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Test Report-Spot Check

Cisco Systems Inc DVONE2597 Cisco Catalyst 9120AX Series Wi-Fi 6 Access Points LDKDVONE2597 LDKDVONE2597 dvone2597

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FCC Part 15.247
TEST REPORT
For
Cisco Systems, Inc.
125 West Tasman Drive, San Jose, CA 95134, USA

FCC ID: LDKDVONE2597

Report Type: Original Report

Product Type: Cisco Catalyst 9120AX Series WiFi 6 Access Points

Report Producer : Eva Kao
Report Number : RXZ220627001RF02
Report Date : 2022-7-8
Reviewed By: Andy Shih Prepared By: Bay Area Compliance Laboratories Corp.
(New Taipei Laboratory) 70, Lane 169, Sec. 2, Datong Road, Xizhi Dist., New Taipei City 22183, Taiwan, R.O.C. Tel: +886 (2) 2647 6898 Fax: +886 (2) 2647 6895 www.bacl.com.tw

Note: It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp.

(New Taipei Laboratory)

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Bay Area Compliance Laboratories Corp. (New Taipei Laboratory)

No.: RXZ220627001RF02

Revision History

Revision 0.0

No. RXZ220627001

Report Number RXZ220627001RF02

Issue Date 2022-7-8

Description Original Report

Author/ Revised by
Eva Kao

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TABLE OF CONTENTS
1 General Information ....................................................................................................... 4
1.1 Product Description for Equipment under Test (EUT).............................................. 4 1.2 Objective.................................................................................................................... 4 1.3 Test Methodology...................................................................................................... 4 1.4 Statement ................................................................................................................... 5 1.5 Measurement Uncertainty.......................................................................................... 5 1.6 Environmental Conditions ......................................................................................... 5 1.7 Test Facility ............................................................................................................... 5 2 System Test Configuration ............................................................................................. 6
2.1 Equipment Modifications .......................................................................................... 6 2.2 Test Mode .................................................................................................................. 6 2.3 Support Equipment List and Details.......................................................................... 6 2.4 External Cable List and Details ................................................................................. 6 2.5 Block Diagram of Test Setup .................................................................................... 7 3 Summary of Test Results................................................................................................ 8
4 Test Equipment List and Details ................................................................................... 9
5 FCC §15.247(i), § 1.1307(b)(3)(i) ­ RF Exposure....................................................... 10
5.1 Applicable Standard................................................................................................. 10 5.2 RF Exposure Evaluation Result............................................................................... 11 6 FCC §15.209, §15.205 , §15.247(d) ­ Spurious Emissions ......................................... 12
6.1 Applicable Standard .............................................................................................. 12 6.2 EUT Setup .............................................................................................................. 13 6.3 EMI Test Receiver & Spectrum Analyzer Setup................................................ 14 6.4 Test Procedure ......................................................................................................... 14 6.5 Corrected Factor & Margin Calculation............................................................. 14 6.6 Test Results............................................................................................................. 15 7 FCC §15.247(a)(2) ­ Maximum Output Power .......................................................... 25
7.1 Applicable Standard .............................................................................................. 25 7.2 Test Procedure ....................................................................................................... 25 7.3 Test Results............................................................................................................. 25

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No.: RXZ220627001RF02

1 General Information

1.1 Product Description for Equipment under Test (EUT)

Manufacturer

Cisco Systems, Inc. 125 West Tasman Drive, San Jose, CA 95134, USA

Brand(Trade) Name

CISCO

Product (Equipment)

Cisco Catalyst 9120AX Series Wi-Fi 6 Access Points

Main Model Name

C9120AXI-B

Frequency Range

2412~2462 MHz

Modulation Technique

DSSS , OFDM

Power Operation (Voltage Range)

55Vdc from PoE port

Received Date

2022/6/6

Date of Test

2022/6/28 ~ 2022/6/29

*All measurement and test data in this report was gathered from production sample serial number:

RXZ220627001-01 (Assigned by BACL, New Taipei Laboratory).

1.2 Objective This report is prepared on behalf of Cisco Systems, Inc. in accordance with Part 2, Subpart J, Part 15, Subparts A and C of the Federal Communication Commission's rules.
Wi-Fi and Chillwave leverage original test data (FCC ID: LDKVCVER1937) in accordance with FCC KDB 484596 D01. Wi-Fi and Chillwave will be verified by spot checking output power and radiated spurious emissions.

1.3 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

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1.4 Statement Decision Rule: No, (The test results do not include MU judgment)

No.: RXZ220627001RF02

It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. (New Taipei Laboratory). Any unauthorized alteration, forgery or falsification of the content or appearance of this document is unlawful and offenders may be prosecuted to the fullest extent of the law. Unless otherwise stated the results shown in this test report refer only to the sample(s) tested. The determination of the test results does not require consideration of the uncertainty of the measurement, unless the assessment is required by customer agreement, regulation or standard document specification. Bay Area Compliance Laboratories Corp. (New Taipei Laboratory) is not responsible for the authenticity of the information provided by the applicant that affects the test results.

1.5 Measurement Uncertainty

Parameter

RF output power, conducted

30 MHz~1GHz

Emissions, radiated

1 GHz~18 GHz

18 GHz~40 GHz

Temperature

Humidity

Uncertainty ±0.93 (dB) ±5.22(dB) ±6.12(dB) ±4.99(dB) +/- 1.27 °C +/- 3 %

1.6 Environmental Conditions

Test Site

Test Date

Radiation Spurious Emissions Maximum Output Power

2022/6/28 ~ 2022/6/29 2022/6/28

Temperature ()
22.8 - 24.1 24.3

Relative Humidity
(%)
54 - 66
54

ATM Pressure
(hPa)
1010
1010

Test Engineer
Andy Cheng Boris Kao

1.7 Test Facility The Test site used by Bay Area Compliance Laboratories Corp. (New Taipei Laboratory) to collect test data is located on
70, Lane 169, Sec. 2, Datong Road, Xizhi Dist., New Taipei City 22183, Taiwan, R.O.C.

Bay Area Compliance Laboratories Corp. (New Taipei Laboratory) is accredited to ISO 17025 by Taiwan Accreditation Foundation (TAF code: 3732) and the FCC designation No.TW3732 under the Mutual Recognition Agreement (MRA) in FCC Test.

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2 System Test Configuration
2.1 Equipment Modifications No modification was made to the EUT.

No.: RXZ220627001RF02

2.2 Test Mode Mode 1: WIFI 2.4GHz XOR + WIFI 5GHz Regular + WIFI 2.4GHz Aux + BLE Mode 2: WIFI 2.4G XOR + WIFI 5GHz Regular + WIFI 5GHz Aux + BLE Mode 3: WIFI 5G XOR + WIFI 5GHz Regular + WIFI 2.4GHz Aux + BLE Mode 4: WIFI 5G XOR + WIFI 5GHz Regular + WIFI 5GHz Aux + BLE
Radiated spurious emissions for Transmitting simultaneously test: Mode 1-4.

2.3 Support Equipment List and Details

Description

Manufacturer

POE Adapter

CISCO

NB

DELL

Model Number
SB-PWR-INJ2
E6410

S/N
C18426663000003170
8N7PXN1

2.4 External Cable List and Details

Cable Description

Length (m)

RJ-45 Cable

1

RJ-45 to USB Serial Cable

2

From
EUT EUT

To
POE Adapter NB

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No.: RXZ220627001RF02

2.5 Block Diagram of Test Setup See test photographs attached in setup photos for the actual connections between EUT and support equipment.

Radiation: Below 1GHz:

Above 1GHz:

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3 Summary of Test Results

FCC Rules
§15.247(i), §1.1307(b)(3)(i) §15.205, §15.209, §15.247(d)
§15.247(b)(3)

Description of Test
RF Exposure Spurious Emissions Maximum Peak Output Power

Results Compliance
Compliance Compliance

*Note: The output power for each radio and each frequency band already verified The test report presented the worst modes and channels

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No.: RXZ220627001RF02

4 Test Equipment List and Details

Description
Bilog Antenna with 6 dB Attenuator
Horn Antenna Horn Antenna Preamplifier Preamplifier
Microware Preamplifier
Spectrum Analyzer EMI Test Receiver Micro flex Cable Coaxial Cable Coaxial Cable
Coaxial Cable
Cable
Coaxial Cable
Coaxial Cable
Software
Cable

Manufacturer

Model

Serial Number

Radiation 3M Room (966-A)

SUNOL

SCIENCES &

JB6/UNAT-6+ A050115/15542_01

MINI-CIRCUITS

EMCO

3115

9809-55583

ETS-Lindgren

3116

62638

Sonoma

310N

130602

A.H. system Inc.

PAM-0118P

466

EM Electronics Corporation

EM18G40G

60656

Calibration Calibration

Date

Due Date

2022/02/14 2023/02/13

2021/8/26 2021/8/11 2022/6/8 2021/11/4
2021/12/27

2022/8/25 2022/8/10 2023/6/7 2022/11/3
2022/12/26

Rohde & Schwarz

FSV40

101435

2021/12/27 2022/12/26

Rohde & Schwarz

ESR7

101419

UTIFLEX COMMATE UTIFLEX JUNFLON
EMC ROSNOL
ROSNOL Audix
UTIFLEX

UFB197C-12362-70U-70U
PEWC UFB311A-Q1440-300300 J12J102248-00-
B-5 EMC105-SM-
SM-10000 K1K50-UP0264-
K1K50-450CM

225757-001 8Dr
220490-006 AUG-07-15-044
201003
160309-1

K1K50-UP0264K1K50-50CM

15120-1

e3

18621a bacl

Conducted Room

UFA210A

9435

2021/11/9

2022/11/8

2022/1/24 2021/12/24 2022/1/24

2023/1/23 2022/12/23 2023/1/23

2021/12/24 2022/12/23

2022/1/24

2023/1/23

2022/1/24

2023/1/23

2022/1/18 N.C.R

2023/1/17 N.C.R

2021/10/5 2022/10/4

Power Sensor

KEYSIGHT

U2021XA

MY54080018 2021/1/28 2022/1/27

Attenuator MINI-CIRCUITS BW-S10W5+

1419

2021/1/28 2022/1/27

*Statement of Traceability: BACL Corp. attests that all of the calibrations on the equipment items listed above were traceable to the SI System of Units via the R.O.C. Center for Measurement Standards of the Electronics Testing Center, Taiwan (ETC) or to another internationally recognized National Metrology Institute (NMI), and were compliant with the current Taiwan Accreditation Foundation (TAF) requirement

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No.: RXZ220627001RF02

5 FCC §15.247(i), § 1.1307(b)(3)(i) ­ RF Exposure

5.1 Applicable Standard According to subpart 15.247(i) and subpart §1.1307(b)(3)(i), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission's guidelines.

For single RF sources (i.e., any single fixed RF source, mobile device, or portable device, as defined in paragraph (b)(2) of this section): A single RF source is exempt if:

(A) The available maximum time-averaged power is no more than 1 mW, regardless of separation distance. This exemption may not be used in conjunction with other exemption criteria other than those in paragraph (b)(3)(ii)(A) of this section. Medical implant devices may only use this exemption and that in paragraph (b)(3)(ii)(A); (B) Or the available maximum time-averaged power or effective radiated power (ERP), whichever is greater, is less than or equal to the threshold Pth (mW) described in the following formula. This method shall only be used at separation distances (cm) from 0.5 centimeters to 40 centimeters and at frequencies from 0.3 GHz to 6 GHz (inclusive). Pth is given by:

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No.: RXZ220627001RF02

5.2 RF Exposure Evaluation Result The EUT can be used in the following modes, selecting the worst mode for evaluation. Mode 1: WIFI 2.4GHz XOR + WIFI 5GHz Regular + WIFI 2.4GHz Aux + BLE Mode 2: WIFI 2.4G XOR + WIFI 5GHz Regular + WIFI 5GHz Aux + BLE Mode 3: WIFI 5G XOR + WIFI 5GHz Regular + WIFI 2.4GHz Aux + BLE Mode 4: WIFI 5G XOR + WIFI 5GHz Regular + WIFI 5GHz Aux + BLE

Worst case is Mode 4 : Project info

Band
BLE do0 5GHz XOR d01 5GHz Regualr do4 5G Aux

Freq (MHz)
2480 5850 5850 5850

Tune-up Power (dBm)
4 24.5 24 23

Ant Gain (dBi)
3 11 11 5

Distances (mm)
300 300 300 300

Duty

Tune-up Power

(%)

(mW)

100%

2.51

100%

281.84

100%

251.19

100%

199.53

Option A The available maximum time-averaged power is no more than 1 mW

Band
BLE do0 5GHz XOR d01 5GHz Regualr
do4 5G Aux

Freq (MHz) 2480 5850 5850 5850

Result Option A not exempt not exempt not exempt not exempt

ERP (dBm)
4.85 33.35 32.85 25.85

ERP (mW)
3.05 2162.72 1927.52 384.59

Option B

The available maximum time-averaged power or effective radiated power (ERP), whichever is

greater.

This method shall only be used at separation distances (cm) from 0.5 centimeters to 40 centimeters

and at frequencies from 0.3 GHz to 6 GHz (inclusive).

Band
BLE do0 5GHz XOR d01 5GHz Regualr
do4 5G Aux

Freq (MHz) 2480 5850 5850 5850

Pth (mW) 3060.00 3060.00 3060.00 3060.00

X
1.905 2.091 2.091 2.091

ERP 20cm (mW) 3060 3060 3060 3060

Ratio
0.00 0.71 0.63 0.13

Result Option B exempt exempt exempt exempt

Simultaneous Analysis :

Band
BLE do0 5GHz XOR d01 5GHz Regualr
do4 5G Aux

Freq

PSD

PSD

(MHz)

Require

(mW/cm 2 )

2480

exempt

0.001

5850

exempt

0.314

5850

exempt

0.280

5850

exempt

0.056

Simultaneous Analysis (Limit 1)

PSD Limit (mW/cm 2 )
1.000 1.000 1.000 1.000

Simultaneous TX
O O O O

Ratio
0.001 0.314 0.280 0.056 0.651

Result: The EUT meets exemption requirement- RF exposure evaluation greater than 30cm distance.

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No.: RXZ220627001RF02

6 FCC §15.209, §15.205 , §15.247(d) ­ Spurious Emissions

6.1 Applicable Standard
As Per FCC §15.205(a) except as show in paragraph (d) of this section, only spurious emissions are permitted in any of the frequency bands listed below:

MHz
0.090 ­ 0.110 0.495 ­ 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

MHz
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

MHz
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 2690 ­ 2900 3260 ­ 3267 3.332 ­ 3.339 3 3458 ­ 3 358 3.600 ­ 4.400

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 Above 38.6

As per FCC §15.209(a): Except as provided elsewhere in this Subpart, the emissions from an intentional

radiator shall not exceed the field strength levels specified in the following table:

Frequency (MHz)

Field Strength (micro volts/meter)

Measurement Distance (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

Above 960

500

3

Note 1: Except as provided in paragraph (g), fundamental emissions from intentional radiators operating under

this Section shall not be located in the frequency bands 54-72 MHz, 76-88 MHz, 174-216 MHz or 470-

806MHz. However, operation within these frequency bands is permitted under other sections of this Part, e.g.,

Sections 15.231 and 15.241.

As per FCC §15.247 (d) In any 100 kHz bandwidth outside the frequency band in which the spread spectrum or digitally modulated intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 20 dB below that in the 100 kHz bandwidth within the band that contains the highest level of the desired power, based on either an RF conducted or a radiated measurement, provided the transmitter demonstrates compliance with the peak conducted power limits. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, as permitted under

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No.: RXZ220627001RF02

paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 dB instead of 20 dB. Attenuation below the general limits specified in §15.209(a) is not required. In addition, radiated emissions which fall in the restricted bands, as defined in §15.205(a), must also comply with the radiated emission limits specified in §15.209(a) (see §15.205(c).

6.2 EUT Setup
Below 1 GHz:

Above 1 GHz:

Radiated emission tests were performed in the 3 meters chamber test site, using the setup accordance with the ANSI C63.10-2013. The specification used was the FCC Part 15.209 and FCC 15.247 Limits.

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No.: RXZ220627001RF02

6.3 EMI Test Receiver & Spectrum Analyzer Setup

The system was investigated from 30 MHz to 26.5 GHz. During the radiated emission test, the EMI test

receiver was set with the following configurations measurement method 6.3 in ANSI C63.10.

Frequency Range 30-1000 MHz

RBW 120 kHz

VBW /

Duty cycle /

Measurement method QP

1 MHz

3 MHz

/

PK

Above 1 GHz

1 MHz

10 Hz

>98%

Ave

1 MHz

1/T

<98%

Ave

Note: T is minimum transmission duration

6.4 Test Procedure
Maximizing procedure was performed on the highest emissions to ensure that the EUT complied with all installation combinations. All data was recorded in the Quasi-peak detector mode from 30 MHz to 1 GHz and PK and average detector modes for frequencies above 1 GHz.

6.5 Corrected Factor & Margin Calculation
The Correct Factor is calculated by adding the Antenna Factor and Cable Loss, and subtracting the Amplifier Gain from the Meter Reading. The basic equation is as follows:
Correct Factor = Antenna Factor + Cable Loss ­ Amplifier Gain
The "Margin" column of the following data tables indicates the degree of compliance with the applicable limit. For example, a margin of -7 dB means the emission is 7 dB below the limit. The equation for margin calculation is as follows:
Margin = Result ­ Limit

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6.6 Test Results Test Mode: Transmitting
Transmitting simultaneously test: 30MHz-1GHz:

No.: RXZ220627001RF02

Mode 1 / Horizontal

Mode 1 / Vertical

Mode 2 / Horizontal

Mode 2 / Vertical

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Bay Area Compliance Laboratories Corp. (New Taipei Laboratory) Mode 3 / Horizontal

No.: RXZ220627001RF02 Mode 3 / Vertical

Mode 4 / Horizontal

Mode 4 / Vertical

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Above 1GHz Mode 1 :
Horizontal

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Vertical

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Mode 2 : Horizontal

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Vertical

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Mode 3 : Horizontal

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Vertical

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Mode 4 : Horizontal

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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Vertical

No.: RXZ220627001RF02

Level (Result) = Reading + Factor. Margin = Level ­ Limit. Factor = Antenna Factor + Cable Loss ­ Amplifier Gain. Spurious emissions more than 20 dB below the limit were not reported.

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No.: RXZ220627001RF02

7 FCC §15.247(a)(2) ­ Maximum Output Power
7.1 Applicable Standard
According to FCC §15.247(b) (3). Systems using digital modulation in the 902-928 MHz, 2400-2483.5 MHz, and 5725-5850 MHz bands: 1 Watt. As an alternative to a peak power measurement, compliance with the one Watt limit can be based on a measurement of the maximum conducted output power. Maximum Conducted Output Power is defined as the total transmit power delivered to all antennas and antenna elements averaged across all symbols in the signaling alphabet when the transmitter is operating at its maximum power control level. Power must be summed across all antennas and antenna elements. The average must not include any time intervals during which the transmitter is off or is transmitting at a reduced power level. If multiple modes of operation are possible (e.g., alternative modulation methods), the maximum conducted output power is the highest total transmit power occurring in any mode.

7.2 Test Procedure
1. Place the EUT on a bench 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 measuring equipment.

7.3 Test Results Conducted output power for worst case :

Worst case mode

XOR WIFI-2.4GHz XOR WIFI-5GHz Regular WIFI-5GHz AUX WIFI-2.4GHz AUX WIFI-5GHz

B Mode, 2437MHz AX40 Mode, 5230MHz AX20 Mode, 5240 MHz
G Mode, 2437MHz A Mode, 5220MHz

Output power dBm 23.89 23.68 23.68 20.11 22.38

***** END OF REPORT *****

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