TEST REPORT. Report Number: MPK-003B Project Number: G October 20, 2017

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1 TEST REPORT Report Number: MPK-3B Project Number: G October 2, 217 Testing performed on the FIBERGATEWAY Model Number: GR24BG FCC ID: 2ACJF-FGW-GR24BG to FCC Part 15, Subpart E For Altice Labs, SA Test Performed by: Intertek 1365 Adams Court Menlo Park, CA 9425 USA Test Authorized by: Altice Labs, SA Rua Eng. Ferreira Pinto Basto Aveiro, Portugal Prepared by: Date: October 2, 217 Minh Ly Reviewed by: Date: October 2, 217 Krishna K Vemuri This report is for the exclusive use of Intertek's Client and is provided pursuant to the agreement between Intertek and its Client. Intertek's responsibility and liability are limited to the terms and conditions of the agreement. Intertek assumes no liability to any party, other than to the Client in accordance with the agreement, for any loss, expense or damage occasioned by the use of this report. Only the Client is authorized to copy or distribute this report and then only in its entirety. Any use of the Intertek name or one of its marks for the sale or advertisement of the tested material, product or service must first be approved in writing by Intertek. The observations and test results in this report are relevant only to the sample tested. This report by itself does not imply that the material, product, or service is or has ever been under an Intertek certification program. This report must not be used to claim product endorsement by A2LA, NIST nor any other agency of the U.S. Government. File: MPK-3B Page 1 of 86

2 VERIFICATION OF COMPLIANCE Report No MPK-3B Verification is hereby issued to the named APPLICANT and is VALID ONLY for the equipment identified hereon for use under the rules and regulations listed below. Equipment Under Test: Trade Name: Model No.: Applicant: Contact: Address: Country FIBERGATEWAY Altice Labs, SA GR24BG Altice Labs, SA Ricardo Cunha Rua Eng. Ferreira Pinto Basto Aveiro Portugal Tel. Number: Applicable Regulation: FCC Part 15, Subpart E Date of Test: September 2 October 11, 217 We attest to the accuracy of this report: Minh Ly Project Engineer Anderson Soungpanya Project Engineer Krishna K Vemuri Engineering Team Lead File: MPK-3B Page 2 of 86

3 TABLE OF CONTENTS 1. Introduction Summary of Tests General Description Product Description Related Submittal(s) Grants Test Methodology Test Facility Measurement Uncertainty System Test Configuration Support Equipment Block Diagram of Test Setup Justification Mode of Operation During Test Modifications required for Compliance Additions, deviations and exclusions from standards Measurement Results Emission Bandwidth and 99% Occupied Bandwidth Procedure Test Result Maximum Conducted Output Power Requirement Procedure Test Results Peak Power Spectral Density Requirement Procedure Test Result Frequency stability Requirement Procedure Result Transmitter Radiated Emissions Requirement Procedure Field Strength Calculation Test Results Test setup photographs List of Test Equipment Document History File: MPK-3B Page 3 of 86

4 1. Introduction 1.1 Summary of Tests Test Reference Result FCC 26 db Emission Band width and 15.47(a)(1)(2)(3) Complies 99% Occupied Bandwidth Conducted Output Power 15.47(a)(1)(2)(3) Complies Peak Power Spectral Density 15.47(a)(1)(2)(3) Complies Undesirable Emissions 15.47(b)(1-8) Complies Transmitter Radiated Emissions 15.47(b)(1-8) Complies 15.29, Frequency stability 15.47(g) Complies Antenna Requirement Complies (Unique Connector & Internal Antenna) AC Line Conducted Emission Complies* *See Report MPK-2B for compliance data EUT receive date: September 18, 217 EUT receive condition: Test start date: September 2, 217 Test completion date: October 11, 217 The test results in this report pertain only to the item tested. The pre-production version of the EUT was received in good condition with no apparent damage. As declared by the Applicant, it is identical to the production units. File: MPK-3B Page 4 of 86

5 2. General Description 2.1 Product Description Altice Labs, SA supplied the following description of the EUT: The FiberGateway GR24BG is an ONT (Optical Network Terminal) solution based on Rec. ITU-T G.984.x that supports triple play services (high speed internet, voice and video) which are deployed over Ethernet and Wi-Fi interfaces. GEM (GPON encapsulation method) is employed to adapt technologies. This system can be used in triple play service delivery network solutions. It includes Home Gateway functionalities, 4 GbE ports and Wi-Fi Dual-Band Concurrent (2.4 GHz bgn 4x4 + 5 GHz anac 4x4) for internet access and IPTV, 2 FXS ports for voice and 1 USB 2. port. The information about the 5GHz radio, installed in the model GR24BG, is presented below. Applicant Altice Labs, SA Model No. GR24BG FCC ID 2ACJF-FGW-GR24BG Rated RF Output 82.11a: 28.8 dbm 82.11n 2MHz: dbm 82.11n 4MHz: dbm 82.11ac 8MHz: dbm Frequency Range U-NII 3: MHz Type of modulation OFDM Antenna(s) & Gain Internal Antenna, 4.95 dbi calculated peak gain Ant DB1: 4.8dBi, Vertical Ant 1 DB2: 3.4dBi, Horizontal Ant 2 DB3: 4.dBi, Horizontal Ant 3 DB4: 5.1dBi, Vertical Manufacturer Name & Altice Labs, SA Address Rua Eng. Ferreira Pinto Basto Aveiro Portugal The EUT supports a wide range of data rates in the U-NII 3 band: IEEE 82.11a IEEE 82.11n 2MHz IEEE 82.11n 4MHz IEEE 82.11ac 2MHz IEEE 82.11ac 4MHz IEEE 82.11ac 8MHz File: MPK-3B Page 5 of 86

6 2.2 Related Submittal(s) Grants None. 2.3 Test Methodology Antenna conducted measurements were performed according to the FCC documents Guidelines for Compliance Testing of Unlicensed National Information Infrastructure (U-NII) Devices Part 15, Subpart E (78933 D2 General U-NII Test Procedures New Rules v1r4, and D1 Multiple Transmitter Output v2r1). Both AC mains line-conducted and radiated emissions measurements were performed according to the procedures in ANSI C63.4. Radiated tests were performed at an antenna to EUT distance of 3 meters, unless stated otherwise in the "Data Sheet" of this Application. All other measurements were made in accordance with the procedures in part 2 of CFR Test Facility The test site used to collect the radiated data is site 1 (1-m semi-anechoic chamber). This test facility and site measurement data have been fully placed on file with the FCC, IC and A2LA accredited. 2.5 Measurement Uncertainty Compliance with the limits was based on the results of the measurements and doesn t take into account the measurement uncertainty. Estimated Measurement Uncertainty Measurement Expanded Uncertainty (k=2).15 MHz 1 GHz 1 GHz 6 GHz > 6 GHz RF Power and Power Density antenna conducted 1.1 db 1.5 db Unwanted emissions - antenna conducted 1.2 db 1.7 db 2. db Bandwidth antenna conducted 5 Hz 1 Hz Radiated emissions 4.2 db 5.4 db AC mains conducted emissions 2.4 db - - File: MPK-3B Page 6 of 86

7 3. System Test Configuration 3.1 Support Equipment Description Manufacturer Model No./ Part No. Laptop HP EliteBook 847p Optical Line Termination Cisco Cisco ME 46 Series Flash Drive Kingston DT11G2 8GB Telephone TKT Telephone Alcatel N/A Router Linksys BEFSR Block Diagram of Test Setup Equipment Under Test Description Manufacturer Model Number Serial Number FiberGateway (Radiated Unit) AC/DC Power Adapter FiberGateway (Conducted Unit) Altice Labs, SA GR24BG E912154CF Airline mechanical Co Ltd EOSA+4B12-4 AB Altice Labs, SA GR24BG E F Antenna was removed and co-axial connector with a cable was installed for Conducted Measurements. RJ45, 3m, U Laptop AC/DC Power Supply F EUT (FiberGateway) Flash Drive 3xRJ45, 3m, U Linksys Router 12VAC 6Hz RJ45, 3m, U Spectrum Analyzer Fiber Cisco ME 46 Series S = Shielded U = Unshielded F = With Ferrite m = Meter File: MPK-3B Page 7 of 86

8 3.3 Justification Preliminary testing was performed for all modulation/data rate modes. The following modes, in which the highest power was detected, were selected for final measurements: OFDM, 6MB/s for 82.11a (Power Setting on test firmware: 24) OFDM, MCS for 82.11n 2MHz (Power Setting on test firmware: 24) OFDM, MCS for 82.11n 4MHz (Power Setting on test firmware: 24) OFDM, MCS for 82.11ac 8MHz (Power Setting on test firmware:24) According to the manufacture, the FiberGateway utilizes cross-polarized antennas with two vertical (Ant 1 & Ant 4) and two Horizontal (Ant 2 & Ant 3). Per FCC KDB D1 Multiple Transmitter Output v2r1, the directional gain of the antenna is calculated as below: Directional gain = 1 log[(1g1 /1 + 1G2 / GN /1)/NANT] dbi Vertical Gain = 1 log[(1^(4.8/1) + 1^(5.1/1))/2] = 4.9dBi Horizontal Gain = 1 log[(1^(3.4/1) + 1^(4/1))/2] = 3.7dBi 3.4 Mode of Operation During Test During transmitter testing, the transmitter was setup to transmit continuously using the maximum RF power setting. Their corresponding output power in dbm can be found in section 4.2 of this report. File: MPK-3B Page 8 of 86

9 3.5 Modifications required for Compliance The following modification was made by the manufacturer to the EUT in order to bring the EUT into compliance: - Added a ferrite with double loop (Manufacture: Wurth Electronics, Part Number: S) at the DC input of the FiberGateway (See below). 3.6 Additions, deviations and exclusions from standards No additions, deviations or exclusion have been made from standard. File: MPK-3B Page 9 of 86

10 4. Measurement Results 4.1 Emission Bandwidth and 99% Occupied Bandwidth 15.47(a)(1)(2) Procedure The Procedure, described in the FCC Publication D2 General U-NII Test Procedures New Rules v1r4, was used. Specifically Section C for Emission Bandwidth and Section D was used for 99% Occupied Bandwidth. The antenna port of the EUT was connected to the input of a spectrum analyzer (SA). For each RF output channel investigated, the spectrum analyzer center frequency was set to the channel carrier. The Occupied bandwidth was measured using the build-in spectrum analyzer facility for 99% power bandwidth measurement. Tested By: Anderson Soungpanya Test Date: September 27, 217 File: MPK-3B Page 1 of 86

11 4.1.2 Test Result Refer to the following plots for the test result: Mode 82.11a 82.11n 2MHz 82.11n 4MHz 82.11ac 8MHz Channel Frequency, MHz 26-dB Bandwidth, MHz 99% Occupied Bandwidth, MHz Plot # 6-dB Bandwidth, MHz Plot # File: MPK-3B Page 11 of 86

12 Plot a, 5745MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ] -.8 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] -.44 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] -1.8 dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 7:49:48 File: MPK-3B Page 12 of 86

13 Plot a, 5785MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ].21 db MHz 1 PK VIEW T1 1 D dbm 3 OBW 17.4 MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] -.11 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 7:52:26 File: MPK-3B Page 13 of 86

14 Plot a, 5825MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ].6 db MHz 1 PK VIEW T1 1 D dbm 3 OBW 17.4 MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] -.25 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 7:54:6 File: MPK-3B Page 14 of 86

15 Plot n 2MHz, 5745MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ].2 db MHz 1 PK VIEW T1 1 D dbm 3 OBW 18.4 MHz Marker 1 [T1 ] dbm GHz Marker 3 [T1 ] T dbm GHz Temp 1 [T1 OBW] dbm GHz 2 Temp 2 [T1 OBW] dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 8:29:34 File: MPK-3B Page 15 of 86

16 Plot n 2MHz, 5785MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ] -.25 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] -3.2 dbm GHz Marker 3 [T1 ] T dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 2 [T1 OBW] dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 8:24:9 File: MPK-3B Page 16 of 86

17 Plot n 2MHz, 5825MHz Ref 1 dbm Att 15 db * RBW 3 khz VBW 1 MHz SWT 2 ms Delta 2 [T1 ] -.2 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] dbm GHz Marker 3 [T1 ] T dbm GHz Temp 1 [T1 OBW] dbm GHz 2 Temp 2 [T1 OBW] dbm GHz A DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 8:11:48 File: MPK-3B Page 17 of 86

18 Plot n 4MHz, 5755MHz Ref 1 dbm Att 15 db * RBW 5 khz * VBW 2 MHz SWT 2 ms Delta 2 [T1 ] -.19 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz 2 Temp 2 [T1 OBW] dbm GHz A DB Center GHz 8 MHz/ Span 8 MHz Date: 27.SEP.217 9:4:18 File: MPK-3B Page 18 of 86

19 Plot n 4MHz, 5795MHz Ref 1 dbm Att 15 db * RBW 5 khz * VBW 2 MHz SWT 2 ms Delta 2 [T1 ] -.5 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A DB Center GHz 8 MHz/ Span 8 MHz Date: 27.SEP.217 9:1:31 File: MPK-3B Page 19 of 86

20 Plot ac 8MHz, 5775MHz Ref 1 dbm Att 15 db * RBW 1 MHz * VBW 3 MHz SWT 2 ms Delta 2 [T1 ] 1.97 db MHz 1 PK VIEW T1 1 D dbm 3 OBW MHz Marker 1 [T1 ] dbm T GHz Marker 3 [T1 ] -.17 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A DB Center GHz 16 MHz/ Span 16 MHz Date: 27.SEP.217 8:57:57 File: MPK-3B Page 2 of 86

21 Plot a, 5745MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.54 db MHz 1 PK VIEW D dbm 1 T1 3 2 T2 OBW 16.6 MHz Marker 1 [T1 ] dbm GHz Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:17:21 File: MPK-3B Page 21 of 86

22 Plot a, 5785MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.95 db MHz 1 PK VIEW D dbm 1 T1 3 2T2 OBW MHz Marker 1 [T1 ] -1.5 dbm GHz Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:15:57 File: MPK-3B Page 22 of 86

23 Plot a, 5825MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.24 db MHz 1 PK VIEW D dbm 1 T1 3 2 T2 OBW MHz Marker 1 [T1 ] dbm GHz Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:11:42 File: MPK-3B Page 23 of 86

24 Plot n 2MHz, 5745MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.64 db MHz 1 PK VIEW D1-9.9 dbm 1 T1 3 OBW MHz Marker 1 [T1 ] dbm 2 T GHz Marker 3 [T1 ] -3.9 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:19:58 File: MPK-3B Page 24 of 86

25 Plot n 2MHz, 5785MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.85 db MHz 1 PK VIEW D1-9.5 dbm 1 T1 3 OBW 17.8 MHz Marker 1 [T1 ] dbm 2T GHz Marker 3 [T1 ] -3.5 dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:14:41 File: MPK-3B Page 25 of 86

26 Plot n 2MHz, 5825MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ].15 db MHz 1 PK VIEW D dbm 1T1 3 OBW 17.8 MHz Marker 1 [T1 ] dbm 2T GHz Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 4 MHz/ Span 4 MHz Date: 27.SEP.217 9:12:57 File: MPK-3B Page 26 of 86

27 Plot n 4MHz, 5755MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] -.3 db MHz 1 PK VIEW T1 1 D dbm 3 OBW 36.2 MHz Marker 1 [T1 ] dbm GHz T2 Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 8 MHz/ Span 8 MHz Date: 27.SEP.217 9:7:6 File: MPK-3B Page 27 of 86

28 Plot n 4MHz, 5795MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] db MHz 1 PK VIEW T1 1 D dbm 3 OBW 36.2 MHz Marker 1 [T1 ] -16. dbm GHz T2 Marker 3 [T1 ] dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 8 MHz/ Span 8 MHz Date: 27.SEP.217 9:8:39 File: MPK-3B Page 28 of 86

29 Plot ac 8MHz, 5775MHz Ref 5 dbm Att 1 db * RBW 1 khz * VBW 3 khz SWT 2 ms Delta 2 [T1 ] 1.74 db MHz 1 PK VIEW T1 1 D dbm 3 OBW 75.6 MHz Marker 1 [T1 ] dbm GHz Marker 3 [T1 ] T dbm GHz Temp 1 [T1 OBW] dbm GHz Temp 2 [T1 OBW] dbm GHz A -5 3DB Center GHz 16 MHz/ Span 16 MHz Date: 27.SEP.217 9:1:17 File: MPK-3B Page 29 of 86

30 4.2 Maximum Conducted Output Power FCC Rule 15.47(a)(3) Requirement For the band GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. In addition, the maximum power spectral density shall not exceed 3 dbm in any 5- khz band. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi. However, fixed point-to-point U-NII devices operating in this band may employ transmitting antennas with directional gain greater than 6 dbi without any corresponding reduction in transmitter conducted power. Fixed, point-to-point operations exclude the use of point-tomultipoint systems, omnidirectional applications, and multiple collocated transmitters transmitting the same information. The operator of the U-NII device, or if the equipment is professionally installed, the installer, is responsible for ensuring that systems employing high gain directional antennas are used exclusively for fixed, point-to-point operations Procedure The Procedure, described in the FCC Publication D2 General U-NII Test Procedures New Rules v1r4, was used. Specifically Section E (2) (b) Method SA-1 for Maximum Conducted Output Power The antenna port output of the EUT was connected to the input of a spectrum analyzer to measure the Maximum Conducted Transmitter Output Power. Tested By: Minh Ly Test Date: October 4, 217 File: MPK-3B Page 3 of 86

31 4.2.3 Test Results Refer to the following plots for the test result: 82.11a (6Mbps) Conducted Average Power Frequenc Ant DB1 Plot Ant 1 DB2 CH y (dbm) # (dbm) MHz Plot # Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) n 2MHz (MCS) Conducted Average Power Frequenc Ant DB1 Plot Ant 1 DB2 Plot CH y (dbm) # (dbm) # MHz Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) n 4MHz (MCS) Conducted Average Power Frequenc Ant DB1 Plot Ant 1 DB2 Plot CH y (dbm) # (dbm) # MHz Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) ac 8MHz (MCS) Conducted Average Power Frequenc Ant DB1 Plot Ant 1 DB2 Plot Ant 2 DB3 Plot Ant 3 DB4 Plot CH y (dbm) # (dbm) # (dbm) # (dbm) # MHz Plot # Plot # Plot # File: MPK-3B Page 31 of 86

32 CH Frequency Summed power Summed power (MHz) (dbm) (W) 82.11a n 2MHz n 4MHz ac 8MHz File: MPK-3B Page 32 of 86

33 Plot 2. 1 Plot 2. 2 File: MPK-3B Page 33 of 86

34 Plot 2. 3 Plot 2. 4 File: MPK-3B Page 34 of 86

35 Plot 2. 5 Plot 2. 6 File: MPK-3B Page 35 of 86

36 Plot 2. 7 Plot 2. 8 File: MPK-3B Page 36 of 86

37 Plot 2. 9 Plot 2. 1 File: MPK-3B Page 37 of 86

38 Plot Plot File: MPK-3B Page 38 of 86

39 Plot Plot File: MPK-3B Page 39 of 86

40 Plot Plot File: MPK-3B Page 4 of 86

41 Plot Plot File: MPK-3B Page 41 of 86

42 Plot Plot 2. 2 File: MPK-3B Page 42 of 86

43 Plot Plot File: MPK-3B Page 43 of 86

44 Plot Plot File: MPK-3B Page 44 of 86

45 Plot Plot File: MPK-3B Page 45 of 86

46 Plot Plot File: MPK-3B Page 46 of 86

47 Plot Plot 2. 3 File: MPK-3B Page 47 of 86

48 Plot Plot File: MPK-3B Page 48 of 86

49 Plot Plot File: MPK-3B Page 49 of 86

50 Plot Plot File: MPK-3B Page 5 of 86

51 4.3 Peak Power Spectral Density FCC Rule 15.47(a)(1)(ii) Requirement For the band GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. In addition, the maximum power spectral density shall not exceed 3 dbm in any 5- khz band. If transmitting antennas of directional gain greater than 6 dbi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in db that the directional gain of the antenna exceeds 6 dbi. However, fixed point-to-point U-NII devices operating in this band may employ transmitting antennas with directional gain greater than 6 dbi without any corresponding reduction in transmitter conducted power. Fixed, point-to-point operations exclude the use of point-tomultipoint systems, omnidirectional applications, and multiple collocated transmitters transmitting the same information. The operator of the U-NII device, or if the equipment is professionally installed, the installer, is responsible for ensuring that systems employing high gain directional antennas are used exclusively for fixed, point-to-point operations Procedure Each antenna port of the EUT was connected to the input of a spectrum analyzer to measure the Peak Power Spectral Density (PPSD) and recorded. The Procedure, described in the FCC Publication D2 General U-NII Test Procedures New Rules v1r4, was used. Specifically procedure from Section F was utilized for Maximum Power Spectral Density (PSD). Tested By: Minh Ly Test Date: October 4, 217 File: MPK-3B Page 51 of 86

52 4.3.3 Test Result Refer to the following plots for the test result 82.11a (6Mbps) Power Spectral Density Ant Frequency Plot Ant 1 DB2 CH DB1 MHz # (dbm) (dbm) Plot # Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) n 2MHz (MCS) Power Spectral Density Ant Frequency Plot Ant 1 DB2 CH DB1 MHz # (dbm) (dbm) Plot # Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) n 4MHz (MCS) Power Spectral Density Ant Frequency Plot Ant 1 DB2 CH DB1 MHz # (dbm) (dbm) Plot # Ant 2 DB3 (dbm) Plot # Ant 3 DB4 (dbm) ac 8MHz (MCS) Power Spectral Density Ant Frequency Plot Ant 1 DB2 Plot Ant 2 DB3 Plot Ant 3 DB4 Plot CH DB1 MHz # (dbm) # (dbm) # (dbm) # (dbm) Plot # Plot # Plot # File: MPK-3B Page 52 of 86

53 MIMO - Power Spectral Density CH Frequency (MHz) Summed PSD (dbm) Limit (dbm) Margin (db) 82.11a n 2MHz n 4MHz ac 8MHz File: MPK-3B Page 53 of 86

54 4.4 Frequency stability FCC 15.47(g) Requirement Manufacturers of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the user s manual Procedure The EUT was placed in a temperature chamber and setup to transmit. Procedures for frequency stability in ANSIC63.1:213 section 6.8 was utilized. The carrier frequency was measured with the spectrum analyzer with resolution bandwidth of 1 khz for lower band edge measurement. For upper band edge, 99% occupied bandwidth was used. The temperature was varied from o C to 5 o C, as declared by manufacturer. The EUT in this report is powered by 12.VAC which was varied to 85% and 115% for testing. Testing was performed at a temperature of 2 o C. After the temperature stabilized for approximately 2 minutes, the transmitting frequency was measured. Tested By: Anderson Soungpanya & Minh Ly Test Date: September 29, 217 File: MPK-3B Page 54 of 86

55 4.4.3 Result Temperature, C -26dB Band Edge at nominal voltage, (MHz) Maximum deviation from frequency at 2 C, ppm Nominal Frequency: 5745 MHz Maximum deviation from frequency at 2 C, ppm Voltage at 2-26dB Band Edge at nominal voltage, C (MHz) 12V 15% V + 15% Temperature, C -26dB Band Edge at nominal voltage, (MHz) Maximum deviation from frequency at 2 C, ppm Nominal Frequency: 5825 MHz Maximum deviation from frequency at 2 C, ppm Voltage at 2-26dB Band Edge at nominal voltage, C (MHz) 12V 15% V + 15% File: MPK-3B Page 55 of 86

56 4.5 Transmitter Radiated Emissions FCC Rule 15.47(b) (1-8) 15.29, Requirement (b) Undesirable emission limits. Except as shown in paragraph (b) (7) of this section, the maximum emissions outside of the frequency bands of operation shall be attenuated in accordance with the following limits: (1) For transmitters operating in the GHz band: All emissions outside of the GHz band shall not exceed an e.i.r.p. of 27 dbm/mhz. (2) For transmitters operating in the GHz band: All emissions outside of the GHz band shall not exceed an e.i.r.p. of 27 dbm/mhz. (3) For transmitters operating in the GHz band: All emissions outside of the GHz band shall not exceed an e.i.r.p. of 27 dbm/mhz. (4) For transmitters operating in the GHz band: (i) All emissions shall be limited to a level of 27 dbm/mhz at 75 MHz or more above or below the band edge increasing linearly to 1 dbm/mhz at 25 MHz above or below the band edge, and from 25 MHz above or below the band edge increasing linearly to a level of 15.6 dbm/mhz at 5 MHz above or below the band edge, and from 5 MHz above or below the band edge increasing linearly to a level of 27 dbm/mhz at the band edge. (5) The emission measurements shall be performed using a minimum resolution bandwidth of 1 MHz. A lower resolution bandwidth may be employed near the band edge, when necessary, provided the measured energy is integrated to show the total power over 1 MHz. (6) Unwanted emissions below 1 GHz must comply with the general field strength limits set forth in Further, any U-NII devices using an AC power line are required to comply also with the conducted limits set forth in (7) The provisions of apply to intentional radiators operating under this section. (8) When measuring the emission limits, the nominal carrier frequency shall be adjusted as close to the upper and lower frequency band edges as the design of the equipment permits. Emissions which fall in the restricted bands, as defined in 15.25(a), must comply with the radiated emission limits specified in 15.29(a) (see 15.25(c)). For transmitters operating in the GHz band: all emissions outside of the GHz band shall not exceed an EIRP of 27 dbm/mhz. Out-of-band radiated emission complied with both the average and peak limits of Section and an EIRP of -27 dbm/mhz (or 67.9dBuV at 3m). File: MPK-3B Page 56 of 86

57 4.5.2 Procedure Radiated emission measurements were performed from 3 MHz to 4 GHz according to the procedure described in ANSI C64.1. Spectrum Analyzer Resolution Bandwidth is 1 khz or greater for frequencies 3 MHz to 1 MHz, 1 MHz for frequencies above 1 MHz. Above 1 MHz Peak and Average measurements were performed. The EUT is placed on a plastic turntable that is 8 cm in height for below 1MHz and 1.5m in height for above 1GHz. If the EUT attaches to peripherals, they are connected and operational (as typical as possible). During testing, all cables were manipulated to produce worst-case emissions. The signal is maximized through rotation. The antenna height and polarization are varied during the search for maximum signal level. The antenna height is varied from 1 to 4 meters. Radiated emissions are taken at 1 meter for Band Edge measurements. Radiated spurious emissions are taken at 3 meters for frequencies above 1 GHz and at 1 meters for frequencies below 1 GHz. The 2.4GHz and 5GHz radio can transmit simultaneously; both of the transmitters are turned on during spurious emission to investigate for inter-modulation emission. Measurements made from 1 GHz to 18 GHz had a GHz and 5GHz (UNII-1 & UNII-3 band respectively) notch filter in place. A preamp was used from 3MHz to 4GHz. All measurements were made with a Peak Detector and compared to QP limits for 3MHz 1GHz and Average limits for 1GHz 4 GHz. Data is included of the worst-case configuration (the configuration which resulted in the highest emission levels). File: MPK-3B Page 57 of 86

58 4.5.3 Field Strength Calculation Field Strength Calculation The field strength is calculated by adding the Antenna Factor and Cable Factor, and subtracting the Amplifier Gain (if any) from the measured reading. The basic equation with a sample calculation is as follows: FS = RA + AF + CF AG; if measurement is performed at a distance other than specified in the rule, a Distance Correction Factor (DCF) shall be added. Where FS = Field Strength in db(µv/m) RA = Receiver Amplitude (including preamplifier) in db(µv); AF = Antenna Factor in db(1/m) CF = Cable Attenuation Factor in db; AG = Amplifier Gain in db Assume a receiver reading of 52. db(µv) is obtained. The antennas factor of 7.4 db(1/m) and cable factor of 1.6 db is added. The amplifier gain of 29 db is subtracted, giving field strength of 32 db(µv/m). This value in db(µv/m) was converted to its corresponding level in µv/m. RA = 52. db(µv) AF = 7.4 db(1/m) CF = 1.6 db AG = 29. db FS = = 32 db(µv/m). Level in µv/m = Common Antilogarithm [(32 dbµv/m)/2] = 39.8 µv/m. File: MPK-3B Page 58 of 86

59 4.5.4 Test Results The data on the following pages list the significant emission frequencies, the limit and the margin of compliance where emissions are within 3dB of the limit. Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz. File: MPK-3B Page 59 of 86

60 Test Results: 15.29/15.25 Restricted Band Emissions Tested By: Minh Ly Test Date: September 26 October 1, 217 Out-of-Band Spurious Emissions at the Band Distance 82.11a, 5745 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 13:23 File: MPK-3B Page 6 of 86

61 Out-of-Band Spurious Emissions at the Band Distance 82.11a, 5825 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 13:41 File: MPK-3B Page 61 of 86

62 Out-of-Band Spurious Emissions at the Band Distance 82.11n 2MHz, 5745 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 13:48 Out-of-Band Spurious Emissions at the Band Distance 82.11n 2MHz, 5825 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 13:54 File: MPK-3B Page 62 of 86

63 Out-of-Band Spurious Emissions at the Band Distance 82.11n 4MHz, 5755 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 14: Out-of-Band Spurious Emissions at the Band Distance 82.11n 4MHz, 5795 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 14:14 File: MPK-3B Page 63 of 86

64 Out-of-Band Spurious Emissions at the Band Distance 82.11ac 8MHz, 5775 MHz FCC Part 15/15.47 UNII-3 Band Edge A - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) dbµv/m GHz 5.55G 5.6G 5.65G 5.7G 5.75G 5.8G 5.85G 5.9G 5.95G Frequency 6GHz Model: ; Client: ; Comments: ; Test Date: 1/5/217 14:22 File: MPK-3B Page 64 of 86

65 Test Results: Radiated Spurious Emissions Low Channel, Tx at 82.11g 2412MHz, and 82.11a 5745MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) FS (Final QP) (Horizontal) FS (Final QP) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 9/26/217 6:2 File: MPK-3B Page 65 of 86

66 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:12 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:5 Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 66 of 86

67 Test Results: Radiated Spurious Emissions Mid Channel, Tx at 82.11g 2437MHz, and 82.11a 5785MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) FS (Final QP) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 9/26/217 6:32 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:27 File: MPK-3B Page 67 of 86

68 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11: MHz is the 2.4GHz transmitter fundamental frequency Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 68 of 86

69 Test Results: Radiated Spurious Emissions High Channel, Tx at 82.11g 2462MHz, and 82.11a 5825MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 9/26/217 7:15 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:37 File: MPK-3B Page 69 of 86

70 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:34 Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 7 of 86

71 Test Results: Radiated Spurious Emissions Low Channel, Tx at 82.11n 2MHz 2412MHz, and 82.11n 2MHz 5745MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 1/9/217 1:46 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 13:35 File: MPK-3B Page 71 of 86

72 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 13:26 Emission at MHz and MHz peaks are not in restricted band (15.25). Therefore the limit of does not apply to this particular frequency. Compliance for this frequency outside the restricted band is shown in report number MPK-2A; section 4.4. Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 72 of 86

73 Test Results: Radiated Spurious Emissions Mid Channel, Tx at 82.11n 2MHz 2437MHz, and 82.11n 2MHz 5785MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 1/9/217 11:8 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 13:52 File: MPK-3B Page 73 of 86

74 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 13:45 Emission at MHz and MHz peaks are not in restricted band (15.25). Therefore the limit of does not apply to this particular frequency. Compliance for this frequency outside the restricted band is shown in report number MPK-2A; section 4.4. Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 74 of 86

75 Test Results: Radiated Spurious Emissions High Channel, Tx at 82.11g 2462MHz and 82.11n 2MHz 5825MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 1/9/217 11:33 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:1 File: MPK-3B Page 75 of 86

76 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:4 Frequency Average Lim. Avg Margin Height Correction Comment (MHz) (dbµv/m) (dbµv/m) (db) (m) Angle ( ) (db) Horizontal Vertical 14.9 Emission at 559MHz and 674.5MHz peaks are not in restricted band (15.25). Therefore the limit of does not apply to this particular frequency. Compliance for this frequency outside the restricted band is shown in report number MPK-2A; section 4.4. Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 76 of 86

77 Test Results: Radiated Spurious Emissions Low Channel, Tx at 82.11n 4MHz 2422MHz, and 82.11n 4MHz 5755MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 9/28/217 1:39 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:27 File: MPK-3B Page 77 of 86

78 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:21 Emission at MHz peak is not in restricted band (15.25). Therefore the limit of does not apply to this particular frequency. Compliance for this frequency outside the restricted band is shown in report number MPK-2A; section 4.4. Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 78 of 86

79 Test Results: Radiated Spurious Emissions High Channel, Tx at 82.11n 4MHz 2437MHz, and 82.11n 4MHz 5795MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 9/28/217 1:5 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:47 File: MPK-3B Page 79 of 86

80 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/2/217 14:37 Emission at MHz peak is not in restricted band (15.25). Therefore the limit of does not apply to this particular frequency. Compliance for this frequency outside the restricted band is shown in report number MPK-2A; section 4.4. Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 8 of 86

81 Test Results: Radiated Spurious Emission, Tx at 82.11n 4MHz 2437MHz, and 82.11ac 8MHz 5775MHz Radiated Spurious Emissions - 3 MHz to 1 MHz FCC Part 15/FCC Part 15.25/15.29, 3MHz-1GHz - QPeak/1.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. QPeak ) (Horizontal) Peak (Peak /Lim. QPeak ) (Vertical) dbµv/m MHz 1M Frequency 1GHz Model: ; Client: ; Comments: ; Test Date: 1/9/217 1:34 Radiated Spurious Emissions 1-18 MHz, Peak Scan vs Peak Limit FCC Part 15/15.47 UNII Peak 1GHz - 4GHz B - Peak/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Peak ) (Horizontal) Peak (Peak /Lim. Peak ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:5 File: MPK-3B Page 81 of 86

82 Radiated Spurious Emissions 1-18 MHz, Avg Scan vs Avg Limit FCC Part 15/FCC Part M-4GHz B - Average/3.m/ Meas.Peak (Horizontal) Meas.Peak (Vertical) Peak (Peak /Lim. Average ) (Horizontal) Peak (Peak /Lim. Average ) (Vertical) 1 dbµv/m GHz 4G 6G 8G 1G Frequency 12G 14G 16G 18GHz Model: ; Client: ; Comments: ; Test Date: 1/6/217 11:45 Note: Radiated emission measurements were performed up to 4GHz. No Emissions were identified when scanned from 18-4 GHz File: MPK-3B Page 82 of 86

83 4.5.5 Test setup photographs The following photographs show the testing configurations used. File: MPK-3B Page 83 of 86

84 4.5.5 Test setup photographs (Continued) File: MPK-3B Page 84 of 86

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