1

Cherry Li

Test Report- 5.8G WIFI

Shenzhen Zidoo Technology Co., Ltd. ZD24P 2AGN7-ZD24P 2AGN7ZD24P zd24p

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Page 1 of 49

Report No.: AITSZ24052403FW5

TEST REPORT

Client Information:
Applicant: Shenzhen Zidoo Technology Co., Ltd. Room 1301,1302,1303,1307, Chentian R&D Building, No. 50 Baotian First
Applicant add.: Road, Chentian Community, Xixiang Street, Baoan District, Shenzhen, China
Manufacturer: Shenzhen Zidoo Technology Co., Ltd. Room 1301,1302,1303,1307, Chentian R&D Building, No. 50 Baotian First
Manufacturer add.: Road, Chentian Community, Xixiang Street, Baoan District, Shenzhen, China
Product Information:
Product Name: 8K UHD MEDIA PLAYER Model No.: ZD24P
Serial Model: UHD8000,Z3000 PRO Brand Name: ZIDOO Test samples.: AITSZ24052403-1
FCC ID: 2AGN7-ZD24P
Applicable standards: FCC CFR Title 47 Part 15 Subpart E Section 15.407

Prepared By:

Guangdong Asia Hongke Test Technology Limited

B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District,

Shenzhen, Guangdong, China

Tel.: +86 0755-230967639 Fax.: +86 0755-230967639

Date of Receipt: May 24, 2024

Date of Test: May 24, 2024 ~ July. 01, 2024

Date of Issue: July. 01, 2024

Test Result: Pass

This device described above has been tested by Guangdong Asia Hongke Test Technology Limited and the test results show that the equipment under test (EUT) is in compliance with the FCC requirements. And it is applicable only to the tested sample identified in the report.
Note: This report shall not be reproduced except in full, without the written approval of Guangdong Asia Hongke Test Technology Limited, this document may be altered or revised by Guangdong Asia Hongke Test Technology Limited, personal only, and shall be noted in the revision of the document. This test report must not be used by the client to claim product endorsement.

Reviewed by:

Leon.yi

Approved by:
Sean She
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

1 Contents

Page 2 of 49

Report No.: AITSZ24052403FW5

COVER PAGE

Page

1 CONTENTS .................................................................................................................................................................... 2

2 TEST SUMMARY .......................................................................................................................................................... 5

2.1 Statement of the Measurement Uncertainty ....................................................................................... 5 2.2 Measurement Uncertainty ................................................................................................................... 5

3 TEST FACILITY ............................................................................................................................................................. 6

3.1 Deviation from standard ...................................................................................................................... 6 3.2 Abnormalities from standard conditions .............................................................................................. 6 3.3 Test Location ....................................................................................................................................... 6

4 GENERAL INFORMATION ......................................................................................................................................... 7

4.1 Test frequencies .................................................................................................................................. 8 4.2 EUT Peripheral List ............................................................................................................................. 8 4.3 Test Peripheral List .............................................................................................................................. 8 4.4 TEST METHODOLOGY ...................................................................................................................... 9 4.5 Description of Test Modes ................................................................................................................. 10

5 EQUIPMENT USED DURING TEST ........................................................................................................................ 13

6 TEST RESULTS AND MEASUREMENT DATA .................................................................................................... 14

6.1 Antenna requirement ......................................................................................................................... 14 6.1.1 Standard requirement: .............................................................................................................. 14 6.1.2 EUT Antenna: ............................................................................................................................ 14
6.2 On Time and Duty Cycle ................................................................................................................... 15 6.2.1 Standard requirement: .............................................................................................................. 15 6.2.2 Measuring Instruments and Setting: ......................................................................................... 15 6.2.3 Test Procedures ........................................................................................................................ 15 6.2.4 Test Setup Layout ..................................................................................................................... 15 6.2.5 EUT Operation during Test........................................................................................................ 15 6.2.6 Test result .................................................................................................................................. 15
6.3 Maximum Conducted Output Power Measurement .......................................................................... 16 6.3.1 Standard requirement: .............................................................................................................. 16 6.3.2 Measuring Instruments:............................................................................................................. 16 6.3.3 Test Procedures: ....................................................................................................................... 16 6.3.4 Test Setup Layout ..................................................................................................................... 17 6.3.5 EUT Operation during Test........................................................................................................ 17 6.3.6 Test result .................................................................................................................................. 17
6.4 6dB Bandwidth Measurement ........................................................................................................... 18 6.4.1 Standard requirement: .............................................................................................................. 18 6.4.2 Measuring Instruments:............................................................................................................. 18 6.4.3 Test Procedures ........................................................................................................................ 18 6.4.4 Test Setup Layout ..................................................................................................................... 18

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 3 of 49

Report No.: AITSZ24052403FW5

6.4.5 EUT Operation during Test........................................................................................................ 18

6.4.6 Test result .................................................................................................................................. 18

6.5 99% Occupied Bandwidth Measurement .......................................................................................... 19

6.5.1 Standard requirement: .............................................................................................................. 19

6.5.2 Measuring Instruments:............................................................................................................. 19

6.5.3 Test Procedures ........................................................................................................................ 19

6.5.4 Test Setup Layout ..................................................................................................................... 19

6.5.5 EUT Operation during Test........................................................................................................ 19

6.5.6 Test result .................................................................................................................................. 19

6.6 Power Spectral Density ..................................................................................................................... 21

6.6.1 Standard requirement: .............................................................................................................. 21

6.6.2 Measuring Instruments and Setting: ......................................................................................... 21

6.6.3 Test Procedures ........................................................................................................................ 21

6.6.4 Test Setup Layout ..................................................................................................................... 21

6.6.5 EUT Operation during Test........................................................................................................ 21

6.6.6 Test result .................................................................................................................................. 21

6.7 Radiated Emissions and Radiation Restricted band Measurement ................................................. 23

6.7.1 Standard requirement: .............................................................................................................. 23

6.7.2 Measuring Instruments and Setting: ......................................................................................... 24

6.7.3 Test Procedures ........................................................................................................................ 24

6.7.4 Test Setup Layout ..................................................................................................................... 27

6.7.5 EUT Operation during Test........................................................................................................ 28

6.7.6 Test result .................................................................................................................................. 28

6.8 Power Line Conducted Emissions .................................................................................................... 44

6.8.1 Standard requirement: .............................................................................................................. 44

6.8.2 Test Setup Layout ..................................................................................................................... 44

6.8.3 EUT Operation during Test........................................................................................................ 44

6.8.4 Test Procedures ........................................................................................................................ 44

6.8.5 Test result .................................................................................................................................. 44

6.9 Frequency Stability ............................................................................................................................ 47

6.9.1 Standard requirement: .............................................................................................................. 47

6.9.2 Measuring Instruments and Setting: ......................................................................................... 47

6.9.3 Test Procedures ........................................................................................................................ 47

6.9.4 Test Setup Layout ..................................................................................................................... 47

6.9.5 EUT Operation during Test........................................................................................................ 47

6.9.6 Test result .................................................................................................................................. 48

7 TEST SETUP PHOTOGRAPHS OF EUT................................................................................................................ 49

8 EXTERNAL PHOTOGRAPHS OF EUT................................................................................................................... 49

9 INTERNAL PHOTOGRAPHS OF EUT .................................................................................................................... 49

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Revision 01

Page 4 of 49 Revision History

Report No.: AITSZ24052403FW5

Issue Date July. 01, 2024

Revisions Initial Issue

Revised By Sean She

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 5 of 49

Report No.: AITSZ24052403FW5

2 Test Summary
Test Item /
§15.407(a) §15.407(a) §15.407(e)
§15.209 §15.407(b)
§15.20 §15.407(g) §15.207(a)
§15.203 §2.1093&§2.1091

Section in CFR 47 On Time and Duty Cycle Maximum Conducted Output Power Power Spectral Density
6dB Bandwidth
Radiated Emissions
Emissions at Restricted Band Frequency Stability
Power Line Conducted Emissions Antenna Requirements RF Exposure

Result /
Pass Pass Pass
Pass
Pass Pass Pass Pass Pass*

Note 1. Test according to ANSI C63.10:2013. 2. The measurement uncertainty is not included in the test result. 3. "*" Test results in other test report (RF Exposure Evaluation Report)
2.1 Statement of the Measurement Uncertainty
The data and results referenced in this document are true and accurate. The reader is cautioned that there may be errors within the calibration limits of the equipment and facilities. The measurement uncertainty was calculated for all measurements listed in this test report acc. To CISPR 16 ­ 4 "Specification for radio disturbance and immunity measuring apparatus and methods ­ Part 4: Uncertainty in EMC Measurements" and is documented in the AiT quality system acc. To DIN EN ISO/IEC 17025. Furthermore, component and process variability of devices similar to that tested may result in additional deviation. The manufacturer has the sole responsibility of continued compliance of the device.

2.2 Measurement Uncertainty

Test Item

Frequency Range

Measurement Uncertainty Notes

Radiated Emission

0.009MHz-30MHz

3.10dB

(1)

Radiated Emission

30MHz-1GHz

3.75dB

(1)

Radiated Emission

1GHz-18GHz

3.88dB

(1)

Radiated Emission

18GHz-40GHz

3.88dB

(1)

AC Power Line Conducted Emission

0.15MHz ~ 30MHz

1.20dB

(1)

Note (1): The measurement uncertainty is for coverage factor of k=2 and a level of confidence of 95%.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 6 of 49

Report No.: AITSZ24052403FW5

3 Test Facility
The test facility is recognized, certified or accredited by the following organizations:
FCC-Registration No.: 251906 Designation Number: CN1376 Guangdong Asia Hongke Test Technology Limited has been registered and fully described in a report filed with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in our files.
IC --Registration No.: 31737 CAB identifier: CN0165 The 3m Semi-anechoic chamber of Guangdong Asia Hongke Test Technology Limited has been registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing with Registration No.: 31737
A2LA-Lab Cert. No.: 7133.01 Guangdong Asia Hongke Test Technology Limited has been accredited by A2LA for technical competence in the field of electrical testing, and proved to be in compliance with ISO/IEC 17025: 2017 General Requirements for the Competence of Testing and Calibration Laboratories and any additional program requirements in the identified field of testing.
3.1 Deviation from standard
None
3.2 Abnormalities from standard conditions
None
3.3 Test Location
Guangdong Asia Hongke Test Technology Limited Address: B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China Tel.: +86 0755-230967639 Fax.: +86 0755-230967639

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 7 of 49

Report No.: AITSZ24052403FW5

4 General Information

EUT Name: Model No: Brand Name: Serial Model: Sample(s) Status: Operation frequency:
Modulation Technology:
Modulation Type Antenna Type: Antenna gain: H/W No.: S/W No.: Adapter: Model different: Note:

8K UHD MEDIA PLAYER
ZD24P ZIDOO UHD8000,Z3000 PRO Engineer sample 5745MHz-5825MHz 5 channels for 20MHz bandwidth(5745MHz-5825MHz) 2 channels for 40MHz bandwidth(5755MHz~5795MHz) 1 channels for 80MHz bandwidth(5775MHz) IEEE 802.11a/n/ac/ax: OFDM(64QAM, 16QAM, QPSK, BPSK) Stick Antenna 3.91dBi N/A N/A Input: 100-240V 50/60Hz 0.8A Output: 12V2A 24W Different model names For a more detailed features description, please refer to the manufacturer's specifications or the User's Manual.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 8 of 49

Report No.: AITSZ24052403FW5

4.1 Test frequencies

EUT channels and frequencies list:

Frequency Band Channel No.

Frequency (MHz) Channel No. Frequency (MHz)

149

5745

155

5775

5745~5825MHz

151 153

5755 5765

159 161

5795 5805

157

5785

165

5825

For IEEE 802.11a/n HT20/ac VHT20/ax HE20, Channel 149, 157 and 165 were tested.

For IEEE 802.11n HT40/ac VHT40/ax HE40, Channel 151 and 159 were tested.

For IEEE 802.11ac VHT80/ax HE80, Channel 155 was tested.

4.2 EUT Peripheral List

EMC

No. Equipment Manufacturer

Model No.

Compliance

1

N/A

N/A

N/A

N/A

Serial No. N/A

Power cord Signal cord

N/A

N/A

4.3 Test Peripheral List

EMC No. Equipment Manufacturer
Compliance

1 Notebook

DELL

VOSTRO.3 800

Model No.
DELL

USB

2

Cable

N/A

N/A

100cm

Serial No. N/A

Power cord Signal cord

N/A

N/A

N/A

N/A

N/A

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 9 of 49

Report No.: AITSZ24052403FW5

4.4 TEST METHODOLOGY
All measurements contained in this report were conducted with ANSI C63.10-2013, American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices. The radiated testing was performed at an antenna-to-EUT distance of 3 meters. All radiated and conducted emissions measurement was performed at Guangdong Asia Hongke Test Technology Limited
4.4.1 EUT Configuration The EUT configuration for testing is installed on RF field strength measurement to meet the Commissions requirement and operating in a manner that intends to maximize its emission characteristics in a continuous normal application.
4.4.2 EUT Exercise The EUT was operated in the engineering mode to fix the TX frequency that was for the purpose of the measurements. According to FCC's request, Test Procedure 789033 D02 General UNII Test Procedures New Rules v01r03 and KDB 662911 D01 Multiple Transmitter Output v02r01 is required to be used for this kind of FCC 15.407 UII device. According to its specifications, the EUT must comply with the requirements of the Section 15.203, 15.205, 15.207, 15.209 and 15.407 under the FCC Rules Part 15 Subpart E
4.4.3 General Test Procedures
Conducted Emissions The EUT is placed on the turntable, which is 0.8 m above ground plane. According to the requirements in Section 6.2.1 of ANSI C63.10-2013 Conducted emissions from the EUT measured in the frequency range between 0.15 MHz and 30MHz using Quasi-peak and average detector modes.
Radiated Emissions The EUT is placed on a turn table, which is 0.8 m above ground plane. The turntable shall rotate 360 degrees to determine the position of maximum emission level. EUT is set 3m away from the receiving antenna, which varied from 1m to 4m to find out the highest emission. And also, each emission was to be maximized by changing the polarization of receiving antenna both horizontal and vertical. In order to find out the maximum emissions, exploratory radiated emission measurements were made according to the requirements in Section 6.3 of ANSI C63.10-2013.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 10 of 49

Report No.: AITSZ24052403FW5

4.5 Description of Test Modes

The EUT has been tested under operating condition.

This test was performed with EUT in X, Y, Z position and the worst case was found when EUT in X position.

Worst-case mode and channel used for 150 KHz-30 MHz power line conducted emissions was the mode and channel with the highest output power that was determined to be IEEE 802.11ac VHT20 mode (High Channel, at Antenna Chain1).

Worst-case mode and channel used for 9 KHz-1000 MHz radiated emissions was the mode and channel with the highest output power, that was determined to be IEEE 802.11ac VHT20 mode (High Channel, at Antenna Chain1).

Pre-test AC conducted emission at both voltage AC 120V/60Hz and AC 240V/50Hz, recorded worst case.

Worst-Case data rates were utilized from preliminary testing of the Chipset, worst-case data rates used during the testing are as follows:

IEEE 802.11a Mode: 6 Mbps, OFDM.

IEEE 802.11ac VHT20 Mode: MCS0

IEEE 802.11n HT20 Mode: MCS0, OFDM.

IEEE 802.11ac VHT40 Mode: MCS0, OFDM.

IEEE 802.11n HT40 Mode: MCS0, OFDM.

IEEE 802.11ac VHT80 Mode: MCS0, OFDM.

IEEE 802.11ax HE20 Mode: MCS0, OFDM.

IEEE 802.11ax HE40 Mode: MCS0, OFDM.

IEEE 802.11ax HE80 Mode: MCS0, OFDM. In section 15.31(m), regards to the operating frequency range over 10 MHz, the Lowest frequency, the middle frequency, and the highest frequency of channel were selected to perform the test, and the selected channel see below:

Transmitting mode

Keep the EUT in continuously transmitting mode.

Test software:

*#*#9646633#*#*

Frequency

5745 MHz 5785 MHz 5825 MHz

--

--

--

Parameters(802.11a)

Default

Default

Default

--

--

--

Parameters(802.11n20) Default

Default

Default

--

--

--

Parameters(802.11ac20) Default

Default

Default

--

--

--

Parameters(802.11ax20) Default

Default

Default

Frequency

5755 MHz 5795 MHz

--

--

--

--

Parameters(802.11n40) Default

Default

--

--

--

--

Parameters(802.11ac40) Default

Default

--

--

--

--

Parameters(802.11ax40) Default

Default

Frequency

5775 MHz

--

--

--

--

--

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Parameters(802.11ac80) Parameters(802.11ax80)

Page 11 of

Default

--

Default

49 --

Report No.: AITSZ24052403FW5

--

--

--

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 12 of 49

Report No.: AITSZ24052403FW5

Antenna & Bandwidth

Antenna

Chain 1 (ANT1)

Bandwidth Mode 20MHz 40MHz 80MHz

IEEE 802.11a







IEEE 802.11n







IEEE 802.11ac







IEEE 802.11ax







Chain 2 (ANT2)

20MHz 40MHz 80MHz

























Simultaneously /    

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 13 of 49

Report No.: AITSZ24052403FW5

5 Equipment Used during Test

No

Test Equipment

1

Spectrum Analyzer

2

Spectrum Analyzer

Manufacturer R&S
Keysight

Model No FSV40 N9020A

Serial No 101470 MY51280643

Cal. Date 2023.09.08 2023.09.08

Cal. Due Date 2024.09.07 2024.09.07

3 EMI Measuring Receiver

R&S

ESR

101660

2023.09.08 2024.09.07

4 Low Noise Pre-Amplifier

HP

5 Low Noise Pre-Amplifier

Tsj

6

Passive Loop

ETS

TRILOG Super Broadband

7

SCHWARZBECK

test Antenna

8 Broadband Horn Antenna SCHWARZBECK

SHF-EHF Horn Antenna

9

SCHWARZBECK

15-40GHz

10 EMI Measuring Receiver

R&S

11

LISN

SCHWARZBECK

12

Pulse Limiter

R&S

HP8447E MLA-0120-A02-
34 6512
VULB9160

1937A01855 2648A04738
00165355 9160-3206

BBHA9120D

452

BBHA9170

BBHA9170367d

ESR NNLK 8129
ESH3-Z2

101160 8130179 102789

2023.09.08 2023.09.08 2022.09.04 2021.08.29 2021.08.29 2021.08.29 2023.09.13 2023.10.29 2023.09.13

2024.09.07 2024.09.07 2024.09.03 2024.08.28 2024.08.28 2024.08.28 2024.09.12 2024.10.28 2024.09.12

13 Pro.Temp&Humi.chamber

MENTEK

MHP-150-1C

MAA08112501 2023.09.08 2024.09.07

14 RF Automatic Test system

MW

MW100-RFCB

21033016

2023.09.08 2024.09.07

15

Signal Generator

Wideband Radio 16
communication tester

17 RF Automatic Test system

Agilent R&S MW

N5182A

MY50143009 2023.09.08 2024.09.07

CMW500

1201.0002K50 2023.09.08 2024.09.07

MW100-RFCB

21033016

2023.09.08 2024.09.07

18

DC power supply

ZHAOXIN

RXN-305D-2

28070002559

N/A

N/A

19

RE Software

EZ

EZ-EMC_RE

Ver.AIT-03A

N/A

N/A

20

CE Software

EZ

EZ-EMC_CE

Ver.AIT-03A

N/A

N/A

21

RF Software

MW

MTS 8310

2.0.0.0

N/A

N/A

temporary antenna 22
connector(Note)

NTS

R001

N/A

N/A

N/A

Note: The temporary antenna connector is soldered on the PCB board in order to perform conducted tests and this temporary

antenna connector is listed in the equipment list.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 14 of 49

Report No.: AITSZ24052403FW5

6 Test results and Measurement Data

6.1 Antenna requirement

6.1.1 Standard requirement:

For intentional device, according to FCC 47 CFR Section 15.203:

An intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator, the manufacturer may design the unit so that a broken antenna can be replaced by the user, but the use of a standard antenna jack or electrical connector is prohibited

And according to FCC 47 CFR Section 15.407 (a), if transmitting antennas of directional gain greater than 6dBi are used, the power shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6dBi.

According to § 15.203 & RSS-Gen, an intentional radiator shall be designed to ensure that no antenna other than that furnished by the responsible party shall be used with the device.
6.1.2 EUT Antenna:
The antenna is Stick Antenna, the best case gain of the antenna is 3.91dBi reference to the Internal photos for details

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 15 of 49
6.2 On Time and Duty Cycle

Report No.: AITSZ24052403FW5

6.2.1 Standard requirement: None; for reporting purpose only
6.2.2 Measuring Instruments and Setting:
Please refer to equipments list in this report. The following table is the setting of the spectrum analyser.

6.2.3 Test Procedures
1). Set the Centre frequency of the spectrum analyzer to the transmitting frequency; 2). Set the span=0MHz, RBW=8MHz, VBW=50MHz, Sweep time=10.13ms; 3). Detector = peak; 4). Trace mode = Single hold. 6.2.4 Test Setup Layout

6.2.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
6.2.6 Test result For reporting purpose only. Please refer to Appendix D

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 16 of 49

Report No.: AITSZ24052403FW5

6.3 Maximum Conducted Output Power Measurement

6.3.1 Standard requirement:
For 5725~5850MHz
For the band 5.725-5.85 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. In addition, the maximum power spectral density shall not exceed 30 dBm in any 500-kHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. However, fixed point-to-point U-NII devices operating in this band may employ transmitting antennas with directional gain greater than 6 dBi without any corresponding reduction in transmitter conducted power. Fixed, point-to-point operations exclude the use of point-to-multipoint systems, omnidirectional applications, and multiple collocated transmitters transmitting the same information. The operator of the U-NII device, or if the equipment is professionally installed, the installer, is responsible for ensuring that systems employing high gain directional antennas are used exclusively for fixed, point-to-point operations.

6.3.2 Measuring Instruments:
Please refer to equipment list in this report.
6.3.3 Test Procedures: Method SA-2A uses rms detection with slow sweep with each spectrum bin averaging across ON and OFF times of the EUT transmissions, followed by duty cycle correction. The procedure for this method is as follows: a) Measure the duty cycle D of the transmitter output signal as described in 12.2. b) Set span to encompass the entire 26 dB EBW or 99% OBW of the signal. c) Set RBW = 1 MHz. d) Set VBW 3 MHz.
e) Number of points in sweep  [2 × span / RBW]. (This gives bin-to-bin spacing  RBW / 2, so
that narrowband signals are not lost between frequency bins.)
f) Manually set sweep time  [10 × (number of points in sweep) × (total ON/OFF period of the
transmitted signal)]. g) Set detector = RMS (power averaging). h) Perform a single sweep. i) Compute power by integrating the spectrum across the 26 dB EBW or 99% OBW of the signal
using the instrument's band power measurement function with band limits set equal to the EBW
or OBW band edges. If the instrument does not have a band power function, then sum the spectrum levels (in power units) at 1 MHz intervals extending across the 26 dB EBW of the spectrum. j) Add [10 log (1 / D)], where D is the duty cycle, to the measured power to compute the average power during the actual transmission times (because the measurement represents an average over both the ON and OFF times of the transmission). For example, add [10 log (1 / 0.25)] = 6 dB
if the duty cycle is 25%.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

6.3.4 Test Setup Layout

Page 17 of 49

Report No.: AITSZ24052403FW5

6.3.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
6.3.6 Test result
PASS Please refer to Appendix D
Remark: 1. Measured output power at difference data rate for each mode and recorded worst case for each
mode. 2. Test results including cable loss; 3. Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40,
IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20, IEEE 802.11ax HE40, IEEE 802.11ax HE80; 4. Report conducted power = Measured conducted average power + Duty Cycle factor;

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 18 of 49
6.4 6dB Bandwidth Measurement

Report No.: AITSZ24052403FW5

6.4.1 Standard requirement: Within the 5.725-5.85 GHz band, the minimum 6 dB bandwidth of U-NII devices shall be at least 500 kHz.
6.4.2 Measuring Instruments:
Please refer to equipment list in this report. The following table is the setting of the Spectrum Analyzer.

Spectrum Parameter Attenuation Span Detector Trace Sweep Time
6.4.3 Test Procedures

Setting Auto > 26dB Bandwidth Peak Max Hold Auto

1. The transmitter output (antenna port) was connected to the spectrum analyzer in peak hold mode. 2. The resolution bandwidth of 100 KHz and the video bandwidth of 300 KHz were used. 3. Measured the spectrum width with power higher than 6dB below carrier. 6.4.4 Test Setup Layout

6.4.5 EUT Operation during Test
The EUT was programmed to be in continuously transmitting mode.
6.4.6 Test result
PASS. Please refer to Appendix D Remark: 1. Measured 6dB bandwidth at difference data rate for each mode and recorded worst case for each
mode. 2. Test results including cable loss; 3. Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40,
IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20, IEEE 802.11ax HE40, IEEE 802.11ax HE80;
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 19 of 49
6.5 99% Occupied Bandwidth Measurement

Report No.: AITSZ24052403FW5

6.5.1 Standard requirement:
According to §2.1049: The occupied bandwidth, that is the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5 percent of the total mean power radiated by a given emission shall be measured under the following conditions as applicable.

6.5.2 Measuring Instruments:

Please refer to equipment list in this report. The following table is the setting of the Spectrum Analyzer.

Spectrum Parameter

Setting

Attenuation

Auto

RBW

> RBW

VBW

Peak

Span Frequency

Max Hold

Detector

100ms

6.5.3 Test Procedures

1. The transmitter output (antenna port) was connected to the spectrum analyzer in peak hold mode. 2. Set RBW = 1%~5% OBW; VBW3*RBW; 3. Measured the 99% occupied bandwidth by related function of the spectrum analyzer.

6.5.4 Test Setup Layout

6.5.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
6.5.6 Test result PASS.
Please refer to Appendix D
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Page 20 of 49

Report No.: AITSZ24052403FW5

Remark: 1. Measured 6dB bandwidth at difference data rate for each mode and recorded worst case for each
mode. 2. Test results including cable loss; 3. Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40,
IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20, IEEE 802.11ax HE40, IEEE 802.11ax HE80;

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 21 of 49
6.6 Power Spectral Density

Report No.: AITSZ24052403FW5

6.6.1 Standard requirement:
For 5725~5850MHz
For the band 5.725-5.85 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. In addition, the maximum power spectral density shall not exceed 30 dBm in any 500-kHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the maximum conducted output power and the maximum power spectral density shall be reduced by the amount in dB that the directional gain of the antenna exceeds 6 dBi. However, fixed point-to-point U-NII devices operating in this band may employ transmitting antennas with directional gain greater than 6 dBi without any corresponding reduction in transmitter conducted power. Fixed, point-to-point operations exclude the use of point-to-multipoint systems, omnidirectional applications, and multiple collocated transmitters transmitting the same information. The operator of the U-NII device, or if the equipment is professionally installed, the installer, is responsible for ensuring that systems employing high gain directional antennas are used exclusively for fixed, point-to-point operations.
6.6.2 Measuring Instruments and Setting:
Please refer to equipment list in this report. The following table is the setting of Spectrum Analyzer.
6.6.3 Test Procedures
Refer to section 6.3.3 (except for i), the spectrograph cancels the channel power mode and changes to the spectrum mode.
6.6.4 Test Setup Layout

6.6.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
6.6.6 Test result
PASS.
Please refer to Appendix D
Remark: 1. Measured power spectrum density at difference data rate for each mode and recorded worst case for each mode.
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 22 of 49 2. Test results including cable loss;

Report No.: AITSZ24052403FW5

3. Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40, IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20,

IEEE 802.11ax HE40, IEEE 802.11ax HE80; 4. Report conducted PSD = measured conducted PSD + Duty Cycle factor + RBW factor;

RBW factor = 10 log (500 KHz / 300 KHz) = 2.218 dB;

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 23 of 49

Report No.: AITSZ24052403FW5

6.7 Radiated Emissions and Radiation Restricted band Measurement

6.7.1 Standard requirement:
15.205 (a) Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below:

MHz

MHz

MHz

0.090-0.110

16.42-16.423

399.9-410

\1\ 0.495-0.505

16.69475-16.69525

608-614

2.1735-2.1905

16.80425-16.80475

960-1240

4.125-4.128

25.5-25.67

1300-1427

4.17725-4.17775 37.5-38.25

1435-1626.5

4.20725-4.20775 73-74.6

1645.5-1646.5

6.215-6.218

74.8-75.2

1660-1710

6.26775-6.26825 108-121.94

1718.8-1722.2

6.31175-6.31225

123-138

2200-2300

8.291-8.294

149.9-150.05

2310-2390

8.362-8.366

156.52475-156.52525 2483.5-2500

8.37625-8.38675 156.7-156.9

2690-2900

8.41425-8.41475 162.0125-167.17

3260-3267

12.29-12.293.

167.72-173.2

3332-3339

12.51975-12.52025 240-285

3345.8-3358

12.57675-12.57725 322-335.4

3600-4400

13.36-13.41

\1\ Until February 1, 1999, this restricted band shall be 0.490-0.510 MHz.

\2\ Above 38.6

For transmitters operating in the 5.725-5.85 GHz band:

GHz 4.5-5.15 5.35-5.46 7.25-7.75 8.025-8.5 9.0-9.2 9.3-9.5 10.6-12.7 13.25-13.4 14.47-14.5 15.35-16.2 17.7-21.4 22.01-23.12 23.6-24.0 31.2-31.8 36.43-36.5 (\2\)

All emissions shall be limited to a level of -27 dBm/MHz(68.2dBuV/m at 3m) at 75 MHz or more above or below the band edge increasing linearly to 10 dBm/MHz(105.2dBuV/m at 3m) at 25 MHz above or below the band edge, and from 25 MHz above or below the band edge increasing linearly to a level of 15.6(110.8dBuV/m at 3m) dBm/MHz at 5 MHz above or below the band edge, and from 5 MHz above or below the band edge increasing linearly to a level of 27 dBm/MHz(122.2dBuV/m at 3m) at the band edge.

In addition, In case the emission fall within the restricted band specified on 15.205(a), then the

15.209(a) limit in the table below has to be followed.

IFrequencies

Field Strength

Measurement Distance

(MHz)

(microvolts/meter)

(meters)

0.009~0.490

2400/F(KHz)

300

0.490~1.705

24000/F(KHz)

30

1.705~30.0

30

30

30~88

100

3

88~216

150

3

216~960

200

3

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Above 960

Page 24 of 49 500

Report No.: AITSZ24052403FW5 3

6.7.2 Measuring Instruments and Setting:
Please refer to equipment list in this report. The following table is the setting of spectrum analyzer and receiver.

Spectrum Parameter Attenuation Start Frequency Stop Frequency RB / VB (Emission in restricted band) RB / VB (Emission in non-restricted band)

Setting Auto 1000 MHz 10th carrier harmonic 1MHz / 1MHz for Peak, 1 MHz / 1/B kHz for Average 1MHz / 1MHz for Peak, 1 MHz / 1/B kHz for Average

Receiver Parameter Attenuation Start ~ Stop Frequency Start ~ Stop Frequency Start ~ Stop Frequency
6.7.3 Test Procedures

Setting Auto 9kHz~150kHz / RB/VB 200Hz/1KHz for QP/AVG 150kHz~30MHz / RB/VB 9kHz/30KHz for QP/AVG 30MHz~1000MHz / RB/VB 120kHz/1MHz for QP

1) Sequence of testing 9 kHz to 30 MHz
Setup:
--- The equipment was set up to simulate a typical usage like described in the user manual or described by manufacturer.
--- If the EUT is a tabletop system, a rotatable table with 0.8 m height is used.
--- If the EUT is a floor standing device, it is placed on the ground.
--- Auxiliary equipment and cables were positioned to simulate normal operation conditions.
--- The AC power port of the EUT (if available) is connected to a power outlet below the turntable.
--- The measurement distance is 3 meter.
--- The EUT was set into operation.
Premeasurement:
--- The turntable rotates from 0°to 315°using 45°steps.
--- The antenna height is 1.5 meter.
--- At each turntable position the analyzer sweeps with peak detection to find the maximum of all emissions
Final measurement:
--- Identified emissions during the premeasurement the software maximizes by rotating the turntable position (0°to 360°) and by rotating the elevation axes (0°to 360°).
--- The final measurement will be done in the position (turntable and elevation) causing the highest emissions with QPK detector.
--- The final levels, frequency, measuring time, bandwidth, turntable position, correction factor, margin to the limit and limit will be recorded. Also a plot with the graph of the premeasurement and
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

the limit will be stored.

Page 25 of 49

Report No.: AITSZ24052403FW5

2) Sequence of testing 30 MHz to 1 GHz
Setup:
--- The equipment was set up to simulate a typical usage like described in the user manual or described by manufacturer.
--- If the EUT is a tabletop system, a table with 0.8 m height is used, which is placed on the ground plane.
--- If the EUT is a floor standing device, it is placed on the ground plane with insulation between both.
--- Auxiliary equipment and cables were positioned to simulate normal operation conditions
--- The AC power port of the EUT (if available) is connected to a power outlet below the turntable.
--- The measurement distance is 3 meter.
--- The EUT was set into operation.
Premeasurement:
--- The turntable rotates from 0°to 315°using 45°steps.
--- The antenna is polarized vertical and horizontal.
--- The antenna height changes from 1 to 3 meter.
--- At each turntable position, antenna polarization and height the analyzer sweeps three times in peak to find the maximum of all emissions.
Final measurement:
--- The final measurement will be performed with minimum the six highest peaks.
--- According to the maximum antenna and turntable positions of premeasurement the software maximize the peaks by changing turntable position (±45°) and antenna movement between 1 and 4 meter.
--- The final measurement will be done with QP detector with an EMI receiver.
--- The final levels, frequency, measuring time, bandwidth, antenna height, antenna polarization, turntable angle, correction factor, margin to the limit and limit will be recorded. Also a plot with the graph of the premeasurement with marked maximum final measurements and the limit will be stored.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 26 of 49

Report No.: AITSZ24052403FW5

3) Sequence of testing 1 GHz to 18 GHz
Setup:
--- The equipment was set up to simulate a typical usage like described in the user manual or described by manufacturer.
--- If the EUT is a tabletop system, a rotatable table with 1.5 m height is used.
--- If the EUT is a floor standing device, it is placed on the ground plane with insulation between both.
--- Auxiliary equipment and cables were positioned to simulate normal operation conditions
--- The AC power port of the EUT (if available) is connected to a power outlet below the turntable.
--- The measurement distance is 3 meter.
--- The EUT was set into operation.
Premeasurement:
--- The turntable rotates from 0°to 315°using 45°steps.
--- The antenna is polarized vertical and horizontal.
--- The antenna height scan range is 1 meter to 2.5 meter.
--- At each turntable position and antenna polarization the analyzer sweeps with peak detection to find the maximum of all emissions.
Final measurement:
--- The final measurement will be performed with minimum the six highest peaks.
--- According to the maximum antenna and turntable positions of premeasurement the software maximize the peaks by changing turntable position (±45°) and antenna movement between 1 and 4 meter. This procedure is repeated for both antenna polarizations.
--- The final measurement will be done in the position (turntable, EUT-table and antenna polarization) causing the highest emissions with Peak and Average detector.
--- The final levels, frequency, measuring time, bandwidth, turntable position, EUT-table position, antenna polarization, correction factor, margin to the limit and limit will be recorded. Also a plot with the graph of the premeasurement with marked maximum final measurements and the limit will be stored.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 27 of 49

Report No.: AITSZ24052403FW5

4) Sequence of testing above 18 GHz Setup: --- The equipment was set up to simulate a typical usage like described in the user manual or described by manufacturer. --- If the EUT is a tabletop system, a rotatable table with 1.5 m height is used. --- If the EUT is a floor standing device, it is placed on the ground plane with insulation between both. --- Auxiliary equipment and cables were positioned to simulate normal operation conditions --- The AC power port of the EUT (if available) is connected to a power outlet below the turntable. --- The measurement distance is 1 meter. --- The EUT was set into operation. Premeasurement: --- The antenna is moved spherical over the EUT in different polarisations of the antenna. Final measurement: --- The final measurement will be performed at the position and antenna orientation for all detected emissions that were found during the premeasurements with Peak and Average detector. --- The final levels, frequency, measuring time, bandwidth, correction factor, margin to the limit and limit will be recorded. Also a plot with the graph of the premeasurement and the limit will be stored.

6.7.4 Test Setup Layout

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Page 28 of 49

Report No.: AITSZ24052403FW5

Above 18 GHz shall be extrapolated to the specified distance using an extrapolation factor of 20 dB/decade form 3m to 1m.
Distance extrapolation factor = 20 log (specific distance [3m] / test distance [1m]) (dB);
Limit line = specific limits (dBuV) + distance extrapolation factor [6 dB].

6.7.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
6.7.6 Test result .

Temperature Configurations

25.8 IEEE 802.11a/n/ac

Humidity

52.5%

Remarks:

1. Only the worst case Main Antenna test data.

2. Pre-scan all kind of the place mode (X-axis, Y-axis, Z-axis), and found the Y-axis which it is worse case.

 Results of Radiated Emissions (9 KHz~30MHz)

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Freq. (MHz)
-

Page 29 of 49

Level (dBuV)

Over Limit (dB)

-

-

Report No.: AITSZ24052403FW5

Over Limit (dBuV)

Remark

-

See Note

Note:
The emission from 9 kHz to 30MHz was pre-tested and found the result was 20dB lower than the limit, and the permissible value has no need to be reported.
Distance extrapolation factor = 40 log (specific distance / test distance) (dB); Limit line = specific limits (dBuV) + distance extrapolation factor.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 30 of 49  Results of Radiated Emissions (30MHz~1GHz)

Report No.: AITSZ24052403FW5

Pre-scan all modes and recorded the worst case results in this report (IEEE 802.11ac(VHT40)).

Model name: Polarization :

ZD24P Vertical

Test Date : Test Result:

2024-05-27 Pass Fail

Remark: Emission Level = Reading + Factor; Factor = Antenna Factor + Cable Loss ­ Pre-amplifier; Margin= Emission Level - Limit.

Frequency Reading

Factor

Level

Limit

Margin

No.

Det.

(MHz)

(dBuV)

(dB/m)

(dBuV/m) (dBuV/m)

(dB)

1

31.1688

35.71

-17.48

18.23

40.00

-21.77

QP

2

68.2231

36.40

-18.63

17.77

40.00

-22.23

QP

3

178.0078

37.46

-18.02

19.44

43.50

-24.06

QP

4

264.3745

38.36

-18.05

20.31

46.00

-25.69

QP

5

608.6398

35.20

-9.53

25.67

46.00

-20.33

QP

6 * 940.1504

36.47

-3.77

32.70

46.00

-13.30

QP

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Model name: Polarization :

ZD24P Horizontal

Page 31 of 49

Report No.: AITSZ24052403FW5

Test Date : Test Result:

2024-05-27 Pass Fail

Remark: Emission Level = Reading + Factor; Factor = Antenna Factor + Cable Loss ­ Pre-amplifier; Margin= Emission Level - Limit.

Frequency Reading

Factor

Level

Limit

Margin

No.

Det.

(MHz)

(dBuV)

(dB/m)

(dBuV/m) (dBuV/m)

(dB)

1

39.4925

33.99

-16.52

17.47

40.00

-22.53

QP

2

153.3616

33.60

-16.52

17.08

43.50

-26.42

QP

3

262.8955

35.36

-18.09

17.27

46.00

-28.73

QP

4

386.2273

33.10

-14.86

18.24

46.00

-27.76

QP

5

647.1586

35.88

-8.91

26.97

46.00

-19.03

QP

6 * 953.7645

35.23

-3.50

31.73

46.00

-14.27

QP

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 32 of 49

Report No.: AITSZ24052403FW5

Results for Radiated Emissions (1- 40 GHz)

Note: All the modes have been tested and recorded worst mode in the report. (IEEE 802.11ac(VHT40))

Band IV(5.725-5.85) GHz

Antenna Orrected Emission

Frequency Reading Amplifier Loss Factor Factor Level

Limit Margin

(MHz) (dBuV) dB dB dB/m dB (dBV/m) (dBuV/m) (dB) Detector Comment

Low Channel (802.11ac(VHT40)/ 5755 MHz)

3250.20 44.77 44.70

6.70

28.20

-9.80

34.97

68.20 -33.23 Pk

Vertical

3250.20 40.82 44.70

6.70

28.20

-9.80

31.02

54.00 -22.98 AV

Vertical

3257.32 44.33 44.70 6.70

28.20

-9.80

34.53

68.20 -33.67 Pk Horizontal

3257.32 41.11 44.70 6.70

28.20

-9.80

31.31

54.00 -22.69 AV Horizontal

3999.92 39.70 44.20

7.90

29.70

-6.60

33.10

68.20 -35.10 Pk

Vertical

3999.92 36.68 44.20

7.90

29.70

-6.60

30.08

54.00 -23.92 AV

Vertical

3985.70 39.24 44.20 7.90

29.70

-6.60

32.64

68.20 -35.56 Pk Horizontal

3985.70 36.96 44.20 7.90

29.70

-6.60

30.36

54.00 -23.64 AV Horizontal

7217.07 37.24 43.50 11.40 35.50

3.40

40.64

68.20 -27.56 Pk

Vertical

7217.07 33.46 43.50 11.40 35.50

3.40

36.86

54.00 -17.14 AV

Vertical

7216.74 37.84 43.50 11.40 35.50

3.40

41.24

68.20 -26.96 Pk Horizontal

7216.74 34.76 43.50 11.40 35.50

3.40

38.16

54.00 -15.84 AV Horizontal

10511.98 39.78 44.50 13.90 38.80

8.20

47.98

68.20 -20.22 Pk

Vertical

10511.98 36.93 44.50 13.90 38.80

8.20

45.13

54.00 -8.87

AV

Vertical

10514.34 39.97 44.50 13.90 38.80

8.20

48.17

68.20 -20.03 Pk Horizontal

10514.34 36.74 44.50 13.90 38.80

8.20

44.94

54.00 -9.06

AV Horizontal

11490.30 32.80 43.60 14.30 39.50

10.20

43.00

68.20 -25.20 Pk

Vertical

11490.30 30.25 43.60 14.30 39.50

10.20

40.45

54.00 -13.55 AV

Vertical

11490.20 32.91 43.60 14.30 39.50

10.20

43.11

68.20 -25.09 Pk Horizontal

11490.20 29.74 43.60 14.30 39.50

10.20

39.94

54.00 -14.06 AV Horizontal

13284.06 32.11 42.60 15.90 38.90

12.20

44.31

68.20 -23.89 Pk

Vertical

13284.06 28.62 42.60 15.90 38.90

12.20

40.82

54.00 -13.18 AV

Vertical

13285.76 31.83 42.60 15.90 38.90

12.20

44.03

68.20 -24.17 Pk Horizontal

13285.76 29.85 42.60 15.90 38.90

12.20

42.05

54.00 -11.95 AV Horizontal

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 33 of 49

Report No.: AITSZ24052403FW5

High Channel (802.11ac(VHT40)/ 5795 MHz)

3264.97 43.89 44.70

6.70

28.20

-9.80

34.09

68.20 -34.11

Pk

Vertical

3264.97 41.49 44.70

6.70

28.20

-9.80

31.69

54.00 -22.31 AV

Vertical

3257.83 45.22 44.70 6.70

28.20

-9.80

35.42

68.20 -32.78 Pk Horizontal

3257.83 41.99 44.70 6.70

28.20

-9.80

32.19

54.00 -21.81 AV Horizontal

3991.28 38.93 44.20

7.90

29.70

-6.60

32.33

68.20 -35.87 Pk

Vertical

3991.28 35.94 44.20

7.90

29.70

-6.60

29.34

54.00 -24.66 AV

Vertical

3991.14 39.40 44.20 7.90

29.70

-6.60

32.80

68.20 -35.40 Pk Horizontal

3991.14 35.99 44.20 7.90

29.70

-6.60

29.39

54.00 -24.61 AV Horizontal

7218.52 37.80 43.50 11.40 35.50

3.40

41.20

68.20 -27.00 Pk

Vertical

7218.52 33.72 43.50 11.40 35.50

3.40

37.12

54.00 -16.88 AV

Vertical

7232.34 36.78 43.50 11.40 35.50

3.40

40.18

68.20 -28.02 Pk Horizontal

7232.34 33.80 43.50 11.40 35.50

3.40

37.20

54.00 -16.80 AV Horizontal

10626.73 39.61 44.50 13.80 38.80

8.10

47.71

68.20 -20.49 Pk

Vertical

10626.73 36.53 44.50 13.80 38.80

8.10

44.63

54.00 -9.37

AV

Vertical

10639.98 39.08 44.50 13.80 38.80

8.10

47.18

68.20 -21.02 Pk Horizontal

10639.98 35.94 44.50 13.80 38.80

8.10

44.04

54.00 -9.96

AV Horizontal

11650.07 33.30 43.60 14.30 39.50

10.20

43.50

68.20 -24.70 Pk

Vertical

11650.07 30.29 43.60 14.30 39.50

10.20

40.49

54.00 -13.51 AV

Vertical

11650.35 33.30 43.60 14.30 39.50

10.20

43.50

68.20 -24.70 Pk Horizontal

11650.35 31.04 43.60 14.30 39.50

10.20

41.24

54.00 -12.76 AV Horizontal

13291.51 31.75 42.70 18.00 37.10

12.40

44.15

68.20 -24.05 Pk

Vertical

13291.51 29.71 42.70 18.00 37.10

12.40

42.11

54.00 -11.89 AV

Vertical

13292.33 32.21 42.70 18.00 37.10

12.40

44.61

68.20 -23.59 Pk Horizontal

13292.33 29.93 42.70 18.00 37.10

12.40

42.33

54.00 -11.67 AV Horizontal

Notes: 1). Measuring frequencies from 9 KHz ~ 40GHz, No emission found between lowest internal used/generated frequency to 30MHz. 2). Radiated emissions measured in frequency range from 9 KHz ~ 40GHz were made with an instrument using Peak detector mode. 3). 18~40GHz at least have 20dB margin. No recording in the test report. 4). Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40, IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20, IEEE 802.11ax HE40, IEEE 802.11ax HE80; 5). Data of measurement within this frequency range shown "---" in the table above means the reading of emissions are attenuated more than 20dB below the permissible limits or the field strength is too small to be measured. 6). Margin= Emission Level ­ Limit

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Undesirable emission

Page 34 of 49

Report No.: AITSZ24052403FW5

802.11ax20_Low channel_ Horizontal

No. Frequency

(MHz)

1

5638.625

2

5677.625

3

5725.000

4

5850.000

5

5885.000

6 *

5938.625

Reading (dBuV) 51.23 51.16 50.07 48.95 50.66 50.64

Factor (dB/m) -4.69 -4.67 -4.57 -4.10 -3.94 -3.95

Level (dBuV/m)
46.54 46.49 45.50 44.85 46.72 46.69

Limit (dBuV/m)
68.20 88.64 122.20 122.20 97.80 68.20

Margin (dB) -21.66 -42.15 -76.70 -77.35 -51.08 -21.51

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 35 of 49

Report No.: AITSZ24052403FW5

802.11ax20_Low channel _ Vertical

No. Frequency

(MHz)

1

5625.875

2

5661.125

3

5725.000

4

5850.000

5

5912.750

6 *

5932.250

Reading (dBuV) 51.18 51.55 50.22 50.28 51.31 50.54

Factor (dB/m) -4.69 -4.67 -4.57 -4.10 -3.90 -3.94

Level (dBuV/m)
46.49 46.88 45.65 46.18 47.41 46.60

Limit (dBuV/m)
68.20 76.43 122.20 122.20 77.27 68.20

Margin (dB) -21.71 -29.55 -76.55 -76.02 -29.86 -21.60

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 36 of 49

Report No.: AITSZ24052403FW5

802.11ax20_High channel _ Horizontal

No. Frequency

(MHz)

1 *

5641.625

2

5670.125

3

5725.000

4

5850.000

5

5900.000

6

5918.375

Reading (dBuV) 50.60 50.56 49.59 49.57 51.45 51.10

Factor (dB/m) -4.68 -4.67 -4.57 -4.10 -3.88 -3.91

Level (dBuV/m)
45.92 45.89 45.02 45.47 47.57 47.19

Limit (dBuV/m)
68.20 83.09 122.20 122.20 86.70 73.10

Margin (dB) -22.28 -37.20 -77.18 -76.73 -39.13 -25.91

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 37 of 49

Report No.: AITSZ24052403FW5

802.11ax20_High channel _ Vertical

No. Frequency

(MHz)

1 *

5625.125

2

5655.500

3

5725.000

4

5850.000

5

5907.500

6

5964.125

Reading (dBuV) 51.38 51.27 50.59 49.58 50.44 50.68

Factor (dB/m) -4.69 -4.68 -4.57 -4.10 -3.89 -3.99

Level (dBuV/m)
46.69 46.59 46.02 45.48 46.55 46.69

Limit (dBuV/m)
68.20 72.27 122.20 122.20 81.15 68.20

Margin (dB) -21.51 -25.68 -76.18 -76.72 -34.60 -21.51

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 38 of 49

Report No.: AITSZ24052403FW5

802.11ax40_Low channel _ Horizontal

No. Frequency

(MHz)

1 *

5624.750

2

5669.375

3

5725.000

4

5850.000

5

5897.375

6

5921.375

Reading (dBuV) 51.24 51.16 52.78 49.23 51.03 50.91

Factor (dB/m) -4.69 -4.67 -4.57 -4.10 -3.89 -3.92

Level (dBuV/m)
46.55 46.49 48.21 45.13 47.14 46.99

Limit (dBuV/m)
68.20 82.54 122.20 122.20 88.64 70.88

Margin (dB) -21.65 -36.05 -73.99 -77.07 -41.50 -23.89

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 39 of 49

Report No.: AITSZ24052403FW5

802.11ax40_Low channel _ Vertical

No. Frequency

(MHz)

1 *

5616.125

2

5671.625

3

5725.000

4

5850.000

5

5886.500

6

5951.375

Reading (dBuV) 51.71 51.40 49.83 48.96 50.64 50.56

Factor (dB/m) -4.69 -4.68 -4.57 -4.10 -3.94 -3.97

Level (dBuV/m)
47.02 46.72 45.26 44.86 46.70 46.59

Limit (dBuV/m)
68.20 84.20 122.20 122.20 96.69 68.20

Margin (dB) -21.18 -37.48 -76.94 -77.34 -49.99 -21.61

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 40 of 49

Report No.: AITSZ24052403FW5

802.11ax40_High channel _ Horizontal

No. Frequency

(MHz)

1

5637.125

2

5691.125

3

5725.000

4

5850.000

5

5882.750

6 *

5934.500

Reading (dBuV) 50.73 53.28 49.08 48.87 50.26 50.92

Factor (dB/m) -4.68 -4.66 -4.57 -4.10 -3.96 -3.93

Level (dBuV/m)
46.05 48.62 44.51 44.77 46.30 46.99

Limit (dBuV/m)
68.20 98.63 122.20 122.20 99.47 68.20

Margin (dB) -22.15 -50.01 -77.69 -77.43 -53.17 -21.21

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 41 of 49

Report No.: AITSZ24052403FW5

802.11ax40_High channel _ Vertical

No. Frequency

(MHz)

1 *

5621.375

2

5694.125

3

5725.000

4

5850.000

5

5881.625

6

5922.125

Reading (dBuV) 50.72 51.50 49.98 50.43 51.06 50.98

Factor (dB/m) -4.70 -4.66 -4.57 -4.10 -3.96 -3.91

Level (dBuV/m)
46.02 46.84 45.41 46.33 47.10 47.07

Limit (dBuV/m)
68.20 100.85 122.20 122.20 100.30 70.33

Margin (dB) -22.18 -54.01 -76.79 -75.87 -53.20 -23.26

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 42 of 49 802.11ax80_ Horizontal

Report No.: AITSZ24052403FW5

No. Frequency

(MHz)

1

5616.500

2

5671.250

3

5725.000

4

5850.000

5

5900.750

6 *

5926.250

Reading (dBuV) 51.12 51.31 49.07 48.38 51.10 51.52

Factor (dB/m) -4.69 -4.68 -4.57 -4.10 -3.88 -3.93

Level (dBuV/m)
46.43 46.63 44.50 44.28 47.22 47.59

Limit (dBuV/m)
68.20 83.92 122.20 122.20 86.14 68.20

Margin (dB) -21.77 -37.29 -77.70 -77.92 -38.92 -20.61

Det.
peak peak peak peak peak peak

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 43 of 49 802.11ax80_ Vertical

Report No.: AITSZ24052403FW5

No. Frequency

(MHz)

1 *

5636.000

2

5691.125

3

5725.000

4

5850.000

5

5900.000

6

5930.375

Reading (dBuV) 51.64 52.44 50.34 49.75 51.14 50.62

Factor (dB/m) -4.68 -4.66 -4.57 -4.10 -3.88 -3.93

Level (dBuV/m)
46.96 47.78 45.77 45.65 47.26 46.69

Limit (dBuV/m)
68.20 98.63 122.20 122.20 86.70 68.20

Margin (dB) -21.24 -50.85 -76.43 -76.55 -39.44 -21.51

Det.
peak peak peak peak peak peak

Remarks:
1). Margin= Emission Level ­ Limit
2). Emission Level = Reading + Factor
3). Factor = Antenna Factor + Cable Loss ­ Pre-amplifie
4). Worst case data at 6Mbps at IEEE 802.11a; MCS0 at IEEE 802.11n HT20, IEEE 802.11n HT40, IEEE 802.11ac VHT20, IEEE 802.11ac VHT40, IEEE 802.11ac VHT80; IEEE 802.11ax HE20, IEEE 802.11ax HE40, IEEE 802.11ax HE80 5) All the modes have been tested and recorded worst mode in the report. (IEEE 802.11ax)

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 44 of 49
6.8 Power Line Conducted Emissions

Report No.: AITSZ24052403FW5

6.8.1 Standard requirement:
According to §15.207 (a): For an intentional radiator which is designed to be connected to the public utility (AC) power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or frequencies within the band 150 kHz to 30 MHz shall not exceed 250 microvolts (The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz). The limits at specific frequency range is listed as follows:

Frequency Range

Limits (dBV)

(MHz)

Quasi-peak

0.15 to 0.50

66 to 56

0.50 to 5

56

5 to 30

60

* Decreasing linearly with the logarithm of the frequency

Average 56 to 46
46 50

6.8.2 Test Setup Layout

6.8.3 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode. 6.8.4 Test Procedures The transmitter output is connected to EMI receiver. The resolution bandwidth is set to 9 kHz. The video bandwidth is set to 30 kHz, Sweep time=Auto The spectrum from 150 kHz to 30MHz is investigated with the transmitter set to the lowest, middle, and highest channels. 6.8.5 Test result
PASS The test data please refer to following page.
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 45 of 49

Report No.: AITSZ24052403FW5

Measurement data:

AC Conducted Emission of charge from Adapter mode @ AC 120V/60Hz @ (IEEE 802.11ac(VHT40))

(worst case)

Model name:

ZD24P

Test Date :

2024-05-27

Temperature:

25.8 C

Relative Humidity: 52.5%

ATM Pressure: 101 kPa

Test Result:

Pass Fail

Phase :

Line

Remark: Correct Factor = Insertion loss of LISN + Cable loss + Insertion loss of Pulse Limiter; Measurement Result = Reading Level +Correct Factor; Margin = Measurement Result- Limit;

No. Frequency Reading

Correct

Result

Limit

Margin

(MHz)

(dBuV)

(dB)

(dBuV)

(dBuV)

(dB)

1

0.1635

24.43

10.67

35.10

55.28

-20.18

2

0.1770

44.24

10.68

54.92

64.63

-9.71

3

0.2040

22.32

10.70

33.02

53.45

-20.43

4

0.2310

39.65

10.70

50.35

62.41

-12.06

5

0.2310

22.86

10.70

33.56

52.41

-18.85

6

0.2760

41.52

10.70

52.22

60.94

-8.72

7

0.2760

17.44

10.70

28.14

50.94

-22.80

8

0.3209

34.36

10.70

45.06

59.68

-14.62

9

0.4110

31.15

10.69

41.84

57.63

-15.79

10

0.4110

20.43

10.69

31.12

47.63

-16.51

11

0.4830

29.27

10.69

39.96

56.29

-16.33

12

0.4830

18.58

10.69

29.27

46.29

-17.02

Remark
AVG QP AVG QP AVG QP AVG QP QP AVG QP AVG

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Model name: Temperature: ATM Pressure: Phase :

ZD24P 25.8 C 101 kPa Neutral

Page 46 of 49

Report No.: AITSZ24052403FW5

Test Date : Relative Humidity: Test Result:

2024-05-27 52.5%
Pass Fail

Remark: Correct Factor = Insertion loss of LISN + Cable loss + Insertion loss of Pulse Limiter; Measurement Result = Reading Level +Correct Factor; Margin = Measurement Result- Limit;

No. Frequency Reading

Correct

Result

Limit

Margin Remark

(MHz)

(dBuV)

(dB)

(dBuV)

(dBuV)

(dB)

1

0.1632

22.63

10.67

33.30

55.30

-22.00

AVG

2

0.1635

45.04

10.67

55.71

65.28

-9.57

QP

3

0.1844

21.54

10.69

32.23

54.29

-22.06

AVG

4

0.1995

40.13

10.69

50.82

63.63

-12.81

QP

5

0.1995

21.49

10.69

32.18

53.63

-21.45

AVG

6

0.2220

38.01

10.69

48.70

62.74

-14.04

QP

7

0.2220

20.56

10.69

31.25

52.74

-21.49

AVG

8

0.2805

35.34

10.69

46.03

60.80

-14.77

QP

9

0.4154

20.51

10.69

31.20

47.54

-16.34

AVG

10

0.4830

23.48

10.69

34.17

46.29

-12.12

AVG

11

0.4874

33.33

10.69

44.02

56.21

-12.19

QP

12

1.0363

25.40

10.64

36.04

56.00

-19.96

QP

Notes: 1. An initial pre-scan was performed on the line and neutral lines with peak detector. 2. Quasi-Peak and Average measurement were performed at the frequencies with maximized peak emission. 3. If the average limit is met when using a quasi-peak detector receiver, the EUT shall be deemed to meet both
limits and measurement with the average detector receiver is unnecessary.

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

6.9 Frequency Stability

Page 47 of 49

Report No.: AITSZ24052403FW5

6.9.1 Standard requirement:
According to FCC §15.407(g) "Manufacturers of U-NII devices are responsible for ensuring frequency stability such that an emission is maintained within the band of operation under all conditions of normal operation as specified in the users manual."
According to FCC §2.1055(a) "The frequency stability shall be measured with variation of ambient temperature as follows:"
(1) From -30° to + 50° centigrade for all equipment except that specified in paragraphs (a) (2) and (3) of this section.
(2) From -20° to + 50° centigrade for equipment to be licensed for use in the Maritime Services under part 80 of this chapter, except for Class A, B, and S Emergency Position Indicating Radiobeacons (EPIRBS), and equipment to be licensed for use above 952 MHz at operational fixed stations in all services, stations in the Local Television Transmission Service and Point-to-Point Microwave Radio Service under part 21 of this chapter, equipment licensed for use aboard aircraft in the Aviation Services under part 87 of this chapter, and equipment authorized for use in the Family Radio Service under part 95 of this chapter.
(3) From 0°to + 50°centigrade for equipment to be licensed for use in the Radio Broadcast Services under part 73 of this chapter.

6.9.2 Measuring Instruments and Setting:
Please refer to equipment list in this report.
6.9.3 Test Procedures
The equipment under test was connected to an external AC or DC power supply and input rated voltage. RF output was connected to a frequency counter or spectrum anzlyer via feed through attenators. The EUT was placed inside the temperature chamber. Set the spectrum analyzer RBW low engouh to obtain the desired frequency resoluation and measure EUT 20 degree operating frequency as reference frequency. Turn EUT off and set the chamber temperature to -30 degree. After the temperature stabilized for approximately 30 minutes recorded the frequency. Repeat step measure wuth 10 degree increased per stage until the highest temperature of +50 degree reached.
6.9.4 Test Setup Layout

6.9.5 EUT Operation during Test The EUT was programmed to be in continuously transmitting mode.
Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 48 of 49 6.9.6 Test result
PASS Please refer to Appendix D Remark: 1. Measured all conditions and recorded worst case.

Report No.: AITSZ24052403FW5

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.

Page 49 of 49

Report No.: AITSZ24052403FW5

7 Test Setup Photographs of EUT

Please refer to separated files for Test Setup Photos of the EUT.

8 External Photographs of EUT

Please refer to separated files for External Photos of the EUT.

9 Internal Photographs of EUT

Please refer to separated files for Internal Photos of the EUT.

------End------

Guangdong Asia Hongke Test Technology Limited B1/F, Building 11, Junfeng Industrial Park, Chongqing Road, Heping Community, Fuhai Street, Bao'an District, Shenzhen, Guangdong, China.


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