FCC PART & IC RSS GHz FHSS TEST REPORT

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1 FCC PART & IC RSS GHz FHSS TEST REPORT 849 NW State Road 45 Newberry, FL USA Ph.: or Fax: Website: Applicant COBRA ELECTRONICS CORPORATION 6500 WEST CORTLAND STREET Address CHICAGO IL USA FCC ID BBO29BT2K17 IC Model Number RB106 Product Description BLUE TOOTH MODULE Date Sample Received 9/26/2016 Final Test Date 9/29/2016 Tested By Tim Royer Approved By Cory Leverett Report Version Description Issue Date Number Number 1949AUT16TestReport_ Rev1 Initial Issue 9/30/2016 THE ATTACHED REPORT SHALL NOT BE REPRODUCED EXCEPT IN FULL WITHOUT THE WRITTEN APPROVAL OF TIMCO ENGINEERING, INC.

2 TABLE OF CONTENTS GENERAL INFORMATION... 5 EUT Specification... 5 Test Supporting Equipment... 5 RESULTS SUMMARY... 6 OCCUPIED BANDWIDTH db Occupied Bandwidth Measurement Table % Occupied Bandwidth Measurement Table db OBW Mode 1 Low End of Band Plot db OBW Mode 1 Middle of Band Plot db OBW Mode 1 High end of Band Plot db OBW Mode 2 Low End of Band Plot db OBW Mode 2 Middle of Band Plot db OBW Mode 2 High end of Band Plot db OBW Mode 3 Low End of Band Plot db OBW Mode 3 Middle of Band Plot db OBW Mode 3 High end of Band Plot % OBW Mode 1 Low End of Band Plot % OBW Mode 1 Middle of Band Plot % OBW Mode 1 High end of Band Plot % OBW Mode 2 Low End of Band Plot % OBW Mode 2 Middle of Band Plot % OBW Mode 2 High end of Band Plot % OBW Mode 3 Low End of Band Plot % OBW Mode 3 Middle of Band Plot % OBW Mode 3 High end of Band Plot FHSS REQUIREMENTS FHSS Channel Separation Measurement Table Number of Hopping Channels Measurement Table Hopping Channel Occupancy Time Measurement Table FHSS Hopping Sequence and Receiver Bandwidth Verification Mode 1 Channel Separation Plot Mode 2 Channel Separation Plot Mode 3 Channel Separation Plot All Modes Number of Hopping Channels Plot All Modes Channel Occupancy Time Plot All Modes Channel Occupancy Time Plot PEAK POWER OUTPUT Mode 1 Peak Power Output Measurement Table Mode 2 Peak Power Output Measurement Table Mode 3 Peak Power Output Measurement Table Mode 1 Low End of Band Peak Conducted Power Plot Mode 1 Middle of Band Peak Conducted Power Plot Mode 1 High End of Band Peak Conducted Power Plot Mode 2 Low End of Band Peak Conducted Power Plot Mode 2 Middle of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 2 of 73

3 Mode 2 High End of Band Peak Conducted Power Plot Mode 3 Low End of Band Peak Conducted Power Plot Mode 3 Middle of Band Peak Conducted Power Plot Mode 3 High End of Band Peak Conducted Power Plot BANDEDGE Mode 1 Lower Bandedge Measurement Table Mode 2 Lower Bandedge Measurement Table Mode 3 Lower Bandedge Measurement Table Mode 1 Upper Bandedge Measurement Table Mode 2 Upper Bandedge Measurement Table Mode 3 Upper Bandedge Measurement Table Mode 1 Low End of Band Lower Band Edge Plot Mode 1 Hopping Lower Band Edge Plot Mode 2 Low End of Band Lower Band Edge Plot Mode 2 Hopping Lower Band Edge Plot Mode 3 Low End of Band Lower Band Edge Plot Mode 3 Hopping Lower Band Edge Plot Mode 1 High End of Band Upper Band Edge Plot Mode 1 Hopping Upper Band Edge Plot Mode 2 High End of Band Upper Band Edge Plot Mode 2 Hopping Upper Band Edge Plot Mode 3 High End of Band Upper Band Edge Plot Mode 3 Hopping Upper Band Edge Plot ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 1 Low End of Band 30 MHz 25 GHz Plot Mode 1 Middle of Band 30 MHz 25 GHz Plot Mode 1 High End of Band 30 MHz 25 GHz Plot Mode 2 Low End of Band 30 MHz 25 GHz Plot Mode 2 Middle of Band 30 MHz 25 GHz Plot Mode 2 High End of Band 30 MHz 25 GHz Plot Mode 3 Low End of Band 30 MHz 25 GHz Plot Mode 3 Middle of Band 30 MHz 25 GHz Plot Mode 3 High End of Band 30 MHz 25 GHz Plot RADIATED SPURIOUS EMISSIONS Mode 1 Restricted Band Emissions Measurement Table EMC EQUIPMENT LIST Report: 1949AUT16TestReport_Rev1 Page 3 of 73

4 GENERAL REMARKS The attached report shall not be reproduced except in full without the written permission of Timco Engineering Inc. Summary The device under test does: Fulfill the general approval requirements as identified in this test report and was selected by the customer. Not fulfill the general approval requirements as identified in this test report Attestations This equipment has been tested in accordance with the standards identified in this test report. To the best of my knowledge and belief, these tests were performed using the measurement procedures described in this report. All instrumentation and accessories used to test products for compliance to the indicated standards are calibrated regularly in accordance with ISO requirements. I attest that the necessary measurements were made at: Timco Engineering Inc. 849 NW State Road 45 Newberry, FL Tested by: Name and Title: Tim Royer Project Manager/Testing Technician Date: 9/29/2016 Reviewed and approved by: Name and Title: Cory Leverett, Engineering Technician Date:9/30/2016 Report: 1949AUT16TestReport_Rev1 Page 4 of 73

5 GENERAL INFORMATION EUT Specification Regulatory Standards FCC Title 47 CFR Part IC RSS-247 Issue 1 & RSS-GEN Issue 4 FCC ID BBO29BT2K17 IC Model RB106 EUT Description BLUE TOOTH MODULE Modulation Types Mode 1: DH5 ; Basic Data Rate 1 Mbps Operating Frequency TX: MHz EUT Power Source Mode 2: 2-DH5; Enhanced Data Rate 2 Mbps Mode 3: 3-DH5; Enhanced Data Rate 3 Mbps Vac/50 60Hz DC Power 13.6 VDC Nominal Battery Operated Exclusively Test Item Prototype Pre- Production RX: MHz Production Type of Equipment Fixed Mobile Portable Antenna Connector None (Temporary Connector Provided for Testing) Antenna Integral PCB Chip Test Facility Test Conditions Measurement Standard Test Exercise Test Supporting Equipment Timco Engineering Inc. located at 849 NW State Road 45 Newberry, FL USA. Temperature: 24-26ºC Relative humidity: 50-65% ANSI C ANSI C FCC DA Engineering Software was used to enable the modes of operation; all modes of modulation were tested. Device Manufacturer Model S/N Supplied By Used For CB Radio Cobra 29LX MAX 2 Applicant Host for Module Report: 1949AUT16TestReport_Rev1 Page 5 of 73

6 RESULTS SUMMARY FCC Rule Part No. IC Standard Ref. Requirement Test Item Result (c) RSS-GEN 6.6 Occupied Bandwidth 99% Bandwidth Pass 20 db Bandwidth Pass Channel Separation Pass Hopping Sequence Pass (a,1) RSS FHSS Requirements System Receiver Bandwidth Number of Hopping Channels Hopping Channel Occupancy Time Pass Pass Pass (b,1) & (b,4) RSS Peak Power Output Peak Power Output (Pconducted) Antenna Gain (EIRP) Pass Pass (d) RSS Unwanted Emissions Bandedge Radiated Spurious Pass Pass Notes: Report: 1949AUT16TestReport_Rev1 Page 6 of 73

7 OCCUPIED BANDWIDTH Rules Part No.: FCC (C), IC RSS Requirements: Test Method: Setup: 20 db and 99% emission bandwidth reporting only, measurement is also used to determine limits for other requirements of FHSS transmitters. ANSI C Occupied bandwidth-20db Relative procedure ANSI C Occupied bandwidth-99% power procedure 20 db Occupied Bandwidth Measurement Table Tuned Frequency (MHz) Mode 1 20 db BW (MHz) Mode 2 20 db BW (MHz) Mode 3 20 db BW (MHz) % Occupied Bandwidth Measurement Table Tuned Frequency (MHz) Mode 1 99% BW (MHz) Mode 2 99% BW (MHz) Mode 3 99% BW (MHz) Report: 1949AUT16TestReport_Rev1 Page 7 of 73

8 OCCUPIED BANDWIDTH 20 db OBW Mode 1 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 8 of 73

9 OCCUPIED BANDWIDTH 20 db OBW Mode 1 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 9 of 73

10 OCCUPIED BANDWIDTH 20 db OBW Mode 1 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 10 of 73

11 OCCUPIED BANDWIDTH 20 db OBW Mode 2 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 11 of 73

12 OCCUPIED BANDWIDTH 20 db OBW Mode 2 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 12 of 73

13 OCCUPIED BANDWIDTH 20 db OBW Mode 2 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 13 of 73

14 OCCUPIED BANDWIDTH 20 db OBW Mode 3 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 14 of 73

15 OCCUPIED BANDWIDTH 20 db OBW Mode 3 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 15 of 73

16 OCCUPIED BANDWIDTH 20 db OBW Mode 3 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 16 of 73

17 OCCUPIED BANDWIDTH 99% OBW Mode 1 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 17 of 73

18 OCCUPIED BANDWIDTH 99% OBW Mode 1 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 18 of 73

19 OCCUPIED BANDWIDTH 99% OBW Mode 1 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 19 of 73

20 OCCUPIED BANDWIDTH 99% OBW Mode 2 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 20 of 73

21 OCCUPIED BANDWIDTH 99% OBW Mode 2 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 21 of 73

22 OCCUPIED BANDWIDTH 99% OBW Mode 2 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 22 of 73

23 OCCUPIED BANDWIDTH 99% OBW Mode 3 Low End of Band Plot Report: 1949AUT16TestReport_Rev1 Page 23 of 73

24 OCCUPIED BANDWIDTH 99% OBW Mode 3 Middle of Band Plot Report: 1949AUT16TestReport_Rev1 Page 24 of 73

25 OCCUPIED BANDWIDTH 99% OBW Mode 3 High end of Band Plot Report: 1949AUT16TestReport_Rev1 Page 25 of 73

26 FHSS REQUIREMENTS Rules Part No.: FCC (a) (1), IC RSS , 5.1.2, Requirements: Channel Separation FHSs operating in the band MHz may have hopping channel carrier frequencies that are separated by 25 khz or two thirds of the -20 db bandwidth of the hopping channel, whichever is greater, provided that the systems operate with an output power no greater than W. Dwell Time and Number of Hopping Channels FHSs operating in the band MHz shall use at least 15 hopping channels. The average time of occupancy on any channel shall not be greater than 0.4 seconds within a period of 0.4 seconds, multiplied by the number of hopping channels employed. Transmissions on particular hopping frequencies may be avoided or suppressed provided that at least 15 hopping channels are used. Hopping Sequence The hop set shall be such that the near-term distribution of frequencies appears random, with sequential hops randomly distributed in both direction and magnitude of change in the hop set, whereas the long-term distribution appears evenly distributed. Receiver Input Bandwidth The system receivers shall have input bandwidths that match the hopping channel bandwidths of their corresponding transmitters and shall shift frequencies in synchronization with the transmitted signals. Test Method: ANSI C Carrier frequency separation ANSI C Number of hopping frequencies ANSI C Time of Occupancy DA Pseudorandom Frequency Hopping Sequence DA Equal Hopping Frequency Use DA System Receiver Input Bandwidth Setup: Report: 1949AUT16TestReport_Rev1 Page 26 of 73

27 FHSS REQUIREMENTS FHSS Channel Separation Measurement Table Mode Separation (KHz) (2/3 of 20 dbbw) Limit (KHz) Pass / Fail Pass Pass Pass Number of Hopping Channels Measurement Table Mode Number of channels Limit Pass / Fail Pass Pass Pass Hopping Channel Occupancy Time Measurement Table Mode Dwell Time (Sec) Limit (sec) Pass / Fail Pass Pass Pass FHSS Hopping Sequence and Receiver Bandwidth Verification Requirement Supporting Documentation Pass / Fail Pseudorandom Hopping Sequence Equal Frequency Use Receiver Input Bandwidth Operational Description provided by applicant Report: 1949AUT16TestReport_Rev1 Page 27 of 73 Pass Pass Pass

28 FHSS REQUIREMENTS Mode 1 Channel Separation Plot Report: 1949AUT16TestReport_Rev1 Page 28 of 73

29 FHSS REQUIREMENTS Mode 2 Channel Separation Plot Report: 1949AUT16TestReport_Rev1 Page 29 of 73

30 FHSS REQUIREMENTS Mode 3 Channel Separation Plot Report: 1949AUT16TestReport_Rev1 Page 30 of 73

31 FHSS REQUIREMENTS All Modes Number of Hopping Channels Plot Report: 1949AUT16TestReport_Rev1 Page 31 of 73

32 FHSS REQUIREMENTS All Modes Channel Occupancy Time Plot 1 Report: 1949AUT16TestReport_Rev1 Page 32 of 73

33 FHSS REQUIREMENTS All Modes Channel Occupancy Time Plot 2 Report: 1949AUT16TestReport_Rev1 Page 33 of 73

34 PEAK POWER OUTPUT Rules Part No.: FCC (b) (1) (4), IC RSS Requirements: FHSS Using Hopset 75 Channels For FHSs operating in the band MHz, the maximum peak conducted output power shall not exceed 1.0 W and the e.i.r.p. shall not exceed 4 W if the hop set uses 75 or more hopping channels. Test Method: ANSI C Output Power test procedure for FHSS Setup: Report: 1949AUT16TestReport_Rev1 Page 34 of 73

35 PEAK POWER OUTPUT Mode 1 Peak Power Output Measurement Table Peak Conducted Power Output Measurement Tuned Frequency (MHz) PConducted (dbm) PConducted (W) Limit (W) Margin (W) Peak EIRP Power Output Calculation Tuned Frequency (MHz) PConducted (dbm) EIRP (W) Limit (W) Margin (W) Mode 2 Peak Power Output Measurement Table Peak Conducted Power Output Measurement Tuned Frequency (MHz) PConducted (dbm) PConducted (W) Limit (W) Margin (W) Peak EIRP Power Output Calculation Tuned PConducted EIRP Frequency (dbm) (W) (MHz) Limit (W) Margin (W) Report: 1949AUT16TestReport_Rev1 Page 35 of 73

36 PEAK POWER OUTPUT Mode 3 Peak Power Output Measurement Table Peak Conducted Power Output Measurement Tuned Frequency (MHz) PConducted (dbm) PConducted (W) Limit (W) Margin (W) Peak EIRP Power Output Calculation Tuned PConducted EIRP Frequency (dbm) (W) (MHz) Limit (W) Margin (W) Report: 1949AUT16TestReport_Rev1 Page 36 of 73

37 PEAK POWER OUTPUT Mode 1 Low End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 37 of 73

38 PEAK POWER OUTPUT Mode 1 Middle of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 38 of 73

39 PEAK POWER OUTPUT Mode 1 High End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 39 of 73

40 PEAK POWER OUTPUT Mode 2 Low End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 40 of 73

41 PEAK POWER OUTPUT Mode 2 Middle of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 41 of 73

42 PEAK POWER OUTPUT Mode 2 High End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 42 of 73

43 PEAK POWER OUTPUT Mode 3 Low End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 43 of 73

44 PEAK POWER OUTPUT Mode 3 Middle of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 44 of 73

45 PEAK POWER OUTPUT Mode 3 High End of Band Peak Conducted Power Plot Report: 1949AUT16TestReport_Rev1 Page 45 of 73

46 BANDEDGE Rule Part No.: FCC (d), IC RSS Requirements: Test Method: Emissions must be at least 20dB down from the highest emission level Within the authorized band as measured with a 100 khz RBW. ANSI C Authorized band-edge relative method (lower bandedge) ANSI C Marker Delta Method (upper restricted bandedge) Setup: Mode 1 Lower Bandedge Measurement Table Bandedge Lower Tuned Frequency (MHz) Measured Level (dbc) Limit (dbc) Margin (db) Hopping Mode 2 Lower Bandedge Measurement Table Bandedge Lower Tuned Frequency (MHz) Measured Level (dbc) Limit (dbc) Margin (db) Hopping Mode 3 Lower Bandedge Measurement Table Bandedge Lower Tuned Frequency (MHz) Measured Level (dbc) Limit (dbc) Margin (db) Hopping Results Meet Requirements Report: 1949AUT16TestReport_Rev1 Page 46 of 73

47 BANDEDGE Tuned Frequency (MHz) 2480 Hopping Tuned Frequency (MHz) 2480 Hopping Tuned Frequency (MHz) 2480 Hopping Detector Mode 1 Upper Bandedge Measurement Table Field Strength of Carrier (dbuv/m) Emission Level Below Carrier (dbc) Field Strength of Emission (dbuv/m) Emission Limit (dbuv/m) Margin (db) Peak Average Peak Average Detector Mode 2 Upper Bandedge Measurement Table Field Strength of Carrier (dbuv/m) Emission Level Below Carrier (dbc) Field Strength of Emission (dbuv/m) Emission Limit (dbuv/m) Margin (db) Peak Average Peak Average Detector Mode 3 Upper Bandedge Measurement Table Field Strength of Carrier (dbuv/m) Emission Level Below Carrier (dbc) Field Strength of Emission (dbuv/m) Emission Limit (dbuv/m) Margin (db) Peak Average Peak Average Report: 1949AUT16TestReport_Rev1 Page 47 of 73

48 BANDEDGE Mode 1 Low End of Band Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 48 of 73

49 BANDEDGE Mode 1 Hopping Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 49 of 73

50 BANDEDGE Mode 2 Low End of Band Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 50 of 73

51 BANDEDGE Mode 2 Hopping Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 51 of 73

52 BANDEDGE Mode 3 Low End of Band Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 52 of 73

53 BANDEDGE Mode 3 Hopping Lower Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 53 of 73

54 BANDEDGE Mode 1 High End of Band Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 54 of 73

55 BANDEDGE Mode 1 Hopping Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 55 of 73

56 BANDEDGE Mode 2 High End of Band Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 56 of 73

57 BANDEDGE Mode 2 Hopping Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 57 of 73

58 BANDEDGE Mode 3 High End of Band Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 58 of 73

59 BANDEDGE Mode 3 Hopping Upper Band Edge Plot Report: 1949AUT16TestReport_Rev1 Page 59 of 73

60 ANTENNA CONDUCTED SPURIOUS EMISSIONS Rules Part No.: FCC part (d) & , IC RSS & RSS GEN 8.9 Requirements: Test Method: In any 100 khz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 20 db below ANSI C General Information ANSI C Reference level measurement ANSI C Emission level measurement Setup: Report: 1949AUT16TestReport_Rev1 Page 60 of 73

61 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 1 Low End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 61 of 73

62 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 1 Middle of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 62 of 73

63 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 1 High End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 63 of 73

64 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 2 Low End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 64 of 73

65 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 2 Middle of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 65 of 73

66 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 2 High End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 66 of 73

67 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 3 Low End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 67 of 73

68 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 3 Middle of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 68 of 73

69 ANTENNA CONDUCTED SPURIOUS EMISSIONS Mode 3 High End of Band 30 MHz 25 GHz Plot Report: 1949AUT16TestReport_Rev1 Page 69 of 73

70 RADIATED SPURIOUS EMISSIONS Rules Part No.: FCC part (d) & , IC RSS & RSS GEN 8.9 Requirements: Emissions found in restricted bands the levels must comply with the general limits found in FCC part Frequency Limits FCC Part , IC RSS-GEN to 490 khz 2400/F (khz) 300 meters 490 to 1705 khz 24000/F (khz) 30 meters 1705 khz to 30 MHz meters meters meters meters Above meters Test Method: ANSI C63.4 Annex D Validation of radiated emissions standard test sites ANSI C Common requirements radiated emissions ANSI C Emissions below 30 MHz ANSI C Emissions between 30 & 1000 MHz ANSI C Emissions above 1 GHz Field Strength Calculation: The field strength at 3m was established by adding the meter reading of the spectrum analyzer (which is set to read in units of dbµv) to the antenna correction factor supplied by the antenna manufacturer plus the coax loss. The antenna correction factors are stated in terms of db. The gain of the preselector was accounted for in the spectrum analyzer meter reading. Example: Freq (MHz) Meter Reading + ACF + CL = FS dbµv db = m Report: 1949AUT16TestReport_Rev1 Page 70 of 73

71 RADIATED SPURIOUS EMISSIONS Setup: Emissions below 30 MHz Emissions MHz Emissions above 1 GHz Report: 1949AUT16TestReport_Rev1 Page 71 of 73

72 RADIATED SPURIOUS EMISSIONS Notes: The EUT was checked in three orthogonal planes as required, a setup photo is provided to show the orientation of the worst case position. The mode producing the worst case power output and conducted emissions was selected for testing. The spectrum was measured from 9 KHz to 25 GHz, emissions discovered in bands listed in were compared with the limit of and only emissions found within 20dB of the limit are reported. Mode 1 Restricted Band Emissions Measurement Table Tuned Frequency (MHz) Emission Frequency (MHz) Detector (QP/PK/AV) Meter Reading (dbuv) Ant. Polarity (H/V) Coax Loss (db) Correction Factor (db/m) Field Strength (dbuv/m) Margin (db) Hopping PK 11.8 V Hopping PK 15.1 H Hopping 1,015.2 PK 24.0 V Hopping 1,015.2 AV 2.8 V Hopping 1,425.8 PK 26.2 H Hopping 1,425.8 AV 5.0 H Hopping 1,472.9 PK 22.3 V Hopping 1,472.9 AV 1.1 V Hopping 1,920.5 PK 26.5 H Hopping 1,920.5 AV 5.3 H , ,804.0 AV -1.8 V , ,804.0 PK 9.1 V , ,882.0 AV 5.2 V , ,882.0 PK 10.5 V , ,323.0 AV 4.9 H , ,323.0 PK 7.3 H , ,960.0 PK 8.6 V , ,960.0 AV -2.1 V Results Meet Requirements Report: 1949AUT16TestReport_Rev1 Page 72 of 73

73 EMC EQUIPMENT LIST Device Manufacturer Model Serial Cal/Char Due Date Number Date Attenuator #27 - K Narda (#27) 06/25/15 06/25/17 6dB 2W DC-40 DC Power Supply HP 6286A 1744A03842 NA NA Antenna: Biconical Eaton /14/15 07/14/ Chamber Antenna: Log- Electro-Metrics LPA /14/15 07/14/17 Periodic 1122 CHAMBER Panashield 3M N/A 04/25/16 12/31/17 Antenna: Double- Ridged Horn/ETS Horn 2 ETS-Lindgren Chamber /25/15 02/25/17 Band Reject Filter GHz Rohde & Schwarz ESIB /16/16 08/16/18 Timco N/A Version 4.0 NA NA ETS-Lindgren /18/15 11/18/17 Micro-Coax Rohde & Schwarz EMI Test Receiver R & S ESIB 40 Screen Room Software: Field Strength Program Antenna: Active Loop Coaxial Cable #103 - KMKM Aqua EMI Test Receiver R & S ESU 40 Chamber Coaxial Cable - KMKM Blue Coaxial Cable - Chamber 3 cable set (Primary) UFB142A (#103) 08/05/15 08/05/17 ESU /01/16 04/01/18 Sucoflex NA KMKM Micro-Coax Chamber 3 cable set (Primary) KMKM ; KMKM ; KFKF NA NA 08/08/16 08/08/18 Micro-Tronics BRM G042 7/15/16 7/15/18 Antenna: Double- EMCO /18/15 11/18/17 Ridged Horn GHz Pre-amp RF-LAMBDA RLNA00M45GA NA 01/04/16 01/04/18 *EMI RECEIVER SOFTWARE VERSION The receiver firmware used was version 4.43 Service Pack 3 Report: 1949AUT16TestReport_Rev1 Page 73 of 73

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