R2402A0143-R4 MT579 FCC Part15C WIFI 2.4G

A3RD

test report 1

MeiG Smart Technology Co., Ltd MT579 4G Mobile WiFi 2APJ4-MT579 2APJ4MT579 mt579

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RF TEST REPORT

Applicant MeiG Smart Technology Co., Ltd

FCC ID

2APJ4-MT579

Product

4G Mobile WiFi

Brand

MEIGLink

Model

MT579

Report No. R2402A0143-R4

Issue Date July 1, 2024

Eurofins TA Technology (Shanghai) Co., Ltd. tested the above equipment in accordance with the requirements in FCC CFR47 Part 15C (2023). The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report.

Prepared by: Xu Ying

Approved by: Xu Kai

Eurofins TA Technology (Shanghai) Co., Ltd.
Building 3, No.145, Jintang Rd, Pudong Shanghai, P.R.China TEL: +86-021-50791141/2/3
FAX: +86-021-50791141/2/3-8000

RF Test Report

TABLE OF CONTENT

Report No.: R2402A0143-R4

1. Test Laboratory ...............................................................................................................................4 1.1. Notes of the Test Report......................................................................................................... 4 1.2. Test Facility ............................................................................................................................. 4 1.3. Testing Location...................................................................................................................... 4
2. General Description of Equipment Under Test...............................................................................5 2.1. Applicant and Manufacturer Information ................................................................................ 5 2.2. General Information ................................................................................................................ 5
3. Applied Standards...........................................................................................................................6 4. Test Configuration...........................................................................................................................7 5. Test Case Results...........................................................................................................................9
5.1. Maximum output power .......................................................................................................... 9 5.2. 99% Bandwidth and 6dB Bandwidth .................................................................................... 13 5.3. Band Edge ............................................................................................................................ 27 5.4. Power Spectral Density ........................................................................................................ 36 5.5. Spurious RF Conducted Emissions...................................................................................... 61 5.6. Unwanted Emission .............................................................................................................. 75 5.7. Conducted Emission...........................................................................................................109 6. Main Test Instruments.................................................................................................................112 ANNEX A: The EUT Appearance.......................................................................................................113 ANNEX B: Test Setup Photos............................................................................................................114

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RF Test Report

Report No.: R2402A0143-R4

Summary of Measurement Results

Number Test Case

Clause in FCC rules

Verdict

1

Maximum output power

2

99% Bandwidth and 6dB Bandwidth

3

Power spectral density

15.247(b)(3) 15.247(a)(2) C63.10 6.9 15.247(e)

PASS PASS PASS

4

Band Edge

15.247(d)

PASS

5

Spurious RF Conducted Emissions

15.247(d)

PASS

6

Unwanted Emissions

15.247(d), 15.205, 15.209 PASS

7

Conducted Emissions

15.207

PASS

Date of Testing: February 23, 2024 ~ April 10, 2024 Date of Sample Received: February 22, 2024 Note: All indications of Pass/Fail in this report are opinions expressed by Eurofins TA Technology (Shanghai) Co., Ltd. based on interpretations and/or observations of test results. Measurement Uncertainties were not taken into account and are published for informational purposes only.

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RF Test Report
1. Test Laboratory

Report No.: R2402A0143-R4

1.1. Notes of the Test Report
This report shall not be reproduced in full or partial, without the written approval of Eurofins TA Technology (Shanghai) Co., Ltd. The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. Measurement Uncertainties were not taken into account and are published for informational purposes only. This report is written to support regulatory compliance of the applicable standards stated above.
1.2. Test Facility
FCC (Designation number: CN1179, Test Firm Registration Number: 446626) Eurofins TA Technology (Shanghai) Co., Ltd. has been listed on the US Federal Communications Commission list of test facilities recognized to perform measurements. A2LA (Certificate Number: 3857.01) Eurofins TA Technology (Shanghai) Co., Ltd. has been listed by American Association for Laboratory Accreditation to perform measurement.

1.3. Testing Location

Company: Address: City: Post code: Country: Contact: Telephone: Fax: Website: E-mail:

Eurofins TA Technology (Shanghai) Co., Ltd. Building 3, No.145, Jintang Rd, Pudong Shanghai, P.R.China Shanghai 201201 P. R. China Xu Kai +86-021-50791141/2/3 +86-021-50791141/2/3-8000 https://www.eurofins.com/electrical-and-electronics [email protected]

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RF Test Report

Report No.: R2402A0143-R4

2. General Description of Equipment Under Test

2.1. Applicant and Manufacturer Information

Applicant Applicant address Manufacturer Manufacturer address

MeiG Smart Technology Co., Ltd 2nd Floor, Office Building, No.5 Lingxia Road, Fenghuang, Fuyong Street,Bao'an District,Shenzhen MeiG Smart Technology Co., Ltd 2nd Floor, Office Building, No.5 Lingxia Road, Fenghuang, Fuyong Street,Bao'an District,Shenzhen

2.2. General Information

EUT Description

Model

MT579

Lab internal SN

R2402A0143/S01

Hardware Version

MT579_PCB_V1.00

Software Version

MT579-SA_4.0.2_EQ100

Power Supply

Battery / AC adapter

Antenna Type

Internal Antenna

Antenna Connector

A permanently attached antenna (meet with the standard FCC Part 15.203 requirement)

Antenna Gain

Antenna 0: 0.99 dBi Antenna 1: 0.88 dBi

Additional Beamforming Gain NA

Direction Gain

Power: 0.99 dBi PSD: 4.00 dBi

802.11b/g/n(HT20): 2412 ~ 2462 MHz Operating Frequency Range(s)
802.11n(HT40): 2422 ~ 2452 MHz

Modulation Type

802.11b: DSSS 802.11g/n: OFDM

Max. Output Power

15.47dBm

EUT Accessory

Adapter

Manufacturer: Dongguan Sunun Power Co., Ltd Model: SA68-050100U

Battery 1

Manufacturer: Shenzhen Aerospace Electronic Co., Ltd. Model: MG584463

Battery 2

Manufacturer: Zhongshan Tianmao Battery Co.. Ltd Model: MG584463

USB Cable

Manufacturer: Shenzhen Gaohangda Technology Co., LTD Model: /

Note: 1. The EUT is sent from the applicant to Eurofins TA and the information of the EUT is

declared by the applicant.

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RF Test Report

Report No.: R2402A0143-R4

3. Applied Standards

According to the specifications of the manufacturer, it must comply with the requirements of the following standards:

Test standards: FCC CFR47 Part 15C (2023) Radio Frequency Devices ANSI C63.10-2013
Reference standard: KDB 558074 D01 15.247 Meas Guidance v05r02 KDB 662911 D01 Multiple Transmitter Output v02r01

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RF Test Report

Report No.: R2402A0143-R4

4. Test Configuration

Test Mode

The EUT has been associated with peripherals and configuration operated in a manner tended to maximize its emission characteristics in a typical application.

The radiated emission was measured in the following position: EUT stand-up position (Z axis), lie-down position (X, Y axis). The worst emission was found in lie-down position (Y axis) and the loop antenna is vertical, the others are vertical and horizontal. and the worst case was recorded.

In order to find the worst case condition, Pre-tests are needed at the presence of different data rate. Preliminary tests have been done on all the configuration for confirming worst case. Data rate below means worst-case rate of each test item.

Worst-case data rates are shown as following table.

Test Mode

Antenna 0

Data Rate Antenna 1

MIMO

802.11b

1 Mbps

1 Mbps

/

802.11g

6 Mbps

6 Mbps

6 Mbps

802.11n HT20

MCS0

MCS0

MCS8

802.11n HT40

MCS0

MCS0

MCS8

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RF Test Report
The worst case Antenna mode for each of the following tests for Wi-Fi:

Test Cases

Antenna 0 Antenna 1

Maximum output power





6dB Bandwidth

--

802.11b

Band Edge

--

802.11b

Power Spectral Density





Spurious RF Conducted Emissions

--

Unwanted Emissions



802.11b --

Report No.: R2402A0143-R4
MIMO 802.11g 802.11n HT20 802.11n HT40 802.11g 802.11n HT20 802.11n HT40 802.11g 802.11n HT20 802.11n HT40 802.11g 802.11n HT20 802.11n HT40 802.11g 802.11n HT20 802.11n HT40
--

Conducted Emission

802.11b

--

--

Note: "": test all bands

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RF Test Report
5. Test Case Results

Report No.: R2402A0143-R4

5.1. Maximum output power

Ambient Condition

Temperature 15°C ~ 35°C

Relative humidity 20% ~ 80%

Methods of Measurement
During the process of the testing, The EUT was connected to Power meter with a known loss. The EUT is max power transmission with proper modulation.
The conducted Power is measured at each antenna port. The measured results at the various antenna ports are then summed mathematically.

Test Setup

Limits
Rule Part 15.247 (b) (3) specifies that " For systems using digital modulation in the 902­928 MHz, 2400­2483.5 MHz: 1 Watt."

Average Output Power

 1W (30dBm)

Measurement Uncertainty
The assessed measurement uncertainty to ensure 95% confidence level for the normal distribution is with the coverage factor k = 2, U= 0.44 dB.

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RF Test Report
Test Results

Antenna Channel

Antenna 0 Antenna 1

CH1 CH6 CH11 CH1 CH6 CH11

Antenna Channel

Antenna 0 Antenna 1

CH1 CH6 CH11 CH1 CH6 CH11

SISO Antenna Power Index

802.11b

802.11g

802.11n HT20

40

48

47

35

47

46

35

45

45

38

42

43

38

42

42

38

42

41

MIMO Antenna Power Index

802.11b

802.11g

802.11n HT20

/

45

44

/

44

44

/

44

44

/

45

44

/

44

44

/

44

44

Report No.: R2402A0143-R4

Channel
CH3 CH6 CH9 CH3 CH6 CH9

802.11n HT40 44 46 44 42 41 41

Channel
CH3 CH6 CH9 CH3 CH6 CH9

802.11n HT40 44 43 43 44 43 43

Test Mode

Duty cycle

Duty cycle correction Factor (dB)

802.11b

0.98

0.00

802.11g

0.93

0.31

802.11n HT20

0.91

0.42

802.11n HT40

0.88

0.55

Note: when Duty cycle0.98, Duty cycle correction Factor not required.

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RF Test Report
Antenna 0

Report No.: R2402A0143-R4

Test Mode

Carrier frequency (MHz) / Channel

Average Power Average Power

Measured with duty factor

(dBm)

(dBm)

Limit Conclusion
(dBm)

2412/CH 1

14.14

14.14

30

PASS

802.11b

2437/CH 6

13.29

13.29

30

PASS

2462/CH11

13.46

13.46

30

PASS

2412/CH 1

13.06

13.37

30

PASS

802.11g

2437/CH 6

13.10

13.41

30

PASS

2462/CH11

13.01

13.32

30

PASS

802.11n HT20

2412/CH 1 2437/CH 6 2462/CH11

12.78 12.75 12.76

13.20 13.17 13.18

30

PASS

30

PASS

30

PASS

802.11n HT40

2422/CH3 2437/CH6 2452/CH9

11.70 12.46 12.62

12.25 13.01 13.17

30

PASS

30

PASS

30

PASS

Note: Average Power with duty factor = Average Power Measured +Duty cycle correction factor

Antenna 1

Test Mode

Carrier frequency (MHz) / Channel

Average Power Average Power

Measured with duty factor

(dBm)

(dBm)

Limit Conclusion
(dBm)

2412/CH 1

15.36

15.36

30

PASS

802.11b

2437/CH 6

15.16

15.16

30

PASS

2462/CH11

15.34

15.34

30

PASS

2412/CH 1

12.83

13.14

30

PASS

802.11g

2437/CH 6

12.77

13.08

30

PASS

2462/CH11

12.81

13.12

30

PASS

802.11n HT20

2412/CH 1 2437/CH 6 2462/CH11

12.75 12.74 12.72

13.17 13.16 13.14

30

PASS

30

PASS

30

PASS

802.11n HT40

2422/CH3 2437/CH6 2452/CH9

12.72 12.74 12.75

13.27 13.29 13.30

30

PASS

30

PASS

30

PASS

Note: Average Power with duty factor = Average Power Measured +Duty cycle correction factor

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MIMO

RF Test Report

Report No.: R2402A0143-R4

MIMO

MIMO

Test Mode

Carrier frequency
(MHz) / Channel

Antenna 0 Average Average Power Power with Measured duty factor

Antenna 1 Average Average Power Power with Measured duty factor

Total Power (dBm)

Limit (dBm)

Concl usion

(dBm)

(dBm)

(dBm)

(dBm)

2412/CH 1

10.52

10.83

12.91

13.22

15.20

30 PASS

802.11g

2437/CH 6

10.52

10.83

12.83

13.14

15.14

30 PASS

2462/CH11

11.05

11.36

13.04

13.35

15.47

30 PASS

802.11n HT20

2412/CH 1 2437/CH 6 2462/CH11

10.10 10.69 10.84

10.52 11.11 11.26

12.65 13.07 12.77

13.07 13.49 13.19

14.99 15.47 15.34

30 PASS 30 PASS 30 PASS

802.11n HT40

2422/CH3 2437/CH6 2452/CH9

10.24 10.14 10.51

10.79 10.69 11.06

12.67 12.87 12.84

13.22 13.42 13.39

15.18 15.28 15.39

30 PASS 30 PASS 30 PASS

Note: 1.Average Power with duty factor = Average Power Measured +Duty cycle correction factor

2. For Total Power, according to KDB 662911 D01 Multiple Transmitter Output v02r01 1), The Total Power =10log(10(Power antenna0 in dBm/10)+10(Power antenna1 in dBm/10)).

3. According to KDB 662911 D01 Multiple Transmitter Output v02r01 F)2)f)(ii): If antenna gains are not equal, the

user may use either of the following methods to calculate directional gain, provided that each transmit antenna is

driven by only one spatial stream: Directional gain may be calculated by using the formulas applicable to equal gain

antennas with GANT set equal to the gain of the antenna having the highest gain. Directional gain = GANT MAX + Array Gain, For power measurements on IEEE 802.11 devices,

Array Gain = 0 dB (i.e., no array gain) for NANT  4; Array Gain = 0 dB (i.e., no array gain) for channel widths  40 MHz for any NANT; Array Gain = 5 log(NANT/NSS) dB or 3 dB, whichever is less, for 20-MHz channel widths with NANT  5. So directional gain = GANT MAX + Array Gain =0.99+0=0.99 dBi<6dBi. So the power limit is 30dBm

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RF Test Report
5.2. 99% Bandwidth and 6dB Bandwidth
Ambient Condition Temperature 15°C ~ 35°C

Report No.: R2402A0143-R4
Relative humidity 20% ~ 80%

Method of Measurement
The EUT was connected to the spectrum analyzer through an external attenuator (20dB) and a known loss cable. RBW is set to 100 kHz; VBW is set to 300 kHz on spectrum analyzer. Dector=Peak, Trace mode=max hold.
The EUT was connected to the spectrum analyzer through a known loss cable. The resolution bandwidth (RBW) shall be in the range of 1% to 5% of the actual occupied / x dB bandwidth and the video bandwidth (VBW) shall not be smaller than three times the RBW value.
Test Setup

Limits
Rule Part 15.247 (a) (2) specifies that "Systems using digital modulation techniques may operate in the 902­928 MHz, 2400­2483.5 MHz bands. The minimum 6 dB bandwidth shall be at least 500 kHz."

minimum 6 dB bandwidth

 500 kHz

Measurement Uncertainty
The assessed measurement uncertainty to ensure 95% confidence level for the normal distribution is with the coverage factor k = 2, U= 936 Hz.

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RF Test Report
Test Results:

Report No.: R2402A0143-R4

Test Mode
802.11b
802.11g
802.11n HT20
802.11n HT40

Carrier frequency (MHz)
2412 2437 2462 2412 2437 2462 2412 2437 2462 2422 2437 2452

99% bandwidth
(MHz)
15.103

Minimum 6 dB bandwidth (MHz)
9.097

15.546

10.040

15.616

10.054

16.620

16.156

16.786

16.357

16.795

16.316

17.772

16.922

17.864

17.180

17.918

16.706

35.893

35.243

36.000

35.326

35.836

35.223

Limit (kHz)
500 500 500 500 500 500 500 500 500 500 500 500

Conclusion
PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS PASS

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RF Test Report
99%bandwidth

OBW 802.11b 2412MHz

Report No.: R2402A0143-R4

OBW 802.11b 2437MHz

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RF Test Report

OBW 802.11b 2462MHz

Report No.: R2402A0143-R4

OBW 802.11g 2412MHz

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RF Test Report

OBW 802.11g 2437MHz

Report No.: R2402A0143-R4

OBW 802.11g 2462MHz

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RF Test Report

OBW 802.11n(HT20) 2412MHz

Report No.: R2402A0143-R4

OBW 802.11n(HT20) 2437MHz

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RF Test Report

OBW 802.11n(HT20) 2462MHz

Report No.: R2402A0143-R4

OBW 802.11n(HT40) 2422MHz

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RF Test Report

OBW 802.11n(HT40) 2437MHz

Report No.: R2402A0143-R4

OBW 802.11n(HT40) 2452MHz

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RF Test Report
6 dB bandwidth

-6dB Bandwidth 802.11b 2412MHz

Report No.: R2402A0143-R4

-6dB Bandwidth 802.11b 2437MHz

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RF Test Report

-6dB Bandwidth 802.11b 2462MHz

Report No.: R2402A0143-R4

-6dB Bandwidth 802.11g 2412MHz

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RF Test Report

-6dB Bandwidth 802.11g 2437MHz

Report No.: R2402A0143-R4

-6dB Bandwidth 802.11g 2462MHz

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RF Test Report

Report No.: R2402A0143-R4
-6dB Bandwidth 802.11n(HT20) 2412MHz

-6dB Bandwidth 802.11n(HT20) 2437MHz

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RF Test Report

Report No.: R2402A0143-R4
-6dB Bandwidth 802.11n(HT20) 2462MHz

-6dB Bandwidth 802.11n(HT40) 2422MHz

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RF Test Report

Report No.: R2402A0143-R4
-6dB Bandwidth 802.11n(HT40) 2437MHz

-6dB Bandwidth 802.11n(HT40) 2452MHz

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RF Test Report
5.3. Band Edge
Ambient Condition Temperature 15°C ~ 35°C

Report No.: R2402A0143-R4
Relative humidity 20% ~ 80%

Method of Measurement The EUT was connected to the spectrum analyzer through an external attenuator (20dB) and a known loss cable the band edge of the lowest and highest channels were measured. The peak detector is used and RBW is set to 100 kHz and VBW is set to 300 kHz on spectrum analyzer. Spectrum analyzer plots are included on the following pages.
Test Setup

Limits

Rule Part 15.247(d) specifies that "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 paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 dB instead of 20 dB."

Measurement Uncertainty

The assessed measurement uncertainty to ensure 95% confidence level for the normal distribution is with the coverage factor k = 1.96.

Frequency

Uncertainty

2GHz-3GHz

1.407 dB

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RF Test Report
Test Results: PASS

Band Edge 802.11b 2412MHz Ref

Report No.: R2402A0143-R4

Band Edge 802.11b 2412MHz Emission

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RF Test Report

Band Edge 802.11b 2462MHz Ref

Report No.: R2402A0143-R4

Band Edge 802.11b 2462MHz Emission

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RF Test Report

Band Edge 802.11g 2412MHz Ref

Report No.: R2402A0143-R4

Band Edge 802.11g 2412MHz Emission

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RF Test Report

Band Edge 802.11g 2462MHz Ref

Report No.: R2402A0143-R4

Band Edge 802.11g 2462MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Band Edge 802.11n(HT20) 2412MHz Ref

Band Edge 802.11n(HT20) 2412MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Band Edge 802.11n(HT20) 2462MHz Ref

Band Edge 802.11n(HT20) 2462MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Band Edge 802.11n(HT40) 2422MHz Ref

Band Edge 802.11n(HT40) 2422MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Band Edge 802.11n(HT40) 2452MHz Ref

Band Edge 802.11n(HT40) 2452MHz Emission

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RF Test Report
5.4. Power Spectral Density
Ambient Condition Temperature 15°C ~ 35°C

Report No.: R2402A0143-R4
Relative humidity 20% ~ 80%

Method of Measurement
During the process of the testing, The EUT was connected to Spectrum Analyzer with a known loss. The EUT is max power transmission with proper modulation. Method AVGPSD-1 was used for this test. a) Set instrument center frequency to DTS channel center frequency b) Set span to at least 1.5 times the OBW c) Set RBW to:3kHzRBW100kHz d) Set VBW[3x RBW] e) Detector=power averaging (rms) or sample detector (when rms not available) f) Ensure that the number of measurement points in the sweep  [2 X span/RBW] g) Sweep time auto couple h) Employ trace averaging (rms) mode over a minimum of 100 traces i) Use the peak marker function to determine the maximum amplitude level. j) If the measured value exceeds requirement, then reduce RBW (but no less than 3 kHz) and repeat (note that this may require zooming in on the emission of interest and reducing the span to meet the minimum measurement point requirement as the RBW is reduced)
Method AVGPSD-2 was used for this test. a) Measure the duty cycle (D)of the transmitter output signal as described in 11.6 b) Set instrument center frequency to DTS channel center frequency c) Set span to at least 1.5 times the OBW d) Set RBW to:3kHzRBW100kHz e) Set VBW[3x RBW] f ) Detector= power averaging (rms) or sample detector (when rms not available) g) Ensure that the number of measurement points in the sweep  [2 X span/RBW] h) Sweep time =auto couple i) Do not use sweep triggering; allow sweep to "free run" j) Employ trace averaging (rms) mode over a minimum of 100 traces k) Use the peak marker function to determine the maximum amplitude level

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RF Test Report

Report No.: R2402A0143-R4

l) Add [10 log(1/ D)], where D is the duty cycle measured in step a), to the measured PSD to compute

the average PSD during the actual transmission time

m) If measured value exceeds requirement specified by regulatory agency then reduce RBW (but no

less than 3 kHz) and repeat (note that this may require zooming in on the emission of interest and

reducing the span to meet the minimum measurement point requirement as the RBW is reduced)

The conducted Power is measured at each antenna port. The measured results at the various antenna ports are then summed mathematically.
Test setup

Limits
Rule Part 15.247(e) specifies that" For digitally modulated systems, the power spectral density conducted from the intentional radiator to the antenna shall not be greater than 8 dBm in any 3 kHz band during any time interval of continuous transmission. `'

Limits

 8 dBm / 3kHz

Measurement Uncertainty
The assessed measurement uncertainty to ensure 95% confidence level for the normal distribution is with the coverage factor k = 2, U= 0.75dB.

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RF Test Report
Test Results: Antenna 0

Report No.: R2402A0143-R4

Test Mode

Power Spectral

Carrier frequency Read Value

Limit

Density

Conclusion

(MHz)/ Channel (dBm / 30kHz)

(dBm / 3kHz)

(dBm / 3kHz)

2412/CH 1

-8.73

-18.73

8

PASS

802.11b

2437/CH 6

-8.81

-18.81

8

PASS

2462/CH11

-8.57

-18.57

8

PASS

2412/CH 1

-11.10

-20.79

8

PASS

802.11g

2437/CH 6

-10.73

-20.42

8

PASS

2462/CH11

-10.69

-20.38

8

PASS

802.11n HT20

2412/CH 1 2437/CH 6 2462/CH11

-11.85 -11.05 -11.10

-21.43 -20.63 -20.68

8

PASS

8

PASS

8

PASS

802.11n HT40

2422/CH3 2437/CH6 2452/CH9

-14.41 -13.65 -13.17

-23.86 -23.10 -22.62

8

PASS

8

PASS

8

PASS

Note: Power Spectral Density (dBm/3kHz) =Read Value+Duty cycle correction factor +

10*log10(3/30)

Antenna 1

Test Mode

Power Spectral

Carrier frequency Read Value

Limit

Density

Conclusion

(MHz)/ Channel (dBm / 30kHz)

(dBm / 3kHz)

(dBm / 3kHz)

2412/CH 1

-6.61

-16.61

8

PASS

802.11b

2437/CH 6

-7.01

-17.01

8

PASS

2462/CH11

-7.17

-17.17

8

PASS

2412/CH 1

-11.16

-20.85

8

PASS

802.11g

2437/CH 6

-11.14

-20.83

8

PASS

2462/CH11

-10.51

-20.20

8

PASS

802.11n HT20

2412/CH 1 2437/CH 6 2462/CH11

-11.06 -10.72 -10.99

-20.64 -20.30 -20.57

8

PASS

8

PASS

8

PASS

802.11n HT40

2422/CH3 2437/CH6 2452/CH9

-13.74 -12.47 -13.69

-23.19 -21.92 -23.14

8

PASS

8

PASS

8

PASS

Note: Power Spectral Density (dBm/3kHz) =Read Value+Duty cycle correction factor +

10*log10(3/30)

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RF Test Report

Report No.: R2402A0143-R4

MIMO

Power Spectral Density

Test Mode

Carrier frequency
(MHz)/ Channel

Antenna 0

Read Value (dBm / 30kHz)

Power Spectral Density (dBm /
3kHz)

2412/CH 1 -13.91 -23.60

Antenna 1

Read Value (dBm / 30kHz)

Power Spectral Density (dBm /
3kHz)

-11.29 -20.98

Total PSD Limit (dBm / (dBm / Conclusion 3kHz) 3kHz)
-19.09 8 PASS

802.11g 2437/CH 6 -12.93 -22.62 -10.70 -20.39 -18.35 8 PASS

2462/CH11 -12.03 -21.72 -11.38 -21.07 -18.37 8 PASS

2412/CH 1 -13.99 -23.57 -11.21 -20.79 -18.95 8 PASS
802.11n
2437/CH 6 -13.05 -22.63 -10.96 -20.54 -18.45 8 PASS
HT20
2462/CH11 -12.68 -22.26 -11.46 -21.04 -18.60 8 PASS

2422/CH3 -14.99 -24.44 -13.39 -22.84 -20.56 8 PASS
802.11n
2437/CH6 -16.20 -25.65 -13.22 -22.67 -20.90 8 PASS
HT40
2452/CH9 -16.02 -25.47 -13.79 -23.24 -21.20 8 PASS
Note: 1. Power Spectral Density (dBm/3kHz) =Read Value+Duty cycle correction factor + 10*log10(3 / 30) 2. For Total PSD, according to KDB 662911 D01 Multiple Transmitter Output v02r01 2)a),the power spectral density=10log(10(PSD antenna0 in dBm/10)+10(PSD antenna1 in dBm/10)) 3. According to KDB 662911 D01 Multiple Transmitter Output v02r01 F)2)f)(ii): If antenna gains are not equal, the user may use either of the following methods to calculate directional gain, provided that each transmit antenna is driven by only one spatial stream: Directional gain may be calculated by using the formulas applicable to equal gain antennas with GANT set equal to the gain of the antenna having the highest gain. Directional gain = GANT MAX + Array Gain. For PSD measurements on all devices, Array Gain=10log(Nant/Nss)dB, so directional gain=GANT MAX+Array Gain=0.99+10log(2/1)=4.0<6dBi. So the PSD limit is 8dBm

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RF Test Report
Antenna 0

PSD 802.11b 2412MHz

Report No.: R2402A0143-R4

PSD 802.11b 2437MHz

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RF Test Report

PSD 802.11b 2462MHz

Report No.: R2402A0143-R4

PSD 802.11g 2412MHz

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RF Test Report

PSD 802.11g 2437MHz

Report No.: R2402A0143-R4

PSD 802.11g 2462MHz

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RF Test Report

PSD 802.11n(HT20) 2412MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT20) 2437MHz

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RF Test Report

PSD 802.11n(HT20) 2462MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT40) 2422MHz

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RF Test Report

PSD 802.11n(HT40) 2437MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT40) 2452MHz

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RF Test Report
Antenna 1

PSD 802.11b 2412MHz

Report No.: R2402A0143-R4

PSD 802.11b 2437MHz

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RF Test Report

PSD 802.11b 2462MHz

Report No.: R2402A0143-R4

PSD 802.11g 2412MHz

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RF Test Report

PSD 802.11g 2437MHz

Report No.: R2402A0143-R4

PSD 802.11g 2462MHz

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RF Test Report

PSD 802.11n(HT20) 2412MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT20) 2437MHz

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RF Test Report

PSD 802.11n(HT20) 2462MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT40) 2422MHz

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RF Test Report

PSD 802.11n(HT40) 2437MHz

Report No.: R2402A0143-R4

PSD 802.11n(HT40) 2452MHz

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MIMO

RF Test Report

PSD 802.11g 2412MHz Ant0

Report No.: R2402A0143-R4

PSD 802.11g 2412MHz Ant1

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RF Test Report

PSD 802.11g 2437MHz Ant0

Report No.: R2402A0143-R4

PSD 802.11g 2437MHz Ant1

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RF Test Report

PSD 802.11g 2462MHz Ant0

Report No.: R2402A0143-R4

PSD 802.11g 2462MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT20) 2412MHz Ant0

PSD 802.11n(HT20) 2412MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT20) 2437MHz Ant0

PSD 802.11n(HT20) 2437MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT20) 2462MHz Ant0

PSD 802.11n(HT20) 2462MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT40) 2422MHz Ant0

PSD 802.11n(HT40) 2422MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT40) 2437MHz Ant0

PSD 802.11n(HT40) 2437MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4
PSD 802.11n(HT40) 2452MHz Ant0

PSD 802.11n(HT40) 2452MHz Ant1

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RF Test Report

Report No.: R2402A0143-R4

5.5. Spurious RF Conducted Emissions

Ambient Condition

Temperature 15°C ~ 35°C

Relative humidity 20% ~ 80%

Method of Measurement
The EUT was connected to the spectrum analyzer with a known loss. The spectrum analyzer scans from 30MHz to the 10th harmonic of the carrier. The peak detector is used. Set RBW to 100 kHz and VBW to 300 kHz, Sweep is set to AUTO. The test is in transmitting mode.
Test Setup

Limits Rule Part 15.247(d) pacifies that "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 paragraph (b)(3) of this section, the attenuation required under this paragraph shall be 30 dB instead of 20 dB. "

Test Mode
802.11b
802.11g
802.11n HT20
802.11n HT40

Carrier frequency (MHz) 2412 2437 2462 2412 2437 2462 2412 2437 2462 2422 2437 2452

Reference value (dBm)
5.95 5.97 2.07 -0.32 0.34 -0.31 5.95 5.97 2.07 -0.32 0.34 -0.31

Limit
-24.05 -24.03 -27.93 -30.32 -29.66 -30.31 -24.05 -24.03 -27.93 -30.32 -29.66 -30.31

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RF Test Report
Measurement Uncertainty

Report No.: R2402A0143-R4

The assessed measurement uncertainty to ensure 95% confidence level for the normal distribution is with the coverage factor k = 1.96.

Frequency

Uncertainty

100kHz-2GHz

0.684 dB

2GHz-26GHz

1.407 dB

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RF Test Report
Test Results:

Report No.: R2402A0143-R4
Tx. Spurious 802.11b 2412MHz Ref

Tx. Spurious 802.11b 2412MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11b 2437MHz Ref

Tx. Spurious 802.11b 2437MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11b 2462MHz Ref

Tx. Spurious 802.11b 2462MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11g 2412MHz Ref

Tx. Spurious 802.11g 2412MHz Emission

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TA-MB-04-005R

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11g 2437MHz Ref

Tx. Spurious 802.11g 2437MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11g 2462MHz Ref

Tx. Spurious 802.11g 2462MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT20) 2412MHz Ref

Tx. Spurious 802.11n(HT20) 2412MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT20) 2437MHz Ref

Tx. Spurious 802.11n(HT20) 2437MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT20) 2462MHz Ref

Tx. Spurious 802.11n(HT20) 2462MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT40) 2422MHz Ref

Tx. Spurious 802.11n(HT40) 2422MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT40) 2437MHz Ref

Tx. Spurious 802.11n(HT40) 2437MHz Emission

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RF Test Report

Report No.: R2402A0143-R4
Tx. Spurious 802.11n(HT40) 2452MHz Ref

Tx. Spurious 802.11n(HT40) 2452MHz Emission

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