Test Report NII Part 1 Revised

ZUNIDATA SYSTEMS, INC 7N-7F-RM Digital Signage / POS System Z28-7N-7F-RM Z287N7FRM 7n 7f rm

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TEST REPORT
of
FCC PART 15 SUBPART E

New Application;

Class I PC;

Class II PC

Product : Brand:
Model:
Model Difference: FCC ID: FCC Rule Part: Applicant: Address:

Digital Signage / POS System Zunidata 7NX-RM; 7FX-RM; 7XXX-XXX (XØ0~9 or A-Z or Blank or - Metal and plastic case. with, and without POE Z28-7N-7F-RM §15.407, Cat:NII Zunidata Systems, Inc.
6F,No. 945, Boai Street, Jubei City, Hsinchu, Taiwan 302

Test Performed by:
International Standards Laboratory Corp.
<LT Lab.> *Site Registration No. BSMI: SL2-IN-E-0013; MRA TW0997; TAF: 0997; IC: IC4067B-4; *Address: No. 120, Lane 180, Hsin Ho Rd., Lung-Tan Dist., Tao Yuan City 325, Taiwan *Tel : 886-3-407-1718; Fax: 886-3-407-1738
Report No.: ISL-20LR343FE Issue Date : 2020/11/12

Test results given in this report apply only to the specific sample(s) tested and are traceable to national or international standard through calibration of the equipment and evaluating measurement uncertainty herein. The uncertainty of the measurement does not include in consideration of the test result unless the customer required the determination of uncertainty via the agreement, regulation or standard document specification. This test report shall not be reproduced except in full, without the written approval of International Standards Laboratory Corp.

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VERIFICATION OF COMPLIANCE

Applicant:

Zunidata Systems, Inc.

Product Description:

Digital Signage / POS System

Brand Name: Model No.:

Zunidata 7NX-RM; 7FX-RM; 7XXX-XXX (XØ0~9 or A-Z or Blank or -

Model Difference:

Metal and plastic case. with, and without POE

FCC ID: Date of test:

Z28-7N-7F-RM 2020/10/15 ~ 2020/11/11

Date of EUT Received: 2020/10/15

We hereby certify that:
All the tests in this report have been performed and recorded in accordance with the standards described above and performed by an independent electromagnetic compatibility consultant, International Standards Laboratory Corp.
The test results contained in this report accurately represent the measurements of the characteristics and the energy generated by sample equipment under test at the time of the test. The sample equipment tested as described in this report is in compliance with the limits of above standards.

Test By:

Date: Weitin Chen / Senior Engineer

Prepared By:

Gigi Yeh / Senior Engineer

Date:

Approved By:

Date:

Jerry Liu / Technical Manager

2020/11/12 2020/11/12 2020/11/12

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Version No. 00

Date 2020/11/12

Version
Description Initial creation of document

Uncertainty of Measurement

Description Of Test Conducted Emission
(AC power line)
Field Strength of Spurious Radiation
Conducted Power
Power Density Frequency Time DC Voltage

Uncertainty
2.586 dB
 30MHz: 2.96dB
30-1GHz: 4.22 dB 1-40 GHz: 4.08 dB
2.412 GHz: 1.30 dB 5.805 GHz: 1.55 dB 2.412 GHz:1.30 dB 5.805 GHz: 1.67 dB
0.0032% 0.01% 1%

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Table of Contents
1. General Information ................................................................................................................... 6
1.1. Product Description ............................................................................................................................6 1.2. Related Submittal(s) / Grant (s) ........................................................................................................10 1.3. Test Methodology .............................................................................................................................10 1.4. Test Facility.......................................................................................................................................10 1.5. Special Accessories...........................................................................................................................10 1.6. Equipment Modifications..................................................................................................................10
2. System Test Configuration....................................................................................................... 11
2.1. EUT Configuration ...........................................................................................................................11 2.2. EUT Exercise ....................................................................................................................................11 2.3. Test Procedure...................................................................................................................................11 2.4. Configuration of Tested System........................................................................................................12 2.5. Duty Cycle ........................................................................................................................................13
3. Summary of Test Results.......................................................................................................... 14 4. Description of Test Modes........................................................................................................ 15 5. Conduced Emission Test .......................................................................................................... 17
5.1. Standard Applicable ..........................................................................................................................17 5.2. Measurement Equipment Used: ........................................................................................................17 5.3. EUT Setup:........................................................................................................................................17 5.4. Measurement Procedure: ..................................................................................................................18 5.5. Measurement Result: ........................................................................................................................18
6. OUTPUT POWER / EIRP /SPECTRAL DENSITY MEASUREMENT ............................ 21
6.1. Standard Applicable ..........................................................................................................................21 6.2. Measurement Procedure....................................................................................................................23 6.3. Measurement Equipment Used: ........................................................................................................24 6.4. Measurement Equipment Used: ........................................................................................................24 6.5. Measurement Result..........................................................................................................................25
7. 26dB /99% Emission Bandwidth Measurement..................................................................... 59
7.1. Standard Applicable ..........................................................................................................................59 7.2. Measurement Procedure....................................................................................................................59 7.3. Measurement Equipment Used: ........................................................................................................59 7.4. Test Set-up: .......................................................................................................................................59 7.5. Measurement Result..........................................................................................................................60
8. 6dB Emission Bandwidth Measurement................................................................................. 85
8.1. Standard Applicable ..........................................................................................................................85 8.2. Measurement Procedure....................................................................................................................85 8.3. Measurement Equipment Used: ........................................................................................................85

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8.4. Test Set-up: .......................................................................................................................................85 8.5. Measurement Result..........................................................................................................................86
9. Undesirable emission ­ Radiated Measurement .................................................................... 94
9.1. Standard Applicable ..........................................................................................................................94 9.2. EUT Setup.........................................................................................................................................96 9.3. Measurement Procedure....................................................................................................................97 9.4. Test SET-UP (Block Diagram of Configuration) ..............................................................................98 9.5. Measurement Equipment Used: ........................................................................................................99 9.6. Field Strength Calculation ..............................................................................................................100 9.7. Measurement Result........................................................................................................................100
10. Transmission in the Absence of Data .................................................................................... 186
10.1. Standard Applicable ........................................................................................................................186 10.2. Result: .............................................................................................................................................186
11. Antenna Requirement ............................................................................................................ 187
11.1. Standard Applicable ........................................................................................................................187 11.2. Antenna Connected Construction ...................................................................................................187
12. TPC and DFS Measurement .................................................................................................. 188
12.1. TPC: Standard Applicable...............................................................................................................188 12.2. DFS: Standard Applicable...............................................................................................................188 12.3. Test Equipment Used: .....................................................................................................................194 12.4. Test results ......................................................................................................................................195

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1. General Information 1.1. Product Description

General: Product Name Brand Name Model Name Model Difference Power Supply AC In Power Port USB 2.0 Port COM 2 (RS232)Port COM 1 (RS232)Port Micro USB Port LAN Port
Power Supply

Digital Signage / POS System

Zunidata

7NX-RM; 7FX-RM; 7XXX-XXX (X0~9 or A-Z or Blank or -

Metal and plastic case. with, and without POE
12Vdc by AC Adapter, Model No.: 2ABL024F US
One provided

Two provided

One provided

One provided

One provided

One provided

12Vdc from AC/DC adapter

Adapter:

1. Model : SOY-1200200; Supplier: Shenzhen SOY Technology Co., Ltd.
2. Model : 2ABL024F US; Supplier: CWT
3. Model : 2AAJ024FC ; Supplier: CWT

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WLAN

Wi-Fi 802.11a
802.11n
802.11 ac

Frequency Range
(MHz)
5150 ­ 5350(NII)
5470 ­ 5725(NII)
5725 ­ 5850(NII)
HT20 5150 ­ 5350(NII)
HT20 5470 ­ 5725(NII)
HT20 5725 ­ 5850(NII)
VHT20 5150 ­ 5350(NII)
VHT20 5470 ­ 5725(NII)
VHT20 5745 ­ 5825(NII)
HT40 5150 ­ 5350(NII)
HT40 5470 ­ 5725(NII)
HT40 5725 ­ 5850(NII)
VHT40 5470 ­ 5725(NII)
VHT40 5745 ­ 5825(NII)
VHT40 5190 ­ 5230(NII)
VHT80 5150 ­ 5350(NII)
VHT80 5470 ­ 5725(NII)
VHT80 5725 ­ 5850(NII)

Modulation type

Antenna Designation

Channels
8 11 5 8

Peak / Average Rated Power 17.72dBm (AV) 16.85dBm (AV) 16.94dBm (AV)
16.93dBm (AV)

Modulation Technology

11

16.93dBm (AV)

5

16.52 dBm (AV)

8

16.67dBm (AV)

11

16.85dBm (AV)

5

16.52dBm (AV)

OFDM

4

16.64dBm (AV)

5

16.50dBm (AV)

2

16.86dBm (AV)

5

16.64dBm (AV)

2

16.50dBm (AV)

4

16.86dBm (AV)

2

16.56dBm (AV)

2

16.18dBm (AV)

1

16.16dBm (AV)

CCK, DQPSK, DBPSK for DSSS

256QAM.64QAM. 16QAM, QPSK, BPSK for OFDM
PCB Antenna WiFi 5G Antenna UNII-1: -1.89 dBi WiFi 5G Antenna UNII-2A : -1.89 dBi WiFi 5G Antenna UNII-2C : -2.68 dBi WiFi 5G Antenna UNII-3 : -3.11 dBi

According to KDB662911 D01 SM-MIMO signals could be considered uncorrelated for purposes of directional gain computation.

Directional gain = GANT

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The EUT is compliance with IEEE 802.11 a/b/g/n/ac Standard. This report applies for Wifi frequency band5150 MHz­ 5350 MHz, 5470MHz ­ 5725MHz, 5725 MHz­ 5850 MHz Remark: The above DUT's information was declared by manufacturer. Please refer to the specifi-
cations or user's manual for more detailed description.

5G Band Power setting

Mode

Freq(MHz)

802.11a
802.11n HT20 / 802.11ac VHT20

5180 5200 5240 5260 5280 5320 5500 5600 5700 5745 5785 5825 5180 5200 5240 5260 5280 5300 5320 5500 5580 5600 5700 5745 5785 5825

Power Setting
default default default default default default default default default default default default default default default default default default default default default default default default default default

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802.11n HT40 / 802.11ac VHT40
802.11ac VHT80

5190 5230 5270 5310 5510 5550 5590 5670 5755 5795 5210 5290 5530 5610 5775

default default default default default default default default default default default default default default default

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1.2. Related Submittal(s) / Grant (s)
This submittal(s) (test report) is intended for FCC ID: Z28-7N-7F-RM filing to comply with Section 15.407 of the FCC Part 15, Subpart E Rules.
1.3. Test Methodology
Both conducted and radiated testing were performed according to the procedures in ANSI C63.10: 2013. Radiated testing was performed at an antenna to EUT distance 3 meters. KDB Document: 789033 D02 General U-NII Test Procedures New Rules v02r01 FCC 14-30 Revision UNII 594280 D02 U-NII Device Security v01r03
1.4. Test Facility
The measurement facilities used to collect the 3m Radiated Emission and AC power line conducted data are located on the address of International Standards Laboratory Corp. <LT Lab.> No. 120, Lane 180, Hsin Ho Rd., Lung-Tan Dist., Tao Yuan City 325, Taiwan which are constructed and calibrated to meet the FCC requirements in documents ANSI C63.10: 2013. FCC Registration Number is: 487532; Designation Number is: TW0997.
1.5. Special Accessories
Not available for this EUT intended for grant.
1.6. Equipment Modifications
Not available for this EUT intended for grant.

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2. System Test Configuration
2.1. EUT Configuration
The EUT configuration for testing is installed on RF field strength measurement to meet the Commissions requirement and operating in a manner which intends to maximize its emission characteristics in a continuous normal application.
2.2. EUT Exercise
The EUT (Transmitter) was operated in the engineering mode to fix the Tx frequency that was for the purpose of the measurements.
2.3. Test Procedure
2.3.1 Conducted Emissions The EUT is a placed on as turn table which is 0.8 m above ground plane. According to the requirements in Section 6 of ANSI C63.10: 2013. Con-ducted emissions from the EUT measured in the frequency range between 0.15 MHz and 30MHz using CISPR 16-1-1 Quasi-Peak and Average detector mode.
2.3.2 Radiated Emissions The EUT is a placed on a turntable which is 0.8 m/1.5m (Frequency above 1GHz) above the ground plane. The turntable shall rotate 360 degrees to determine the position of maximum emission level. The 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. To find out the maximum emission, the relative positions of this hand-held transmitter (EUT) was rotated through three orthogonal axes and measurement procedures for electric field radiated emissions above 1 GHz the EUT measurement is to be made "while keeping the antenna in the `cone of radiation' from that area and pointed at the area both in azimuth and elevation, with polarization oriented for maximum response." is still within the 3dB illumination BW of the measurement antenna according to the requirements in Section 6, 11 and 12 of ANSI C63.10: 2013.

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2.4. Configuration of Tested System
Fig. 2-1 Configuration of Tested System Radiated Emission

EUT

Adaptor (EUT)

1. Table 1-1 Equipment Used in Tested System

Item Equipment
1 EUT (adaptor) 2 EUT (adaptor) 3 EUT (adaptor)

Mfr/Brand
CWT Shenzhen SOY Technology Co., Ltd.
CWT

Model/ Type No.
2ABL024F US
SOY-1200200
2AAJ024FC

Series No. Data Cable Power Cord

NA

NA Non-shielding

NA

NA Non-shielding

NA

NA Non-shielding

Note: All the above equipment/cables were placed in worse case positions to maximize emission signals during emission test.
Grounding: Grounding was in accordance with the manufacturer's requirements and conditions for the intended use.

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2.5. Duty Cycle
If duty cycle of test signal is  98 %, duty factor is not required. If duty cycle of test signal is < 98 %, duty factor shall be considered. The output power = measured power + duty factor.

Mode
a HT20 HT40 VHT20 VHT40 VHT80

ON time (ms) 1.380 1.296 0.615 1.310 0.620 0.299

Total time (ms) 1.440 1.348 0.690 1.355 0.695 0.365

Duty Cycle Duty Factor

95.833%

0.18

96.089%

0.17

89.130%

0.50

96.679%

0.15

89.209%

0.50

81.944%

0.86

1/Ton (kHz) 0.725 0.772 1.626 0.763 1.613 3.345

VBW for average detector (kHz) 1 1 3 1 3 10

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3. Summary of Test Results

FCC Rules §15.207
§15.407(a)(2) §15.407(a) §15.407(e) §15.407(b) §15.407( c) §15.407(a)
§15.407(d) §15.407(i)

Description Of Test AC Power Line Conducted
Emission Output Power/ EIRP/ Spectral
Density Measurement 26dB Emission Bandwidth
6dB Emission Bandwidth Undesirable Emission ­ Radiated
Measurement Transmission in case of Absence
of Information Antenna Requirement
TPC and DFS Measurement
Device Security

Result Compliant Compliant Compliant Compliant Compliant Compliant Compliant Compliant Compliant

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4. Description of Test Modes
The EUT has been tested under operating condition. Test program used to control the EUT for staying in continuous transmitting mode is programmed.
5150MHz-5350MHz: 802.11a mode: Channel low (5180MHz), mid (5260MHz) and high (5320MHz) with 6Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT20: Channel low (5180MHz), mid (5260MHz) and high (5320MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT40: Channel low (5190MHz), mid (5230MHz) and high (5310MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT20: Channel low (5180MHz), mid (5260MHz) and high (5320MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT40: Channel low (5190MHz), mid (5230MHz) and high (5310MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT80: Channel low (5210MHz) and high (5290MHz) with 13.5Mbps lowest data rate is chosen for pre-test testing of radiated emissions.
5470MHz-5725MHz: 802.11a mode: Channel low (5500MHz), mid (5600MHz) and high (5700MHz) with 6Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT20: Channel low (5500MHz), mid (5600MHz) and high (5700MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT40: Channel low (5510MHz), mid (5550MHz) and high (5670MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT20: Channel low (5500MHz), mid (5600MHz) and high (5700MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT40: Channel low (5510MHz), mid (5550MHz) and high (5670MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT80: Channel low (5530MHz) and high (5610MHz) with 13.5Mbps lowest data rate is chosen for pre-test testing of radiated emissions.

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5725MHz-5850MHz: 802.11a mode: Channel low (5745MHz), mid (5785MHz) and high (5825MHz) with 6Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT20: Channel low (5745MHz), mid (5785MHz) and high (5825MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 n HT40: Channel low (5755MHz) and high (5795MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT20: Channel low (5745MHz), mid (5785MHz) and high (5825MHz) with 6.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT40: Channel low (5755MHz) and high (5795MHz) with 13.5Mbps lowest data rate are chosen for pre-test testing of radiated emissions. 802.11 ac VHT80: Channel (5775MHz) with 13.5Mbps lowest data rate is chosen for pre-test testing of radiated emissions.

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5. Conduced Emission Test
5.1. Standard Applicable
According to §15.207, frequency range within 150kHz to 30MHz shall not exceed the Limit table as below.

Limits

Frequency range

dB(uV)

MHz

Quasi-peak

Average

0.15 to 0.50

66 to 56

56 to 46

0.50 to 5

56

46

5 to 30

60

50

Note

1.The lower limit shall apply at the transition frequencies

2.The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz.

5.2. Measurement Equipment Used:

Location Equipment Name

Brand

Conduction 02

LISN 26

R&S

Model ENV216

S/N 102378

Last Cal. Date

Next Cal. Date

11/21/2019 11/21/2020

Conduction 02

LISN 21

R&S

ENV216

101476 07/21/2020 07/21/2021

Conduction 02 Conduction 02 Conduction 02

Conduction 02-1 Cable
EMI Receiver 14
ISN T4 07

WOKEN CFD 300-NL
ROHDE&SCHW ESCI ARZ
Teseq GmbH ISN T400A

Conduction 02 -1 101034
49913

09/11/2020 05/22/2020 08/02/2020

09/11/2021 05/22/2021 08/02/2021

Conduction 02

ISN T8 10

Teseq GmbH ISN T800

42773

08/02/2020 08/02/2021

5.3. EUT Setup:
1. The conducted emission tests were performed in the test site, using the setup in accordance with the ANSI C63.10: 2013
2. The AC/DC Power adaptor of EUT was plug-in LISN. The EUT was placed flushed with the rear of the table.
3. The LISN was connected with 120Vac/60Hz power source.

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5.4. Measurement Procedure:
1. The EUT was placed on a table which is 0.8m above ground plane. 2. Maximum procedure was performed on the six highest emissions to ensure EUT compli-
ance. 3. Repeat above procedures until all frequency measured were complete. 4. Both 120V & 240V have been verified, and 120V/60Hz was defined as the worst-case
and record in the report.
5.5. Measurement Result:
The initial step in collecting conducted data is a spectrum analyzer peak scan of the measurement range. Significant peaks are then marked as shown on the following data page, and these signals are then quasi-peaked.
Note: Refer to next page for measurement data and plots.

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AC POWER LINE CONDUCTED EMISSION TEST DATA

Operation Mode: Normal Operation

Worst Case Adapter module : 2ABL024F

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6. OUTPUT POWER / EIRP /SPECTRAL DENSITY MEASUREMENT
6.1. Standard Applicable
According to §15.407(a) Power limits: (1) For the band 5.15-5.25 GHz. (i) For an outdoor access point operating in the band 5.15 y 5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W provided the maximum antenna gain does not exceed 6 dBi. In addition, the maximum power spectral density shall not exceed 17 dBm in any 1 megahertz 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. The maximum e.i.r.p. at any elevation angle above 30 degrees as measured from the horizon must not exceed 125 mW (21 dBm). (ii) For an indoor access point operating in the band 5.15 y 5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W provided the maximum antenna gain does not exceed 6 dBi. In addition, the maximum power spectral density shall not exceed 17 dBm in any 1 megahertz 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. (iii) For fixed point-to-point access points operating in the band 5.15 y 5.25 GHz, the maximum conducted output power over the frequency band of operation shall not exceed 1 W. Fixed point-to-point U-NII devices may employ antennas with directional gain up to 23 dBi without any corresponding reduction in the maximum conducted output power or maximum power spectral density. For fixed point-to-point transmitters that employ a directional antenna gain greater than 23 dBi, a 1 dB reduction in maximum conducted output power and maximum power spectral density is required for each 1 dB of antenna gain in excess of 23 dBi. 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.

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(iv) For mobile and portable client devices in the 5.15 y 5.25 GHz band, the maximum conducted output power over the frequency band of operation shall not exceed 250 mW provided the maximum antenna gain does not exceed 6 dBi. In addition, the maximum power spectral density shall not exceed 11 dBm in any 1 megahertz 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.
(2) For the 5.25-5.35 GHz and 5.47-5.725 GHz bands, the maximum conducted output power over the frequency bands of operation shall not exceed the lesser of 250 mW or 11 dBm 10 log B, where B is the 26 dB emission bandwidth in megahertz. In addition, the maximum power spectral density shall not exceed 11 dBm in any 1 megahertz band. If transmitting antennas of directional gain greater than 6 dBiare 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.
(3) 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.

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6.2. Measurement Procedure
For Output Power 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to
the power meter 3. Record the max. reading. 4. Repeat above procedures until all frequency measured were complete.
For Power Spectral Density 1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna port to
Spectrum. 3. Set RBW=1MHz,VBW=3MHz, Span=50MHz (Base Mode), Sweep time = Auto, traces 100
sweeps of video averaging for 5150-5725MHz; 4. Set RBW=500kHz,VBW=1.5MHz, Span=60MHz (Base Mode), Sweep time = Auto, traces 100
sweeps of video averaging for 5725-5850MHz; 5. Record the max. reading. 6. Repeat above procedures until all frequency measured were complete.
Refer to KDB 789033 D02 General UNII Test Procedures New Rules v02r01

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6.3. Measurement Equipment Used:

Location Conducted Conducted Conducted Conducted Conducted Conducted Conducted
Conducted
Conducted Conducted Conducted Conducted

Equipment Name Power Meter Power Sensor Power Sensor Power Sensor Power Sensor Power Sensor
Temperature Chamber
DC Power supply AC Power supply Spectrum analyzer Spectrum analyzer

Conducted

Test Software

Conducted Conducted
Conducted Conducted

Test Software
Radio Communication Analyzer
Wideband Radio Communication
Tester BT Simulator

Brand Anritsu Anritsu DARE DARE DARE DARE KSON
ABM EXTECH Keysight
R&S
DARE
R&S R&S
R&S
Agilent

Model ML2495A MA2411B

S/N 1116010 34NKF50

Last Cal. Date
09/25/2020
09/25/2020

RPR3006W RPR3006W RPR3006W RPR3006W

13I00030SNO33 01/03/2020 13I00030SNO34 01/09/2020 14I00889SNO35 06/29/2020 14I00889SNO36 06/29/2020

THS-B4H100

2287

03/11/2020

Next Cal. Date
09/25/2021 09/25/2021 01/03/2021 01/09/2021 06/29/2021 06/29/2021
03/11/2021

8185D

N/A

CFC105W

NA

N9010A FSP40

MY56070257 100116

Radiation NA
Ver:2013.1.23

CMUGO Ver:2.0.0

N/A

CMU200

111968

01/03/2020 N/A
09/23/2020 01/10/2020
NA
N/A 11/29/2019

01/03/2021 N/A
09/23/2021 01/10/2021
NA
N/A 11/29/2020

CMW500 N4010A

1201.002K50108 793-JG

10/28/2020

MY48100200

NA

10/28/2021 NA

6.4. Measurement Equipment Used:

EUT

Attenuator Power Meter or

Spectrum Analyzer

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6.5. Measurement Result
According to §15.407(a) (iv) For client devices in the 5.15-5.25 GHz band, the maximum conducted output power over the frequency band of operation shall not exceed 250 mW provided the maximum antenna gain does not exceed 6 dBi.

Band

Mode

11a

HT20

UNII-1 HT40

VHT20

VHT40 VHT80

Band

Mode

11a

HT20 UNII-2A HT40
VHT20 VHT40 VHT80

Freq. (MHz) 5180 5200 5240 5180 5200 5240 5190 5230 5180 5200 5240 5190 5230 5210
Freq. (MHz) 5260 5300 5320 5260 5300 5320 5270 5310 5260 5300 5320 5270 5310 5290

Output Power (dBm)

Chain 0 Chain 1 Chain 2 Chain 3

16.43

 



17.72







16.93







16.54







16.73







16.93







16.68







16.35







16.67







16.26







16.45







16.64







16.45







16.01







Duty Factor (dB) 0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Total Output Power (dBm)
16.61 17.90 17.11 16.71 16.90 17.10 17.18 16.85 16.82 16.41 16.60 17.14 16.95 16.87

Output Power Limit (dBm)
23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98

Output Power (dBm)

Chain 0 Chain 1 Chain 2 Chain 3

16.03

 



16.48







16.74







16.61







16.57







16.46







16.97







16.74







16.5







16.55







16.43







16.51







16.43







16.56







Duty Factor (dB) 0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Total Output Power (dBm)
16.21 16.66 16.92 16.78 16.74 16.63 17.47 17.24 16.65 16.70 16.58 17.01 16.93 17.42

Output Power Limit (dBm)
23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98

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Band

Mode

11a

HT20

HT40 UNII-2C
VHT20

VHT40 VHT80

Band

Mode

11a

HT20 UNII-3 HT40
VHT20 VHT40 VHT80

Freq. (MHz) 5500 5580 5700 5500 5580 5700 5510 5550 5670 5500 5580 5700 5510 5550 5670 5530 5610
Freq. (MHz) 5745 5785 5825 5745 5785 5825 5755 5795 5745 5785 5825 5755 5795 5775

Output Power (dBm)

Chain 0 Chain 1 Chain 2 Chain 3

16.43

 



16.85







16.83







16.93







16.05







16.45







16.24







16.61







16.62







16.38







16.16







16.85







16.5







16.3







16.5







16.18







16.02







Duty Factor (dB) 0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.50 0.86 0.86

Total Output Power (dBm)
16.61 17.03 17.01 17.10 16.22 16.62 16.74 17.11 17.12 16.53 16.31 17.00 17.00 16.80 17.00 17.04 16.88

Output Power Limit (dBm)
23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98

Output Power (dBm)

Chain 0 Chain 1 Chain 2 Chain 3

16.94

 



16.76







16.6







16.81







16.68







16.27







16.44







16.21







16.52







16.3







16.11







16.63







16.86







16.16







Duty Factor (dB) 0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Total Output Power (dBm)
17.12 16.94 16.78 16.98 16.85 16.44 16.94 16.71 16.67 16.45 16.26 17.13 17.36 17.02

Output Power Limit (dBm)
30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00 30.00

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Power Spectral Density Measurement:

Mode 11a
HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz)
5180 5200 5240 5180 5200 5240 5190 5230 5180 5200 5240 5190 5230 5210

Chain 0 -3.51 -3.19 -2.57 -3.87 -3.55 -2.98 -6.84 -6.11 -3.76 -3.51 -2.72 -6.77 -6.11 -9.39

PSD (dBm/MHz)

Chain 1 Chain 2

 





















































Chain 3              

Duty Factor (dB)
0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Mode 11a
HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz)
5260 5300 5320 5260 5300 5320 5270 5310 5260 5300 5320 5270 5310 5290

Chain 0 -2.31 -1.92 -1.58 -2.72 -2.45 -2.13 -6.08 -5.50 -2.70 -2.41 -2.11 -5.93 -5.57 -8.62

PSD (dBm/MHz)

Chain 1 Chain 2

 





















































Chain 3              

Duty Factor (dB)
0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Total PSD (dBm/MHz)
-3.32 -3.00 -2.39 -3.70 -3.38 -2.80 -6.34 -5.61 -3.61 -3.36 -2.57 -6.28 -5.62 -8.53

PSD Limit (dBm/MHz)
23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98

Total PSD (dBm/MHz)
-2.13 -1.74 -1.39 -2.54 -2.28 -1.95 -5.58 -5.00 -2.55 -2.26 -1.97 -5.44 -5.08 -7.76

PSD Limit (dBm/MHz)
11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00

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Mode 11a HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz)
5500 5580 5700 5500 5580 5700 5510 5550 5670 5500 5580 5700 5510 5550 5670 5530 5610

Chain 0 -1.97 -3.28 -4.96 -2.60 -3.95 -5.53 -6.13 -6.85 -8.90 -2.58 -3.86 -5.39 -6.07 -6.74 -8.71 -9.14 -10.33

PSD (dBm/MHz)

Chain 1 Chain 2

 

































































Chain 3                 

Duty Factor (dB)
0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.50 0.86 0.86

Total PSD (dBm/MHz)
-1.79 -3.10 -4.78 -2.43 -3.77 -5.36 -5.63 -6.35 -8.40 -2.43 -3.71 -5.24 -5.57 -6.24 -8.21 -8.28 -9.47

PSD Limit (dBm/MHz)
11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00 11.00

Mode 11a
HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz) 5745 5785 5825 5745 5785 5825 5755 5795 5745 5785 5825 5755 5795 5775

PSD (dBm/500kHz)

Chain 0 Chain 1 Chain 2 Chain 3

-7.93

 



-8.08







-7.87







-8.53







-8.64







-8.35







-11.79







-11.92







-8.41







-8.58







-8.29







-11.82







-11.95







-14.79







Duty Factor (dB) 0.18 0.18 0.18 0.17 0.17 0.17 0.50 0.50 0.15 0.15 0.15 0.50 0.50 0.86

Total PSD PSD Limit (dBm/500kHz) (dBm/500kHz)

-7.74

30

-7.89

30

-7.68

30

-8.35

30

-8.46

30

-8.18

30

-11.29

30

-11.42

30

-8.27

30

-8.43

30

-8.14

30

-11.32

30

-11.45

30

-13.93

30

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Band UNII-1 802.11a Power Spectral Density Data Plot (CH Low)

Power Spectral Density Data Plot (CH Mid)

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Power Spectral Density Data Plot (CH High)

802.11n HT20, Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-Mid)

Power Spectral Density Test Plot (CH-High)

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802.11ac VHT20, Power Spectral Density Test Plot (CH-Low)

Power Spectral Density Test Plot (CH-Mid)

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Power Spectral Density Test Plot (CH-High)

802.11n HT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11ac VHT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11 ac VHT80 Power Spectral Density Test Plot (CH-Low)

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Band UNII-2A 802.11a Power Spectral Density Data Plot (CH Low)

Power Spectral Density Data Plot (CH Mid)

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Power Spectral Density Data Plot (CH High)

802.11n HT20, Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-Mid)

Power Spectral Density Test Plot (CH-High)

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802.11ac VHT20, Power Spectral Density Test Plot (CH-Low)

Power Spectral Density Test Plot (CH-Mid)

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Power Spectral Density Test Plot (CH-High)

802.11n HT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11ac VHT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11 ac VHT80 Power Spectral Density Test Plot (CH-Low)

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Band UNII-2C 802.11a Power Spectral Density Data Plot (CH Low)

Power Spectral Density Data Plot (CH Mid)

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Power Spectral Density Data Plot (CH High)

802.11n HT20 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-Mid)

Power Spectral Density Test Plot (CH-High)

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802.11ac VHT20 Power Spectral Density Test Plot (CH-Low)

Power Spectral Density Test Plot (CH-Mid)

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Power Spectral Density Test Plot (CH-High)

802.11n HT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-Mid)

Power Spectral Density Test Plot (CH-High)

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802.11ac VHT40 Power Spectral Density Test Plot (CH-Low)

Power Spectral Density Test Plot (CH-Mid)

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Power Spectral Density Test Plot (CH-High)

802.11 ac VHT80 Power Spectral Density Test Plot (CH-Low)

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802.11 ac VHT80 Power Spectral Density Test Plot (CH-High)

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Band UNII-3 802.11a Power Spectral Density Data Plot (CH Low)

Power Spectral Density Data Plot (CH Mid)

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Power Spectral Density Data Plot (CH High)

802.11n HT20 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-Mid)

Power Spectral Density Test Plot (CH-High)

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802.11ac VHT20 Power Spectral Density Test Plot (CH-Low)

Power Spectral Density Test Plot (CH-Mid)

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Power Spectral Density Test Plot (CH-High)

802.11n HT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11ac VHT40 Power Spectral Density Test Plot (CH-Low)

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Power Spectral Density Test Plot (CH-High)

802.11 ac VHT80, Power Spectral Density Test Plot

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7. 26dB /99% Emission Bandwidth Measurement
7.1. Standard Applicable
According to §15.407(a) foe band 1,2,3. No Limit required.
7.2. Measurement Procedure
2. Place the EUT on the table and set it in transmitting mode. 3. Remove the antenna from the EUT and then connect a low loss RF cable from the
antenna port to the spectrum analyzer. 4. Set the spectrum analyzer as RBW=300kHz, VBW =1MHz, Span= 50MHz,
Sweep=auto 5. Mark the peak frequency and ­26dB (upper and lower) frequency. 6. Repeat above procedures until all frequency measured were complete.
Refer to section D of KDB Document: KDB 789033 D02 General UNII Test Procedures New Rules v01r03
7.3. Measurement Equipment Used:
Refer to section 6.3 for details.
7.4. Test Set-up:
Refer to section 6.4 for details.

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7.5. Measurement Result

Temperature(C)

23

Humidity(%)

77

Band UNII-1

Mode 11a
HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz)
5180 5200 5240 5180 5200 5240 5190 5230 5180 5200 5240 5190 5230 5210

26dB Bandwidth (MHz)
29.95 30.00 30.00 29.51 29.50 29.71 49.93 49.91 29.94 28.35 29.87 50.00 49.98 98.25

99% OBW (MHz)
17.45 17.49 17.59 18.26 18.23 18.30 36.45 36.47 18.27 18.28 18.34 36.54 36.47 75.75

Band

Mode

Frequency (MHz)

26dB Bandwidth (MHz)

99% OBW (MHz)

Power Limit (dBm)

5260

29.97

17.42

23.98

11a

5300

29.74

17.49

23.98

HT20

5320 5260 5300 5320

29.79 29.85 29.70 28.34

17.44 18.37 18.29 18.28

23.98 23.98 23.98 23.98

UNII-2A

HT40 VHT20

5270 5310 5260 5300

50.00 49.67 28.70 29.02

36.45 36.48 18.23 18.28

23.98 23.98 23.98 23.98

5320

30.00

18.22

23.98

VHT40 VHT80

5270 5310 5290

49.18 49.53 99.73

36.48 36.52 75.72

23.98 23.98 23.98

For Band UNII-2A: Max. Output Power Limit = 250mW or 11+10*Log(B), whichever is less. Where B is 26dB BW in MHz.

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Band

Mode

Frequency (MHz)

26dB Bandwidth (MHz)

99% OBW (MHz)

Power Limit (dBm)

5500

28.36

17.14

23.98

11a

5580

23.74

17.11

23.98

5700

26.83

17.16

23.98

5500

24.74

18.10

23.98

HT20

5580

25.96

18.14

23.98

UNII-2C

HT40

5700 5510 5550 5670

24.19 47.44 44.78 48.92

18.15 36.40 36.36 36.41

23.98 23.98 23.98 23.98

VHT20 VHT40 VHT80

5500 5580 5700 5510 5550 5670 5530 5610

24.14 27.83 26.22 45.20 45.24 49.92 91.02 96.89

18.11 18.12 18.14 36.41 36.39 36.44 75.64 75.50

23.98 23.98 23.98 23.98 23.98 23.98 23.98 23.98

For Band UNII-2C: Max. Output Power Limit = 250mW or 11+10*Log(B), whichever is less. Where B is 26dB BW in MHz.

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Band UNII-1 802.11a 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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26dB / 99% Band Width Test Data CH-High

802.11n HT20 26dB / 99% Band Width Test Data CH-Low

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26dB / 99% Band Width Test Data CH-Mid

26dB / 99% Band Width Test Data CH-High

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802.11ac VHT20 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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26dB / 99% Band Width Test Data CH-High

802.11n HT40 26dB / 99% Band Width Test Data CH-Low

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26dB / 99%Band Width Test Data CH-High

802.11ac VHT40 26dB / 99% Band Width Test Data CH-Low

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26dB / 99%Band Width Test Data CH-High

802.11 ac VHT80 26dB / 99% Band Width Test Data

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Band UNII-2A 802.11a 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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26dB / 99% Band Width Test Data CH-High

802.11n HT20 26dB / 99% Band Width Test Data CH-Low

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26dB / 99% Band Width Test Data CH-Mid

26dB / 99% Band Width Test Data CH-High

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802.11ac VHT20 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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26dB / 99% Band Width Test Data CH-High

802.11n HT40 26dB / 99% Band Width Test Data CH-Low

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26dB / 99%Band Width Test Data CH-High

802.11ac VHT40 26dB / 99% Band Width Test Data CH-Low

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26dB / 99%Band Width Test Data CH-High

802.11 ac VHT80 26dB / 99% Band Width Test Data

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Band UNII-2C 802.11a 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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26dB / 99% Band Width Test Data CH-High

802.11n HT20 26dB / 99% Band Width Test Data CH-Low

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26dB / 99% Band Width Test Data CH-Mid

26dB / 99% Band Width Test Data CH-High

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802.11ac VHT20 26dB / 99% Band Width Test Data CH-Low

26dB / 99% Band Width Test Data CH-Mid

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802.11n HT40 26dB / 99% Band Width Test Data CH-Low

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26dB / 99%Band Width Test Data CH-Mid

26dB / 99%Band Width Test Data CH-High

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802.11ac VHT40 26dB / 99% Band Width Test Data CH-Low

26dB / 99%Band Width Test Data CH-Mid

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802.11 ac VHT80 26dB / 99% Band Width Test Data CH-Low

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8. 6dB Emission Bandwidth Measurement
8.1. Standard Applicable
According to §15.407 (e) Within the 5.725-5.85 GHz band, the minimum 6 dB bandwidth of U-NII devices shall be at least 500 kHz.
8.2. Measurement Procedure
1. Place the EUT on the table and set it in transmitting mode. 2. Remove the antenna from the EUT and then connect a low loss RF cable from the antenna
port to the spectrum analyzer. 3. Set the spectrum analyzer as RBW=100kHz, VBW =300MHz, Span= 50MHz,
Sweep=auto 4. Mark the peak frequency and ­6dB (upper and lower) frequency. 5. Repeat above procedures until all frequency measured were complete.
Refer to section D of KDB Document: KDB 789033 D02 General UNII Test Procedures New Rules v01r03
8.3. Measurement Equipment Used:
Refer to section 6.3 for details.
8.4. Test Set-up:
Refer to section 6.4 for details.

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8.5. Measurement Result

Band

Mode 11a

UNII-3

HT20 HT40 VHT20 VHT40 VHT80

Frequency (MHz)
5745 5785 5825 5745 5785 5825 5755 5795 5745 5785 5825 5755 5795 5775

6dB Bandwidth (MHz)
16.34 16.33 16.34 17.57 17.15 17.53 36.07 35.98 17.53 17.20 17.30 35.74 35.65 75.30

99% OBW (MHz)
16.53 16.53 16.54 17.70 17.71 17.70 36.06 36.09 17.69 17.68 17.69 36.08 36.10 75.32

6dB BW Limit (kHz)
> 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500 > 500

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Band UNII-3 802.11a 6dB Band Width Test Data CH-Low

6dB Band Width Data CH-Mid

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6dB Band Width Data CH-High

802.11n HT20 6dB Band Width Data CH-Low

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6dB Band Width Data CH-Mid

6dB Band Width Data CH-High

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802.11ac VHT20 6dB Band Width Data CH-Low

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6dB Band Width Data CH-Mid

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6dB Band Width Data CH-High

802.11n HT40 6dB Band Width Data CH-Low

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6dB Band Width Data CH-High

802.11ac VHT40 6dB Band Width Data CH-Low

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6dB Band Width Data CH-High

802.11 ac VHT80 6dB Band Width Data CH-Low

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9. Undesirable emission ­ Radiated Measurement
9.1. Standard Applicable
According to §15.407(b), Undesirable Emission Limits: Except as shown in Paragraph (b)(7) of this section, the peak emissions outside of the frequency bands of operation shall be attenuated in accordance with the following limits:
(1) For transmitters operating in the 5.15-5.25 GHz band: all emissions outside of the 5.15-5.35 GHz band shall not exceed an e.i.r.p. of -27 dBm/MHz.
(2) For transmitters operating in the 5.25-5.35 GHz band: all emissions outside of the 5.15-5.35 GHz band shall not exceed an e.i.r.p. of -27 dBm/MHz.
(3) For transmitters operating in the 5.47-5.725 GHz band: all emissions outside of the 5.47-5.725 GHz band shall not exceed an e.i.r.p. of -27 dBm/MHz.
(4) For transmitters operating in the 5.725-5.85 GHz band: all emissions within the frequency range from the band edge to 10 MHz above or below the band edge shall not exceed an e.i.r.p. of -17dBm/MHz; for frequencies 10 MHz or greater above or below the band edge, emissions shall not exceed an e.i.r.p. of -27 dBm/MHz.
(5) The above emission measurements shall be performed using a minimum resolution bandwidth of 1 MHz. A lower resolution bandwidth may be employed near the band edge, when necessary, provided the measured energy is integrated to show the total power over 1 MHz.
(6) Unwanted emissions below 1 GHz must comply with the general field strength limits set forth in Section 15.209. Further, any U-NII devices using an AC power line are required to comply also with the conducted limits set forth in Section 15.207.
(7) The provisions of Section 15.205 of this part apply to intentional radiators operating under this section.
(8) When measuring the emission limits, the nominal carrier frequency shall be adjusted as close to the upper and lower frequency band edges as the design of the equipment permits.

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§15.205- RESTRICTED BANDS OF OPERATIONS (a) Except as shown in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below:

MHz

MHz

MHz

GHz

0.090 - 0.110 10.495 - 0.505 2.1735 - 2.1905 4.125 - 4.128 4.17725 - 4.17775 4.20725 - 4.20775 6.215 - 6.218 6.26775 - 6.26825 6.31175 - 6.31225 8.291 - 8.294 8.362 - 8.366 8.37625 - 8.38675 8.41425 - 8.41475 12.29 - 12.293 12.51975 - 12.52025 12.57675 - 12.57725 13.36 - 13.41

16.42 - 16.423 16.69475 - 16.69525 16.80425 - 16.80475
25.5 - 25.67 37.5 - 38.25
73 - 74.6 74.8 - 75.2 108 - 121.94 123 - 138 149.9 - 150.05 156.52475 156.52525 156.7 - 156.9 162.0125 - 167.17 167.72 - 173.2 240 - 285 322 - 335.4

399.9 - 410 608 - 614 960 - 1240 1300 - 1427 1435 - 1626.5 1645.5 - 1646.5 1660 - 1710 1718.8 - 1722.2 2200 - 2300 2310 - 2390 2483.5 - 2500 2655 - 2900 3260 - 3267 3332 - 3339 3345.8 - 3358 3600 - 4400

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)

1 Until February 1, 1999, this restricted band shall be 0.490-0.510 MHz. 2 Above 38.6 (b) Except as provided in paragraphs (d) and (e), the field strength of emissions appearing
within these frequency bands shall not exceed the limits shown in Section 15.209. At frequencies equal to or less than 1000 MHz, compliance with the limits in Section 15.209 shall be demonstrated using measurement instrumentation employing a CISPR quasi-peak detector. Above 1000 MHz, compliance with the emission limits in Section 15.209 shall be demonstrated based on the average value of the measured emissions. The provisions in Section 15.35 apply to these measurements.

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§15.209- RADIATED EMISSION LIMITS: GENERAL REQUIREMENTS

FCC PART 15.209

MEASURING DISTANCE OF 3 METER

FREQUENCY RANGE

FIELD STRENGTH

FIELD STRENGTH

(MHz)

(Microvolts/m)

(dBuV/m)

30-88

100

40

88-216

150

43.5

216-960

200

46

Above 960

500

54

9.2. EUT Setup
1. The radiated emission tests were performed in the 3 meter open-test site, using the setup in accordance with the ANSI C63.10: 2013
2. The EUT was put in the front of the test table. The host PC system was placed on the center of the back edge on the test table. The peripherals like modem, monitor printer, K/B, and mouse were placed on the side of the host PC system. The rear of the EUT and peripherals were placed flushed with the rear of the tabletop.
3. The keyboard was placed directly in the front of the monitor, flushed with the front tabletop. The mouse was placed next to the Keyboard, flushed with the back of keyboard.
4. The spacing between the peripherals was 10 centimeters. 5. External I/O cables were draped along the edge of the test table and bundle when neces-
sary. 6. The host PC system was connected with 120Vac/60Hz power source.

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9.3. Measurement Procedure
1. The EUT was placed on a turn table which is 0.8m above ground plane. 2. The turn table shall rotate 360 degrees to determine the position of maximum emission
level. 3. EUT is set 3m away from the receiving antenna which varied from 1m to 4m to find out
the highest emissions. 4. Maximum procedure was performed on the six highest emissions to ensure EUT compli-
ance. 5. And also, each emission was to be maximized by changing the polarization of receiving
antenna both horizontal and vertical. 6. Repeat above procedures until all frequency measured were complete.
Refer to section F of KDB Document: KDB 789033 D02 General U-NII Test Procedures New
Rules v02r01

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9.4. Test SET-UP (Block Diagram of Configuration)
(A) Radiated Emission Test Set-Up, Frequency Below 1000MHz

TurntaEUT
Spectrum Analyzer
Ground Plane

3m 0.8m

(B) Radiated Emission Test Set-UP Frequency Over 1 GHz

1m to 4m Coaxial Ca-

Turnta-

3m

EUT

Ground Plane

1.5 m 1m to 4m Coaxial Ca-

Test Receiver

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9.5. Measurement Equipment Used:

Location Equipment Name

Brand

Model

S/N Last Cal. Date Next Cal. Date

Chamber 19 Signal analyzer

R&S

FSV40

101919

8/13/2020

8/13/2021

Chamber 19 EMI Receiver

R&S

ESR3

102461 05/05/2020 05/05/2021

Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19 Chamber 19

Loop Antenna

EM

EM-6879

271

05/21/2020

Bilog Antenna (30MHz-1GHz)

VULB9168 w Schwarzbeck
6dB Att.

Horn antenna
(1GHz-18GHz) Horn antenna (18GHz-26GHz)

ETS LINDGREN Com-power

3117 AH-826

Horn antenna (26GHz-40GHz)

Com-power

AH-640

736 00218718
081001 100A

02/11/2020 09/25/2020 11/25/2019 03/13/2020

Preamplifier (9kHz-1GHz) Preamplifier (1GHz - 26GHz) Preamplifier (26GHz-40GHz)
RF Cable (9kHz-18GHz)
RF Cable (18GHz-40GHz)

HP

8447F 3113A04621 06/19/2020

EM

EM01M26G 060681 05/04/2020

MITEQ

JS4-26004000818471
27-5A

05/04/2020

HUBER SUSucoflex 104A MY1397/4A 01/10/2020
HNER

HUBER SU-

27963/2&374 Sucoflex 102

11/21/2019

HNER

21/2

Signal Generator

Anritsu

MG3692A

20311

01/06/2020

E3

Test Software

Audix

N/A Ver:6.12023

N/A

05/21/2021 02/11/2021 09/25/2021 11/25/2020 03/13/2021 06/19/2021 05/04/2021 05/04/2021 01/10/2021 11/21/2020 01/06/2021
N/A

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9.6. Field Strength Calculation
The field strength is calculated by adding the Antenna Factor and Cable Factor and subtracting the Amplifier Gain and Duty Cycle Correction Factor (if any) from the measured reading. The basic equation with a sample calculation is as follows:
FS = RA + AF + CL - AG

Where

FS = Field Strength RA = Reading Amplitude AF = Antenna Factor

CL = Cable Attenuation Factor (Cable Loss) AG = Amplifier Gain

9.7. Measurement Result
Refer to attach tabular data sheets.
NOTE: The resolution bandwidth and video bandwidth of test receiver/spectrum analyzer is 100kHz for Peak detection (PK) and Quasi-peak detection (QP) at frequency below 1GHz. And RBW 1MHz for frequency above 1GHz.

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