FCC DFS Test Report. : Technicolor Connected Home USA LLC 5030 Sugarloaf Parkway,Building 6,Lawrenceville Georgia,United States,30044

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1 FCC DFS Test Report Equipment Brand Name Model No. FCC ID : DOCSIS Cable Gateway : Technicolor : CGM4140COM, CGM4141COX : G95CGM414X Standard : 47 CFR FCC Part Frequency Range : 5250 MHz 5350 MHz 5470 MHz 5725 MHz Applicant / Manufacturer Operate Mode : Technicolor Connected Home USA LLC 5030 Sugarloaf Parkway,Building 6,Lawrenceville Georgia,United States,30044 : Master The product sample received on May 05, 2017 and completely tested on Sep. 25, We, SPORTON, would like to declare that the tested sample has been evaluated in accordance with the procedures given in KDB D02 UNII DFS Compliance Procedures New Rules v02 and shown compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval of SPORTON INTERNATIONAL INC., the test report shall not be reproduced except in full. Phoenix Chen / SPORTON INTERNATIONAL INC. SPORTON INTERNATIONAL INC. Page No. : 1 of 187

2 Table of Contents 1 GENERAL DESCRIPTION Information Accessories Support Equipment Testing Applied Standards Testing Location Information TEST CONFIGURATION OF EUT Test Channel Frequencies Configuration The Worst Case Measurement Configuration DYNAMIC FREQUENCY SELECTION (DFS) TEST RESULT General DFS Information Radar Test Calibration UNII Detection Bandwidth Channel Availability Check (CAC) In-service Monitoring Statistical Performance Check TEST EQUIPMENT AND CALIBRATION DATA MEASUREMENT UNCERTAINTY APPENDIX A. TEST PHOTOS SPORTON INTERNATIONAL INC. Page No. : 2 of 187

3 Summary of Test Result Conformance Test Specifications Report Clause Ref. Std. Clause Description Limit Result 3.3 KDB DFS: UNII Detection Bandwidth Measurement 100% of the 99% BW Complied 3.4 KDB DFS: Initial Channel Availability Check Time CAC 60 sec Complied 3.4 KDB DFS: Radar at the Beginning of the Channel Availability Check Time Detection Threshold: -63 dbm Complied 3.4 KDB DFS: Radar at the End of the Channel Availability Check Time Detection Threshold: -63 dbm Complied 3.5 KDB DFS: In-Service Monitoring for Channel Move Time (CMT) CMT 10sec Complied 3.5 KDB DFS: In-Service Monitoring for Channel Closing Transmission Time (CCTT) CCTT 60 ms starting at CMT 200ms Complied 3.5 KDB DFS: In-Service Monitoring for Non-Occupancy Period (NOP) NOP 30 min Complied 3.6 KDB DFS: Statistical Performance Check Table 5-7 (KDB ) Complied KDB User Access Restrictions DFS controls Complied SPORTON INTERNATIONAL INC. Page No. : 3 of 187

4 Revision History Report No. Version Description Issued Date FZ Rev. 01 Initial issue of report Sep. 28, 2017 SPORTON INTERNATIONAL INC. Page No. : 4 of 187

5 1 General Description 1.1 Information RF General Information Specification Items Description Product Type Radio Type Power Type Modulation WLAN (8TX, 8RX) Intentional Transceiver From AC adapter IEEE a: OFDM (BPSK / QPSK / 16QAM / 64QAM) IEEE n/ac: see the below table Data Rate (Mbps) IEEE a: OFDM (6/9/12/18/24/36/48/54) IEEE n/ac: see the below table Channel Bandwidth 20/40/80/160 MHz operating channel bandwidth Master Operating Mode Client with radar detection Client without radar detection Communication Mode IP Based (Load Based) Frame Based TPC Function With TPC Without TPC Weather Band (5600~5650MHz) With 5600~5650MHz Without 5600~5650MHz Power-on cycle 20MHz: Requires 40.5 seconds to complete its power-on cycle. Software / Firmware Version 40MHz: Requires seconds to complete its power-on cycle. 80MHz: Requires seconds to complete its power-on cycle. 160MHz: Requires seconds to complete its power-on cycle. b-v Note: EUT employ a TPC mechanism and TPC have the capability to operate at least 6 db below highest RF output power. Antenna & Bandwidth Antenna Eight (TX) Band width Mode 20 MHz 40 MHz 80 MHz 160 MHz IEEE a V X X X IEEE n V V X X IEEE ac V V V V SPORTON INTERNATIONAL INC. Page No. : 5 of 187

6 IEEE 11n/ac Spec. Protocol Transmit Chains (NTX) Data Rate / MCS n (HT20) 8 MCS n (HT40) 8 MCS ac (VHT20) 8 MCS 0-8/Nss ac (VHT40) 8 MCS 0-9/Nss ac (VHT80) 8 MCS 0-9/Nss ac (VHT160) 8 MCS 0-9/Nss1-8 Note 1: IEEE Std n modulation consists of HT20 and HT40 (HT: High Throughput). Then EUT support HT20 and HT40. Note 2: IEEE Std ac modulation consists of VHT20, VHT40, VHT80 and VHT160 (VHT: Very High Throughput). Then EUT support VHT20, VHT40, VHT80 and VHT160. Note 3: Modulation modes consist of below configuration: 11a: IEEE a, HT20/HT40: IEEE n, VHT20/VHT40/VHT80: IEEE ac SPORTON INTERNATIONAL INC. Page No. : 6 of 187

7 1.1.2 Antenna Information Antenna gain list for PSD and BF Mode/Directional gain(dbi) 5200MHz(Band1&2) 5500MHz(Band3) 5700MHz(Band4) 8T1S T2S Antenna gain list for Power Mode/Directional 5200MHz(Band1&2) 5500MHz(Band3) 5700MHz(Band4) gain(dbi) 1& & & & Note: The Signals support CDD and correlated, and transmits simultaneously in multiple channels in single or multiple frequency bands. If all antennas have the same gain, G ANT : Directional gain = G ANT + 10 log(n ANT /N SS ) dbi, where N SS = the number of independent spatial streams of data and G ANT is the antenna gain in dbi. (This formula can also be applied when antennas have different gains if the highest antenna gain is substituted for G ANT.) For power measurements on IEEE devices, Array Gain = 0 db (i.e., no array gain) for N ANT 4; Array Gain = 0 db (i.e., no array gain) for channel widths 40 MHz for any N ANT ; Array Gain = 5 log(n ANT /N SS ) db or 3 db, whichever is less, for 20-MHz channel widths with N ANT 5. SPORTON INTERNATIONAL INC. Page No. : 7 of 187

8 1.1.3 DFS Band Carrier Frequencies There are three bandwidth systems. For 20MHz bandwidth systems, use Channel 52, 56, 60, 64, 100, 104, 108, 112, 116, 120, 124, 128, 132, 136, 140. For 40MHz bandwidth systems, use Channel 54, 62, 102, 110, 118, 126, 134. For 80MHz bandwidth systems, use Channel 58, 106, 122. For 160MHz bandwidth systems, use Channel 50, 114. Frequency Band Channel No. Frequency Channel No. Frequency MHz ~5350 MHz Band MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz 5470~5725 MHz Band MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz SPORTON INTERNATIONAL INC. Page No. : 8 of 187

9 1.2 Accessories Accessories Power Cable Power Cord 1.5 meter, non-shielded cable In/Out door indoor Note: Regarding to more detail and other information, please refer to user manual. 1.3 Support Equipment Support Equipment No. Equipment Brand Name Model Name FCC ID 1 Client(Slave) Linksys AE6000 Q87-AE NoteBook DELL Latitude E Adapter for NB DELL FA90PSO-00-4 NoteBook DELL Latitude E Adapter for NB DELL HA65NM Testing Applied Standards According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards: KDB D02 UNII DFS Compliance Procedures New Rules v Testing Location Information Testing Location HWA YA ADD : No. 52, Huaya 1st Rd., Guishan Dist., Taoyuan City, Taiwan (R.O.C.) TEL : FAX : Test site Designation No. TW1190 with FCC. JHUBEI ADD : No.8, Lane 724, Bo-ai St., Jhubei City, HsinChu County 302, Taiwan, R.O.C. TEL : FAX : Test site Designation No. TW0006 with FCC. Test Condition Test Site No. Test Engineer Test Environment Test Date DFS Site DFS03-HY Dexter 26.4 C / 62.7% 25/Sep/2017 SPORTON INTERNATIONAL INC. Page No. : 9 of 187

10 2 Test Configuration of EUT 2.1 Test Channel Frequencies Configuration Test Channel Frequencies Configuration IEEE Std ac (VHT20) ac (VHT40) ac (VHT80) ac (VHT160) Test Channel Freq MHz 5510 MHz 5530 MHz 5570 MHz 2.2 The Worst Case Measurement Configuration The Worst Case Mode for Following Conformance Tests Tests Item Test Condition Modulation Mode Dynamic Frequency Selection (DFS) Conducted measurement at transmit chains The EUT shall be configured to operate at the highest transmitter output power setting. If more than one antenna assembly is intended for this power setting, the gain of the antenna assembly with the lowest gain shall be used ac (VHT20), ac (VHT40), ac (VHT80), ac (VHT160) SPORTON INTERNATIONAL INC. Page No. : 10 of 187

11 3 Dynamic Frequency Selection (DFS) Test Result 3.1 General DFS Information DFS Parameters Table D.1: DFS requirement values Parameter Value Non-occupancy period Channel Availability Check Time Minimum 30 minutes 60 seconds Channel Move Time 10 seconds (Note 1). Channel Closing Transmission Time 200 milliseconds + an aggregate of 60 milliseconds over remaining 10 second periods. (Notes 1 and 2). U-NII Detection Bandwidth Minimum 100% of the 99% power bandwidth (Note 3). Note 1: Channel Move Time and the Channel Closing Transmission Time should be performed with Radar Type 0. The measurement timing begins at the end of the Radar Type 0 burst. Note 2: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent control signals required to facilitate Channel changes (an aggregate of 60 milliseconds) during the remainder of the 10 second period. The aggregate duration of control signals will not count quiet periods in between transmissions. Note 3: During the U-NII Detection Bandwidth detection test, radar type 0 is used and for each frequency step the minimum percentage of detection is 90%. Measurements are performed with no data traffic. Table D.2: Interference threshold values Maximum Transmit Power EIRP 200 mw EIRP < 200 mw and PSD < 10dBm/MHz EIRP < 200 mw and PSD 10dBm/MHz Value (see note) -64 dbm -62 dbm -64 dbm Note 1: This is the level at the input of the receiver assuming a 0 dbi receive antenna. Note 2: Throughout these test procedures an additional 1 db has been added to the amplitude of the test transmission waveforms to account for variations in measurement equipment. This will ensure that the test signal is at or above the detection threshold level to trigger a DFS response. Note3: EIRP is based on the highest antenna gain. For MIMO devices refer to KDB Publication D01. SPORTON INTERNATIONAL INC. Page No. : 11 of 187

12 3.1.2 Applicability of DFS Requirements Prior to Use of a Channel DFS Operational mode Requirement Master Client without radar detection Client with radar detection Non-Occupancy Period Yes Not required (See the note) Yes DFS Detection Threshold Yes Not required Yes Channel Availability Check Time Yes Not required Not required U-NII Detection Bandwidth Yes Not required Yes Note : According to KDB D03 Client Without DFS New Rules v01r02 (b) 6."An analyzer plot that contains a single 30-minute sweep on the original channel " Applicability of DFS Requirements during Normal Operation DFS Operational mode Requirement Master Client without radar detection Client with radar detection DFS Detection Threshold Yes Not required Yes Channel Closing Transmission Time Yes Yes Yes Channel Move Time Yes Yes Yes U-NII Detection Bandwidth Yes Not required Yes Additional requirements for devices with multiple bandwidth modes Master Device or Client with Radar Detection Client Without Radar Detection U-NII Detection Bandwidth and Statistical Performance Check Channel Move Time and Channel Closing Transmission Time All BW modes must be tested Test using widest BW mode available Not required Test using the widest BW mode available for the link All other tests Any single BW mode Not required Note: Frequencies selected for statistical performance check (Section 7.8.4) should include several frequencies within the radar detection bandwidth and frequencies near the edge of the radar detection bandwidth. For devices it is suggested to select frequencies in each of the bonded 20 MHz channels and the channel center frequency. SPORTON INTERNATIONAL INC. Page No. : 12 of 187

13 3.1.4 User Access Restrictions User Access Restrictions DFS controls (hardware or software) related to radar detection are NOT accessible to the user. Manufacturer statement confirming that information regarding the parameters of the detected Radar s is not available to the end user Channel Loading/Data Streaming The data file (MPEG-4) has been transmitting in a streaming mode. Software to ping the client is permitted to simulate data transfer with random ping intervals. Minimum channel loading of approximately 17%. Unicast protocol has been used. SPORTON INTERNATIONAL INC. Page No. : 13 of 187

14 3.2 Radar Test Calibration Short Pulse Radar Test s Radar Type (µsec) SPORTON INTERNATIONAL INC. Page No. : 14 of 187 PRI (µsec) Pulses Minimum Percentage of Successful Detection Minimum Trials See Note 1 See Note 1 1A 1 1B 1 15 unique PRI in KDB D02 Table 5a 15 unique PRI within , Excluding 1A PRI Roundup PRI 6 60% 15 60% % % % 30 Aggregate (Radar Types 1-4) 80% 120 Note 1: Short Pulse Radar Type 0 should be used for the detection bandwidth test, channel move time, and channel closing time tests. A minimum of 30 unique waveforms are required for each of the short pulse radar types 1 through 4. If more than 30 waveforms are used for short pulse radar types 1 through 4, then each additional waveform must also be unique and not repeated from the previous waveforms. The aggregate is the average of the percentage of successful detections of short pulse radar types Long Pulse Radar Test Radar Type Pulse Width (µsec) Chirp Width PRI (µsec) Pulses per s Minimum Percentage of Successful Detection Minimum Trials % 30 Each waveform is defined as follows: The transmission period for the Long Pulse Radar test signal is 12 seconds. There are a total of 8 to 20 s in the 12 second period, with the number of s being randomly chosen. This number is Count. Each consists of 1 to 3 pulses, with the number of pulses being randomly chosen. Each within the 12 second sequence may have a different number of pulses. The pulse width is between 50 and 100 microseconds, with the pulse width being randomly chosen. Each pulse within a will have the same pulse width. Pulses in different s may have different pulse widths. Each pulse has a linear FM chirp between 5 and 20 MHz, with the chirp width being randomly chosen. Each pulse within a transmission period will have the same chirp width. The chirp is centered on the pulse. For example, with a radar frequency of 5300 MHz and a 20 MHz chirped signal, the chirp starts at 5290 MHz and ends at 5310 MHz. If more than one pulse is present in a, the time between the pulses will be between 1000 and 2000 microseconds, with the time being randomly chosen. If three pulses are present in a, the time

15 between the first and second pulses is chosen independently of the time between the second and third pulses. The 12 second transmission period is divided into even intervals. The number of intervals is equal to Count. Each interval is of length (12,000,000 / Count) microseconds. Each interval contains one. The start time for the, relative to the beginning of the interval, is between 1 and [(12,000,000 / Count) (Total Length) + (One Random PRI Interval)] microseconds, with the start time being randomly chosen. The step interval for the start time is 1 microsecond. The start time for each is chosen independently Frequency Hopping Radar Test Radar Type Pulse Width (µsec) PRI (µsec) Pulses per Hop Hopping Rate (khz) Hopping Sequence Length (ms) Minimum Percentage of Successful Detection Minimum Trials % 30 The FCC Type 6 waveform uses a static waveform with 100 bursts in the instruments ARB. In addition, the RF list mode is operated with a list containing 100 frequencies from a randomly generated list and it had be ensured that at least one of the random frequencies falls into the UNII Detection Bandwidth of the DUT. Each burst from the waveform file initiates a trigger pulse at the beginning that switches the RF list from one item to the next one DFS Threshold Level DFS Threshold Level DFS Threshold level: -63 dbm at the antenna connector in front of the antenna The Interference Radar Detection Threshold Level is is -64 dbm+ 0 [dbi] + 1 db = -63 dbm. That had been taken into account the output power range and antenna gain Calibration Setup Master Radiated Calibration Setup SPORTON INTERNATIONAL INC. Page No. : 15 of 187

16 3.2.6 Radar calibration Plot Modulation Mode: ac (VHT20) Test Frequency: 5500 MHz Radar #0 DFS detection threshold level Radar #1 DFS detection threshold level SPORTON INTERNATIONAL INC. Page No. : 16 of 187

17 Radar #2 DFS detection threshold level Radar #3 DFS detection threshold level SPORTON INTERNATIONAL INC. Page No. : 17 of 187

18 Radar #4 DFS detection threshold level Radar #5 DFS detection threshold level SPORTON INTERNATIONAL INC. Page No. : 18 of 187

19 Radar #6 DFS detection threshold level Test Setup A spectrum analyzer is used as a monitor to verify that the EUT has vacated the Channel within the (Channel Closing Transmission Time and Channel Move Time, and does not transmit on a Channel during the Non-Occupancy Period after the detection and Channel move. Master Radiated Measurement SPORTON INTERNATIONAL INC. Page No. : 19 of 187

20 3.2.8 Data traffic Plot EUT Data traffic Plot Modulation Mode: ac (VHT20) Test Frequency: 5500 MHz Client Data Traffic Plot Modulation Mode: ac (VHT20) Test Frequency: 5500 MHz SPORTON INTERNATIONAL INC. Page No. : 20 of 187

21 Without Data Traffic Plot Modulation Mode: ac (VHT20) Test Frequency: 5500 MHz SPORTON INTERNATIONAL INC. Page No. : 21 of 187

22 3.3 UNII Detection Bandwidth UNII Detection Bandwidth Limit Channel Bandwidth 99% Occupied Bandwidth UNII Detection Bandwidth Min. Limit UNII Detection Bandwidth is minimum 100% of the 99% power bandwidth. A single radar is generated for a minimum of 10 trials, and the response of the UUT is noted. The UUT must detect the Radar 90% or more of the time Measuring Instruments Refer a test equipment and calibration data table in this test report Test Procedures Test Method During the U-NII Detection Bandwidth detection test, radar type 0 is used and for each frequency step the minimum percentage of detection is 90 percent. Measurements are performed with no data traffic. The EUT is set up as a standalone device (no associated Client and no traffic). The radar frequency is increased in 1 MHz steps, repeating the above test sequence, until the detection rate falls below 90%. The highest frequency at which detection is greater than or equal to 90% is denoted as F H. The radar frequency is decreased in 1 MHz steps, repeating the above test sequence, until the detection rate falls below 90%. The lowest frequency at which detection is greater than or equal to 90% is denoted as F L. UNII Detection Bandwidth = F H - F L. SPORTON INTERNATIONAL INC. Page No. : 22 of 187

23 3.3.4 Test Result of UNII Detection Bandwidth EUT Frequency=5500 MHz Channel Bandwidth 20 DFS Detection Trials (1=Detection, 0= No Detection) Radar Frequency Detection Rate (%) Radar Type 0-Detection Bandwidth = (FH-FL) = (5515MHz-5486MHz)= 27 UNII Detection Bandwidth Min. Limit = 18 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 23 of 187

24 EUT Frequency=5510 MHz Channel Bandwidth 40 DFS Detection Trials (1=Detection, 0= No Detection) Radar Frequency Detection Rate (%) Radar Type 0-Detection Bandwidth = (FH-FL) = (5535MHz-5485MHz)= 48 UNII Detection Bandwidth Min. Limit = 37 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 24 of 187

25 EUT Frequency=5530 MHz Channel Bandwidth 80 DFS Detection Trials (1=Detection, 0= No Detection) Radar Frequency Detection Rate (%) Radar Type 0-Detection Bandwidth = (FH-FL) = (5580MHz-5485MHz)= 94 UNII Detection Bandwidth Min. Limit = 76 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 25 of 187

26 EUT Frequency=5570 MHz Channel Bandwidth 160 DFS Detection Trials (1=Detection, 0= No Detection) Radar Frequency Detection Rate (%) Radar Type 0-Detection Bandwidth = (FH-FL) = (5580MHz-5485MHz)= 177 UNII Detection Bandwidth Min. Limit = 155 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 26 of 187

27 3.4 Channel Availability Check (CAC) Channel Availability Check Limit Channel Availability Check Limit The EUT shall perform a Channel Availability Check to ensure that there is no radar operating on the channel. After power-up sequence, receive at least 1 minute (60 sec) on the intended operating frequency Measuring Instruments Refer a test equipment and calibration data table in this test report Test Procedures Test Method For Initial Channel Availability Check Time. The EUT does not emit beacon, control, or data signals on the test Channel until the power-up sequence has been completed and the UNII device checks for Radar s for one minute on the test Channel. This test does not use any Radar s. For Radar at the Beginning of the Channel Availability Check Time. To verify successful radar detection on the selected Channel during a period equal to the Beginning of the Channel Availability Check Time. For Radar at the End of the Channel Availability Check Time. To verify successful radar detection on the selected Channel during a period equal to the End of the Channel Availability Check Time. SPORTON INTERNATIONAL INC. Page No. : 27 of 187

28 3.4.4 Test Result of Initial Channel Availability Check Time Modulation Mode Freq. Radar Test Signal ac (VHT20) 5500 MHz N/A The EUT does not transmit any beacon or data transmissions until at least 1 minute after the completion of the power-on cycle (40.5 sec). The initial power up time of the EUT is indicated by marker 1 (40.5 sec). Initial beacons/data transmissions are indicated by marker 2 (100.5 sec). Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 28 of 187

29 Modulation Mode Freq. Radar Test Signal ac (VHT40) 5510 MHz N/A The EUT does not transmit any beacon or data transmissions until at least 1 minute after the completion of the power-on cycle (39.89 sec). The initial power up time of the EUT is indicated by marker 1 (39.89 sec). Initial beacons/data transmissions are indicated by marker 2 (99.89sec). Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 29 of 187

30 Modulation Mode Freq. Radar Test Signal ac (VHT80) 5530 MHz N/A The EUT does not transmit any beacon or data transmissions until at least 1 minute after the completion of the power-on cycle (39.98 sec). The initial power up time of the EUT is indicated by marker 1 (39.98 sec). Initial beacons/data transmissions are indicated by marker 2 (99.98 sec). Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 30 of 187

31 Modulation Mode Freq. Radar Test Signal ac (VHT160) 5570 MHz N/A The EUT does not transmit any beacon or data transmissions until at least 1 minute after the completion of the power-on cycle (41.1 sec). The initial power up time of the EUT is indicated by marker 1 (41.1 sec). Initial beacons/data transmissions are indicated by marker 2 (101.1 sec). Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 31 of 187

32 3.4.5 Test Result of Radar at the Beginning of the Channel Availability Check Time Modulation Mode Freq. Radar Type Signal ac (VHT20) 5500 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 32 of 187

33 Modulation Mode Freq. Radar Type Signal ac (VHT40) 5510 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 33 of 187

34 Modulation Mode Freq. Radar Type Signal ac (VHT80) 5530 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 34 of 187

35 Modulation Mode Freq. Radar Type Signal ac (VHT160) 5570 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 35 of 187

36 3.4.6 Test Result of Radar at the End of the Channel Availability Check Time Modulation Mode Freq. Radar Type Signal ac (VHT20) 5500 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 36 of 187

37 Modulation Mode Freq. Radar Type Signal ac (VHT40) 5510 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 37 of 187

38 Modulation Mode Freq. Radar Type Signal ac (VHT80) 5530 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 38 of 187

39 Modulation Mode Freq. Radar Type Signal ac (VHT160) 5570 MHz 0 Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 39 of 187

40 3.5 In-service Monitoring In-service Monitoring Limit In-service Monitoring Limit Channel Move Time 10 sec Channel Closing Transmission Time 200 ms + an aggregate of 60 ms over remaining 10 sec periods. Non-occupancy period Minimum 30 minutes Measuring Instruments Refer a test equipment and calibration data table in this test report Test Procedures Test Method Verified during In-Service Monitoring; Channel Closing Transmission Time, Channel Move Time. Client Device will associate with the EUT. Observe the transmissions of the EUT at the end of the radar on the Operating Channel for duration greater than 10 seconds. Measure and record the transmissions from the EUT during the observation time (Channel Move Time). Compare the Channel Move Time and Channel Closing Transmission Time limits. Verified during In-Service Monitoring; Channel Closing Transmission Time, Channel Move Time. One 12sec plot needs to be reported for the Short Pulse Radar Types 0. And zoom-in a 60 ms plot verified channel closing time for the aggregate transmission time starting from 200ms after the end of the radar signal to the completion of the channel move. Verified during In-Service Monitoring; Non-Occupancy Period. Client Device will associate with the EUT. Observe the transmissions of the EUT at the end of the radar on the Operating Channel for duration greater than 10 seconds. Measure and record the transmissions from the EUT during the observation time (Non-Occupancy Period). Compare the Non-Occupancy Period limits. SPORTON INTERNATIONAL INC. Page No. : 40 of 187

41 3.5.4 Test Result of In-service Monitoring Modulation Mode: ac (VHT20) Parameter Test Result Type 0 Limit Test Channel 5500 MHz - Channel Move Time (sec.) < 10s Channel Closing Transmission Time (ms) (Note) < 60ms Non-Occupancy Period (min.) min Note: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent control signals required to facilitate a Channel move (an aggregate of 60 milliseconds) during the remainder of the 10 seconds period. The aggregate duration of control signals will not count quiet periods in between transmissions. Modulation Mode: ac (VHT40) Parameter Test Result Type 0 Limit Test Channel 5510 MHz - Channel Move Time (sec.) < 10s Channel Closing Transmission Time (ms) (Note) 0 < 60ms Non-Occupancy Period (min.) min Note: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent control signals required to facilitate a Channel move (an aggregate of 60 milliseconds) during the remainder of the 10 seconds period. The aggregate duration of control signals will not count quiet periods in between transmissions. Modulation Mode: ac (VHT80) Parameter Test Result Type 0 Limit Test Channel 5530 MHz - Channel Move Time (sec.) < 10s Channel Closing Transmission Time (ms) (Note) < 60ms Non-Occupancy Period (min.) min Note: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent control signals required to facilitate a Channel move (an aggregate of 60 milliseconds) during the remainder of the 10 seconds period. The aggregate duration of control signals will not count quiet periods in between transmissions. SPORTON INTERNATIONAL INC. Page No. : 41 of 187

42 Modulation Mode: ac (VHT160) Parameter Test Result Type 0 Limit Test Channel 5570 MHz - Channel Move Time (sec.) < 10s Channel Closing Transmission Time (ms) (Note) < 60ms Non-Occupancy Period (min.) min Note: The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the beginning of the Channel Move Time plus any additional intermittent control signals required to facilitate a Channel move (an aggregate of 60 milliseconds) during the remainder of the 10 seconds period. The aggregate duration of control signals will not count quiet periods in between transmissions. SPORTON INTERNATIONAL INC. Page No. : 42 of 187

43 3.5.5 Test Plot of In-Service Monitoring for Channel Move Time Modulation Mode Freq. Radar Type ac (VHT20) 5500 MHz 0 Radar EUT signal Modulation Mode Freq. Radar Type ac (VHT40) 5510 MHz 0 Radar EUT signal SPORTON INTERNATIONAL INC. Page No. : 43 of 187

44 Modulation Mode Freq. Radar Type ac (VHT80) 5530 MHz 0 Radar EUT signal Modulation Mode Freq. Radar Type ac (VHT160) 5570 MHz 0 Radar EUT signal SPORTON INTERNATIONAL INC. Page No. : 44 of 187

45 3.5.6 Test Plot of In-Service Monitoring for Channel Closing Transmission Time Modulation Mode Freq. Radar Type ac (VHT20) 5500 MHz 0 Channel Closing Transmission Time is comprised of 200 ms starting at the beginning of the Channel Move Time plus 60ms additional intermittent control signals SPORTON INTERNATIONAL INC. Page No. : 45 of 187

46 Modulation Mode Freq. Radar Type ac (VHT40) 5510 MHz 0 Channel Closing Transmission Time is comprised of 200 ms starting at the beginning of the Channel Move Time plus 60ms additional intermittent control signals SPORTON INTERNATIONAL INC. Page No. : 46 of 187

47 Modulation Mode Freq. Radar Type ac (VHT80) 5530 MHz 0 Channel Closing Transmission Time is comprised of 200 ms starting at the beginning of the Channel Move Time plus 60ms additional intermittent control signals SPORTON INTERNATIONAL INC. Page No. : 47 of 187

48 Modulation Mode Freq. Radar Type ac (VHT160) 5570 MHz 0 Channel Closing Transmission Time is comprised of 200 ms starting at the beginning of the Channel Move Time plus 60ms additional intermittent control signals SPORTON INTERNATIONAL INC. Page No. : 48 of 187

49 3.5.7 Test Plot of In-Service Monitoring for Non-Occupancy Period Modulation Mode ac (VHT20) Freq MHz Non-Occupancy Period During the 30 minutes observation time, UUT did not make any transmissions on a channel after a radar signal was detected on that channel by either the Channel Availability Check or the In-Service Monitoring. SPORTON INTERNATIONAL INC. Page No. : 49 of 187

50 Modulation Mode ac (VHT40) Freq MHz Non-Occupancy Period During the 30 minutes observation time, UUT did not make any transmissions on a channel after a radar signal was detected on that channel by either the Channel Availability Check or the In-Service Monitoring. SPORTON INTERNATIONAL INC. Page No. : 50 of 187

51 Modulation Mode ac (VHT80) Freq MHz Non-Occupancy Period During the 30 minutes observation time, UUT did not make any transmissions on a channel after a radar signal was detected on that channel by either the Channel Availability Check or the In-Service Monitoring. SPORTON INTERNATIONAL INC. Page No. : 51 of 187

52 Modulation Mode ac (VHT80) Freq MHz Non-Occupancy Period During the 30 minutes observation time, UUT did not make any transmissions on a channel after a radar signal was detected on that channel by either the Channel Availability Check or the In-Service Monitoring. SPORTON INTERNATIONAL INC. Page No. : 52 of 187

53 3.6 Statistical Performance Check Statistical Performance Check Limit Radar Type Minimum Percentage of Successful Detection (Pd) Minimum Trials 1 60% % % % 30 Aggregate (Radar Types 1-4) 80% % % 30 The percentage of successful detection is calculated by: TotalWavef ormdetecti ons 100 Probabilit y of Detection Radar TotalWavef ormtrails In addition an aggregate minimum percentage of successful detection across all Short Pulse Radar Types 1-4 is required and is calculated as follows: Pd1 Pd2 Pd3 Pd Measuring Instruments Refer a test equipment and calibration data table in this test report Test Procedures Test Method For Statistical Performance Check test. Demonstrating a minimum channel loading of approximately 17% or greater of the test. Observe the transmissions of the UUT at the end of the on the Operating Channel for duration greater than 10 seconds for Short Pulse Radar Types 1-4 and 6 to ensure detection occurs. Then Observe the transmissions of the UUT at the end of the on the Operating Channel for duration greater than 22 seconds for Long Pulse Radar Type 5 to ensure detection occurs. The device can utilize a test mode to demonstrate when detection occurs to prevent the need to reset the device between trial runs. SPORTON INTERNATIONAL INC. Page No. : 53 of 187

54 3.6.4 Test Result of Statistical Performance Check Modulation Mode: ac (VHT20) Type 1 Radar Statistical Performance Trial # Test Freq. Pulse Repetition Frequency Pulse Repetition Frequency (Pulse Per Second) PRI 1=Detection 0=No Detection Detection Percentage (%) Limit 60% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 54 of 187

55 Type 2 Radar Statistical Performance Trial # Test Freq. PRI Pulses / 1=Detection 0=No Detection Detection Percentage (%) Limit 60% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 55 of 187

56 Type 3 Radar Statistical Performance Trial # Test Freq. PRI Pulses / 1=Detection ; 0=No Detection Detection Percentage (%) Limit 60% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 56 of 187

57 Type 4 Radar Statistical Performance Trial # Test Freq. PRI Pulses / 1=Detection 0=No Detection Detection Percentage (%) Limit 60% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 57 of 187

58 Total Type 1~4 Radar Statistical Performance Radar Type # Detection Percentage (%) Aggregate (Radar Types 1-4) Limit 80% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 58 of 187

59 Type 5 Radar Statistical Performance Center Freq. Low Edge High Edge VSG Freq. Detection Trial Chirp Offset Total 25 Detection Percentage (%) 83 Limit 80% Test Result Complied SPORTON INTERNATIONAL INC. Page No. : 59 of 187

60 Data Sheet for Radar Type 5 Radar Test Signal (#) 5 Trail # 1 of Frequency Center Offset PRI-1 PRI-2 PRI Radar Test Signal (#) 5 Trail # 2 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 60 of 187

61 Radar Test Signal (#) 5 Trail # 3 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 61 of 187

62 Radar Test Signal (#) 5 Trail # 4 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 62 of 187

63 Radar Test Signal (#) 5 Trail # 5 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 63 of 187

64 Radar Test Signal (#) 5 Trail # 6 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 64 of 187

65 Radar Test Signal (#) 5 Trail # 7 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 65 of 187

66 Radar Test Signal (#) 5 Trail # 8 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 66 of 187

67 Radar Test Signal (#) 5 Trail # 9 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 67 of 187

68 Radar Test Signal (#) 5 Trail # 10 of Frequency Center Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 68 of 187

69 Radar Test Signal (#) 5 Trail # 11 of Frequency F L+(0.4*Chirp width) Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 69 of 187

70 Radar Test Signal (#) 5 Trail # 12 of Frequency F L+(0.4*Chirp width) Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 70 of 187

71 Radar Test Signal (#) 5 Trail # 13 of Frequency F L+(0.4*Chirp width) Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 71 of 187

72 Radar Test Signal (#) 5 Trail # 14 of Frequency F L+(0.4*Chirp width) Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 72 of 187

73 Radar Test Signal (#) 5 Trail # 15 of Frequency F L+(0.4*Chirp width) Offset PRI-1 PRI-2 PRI SPORTON INTERNATIONAL INC. Page No. : 73 of 187

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