March 15, TrackMan Stubbeled 2 Vedbæk, DK Dear Claus Nilsson,

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1 MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE BALTIMORE, MARYLAND PHONE (410) FAX (410) WESTERN AVENUE UNION CITY, CALIFORNIA PHONE (510) FAX (510) BELICK STREET SANTA CLARA, CA PHONE (408) FAX (510) MCCALLEN PASS AUSTIN, TEXAS PHONE (512) FAX (512) March 15, 2017 Stubbeled 2 Vedbæk, DK-2950 Dear Claus Nilsson, Enclosed is the EMC Wireless test report for compliance testing of the, TMA4A as tested to the requirements of Title 47 of the CFR, Ch. 1 ( ed.), Part 15 Subpart C for. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please feel free to contact me. Sincerely yours, MET LABORATORIES, INC. Joel Huna Documentation Department Reference: (\\EMC88710-FCC247 Rev. 4) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. The Nation s First Licensed Nationally Recognized Testing Laboratory

2 Cover Page Electromagnetic Compatibility Criteria Test Report for the TMA4A Tested under the FCC Certification Rules contained in Subpart C for MET Report: EMC88710-FCC247 Rev. 4 March 15, 2017 Prepared For: Stubbeled 2 Vedbæk, DK-2950 Prepared By: MET Laboratories, Inc. 914 West Patapsco Avenue, Baltimore MD MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page ii of xi

3 Cover Page Electromagnetic Compatibility Criteria Test Report for the TMA4A Tested under the FCC Certification Rules contained in Subpart C for Djed Mouada, Project Engineer Electromagnetic Compatibility Lab Joel Huna Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of the FCC Rules Part under normal use and maintenance. Asad Bajwa, Director, Electromagnetic Compatibility Lab MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page iii of xi

4 Report Status Report Status Sheet Revision Report Date Reason for Revision December 2, 2016 Initial Issue. 1 February 2, 2017 FCC ID 2 February 28, 2017 Customer corrections 3 March 2, 2017 Engineer corrections. 4 March 15, 2017 Engineer corrections. MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page iv of xi

5 Table of Contents Table of Contents I. Executive Summary... 1 A. Purpose of Test... 2 B. Executive Summary... 2 II. Equipment Configuration... 3 A. Overview... 4 B. References... 5 C. Test Site... 5 D. Description of Test Sample... 6 E. Equipment Configuration... 8 F. Support Equipment... 8 G. Ports and Cabling Information... 9 H. Mode of Operation... 9 I. Method of Monitoring EUT Operation... 9 J. Modifications a) Modifications to EUT b) Modifications to Test Standard K. Disposition of EUT III. Electromagnetic Compatibility Criteria for Antenna Requirement (a) Conducted Emissions Limits (a)(a) 6 db and 99% Bandwidth (b) Peak Power Output (d) Radiated Spurious Emissions Requirements and Band Edge (d) RF Conducted Spurious Emissions Requirements and Band Edge (e) Peak Power Spectral Density IV. Test Equipment V. Certification & User s Manual Information A. Certification Information B. Label and User s Manual Information MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page v of xi

6 Table of Contents List of Tables Table 1. Executive Summary of EMC Part ComplianceTesting... 2 Table 2. EUT Summary Table... 4 Table 3. References... 5 Table 4. Equipment Configuration... 8 Table 5. Support Equipment... 8 Table 6. Ports and Cabling Information... 9 Table 7. Antenna List Table 8. Conducted Limits for from FCC Part (a) Table 9. Conducted Emissions, (a), Phase Line, Test Results Table 10. Conducted Emissions, (a), Neutral Line, Test Results Table db Occupied Bandwidth, Test Results Table 12. Output Power Requirements from (b) Table 13. Peak Power Output, Test Results Table 14. Restricted Bands of Operation Table 15. Radiated Emissions Limits Calculated from FCC Part 15, (a) Table 16. Peak Power Spectral Density, Test Results Table 17. Test Equipment List List of Plots Plot 1. Conducted Emissions, (a), Phase Line Plot 2. Conducted Emissions, (a), Neutral Line Plot 3. 6 db Occupied Bandwidth, 20M, Ch.2412M, b mode, Port Plot 4. 6 db Occupied Bandwidth, 20M, Ch. 2412M, b mode, Port Plot 5. 6 db Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port Plot 6. 6 db Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port Plot 7. 6 db Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port Plot db Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2142M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch.2437M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port Plot 15. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port Plot 16. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port Plot 17. 6dB Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port Plot 18. 6dB Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port Plot 19. 6dB Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port Plot 20. 6dB Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port Plot 21. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, g mode Port Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port Plot db Occupied Bandwidth, 20M, Ch. 2412M, n mode Plot db Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port Plot db Occupied Bandwidth, 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page vi of xi

7 Table of Contents Plot db Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port Plot db Occupied Bandwidth, 20M, Ch. 2462M, n mode Plot db Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port Plot 40. 6dB Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port Plot 41. 6dB Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port Plot 42. 6dB Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port Plot 43. 6dB Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port Plot 44. 6dB Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port Plot 45. 6dB Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port Plot percent Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port Plot percent Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port Plot percent Occupied Bandwidth, 40M Ch. 2437M, n mode, Port Plot percent Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port Plot percent Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port Plot percent Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port Plot 52. Peak Power Output, Bandwidth 20M, Ch. 2412M, Port Plot 53. Peak Power Output, Bandwidth 20M, Ch. 2437M, Port Plot 54. Peak Power Output, Bandwidth 20M, Ch. 2462M, Port Plot 55. Peak Power Output, Bandwidth 20M, Ch. 2412M, Port Plot 56. Peak Power Output, Bandwidth 20M, Ch. 2437M, Port Plot 57. Peak Power Output, Bandwidth 20M, Ch. 2462M, Port Plot 58. Peak Power Output, Bandwidth 20M, Ch. 2412M, G mode, Port Plot 59. Peak Power Output, Bandwidth 20M, Ch. 2437, g mode, Port Plot 60. Peak Power Output, Bandwidth 20M, Ch. 2462M, g mode, Port Plot 61. Peak Power Output, Bandwidth 20M, Ch. 2412M, g mode, Port Plot 62. Peak Power Output, Bandwidth 20M, Ch. 2437M, g mode, Port Plot 63. Peak Power Output, Bandwidth 20M, Ch. 2462M, g mode, Port Plot 64. Peak Power Output, Bandwidth 20M, Ch. 2412M, n mode, Port Plot 65. Peak Power Output, Bandwidth 20M, Ch. 2437M, n mode, Port Plot 66. Peak Power Output, Bandwidth 20M, Ch. 2462M, n mode, Port Plot 67. Peak Power Output, Bandwidth 20M, Ch. 2412M, n mode, Port Plot 68. Peak Power Output, Bandwidth 20M, Ch. 2437M, n mode, Port Plot 69. Peak Power Output, Bandwidth 20M, Ch. 2462M, n mode, Port Plot 70. Peak Power Output, Bandwidth 40M, Ch. 2422M, n mode, Port Plot 71. Peak Power Output, Bandwidth 40M, Ch. 2437M, n mode, Port Plot 72. Peak Power Output, Bandwidth 40M, Ch. 2452M, n mode, Port Plot 73. Peak Power Output, Bandwidth 40M, Ch. 2422M, n mode, Port Plot 74. Peak Power Output, Bandwidth 40M, Ch. 2437M, n mode, Port Plot 75. Peak Power Output, Bandwidth 40M, Ch. 2452M, n mode, Port Plot 76. Average Spurious Emission 1-7GHz, Bandwidth 20Mb, Ch. 2412M, b mode Plot 77. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, b mode Plot 78. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, b mode Plot 79. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, b mode Plot 80. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, b mode Plot 81. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, b mode Plot 82. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, b mode Plot 83. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page vii of xi

8 Table of Contents Plot 84. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, b mode Plot 85. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, b mode Plot 86. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, b mode Plot 87. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, b mode Plot 88. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, g mode Plot 89. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode Plot 90. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode Plot 91. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, g mode Plot 92. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode Plot 93. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, g mode Plot 94. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, g mode Plot 95. Average Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2437M, g mode Plot 96. Average Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2462M, g mode Plot 97. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2412M, g mode Plot 98. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2437M, g mode Plot 99. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2462M, g mode Plot 100. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, n mode, AVG Plot 101. Average Spurious Emission 1-7Ghz, Bandwidth 20M Ch. 2422M, n mode, AVG Plot 102. Average Spurious Emission 1-7Ghz, Bandwidth 20M, Ch. 2462M, n mode Plot 103. Peak Spurious Emission 1-7Ghz, Bandwidth 20M, Ch. 2412M, n mode, Peak Plot 104. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2422M, n mode, Peak Plot 105. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, n mode Plot 106. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, n mode Plot 107. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode Plot 108. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, n mode Plot 109. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, n mode Plot 110. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode Plot 111. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, n mode Plot 112. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2422M, n mode Plot 113. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2437M, n mode Plot 114. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2452M, n mode Plot 115. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2422M, n mode Plot 116. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2437M, n mode Plot 117. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2452M, n mode Plot 118. Average Spurious Emssion 7-18GHz, Bandwidth 20M, Ch. 2422M, n mode Plot 119. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode Plot 120. Peak Spurious Emission 7-18GHz, Bandwidth 20M Ch. 2452M, n mode Plot 121. Peak Spurious Emission, 7-18GHz, Bandwidth 20M, Ch. 2422M, n mode Plot 122. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode Plot 123. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2452M, n mode Plot 124. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, b mode Plot 125. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, b mode Plot 126. Average Band Edge Spurious, Bandwidth 20M, Ch. 2412M, b mode Plot 127. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, b mode Plot 128. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, g mode Plot 129. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, g mode Plot 130. Average Edge Spurious, Bandwidth 20M, Ch. 2412M, g mode Plot 131. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, g mode Plot 132. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, n mode Plot 133. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, n mode Plot 134. Average Band Edge Spurious, Bandwidth 20M, Ch. 2412M, n mode Plot 135. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, n mode Plot 136. Average Band Edge Spurious, Bandwidth 40M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page viii of xi

9 Table of Contents Plot 137. Average Band Edge Spurious, Bandwidth 40M, Ch. 2452M, n mode Plot 138. Peak Band Edge Spurious, Bandwidth 40M, Ch. 2422M, n mode Plot 139. Peak Band Edge Spurious, Bandwidth 40M, Ch. 2452M, n mode Plot 140. Conducted Spurious Emissions, Ch. 2412, b mode, 30 dbc, Port Plot 141. Conducted Spurious Emissions, Ch. 2412, b mode, 30 dbc, Port Plot 142. Conducted Spurious Emissions, Ch. 2437, b mode, 30 dbc, Port Plot 143. Conducted Spurious Emissions, Ch. 2437, b mode, 30 dbc, Port Plot 144. Conducted Spurious Emissions, Ch. 2462, b mode, 30 dbc, Port Plot 145. Conducted Spurious Emissions, Ch. 2462, b mode, 30 dbc, Port Plot 146. Conducted Spurious Emissions, Ch. 2412, g mode, 30 dbc, Port Plot 147. Conducted Spurious Emissions, Ch. 2412, g mode, 30 dbc, Port Plot 148. Conducted Spurious Emissions, Ch. 2437, g mode, 30 dbc, Port Plot 149. Conducted Spurious Emissions, Ch. 2437, g mode, 30 dbc, Port Plot 150. Conducted Spurious Emissions, Ch. 2462, g mode, 30 dbc, Port Plot 151. Conducted Spurious Emissions, Ch. 2462, g mode, 30 dbc, Port Plot 152. Conducted Spurious Emissions, Ch. 2412, n mode, 20MHz, 30 dbc, Port Plot 153. Conducted Spurious Emissions, Ch. 2412, n mode, 20MHz, 30 dbc, Port Plot 154. Conducted Spurious Emissions, Ch. 2437, n mode, 20MHz, 30 dbc, Port Plot 155. Conducted Spurious Emissions, Ch. 2437, n mode, 20 MHz, 30 dbc, Port Plot 156. Conducted Spurious Emissions, Ch. 2462, n mode, 20MHz, 30 dbc, Port Plot 157.Conducted Spurious Emissions, Ch. 2462, n mode, 20MHz, 30 dbc, Port Plot 158. Conducted Spurious Emissions, 40MHz, Ch. 2422MHz, 100KHz, n mode, 30dBc, Port Plot 159. Conducted Spurious Emissions, 40MHz, Ch. 2422MHz, 100KHz, n mode, 30 dbc, Port Plot 160. Conducted Spurious Emissions, 40MHz, Ch. 2437MHz, 100KHz, n mode, 30 dbc, Port Plot 161. Conducted Spurious Emissions, 40MHz, Ch. 2437MHz, 100MHz, n mode, 30 dbc, Port Plot 162. Conducted Spurious Emissions, 40MHz, Ch. 2452MHz, 100MHz, n mode, 30 dbc, Port Plot 163. Conducted Spurious Emissions, 40MHz, Ch. 2452MHz, 100KHz, n mode, 30 dbc, Port Plot 164. Conducted Band Edge, Ch. 2412, b mode, 30 dbc, Port Plot 165. Conducted Band Edge, Ch. 2412, b mode, 30 dbc, Port Plot 166. Conducted Band Edge, Ch. 2462, b mode, 30 dbc, Port Plot 167. Conducted Band Edge, Ch. 2462, b mode, 30 dbc, Port Plot 168. Conducted Band Edge, Ch. 2412, n mode, 30 dbc, Port Plot 169. Conducted Band Edge, Ch. 2412, n mode, 30 dbc, Port Plot 170. Conducted Band Edge, Ch. 2462, 20MHz, n mode, 30 dbc, Port Plot 171. Conducted Band Edge, Ch. 2462, 20MHz, n mode, 30 dbc, Port Plot 172. Conducted Band Edge, Ch. 2412, 40MHz, n mode, 30 dbc, Port Plot 173. Conducted Band Edge, Ch. 2412, 40MHz, n mode, 30 dbc, Port Plot 174. Conducted Band Edge, Ch. 2452, 40 MHz, n mode, 30 dbc, Port Plot 175. Conducted Band Edge, Ch. 2452, 40MHz, n mode, 30 dbc, Port Plot 176. Power Spectral Density, Bandwidth 20M, Ch. 2412M, b mode, Port Plot 177. Power Spectral Density, Bandwidth 20M, Ch. 2437M, b mode, Port Plot 178. Power Spectral Density, Bandwidth 20M, Ch. 2437M, b mode, Port Plot 179. Power Spectral Density, Bandwidth 20M, Ch. 2412M, b mode, Port Plot 180. Power Spectral Density, Bandwidth 20M, Ch. 2437M, b mode, Port Plot 181. Power Spectral Density, Bandwidth 20M, Ch. 2462M, b mode, Port Plot 182. Power Spectral Density, Bandwidth 20M, Ch. 2412M, g mode, Port Plot 183. Power Spectral Density, Bandwidth 20M, Ch. 2437M, g mode, Port Plot 184. Power Spectral Density, Bandwidth 20M, Ch. 2462M, g mode, Port Plot 185. Power Spectral Density, Bandwidth 20M, Ch. 2412M, g mode, Port Plot 186. Power Spectral Density, Bandwidth 20M, Ch. 2437M, g mode, Port Plot 187. Power Spectral Density, Bandwidth 20M, Ch. 2462M, g mode, Port Plot 188. Power Spectral Density, Bandwidth 20M, Ch. 2412M, n mode, Port Plot 189. Power Spectral Density, Bandwidth 20M, Ch. 2437M, n Mode, Port MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page ix of xi

10 Table of Contents Plot 190. Power Spectral Density, Bandwidth 20M, Ch. 2462M, n mode, Port Plot 191. Power Spectral Density, Bandwidth 20M, Ch. 2412M, n mode, Port Plot 192. Power Spectral Density, Bandwidth 20M, Ch. 2437M, n mode, Port Plot 193. Power Spectral Density, Bandwidth 20M, Ch. 2462M, n mode, Port Plot 194. Power Spectral Density, Bandwidth 40M, Ch. 2422M, n mode, Port Plot 195. Power Spectral Density, Bandwidth 40M, Ch. 2437M, n mode, Port Plot 196. Power Spectral Density, Bandwidth 40M, Ch. 2452M, n mode, Port Plot 197. Power Spectral Density, Bandwidth 40M, Ch. 2422M, n mode, Port Plot 198. Power Spectral Density, Bandwidth 40M, Ch. 2437M, n mode, Port Plot 199. Power Spectral Density, Bandwidth 40M, Ch. 2452M, n mode, Port List of Figures Figure 1. Block Diagram of Test Configuration, Ethernet Setup... 7 Figure 2. Block Diagram of Test Configuration, Wifi Setup... 7 Figure 3. Block Diagram, Occupied Bandwidth Test Setup Figure 4. Peak Power Output Test Setup Figure 5. Block Diagram, Conducted Spurious Emissions Test Setup Figure 6. Block Diagram, Peak Power Spectral Density Test Setup List of Photographs Photograph 1. TMA4A... 6 Photograph 2. Conducted Emissions, (a), Test Setup Photograph 3. Radiated Spurious Emissions, Test Setup, Below 1GHz Photograph 4. Radiated Spurious Emissions, Test Setup, Above 1GHz MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page x of xi

11 List of Terms and Abbreviations List of Terms and Abbreviations AC Alternating Current ACF Antenna Correction Factor Cal Calibration d Measurement Distance db Decibels dbµa Decibels above one microamp dbµv Decibels above one microvolt dbµa/m Decibels above one microamp per meter dbµv/m Decibels above one microvolt per meter DC Direct Current E Electric Field DSL Digital Subscriber Line ESD Electrostatic Discharge EUT Equipment Under Test f Frequency FCC Federal Communications Commission GRP Ground Reference Plane H Magnetic Field HCP Horizontal Coupling Plane Hz Hertz IEC International Electrotechnical Commission khz kilohertz kpa kilopascal kv kilovolt LISN Line Impedance Stabilization Network MHz Megahertz µh microhenry µ microfarad µs microseconds NEBS Network Equipment-Building System PRF Pulse Repetition Frequency RF Radio Frequency RMS Root-Mean-Square TWT Traveling Wave Tube V/m Volts per meter VCP Vertical Coupling Plane MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page xi of xi

12 Executive Summary I. Executive Summary MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 1 of 233

13 Executive Summary A. Purpose of Test An EMC evaluation was performed to determine compliance of the TMA4A, with the requirements of Part 15, All references are to the most current version of Title 47 of the Code of Federal Regulations in effect. In accordance with , the following data is presented in support of the Certification of the TMA4A. should retain a copy of this document which should be kept on file for at least two years after the manufacturing of the TMA4A, has been permanently discontinued. B. Executive Summary The following tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 15, , in accordance with, purchase order number KO4331. All tests were conducted using measurement procedure ANSI C FCC Reference 47 CFR Part :2005 Description Compliance Title 47 of the CFR, Part Antenna Requirement Compliant Title 47 of the CFR, Part (a) Conducted Emission Limits Compliant Title 47 of the CFR, Part (a)(2) 6dB Occupied Bandwidth Compliant Title 47 of the CFR, Part (b) Peak Power Output Compliant Title 47 of the CFR, Part (d); ; Radiated Spurious Emissions Requirements Compliant Title 47 of the CFR, Part (d) RF Conducted Spurious Emissions Requirements Compliant Title 47 of the CFR, Part (d) RF Conducted Band Edge Compliant Title 47 of the CFR, Part 15; (e) Peak Power Spectral Density Compliant Title 47 of the CFR, Part (i) Maximum Permissible Exposure (MPE) Compliant Table 1. Executive Summary of EMC Part ComplianceTesting MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 2 of 233

14 Equipment Configuration II. Equipment Configuration MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 3 of 233

15 Equipment Configuration A. Overview MET Laboratories, Inc. was contracted by to perform testing on the TMA4A, under s purchase order number KO4331. This document describes the test setups, test methods, required test equipment, and the test limit criteria used to perform compliance testing of the, TMA4A. The results obtained relate only to the item(s) tested. Model(s) Tested: Model(s) Covered: TMA4A TMA4A Primary Power: 19VDC FCC ID: SFX-TMAN4 EUT Specifications: Analysis: Environmental Test Conditions: Evaluated by: Type of Modulations: WiFi, 2.4GHz b/g/n Equipment Code: DTS Peak RF Output Power: dBm EUT Frequency Ranges: MHz The results obtained relate only to the item(s) tested. Temperature: 15-35º C Relative Humidity: 30-60% Barometric Pressure: mbar Djed Mouada Report Date(s): March 15, 2017 Table 2. EUT Summary Table MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 4 of 233

16 Equipment Configuration B. References CFR 47, Part 15, Subpart C ANSI C63.4:2014 ISO/IEC 17025:2005 ANSI C Federal Communication Commission, Code of Federal Regulations, Title 47, Part 15: General Rules and Regulations, Allocation, Assignment, and Use of Radio Frequencies Methods and Measurements of Radio-Noise Emissions from Low-Voltage Electrical And Electronic Equipment in the Range of 9 khz to 40 GHz General Requirements for the Competence of Testing and Calibration Laboratories American National Standard for Testing Unlicensed Wireless Devices Table 3. References C. Test Site All testing was performed at MET Laboratories, Inc., 914 West Patapsco Avenue, Baltimore MD All equipment used in making physical determinations is accurate and bears recent traceability to the National Institute of Standards and Technology. Radiated Emissions measurements were performed in a 3 meter semi-anechoic chamber (equivalent to an Open Area Test Site). In accordance with 2.948(a)(3), a complete site description is contained at MET Laboratories. MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 5 of 233

17 Equipment Configuration D. Description of Test Sample The TMA4A, Equipment Under Test (EUT), is an all-in-one complete dual radar system intended to measure the path and trajectory of golf clubs and balls. The only peripherals required in order to operate the, is a Smart Phone (ios) with suitable app installed, a Tablet or a standard computer with wireless connectivity and a standard web-browser. In order to provide auto alignment the radar is equipped with motorized legs. A 2-axis inclinometer provides angle data which are transmitted to an embedded microcontroller which in turn controls the motor driver circuit. A software servo loop controls the motorized legs until perfect leveling is obtained. The servo loop is only active during set-up and installation Photograph 1. TMA4A MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 6 of 233

18 Equipment Configuration N.B. The LAN and Laptop is not part of the product. (LAN and Laptop is however supplied by for the METlabs test.) Figure 1. Block Diagram of Test Configuration, Ethernet Setup N.B. The Laptop is not part of the product. (Laptop is however supplied by for the METlabs test.) Figure 2. Block Diagram of Test Configuration, Wifi Setup MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 7 of 233

19 Equipment Configuration E. Equipment Configuration The EUT was set up as outlined in Figure 1 and Figure 2. All cards, racks, etc., incorporated as part of the EUT is included in the following list. Ref. ID Name / Description Model Number Part Number Serial Number Revision 1 TRACKMAN 4 4 TMA4A Table 4. Equipment Configuration F. Support Equipment Support equipment necessary for the operation and testing of the EUT is included in the following list. Ref. ID Name / Description Manufacturer Model Number 1 AC/DC ADAPTER FSP GROUP INC. FSP065-RECN2 *Customer Supplied Calibration Data AC INPUT 19VDC, 3.42A OUTPUT The Customer Supplied Calibration Data column will be marked as either not applicable, not available, or will contain the calibration date supplied by the customer. Table 5. Support Equipment MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 8 of 233

20 Equipment Configuration G. Ports and Cabling Information Ref. ID Port name on EUT Cable Description or reason for no cable Qty Length as tested (m) Max Length (m) Shielded? (Y/N) Termination Box ID & Port Name 1 USB USB MICRO YES PC USB PORT 2 ETHERNET/LAN CAT 5 LAN CABLE W. RJ YES ROUTER 3 POWER PLUG IN DC 1 1 N/A YES AC/DC ADAPTER Table 6. Ports and Cabling Information H. Mode of Operation The Radar Unit is an all-in-one complete dual radar system intended to measure the path and trajectory of golf clubs and balls. The only peripherals required in order to operate the, is a Smart Phone (ios) with suitable app installed, a Tablet or a standard computer with wireless connectivity and a standard web-browser. In order to provide auto alignment the radar is equipped with motorized legs. A 2-axis inclinometer provides angle data which are transmitted to an embedded microcontroller which in turn controls the motor driver circuit. A software servo loop controls the motorized legs until perfect leveling is obtained. The servo loop is only active during set-up and installation. I. Method of Monitoring EUT Operation The TMA4A comprises both a single frequency X-band radar (10GHz) and a dual frequency K-band radar (24GHz). The X-band Radar comprises 3 Receiver channels and the K-Band Radar comprises 5 receiver channels. The Radar transmitters continuously illuminates the target, and target reflects the signal which is received by the receiving antennas. The received signals are down converted to base band in a mixer utilizing a LO signals which are coherent with the transmitted signals (Zero-IF principle). Frequency stabilization is provided by means of PLL controlled microwave oscillators. The reference for the PLL (and thus for the microwave oscillators) is a high performance crystal controlled oscillator providing better than ±25ppm overall frequency stability during normal operating conditions. The base band signals are amplified and synchronously digitized in a 16channel, 24bit analog-to-digital converter. The digitized signals are routed to the embedded PC board (SMARC Module from ADLink) piggybacked on the EU where data are processed in real-time. The analyzed data are then routed to the GUI device (Smart phone, Tablet or PC with WLAN of similar) over the WiFi connection. The GUI shows the relevant data and results for the user. For normal operation the is powered by an internal SMART battery Li-ION battery. During normal operation, no external power supply is required, but charging of the battery is provided by means of an external +19VDC supply. The antennas used for transmitting and receiving are identical. The antenna pattern is shaped to maximize the overall loop gain of the system for golf ball trajectories, where the golf ball is launched a couple of meters in front of the radar. An embedded digital camera (Global Digital Star) is used to point out the horizontal reference line from a picture. The camera is only used during setup of the Radar Unit. MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 9 of 233

21 Equipment Configuration During operation, video is streamed to the user through the WiFi channel. The build-in GPS receiver and integrated antenna provides location coordinates for data processing and location tracking purpose. J. Modifications a) Modifications to EUT No modifications were made to the EUT. b) Modifications to Test Standard No modifications were made to the test standard. K. Disposition of EUT The test sample including all support equipment submitted to the Electro-Magnetic Compatibility Lab for testing was returned to upon completion of testing. MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 10 of 233

22 III. Electromagnetic Compatibility Criteria for MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 11 of 233

23 Electromagnetic Compatibility Criteria for Antenna Requirement Test Requirement: : An intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the provisions of this section. The manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited. The structure and application of the EUT were analyzed to determine compliance with Section of the Rules. Section states that the subject device must meet at least one of the following criteria: a.) Antenna must be permanently attached to the unit. b.) Antenna must use a unique type of connector to attach to the EUT. c.) Unit must be professionally installed. Installer shall be responsible for verifying that the correct antenna is employed with the unit. Results: Test Engineer(s): The EUT as tested is compliant the criteria of The EUT has integral antennas. Djed Mouada Test Date(s): October 10, 2016 Gain (db) Type Model Manufacturer Comment 0 Chip Antenna AH104N2450D1-T Taiyo Yuden 2.4GHz antenna 0 Chip Antenna AH104N2450D1-T Taiyo Yuden 5GHz antenna x4 patch antenna array 4x4 patch antenna array Table 7. Antenna List Integrated on PC Integrated on PC Trackman Trackman 10GHz antenna 24GHz antenna MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 12 of 233

24 Electromagnetic Compatibility Criteria for (a) Conducted Emissions Limits Test Requirement(s): (a): For an intentional radiator that is designed to be connected to the public utility (AC) power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or frequencies, within the band 150 khz to 30MHz, shall not exceed the limits in the following table, as measured using a 50 H/50 line impedance stabilization network (LISN). Compliance with the provisions of this paragraph shall be based on the measurement of the radio frequency voltage between each power line and ground at the power terminal. The lower limit applies at the boundary between the frequency ranges. Frequency range (MHz) (a), Conducted Limit (db V) Quasi-Peak Average * Table 8. Conducted Limits for from FCC Part (a) Test Procedure: The EUT was placed on a 0.8 m-high wooden table inside a screen room. The EUT was situated such that the back of the EUT was 0.4 m from one wall of the vertical ground plane, and the remaining sides of the EUT were no closer than 0.8 m from any other conductive surface. The EUT was powered from a 50 /50 H Line Impedance Stabilization Network (LISN). The EMC receiver scanned the frequency range from 150 khz to 30 MHz. Conducted Emissions measurements were made in accordance with ANSI C "Methods and Measurements of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9kHz to 40 GHz". The measurements were performed over the frequency range of 0.15 MHz to 30 MHz using a 50 /50 H LISN as the input transducer to an EMC/field intensity meter. For the purpose of this testing, the transmitter was turned on. Scans were performed with the transmitter on. Test Results: The EUT was compliant with this requirement. Measured emissions were within applicable limits. Test Engineer(s): Djed Mouada Test Date(s): October 20, 2016 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 13 of 233

25 15.207(a) Conducted Emissions Test Results Frequency (MHz) Uncorrected Meter Reading (dbuv) QP Cable Loss (db) Corrected Measurement (dbuv) QP Limit (dbuv) QP Margin (db) QP Uncorrected Meter Reading (dbuv) Avg. Cable Loss (db) Corrected Measurement (dbuv) AVG Limit (dbuv) AVG Table 9. Conducted Emissions, (a), Phase Line, Test Results Margin (db) AVG Plot 1. Conducted Emissions, (a), Phase Line MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 14 of 233

26 15.207(a) Conducted Emissions Test Results Frequency (MHz) Uncorrected Meter Reading (dbuv) QP Cable Loss (db) Corrected Measurement (dbuv) QP Limit (dbuv) QP Margin (db) QP Uncorrected Meter Reading (dbuv) Avg. Cable Loss (db) Corrected Measurement (dbuv) AVG Limit (dbuv) AVG Margin (db) AVG Table 10. Conducted Emissions, (a), Neutral Line, Test Results Plot 2. Conducted Emissions, (a), Neutral Line MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 15 of 233

27 15.207(a) Conducted Emissions Test Setup Photo Photograph 2. Conducted Emissions, (a), Test Setup MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 16 of 233

28 Electromagnetic Compatibility Criteria for (a)(2) 6 db Bandwidth Test Requirements: (a)(2): Operation under the provisions of this section is limited to frequency hopping and digitally modulated intentional radiators that comply with the following provisions: For systems using digital modulation techniques, the EUT may operate in the MHz, MHz and MHz bands. The minimum 6dB bandwidth shall be at least 500 khz. Test Procedure: Test Results The transmitter was on and transmitting at the highest output power. The bandwidth of the fundamental frequency was measured with the spectrum analyzer using a RBW 100KHz and, VBW > RBW. The 6 db Bandwidth was measured and recorded. The measurements were performed on the low, mid and high channels. The EUT was compliant with (a)(2). No anomalies detected. The 6 db Bandwidth was determined from the plots on the following pages. Test Engineer(s): Djed Mouada Test Date(s): October 11, 2016 EUT Attenuator Spectrum Analyzer Figure 3. Block Diagram, Occupied Bandwidth Test Setup MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 17 of 233

29 Occupied Bandwidth Test Results Occupied Bandwidth Carrier Channel Frequency (MHz) Measured 6dB Bandwidth (MHz) Port1 Measured 6dB Bandwidth (MHz)Port2 Low b_mode Mid b_mode High b_mode Low g_mode Mid g_mode High g_mode Low n_mode (20MHz) Mid n_mode (20MHz) Hig n_mode (20MHz) Low n_mode (40MHz) Mid n_mode (40MHz) Hig n_mode (40MHz) Table db Occupied Bandwidth, Test Results MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 18 of 233

30 6 db Occupied Bandwidth Test Results Plot 3. 6 db Occupied Bandwidth, 20M, Ch.2412M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 19 of 233

31 Plot 4. 6 db Occupied Bandwidth, 20M, Ch. 2412M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 20 of 233

32 Plot 5. 6 db Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 21 of 233

33 Plot 6. 6 db Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 22 of 233

34 Plot 7. 6 db Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 23 of 233

35 Plot db Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 24 of 233

36 Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 25 of 233

37 Plot Percent Occupied Bandwidth, 20M, Ch. 2142M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 26 of 233

38 Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 27 of 233

39 Plot Percent Occupied Bandwidth, 20M, Ch.2437M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 28 of 233

40 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 29 of 233

41 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, b mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 30 of 233

42 Plot 15. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 31 of 233

43 Plot 16. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 32 of 233

44 Plot 17. 6dB Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 33 of 233

45 Plot 18. 6dB Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 34 of 233

46 Plot 19. 6dB Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 35 of 233

47 Plot 20. 6dB Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 36 of 233

48 Plot 21. 6dB Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 37 of 233

49 Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 38 of 233

50 Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, g mode, Port2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 39 of 233

51 Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, g mode Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 40 of 233

52 Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 41 of 233

53 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 42 of 233

54 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 43 of 233

55 Plot db Occupied Bandwidth, 20M, Ch. 2412M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 44 of 233

56 Plot db Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 45 of 233

57 Plot db Occupied Bandwidth, 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 46 of 233

58 Plot db Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 47 of 233

59 Plot db Occupied Bandwidth, 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 48 of 233

60 Plot db Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 49 of 233

61 Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 50 of 233

62 Plot Percent Occupied Bandwidth, 20M, Ch. 2412M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 51 of 233

63 Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 52 of 233

64 Plot Percent Occupied Bandwidth, 20M, Ch. 2437M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 53 of 233

65 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 54 of 233

66 Plot Percent Occupied Bandwidth, 20M, Ch. 2462M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 55 of 233

67 Plot 40. 6dB Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 56 of 233

68 Plot 41. 6dB Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 57 of 233

69 Plot 42. 6dB Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 58 of 233

70 Plot 43. 6dB Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 59 of 233

71 Plot 44. 6dB Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 60 of 233

72 Plot 45. 6dB Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 61 of 233

73 Plot percent Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 62 of 233

74 Plot percent Occupied Bandwidth, 40M, Ch. 2422M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 63 of 233

75 Plot percent Occupied Bandwidth, 40M Ch. 2437M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 64 of 233

76 Plot percent Occupied Bandwidth, 40M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 65 of 233

77 Plot percent Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 66 of 233

78 Plot percent Occupied Bandwidth, 40M, Ch. 2452M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 67 of 233

79 Electromagnetic Compatibility Criteria for (b) Peak Power Output Test Requirements: (b): The maximum peak output power of the intentional radiator shall not exceed the following: Digital Transmission Systems (MHz) Output Limit (Watts) Table 12. Output Power Requirements from (b) (c): if transmitting antennas of directional gain greater than 6 dbi are used the peak output power from the intentional radiator shall be reduced below the stated values in the Table 12, as appropriate, by the amount in db that the directional gain of the antenna exceeds 6 dbi. Systems operating in the MHz band and using a point to point application may employ transmitting antennas with directional gain greater than 6 dbi provided the maximum peak output power of the intentional radiator is reduced by 1 db for every 3 db that the directional gain of the antenna exceeds 6 dbi. Systems operating in the MHz band that are used exclusively for fixed, point-topoint operations may employ transmitting antennas with directional gain greater than 6 dbi without any corresponding reduction in transmitter peak output power. Fixed, point-to-point operation excludes the use of point-to-multipoint systems, Omnidirectional applications, and multiple co-located intentional radiators transmitting the same information. The operator of the spread spectrum intentional radiator or, if the equipment is professionally installed, the installer is responsible for ensuring that the system is used exclusively for fixed, point-to-point operations. The instruction manual furnished with the intentional radiator shall contain language in the installation instructions informing the operator and the installer of this responsibility. Test Procedure: Test Results: Test Engineer(s): The transmitter was connected to a calibrated spectrum analyzer. The EUT was measured at the low, mid and high channels of each band at the maximum power level. The EUT was compliant with the Peak Power Output limits of (b). Note that the antenna gain is 0 dbi. Directional Gain = G ANT + 10log(N ANT ) dbi log(2) dbi = 3 dbi Djed Mouada Test Date(s): October 11, 2016 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 68 of 233

80 EUT Attenuator Spectrum Analyzer Figure 4. Peak Power Output Test Setup Channel Port 1 (dbm) Port 2 (dbm) Antenna Gain (dbi) Sum (dbm) Limit (dbm) Margin (dbm) Low b_mode Mid b_mode High b_mode Low g_mode Mid g_mode High g_mode Low n_mode (20MHz) Mid n_mode (20MHz) High n_mode (20MHz) Low n_mode (40MHz) Mid n_mode (40MHz) High n_mode (40MHz) Table 13. Peak Power Output, Test Results MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 69 of 233

81 Peak Power Output Test Results Plot 52. Peak Power Output, Bandwidth 20M, Ch. 2412M, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 70 of 233

82 Plot 53. Peak Power Output, Bandwidth 20M, Ch. 2437M, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 71 of 233

83 Plot 54. Peak Power Output, Bandwidth 20M, Ch. 2462M, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 72 of 233

84 Plot 55. Peak Power Output, Bandwidth 20M, Ch. 2412M, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 73 of 233

85 Plot 56. Peak Power Output, Bandwidth 20M, Ch. 2437M, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 74 of 233

86 Plot 57. Peak Power Output, Bandwidth 20M, Ch. 2462M, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 75 of 233

87 Plot 58. Peak Power Output, Bandwidth 20M, Ch. 2412M, G mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 76 of 233

88 Plot 59. Peak Power Output, Bandwidth 20M, Ch. 2437, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 77 of 233

89 Plot 60. Peak Power Output, Bandwidth 20M, Ch. 2462M, g mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 78 of 233

90 Plot 61. Peak Power Output, Bandwidth 20M, Ch. 2412M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 79 of 233

91 Plot 62. Peak Power Output, Bandwidth 20M, Ch. 2437M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 80 of 233

92 Plot 63. Peak Power Output, Bandwidth 20M, Ch. 2462M, g mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 81 of 233

93 Plot 64. Peak Power Output, Bandwidth 20M, Ch. 2412M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 82 of 233

94 Plot 65. Peak Power Output, Bandwidth 20M, Ch. 2437M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 83 of 233

95 Plot 66. Peak Power Output, Bandwidth 20M, Ch. 2462M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 84 of 233

96 Plot 67. Peak Power Output, Bandwidth 20M, Ch. 2412M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 85 of 233

97 Plot 68. Peak Power Output, Bandwidth 20M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 86 of 233

98 Plot 69. Peak Power Output, Bandwidth 20M, Ch. 2462M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 87 of 233

99 Plot 70. Peak Power Output, Bandwidth 40M, Ch. 2422M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 88 of 233

100 Plot 71. Peak Power Output, Bandwidth 40M, Ch. 2437M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 89 of 233

101 Plot 72. Peak Power Output, Bandwidth 40M, Ch. 2452M, n mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 90 of 233

102 Plot 73. Peak Power Output, Bandwidth 40M, Ch. 2422M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 91 of 233

103 Plot 74. Peak Power Output, Bandwidth 40M, Ch. 2437M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 92 of 233

104 Plot 75. Peak Power Output, Bandwidth 40M, Ch. 2452M, n mode, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 93 of 233

105 Electromagnetic Compatibility Criteria for (d) Radiated Spurious Emissions Requirements and Band Edge Test Requirements: (d); : Emissions outside the frequency band (d): 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 that in the 100 khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement. Attenuation below the general limits specified in (a) is not required. In addition, radiated emissions which fall in the restricted bands, as defined in (a), must also comply with the radiated emission limits specified in (a) (a): Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below: MHz MHz MHz GHz ( 2 ) Table 14. Restricted Bands of Operation 1 Until February 1, 1999, this restricted band shall be MHz. 2 Above 38.6 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 94 of 233

106 Test Requirement(s): (a): Except as provided elsewhere in this subpart, the emissions from an intentional radiator shall not exceed the field strength levels specified in Table 15. Frequency (MHz) (a),Radiated Emission Limits (db 3m Above Table 15. Radiated Emissions Limits Calculated from FCC Part 15, (a) Test Procedures: Test Results: Test Engineer(s): The transmitter was turned on. Measurements were performed of the low, mid and high Channels. The EUT was rotated orthogonally through all three axes. Plots shown are corrected for both antenna correction factor and distance and compared to a 3 m limit line. Only noise floor was measured above 18 GHz. The EUT was compliant with the Radiated Spurious Emission limits of (d). Measured emissions were within applicable limits. The following plots used to demonstrate compliance are corrected field strength in dbµv/m. Djed Mouada Test Date(s): October 11, 2016 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 95 of 233

107 Radiated Spurious Emissions Test Results Plot 76. Average Spurious Emission 1-7GHz, Bandwidth 20Mb, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 96 of 233

108 Plot 77. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 97 of 233

109 Plot 78. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 98 of 233

110 Plot 79. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 99 of 233

111 Plot 80. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 100 of 233

112 Plot 81. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 101 of 233

113 Plot 82. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 102 of 233

114 Plot 83. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 103 of 233

115 Plot 84. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 104 of 233

116 Plot 85. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 105 of 233

117 Plot 86. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 106 of 233

118 Plot 87. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 107 of 233

119 Plot 88. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 108 of 233

120 Plot 89. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 109 of 233

121 Plot 90. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 110 of 233

122 Plot 91. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 111 of 233

123 Plot 92. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2437M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 112 of 233

124 Plot 93. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 113 of 233

125 Plot 94. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 114 of 233

126 Plot 95. Average Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2437M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 115 of 233

127 Plot 96. Average Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2462M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 116 of 233

128 Plot 97. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 117 of 233

129 Plot 98. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2437M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 118 of 233

130 Plot 99. Peak Spurious Emissions 7-18GHz, Bandwidth 20M, Ch. 2462M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 119 of 233

131 Plot 100. Average Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2412M, n mode, AVG MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 120 of 233

132 Plot 101. Average Spurious Emission 1-7Ghz, Bandwidth 20M Ch. 2422M, n mode, AVG MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 121 of 233

133 Plot 102. Average Spurious Emission 1-7Ghz, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 122 of 233

134 Plot 103. Peak Spurious Emission 1-7Ghz, Bandwidth 20M, Ch. 2412M, n mode, Peak MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 123 of 233

135 Plot 104. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2422M, n mode, Peak MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 124 of 233

136 Plot 105. Peak Spurious Emission 1-7GHz, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 125 of 233

137 Plot 106. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 126 of 233

138 Plot 107. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 127 of 233

139 Plot 108. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 128 of 233

140 Plot 109. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2412M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 129 of 233

141 Plot 110. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 130 of 233

142 Plot 111. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 131 of 233

143 Plot 112. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 132 of 233

144 Plot 113. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 133 of 233

145 Plot 114. Average Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 134 of 233

146 Plot 115. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 135 of 233

147 Plot 116. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 136 of 233

148 Plot 117. Peak Spurious Emission 1-7GHz, Bandwidth 40M, Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 137 of 233

149 Plot 118. Average Spurious Emssion 7-18GHz, Bandwidth 20M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 138 of 233

150 Plot 119. Average Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 139 of 233

151 Plot 120. Peak Spurious Emission 7-18GHz, Bandwidth 20M Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 140 of 233

152 Plot 121. Peak Spurious Emission, 7-18GHz, Bandwidth 20M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 141 of 233

153 Plot 122. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2437M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 142 of 233

154 Plot 123. Peak Spurious Emission 7-18GHz, Bandwidth 20M, Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 143 of 233

155 Radiated Band Edge Measurements Test Procedures: The transmitter was turned on. Measurements were performed of the low and high Channels. The EUT was rotated orthogonally through all three axes. Plots shown are corrected for both antenna correction factor and distance and compared to a 3 m limit line. Plot 124. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 144 of 233

156 Plot 125. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 145 of 233

157 Plot 126. Average Band Edge Spurious, Bandwidth 20M, Ch. 2412M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 146 of 233

158 Plot 127. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, b mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 147 of 233

159 Plot 128. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 148 of 233

160 Plot 129. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 149 of 233

161 Plot 130. Average Edge Spurious, Bandwidth 20M, Ch. 2412M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 150 of 233

162 Plot 131. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, g mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 151 of 233

163 Plot 132. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2412M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 152 of 233

164 Plot 133. Peak Band Edge Spurious, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 153 of 233

165 Plot 134. Average Band Edge Spurious, Bandwidth 20M, Ch. 2412M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 154 of 233

166 Plot 135. Average Band Edge Spurious, Bandwidth 20M, Ch. 2462M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 155 of 233

167 Plot 136. Average Band Edge Spurious, Bandwidth 40M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 156 of 233

168 Plot 137. Average Band Edge Spurious, Bandwidth 40M, Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 157 of 233

169 Plot 138. Peak Band Edge Spurious, Bandwidth 40M, Ch. 2422M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 158 of 233

170 Plot 139. Peak Band Edge Spurious, Bandwidth 40M, Ch. 2452M, n mode MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 159 of 233

171 Radiated Spurious Emissions Test Setup Photograph 3. Radiated Spurious Emissions, Test Setup, Below 1GHz Photograph 4. Radiated Spurious Emissions, Test Setup, Above 1GHz MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 160 of 233

172 Electromagnetic Compatibility Criteria for (d) RF Conducted Spurious Emissions Requirements and Band Edge Test Requirement: Test Procedure: (d) 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 that in the 100 khz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 db instead of 20 db. For intentional radiators with a digital device portion which operates below 10 GHz, the spectrum was investigated as per 15.33(a)(1) and 15.33(a)(4); i.e., the lowest RF signal generated or used in the device up to the 10 th harmonic of the highest fundamental frequency or to 40 GHz, whichever is lower. Since the EUT had an integral antenna, conducted measurements could not be performed. Measurements needed to be taken radiated. An antenna was located 3 m away from the EUT and plots were taken. The EUT was rotated through all three orthogonal axes. The plots were corrected for both antenna correction factor and cable lost. See following pages for detailed test results with RF Conducted Spurious Emissions. Test Results: The EUT was compliant with the Conducted Spurious Emission limits of (d). Measured emissions were withing applicable limits. Test Engineer(s): Djed Mouada Test Date(s): October 11, 2016 EUT Attenuator Spectrum Analyzer Figure 5. Block Diagram, Conducted Spurious Emissions Test Setup MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 161 of 233

173 Conducted Spurious Emissions Test Results 14:14:55 Sep 16, 2016 R T Ref 14 dbm #Peak Log 10 db/ Offst 10 db 1 #Atten 26 db Mkr GHz 8.19 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 140. Conducted Spurious Emissions, Ch. 2412, b mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 162 of 233

174 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:14:38 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 3.59 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 141. Conducted Spurious Emissions, Ch. 2412, b mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 163 of 233

175 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:17:24 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 8.02 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 142. Conducted Spurious Emissions, Ch. 2437, b mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 164 of 233

176 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:16:28 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 8.72 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 143. Conducted Spurious Emissions, Ch. 2437, b mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 165 of 233

177 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:18:44 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 8.37 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 144. Conducted Spurious Emissions, Ch. 2462, b mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 166 of 233

178 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:24:17 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 8.72 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 145. Conducted Spurious Emissions, Ch. 2462, b mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 167 of 233

179 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:23:22 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 1.86 dbm LgAv W1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 146. Conducted Spurious Emissions, Ch. 2412, g mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 168 of 233

180 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:14:03 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 9.07 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 147. Conducted Spurious Emissions, Ch. 2412, g mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 169 of 233

181 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:25:30 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 4.81 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 148. Conducted Spurious Emissions, Ch. 2437, g mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 170 of 233

182 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:17:23 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 8.60 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 149. Conducted Spurious Emissions, Ch. 2437, g mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 171 of 233

183 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:26:48 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 2.60 dbm LgAv W1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 150. Conducted Spurious Emissions, Ch. 2462, g mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 172 of 233

184 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:22:29 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 7.70 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 151. Conducted Spurious Emissions, Ch. 2462, g mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 173 of 233

185 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:28:04 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 3.15 dbm LgAv W1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 152. Conducted Spurious Emissions, Ch. 2412, n mode, 20MHz, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 174 of 233

186 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:09:51 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 4.32 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 153. Conducted Spurious Emissions, Ch. 2412, n mode, 20MHz, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 175 of 233

187 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:30:01 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 2.33 dbm LgAv W1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 154. Conducted Spurious Emissions, Ch. 2437, n mode, 20MHz, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 176 of 233

188 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:17:58 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 155. Conducted Spurious Emissions, Ch. 2437, n mode, 20 MHz, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 177 of 233

189 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:33:52 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 3.45 dbm LgAv W1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 156. Conducted Spurious Emissions, Ch. 2462, n mode, 20MHz, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 178 of 233

190 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 15:21:10 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 9.59 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 157.Conducted Spurious Emissions, Ch. 2462, n mode, 20MHz, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 179 of 233

191 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:45:26 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz dbm LgAv W1 S2 S3 FS A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 158. Conducted Spurious Emissions, 40MHz, Ch. 2422MHz, 100KHz, n mode, 30dBc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 180 of 233

192 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:59:19 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 1.91 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 159. Conducted Spurious Emissions, 40MHz, Ch. 2422MHz, 100KHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 181 of 233

193 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:49:22 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 1.56 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 160. Conducted Spurious Emissions, 40MHz, Ch. 2437MHz, 100KHz, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 182 of 233

194 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:58:31 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 1.90 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 161. Conducted Spurious Emissions, 40MHz, Ch. 2437MHz, 100MHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 183 of 233

195 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:51:58 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 4.29 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 162. Conducted Spurious Emissions, 40MHz, Ch. 2452MHz, 100MHz, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 184 of 233

196 Ref 14 dbm #Peak Log 10 db/ Offst 10 db 14:53:38 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz 3.89 dbm LgAv M1 S2 S3 FC A AA (f): FTun Sw p Start 30 MHz #Res BW 100 khz #VBW 300 khz Stop GHz Sw eep s (601 pts) Plot 163. Conducted Spurious Emissions, 40MHz, Ch. 2452MHz, 100KHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 185 of 233

197 Conducted Band Edge Test Results Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:32:48 Sep 16, 2016 R T #Atten 26 db 1 Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 60 MHz Sw eep 5.76 ms (601 pts) Plot 164. Conducted Band Edge, Ch. 2412, b mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 186 of 233

198 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:35:10 Sep 16, 2016 R T #Atten 26 db 1 Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 60 MHz Sw eep 5.76 ms (601 pts) Plot 165. Conducted Band Edge, Ch. 2412, b mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 187 of 233

199 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 1 16:14:11 Sep 16, 2016 R T #Atten 26 db Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 48.5 MHz Sw eep 4.64 ms (601 pts) Plot 166. Conducted Band Edge, Ch. 2462, b mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 188 of 233

200 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 1 16:13:46 Sep 16, 2016 R T #Atten 26 db Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 48.5 MHz Sw eep 4.64 ms (601 pts) Plot 167. Conducted Band Edge, Ch. 2462, b mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 189 of 233

201 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:51:02 Sep 16, 2016 R T #Atten 26 db 1 Mkr GHz 0.59 dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz Span 60 MHz #VBW 300 khz Sw eep 5.76 ms (601 pts) Plot 168. Conducted Band Edge, Ch. 2412, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 190 of 233

202 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:49:38 Sep 16, 2016 R T #Atten 26 db 1 Mkr GHz 0.44 dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz Span 60 MHz #VBW 300 khz Sw eep 5.76 ms (601 pts) Plot 169. Conducted Band Edge, Ch. 2412, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 191 of 233

203 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 16:07:24 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 48.5 MHz Sw eep 4.64 ms (601 pts) Plot 170. Conducted Band Edge, Ch. 2462, 20MHz, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 192 of 233

204 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 16:06:57 Sep 16, 2016 R T 1 #Atten 26 db Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span 48.5 MHz Sw eep 4.64 ms (601 pts) Plot 171. Conducted Band Edge, Ch. 2462, 20MHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 193 of 233

205 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:53:49 Sep 16, 2016 R T #Atten 26 db 1 Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span MHz Sw eep 6.92 ms (601 pts) Plot 172. Conducted Band Edge, Ch. 2412, 40MHz, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 194 of 233

206 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:52:56 Sep 16, 2016 R T #Atten 26 db Mkr GHz dbm 1 M1 S2 S3 FC A AA (f): FTun Sw p 2 Center GHz #Res BW 100 khz #VBW 300 khz Span MHz Sw eep 6.92 ms (601 pts) Plot 173. Conducted Band Edge, Ch. 2412, 40MHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 195 of 233

207 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:56:04 Sep 16, 2016 R T #Atten 26 db 2 Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 1 Center GHz #Res BW 100 khz #VBW 300 khz Span MHz Sw eep 6.92 ms (601 pts) Plot 174. Conducted Band Edge, Ch. 2452, 40 MHz, n mode, 30 dbc, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 196 of 233

208 Ref 26 dbm #Peak Log 10 db/ Offst 10 db Dl dbm LgAv 15:56:48 Sep 16, 2016 R T #Atten 26 db 2 Mkr GHz dbm M1 S2 S3 FC A AA (f): FTun Sw p 1 Center GHz #Res BW 100 khz #VBW 300 khz Span MHz Sw eep 6.92 ms (601 pts) Plot 175. Conducted Band Edge, Ch. 2452, 40MHz, n mode, 30 dbc, Port 2 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 197 of 233

209 Electromagnetic Compatibility Criteria for (e) Peak Power Spectral Density Test Requirements: (e): For digitally modulated systems, the peak power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8dBm in any 3 khz band during any time interval of continuous transmission. Test Procedure: Test Results: The transmitter was connected directly to a Spectrum Analyzer through an attenuator. The power level was set to the maximum level. The RBW was set to 3 khz and a VBW set to 9 khz or greater. The spectrum analyzer was set to an auto sweep time and a peak detector was used. Measurements were carried out at the low, mid and high channels. The EUT was compliant with the peak power spectral density limits of (e). The peak power spectral density was determined from plots on the following page(s). Test Engineer: Djed Mouada Test Date: October 11, 2016 EUT Attenuator Spectrum Analyzer Figure 6. Block Diagram, Peak Power Spectral Density Test Setup MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 198 of 233

210 Peak Power Spectral Density Test Results Channel Port 1 (dbm) Power Spectral Density Port 2 (dbm) Sum (dbm) Limit (dbm) Margin Low b_mode Mid b_mode High b_mode Low g_mode Mid g_mode High g_mode Low n_mode (20MHz) Mid n_mode (20MHz) Hig n_mode (20MHz) Low n_mode (40MHz) Mid n_mode (40MHz) Hig n_mode (40MHz) Table 16. Peak Power Spectral Density, Test Results MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 199 of 233

211 Peak Power Spectral Density Plot 176. Power Spectral Density, Bandwidth 20M, Ch. 2412M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 200 of 233

212 Plot 177. Power Spectral Density, Bandwidth 20M, Ch. 2437M, b mode, Port 1 MET Report: EMC88710-FCC247 Rev , MET Laboratories, Inc. Page 201 of 233

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