Test Report UNII 1

Ubiquiti Inc. UX7 Digital Transmission Radio SWX-UX7 SWXUX7 ux7

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427 West 12800 South Draper, UT 84020
Test Report
Certification

FCC ID ISED ID Equipment Under Test Test Report Serial Number Date of Tests Report Issue Date

SWX-UX7 6545A-UX7 UX7 TR9481_02 9, 18-20 September, 7 October 2024 7 November 2024

Test Specification 47 CFR FCC Part 15, Subpart E

Applicant Ubiquiti Inc. 685 Third Avenue New York, NY 10017 U.S.A.

NVLAP LAB CODE 600241-0

427 West 12800 South, Draper, UT 84020

Certification of Engineering Report

This report has been prepared by Unified Compliance Laboratory (UCL) to document compliance of the device described below with the requirement of Federal Communication Commissions (FCC) Part 15, Subpart E. This report may be reproduced in full. Partial reproduction of this report may only be made with the written consent of the laboratory. The results in this report apply only to the sample tested with the specifications provided by the manufacturer.

Applicant

Ubiquiti Inc.

Manufacturer Ubiquiti Inc.

Brand Name UBIQUITI

Model Number UX7

FCC ID

SWX-UX7

ISED ID

6545A-UX7

On this 7th day of November 2024, I individually and for Unified Compliance Laboratory certify that the statements made in this engineering report are true, complete, and correct to the best of my knowledge and are made in good faith.

Although NVLAP has accredited the Unified Compliance Laboratory testing facilities, this report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST or any agency of the U.S. federal government.

Unified Compliance Laboratory

Written By: Kimberly Rodriguez

Reviewed By: Richard L. Winter

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Revision 01 02

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Revision History Description
Original Report Release Amend FCC and IC ID

Date 7 November 2024 3 December 2024

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Table of Contents
1 Client Information................................................................................................................................. 5 1.1 Applicant....................................................................................................................................... 5 1.2 Manufacturer................................................................................................................................. 5
2 Equipment Under Test (EUT)............................................................................................................... 6 2.1 Identification of EUT .................................................................................................................... 6 2.2 Description of EUT ....................................................................................................................... 6 2.3 EUT and Support Equipment ........................................................................................................ 6 2.4 Interface Ports on EUT ................................................................................................................. 7 2.5 Operating Environment................................................................................................................. 7 2.6 Operating Modes........................................................................................................................... 7 2.7 EUT Exercise Software................................................................................................................. 7 2.8 Block Diagram of Test Configuration .......................................................................................... 8 2.9 Modification Incorporated/Special Accessories on EUT.............................................................. 8 2.10 Deviation, Opinions Additional Information or Interpretations from Test Standard.................... 8
3 Test Specification, Method and Procedures.......................................................................................... 9 3.1 Test Specification.......................................................................................................................... 9 3.2 Methods & Procedures.................................................................................................................. 9 3.3 FCC Part 15, Subpart E................................................................................................................. 9 3.4 Results........................................................................................................................................... 9 3.5 Test Location .............................................................................................................................. 10
4 Test Equipment ................................................................................................................................... 10 4.1 Conducted Emissions at Mains Ports.......................................................................................... 10 4.2 Direct Connect at the Antenna Port Tests ................................................................................... 11 4.3 Radiated Emissions ..................................................................................................................... 12 4.4 Equipment Calibration ................................................................................................................ 12 4.5 Measurement Uncertainty ........................................................................................................... 13
5 Test Results ......................................................................................................................................... 13 5.1 §15.203 Antenna Requirements .................................................................................................. 13 5.2 Conducted Emissions at Mains Ports Data ................................................................................. 14 5.3 §15.403(i) 26 dB Emissions Bandwidth ..................................................................................... 16 5.4 §15.407(a)(2) Maximum Average Output Power ....................................................................... 17 5.5 §15.407(b) Spurious Emissions .................................................................................................. 19 5.6 §15.407(a) Maximum Power Spectral Density........................................................................... 26

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1 Client Information
1.1 Applicant
Company Contact Name Title
1.2 Manufacturer
Company Contact Name Title

427 West 12800 South, Draper, UT 84020
Ubiquiti Inc. 685 Third Avenue New York, NY 10017 U.S.A. Alex Macon Compliance
Ubiquiti Inc. 685 Third Avenue New York, NY 10017 U.S.A. Alex Macon Compliance

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2 Equipment Under Test (EUT)
2.1 Identification of EUT

Brand Name

UBIQUITI

Model Number

UX7

Serial Number

942A6F4226AE

Dimensions (cm)

11.7 x 11.7 x 4.3

2.2 Description of EUT

The UX7 is a WiFi 7 access point designed for wide-ranging wireless coverage while maintaining overall network capacity. The UX7 operates in the 2.4 GHz, 5 GHz, and 6 GHz range. The UX7 has a Bluetooth management radio for easy setup and administration of the wireless system. The UX7 is powered from a USB-C connector.

Band UNII-1

WiFi Mode
a ax ax ax

Modulation Bandwidth
20 MHz 20 MHz 40 MHz 80 MHz

Modulation Type OFDM HE HE HE

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

This report covers the circuitry of the device subject to FCC Part 15, Subpart E. The circuitry of the device subject to FCC Part 15 Subpart B was found to be compliant and is covered under a separate Unified Compliance Laboratory test report.
2.3 EUT and Support Equipment

The EUT and support equipment used during the test are listed below.

Brand Name Model Number Serial Number

Description

BN: UBIQUITI MN: UX7 SN: 942A6F422528

Wireless Access Point

BN: UBIQUITI MN: GP-M015-QC SN: N/A

USB C Power Adapter

BN: Dell MN: XPS 13 SN: N/A

Laptop Personal Computer

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Name of Interface Ports / Interface Cables
See Section 2.4
2 conductor power cord/80 cm
LAN Port / Un-shielded Cat 5e cable (Note 2) Page 6 of 29

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Notes: (1) EUT (2) Interface port connected to EUT (See Section 2.4)
The support equipment listed above was not modified in order to achieve compliance with this standard.
2.4 Interface Ports on EUT

Name of Ports AC / USB-C
LAN

No. of Ports Fitted to EUT 1
1

WAN

1

2.5 Operating Environment

Cable Description/Length
2 conductor power cord/80 cm Un-shielded Cat 5e cable/5 meter Un-shielded Cat 5e cable/5 meter

Power Supply AC Mains Frequency Temperature Humidity Barometric Pressure

240 Volts AC Mains to USB-C Power 50 Hz 21.8 ­ 23.5 °C 25.7 ­ 41.5 % 1019 mBar

2.6 Operating Modes

The UX7 was tested using test software in order to enable a constant transmission. The measurements within this report are corrected to reference a 100% duty cycle. All emission modes of 802.11 a/ax were investigated. All measurements are reported with the worst-case mode (802.11ax) unless otherwise stated.
2.7 EUT Exercise Software

EUT firmware version 1.0 was used to operate the transmitter using a constant transmit mode.

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2.8 Block Diagram of Test Configuration

Diagram 1: Test Configuration Block Diagram
2.9 Modification Incorporated/Special Accessories on EUT
There were no modifications made to the EUT during testing to comply with the specification.
2.10 Deviation, Opinions Additional Information or Interpretations from Test Standard
There were no deviations, opinions, additional information or interpretations from the test specification.

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3 Test Specification, Method and Procedures
3.1 Test Specification

Title Purpose of Test

47 CFR FCC Part 15, Subpart E, Section 15.407 Limits and methods of measurement of radio interference characteristics of Unlicensed National Information Infrastructure Devices
The tests were performed to demonstrate initial compliance

3.2 Methods & Procedures

3.2.1 47 CFR FCC Part 15 Section 15.407 See test standard for details.
3.3 FCC Part 15, Subpart E

3.3.1 Summary of Tests

FCC Section ISED Section

Environmental Phenomena

15.407(a)

N/A

Antenna requirements

15.407(b)

RSS-Gen

Conducted Disturbance at Mains Port

15.407(c)

RSS-247 §6.2.2, §6.2.3 Bandwidth Requirement

Frequency Range (MHZ)
Structural Requirement

Result Compliant

0.15 to 30 Compliant

5180 to 5240 Compliant

15.407(e)

RSS-247 §6.2.2, §6.2.3 Peak Output Power

5180 to 5240 Compliant

15.407(f)

RSS-247 §6.2.2, §6.2.3

Antenna Conducted Spurious Emissions

0.009 to 40000

N/A

15.407(g)

RSS-247 §6.2.2, §6.2.3

Radiated Spurious Emissions

0.009 to 40000

Compliant

15.407(h)

RSS-247 §6.2.2, §6.2.3

Peak Power Spectral Density

5180 to 5240 Compliant

The testing was performed according to the procedures in ANSI C63.10-2013, KDB 789033 and 47 CFR Part 15. Where applicable, KDB 662911 was followed to sum required measurements.

3.4 Results

In the configuration tested, the EUT complied with the requirements of the specification.

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3.5 Test Location
Testing was performed at the Unified Compliance Laboratory 3-meter and 10-meter chamber located at 427 West 12800 South, Draper, UT 84020. Unified Compliance Laboratory is accredited by National Voluntary Laboratory Accreditation Program (NVLAP); NVLAP Code 600241-0 which is effective until 30 June 2025. This site has also been registered with Innovations, Science and Economic Development (ISED) department as was accepted under Appendix B, Phase 1 procedures of the APEC Tel MRA for Canadian recognition. ISED No.: 25346, effective until 30 June 2025.
Unified Compliance Laboratory has been assigned Designation Number US5037 by the FCC and Conformity Assessment Number US0223 by ISED.

4 Test Equipment
4.1 Conducted Emissions at Mains Ports

Type of Equipment EMI Receiver
LISN

Manufacturer
AFJ AFJ

Model Number FFT3010
LS16C/10

Asset Number UCL-6754
UCL-2512

Date of Last Calibration 1/23/2024
7/08/2024

Due Date of Calibration 2/26/2025 7/08/2025

ISN

Teseq

ISN T800 UCL-2974 7/09/2024

7/09/2025

LISN

AFJ

LS16C\10 UCL-6749 1/29/2024

1/29/2025

AC Power Source

Laplace Instruments

AC1000A UCL-2857

N/A

N/A

Test Software

UCL

Revision 1 UCL-3107

N/A

N/A

Table 1: List of equipment used for Conducted Emissions Testing at Mains Port

Figure 1: Conducted Emissions Test

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4.2 Direct Connect at the Antenna Port Tests

Type of Equipment Spectrum Analyzer Signal Generator Vector Signal Generator
Switch Extension
Switch Extension

Manufacturer R&S R&S R&S
R&S R&S

Model Number FSV40 SMB100A

Asset Number UCL-2861 UCL-2864

Date of Last Calibration 11/27/2023
N/A

SMBV100A UCL-2873

N/A

OSPB157WX
OSP-150W

UCL-2867 UCL-2870

4/12/2024 4/12/2024

Due Date of Calibration 11/27/2024
N/A
N/A
4/19/2025
4/19/2025

Table 2: List of equipment used for Direct Connect at the Antenna Port

Figure 2: Direct Connect at the Antenna Port Test Figure 3: Output Power Measurement

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4.3 Radiated Emissions

Type of Equipment EMI Receiver Pre-Amplifier 9 kHz ­ 1 GHz Broadband
Antenna Broadband Antenna Double Ridge Horn Antenna
Log Periodic 15 - 40 GHz Horn Antenna 1 ­ 18 GHz
Amplifier
Test Software

Manufacturer
Keysight Sonoma Instruments
Scwarzbeck

Model Number N9038A
310N

Asset Number UCL-2778
UCL-2889

VULB 9163 UCL-3062

Date of Last Calibration 1/25/2024
1/19/2024
2/22/2023

Scwarzbeck
Scwarzbeck Scwarzbeck Scwarzbeck

VULB 9163 UCL-3071

BBHA 9120D
STLP 9129

UCL-3065 UCL-3068

BBHA 9170 UCL-2487

1/11/2023
3/10/2023 1/27/2023 3/10/2023

Com-Power PAM 118A UCL-3833 1/19/2024

UCL

Revision 1 UCL-3108

N/A

Table 3: List of equipment used for Radiated Emissions

Due Date of Calibration 1/29/2025 1/19/2026
2/22/2025
1/11/2025
3/10/2025 1/27/2025 3/10/2025
1/19/2026 N/A

Figure 4: Radiated Emissions Test

4.4 Equipment Calibration

All applicable equipment is calibrated using either an independent calibration laboratory or Unified Compliance Laboratory personnel at intervals defined in ANSI C63.4:2014 following outlined calibration procedures. All measurement instrumentation is traceable to the National Institute of Standards and Technology (NIST). Supporting documentation relative to traceability is on file and is available for examination upon request.

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4.5 Measurement Uncertainty
Test Conducted Emissions Radiated Emissions (9 kHz to 30 MHz) Radiated Emissions (30 MHz to 1 GHz) Radiated Emissions (1 GHz to 18 GHz) Radiated Emissions (18 GHz to 40 GHz) Direct Connect Tests Emissions Bandwidth Output Power Peak Power Spectral Density Band Edge Transmitter Spurious Emissions

Uncertainty (+ dB) 1.44 2.50 4.38 4.37 3.93
K Factor 2 2 2 2 2

Confidence (%) 95 95 95 95 95
Value 2.0% 1.0 dB 1.3 dB 0.8 dB 1.8 dB

5 Test Results
5.1 §15.203 Antenna Requirements
The EUT uses an integral antenna. Per the manufacturer, the Maximum gain of the antenna per chain is 7 dBi. This is an 802.11 device and utilizes CDD as described in KDB 662911 D01. The antenna is not user replaceable. For CDD transmissions, directional gain is calculated as follows.
Array Gain = 10 log(NANT/NSS) dB NANT = number of transmit antennas and NSS = number of spatial streams. NSS = 1 considered worst case.
For power measurements on IEEE 802.11 devices, Array Gain = 0 dB for NANT  4; For PSD measurements when Nss=1: Array Gain = 10 log(NANT/NSS) dB + Antenna Gain (dBi). Or 3.01 dB + 7 dBi = 10.01 dBi.
Results The EUT complied with the specification

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5.2 Conducted Emissions at Mains Ports Data
5.2.1 Line

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Result The EUT complied with the specification limit.

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5.3 §15.403(i) 26 dB Emissions Bandwidth

All chains were measured under the guidance of KDB 789033 Section II.C. and KDB 662911 D01.

Nominal BW (MHz)

Frequency (MHz)

99% Bandwidth (MHz)

Emissions 26 dB Bandwidth (MHz)

OFDM20

5180

17.75

22.30

OFDM20

5210

31.25

48.00

OFDM20

5240

33.00

48.40

HE20

5180

19.25

23.50

HE20

5210

26.53

50.80

HE20

5240

32.87

53.00

HE40

5190

38.50

43.05

HE40

5230

38.50

55.20

HE80

5210

79.00

90.00

Result All chains were tested and the highest bandwidth per chain is reported above. The 26 dB bandwidths are reported for information purposes. Please see Annex for all bandwidth measurements.

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5.4 §15.407(a)(2) Maximum Average Output Power
All chains were measured and summed under the guidance of KDB 789033 Section II. E.2. and KDB 662911 D01. Please see associated annex for details on instrument settings. The maximum average RF conducted output power measured for this device was 27.42 dBm or 552.08 mW. The limit is 30 dBm, or 1 Watt when using an antenna with 23 dBi (Fixed point to point) or less gain. The antenna has a gain of 7 dBi.

Modulation (BW)

Frequency (MHz)

Data Rate

TP Setting

Conducted Output Power

Measured EIRP

Measured PSD

OFDM 20 OFDM 20 OFDM 20
HE 20 HE 20 HE 20 HE 40 HE 40 HE 80

5180 5210 5240 5180 5210 5240 5190 5230 5210

Mcs0-Nss2 21 Mcs0-Nss2 27 Mcs0-Nss2 30 Mcs0-Nss2 22 Mcs0-Nss2 26 Mcs0-Nss2 30 Mcs0-Nss2 19 Mcs0-Nss2 23 Mcs0-Nss2 20

22.34 27.42 26.92 23.20 26.58 26.95 20.46 24.62 21.16

29.34 34.42 33.92 30.20 33.58 33.95 27.46 31.62 28.16

10.10 15.13 14.54 10.47 13.89 14.01 4.99 8.86 2.55

Modulation (BW)

Frequency (MHz)

Data Rate

TP Setting

Conducted Output Power

Measured EIRP

Measured PSD

OFDM 20 OFDM 20 OFDM 20
HE 20 HE 20 HE 20 HE 40 HE 40 HE 80

5180 5210 5240 5180 5210 5240 5190 5230 5210

Mcs0-Nss1 21 Mcs0-Nss1 24 Mcs0-Nss1 28 Mcs0-Nss1 22 Mcs0-Nss1 25 Mcs0-Nss1 28 Mcs0-Nss1 19 Mcs0-Nss1 23 Mcs0-Nss1 20

22.34 24.42 24.92 23.20 25.58 24.95 20.46 24.62 21.16

29.34 31.42 31.92 30.20 32.58 31.95 27.46 31.62 28.16

10.10 12.13 12.54 10.47 12.89 12.01 4.99 8.86 2.55

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5.4.1 Canada Use (Indoor Only)

Modulation (BW)

Frequency (MHz)

Data Rate

TP Setting

Conducted Output Power

Measured EIRP

Measured PSD

OFDM 20 OFDM 20 OFDM 20
HE 20 HE 20 HE 20 HE 40 HE 40 HE 80

5180 5210 5240 5180 5210 5240 5190 5230 5210

Mcs0

13

Mcs0

13

Mcs0

13

Mcs0

13

Mcs0

13

Mcs0

13

Mcs0

14

Mcs0

14

Mcs0

14

14.57 14.60 14.65 14.67 14.70 14.71 15.58 15.90 15.40

21.57 21.60 21.65 21.67 21.70 21.71 22.58 22.90 22.40

2.26 2.32 2.22 1.79 1.84 1.82 0.13 0.16 -3.24

Result In the configuration tested, the maximum summed average RF output power was less than 1 watt; therefore, the EUT compiled with the requirements of the specification (see spectrum analyzer plots in attached Annex).

Plot 1: Elevation Plot Greater Then 30-Degrees From Horizon

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5.5 §15.407(b) Spurious Emissions
5.5.1 Conducted Spurious Emissions The frequency range from the lowest frequency generated or used in the device to the tenth harmonic of the highest fundamental frequency was investigated to measure any antenna-conducted emissions. The graphs show the measurement data from spurious emissions noted across the frequency range when transmitting at the lowest frequency, middle frequency and upper frequency. Shown below are plots with the EUT turned to the upper and lower channels with the antenna gain of 7 dBi accounted for. These demonstrate compliance with the provisions of this section at the band edges. The emissions must be remain below -27 dBm EIRP. Result Conducted spurious emissions were below -27 dBm; therefore, the EUT complies with the specification.
5.5.2 Radiated Spurious Emissions in the Restricted Bands of § 15.205 The EUT uses various power settings based on the channel in use. In order to reduce test time, the radiated spurious emissions at the lowest, middle, and highest channel were measured at the maximum power of TP30, as this setting was found to be worst case for spurious emissions. Power was subsequently reduced during in-band and band edge testing. The band edge at the restricted band ending at 5150 MHz was measured using radiated measurement. All emissions modes were tested, and the worstcase measurement are shown below. For frequencies above 1 GHz, a measurement of 3 meters was used. For frequencies below 1 GHz, a measurement distance of 10 meters was used. Correction Factor = Antenna Factor + Cable Loss - Pre-Amplifier Gain, and is added to the Receiver reading.
Result All emissions in the restricted bands of § 15.205 met the limits specified in § 15.209; therefore, the EUT complies with the specification. All emissions me the limits specified in § 15.407(b). Representative band edge plots are included in this report.

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Frequency
34.945975 MHz 59.11511 MHz 105.073162 MHz 189.288564 MHz 383.934924 MHz 190.368388 MHz 320.023216 MHz 384.019152 MHz

SR Level # (dBµV/m) QP 33.027 QP 33.683 QP 32.625 QP 39.353 QP 38.59 QP 34.215 QP 38.442 QP 36.961

Limit (dBµV/m) 40 40 40 40 47 40 47 47

Margin
-6.973 -6.317 -7.375 -0.647 -8.41 -5.785 -8.558 -10.039

Azimuth (°) 200 349 166 168 151 288 109 351

Height
1 1.13 1.13 1.13 1.13 1.35 1.13 2.14

Pol.
Vertical Vertical Vertical Vertical Vertical Horizontal Horizontal Horizontal

RBW (Hz) 120 kHz 120 kHz 120 kHz 120 kHz 120 kHz 120 kHz 120 kHz 120 kHz

Correction (dB) -10.415 -8.763 -8.953 -9.976 -4.861 -9.777 -6.691 -4.857

Table 4: Radiated Emissions within 30MHz-1GHz

Frequency
10.3656021 GHz 14.5938518 GHz 15.5477951 GHz

SR #
Peak Peak Peak

Level (dBµV/m) 56.296 58.228 60.614

Limit (dBµV/m) 74 74 74

Margin (dB) -17.704 -15.772 -13.386

Azimuth (°) 135 261 236

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Height (m) 3.728 1.5 2.292

Pol.
Vertical Vertical Vertical

RBW (Hz) 1 MHz 1 MHz 1 MHz

Correction (dB) 9.202 14.089 11.349

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Frequency
10.3656021 GHz 14.5938518 GHz 15.5477951 GHz 11.0061673 GHz 14.589249 GHz 16.7043027 GHz 11.0061673 GHz 14.589249 GHz 16.7043027 GHz

SR #
AVG AVG AVG Peak Peak Peak AVG AVG AVG

Level (dBµV/m) 42.51 44.886 47.036 54.102 57.934 55.458 41.119 44.767 42.629

Limit (dBµV/m) 54 54 54 74 74 74 54 54 54

Margin (dB) -11.49 -9.114 -6.964 -19.898 -16.066 -18.542 -12.881 -9.233 -11.371

Azimuth (°) 135 261 236 192 135 356 192 135 356

Height (m) 3.728 1.5 2.292 3.728 1.5 2.867 3.728 1.5 2.867

Pol.
Vertical Vertical Vertical Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal

RBW (Hz) 0 Hz 0 Hz 0 Hz 1 MHz 1 MHz 1 MHz 0 Hz 0 Hz 0 Hz

Correction (dB) 9.202 14.089 11.349 10.765 14.053 13.567 10.765 14.053 13.567

Table 5: Emissions 1-17GHz Transmitting on the Low Frequency 5180 MHz

Frequency
27.2886677 GHz 34.7932938 GHz 39.648126 GHz 27.2886677 GHz 34.7932938 GHz 39.648126 GHz 23.8200857 GHz 27.5296195 GHz 39.8580589 GHz 23.8200857 GHz 27.5296195 GHz 39.8580589 GHz

SR #
Peak Peak Peak AVG AVG AVG Peak Peak Peak AVG AVG AVG

Level (dBµV/m) 52.62 56.484 55.765 39.763 42.72 42.621 56.436 53.626 55.708 50.918 40.064 42.353

Limit (dBµV/m) 74 74 74 54 54 54 74 74 74 54 54 54

Margin (dB) -21.38 -17.516 -18.235 -14.237 -11.28 -11.379 -17.564 -20.374 -18.292 -3.082 -13.936 -11.647

Azimuth (°)
9 286 286 9 286 286 91 76 220 91 76 220

Pol.
Vertical Vertical Vertical Vertical Vertical Vertical Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal

RBW (Hz) 1 MHz 1 MHz 1 MHz 0 Hz 0 Hz 0 Hz 1 MHz 1 MHz 1 MHz 0 Hz 0 Hz 0 Hz

Correction (dB) 2.804 5.123 3.894 2.804 5.123 3.894 1.103 2.683 3.564 1.103 2.683 3.564

Table 6: Emissions 17-40GHz Transmitting on the Highest Frequency 5240 MHz

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Plot 1: Band Edge HE20 5180MHz

Plot 2: Band Edge HE20 5210MHz
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Plot 3: Band Edge HE20 5240MHz

Plot 4: Band Edge HE40 5190MHz
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Plot 5: Band Edge HE40 5230MHz

Plot 6: Band Edge HE80 5210MHz
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Plot 7: Band Edge OFDM20 5180MHz

Plot 8: Band Edge OFDM20 5210MHz
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Plot 9: Band Edge OFDM20 5240MHz
5.6 §15.407(a) Maximum Power Spectral Density
All chains were measured and summed under the guidance of KDB 789033 Section II. F. and KDB 662911 D01. Please see associated annex for details on instrument settings.
The maximum average power spectral density conducted from the intentional radiator of the antenna shall not be greater than 17 dBm in any 1 MHz band during any time interval of continuous transmission. As per KDB 662911, when the EUT is using spatial-multiplexing in HT to HE modes, there is not additional array gain to accommodate. When the EUT uses Nss=1 data rates, the antenna gain is 7 dBi + Array gain of 3.01 dB which is a total of 10.01 dBi Results of this testing are summarized.

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427 West 12800 South, Draper, UT 84020

Modulation (BW)
OFDM 20 OFDM 20 OFDM 20
HE 20 HE 20 HE 20 HE 40 HE 40 HE 80

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

Data Rate
Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2 Mcs0-Nss2

TP Setting
21 27 30 22 26 30 19 23 20

Measured PSD
10.10 15.13 14.54 10.47 13.89 14.01 4.99 8.86 2.55

Modulation (BW)
OFDM 20 OFDM 20 OFDM 20
HE 20 HE 20 HE 20 HE 40 HE 40 HE 80

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

Data Rate
Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1 Mcs0-Nss1

TP Setting
21 24 28 22 25 28 19 23 20

Measured PSD
10.10 12.13 12.54 10.47 12.89 12.01 4.99 8.86 2.55

Result The maximum summed average power spectral density was less than the limit of 17dBm; therefore, the EUT complies with the specification.

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427 West 12800 South, Draper, UT 84020 -- End of Test Report --

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427 West 12800 South, Draper, UT 84020

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