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Document DEVICE REPORTG8V0U-Test-Report-Google-a4rg8v0u-ex-8-9
FCC RADIO TEST REPORT

Report No. : FR121931-04A

FCC RADIO TEST REPORT

FCC ID Equipment Model Name Applicant
Standard

: A4RG8V0U : Phone : G8V0U, GF5KQ : Google LLC
1600 Amphitheatre Parkway, Mountain View, California, 94043 USA : FCC Part 15 Subpart C §15.247

The product was received on Jun. 10, 2021 and testing was started from Jun. 17, 2021 and completed on Aug. 05, 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 ........................................................................................................................... 6 1.4 Testing Location ................................................................................................................................ 7 1.5 Applicable Standards.........................................................................................................................7 2 Test Configuration of Equipment Under Test ......................................................................................... 8 2.1 Carrier Frequency Channel ...............................................................................................................8 2.2 Test Mode .......................................................................................................................................... 9 2.3 Connection Diagram of Test System...............................................................................................10 2.4 Support Unit used in test configuration and system ........................................................................11 2.5 EUT Operation Test Setup .............................................................................................................. 11 2.6 Measurement Results Explanation Example...................................................................................11 3 Test Result................................................................................................................................................12 3.1 Number of Channel Measurement ..................................................................................................12 3.2 Hopping Channel Separation Measurement ...................................................................................17 3.3 Dwell Time Measurement ................................................................................................................30 3.4 20dB and 99% Bandwidth Measurement ........................................................................................35 3.5 Output Power Measurement............................................................................................................60 3.6 Conducted Band Edges Measurement............................................................................................61 3.7 Conducted Spurious Emission Measurement .................................................................................78 3.8 Radiated Band Edges and Spurious Emission Measurement ......................................................103 3.9 AC Conducted Emission Measurement.........................................................................................108 3.10 Antenna Requirements ..................................................................................................................110 4 List of Measuring Equipment ...............................................................................................................111 5 Uncertainty of Evaluation......................................................................................................................113 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. FR121931-04A

Version 01

Description Initial issue of report

Issued Date Aug. 13, 2021

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Summary of Test Result

Report Clause
3.1

Ref Std. Clause
15.247(a)(1)

Test Items Number of Channels

Result (PASS/FAIL)
Pass

Remark -

3.2

15.247(a)(1)

Hopping Channel Separation

Pass

-

3.3

15.247(a)(1)

Dwell Time of Each Channel

Pass

-

3.4

15.247(a)(1)

20dB Bandwidth

Pass

-

3.4

2.1049

99% Occupied Bandwidth

Reporting only

-

3.5

15.247(b)(1)

Peak Output Power

Pass

-

3.6

15.247(d)

Conducted Band Edges

Pass

-

3.7

15.247(d)

Conducted Spurious Emission

Pass

-

3.8

15.247(d) Radiated Band Edges and Radiated Spurious

Pass

Emission

3.9

15.207

3.10

15.203 & 15.247(b)

AC Conducted Emission Antenna Requirement

Pass Pass

Under limit 12.09 dB at 93.050 MHz Under limit 8.32 dB at 0.191 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: Ruby Zou

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1 General Description
1.1 Product Feature of Equipment Under Test

Equipment Model Name FCC ID
EUT supports Radios application

Product Feature
Phone G8V0U, GF5KQ A4RG8V0U GSM/EGPRS/WCDMA/HSPA/LTE/5G NR/ NFC/GNSS/WPC/WPT/UWB 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 15281FDEE0002D 16011FDEE0007W 16061FDEE00001

EUT Information List Performed Test Item
RF Conducted Measurement Radiated Spurious Emission
Conducted Emission

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1.2 Product Specification of Equipment Under Test

Product Specification subjective to this standard

Tx/Rx Frequency Range Number of Channels Carrier Frequency of Each Channel
Maximum Output Power to Antenna
99% Occupied Bandwidth
Antenna Type / Gain Type of Modulation

2402 MHz ~ 2480 MHz 79 2402+n*1 MHz; n=0~78 <Ant. 4> Bluetooth BR(1Mbps) : 20.27 dBm (0.1064 W) Bluetooth EDR (2Mbps) : 20.28 dBm (0.1067 W) Bluetooth EDR (3Mbps) : 20.90 dBm (0.1230 W) <Ant. 3> Bluetooth BR(1Mbps) : 20.23 dBm (0.1054 W) Bluetooth EDR (2Mbps) : 20.43 dBm (0.1104 W) Bluetooth EDR (3Mbps) : 20.95 dBm (0.1245 W) MIMO <Ant. 4+3>: Bluetooth BR(1Mbps) : 18.32 dBm (0.0679 W) Bluetooth EDR (2Mbps) : 17.57 dBm (0.0571 W) Bluetooth EDR (3Mbps) : 17.97 dBm (0.0627 W) <Ant. 4> Bluetooth BR(1Mbps) : 0.906 MHz Bluetooth EDR (2Mbps) : 1.181 MHz Bluetooth EDR (3Mbps) : 1.164 MHz <Ant. 3> Bluetooth BR(1Mbps) : 0.906 MHz Bluetooth EDR (2Mbps) : 1.184 MHz Bluetooth EDR (3Mbps) : 1.161 MHz MIMO <Ant. 4+3> Bluetooth BR(1Mbps) : 0.905 MHz Bluetooth EDR (2Mbps) : 1.180 MHz Bluetooth EDR (3Mbps) : 1.160 MHz <Ant. 4> : IFA Antenna with gain -1.1 dBi <Ant. 3> : IFA Antenna with gain -0.6 dBi Bluetooth BR (1Mbps) : GFSK Bluetooth EDR (2Mbps) :/4-DQPSK Bluetooth EDR (3Mbps) : 8-DPSK

Antenna Function Description

Bluetooth Bluetooth
MIMO

Ant. 4 V
V

Ant. 3 V
V

Remark: 1. MIMO Ant. 4+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.

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.
CO05-HY (TAF Code: 1190)

Remark

The AC Conducted Emission test item subcontracted to Sporton International Inc. EMC & Wireless Communications Laboratory.

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

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, 03CH11-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 C §15.247  FCC KDB Publication No. 558074 D01 DTS Meas. Guidance v05r02  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
2.1 Carrier Frequency Channel

Frequency Band 2400-2483.5 MHz

Channel
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26

Freq. (MHz) 2402 2403 2404 2405 2406 2407 2408 2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427 2428

Channel
27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53

Freq. (MHz) 2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455

Channel
54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 -

Freq. (MHz) 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480
-

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2.2 Test Mode

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 for Ant. 3 and MIMO <Ant. 4+3>; Y Plane for Ant. 4 as worst plane, and the worst mode of radiated spurious emissions is Bluetooth 3Mbps mode, and recorded in this report.

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

The following summary table is showing all test modes to demonstrate in compliance with the standard.

Summary table of Test Cases

Test Item
Conducted Test Cases

Bluetooth BR 1Mbps GFSK

Data Rate / Modulation
Bluetooth EDR 2Mbps /4-DQPSK

Bluetooth EDR 3Mbps 8-DPSK

Mode 1: CH00_2402 MHz Mode 4: CH00_2402 MHz Mode 7: CH00_2402 MHz

Mode 2: CH39_2441 MHz Mode 5: CH39_2441 MHz Mode 8: CH39_2441 MHz

Mode 3: CH78_2480 MHz Mode 6: CH78_2480 MHz Mode 9: CH78_2480 MHz

Radiated Test Cases

Bluetooth EDR 3Mbps 8-DPSK Mode 1: CH00_2402 MHz Mode 2: CH39_2441 MHz Mode 3: CH78_2480 MHz

AC Conducted Mode 1 :WLAN (2.4GHz) Link + Bluetooth Link + USB Cable 1 (Charging from

Emission

AC Adapter 2)

Remark: 1. For Radiated Test Cases, the worst mode data rate 3Mbps was reported only since the highest
RF output power in the preliminary tests. The conducted spurious emissions and conducted band edge measurement for other data rates were not worse than 3Mbps, and no other significantly frequencies found in conducted spurious emission. 2. For Radiated Test Cases, the tests were performed with Adapter 2 and USB Cable 1. 3. 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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2.3 Connection Diagram of Test System
<AC Conducted Emission Mode>

Report No. : FR121931-04A

<Bluetooth Tx Mode>

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2.4 Support Unit used in test configuration and system

Item Equipment 1. Bluetooth
Earphone 2. WLAN AP
3. Notebook

Brand Name Model Name FCC ID

Data Cable

Google

G1007, G1008

A4RG1008 A4RG1007

N/A

ASUS

RT-AC66U MSQ-RTAC66U N/A

Dell

Latitude E3480

FCC DoC

N/A

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

2.5 EUT Operation Test Setup
The RF test items, utility "adb command V_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 10 dB 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 Number of Channel Measurement

3.1.1 Limits of Number of Hopping Frequency
Frequency hopping systems in the 2400-2483.5 MHz band shall use at least 15 channels.

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

3.1.3 Test Procedure
1. The testing follows ANSI C63.10-2013 clause 7.8.3. 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement. 3. Set the maximum power setting and enable the EUT to transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings: Span = the frequency band of operation;
RBW = 300 kHz; VBW  RBW; Sweep = auto; Detector function = peak; Trace = max hold. 6. The number of hopping frequency used is defined as the number of total channel. 7. Record the measurement data derived from spectrum analyzer.

3.1.4 Test Setup

3.1.5 Test Result of Number of Hopping Frequency
Please refer to Appendix A.

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<Ant. 4> Number of Hopping Channel Plot on Channel 00 - 78

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<Ant. 3> Number of Hopping Channel Plot on Channel 00 - 78

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MIMO <Ant. 4> Number of Hopping Channel Plot on Channel 00 - 78

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MIMO <Ant. 3> Number of Hopping Channel Plot on Channel 00 - 78

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3.2 Hopping Channel Separation Measurement
3.2.1 Limit of Hopping Channel Separation
Frequency hopping systems operating in the 2400-2483.5 MHz band may have hopping channel carrier frequencies that are separated by 25 kHz or two-thirds of the 20 dB bandwidth of the hopping channel, whichever is greater.

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

3.2.3 Test Procedures
1. The testing follows ANSI C63.10-2013 clause 7.8.2. 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement. 3. Set the maximum power setting and enable the EUT to transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings:
Span = wide enough to capture the peaks of two adjacent channels; RBW = 300 kHz; VBW  RBW; Sweep = auto; Detector function = peak; Trace = max hold. 6. Measure and record the results in the test report.

3.2.4 Test Setup

3.2.5 Test Result of Hopping Channel Separation
Please refer to Appendix A.

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<Ant. 4> <1Mbps>
Channel Separation Plot on Channel 00 - 01

Report No. : FR121931-04A Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<2Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<3Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<Ant. 3> <1Mbps>
Channel Separation Plot on Channel 00 - 01

Report No. : FR121931-04A Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<2Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<3Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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MIMO <Ant. 4> <1Mbps>
Channel Separation Plot on Channel 00 - 01

Report No. : FR121931-04A Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<2Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<3Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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MIMO <Ant. 3> <1Mbps>
Channel Separation Plot on Channel 00 - 01

Report No. : FR121931-04A Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<2Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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<3Mbps> Channel Separation Plot on Channel 00 - 01

Channel Separation Plot on Channel 39 - 40

Channel Separation Plot on Channel 77 - 78

N/A

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3.3 Dwell Time Measurement
3.3.1 Limit of Dwell Time
The average time of occupancy on any channel shall not be greater than 0.4 seconds within a period of 0.4 seconds multiplied by the number of hopping channels employed.

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

3.3.3 Test Procedures
1. The testing follows ANSI C63.10-2013 clause 7.8.4. 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator.
The path loss was compensated to the results for each measurement. 3. Set the maximum power setting and enable the EUT to transmit continuously. 4. Enable the EUT hopping function. 5. Use the following spectrum analyzer settings: Span = zero span, centered on a hopping
channel; RBW = 1 MHz; VBW  RBW; Sweep = as necessary to capture the entire dwell time per hopping channel; Detector function = peak; Trace = max hold. 6. Measure and record the results in the test report.

3.3.4 Test Setup

3.3.5 Test Result of Dwell Time
Please refer to Appendix A.

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<Ant. 4>

Package Transfer Time Plot

Report No. : FR121931-04A

Remark: 1. In normal mode, hopping rate is 1600 hops/s with 6 slots in 79 hopping channels. With channel hopping rate (1600 / 6 / 79) in Occupancy Time Limit (0.4 x 79) (s),Hops Over Occupancy Time comes to (1600 / 6 / 79) x (0.4 x 79) = 106.67 hops.
2. In AFH mode, hopping rate is 800 hops/s with 6 slots in 20 hopping channels. With channel hopping rate (800 / 6 / 20) in Occupancy Time Limit (0.4 x 20) (s), Hops Over Occupancy Time comes to (800 / 6 / 20) x (0.4 x 20) = 53.33 hops.
3. Dwell Time(s) = Hops Over Occupancy Time (hops) x Package Transfer Time

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FCC RADIO TEST REPORT

<Ant. 3>

Package Transfer Time Plot

Report No. : FR121931-04A

Remark: 1. In normal mode, hopping rate is 1600 hops/s with 6 slots in 79 hopping channels. With channel hopping rate (1600 / 6 / 79) in Occupancy Time Limit (0.4 x 79) (s),Hops Over Occupancy Time comes to (1600 / 6 / 79) x (0.4 x 79) = 106.67 hops.
2. In AFH mode, hopping rate is 800 hops/s with 6 slots in 20 hopping channels. With channel hopping rate (800 / 6 / 20) in Occupancy Time Limit (0.4 x 20) (s), Hops Over Occupancy Time comes to (800 / 6 / 20) x (0.4 x 20) = 53.33 hops.
3. Dwell Time(s) = Hops Over Occupancy Time (hops) x Package Transfer Time

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FCC RADIO TEST REPORT

MIMO <Ant. 4>

Package Transfer Time Plot

Report No. : FR121931-04A

Remark: 1. In normal mode, hopping rate is 1600 hops/s with 6 slots in 79 hopping channels. With channel hopping rate (1600 / 6 / 79) in Occupancy Time Limit (0.4 x 79) (s),Hops Over Occupancy Time comes to (1600 / 6 / 79) x (0.4 x 79) = 106.67 hops.
2. In AFH mode, hopping rate is 800 hops/s with 6 slots in 20 hopping channels. With channel hopping rate (800 / 6 / 20) in Occupancy Time Limit (0.4 x 20) (s), Hops Over Occupancy Time comes to (800 / 6 / 20) x (0.4 x 20) = 53.33 hops.
3. Dwell Time(s) = Hops Over Occupancy Time (hops) x Package Transfer Time

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FCC RADIO TEST REPORT

MIMO <Ant. 3>

Package Transfer Time Plot

Report No. : FR121931-04A

Remark: 1. In normal mode, hopping rate is 1600 hops/s with 6 slots in 79 hopping channels. With channel hopping rate (1600 / 6 / 79) in Occupancy Time Limit (0.4 x 79) (s),Hops Over Occupancy Time comes to (1600 / 6 / 79) x (0.4 x 79) = 106.67 hops.
2. In AFH mode, hopping rate is 800 hops/s with 6 slots in 20 hopping channels. With channel hopping rate (800 / 6 / 20) in Occupancy Time Limit (0.4 x 20) (s), Hops Over Occupancy Time comes to (800 / 6 / 20) x (0.4 x 20) = 53.33 hops.
3. Dwell Time(s) = Hops Over Occupancy Time (hops) x Package Transfer Time

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FCC RADIO TEST REPORT
3.4 20dB and 99% Bandwidth Measurement
3.4.1 Limit of 20dB and 99% Bandwidth
Reporting only

Report No. : FR121931-04A

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

3.4.3 Test Procedures
1. The testing follows ANSI C63.10-2013 clause 6.9.2 and 6.9.3. 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement. 3. Set the maximum power setting and enable the EUT to transmit continuously. 4. Use the following spectrum analyzer settings for 20 dB Bandwidth measurement.
Span = approximately 2 to 5 times the 20 dB bandwidth, centered on a hopping channel; RBW  1% of the 20 dB bandwidth; VBW  RBW; Sweep = auto; Detector function = peak; Trace = max hold. 5. Use the following spectrum analyzer settings for 99 % Bandwidth measurement. Span = approximately 1.5 to 5 times the 99% bandwidth, centered on a hopping channel; RBW  1-5% of the 99% bandwidth; VBW  3 * RBW; Sweep = auto; Detector function = peak; Trace = max hold. 6. Measure and record the results in the test report.

3.4.4 Test Setup

3.4.5 Test Result of 20dB Bandwidth
Please refer to Appendix A.
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FCC RADIO TEST REPORT
<Ant. 4> <1Mbps>
20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<2Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<3Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<Ant. 3> <1Mbps>
20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<2Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<3Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
MIMO <Ant. 4> <1Mbps>
20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<2Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<3Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
MIMO <Ant. 3> <1Mbps>
20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<2Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT
<3Mbps> 20 dB Bandwidth Plot on Channel 00

Report No. : FR121931-04A 20 dB Bandwidth Plot on Channel 39

20 dB Bandwidth Plot on Channel 78

N/A

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FCC RADIO TEST REPORT

Report No. : FR121931-04A

3.4.6 Test Result of 99% Occupied Bandwidth

Please refer to Appendix A. <Ant. 4> <1Mbps>

99% Occupied Bandwidth Plot on Channel 00

99% Occupied Bandwidth Plot on Channel 39

99% Occupied Bandwidth Plot on Channel 78

N/A

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

Report No. : FR121931-04A

<2Mbps> 99% Occupied Bandwidth Plot on Channel 00

99% Occupied Bandwidth Plot on Channel 39

99% Occupied Bandwidth Plot on Channel 78

N/A

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

Report No. : FR121931-04A

<3Mbps> 99% Occupied Bandwidth Plot on Channel 00

99% Occupied Bandwidth Plot on Channel 39

99% Occupied Bandwidth Plot on Channel 78

N/A

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

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