HD 271 S1

LAB02

FCC 15B Test Report

COOSEA GROUP (HK) COMPANY LIMITED SN339D Smart Phone 2A28USN339D 2A28USN339D sn339d

COOSEA GROUP (HK) COMPANY LIMITED SN339D 2A28USN339D 2A28USN339D sn339d

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Report No.: SUCR240500016206

Rev.:

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Page:

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TEST REPORT

Application No:

SUCR2405000162WM

Applicant:

COOSEA GROUP (HK) COMPANY LIMITED

Address of Applicant:

UNIT 5-6 16/F MULTIFIELD PLAZA 3-7A PRAT AVENUE TSIMSHATSUI KL

Manufacturer:

COOSEA GROUP (HK) COMPANY LIMITED

Address of Manufacturer: UNIT 5-6 16/F MULTIFIELD PLAZA 3-7A PRAT AVENUE TSIMSHATSUI KL

EUT Description:

Smart Phone

Model No.:

SN339D-SMT

FCC ID:

2A28USN339D

Standard(s):

FCC 47 CFR Part 15, Subpart B

Date of Receipt:

2024/05/21

Date of Test:

2024/05/30 to 2024/05/30

Date of Issue:

2024/06/03

Test Result:

Pass*

* In the configuration tested, the EUT complied with the standards specified above.

Authorized Signature:
Well Wei Wireless Laboratory Manager

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Version 01

Chapter

Revision Record Date
2024/06/03

Report No.: SUCR240500016206

Rev.:

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Modifier

Remark Original

Prepared By Checked By

(King-p Li) / Test Engineer (Stone Gu) / Reviewer

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Test Summary

Emission Part

Item

Standard

Conducted Emissions at Mains Terminals FCC 47 CFR Part 15, Subpart B (150kHz-30MHz)

Radiated Emissions (30MHz-1GHz)

FCC 47 CFR Part 15, Subpart B

Radiated Emissions (above 1GHz)

FCC 47 CFR Part 15, Subpart B

Method ANSI C63.4:2014 ANSI C63.4:2014 ANSI C63.4:2014

Requirement Result

Class B

Pass

Class B Class B

Pass Pass

Internal Source Below 1.705MHz 1.705MHz to 108MHz 108MHz to 500MHz 500MHz to 1GHz
Above 1GHz

Upper Frequency 30MHz 1GHz 2GHz 5GHz
5th harmonic of the highest frequency or 40GHz, whichever is lower

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Report No.: SUCR240500016206

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Contents
1 General Information ......................................................................................................5
1.1 Description of Support Units ..................................................................................7 1.2 Test Location .........................................................................................................7 1.3 Test Facility ...........................................................................................................7 1.4 Deviation from Standards ......................................................................................7 1.5 Abnormalities from Standard Conditions ...............................................................7
2 Emission Test Results ..................................................................................................8
2.1 Conducted Emissions at Mains Terminals (150kHz-30MHz).................................8 2.1.1 E.U.T. Operation ................................................................................................8 2.1.2 Test Setup Procedures ......................................................................................9 2.1.3 Measurement Data ............................................................................................9
2.2 Radiated Emissions (30MHz-1GHz)....................................................................14 2.2.1 E.U.T. Operation ..............................................................................................14 2.2.2 Test Setup Procedures ....................................................................................16 2.2.3 Measurement Data ..........................................................................................16
2.3 Radiated Emissions (above 1GHz)......................................................................21 2.3.1 E.U.T. Operation ..............................................................................................21 2.3.2 Test Setup Procedures ....................................................................................23 2.3.3 Measurement Data ..........................................................................................23
3 Equipment List............................................................................................................26

4 Measurement Uncertainty...........................................................................................28

5 Photographs ...............................................................................................................29 5.1 Test Setup ...........................................................................................................29

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

1 General Information

Product Name: Model No. (EUT): Hardware Version: Software Version: IMEI:
Frequency Bands:

Smart Phone SN339D-SMT 1.0 SN339DD20001 354780960003001
Band GSM850 GSM1900 WCDMA Band II WCDMA Band V LTE Band 2 LTE Band 4 LTE Band 5 LTE Band 12 LTE Band 14 LTE Band 17 LTE Band 26 (814 to 824 MHz) LTE Band 26 (824 to 849 MHz) LTE Band 30 LTE Band 48 LTE Band 66 LTE Band 71 NR Band n2 NR Band n5 NR Band n25 NR Band 26 (814 to 824 MHz) NR Band 26 (824 to 849 MHz) NR Band n30 NR Band n41

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Tx (MHz) 824~849 1850~1910 1850~1910 824~849 1850~1910 1710~1755 824~849 699~716 788~798 704~716
814~824
824~849
2305~2315 3550~3700 1710~1780
663~698 1850~1910
824~849 1850~1915
814~824
824~849
2305~2315 2496~2690

Rx (MHz) 869~894 1930~1990 1930~1990 869~894 1930~1990 2110~2155 869~894 729~746 746~756 734~746
859~869
869~894
2350~2360 3550~3700 2110~2200
617~652 1930~1990
869~894 1930~1995
859~869
869~894
2350~2360 2496~2690

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NR Band n48

3550~3700

3550~3700

NR Band n66

1710~1780

2110~2200

NR Band n70

1695~1710

1995~2020

NR Band n71

663~698

617~652

NR Band n77

3450-3550 3700-3980

3450-3550 3700-3980

LTE UL CA: UL CA_2A-12A;UL CA_12A-66A;UL CA_4A-12A;UL CA_2A-5A; UL CA_2A-14A;UL CA_5A-66A NR ENDC: DC_2A_n2A; DC_5A_n2A; DC_12A_n2A; DC_66A_n2A; DC_14A_n2A; DC_30A_n2A;DC_2A_n5A;DC_66A_n5A;DC_30A_n5A;DC_2A_n41A; DC_66A_n41A;DC_2A_n66A;DC_12A_n66A;DC_14A_n66A;DC_30A_n66A; DC_66A_n66A;DC_2A_n71A;DC_66A_n71A;DC_2A_n77A; DC_66A_n77A; DC_25A_n77A;DC_5A_n77A;DC_12A_n77A;DC_14A_n77A; DC_30A_n77A; DC_12A_n25A;DC_66A_n25A;

Wi-Fi 2.4G

2412~2462

2412~2462

Bluetooth

2402~2480

2402~2480

Wi-Fi 5G

5150~5850

5150~5850

GNSS(Beidou

B1i/Galileo

E1/Glonass G1/GPS

/

L1C/A L1C/SBAS

L1)

1559~1610

Remark: As above information is provided and confirmed by the applicant. SGS is not liable to the accuracy, suitability, reliability or/and integrity of the information.

Accessory:

Adapter

Model No.

Power Adapter UT-681A-5200A1Y

Specification ShenZhen Baijunda Electronic Co.,Ltd

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1.1 Description of Support Units

Description Router
Computer Earphones

Manufacturer Smavwave Technology
Co.,Ltd Lenovo
oppo

Model No. SRT 421 T14
oppo Earphones

Inventory No. SUWI-04-34-01 SUWI-03-33-04
N/A

1.2 Test Location
All tests were performed at: Company:
Address:
Post code:

SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.
South of No. 6 Plant, No. 1, Runsheng Road, Suzhou Industrial Park, Suzhou Area, China (Jiangsu) Pilot Free Trade Zone
215000

Test engineer:

King-p Li

1.3 Test Facility
The test facility is recognized, certified, or accredited by the following organizations:

· A2LA (Certificate No. 6336.01) SGS-CSTC STANDARDS TECHNICAL SERVICES (SUZHOU) CO., LTD. is accredited by the American Association for Laboratory Accreditation(A2LA). Certificate No. 6336.01. · Innovation, Science and Economic Development Canada SGS-CSTC STANDARDS TECHNICAL SERVICES (SUZHOU) CO., LTD. has been recognized by ISED as an accredited testing laboratory. CAB identifier: CN0120. IC#: 27594. · FCC ­Designation Number: CN1312 SGS-CSTC STANDARDS TECHNICAL SERVICES (SUZHOU) CO., LTD. has been recognized as an accredited testing laboratory. Designation Number: CN1312. Test Firm Registration Number: 717327

1.4 Deviation from Standards
None
1.5 Abnormalities from Standard Conditions
None

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2 Emission Test Results

2.1 Conducted Emissions at Mains Terminals (150kHz-30MHz)

Test Requirement:

47 CFR Part 15, Subpart B

Test Method:

ANSI C63.4:2014

Frequency Range:

150kHz to 30MHz

Receiver Setup:

RBW = 9kHz, VBW = 30kHz

Frequency Range (MHz)

Limit(dBV)

Quasi-peak

average

0.15M-0.5MHz

66 ~ 56*

56 ~ 46*

Limit:

0.5M-5MHz

56

46

5M-30MHz

60

50

*Decreases with the logarithm of the frequency

Detector: Peak for pre-scan (9kHz resolution bandwidth) 0.15M to 30MHz

2.1.1 E.U.T. Operation

Operating Environment:

Temperature:

22~23C

Humidity:

44~46%RH

Atmospheric Pressure: 101kPa

a: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+GSM850 (RX) Low

b: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+WCDMA Band 5(RX) Mid

c: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+MP4+LTE Band 5 (RX) High

Pretest these modes to find the worst case:

d: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+GNSS+LTE Band 12 (RX) Low
e: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 14 (RX) Mid

f: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 17 (RX) High
g: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 26 (RX) Low
h: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 71 (RX) Mid

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i: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+SA Band 5 (RX) High

j: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+SA Band 26 (RX) Low

k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)

L.adapter+usb Cable +BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+LTE Band 5 (RX) High

The worst case for final test:

g: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 26 (RX) Low
k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)

2.1.2 Test Setup Procedures

1. The EUT was placed 0.4 meter from the conducting wall of the shielding room was kept at least 80 centimeters from any other grounded conducting surface. 2. Connect EUT to the power mains through a line impedance stabilization network (LISN). 3. All the support units are connecting to the other LISN. 4. The LISN provides 50 ohm coupling impedance for the measuring instrument. 5. The FCC states that a 50 ohm, 50 microhenry LISN should be used. 6. Both sides of AC line were checked for maximum conducted interference. 7. The frequency range from 150 kHz to 30 MHz was searched. 8. Set the test-receiver system to Peak Detect Function and specified bandwidth (IF Bandwidth = 9kHz) with Maximum Hold Mode. Then measurement is also conducted by Average Detector and Quasi-Peak Detector Function respectively.

2.1.3 Measurement Data
An initial pre-scan was performed with peak detector. Quasi-Peak or Average measurement were performed at the frequencies with maximized peak emission were detected.

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Test on the worst case:

Final Test Mode:

Mode g

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Phase:

Line

Data List

NO.

Frequency [MHz]

Factor [dB]

QP Reading [dBV]

QP Value [dBV]

QP Limit [dBV]

QP Margin
[dB]

AV Reading [dBV]

AV Value [dBV]

AV Limit [dBV]

AV Margin
[dB]

Verdict

1

0.2445

10.91

34.65

45.56 61.94 16.38

23.41

34.32 51.94

2

0.2715

10.85

34.18

45.03 61.07 16.04

25.81

36.66 51.07

3

0.4650

10.73

34.35

45.08 56.60 11.52

25.00

35.73 46.60

4

0.5955

10.75

33.92

44.67 56.00 11.33

16.16

26.91 46.00

5

0.6765

10.78

32.99

43.77 56.00 12.23

14.94

25.72 46.00

6

1.1490

10.76

30.01

40.77 56.00 15.23

13.95

24.71 46.00

Remark:

1. The following Quasi-Peak and Average measurements were performed on the EUT:

2. Value =Reading[dBV] + Factor(Lisn factor[dB] + cable loss[dB]).

3. Margin = Limit[dBV] ­ Value[dBV]

17.62 14.41 10.87 19.09 20.28 21.29

PASS PASS PASS PASS PASS PASS

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode g

Phase:

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Neutral

Data List

NO.

Frequency [MHz]

Factor [dB]

QP Reading [dBV]

QP Value [dBV]

QP Limit [dBV]

QP Margin
[dB]

AV Reading [dBV]

AV Value [dBV]

AV Limit [dBV]

AV Margin
[dB]

Verdict

1

0.2445

10.83

35.07

45.90 61.94 16.04

23.49

34.32 51.94

2

0.4695

10.66

33.77

44.43 56.52 12.09

26.03

36.69 46.52

3

0.5145

10.66

32.52

43.18 56.00 12.82

19.52

30.18 46.00

4

0.5910

10.66

35.10

45.76 56.00 10.24

19.37

30.03 46.00

5

0.6720

10.67

33.34

44.01 56.00 11.99

16.71

27.38 46.00

6

0.8115

10.66

31.00

41.66 56.00 14.34

15.61

26.27 46.00

Remark:

1. The following Quasi-Peak and Average measurements were performed on the EUT:

2. Value =Reading[dBV] + Factor(Lisn factor[dB] + cable loss[dB]).

3. Margin = Limit[dBV] ­ Value[dBV]

17.62 9.83 15.82 15.97 18.62 19.73

PASS PASS PASS PASS PASS PASS

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode k

Phase:

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Line

Data List

NO.

Frequency [MHz]

Factor [dB]

QP Reading [dBV]

QP Value [dBV]

QP Limit [dBV]

QP Margin
[dB]

AV Reading [dBV]

AV Value [dBV]

AV Limit [dBV]

AV Margin
[dB]

Verdict

1

0.2400

10.92

34.48

45.40 62.10 16.70

25.09

36.01 52.10

2

0.3840

10.75

32.53

43.28 58.19 14.91

19.43

30.18 48.19

3

0.4830

10.72

31.72

42.44 56.29 13.85

21.12

31.84 46.29

4

0.5235

10.72

31.54

42.26 56.00 13.74

16.07

26.79 46.00

5

0.6135

10.76

33.08

43.84 56.00 12.16

14.90

25.66 46.00

6

0.6765

10.78

33.46

44.24 56.00 11.76

15.22

26.00 46.00

Remark:

1. The following Quasi-Peak and Average measurements were performed on the EUT:

2. Value =Reading[dBV] + Factor(Lisn factor[dB] + cable loss[dB]).

3. Margin = Limit[dBV] ­ Value[dBV]

16.09 18.01 14.45 19.21 20.34 20.00

PASS PASS PASS PASS PASS PASS

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode k

Phase:

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Neutral

Data List

NO.

Frequency [MHz]

Factor [dB]

QP Reading [dBV]

QP Value [dBV]

QP Limit [dBV]

QP Margin
[dB]

AV Reading [dBV]

AV Value [dBV]

AV Limit [dBV]

AV Margin
[dB]

Verdict

1

0.3840

10.67

32.34

43.01 58.19 15.18

19.89

30.56 48.19

2

0.4650

10.66

34.67

45.33 56.60 11.27

25.11

35.77 46.60

3

0.5730

10.66

33.03

43.69 56.00 12.31

15.63

26.29 46.00

4

0.6585

10.67

33.14

43.81 56.00 12.19

16.67

27.34 46.00

5

0.7575

10.65

32.21

42.86 56.00 13.14

15.73

26.38 46.00

6

0.8025

10.66

31.36

42.02 56.00 13.98

15.70

26.36 46.00

Remark:

1. The following Quasi-Peak and Average measurements were performed on the EUT:

2. Value =Reading[dBV] + Factor(Lisn factor[dB] + cable loss[dB]).

3. Margin = Limit[dBV] ­ Value[dBV]

17.63 10.83 19.71 18.66 19.62 19.64

PASS PASS PASS PASS PASS PASS

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2.2 Radiated Emissions (30MHz-1GHz)

Test Requirement:

47 CFR Part 15, Subpart B

Test Method:

ANSI C63.4:2014

Frequency Range:

30MHz to 1GHz

Measurement Distance: 3m

Frequency Range (MHz)

Limit(dBV/m)

Detector

30MHz -88MHz

40.0

Quasi-peak

Limit:

88MHz-216MHz

43.5

Quasi-peak

216MHz-960MHz

46.0

Quasi-peak

960MHz-1000MHz

54.0

Quasi-peak

Detector:

Peak for pre-scan (120kHz resolution bandwidth) 30M to1000MHz

2.2.1 E.U.T. Operation

Temperature:

22~23C

Humidity:

44~46%RH

Atmospheric Pressure: 101kPa

a: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+GSM850 (RX) Low

b: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+WCDMA Band 5(RX) Mid
c: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+MP4+LTE Band 5 (RX) High
d: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+GNSS+LTE Band 12 (RX) Low

Pretest these modes to find the worst case:

e: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 14 (RX) Mid

f: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 17 (RX) High

g: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 26 (RX) Low

h: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 71 (RX) Mid

i: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+SA Band 5 (RX) High

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The worst case for final test:

j: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+SA Band 26 (RX) Low
k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)
L.adapter+usb Cable
+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+LTE Band 5 (RX) High
g: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 26 (RX) Low
k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)

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2.2.2 Test Setup Procedures
1. The EUT was placed in a semi Anechoic Chamber as show below 2. The EUT was set 3 meters from the interference receiving antenna, which was mounted on the top of a variable height antenna tower. 3. The table was rotated 360 degrees to determine the position of the highest radiation. 4. The antenna height is adjusted between 1 to 4 meters above ground to find the maximum value of the field strength for both horizontal polarization and vertical polarization of the antenna. 5. For each suspected emission, the EUT was arranged to its worst case and then tune the antenna tower (from 1 m to 4 m) and turntable (from 0 degree to 360 degrees) to find the maximum reading. 6. Set the test-receiver system to Peak Detect Function with specified bandwidth with Maximum Hold Mode, and the trace was allowed to stabilize.
7. If the emission level of the EUT in peak mode was 6 dB lower than the limit specified, peak values of EUT will be reported. Otherwise, the emission will be repeated by using the quasi-peak method and reported.

2.2.3 Measurement Data
An initial pre-scan was performed in the chamber using the spectrum analyser in peak detection mode. Quasi-peak measurements were conducted based on the peak sweep graph. The EUT was measured by BiConiLog antenna with 2 orthogonal polarities. The three polarities of X,Y,Z were measured by EUT, but only the worst data had been displayed.

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Test on the worst case:

Final Test Mode:

Mode g

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Polarization:

Horizontal

Data List

NO. Frequency [MHz]

Reading [dBV]

AF [dB/m]

Factor [dB]

QP Value [dBV/m]

1

33.1525

36.58

18.40 -34.01

20.98

2

43.095

32.48

19.38 -33.99

17.87

3

48.915

39.58

18.98 -33.98

24.57

4

60.3125

33.92

18.56 -33.86

18.62

5

66.1325

29.69

17.74 -33.79

13.65

6

79.47

38.49

15.59 -33.66

20.42

7*

878.9925

50.81

29.71 -29.39

51.13

Remark: 1. The Quasi-Peak measurements were performed on the EUT. 2. Value = Reading + AF + Factor:
AF = Antenna Factor(dB/m) Factor = Cable Factor(dB) - Preamplifier (dB) Margin = Limit[dBV/m] ­Value[dBV/m] 3.#7:30M-1G is system simulator signal which can be ignored

QP Limit [dBV/m]
40.00 40.00 40.00 40.00 40.00 40.00
-

QP Margin
[dB] 19.02 22.13 15.43 21.38 26.35
19.58
-

Polarity
Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode g

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Polarization:

Vertical

Data List

NO. Frequency [MHz]

Reading [dBV]

AF [dB/m]

Factor [dB]

QP Value [dBV/m]

1

34.6075

44.29

18.64 -34.00

28.92

2

42.3675

40.62

19.43 -33.99

26.06

3

48.915

42.15

18.98 -33.98

27.14

4

55.22

42.69

18.74 -33.92

27.52

5

73.65

40.35

16.58 -33.71

23.22

6

79.47

41.93

15.59 -33.66

23.86

7*

873.415

50.9

29.63 -29.42

51.11

Remark: 1. The Quasi-Peak measurements were performed on the EUT. 2. Value = Reading + AF + Factor:
AF = Antenna Factor(dB/m) Factor = Cable Factor(dB) - Preamplifier (dB) Margin = Limit[dBV/m] ­Value[dBV/m] 3.#7:30M-1G is system simulator signal which can be ignored

QP Limit [dBV/m]
40.00 40.00 40.00 40.00 40.00 40.00
-

QP Margin
[dB] 11.08 13.94 12.86
12.48 16.78 16.14
-

Polarity
Vertical Vertical Vertical Vertical Vertical Vertical Vertical

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Final Test Mode:

Mode k

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Polarization:

Horizontal

Data List

NO. Frequency [MHz]

Reading [dBV]

AF [dB/m]

Factor [dB]

QP Value [dBV/m]

1

57.4025

47.37

18.68 -33.89

32.16

2

68.5575

51.19

17.40 -33.76

34.83

3

143.49

51.48

18.42 -33.22

36.67

4

217.4525

59.59

15.90 -32.59

42.90

5

327.79

45.49

18.36 -32.03

31.82

6

391.5675

41.42

20.78 -31.57

30.63

7*

639.16

49.78

25.75 -30.41

45.12

Remark: 1. The Quasi-Peak measurements were performed on the EUT. 2. Value = Reading + AF + Factor:
AF = Antenna Factor(dB/m) Factor = Cable Factor(dB) - Preamplifier (dB) Margin = Limit[dBV/m] ­Value[dBV/m] 3.#7:30M-1G is system simulator signal which can be ignored

QP Limit [dBV/m]
40.00 40.00 43.50 46.00 46.00 46.00
-

QP Margin
[dB] 7.84 5.17 6.83
3.10 14.18 15.37
-

Polarity
Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal Horizontal

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode k

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Polarization:

Vertical

Data List

NO. Frequency [MHz]

Reading [dBV]

AF [dB/m]

Factor [dB]

QP Value [dBV/m]

1

55.705

47.6

18.73 -33.91

32.42

2

68.5575

47.75

17.40 -33.76

31.39

3

125.06

53.23

17.43 -33.31

37.34

4

144.945

55.28

18.42 -33.22

40.49

5

213.5725

49.45

15.74 -32.60

32.59

6

328.275

47.46

18.37 -32.02

33.81

7*

639.645

49.68

25.76 -30.41

45.03

Remark: 1. The Quasi-Peak measurements were performed on the EUT. 2. Value = Reading + AF + Factor:
AF = Antenna Factor(dB/m) Factor = Cable Factor(dB) - Preamplifier (dB) Margin = Limit[dBV/m] ­Value[dBV/m] 3.#7:30M-1G is system simulator signal which can be ignored

QP Limit [dBV/m]
40.00 40.00 43.50 43.50 43.50 46.00
-

QP Margin
[dB] 7.58 8.61 6.16
3.01 10.91 12.19
-

Polarity
Vertical Vertical Vertical Vertical Vertical Vertical Vertical

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2.3 Radiated Emissions (above 1GHz)

Test Requirement: Test Method: Frequency Range: Measurement Distance:
Limit:
Detector:

47 CFR Part 15, Subpart B

ANSI C63.4:2014

Above 1GHz

3m

Frequency (MHz)

Limit (dBV/m)

Detector

74 Above 1GHz
54

Peak Average

Peak for pre-scan (1000kHz resolution bandwidth) 5th harmonic of the highest frequency or 40GHz, whichever is lower.

2.3.1 E.U.T. Operation

Temperature: Humidity: Atmospheric Pressure:
Pretest these modes to find the worst case:

22~23C
44~46%RH
101kPa
a: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+GSM850 (RX) Low
b: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+WCDMA Band 5(RX) Mid
c: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+MP4+LTE Band 5 (RX) High
d: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+GNSS+LTE Band 12 (RX) Low
e: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 14 (RX) Mid
f: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 17 (RX) High
g: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+LTE Band 26 (RX) Low
h: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+LTE Band 71 (RX) Mid
i: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Front)+SA Band 5 (RX) High
j: adapter(EUT1)+usb Cable(EUT1)+BT(IdIe)+Earphones+5GWLAN(IdIe)+Camera(Front)+SA Band 26 (RX) Low

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

The worst case for final test:

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k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)
L.adapter+usb Cable
+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+Camera(Rear)+LTE Band 5 (RX) High
k: Transfer data between the EUT and the PC+USB cable(EUT1)+BT(IdIe)+Earphones+2.4GWLAN(IdIe)+SA Band 71(RX)

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2.3.2 Test Setup Procedures
1. The EUT was placed in a full Anechoic Chamber as show below 2. The EUT was set 3 meters from the interference receiving antenna, which was mounted on the top of a variable height antenna tower. 3. The table was rotated 360 degrees to determine the position of the highest radiation
(Distance from antenna to EUT is 1m for measurements >18GHz). 4. The antenna height is adjusted between 1 to 4 meters above ground to find the maximum value of the field strength for both horizontal polarization and vertical polarization of the antenna. 5. For each suspected emission, the EUT was arranged to its worst case and then tune the antenna tower (from 1 m to 4 m) and turntable (from 0 degree to 360 degrees) to find the maximum reading.
6. Set the test-receiver system to Peak and AV Detect Function with specified bandwidth with Maximum Hold Mode, and the trace was allowed to stabilize.
7. At a measurement distance of 1 meter the limit line was increased by 20*LOG(3/1) = 9.54 dB.

2.3.3 Measurement Data
An initial pre-scan was performed in the chamber using the spectrum analyser in peak detection mode. Average measurements were conducted based on the peak sweep graph. The EUT was measured by Horn antenna with 2 orthogonal polarities.
The three polarities of X, Y, Z were measured by EUT, but only the worst data had been displayed. Scan from 5th harmonic of the highest frequency or 40GHz, whichever is lower, the disturbance above 18GHz was very low. The points marked on below plots are the highest emissions could be found when testing, so only below points had been displayed.

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Test on the worst case:

Final Test Mode:

Mode k

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Polarization:

Horizontal

Data List

Frequency Reading

NO.

[MHz]

[dBV]

AF [dB/m]

Factor Level

Limit

[dB] [dBV/m] [dBV/m]

Margin [dB]

Polarity

1

1792.2

50.96

24.60

-46.42 29.14

74.00

44.86

Horizontal

2* 2427.575 83.86

27.24

-45.18 65.92

-

-

Horizontal

3 4702.175 47.39

32.54

-41.48 38.45

74.00

35.55

Horizontal

4

8621.1

44.45

37.41

-34.99 46.87

74.00

27.13

Horizontal

Remark:

1. The Peak and Average measurements were performed on the EUT.

2. Level = Reading Level + AF + Factor:

AF = Antenna Factor(dB/m)

Factor = Cable Factor(dB) - Preamplifier gain(dB)

Margin = Limit[dBV/m] ­ Level[dBV/m]

3. #2 1G-18G is RF signal which come from Wi-Fi access point used to connect the EUT, and which can be ignored

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

Final Test Mode:

Mode k

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Polarization:

Vertical

Data List

Frequency NO.
[MHz]

Reading [dBV]

AF [dB/m]

Factor Level

Limit

[dB] [dBV/m] [dBV/m]

Margin [dB]

Polarity

1

1768.4

50.49

24.60

-46.45 28.64

74.00

45.36

Vertical

2* 2432.675

87.66

27.25

-45.17 69.75

-

-

Vertical

3

3827.1

46.65

30.71

-42.98 34.38

74.00

39.62

Vertical

4

6227.5

46.31

35.26

-39.73 41.83

74.00

32.17

Vertical

Remark:

1. The Peak and Average measurements were performed on the EUT.

2. Level = Reading Level + AF + Factor:

AF = Antenna Factor(dB/m)

Factor = Cable Factor(dB) - Preamplifier gain(dB)

Margin = Limit[dBV/m] ­ Level[dBV/m]

3. #2 1G-18G is RF signal which come from Wi-Fi access point used to connect the EUT, and which can be ignored

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

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3 Equipment List

Equipment
Test receiver Wideband Radio Communication
Tester Temperature and humidity
meter Artificial network
Artificial network
Measurement Software
Radio Communication
Analyzer

Conduction Test Equipment

Manufacturer

Model No.

Inventory No.

ROHDE&SCHWARZ ESR7 SUWI-01-10-01

Anritsu

MT8820C SUWI-01-26-01

MingGao

TH101B SUWI-01-01-06

ROHDE&SCHWARZ ROHDE&SCHWARZ
Tonscend

ENV216 ENV216 JS32-CE 4.0.0.2

SUWI-01-19-03 SUWI-01-19-04
SUWI-02-09-05

StarPoint

SP9500E SUWI-01-28-02

Cal Date (yyyy/mm/dd)
2024/02/01 2023/09/13
2024/02/04 2024/02/04 2024/02/04
NCR
2023/11/21

Cal Due Date (yyyy/mm/dd)
2025/01/31 2024/09/12
2025/02/03 2025/02/03 2025/02/03
NCR
2024/11/20

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

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RETest System

Equipment

Manufacturer

Model No. Inventory No.

Semi-Anechoic Chamber
Temperature and humidity meter
Signal Analyzer

Brilliant-emc
MingGao ROHDE&SCHWA
RZ

N/A TH101B FSW43

Signal Analyzer

KEYSIGHT

N9020A

Test receiver
Receiving antenna
Receiving antenna
Receiving antenna

ROHDE&SCHWA RZ
SCHWRZBECK MESS-
ELEKTRONIK SCHWRZBECK
MESSELEKTRONIK SCHWRZBECK
MESSELEKTRONIK

ESR7 VULB 9163 BBHA 9120D BBHA 9170

Amplifier

Tonscend

TAP9K3G40

Amplifier

Tonscend

TAP01018050

Amplifier

Tonscend

TAP18040048

Wideband Radio Communication
Tester Radio Communication Analyzer Measurement Software

Anritsu StarPoint Tonscend

MT8820C
SP9500E JS32-RE V4.0.0.0

Remark: NCR=No Calibration Requirement.

SUWI-04-02-01 SUWI-01-01-05 SUWI-01-02-04 SUWI-01-02-07 SUWI-01-10-01
SUWI-01-11-01
SUWI-01-11-02
SUWI-01-11-03 SUWI-01-14-01 SUWI-01-14-02 SUWI-01-14-03 SUWI-01-26-01
SUWI-01-28-02
SUWI-02-09-04

Cal Date (yyyy/mm/dd)
2023/06/03 2024/02/18 2024/05/08 2023/11/21 2024/02/01
2023/05/13
2023/05/13
2023/05/12 2024/02/04 2024/02/04 2024/02/04 2023/09/13
2023/11/21
NCR

Cal Due Date (yyyy/mm/dd)
2026/06/02 2025/02/17 2025/05/07 2024/11/20 2025/01/31
2025/05/12
2025/05/12
2025/05/11 2025/02/03 2025/02/03 2025/02/03 2024/09/12
2024/11/20
NCR

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

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4 Measurement Uncertainty

No.

Item

Measurement Uncertainty

1

Conduction Emission

± 2.9dB (150kHz to 30MHz)

± 4.8dB (Below 1GHz)

2

Radiated Emission

± 4.8dB (1GHz to 18GHz)

± 4.8dB (Above 18GHz) Remark: The Ulab (lab Uncertainty) is less than Ucispr/ETSI (CISPR/ETSI Uncertainty), so the test results

­ compliance is deemed to occur if no measured disturbance level exceeds the disturbance limit;

­ non-compliance is deemed to occur if any measured disturbance level exceeds the disturbance limit.

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SGS-CSTC Standards Technical Services (Suzhou) Co., Ltd.

5 Photographs
5.1 Test Setup
Refer to Appendix A.3 15B Setup Photos.
---End of Report---

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