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1 ELECTRICAL TESTING Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Tel Fax TEST REPORT ACCORDING TO: EN V2.4.1: 2012 EN V2.4.1: 2012 FOR: Motorola Solutions Israel Ltd. Piccolo Interface Unit Model: PIU-F4604B This report is in conformity with ISO/ IEC The "A2LA Accredited" symbol endorsement applies only to the tests and calibrations that are listed in the scope of Hermon Laboratories accreditation. The test results relate only to the items tested. This test report shall not be reproduced in any form except in full with the written approval of Hermon Laboratories Ltd. Page 1 of 34

2 Table of contents 1 Applicant information Equipment under test attributes Manufacturer information Test details Tests summary EUT description General information Ports and lines Support and test equipment Operating frequencies Test configuration Transmitter characteristics Transmitter parameters Frequency error Effective radiated power of carrier Transient power Receiver parameters Blocking EUT photographs External Internal APPENDIX A Test equipment and ancillaries used for tests APPENDIX B Test laboratory description APPENDIX C Abbreviations and acronyms APPENDIX D Test equipment correction factors APPENDIX E Measurement uncertainties APPENDIX F Specification references Page 2 of 34

3 1 Applicant information Client name: Motorola Solutions Israel Ltd. Address: P.O. Box 25106, 2 Negev St., Airport City 70199, Israel Telephone: Fax: alexb@motorolasolutions.com Contact name: Mr. Babaladze Alex 2 Equipment under test attributes Product name: Model: Serial number: Receipt date: Piccolo Interface Unit PIU-F4604B 870SRY00WC 16-May-16 3 Manufacturer information Manufacturer name: Motorola Solutions Israel Ltd. Address: P.O. Box 25106, 2 Negev St., Airport City 70199, Israel Telephone: Fax: alexb@motorolasolutions.com Contact name: Mr. Babaladze Alex 4 Test details Project ID: Location: Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Test started: 16-May-16 Test completed: 22-May-16 Test specifications: EN V2.4.1: 2012 EN V2.4.1: 2012 Page 3 of 34

4 5 Tests summary Test Transmitter parameters Frequency error (narrow band transmitter) Frequency error (wide band transmitter) Average power Effective radiated power Transient power Response of the transmitter to modulation frequency Adjacent channel power Range of modulation bandwidth Spurious emission Conducted Radiated Frequency stability under low voltage (narrow band transmitter) Frequency stability under low voltage (wide band transmitter) Duty cycle Listen before talk requirements applies to transmitters LBT function Receiver parameters Receiver sensitivity Receiver LBT threshold and maximum Tx on-time Adjacent channel selectivity Blocking Spurious response rejection Spurious radiation Receiver spurious emissions (conducted) Receiver spurious emissions (radiated) Status Pass Not required Not required Pass Pass Pass* Not required Pass* Pass* Pass* Not required Pass* Pass* Pass* Pass* Not required Pass Not required Pass* Pass* This test report is based on the test report MOTRAD_EN.19518_ issued by Hermon Laboratories. The purpose of this test report is to update the latest standard versions assuming that the EUT hardware and software were not changed as stated in the manufacturer s declaration. Thst is why only relevant tests were performed. * Refer to the test report MOTRAD_EN.19518_ Testing was completed against all relevant requirements of the test standard. The results obtained indicate that the product under test complies in full with the requirements tested. The test results relate only to the items tested. Pass/ fail decision was based on nominal values. Name and Title Date Signature Tested by: Mrs. E. Pitt, test engineer Mr. S.Samokha, test engineer May 22, 2016 Reviewed by: Ms. N. Averin, certification engineer May 31, 2016 Approved by: Mr. M. Nikishin, EMC and radio group leader July 4, 2016 Page 4 of 34

5 6 EUT description 6.1 General information The EUT, Piccolo Interface Unit (PIU), is most commonly used in the fixed installations enclosed with an indoor plastic housing. The EUT may be powered from 24 VAC or 12 VDC power source or from 9 V internal battery. The PIU provides communication and control with Piccolo transceiver over 430 to 450 MHz radio link. The PIU-F4604B and Piccolo-XR-F4614B use the same radio (FLE5532A). 6.2 Ports and lines Port type Port description Conn. from Conn. to Qty. Cable type Cable length Indoor / outdoor Power AC Power EUT Not connected 1 NA NA Outdoor Signal RS-232 EUT PC 1 Unshielded 12 m Outdoor Signal RS-485 EUT Open circuit 1 Unshielded 5 m Outdoor Signal Adaptor port Not connected* NA 1 NA NA Outdoor RF Antenna EUT Termination 1 NA NA Outdoor Power DC Power EUT Power supply 1 Unshielded 1.5 m Outdoor Ground connections GND EUT GND 1 Unshielded 0.5 m Outdoor * Port intended for initial configuration or maintenance. 6.3 Support and test equipment Description Manufacturer Model number Serial number PC IBM 2373-CTO L3-4112E AC Adaptor IBM P/N 02K7093 PA Host application (ACE3600CPU+PS) Part CPU Motorola FLN 3524A 085SHA Operating frequencies Source 6.5 Test configuration Part PS Motorola FPN 1643A 085SJG00XH Power supply Horizon DHR 3655D Frequency, MHz Clock LO Power supply DC EUT Antenna RS232 Laptop Adapter mains RS485 Open circuit Page 5 of 34

6 6.6 Transmitter characteristics Type of equipment V Stand-alone (Equipment with or without its own control provisions) Combined equipment (Equipment where the radio part is fully integrated within another type of equipment) Plug-in card (Equipment intended for a variety of host systems) Intended use Condition of use fixed Always at a distance more than 2 m from all people V mobile Always at a distance more than 20 cm from all people portable May operate at a distance closer than 20 cm to human body Assigned frequency range Operating frequency range RF channel spacing Maximum rated output power Is transmitter output power variable? Antenna connection unique coupling Antenna/s technical characteristics V MHz MHz 12.5 khz At transmitter 50 RF output connector Effective radiated power (for equipment with no RF connector) V No Yes standard connector SMA type continuous variable stepped variable with stepsize minimum RF power maximum RF power integral Type Manufacturer Model number Gain External Centurion Wireless EXC450SM 1.7 dbi Technologies, Inc. Transmitter aggregate data rate/s Transmitter aggregate symbol (baud) rate/s Type of modulation Type of multiplexing Modulating test signal (baseband) 1200 bps 600 symbols per second FM NA DPSK dbm 6.68 dbm with temporary RF connector without temporary RF connector Maximum transmitter duty cycle in normal use 100% Tx ON time msec Period msec Transmitter power source Battery Nominal rated voltage Battery type V DC Nominal rated voltage 9.0 VDC / 12 VDC, V DC AC mains Nominal rated voltage Frequency Hz Common power source for transmitter and receiver V yes no Transmitter parameters declared by the manufacturer Parameters Minimum Tx-off time Maximum Tx-on time a)single transmission b)transmission dialogue or a poling sequence Duty cycle in any hour Maximum transmit power Declaration 350 msec 1 sec 4 sec 10% 10 mw Limit > 100 msec 1 sec 4 sec 10% 10 mw Page 6 of 34

7 Test specification: Frequency error (narrow band transmitter) Test procedure: EN V2.4.1, Section May-09 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 48 % Power Supply: 9 VDC Remarks: The test was performed on May 27, The test results table was updated according to the test limits of EN V2.4.1 standard requirements. 7 Transmitter parameters 7.1 Frequency error General This test was performed to measure frequency error of transmitter RF carrier. Specification test limits are given in Table Table Frequency error limits Assigned Maximum allowed frequency error Transmitter type frequency khz ppm* Channelized systems ±12 NA 300 to 500 MHz All other systems NA ± 100 * - The frequency error measured shall not exceed the designated frequency band Test procedure The EUT was set up as shown in Figure under normal conditions, energized and its proper operation was checked. The carrier frequency was measured The EUT power was turned off. The temperature within test chamber and power voltage were set to the higher extreme condition and a period of time sufficient to stabilize all of the oscillator circuit components was allowed The EUT was powered on, carrier frequency was measured and then the EUT was powered off The above procedure was repeated under the rest of extreme temperatures and voltages Frequency drift was calculated and compared with the limit as provided in Table Page 7 of 34

8 Test specification: Frequency error (narrow band transmitter) Test procedure: EN V2.4.1, Section May-09 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 48 % Power Supply: 9 VDC Remarks: The test was performed on May 27, The test results table was updated according to the test limits of EN V2.4.1 standard requirements. Figure Frequency error test setup Photograph Frequency error test setup Page 8 of 34

9 Test specification: Frequency error (narrow band transmitter) Test procedure: EN V2.4.1, Section May-09 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 48 % Power Supply: 9 VDC Remarks: The test was performed on May 27, The test results table was updated according to the test limits of EN V2.4.1 standard requirements. Table Frequency error test results OPERATING FREQUENCY RANGE: MHz NOMINAL POWER VOLTAGE: 9 VDC TEMPERATURE STABILIZATION PERIOD: 20 min POWER DURING TEMPERATURE TRANSITION: Off SPECTRUM ANALYZER MODE: Counter RESOLUTION BANDWIDTH: 1 khz VIDEO BANDWIDTH: 1 khz MODULATION: Unmodulated Temperature, Voltage, Frequency, MHz Frequency error, Limit, Margin, ºC V Measured Nominal* Hz** Hz Hz Low frequency Mid frequency High frequency Verdict *-Nominal frequency stated by manufacturer. **-Frequency error was calculated as a difference between the measured and nominal (stated by manufacturer) frequencies. Pass Pass Pass Reference numbers of test equipment used HL 0493 HL 2358 HL 2911 HL 3001 HL 3310 HL 3442 Full description is given in Appendix A. Page 9 of 34

10 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: 7.2 Effective radiated power of carrier General This test was performed to measure effective radiated power emanated by transmitter at carrier frequency. Specification test limits are given in Table Table Effective radiated power limit Assigned frequency band, MHz mw ERP* Equivalent field strength 3m, dbm db( V/m)** * - ERP limits for the assigned frequency band referred to CEPT ERC Recommendation **- Equivalent field strength limit was calculated from maximum allowed ERP of carrier as follows: E=sqrt( P)/r, where P is ERP in Watts and r is antenna to EUT distance in meters Test procedure for field strength measurements The EUT was set up as shown in Figure 7.2.1, energized and the performance check was conducted The field strength of the EUT carrier frequency was measured with antenna connected to spectrum analyzer/ EMI receiver. To find maximum radiation the turntable was rotated 360 0, the measuring antenna height was swept throughout the range, specified in Table 7.2.2, in both vertical and horizontal polarizations The worst test results (the lowest margins) were recorded in Table and shown in the associated plots Test procedure for substitution ERP measurements The test equipment was set up as shown in Figure and energized RF signal generator was set to the EUT carrier frequency and the RF output level was preliminary adjusted to produce the same field strength as it was measured from the EUT The test antenna height was swept throughout the specified in Table range to find maximum emission from substitution antenna and RF signal generator output was fine adjusted to produce the same field strength as it was measured from the EUT The ERP was calculated as a sum of signal generator output power in dbm and antenna gain in dbd reduced by cable loss in db The above procedure was performed in both horizontal and vertical polarizations of the test antenna The worst test results (the lowest margins) were recorded in Table Page 10 of 34

11 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Figure Setup for carrier field strength measurements 1.5 m Test antenna Ferrites Test distance Wooden table EUT Test antenna Height Flush mounted turn table Antenna height Auxilliary equipment Power supply Spectrum analyzer/ EMI receiver Photograph Setup for carrier field strength measurements Page 11 of 34

12 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Figure Setup for substitution ERP measurements 1.5 m Test antenna Test distance Ferrites Ferrites Substitution antenna Test antenna Flush mounted turn table Height Antenna height RF signal generator Spectrum analyzer/ EMI receiver Photograph Setup for substitution ERP measurements Page 12 of 34

13 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Table Transmitter carrier field strength ASSIGNED FREQUENCY RANGE: MHz TEST SITE: Semi anechoic chamber TEST DISTANCE: 3 m EUT HEIGHT: 1.5 m TEST ANTENNA HEIGHTS RANGE: m DETECTOR USED: Peak VIDEO BANDWIDTH: 300 khz TEST ANTENNA TYPE: Biconilog (30 MHz 1000 MHz) MODULATION: Unmodulated TRANSMITTER OUTPUT POWER SETTINGS: Maximum Frequency, MHz Field strength, db( V/m) Limit, db( V/m) Margin, db* RBW, khz Antenna polarization Antenna height, m Turn-table position**, degrees Vertical Vertical Vertical *- Margin = Field strength calculated field strength limit. **- EUT front panel refer to 0 degrees position of turntable. Table Transmitter carrier ERP TEST DISTANCE: 3 m SUBSTITUTION ANTENNA HEIGHT: 1.5 m TEST ANTENNA HEIGHTS RANGE: m DETECTOR USED: Peak VIDEO BANDWIDTH: 300 khz SUBSTITUTION ANTENNA TYPE: Tunable dipole (30 MHz 1000 MHz) Field Ant Cable Frequency, RBW, Antenna RF generator Limit, Margin, strength, gain, loss, ERP, dbm MHz khz polarization output, dbm dbm db* db( V/m) dbd db Verdict Vertical Pass Vertical Pass Vertical Pass *- Margin = ERP specification limit. Reference numbers of test equipment used HL 0415 HL 0521 HL 0604 HL 0614 HL 4278 HL 4353 Full description is given in Appendix A. Page 13 of 34

14 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Plot Transmitter carrier field strength at low frequency in vertical antenna polarization Plot Transmitter carrier field strength at low frequency in horizontal antenna polarization Page 14 of 34

15 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Plot Transmitter carrier field strength at mid frequency in vertical antenna polarization Plot Transmitter carrier field strength at mid frequency in horizontal antenna polarization Page 15 of 34

16 Test specification: Effective radiated power Test procedure: EN V2.4.1, Section May-16 Temperature: 23 ºC Air Pressure: 1010 hpa Relative Humidity: 45 % Power Supply: 12 VDC Remarks: Plot Transmitter carrier field strength at high frequency in vertical antenna polarization Plot Transmitter carrier field strength at high frequency in horizontal antenna polarization Page 16 of 34

17 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: 7.3 Transient power General This test was performed to measure the part of the total transmission output power that fell into adjacent spectrum due to switching the transmitter on and off during normal operation. Specification test limits are given in Table Operating Frequency MHz Table Transient power limit for NB signals Measured frequency MHz Absolute transient power limit μw dbm Exceeding of permissible frequency power versus continuous power level, db Channel separation: 12.5 khz Specified necessary bandwidth: 8.5 khz Test procedure The EUT was set up as shown in Figure 7.3.1, energized and its proper operation was checked Step 1. The EUT was adjusted to produce modulated RF signal of maximum available to the end user RF power The spectrum analyzer center frequency was adjusted to the transmitter carrier frequency, searched for maximum power within the band and was recorded as a reference channel RF power For narrowband equipment, the center frequency of the measuring receiver was set 60 khz above the beginning of the upper adjacent channel and 60 khz below the beginning of the lower adjacent channel The RF transmitter was triggered five times ON and OFF and the transient power was recorded The test was repeated at the rest of the test frequencies, transient power was measured and provided in Table and associated plots As the resulting maximum power level in step 1 was above the spurious domain limit, the second measurement step was performed Step 2. The EUT was set on continuous transmission. The above procedure was repeated with the same settings of the measuring receiver The measured power level was recorded for the measurement period identical to the one in Step 1 for the measurement receiver setting above and below the wanted channel The test was repeated at the rest of the test frequencies, transient power was measured and provided in Table and associated plots. Page 17 of 34

18 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Figure Setup for transient power measurements EUT EUT integral antenna Receive antenna Spectrum analyzer Photograph Setup for transient power measurements Page 18 of 34

19 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: ASSIGNED FREQUENCY RANGE: RESOLUTION BANDWIDTH: MODULATION: TRANSMITTER OUTPUT POWER SETTINGS: NOMINAL POWER VOLTAGE: OPERATING FREQUENCY: Table Transient power test results MHz 120 khz FM Maximum 12V MHz Exceeding of permissible db*** Measured frequency, Transient Limit, Margin, Continuous frequency power versus MHz power, dbm* dbm db** power, dbm continuous power level, Limit, db Verdict NA NA Pass NA NA Pass OPERATING FREQUENCY: MHz Exceeding of permissible db*** Measured frequency, Transient Limit, Margin, Continuous frequency power versus MHz power, dbm* dbm db** power, dbm continuous power level, Limit, db Verdict NA NA Pass NA NA Pass OPERATING FREQUENCY: MHz Measured frequency, MHz Transient power, dbm* Limit, dbm Margin, db** Continuous power, dbm Exceeding of permissible frequency power versus continuous power level, db*** Limit, db Verdict NA NA Pass NA NA Pass * - Absolute level of transient power. **- Margin = Specification limit measurement result. ***- Transient power continuous power. Reference numbers of test equipment used HL 2299 HL 3203 HL 3818 HL 4663 Full description is given in Appendix A. Page 19 of 34

20 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Plot Equivalent power at low frequency (reference level measurement) OPERATING FREQUENCY MHz ERP = 6.42 dbm An offset represents jig coupling factor and converts spectrum analyzer to an actual power reading. Plot Equivalent power at mid frequency (reference level measurement) OPERATING FREQUENCY MHz ERP = 6.46 dbm An offset represents jig coupling factor and converts spectrum analyzer to an actual power reading. Plot Equivalent power at high frequency (reference level measurement) OPERATING FREQUENCY MHz ERP = 6.68 dbm An offset represents jig coupling factor and converts spectrum analyzer to an actual power reading. Page 20 of 34

21 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Plot Transient power at 60 khz below the beginning of the lower adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= = MHz Plot Transient power at 60 khz above the beginning of the upper adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= = MHz Page 21 of 34

22 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Plot Transient power at 60 khz below the beginning of the lower adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= MHz MHz = MHz Plot Transient power at 60 khz above the beginning of the upper adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= MHz = MHz Page 22 of 34

23 Test specification: Transient power Test procedure: EN V2.4.1, Section May-16 Temperature: 24 ºC Air Pressure: 1009 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Plot Transient power at 60 khz below the beginning of the lower adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= = MHz Plot Transient power at 60 khz above the beginning of the upper adjacent channel OPERATING FREQUENCY MHz Transient power Continuous power F= = MHz Page 23 of 34

24 Test specification: Blocking Test procedure: EN V2.4.1, Section May-16 Temperature: 23.2 ºC Air Pressure: 1008 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: 8 Receiver parameters 8.1 Blocking General This test was performed to verify capability of the receiver to operate satisfactorily in the presence of unwanted signal (interference) at the frequencies other than adjacent channels or bands. Specification test limits are given in Table Table Blocking limit Receiver class Frequency offset from band edge Lmit, db 1 ± 2.0 MHz 84.0 A (Note 2) 1 ± 10.0 MHz 84.0 A (Note 2) 2 ± 2.0 MHz 35.0 A (Note 2) 2 ± 10.0 MHz 60.0 A (Note 2) 3 ± 2.0 MHz 24.0 A (Note 2) 3 ± 10.0 MHz 44.0 A (Note 2) Note 1: The limits apply also for the repeated tests in case of equipment using LBT or category 1 receivers, reduced by 13 db or 40 db, respectively, to account for the increased wanted signal level. Note 2: A = 10log (BW khz / 16 khz, where BW is the receiver bandwidth Test procedure The EUT was set up as shown in Figure 8.1.1, energized and its proper operation was checked The interference signal generator RF output power was turned off The wanted signal generator was adjusted to produce RF signal of normal modulation the receiver under test is intended to receive and the output level was slowly decreased until communication link lost The output power of the wanted signal generator was slowly increased to establish a signal level just sufficient to provide proper response of the receiver under test; however the level at the receiver input was not adjusted below the sensitivity limit recorded in Table The output power of the wanted signal generator was increased by 3 db above the receiver input level obtained in the item above The interference signal generator was adjusted to the upper frequency of the assigned band and output power was slowly increased until the performance degradation beyond the acceptable level was noticed The blocking (difference between the interference signal generator and the wanted signal generator levels) was recorded in Table Page 24 of 34

25 Test specification: Blocking Test procedure: EN V2.4.1, Section May-16 Temperature: 23.2 ºC Air Pressure: 1008 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Figure Setup for blocking test Interference signal generator RF combiner EUT Performance monitoring equipment Wanted signal generator Variable attenuator Spectrum analyzer Photograph Setup for blocking test Page 25 of 34

26 Test specification: Blocking Test procedure: EN V2.4.1, Section May-16 Temperature: 23.2 ºC Air Pressure: 1008 hpa Relative Humidity: 48 % Power Supply: 12 VDC Remarks: Table Blocking test results ASSIGNED FREQUENCY RANGE: MHz RECEIVER BANDWIDTH: 9 khz CHANNEL SPACING: 12.5 khz WANTED SIGNAL MODULATION: FM WANTED MODULATING SIGNAL: D-M2 BIT RATE: 1200 Mbps PERFOMANCE DEGRADATION THRESHOLD: Message acceptance ratio < 80 % INTERFERENCE SIGNAL MODULATION: Unmodulated Wanted Interference Sensitivity level, Wanted signal Interference frequency, frequency, dbm level, dbm* level, dbm MHz MHz Difference, db Limit, dbm Low frequency MHz Margin, db** Verdict Pass Pass Pass Pass Mid frequency MHz Pass Pass Pass Pass High frequency MHz Pass Pass Pass Pass * - Wanted signal level calculated as sensitivity level increased by 3 db or by 16 db ** - Margin = Specification limit - interference level. *** - Difference = Interference level Wanted signal level. Reference numbers of test equipment used HL 0539 HL 2013 HL 2015 HL 2299 HL 3300 HL 3474 HL 3787 HL 3788 HL 4273 HL 4580 Full description is given in Appendix A. Page 26 of 34

27 9 EUT photographs 9.1 External Photograph Front view Photograph Rear view Photograph Antenna connector Page 27 of 34

28 9.2 Internal Photograph Internal view Photograph Component side of the main PCB Photograph Print side of the main PCB Page 28 of 34

29 Photograph Component side of the RF PCB Photograph Print side of the RF PCB Photograph Label Page 29 of 34

30 10 APPENDIX A Test equipment and ancillaries used for tests HL No Description Manufacturer Model Ser. No. Last Cal./Check Due Cal./Check 0415 Cable, Coax, RF, RG-214, 12.3 m Hermon CC Dec Dec-16 Laboratories 0493 Temperature Chamber deg C Thermotron S-1.2 Mini- Max May May EMI Receiver (Spectrum Analyzer) with RF Hewlett Packard 8546A 3617A00319, 27-Oct Oct-16 filter section 9 khz-6.5 GHz 3448A Generator Signal, 10 khz GHz Marconi / Aug Aug-16 Instruments 0604 Antenna BiconiLog Log-Periodic/T Bow- TIE, MHz EMCO May May Antenna, Dipole, Tunable, MHz Electro-Metrics TDS Feb Feb Power Divider, GHz, 80 W Omni Spectra NA 01-Dec Dec Power Divider, GHz, 80 W Omni Spectra NA 01-Dec Dec Cable, 9.3 m Harbour Industries MIL 17/60- RG142 NA 06-Sep Sep Power Supply, 2 X 0-36VDC / 5A, 5VDC / 5A Horizon Electronics DHR3655D Jun Jun Cable 18 GHz, 1.5 m, SMA-SMA Gore NA Jan Jan EMC Analyzer, 9 khz to 3 GHz Agilent Technologies E7402A US Jan Jan Climatic chamber, -35 to 180ºC Angelantoni HYGROS Mar Mar Attenuator set, 0 to 81 db, 1 db step, DC- Agilent 8494B/8495 MY / 16-Aug Aug GHz Technologies B MY Multimeter Fluke 115C Jul Jul Precision Fixed Attenuator, 50 Ohm, 5 W, 20 db, DC to 18 GHz Mini-Circuits BW- S20W5+ NA 09-Mar Mar Cable, Coax, Microwave, DC-18 GHz, Gore GORE May May-16 SMA-SMA, 0.6 m Precision Fixed Attenuator, 50 Ohm, 5 W, Mini-Circuits BW- NA 01-Dec Dec db, DC to 18 GHz S10W Precision Fixed Attenuator, 50 Ohm, 5 W, 10 db, DC to 18 GHz Mini-Circuits BW- S10W5+ NA 01-Dec Dec PSA Series Spectrum Analyzer, 3 Hz- 44 GHz Agilent Technologies E4446A MY May May Test Cable, DC-18 GHz, 1.8 m, SMA/M - N/M Mini-Circuits CBL-6FT- SMNM May May Test Cable, DC-18 GHz, 4.6 m, N/M - N/M Mini-Circuits APC-15FT- NMNM+ 0755A 22-Nov Nov Low Loss Armored Test Cable, DC - 18 GHz, 6.2 m, N type-m/n type-m MegaPhase NC29-N1N Mar Mar Series Spectrum Analyzer 9 khz GHz, Agilent Technologies E4411B US Jan Jan Spectrum Analyzer, 9 khz GHz Hewlett Packard E7401A US Aug Aug-16 Page 30 of 34

31 11 APPENDIX B Test laboratory description Tests were performed at Hermon Laboratories Ltd., which is a fully independent, private, EMC, safety, environmental and telecommunication testing facility. Hermon Laboratories is listed by the Federal Communications Commission (USA) for all parts of Code of Federal Regulations 47 (CFR 47), Registration Numbers for OATS and for the anechoic chamber; by Industry Canada for electromagnetic emissions (file numbers IC 2186A-1 for OATS, IC 2186A-2 for anechoic chamber, IC 2186A-3 for fullanechoic chamber for RE measurements above 1 GHz), certified by VCCI, Japan (the registration numbers are R-808 for OATS, R-1082 for anechoic chamber, G-27 for full-anechoic chamber for RE measurements above 1 GHz, C-845 for conducted emissions site, T-1606 for conducted emissions at telecommunication ports), has a status of a Telefication - Listed Testing Laboratory, Certificate No. L138/00. The laboratory is accredited by American Association for Laboratory Accreditation (USA) according to ISO/IEC for electromagnetic compatibility, product safety, telecommunications testing and environmental simulation (for exact scope please refer to Certificate No ). The FCC Designation Number is US1003. Address: P.O. Box 23, Binyamina 30500, Israel. Telephone: Fax: mail@hermonlabs.com website: Person for contact: Mr. Alex Usoskin, CEO. Page 31 of 34

32 12 APPENDIX C Abbreviations and acronyms A AC AVRG BB cm db dbm db( V) db( V/m) DC EMC EMI EN EUT GHz GND H HL Hz k khz kv L m MHz min mm ms s NA NB OATS QP PM PS RE RF rms s V W ampere alternating current average (detector) broad band centimeter decibel decibel referred to one milliwatt decibel referred to one microvolt decibel referred to one microvolt per meter direct current electromagnetic compatibility electromagnetic interference European Norm equipment under test gigahertz ground height Hermon laboratories hertz kilo kilohertz kilovolt length meter megahertz minute millimeter millisecond microsecond not applicable narrow band open area test site Ohm quasi-peak pulse modulation power supply radiated emission radio frequency root mean square second volt width Page 32 of 34

33 13 APPENDIX D Test equipment correction factors Antenna factor, Biconilog antenna EMCO, model 3141, serial number 1011 Frequency, MHz Antenna Factor, db(1/m) Frequency, MHz Antenna Factor, db(1/m) Dipole antenna factor, Electro-Metrics, model TDS-30-1, serial number 334 No. Parameter Frequency, MHz Measured, db/m Manufacturer's, db/m Deviation, db Tolerance, db Uncertainty, db ±1.5 ± ±1.5 ± ±1.5 ± ±1.5 ± ±1.5 ±0.6 Antenna factor ±1.5 ± ±1.5 ± ±1.5 ± ±1.5 ± ±1.5 ±0.6 Antenna factor in db(1/m) is to be added to receiver meter reading in db( V) to convert it into field intensity in db( V/m). Page 33 of 34

34 14 APPENDIX E Measurement uncertainties Expanded uncertainty at 95% confidence in Hermon Labs EMC measurements Test description Expanded uncertainty Frequency error 5 30 MHz MHz MHz Carrier power conducted at antenna connector Carrier power radiated (ERP), substitution method Frequency deviation Adjacent channel power Range of modulation bandwidth Spurious emissions conducted at RF antenna connector 6.1 Hz (1.22 ppm) 50.5 Hz (1.68 ppm) 168 Hz (0.56 ppm) 1.7 db 4.5 db 7.0% 1.3 db 8.0% 9 khz to 2.9 GHz: 2.6 db 2.9 GHz to 6.46 GHz: 3.5 db 6.46 GHz to 13.2 GHz: 4.3 db 13.2 GHz to 22.0 GHz: 5.0 db 22.0 GHz to 26.8 GHz: 5.5 db 26.8 GHz to 40.0 GHz: 4.8 db 4.5 db Spurious emissions radiated, 30 MHz 40 GHz, substitution method Duty cycle, timing (Tx ON / OFF) and average 1.0 % factor measurements Hermon Laboratories is accredited by A2LA for calibration according to present requirements of ISO/IEC and NCSL Z The accreditation is granted to perform calibration of parameters that are listed in the Scope of Hermon Laboratories Accreditation. Hermon Laboratories calibrates its reference and transfer standards by calibration laboratories accredited to ISO/IEC by a mutually recognized Accreditation Body or by a recognized national metrology institute. All reference and transfer standards used in the calibration system are traceable to national or international standards. In-house calibration of all test and measurement equipment is performed on a regular basis according to Hermon Laboratories calibration procedures, manufacturer calibration/verification procedures or procedures defined in the relevant standards. The Hermon Laboratories test and measurement equipment is calibrated within the tolerances specified by the manufacturers and/or by the relevant standards. 15 APPENDIX F Specification references EN V2.4.1: 2012 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short Range Devices (SRD); Radio equipment to be used in the 25 MHz to 1000 MHz frequency range with power levels ranging up to 500 mw; Part 1: Technical characteristics and test methods EN V2.4.1: 2012 Electromagnetic compatibility and Radio spectrum Matters (ERM); Short Range Devices (SRD); Radio equipment to be used in the 25 MHz to 1000 MHz frequency range with power levels ranging up to 500 mw; Part 3: Harmonized EN covering essential requirements under article 3.2 of the R&TTE Directive ERC REC ERC Recommendation 70-03: 2015 END OF DOCUMENT Page 34 of 34

Electrical FOR:

Electrical FOR: 839.01 Electrical Hermon Laboratories Ltd. Harakevet Industrial Zone, Binyamina 30500, Israel Tel. +972-4-6288001 Fax. +972-4-6288277 E-mail: mail@hermonlabs.com TEST REPORT ACCORDING TO: EN 300 113-2

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