 0.0 0.2 -62.7 -57.0 -5.7 Pass

727.290 34.2 V -62.0 0.0 0.3 -62.3 -57.0 -5.3 Pass

1069.300 45.7 V -59.0 6.3 0.4 -53.1 -47.0 -6.1 Pass

1419.910 44.3 H -63.0 8.0 0.5 -55.5 -47.0 -8.5 Pass

*[dBd] for ≤1GHz, [dBi] for >1GHz **ERP for ≤1GHz, EIRP for >1GHz Note: All measurements were taken using a notch filter at the spectrum analyzer input, adjusted to the operating frequency.

Frequency Range, MHz

Limit

Bandwidth, kHz Power, dBm

Equivalent Field Strength@3m, dBµV/m

30 - 1000 -57.0 e.r.p. 38.2 100

1000 - 12750 -47.0 e.i.r.p. 48.2 1000

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Plot 2.6.1 Receiver Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2402MHz, Vertical

Plot 2.6.2 Receiver Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2402MHz, Horizontal

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Plot 2.6.3 Receiver Unwanted Emissions in the Spurious Domain test results, 500 – 1000 MHz range, Fc = 2402MHz, Vertical

Plot 2.6.4 Receiver Unwanted Emissions in the Spurious Domain test results, 500 – 1000 MHz range, Fc = 2402MHz, Horizontal

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Plot 2.6.5 Receiver Unwanted Emissions in the Spurious Domain test results, 1.0 – 3.0 GHz range, Fc = 2402MHz, Vertical

Plot 2.6.6 Receiver Unwanted Emissions in the Spurious Domain test results, 1.0 – 3.0 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.6.7 Receiver Unwanted Emissions in the Spurious Domain test results, 3.0 – 10.0 GHz range, Fc = 2402MHz, Vertical

4801.500MHz – 36.7Peak

Plot 2.6.8 Receiver Unwanted Emissions in the Spurious Domain test results, 3.0 – 10.0 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.6.9 Receiver Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2402MHz, Vertical

Ambient

Plot 2.6.10 Receiver Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2402MHz, Horizontal

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Plot 2.6.11 Receiver Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2480MHz, Vertical

Plot 2.6.12 Receiver Unwanted Emissions in the Spurious Domain test results, 30 – 500 MHz range, Fc = 2480MHz, Horizontal

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Plot 2.6.13 Receiver Unwanted Emissions in the Spurious Domain test results, 500 – 1000 MHz range, Fc = 2480MHz, Vertical

Plot 2.6.14 Receiver Unwanted Emissions in the Spurious Domain test results, 500 – 1000 MHz range, Fc = 2480MHz, Horizontal

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Plot 2.6.15 Receiver Unwanted Emissions in the Spurious Domain test results, 1.0 – 3.0 GHz range, Fc = 2480MHz, Vertical

Plot 2.6.16 Receiver Unwanted Emissions in the Spurious Domain test results, 1.0 – 3.0 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.6.17 Receiver Unwanted Emissions in the Spurious Domain test results, 3.0 – 10.0 GHz range, Fc = 2480MHz, Vertical

Plot 2.6.18 Receiver Unwanted Emissions in the Spurious Domain test results, 3.0 – 10.0 GHz range, Fc = 2480MHz, Horizontal

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Plot 2.6.19 Receiver Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2480MHz, Vertical

Ambient

Plot 2.6.20 Receiver Unwanted Emissions in the Spurious Domain test results, 10 – 12.75 GHz range, Fc = 2480MHz, Horizontal

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3. Immunity to Electrostatic Discharge

Date of Test: 02.12.2014 Relative Humidity: 18.2% Ambient Temperature: 23.3C Atmospheric Pressure: 1011.4 hPa Test performed by: Michael Shtier

Test Method: EN61000-4-2

Test Voltage:

Type of Application Test Voltage # of Discharges each polarity Performance Criteria

Contact Discharge 8kV 10 B

Air Discharge 15kV 10 B

Test Procedure:

Electrostatic Discharge tests were performed on a ground reference plane 3m x 3m wide. The EUT was placed on a wooden table 0.8m high, standing on the ground reference plane. A horizontal coupling plane (HCP), 1.6m x 0.8m, was placed on the table underneath the EUT, and the EUT was isolated from the coupling plane by an insulating support 0.5mm thick. The HCP was connected to the ground reference plane by a bleed resistor lead. The EUT was placed on the HCP with its front face 10cm from the edge of the plane, and configured, arranged and operated in a manner consistent with typical application and load conditions. The cables were taken away from the test area separated from the HCP by 5cm and draped off the HCP as necessary. Normal performance of the EUT was verified.

Direct and air application:

For pre-selected points, 10 single Contact discharges in both positive and negative polarities, were applied with at least 1sec time interval between successive discharges. Discharges were applied to surfaces and metal points which are accessible during normal usage. Inside the EUT, only the points and surfaces, which have to be accessed during maintenance, were included. The same procedure was repeated for air discharges on non- metallic parts or insulating surfaces.

Indirect application:

Ten single discharges, in both positive and negative polarities, were applied to the HCP on each side of the EUT. The same procedure was repeated with the vertical coupling plane VCP (connected to the ground reference plane by a bleed resistor lead) on each side of the EUT such that the face of the EUT was completely illuminated. For air discharges, voltage levels were increased gradually from 2kV until the maximum severity level was reached, for each polarity. During the test, the EUT operation was monitored to verify the required Performance Criteria.

List of Test Equipment:

Refer to Appendix A for calibration date. Noiseken, ESS-2000 Discharge Simulator

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Test Details:

Test Setup No. Photograph No.

Fig. 3.1 Fig. 3.2

Test Results:

Type of discharge

Points of Discharge

Discharge Voltage # of Discharges at each polarity

Performance Criteria applied

BER/ # of errors

Pass/ Fail

Contact Discharge

EUT 8kV 20 A None Pass

VCP 8kV 10 A None Pass

HCP 8kV 10 A None Pass

Air Discharge

EUT 15kV 20 A None Pass

Figure 3.1: Setup for Electrostatic Discharge Test

80 cm

Ground Reference Plane 3m x3m

non-metallic table1.6m x 0.8m

100cm minto the walls

Insulation Support0.5 mm

MainsSupply

HCP

VCP

0.1m

470k

470k

EUT

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Figure 3.2: Electrostatic Discharge Map

Contact Electrostatic Discharge applied at spots

Air Electrostatic Discharge applied at spots

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Electrostatic Discharge Map

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4. Appendix

Appendix A: Test Photographs

Photograph 1

Photograph 2

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Photograph 3

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Photograph 4

Photograph 5

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Appendix B: Duty Cycle "Continuous transmitting"

Plot 1 Duty Cycle test results, Fc = 2402 MHz

Duty Cycle = 48%

Appendix C: Normal & Extreme Test Conditions: Extreme Test Conditions: Temperature: 0C and +40C (indoor unit per manufacturer's declaration)

Normal Test conditions: Temperature: 20C to 25C

Power source: 5.0 VDC

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Appendix D: Accreditation Certificate

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End of the Test Report