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FCC RADIO TEST REPORT

Report No. : FR0D2942-05G

FCC RADIO TEST REPORT

FCC ID Equipment Model Name Applicant
Standard

: A4RGB7N6 : Phone : GB7N6, GR1YH : Google LLC
1600 Amphitheatre Parkway, Mountain View, California, 94043 USA : FCC Part 15 Subpart E §15.407

The product was received on Jun. 03, 2021 and testing was started from Jun. 11, 2021 and completed on Aug. 23, 2021. We, Sporton International Inc. Wensan Laboratory, would like to declare that the tested sample has been evaluated in accordance with the test procedures and has been in 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. Wensan Laboratory, the test report shall not be reproduced except in full.

Approved by: Louis Wu
Sporton International Inc. Wensan Laboratory
No.58, Aly. 75, Ln. 564, Wenhua 3rd, Rd., Guishan Dist., Taoyuan City 333010, Taiwan (R.O.C.)

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Table of Contents
History of this test report.................................................................................................................................3 Summary of Test Result...................................................................................................................................4 1 General Description ................................................................................................................................... 5
1.1 Product Feature of Equipment Under Test........................................................................................5 1.2 Product Specification of Equipment Under Test................................................................................6 1.3 Modification of EUT ........................................................................................................................... 7 1.4 Testing Location ................................................................................................................................ 8 1.5 Applicable Standards.........................................................................................................................8 2 Test Configuration of Equipment Under Test ......................................................................................... 9 2.1 Carrier Frequency and Channel ........................................................................................................9 2.2 Test Mode........................................................................................................................................11 2.3 Connection Diagram of Test System...............................................................................................13 2.4 Support Unit used in test configuration and system ........................................................................14 2.5 EUT Operation Test Setup .............................................................................................................. 14 2.6 Measurement Results Explanation Example...................................................................................14
3 Test Result ................................................................................................................................................15 3.1 26dB & 99% Occupied Bandwidth Measurement ...........................................................................15 3.2 Maximum conducted Output Power and Fundamental Maximum EIRP Measurement ..................20 3.3 Fundamental Power Spectral Density Measurement ......................................................................21 3.4 In-Band Emissions (Channel Mask) ................................................................................................24 3.5 Contention Based Protocol .............................................................................................................. 52 3.6 Unwanted Emissions Measurement ................................................................................................65 3.7 AC Conducted Emission Measurement...........................................................................................70 3.8 Antenna Requirements ....................................................................................................................72
4 List of Measuring Equipment..................................................................................................................74 5 Uncertainty of Evaluation ........................................................................................................................76 Appendix A. Conducted Test Results Appendix B. AC Conducted Emission Test Result Appendix C. Radiated Spurious Emission Appendix D. Radiated Spurious Emission Plots Appendix E. Duty Cycle Plots

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History of this test report

Report No. FR0D2942-05G FR0D2942-05G FR0D2942-05G
FR0D2942-05G
FR0D2942-05G

Version 01 02 03
04
05

Description
Initial issue of report
1. Add description and test data 2. Add antenna gain section 1. Retest for 26dB, 99% bandwidth and emission
mask 2. Revise remark for antenna gain calculation 1. Remove HE20 CH7115 test data 2. Revise description for Radiation Spurious
Emission test items 1. Revise description for Radiation Spurious
Emission test items 2. Revise Radiated Spurious Emission data

Issued Date Aug. 06, 2021 Aug. 19, 2021 Aug. 24, 2021
Sep. 06, 2021
Sep. 08, 2021

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Summary of Test Result

Report Clause
3.1
3.1

Ref Std. Clause
15.403(i) 15.407(a)(10)
2.1049

Test Items 26dB Emission Bandwidth 99% Occupied Bandwidth

Result (PASS/FAIL)
Pass
Reporting only

Remark -

3.2

15.407(a)(8)

Maximum Conducted Output Power Reporting only

-

3.2

15.407(a)(8)

Fundamental Maximum EIRP

Pass

-

3.3

15.407(a)(8)

Fundamental Power Spectral Density

Pass

-

3.4

15.407(b)(6) In-Band Emissions (Channel Mask)

Pass

-

3.5

15.407(d)(6)

Contention Based Protocol

Pass

3.6

15.407(b)

3.7

15.207

3.8

15.203 15.407(a)

Unwanted Emissions AC Conducted Emission
Antenna Requirement

Pass Pass Pass

Under limit 4.17 dB at 5907.560 MHz Under limit 21.45 dB at 12.683 MHz
-

Declaration of Conformity: The test results with all measurement uncertainty excluded are presented in accordance with the regulation limits or requirements declared by manufacturers. Comments and Explanations: The declared of product specification for EUT presented in the report are provided by the manufacturer, and the manufacturer takes all the responsibilities for the accuracy of product specification.
Reviewed by: William Chen
Report Producer: Lucy Wu

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1 General Description
1.1 Product Feature of Equipment Under Test

Product Feature

Equipment Model Name FCC ID
EUT supports Radios application

Phone GB7N6, GR1YH A4RGB7N6 GSM/EGPRS/WCDMA/HSPA/LTE/5G NR /NFC/GNSS/WPC/WPT WLAN 11b/g/n HT20 WLAN 11a/n HT20/HT40 WLAN 11ac VHT20/VHT40/VHT80/VHT160 WLAN 11ax HE20/HE40/HE80/HE160 Bluetooth BR/EDR/LE

Remark: The above EUT's information was declared by manufacturer.

S/N 15201FDF60001C 15171FDF600099 15141FDF600064 15191FDF60004R

EUT Information List Performed Test Item
Conducted Measurement Radiated Spurious Emission
Conducted Emission Contention Based Protocol

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1.2 Product Specification of Equipment Under Test

Standards-related Product Specification

Tx/Rx Frequency Range Maximum Output Power 99% Occupied Bandwidth Antenna Type

5925 MHz ~ 6425 MHz 6425 MHz ~ 6525 MHz 6525 MHz ~ 6875 MHz 6875 MHz ~ 7125 MHz <5925 MHz ~ 6425 MHz> MIMO <Ant. 4+3> 802.11ax HE20: 7.50 dBm / 0.0056 W 802.11ax HE40: 9.97 dBm / 0.0099 W 802.11ax HE80: 12.76 dBm / 0.0189 W 802.11ax HE160: 15.73 dBm / 0.0374 W <6425 MHz ~ 6525 MHz> MIMO <Ant. 4+3> 802.11ax HE20: 6.33 dBm / 0.0043 W 802.11ax HE40: 10.66 dBm / 0.0116 W 802.11ax HE80: 11.98 dBm / 0.0158 W 802.11ax HE160: 14.51 dBm / 0.0282 W <6525 MHz ~ 6875 MHz> MIMO <Ant. 4+3> 802.11ax HE20: 8.37 dBm / 0.0069 W 802.11ax HE40: 11.27 dBm / 0.0134 W 802.11ax HE80: 13.83 dBm / 0.0242 W 802.11ax HE160: 16.37 dBm / 0.0434 W <6875 MHz ~ 7125 MHz> MIMO <Ant. 4+3> 802.11ax HE20: 8.97 dBm / 0.0079 W 802.11ax HE40: 11.54 dBm / 0.0143 W 802.11ax HE80: 13.94 dBm / 0.0248 W 802.11ax HE160: 16.53 dBm / 0.0450 W MIMO <Ant. 4> 802.11ax HE20: 19.18 MHz 802.11ax HE40: 37.96 MHz 802.11ax HE80: 77.32 MHz 802.11ax HE160: 156.80 MHz MIMO <Ant. 3> 802.11ax HE20: 19.18 MHz 802.11ax HE40: 37.96 MHz 802.11ax HE80: 77.32 MHz 802.11ax HE160: 156.80 MHz <5925 MHz ~ 6425 MHz> <Ant. 4>: ILA Antenna <Ant. 3>: IFA Antenna <6425 MHz ~ 6525 MHz> <Ant. 4>: ILA Antenna <Ant. 3>: IFA Antenna <6525 MHz ~ 6875 MHz> <Ant. 4>: ILA Antenna <Ant. 3>: IFA Antenna <6875 MHz ~ 7125 MHz> <Ant. 4>: ILA Antenna <Ant. 3>: IFA Antenna

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Antenna Gain Type of Modulation

Standards-related Product Specification
<5925 MHz ~ 6425 MHz> <Ant. 4>: -1.0 dBi <Ant. 3>: -0.1 dBi <6425 MHz ~ 6525 MHz> <Ant. 4>: 0.5 dBi <Ant. 3>: 0.1 dBi <6525 MHz ~ 6875 MHz> <Ant. 4>: -1.5 dBi <Ant. 3>: -1.4 dBi <6875 MHz ~ 7125 MHz> <Ant. 4>: -0.8 dBi <Ant. 3>: -2.8 dBi 802.11ax : OFDMA (BPSK / QPSK / 16QAM / 64QAM / 256QAM / 1024QAM)

Antenna Function Description

802.11 ax MIMO

Ant. 4 V

Ant. 3 V

Remark: 1. MIMO Ant. 4+3 Directional Gain is a calculated result from MIMO Ant. 4 and MIMO Ant. 3. The
formula used in calculation is documented in section 3.8. Power of MIMO Ant. 4 + Ant. 3 is a calculated result from sum of the power MIMO Ant. 4 and MIMO Ant. 3. 2. The above EUT's information was declared by manufacturer. Please refer to Comments and Explanations in report summary.

1.3 Modification of EUT
No modifications are made to the EUT during all test items.

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1.4 Testing Location

Test Site Test Site Location Test Site No. Remark

Sporton International Inc. EMC & Wireless Communications Laboratory No.52, Huaya 1st Rd., Guishan Dist., Taoyuan City 333, Taiwan (R.O.C.) TEL: +886-3-327-3456 FAX: +886-3-328-4978 Sporton Site No. DFS02-HY (TAF Code: 1190)
The Contention Based Protocol test item subcontracted to Sporton
International Inc. EMC & Wireless Communications Laboratory.

Test Site

Sporton International Inc. Wensan Laboratory

Test Site Location

No.58, Aly. 75, Ln. 564, Wenhua 3rd, Rd., Guishan Dist., Taoyuan City 333010, Taiwan (R.O.C.) TEL: +886-3-327-0868 FAX: +886-3-327-0855

Test Site No.

Sporton Site No. TH05-HY, CO07-HY, 03CH16-HY

Note: The test site complies with ANSI C63.4 2014 requirement.

FCC designation No.: TW1190 and TW3786

1.5 Applicable Standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards:  FCC Part 15 Subpart E  FCC KDB 789033 D02 General UNII Test Procedures New Rules v02r01.  FCC KDB 987594 D02 U-NII 6 GHz EMC Measurement v01  FCC KDB 414788 D01 Radiated Test Site v01r01.  FCC KDB 662911 D01 Multiple Transmitter Output v02r01.  ANSI C63.10-2013

Remark: 1. All test items were verified and recorded according to the standards and without any deviation during
the test. 2. The TAF code is not including all the FCC KDB listed without accreditation.

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2 Test Configuration of Equipment Under Test

a. The EUT has been associated with peripherals and configuration operated in a manner tended to maximize its emission characteristics in a typical application. Frequency range investigated: conduction emission (150 kHz to 30 MHz), radiation emission (9 kHz to the 10th harmonic of the highest fundamental frequency or to 40 GHz, whichever is lower). The measured emission level of the EUT was maximized by rotating the EUT on a turntable, adjusting the orientation of the EUT and EUT antenna in three orthogonal axis (X: flat, Y: portrait, Z: landscape), and adjusting the measurement antenna orientation, following C63.10 exploratory test procedures and find X plane as worst plane.

b. AC power line Conducted Emission was tested under maximum output power.

2.1 Carrier Frequency and Channel

Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

1

5

9

13

17

21

25

29

5955 5975 5995 6015 6035 6055 6075 6095

3

11

19

27

5965

6005

6045

6085

7

23

5985

6065

15

6025

Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

33

37

41

45

49

53

57

61

6115 6135 6155 6175 6195 6215 6235 6255

35

43

51

59

6125

6165

6205

6245

39

55

6145

6225

47

6185

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Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

65

69

73

77

81

85

89

93

6275 6295 6315 6335 6355 6375 6395 6415

67

75

83

91

6285

6325

6365

6405

71

87

6305

6385

79

6345

Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

97

101

105

109

113

117

121

125

6435 6455 6475 6495 6515 6535 6555 6575

99

107

115

123

6445

6485

6525

6565

103

119

6465

6545

111

6505

Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

129

133

137

141

145

149

153

157

6595 6615 6635 6655 6675 6695 6715 6735

131

139

147

155

6605

6645

6685

6725

135

151

6625

6705

143

6665

Channel BW 20M
Freq. (MHz) Channel
BW 40M Freq. (MHz) Channel
BW 80M Freq. (MHz) Channel
BW 160M Freq. (MHz)

161

165

169

173

177

181

185

189

6755 6775 6795 6815 6835 6855 6875 6895

163

171

179

187

6765

6805

6845

6885

167

183

6785

6865

175

6825

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BW 20M BW 40M BW 80M BW 160M

Channel Freq. (MHz)
Channel Freq. (MHz)
Channel Freq. (MHz)
Channel Freq. (MHz)

193

197

201

205

209

213

217

221

6915 6935 6955 6975 6995 7015 7035 7055

195

203

211

219

6925

6965

7005

7045

199

215

6945

7025

207

6985

BW 20M BW 40M

Channel Freq. (MHz)
Channel Freq. (MHz)

225 7075

227 7085

229 7095

2.2 Test Mode
This device support 26/52/106/242/484/996-tone RU but does not support 2x996-tone RU on 160MHz channel. The PSD of partial RU is reduced to be smaller than full RU according to TCB workshop interim guidance.
Final test modes are considering the modulation and worse data rates as below table.

Modulation 802.11ax HE20 802.11ax HE40 802.11ax HE80 802.11ax HE160

Data Rate MCS0 MCS0 MCS0 MCS0

Test Cases

AC Conducted Emission

Mode 1 : WLAN (6GHz) Link + Bluetooth Link + USB Cable 2 (Charging from AC Adapter 2)

Remark: 1. For Radiated Test Cases, the tests were performed with Adapter 2 and USB Cable 2. 2. During the preliminary test, both charging modes (Adapter mode and WPC Charging mode)
were verified. It is determined that the adaptor mode is the worst case for official test.

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Ch. #
L Low M Middle H High
Straddle

UNII-5 (5925-6425 MHz) 802.11ax HE20
001 049 093
-

UNII-6 (6425-6525 MHz) 802.11ax HE20
097 105 113
-

UNII-7 (6525-6875 MHz) 802.11ax HE20
117 149 181 185

UNII-8 (6875-7125 MHz) 802.11ax HE20
189 209 229
-

Ch. #
L Low M Middle H High
Straddle

UNII-5 (5925-6425 MHz) 802.11ax HE40
003 051 091
-

UNII-6 (6425-6525 MHz) 802.11ax HE40
099 -
107 115

UNII-7 (6525-6875 MHz) 802.11ax HE40
123 147 179 187

UNII-8 (6875-7125 MHz) 802.11ax HE40
195 211 227
-

Ch. #
L Low M Middle H High
Straddle

UNII-5 (5925-6425 MHz) 802.11ax HE80
007 055 087
-

UNII-6 (6425-6525 MHz) 802.11ax HE80
103
119

UNII-7 (6525-6875 MHz) 802.11ax HE80
135 151 167 183

UNII-8 (6875-7125 MHz) 802.11ax HE80
199
-
215
-

Ch. #

UNII-5 (5925-6425 MHz)
802.11ax HE160

UNII-6 (6425-6525 MHz)
802.11ax HE160

UNII-7 (6525-6875 MHz)
802.11ax HE160

UNII-8 (6875-7125 MHz)
802.11ax HE160

L Low

015

M Middle

047

-

143

207

H High

079

Straddle

-

111

175

-

Remark: For radiation spurious emission, the final modulation and the worst data rate was reference the max RF conducted power.

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2.3 Connection Diagram of Test System
<AC Conducted Emission Mode>

Report No. : FR0D2942-05G

<WLAN Tx Mode>

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2.4 Support Unit used in test configuration and system

Item Equipment
Bluetooth 1.
Earphone
2. WLAN AP

Brand Name Model Name FCC ID

Data Cable

Google

G1013

N/A

N/A

ASUS

GT-AXE11000 MSQ-RTAXJF00 N/A

3. Notebook

DELL

Latitude E3480 FCC DoC

N/A

Power Cord
N/A
Unshielded, 1.8 m AC I/P: Unshielded, 1.2 m DC O/P: Shielded, 1.8 m

2.5 EUT Operation Test Setup
The RF test items, utility "adb command 1.0.36" was installed in Notebook which was programmed in order to make the EUT get into the engineering modes to provide channel selection, power level, data rate and the application type and for continuous transmitting signals.
2.6 Measurement Results Explanation Example
For all conducted test items:
The offset level is set in the spectrum analyzer to compensate the RF cable loss and attenuator factor between EUT conducted output port and spectrum analyzer. With the offset compensation, the spectrum analyzer reading level is exactly the EUT RF output level.
Example : The spectrum analyzer offset is derived from RF cable loss and attenuator factor. Offset = RF cable loss + attenuator factor. Following shows an offset computation example with cable loss 4.2 dB and 10dB attenuator.
Offset(dB) = RF cable loss(dB) + attenuator factor(dB). = 4.2 + 10 = 14.2 (dB)

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3 Test Result
3.1 26dB & 99% Occupied Bandwidth Measurement

3.1.1 Limit of 26dB & 99% Occupied Bandwidth
<FCC 14-30 CFR 15.407> (a)(10) The maximum transmitter channel bandwidth for U-NII devices in the 5.925-7.125 GHz band is 320 megahertz.

3.1.2 Measuring Instruments
See list of measuring equipment of this test report.

3.1.3 Test Procedures
1. The testing follows FCC KDB 789033 D02 General UNII Test Procedures New Rules v02r01. Section C) Emission bandwidth
2. Set RBW = approximately 1% of the emission bandwidth (1MHz for all supported bandwidth). 3. Set the VBW > RBW. 4. Detector = Peak. 5. Trace mode = max hold 6. Measure the maximum width of the emission that is 26 dB down from the peak of the emission.
Compare this with the RBW setting of the analyzer. Readjust RBW and repeat measurement as needed until the RBW/EBW ratio is approximately 1%. 7. For 99% Bandwidth Measurement, the spectrum analyzer's resolution bandwidth (RBW) is set 1-5% of the emission bandwidth and set the Video bandwidth (VBW)  3 * RBW. 8. Measure and record the results in the test report.
3.1.4 Test Setup

3.1.5 Test Result of 26dB & 99% Occupied Bandwidth
Please refer to Appendix A.

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For 802.11ax HE 20 MHz Maximum 26dB Bandwidth

Report No. : FR0D2942-05G

Maximum 99% Occupied Bandwidth

Note: The occupied channel bandwidth is maintained within the band of operation for all of the modulations.

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FCC RADIO TEST REPORT
For 802.11ax HE 40 MHz Maximum 26dB Bandwidth

Report No. : FR0D2942-05G

Maximum 99% Occupied Bandwidth

Note: The occupied channel bandwidth is maintained within the band of operation for all of the modulations.

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FCC RADIO TEST REPORT
For 802.11ax HE 80 MHz Maximum 26dB Bandwidth

Report No. : FR0D2942-05G

Maximum 99% Occupied Bandwidth

Note: The occupied channel bandwidth is maintained within the band of operation for all of the modulations.

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For 802.11ax HE 160 MHz Maximum 26dB Bandwidth

Report No. : FR0D2942-05G

Maximum 99% Occupied Bandwidth

Note: The occupied channel bandwidth is maintained within the band of operation for all of the modulations.

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3.2 Maximum conducted Output Power and Fundamental Maximum EIRP Measurement
3.2.1 Limit of Fundamental Maximum EIRP
<FCC 14-30 CFR 15.407>
(a)(8) For client devices operating under the control of an indoor access point in the 5.925-7.125 GHz bands, the maximum e.i.r.p. over the frequency band of operation must not exceed 24 dBm.

3.2.2 Measuring Instruments
See list of measuring equipment of this test report.

3.2.3 Test Procedures

The testing follows Method PM-G of FCC KDB 789033 D02 General UNII Test Procedures New Rules v02r01. Method PM-G (Measurement using a gated RF average power meter): 1. Measurement is performed using a wideband RF power meter. 2. The EUT is configured to transmit at its maximum power control level. 3. Measure the average power of the transmitter. 4. Since the measurement is made only during the ON time of the transmitter, no duty cycle
correction factor is required.
3.2.4 Test Setup

3.2.5 Test Result of Fundamental Maximum EIRP
Please refer to Appendix A.

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3.3 Fundamental Power Spectral Density Measurement
3.3.1 Limit of Fundamental Power Spectral Density
<FCC 14-30 CFR 15.407>
(a)(8) For client devices operating under the control of an indoor access point in the 5.925-7.125 GHz bands, the maximum power spectral density must not exceed -1 dBm e.i.r.p. in any 1-megahertz band.

3.3.2 Measuring Instruments
See list of measuring equipment of this test report.

3.3.3 Test Procedures
The testing follows FCC KDB 789033 D02 General UNII Test Procedures New Rules v02r01. Section F) Maximum power spectral density.

# Method SA-3 #
(power averaging (rms) detection with max hold): Set span to encompass the entire emission bandwidth (EBW) of the signal. Set RBW = 1 MHz. Set VBW  3 MHz. Number of points in sweep  2 Span / RBW. Sweep time  (number of points in sweep) × T, when duty cycle is less than 98 percent where T is the minimum transmission duration over which the transmitter is on and is transmitting at its maximum power control level for the tested mode of operation. Detector = power averaging (rms). Trace mode = max hold. Allow max hold to run for at least 60 seconds, or longer as needed to allow the trace to stabilize.
1. The RF output of EUT was connected to the spectrum analyzer by a low loss cable. 2. Each plot has already offset with cable loss, and attenuator loss. Measure the PPSD and
record it. 3. For MIMO mode, calculation method follows FCC KDB 662911 D01 Multiple Transmitter
Output v02r01. Method (a): Measure and sum the spectra across the outputs. The total final Power Spectral Density is from a device with 2 transmitter outputs. The spectrum measurements of the individual outputs are all performed with the same span and number of points; the spectrum value in the first spectral bin of output 1 is summed with that in the first spectral bin of output 2 to obtain the value for the first frequency bin of the summed spectrum.

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FCC RADIO TEST REPORT 3.3.4 Test Setup

Report No. : FR0D2942-05G

3.3.5 Test Result of Power Spectral Density
Please refer to Appendix A.

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Worst Case Power Density (dBm/MHz)

Remark: The test plot is showing a bin by bin combined result mathematically adds two traces.

Worst Case Power Density Trace 1 (Ant 4)

Worst Case Power Density Trace 2 (Ant 3)

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3.4 In-Band Emissions (Channel Mask)
3.4.1 Limit of Unwanted Emissions
<FCC 14-30 CFR 15.407> (a)(6) For transmitters operating within the 5.925-7.125 GHz bands: Power spectral density must be suppressed by 20 dB at 1 MHz outside of channel edge, by 28 dB at one channel bandwidth from the channel center, and by 40 dB at one- and one-half times the channel bandwidth away from channel center. At frequencies between one megahertz outside an unlicensed device's channel edge and one channel bandwidth from the center of the channel, the limits must be linearly interpolated between 20 dB and 28 dB suppression, and at frequencies between one and one- and one-half times an unlicensed device's channel bandwidth, the limits must be linearly interpolated between 28 dB and 40 dB suppression. Emissions removed from the channel center by more than one- and one-half times the channel bandwidth must be suppressed by at least 40 dB.

3.4.2 Measuring Instruments
See list of measuring equipment of this test report.

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3.4.3 Test Procedures
The testing follows FCC KDB 987594 D02 U-NII 6GHz EMC Measurement v01. Section J) In-Band Emissions. 1. Take nominal bandwidth as reference channel bandwidth provided that 26 dB emission
bandwidth is always larger than nominal bandwidth 2. Measure the power spectral density (which will be used for emissions mask reference) using the
following procedure: a) Set the span to encompass the entire 26 dB EBW of the signal. b) Set RBW = same RBW used for 26 dB EBW measurement (1MHz for all supported bandwidth). c) Set VBW  3 X RBW d) Number of points in sweep  [2 X span / RBW]. e) Sweep time = auto. f) Detector = RMS (i.e., power averaging) g) Trace average at least 100 traces in power averaging (rms) mode. h) Use the peak search function on the instrument to find the peak of the spectrum. 3. Using the measuring equipment limit line function, develop the emissions mask based on the following requirements. The emissions power spectral density must be reduced below the peak power spectral density (in dB) as follows: a. Suppressed by 20 dB at 1 MHz outside of the channel edge. b. Suppressed by 28 dB at one channel bandwidth from the channel center. c. Suppressed by 40 dB at one- and one-half times the channel bandwidth from the channel center. 4. Adjust the span to encompass the entire mask as necessary. 5. Clear trace. 6. Trace average at least 100 traces in power averaging (rms) mode. 7. Adjust the reference level as necessary so that the crest of the channel touches the top of the emission mask.

3.4.4 Test Setup

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3.4.5 Test Result

MIMO <Ant. 4+3(4)>

EUT Mode :

802.11ax HE20

Plot on Channel 5955MHz

Report No. : FR0D2942-05G Plot on Channel 6195MHz

Plot on Channel 6415MHz

Plot on Channel 6435MHz

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Plot on Channel 6475MHz

Plot on Channel 6515MHz

Plot on Channel 6535MHz

Plot on Channel 6695MHz

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Plot on Channel 6855MHz

Plot on Channel 6875MHz

Plot on Channel 6895MHz

Plot on Channel 6995MHz

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FCC RADIO TEST REPORT
Plot on Channel 7095MHz

Report No. : FR0D2942-05G

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EUT Mode :

802.11ax HE40

Plot on Channel 5965MHz

Plot on Channel 6205MHz

Plot on Channel 6405MHz

Plot on Channel 6445MHz

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Plot on Channel 6485MHz

Plot on Channel 6525MHz

Plot on Channel 6565MHz

Plot on Channel 6685MHz

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Plot on Channel 6845MHz

Plot on Channel 6885MHz

Plot on Channel 6925MHz

Plot on Channel 7005MHz

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FCC RADIO TEST REPORT
Plot on Channel 7085MHz

Report No. : FR0D2942-05G

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EUT Mode :

802.11ax HE80

Plot on Channel 5985MHz

Plot on Channel 6225MHz

Plot on Channel 6385MHz

Plot on Channel 6465MHz

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Plot on Channel 6545MHz

Plot on Channel 6625MHz

Plot on Channel 6705MHz

Plot on Channel 6785MHz

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FCC RADIO TEST REPORT

Report No. : FR0D2942-05G

Plot on Channel 6865MHz

Plot on Channel 6945MHz

Plot on Channel 7025MHz

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EUT Mode :

802.11ax HE160

Plot on Channel 6025MHz

Plot on Channel 6185MHz

Plot on Channel 6345MHz

Plot on Channel 6505MHz

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FCC RADIO TEST REPORT

Report No. : FR0D2942-05G

Plot on Channel 6665MHz

Plot on Channel 6825MHz

Plot on Channel 6985MHz

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FCC RADIO TEST REPORT

MIMO <Ant. 4+3(3)>

EUT Mode :

802.11ax HE20

Plot on Channel 5955MHz

Report No. : FR0D2942-05G Plot on Channel 6195MHz

Plot on Channel 6415MHz

Plot on Channel 6435MHz

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Report No. : FR0D2942-05G

Plot on Channel 6475MHz

Plot on Channel 6515MHz

Plot on Channel 6535MHz

Plot on Channel 6695MHz

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Plot on Channel 6855MHz

Plot on Channel 6875MHz

Plot on Channel 6895MHz

Plot on Channel 6995MHz

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FCC RADIO TEST REPORT
Plot on Channel 7095MHz

Report No. : FR0D2942-05G

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EUT Mode :

802.11ax HE40

Plot on Channel 5965MHz

Plot on Channel 6205MHz

Plot on Channel 6405MHz

Plot on Channel 6445MHz

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Plot on Channel 6485MHz

Plot on Channel 6525MHz

Plot on Channel 6565MHz

Plot on Channel 6685MHz

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Report No. : FR0D2942-05G

Plot on Channel 6845MHz

Plot on Channel 6885MHz

Plot on Channel 6925MHz

Plot on Channel 7005MHz

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FCC RADIO TEST REPORT
Plot on Channel 7085MHz

Report No. : FR0D2942-05G

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