EMC2001239

Test Report of Base Station Controller(ZTE)

wule

23T04Z70506-06 FCC Report Part15C BLE Rev0

SAMSUNG Electronics Co., Ltd. SMX218U Multi-band GSM/WCDMA/LTE/5GNR Tablet with Bluetooth, WLAN ZCASMX218U ZCASMX218U smx218u

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FCC PART 15C TEST REPORT
BLUETOOTH LOW ENERGY (BLE) PART
No. 23T04Z70506-06
for Samsung Electronics Co., Ltd. Multi-band WCDMA/LTE/5GNR Tablet with Bluetooth, WLAN
Model Name: SM-X218U FCC ID: ZCASMX218U
with Hardware Version: REV1.0 Software Version: X218U.001
Issued Date: 2023-10-31
Note: The test results in this test report relate only to the devices specified in this report.This report shall not be reproduced except in full without the written approval of CTTL. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the U.S.Government. Test Laboratory:
CTTL, Telecommunication Technology Labs, CAICT
No.52, HuayuanNorth Road, Haidian District, Beijing, P. R. China 100191. Tel:+86(0)10-62304633-2512,Fax:+86(0)10-62304633-2504 Email:[email protected], website: www.chinattl.com
©Copyright. All rights reserved by CTTL.

No. 23T04Z70506-06

REPORT HISTORY

Report Number

Revision

Description

Issue Date

23T04Z70506-06

Rev.0

1st edition

2023-10-31

Note: the latest revision of the test report supersedes all previous version.

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Page 2 of 45.

No. 23T04Z70506-06

CONTENTS

1. Test Laboratory ....................................................................................................................................... 5 1.1. Introduction &Accreditation ....................................................................................................... 5 1.2. Testing Location.......................................................................................................................... 5 1.3. Testing Environment ................................................................................................................... 6 1.4. Project data.................................................................................................................................. 6 1.5. Signature ..................................................................................................................................... 6
2. Client Information................................................................................................................................... 7 2.1. Applicant Information................................................................................................................. 7 2.2. Manufacturer Information........................................................................................................... 7
3. Equipment Under Test (EUT) and Ancillary Equipment (AE) ............................................................... 8 3.1. About EUT.................................................................................................................................. 8 3.2. Internal Identification of EUT..................................................................................................... 8 3.3. Internal Identification of AE ....................................................................................................... 8 3.4. Normal Accessory setting ........................................................................................................... 8 3.5. General Description .................................................................................................................... 8
4. Reference Documents ............................................................................................................................. 9 4.1. Documents supplied by applicant ............................................................................................... 9 4.2. Reference Documents for testing ................................................................................................ 9
5. Test Results ........................................................................................................................................... 10 5.1. Summary of EUT Mode............................................................................................................ 10 5.2. Summary of Test Results .......................................................................................................... 10 5.3. Statements ................................................................................................................................. 10
6. Test Facilities Utilized ...........................................................................................................................11 7. Measurement Uncertainty ..................................................................................................................... 12
7.1. Peak Output Power - Conducted ............................................................................................... 12 7.2. Frequency Band Edges - Conducted ......................................................................................... 12 7.3. Transmitter Spurious Emission - Conducted ............................................................................ 12 7.4. Radiated Unwanted Emission ................................................................................................... 12 7.5. 6dB Bandwidth ......................................................................................................................... 12 7.6. Maximum Power Spectral Density Level ................................................................................. 12 7.7. AC Powerline Conducted Emission.......................................................................................... 13 ANNEX A: EUT parameters......................................................................................................................... 14 ANNEX B: Detailed Test Results ................................................................................................................. 15 B.1. Measurement Method.................................................................................................................... 15 B.2. Peak Output Power........................................................................................................................ 16 B.3. Frequency Band Edges - Conducted ............................................................................................. 17 B.4. Transmitter Spurious Emission - Conducted ................................................................................. 19 B.5. Radiated Unwanted Emission ....................................................................................................... 28 B.6. 6dB Bandwidth.............................................................................................................................. 34 B.7. Maximum Power Spectral Density Level...................................................................................... 37 B.8. AC Powerline Conducted Emission .............................................................................................. 40 B.9. Antenna Requirement .................................................................................................................... 44

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Page 3 of 45.

No. 23T04Z70506-06 ANNEX C: Accreditation Certificate ........................................................................................................... 45

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Page 4 of 45.

No. 23T04Z70506-06

1. Test Laboratory
1.1. Introduction &Accreditation
Telecommunication Technology Labs, CAICT is an ISO/IEC 17025:2017 accredited test laboratory under American Association for Laboratory Accreditation (A2LA) with lab code 7049.01, and is also an FCC accredited test laboratory (CN1349), and ISED accredited test laboratory (CAB identifier:CN0066). The detail accreditation scope can be found on A2LA website.

1.2. Testing Location

Conducted testing Location: CTTL(huayuan North Road)

Address:

No. 52, Huayuan North Road, Haidian District, Beijing,

P. R. China100191

Radiated testing Location: CTTL (BDA)

Address:

No. 18A, Kangding Street, Beijing Economic-Technology

Development Area, Beijing, 100176, P.R. China

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Page 5 of 45.

1.3. Testing Environment
Normal Temperature: 20-27

Relative Humidity:

20-50%

1.4. Project data
Testing Start Date: Testing End Date:

2023-9-11 2023-10-31

1.5. Signature

Wu Le
(Prepared this test report)

Sun Zhenyu
(Reviewed this test report)

Hu Xiaoyu
(Approved this test report)

No. 23T04Z70506-06

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No. 23T04Z70506-06

2. Client Information

2.1. Applicant Information

Company Name:

Samsung Electronics Co., Ltd.

Address /Post:

19 Chapin Rd.,Building D Pine Brook, NJ 07058

Contact Person:

Jenni Chun

Contact Email:

[email protected]

Telephone:

+1-201-937-4203

2.2. Manufacturer Information

Company Name:

Samsung Electronics Co., Ltd.

Address /Post:

Samsung R5, Maetan dong 129, Samsung ro Youngtong gu, Suwon city 443 742, Korea

Contact Person:

 (Sunghoon Cho)

Contact Email:

[email protected]

Telephone:

+82-10-2722-4159

Fax:

/

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No. 23T04Z70506-06

3. Equipment Under Test (EUT) and Ancillary Equipment (AE)

3.1. About EUT
Description
Model Name FCC ID Frequency Band Type of Modulation(LE mode) Number of Channels(LE mode) Power Supply Antenna gain

Multi-band WCDMA/LTE/5GNR Tablet with Bluetooth, WLAN SM-X218U ZCASMX218U ISM 2400MHz~2483.5MHz GFSK (Bluetooth Low Energy) 40 3.85V DC by Battery -1.36dBi

3.2. Internal Identification of EUT

EUT ID* UT12a UT01a

SN or IMEI

HW Version

23T04Z70506UT12a REV1.0

23T04Z70506UT01a REV1.0

SW Version X218U.001 X218U.001

*EUT ID: is used to identify the test sample in the lab internally.

Date of receipt 2023-9-24 2023-9-11

3.3. Internal Identification of AE

AE ID*

Name

Model

Manufacturer

AE1

Battery

WT-S-W11

SCUD (Fujian) Electronics Co., Ltd.

AE2*

Adapter

EP-T1510

DONGGUAN DONGWON ELECTRONICS CO.,LTD.

AE3-1

Date Cable1 C-C EP-DN980BWE Guangxi Broad Telecommunication Co.,Ltd.

AE3-2

Date Cable2 C-C EP-DN980BWE RFTECH Co., Ltd.

AE3-3

Date Cable3 C-C EP-DN980BWE CRESYN HANOI Co., Ltd

AE5*

Headset

ESH61ASFWE /

*AE ID: is used to identify the test sample in the lab internally.

*AE2 and A5 are not the AE for EUT, provided by the client for relevant tests.

3.4. Normal Accessory setting
Fully charged battery is used during the test.

3.5. General Description
The Equipment Under Test (EUT) is a model of Multi-band WCDMA/LTE/5GNR Tablet with Bluetooth, WLAN with integrated antenna. It consists of normal options: lithium battery, charger. Manual and specifications of the EUT were provided to fulfill the test. Samples undergoing test were selected by the Client.

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No. 23T04Z70506-06

4. Reference Documents
4.1. Documents supplied by applicant
EUT parameters, referring to Annex A for detailed information, is supplied by the client or manufacturer, which is the basis of testing.

4.2. Reference Documents for testing

The following documents listed in this section are referred for testing.

Reference

Title

FCC CFR 47, Part 15, Subpart C:

15.205 Restricted bands of operation;

FCC Part15

15.209 Radiated emission limits, general requirements;

15.247 Operation within the bands 902­928MHz,

2400­2483.5 MHz, and 5725­5850 MHz.

ANSI C63.10

American National Standard of Procedures for Compliance Testing of Unlicensed Wireless Devices

Version 2021
June,2013

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No. 23T04Z70506-06

5. Test Results

5.1. Summary of EUT Mode Two modes are provided:

Mode

Conditions

Mode A

1Mbps

Mode B

2Mbps

*For the test results, the EUT had been tested all conditions. But only the worst case(Mode B) was shown in test report except the " Peak Output Power " test was shown all conditions.

5.2. Summary of Test Results
Abbreviations used in this clause: P Pass, The EUT complies with the essential requirements in the standard. F Fail, The EUT does not comply with the essential requirements in the standard NA Not Applicable, The test was not applicable NP Not Performed, The test was not performed by CTTL

SUMMARY OF MEASUREMENT RESULTS

Sub-clause

Verdict

Peak Output Power

15.247 (b)(1)

P

Frequency Band Edges- Conducted

15.247 (d)

P

Transmitter Spurious Emission - Conducted 15.247 (d)

P

Radiated Unwanted Emission

15.247, 15.205, 15.209

P

6dB Bandwidth

15.247 (a)(2)

P

Maximum Power Spectral Density Level

15.247(e)

P

AC Powerline Conducted Emission

15.107, 15.207

P

Antenna Requirement

15.203

P

Please refer to ANNEX A for detail.

The measurement is made according to ANSI C63.10.

5.3. Statements
CTTL has evaluated the test cases requested by the applicant /manufacturer as listed in section 5.1 of this report for the EUT specified in section 3 according to the standards or reference documents listed in section 4.2

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No. 23T04Z70506-06

6. Test Facilities Utilized

Conducted test system

No. Equipment

Model

Vector Signal 1
Analyzer 2 Shielding Room

FSQ26 S81

Serial

Calibration Calibration

Manufacturer

Number

Period

Due date

100024

R&S

1 year

2024-03-09

/

ETS-Lindgren

/

/

Radiated emission test system

No.

Equipment

Model

Serial Number

1

Test Receiver

ESU26

100376

2

Test Receiver

ESW44

103015

3

Loop Antenna HFH2-Z2 829324/007

4

EMI Antenna VULB9163 9163-235

5

EMI Antenna

3117

00119021

LB-180400 21100840000

6

EMI Antenna

-25-C-KF

06

Manufacturer
R&S R&S R&S Schwarzbeck ETS-Lindgren
A-INFO

Calibration Period 1 year 1 year 1 year 1 year 1 year

Calibration Due date 2024-06-29 2024-01-14 2023-12-22 2024-06-10 2024-06-24

1 year 2024-03-02

AC Power Line Conducted Emission

No.

Equipment

Model

Serial Number

1

LISN

ENV216

101459

2

Test Receiver

ESCI

100766

Manufacturer
R&S R&S

Calibration Period 1 year 1 year

Calibration Due date 2024-02-29 2024-03-30

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No. 23T04Z70506-06

7. Measurement Uncertainty
7.1. Peak Output Power - Conducted
Measurement Uncertainty: Measurement Uncertainty (k=2)

0.66dB

7.2. Frequency Band Edges - Conducted
Measurement Uncertainty: Measurement Uncertainty (k=2)

0.66dB

7.3. Transmitter Spurious Emission - Conducted

Measurement Uncertainty: Frequency Range 30 MHz ~ 8 GHz 8 GHz ~ 12.75 GHz 12.7GHz ~ 26 GHz

Uncertainty (k=2) 1.22dB 1.51dB 1.51dB

7.4. Radiated Unwanted Emission
Measurement Uncertainty: Frequency Range 9kHz-30MHz 30MHz  f  1GHz 1GHz  f 18GHz 18GHz  f 40GHz

Uncertainty(dBm) (k=2) 4.92 5.73 5.58 3.37

7.5. 6dB Bandwidth
Measurement Uncertainty: Measurement Uncertainty (k=2)

61.936Hz

7.6. Maximum Power Spectral Density Level
Measurement Uncertainty: Measurement Uncertainty (k=2)
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0.66dB

Page 12 of 45.

7.7. AC Powerline Conducted Emission
Measurement Uncertainty: Measurement Uncertainty (k=2)

No. 23T04Z70506-06 3.10dB

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No. 23T04Z70506-06
ANNEX A: EUT parameters
Disclaimer: The antenna gain provided by the client may affect the validity of the measurement results in this report, and the client shall bear the impact and consequences arising therefrom.

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No. 23T04Z70506-06

ANNEX B: Detailed Test Results
B.1. Measurement Method
B.1.1. Conducted Measurements The measurement is made according to ANSI C63.10. 1). Connect the EUT to the test system correctly. 2). Set the EUT to the required work mode (Transmitter, receiver or transmitter & receiver). 3). Set the EUT to the required channel. 4). Set the EUT hopping mode (hopping or hopping off). 5). Set the spectrum analyzer to start measurement. 6). Record the values. Vector Signal Analyzer

EUT

Vector Signal Analyzer

B.1.2. Radiated Emission Measurements The measurement is made according to ANSI C63.10
The radiated emission test is performed in semi-anechoic chamber. The EUT was placed on a non-conductive table with 80cm above the ground plane for measurement below 1GHz and 1.5m above the ground plane for measurement above 1GHz. The measurement antenna was placed at a distance of 3 meters from the EUT. The test is carried out on both vertical and horizontal polarization and only maximization result of both polarizations is kept. During the test, the turntable is rotated from 0° to 360°and the measurement antenna is moved from 1m to 4m to get the maximization result. The maximization process was repeated with the EUT positioned in each of its three orthogonal orientations.

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B.2. Peak Output Power

No. 23T04Z70506-06

B.2.1. Peak Output Power ­ Conducted
Method of Measurement: See ANSI C63.10-clause 11.9.1.1 a) Set the RBW = 3 MHz. b) Set VBW = 10 MHz. c) Set span = 10 MHz. d) Sweep time = auto couple. e) Detector = peak. f) Trace mode = max hold. g) Allow trace to fully stabilize. h) Use peak marker function to determine the peak amplitude level.

Measurement Limit

Standard

FCC Part 15.247(b)(3)

Measurement Results:

For GFSK

Sample

Channel

Frequency

Rate

No.

(MHz)

0

2402

1Mbps

19

2440

39

2480

0

2402

2Mbps

19

2440

39

2480

Conclusion: PASS

Limit (dBm) < 30

Peak Conducted Output Power (dBm) -1.49 0.18 2.32 -1.34 0.36 2.41

Conclusion
P P P P P P

B.2.2. E.I.R.P.

The radiated E.I.R.P. is listed below:

Antenna gain = -1.36dBi

For GFSK

Sample

Channel

Frequency

Rate

No.

(MHz)

0

2402

1Mbps

19

2440

39

2480

0

2402

2Mbps

19

2440

39

2480

Note: E.I.R.P. are calculated with the antenna gain.

Conclusion: PASS
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E.I.R.P. (dBm)
-2.85 -1.18 0.96 -2.70 -1.00 1.05

Conclusion P P P P P P
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No. 23T04Z70506-06

B.3. Frequency Band Edges - Conducted

Method of Measurement: See ANSI C63.10-clause 6.10.4

Connect the spectrum analyzer to the EUT using an appropriate RF cable connected to the EUT output. Configure the spectrum analyzer settings as described below.
a) Set Span = 8MHz b) Sweep Time: Auto c) Set the RBW= 100 kHz c) Set the VBW= 300 kHz d) Detector: Peak e) Trace: Max hold Observe the stored trace and measure the amplitude delta between the peak of the fundamental and the peak of the band-edge emission. This is not an absolute field strength measurement; it is only a relative measurement to determine the amount by which the emission drops at the band edge relative to the highest fundamental emission level.

Measurement Limit: Standard
FCC 47 CFR Part 15.247 (d)

Limit (dBc) < -20

Measurement Result:

For GFSK

Channel Frequency

No.

(MHz)

0

2402

39

2480

Conclusion: PASS

Hopping
Hopping OFF Hopping OFF

Band Edge Power

( dBc)

Fig.1

-44.19

Fig.2

-50.52

Conclusion
P P

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Page 17 of 45.

Test graphs as below

No. 23T04Z70506-06

Fig.1. Frequency Band Edges: GFSK, 2402 MHz, Hopping Off

Fig.2. Frequency Band Edges: GFSK, 2480 MHz, Hopping Off

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No. 23T04Z70506-06

B.4. Transmitter Spurious Emission - Conducted

Method of Measurement: See ANSI C63.10-clause 11.11.2 and clause 11.11.3 Measurement Procedure ­ Reference Level 1. Set the RBW = 100 kHz. 2. Set the VBW = 300 kHz. 3. Set the span to 1.5 times the DTS bandwidth. 4. Detector = peak. 5. Sweep time = auto couple. 6. Trace mode = max hold. 7. Allow trace to fully stabilize. 8. Use the peak marker function to determine the maximum PSD level. Next, determine the power in 100 kHz band segments outside of the authorized frequency band using the following measurement: Measurement Procedure - Unwanted Emissions 1. Set RBW = 100 kHz. 2. Set VBW = 300 kHz. 3. Set span to encompass the spectrum to be examined. 4. Detector = peak. 5. Trace Mode = max hold. 6. Sweep = auto couple. 7. Allow the trace to stabilize (this may take some time, depending on the extent of the span). Ensure that the amplitude of all unwanted emissions outside of the authorized frequency band (excluding restricted frequency bands) is attenuated by at least the minimum requirements specified above.

Measurement Limit: Standard
FCC 47 CFR Part 15.247 (d)

Limit 20dB below peak output power in 100 kHz bandwidth

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Page 19 of 45.

No. 23T04Z70506-06

Measurement Results: For GFSK Channel No. Frequency (MHz)

0

2402

19

2440

39

2480

Conclusion: PASS Test graphs as below

Frequency Range Center Frequency 30 MHz ~ 1 GHz
1 GHz ~ 3 GHz 3 GHz ~ 10 GHz 10GHz ~ 26 GHz Center Frequency 30 MHz ~ 1 GHz 1 GHz ~ 3 GHz 3 GHz ~ 10 GHz 10GHz ~ 26 GHz Center Frequency 30 MHz ~ 1 GHz 1 GHz ~ 3GHz 3 GHz ~ 10 GHz 10 GHz ~ 26 GHz

Test Results Fig.3 Fig.4 Fig.5 Fig.6 Fig.7 Fig.8 Fig.9 Fig.10 Fig.11 Fig.12 Fig.13 Fig.14 Fig.15 Fig.16 Fig.17

Conclusion P P P P P P P P P P P P P P P

Fig.3. Transmitter Spurious Emission - Conducted: GFSK,2402MHz

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No. 23T04Z70506-06

Fig.4. Transmitter Spurious Emission - Conducted: GFSK, 2402 MHz, 30MHz - 1GHz

Fig.5. Transmitter Spurious Emission - Conducted: GFSK, 2402 MHz,1GHz - 3GHz

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No. 23T04Z70506-06

Fig.6. Transmitter Spurious Emission - Conducted: GFSK, 2402 MHz,3GHz - 10GHz

Fig.7. Transmitter Spurious Emission - Conducted: GFSK, 2402 MHz,10GHz - 26GHz

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No. 23T04Z70506-06

Fig.8. Transmitter Spurious Emission - Conducted: GFSK, 2440MHz

Fig.9. Transmitter Spurious Emission - Conducted: GFSK, 2440 MHz, 30MHz - 1GHz

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No. 23T04Z70506-06

Fig.10. Transmitter Spurious Emission - Conducted: GFSK, 2440 MHz, 1GHz ­ 3GHz

Fig.11. Transmitter Spurious Emission - Conducted: GFSK, 2440 MHz, 3GHz ­ 10GHz

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No. 23T04Z70506-06

Fig.12. Transmitter Spurious Emission - Conducted: GFSK, 2440 MHz, 10GHz ­ 26GHz

Fig.13. Transmitter Spurious Emission - Conducted: GFSK, 2480 MHz

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No. 23T04Z70506-06

Fig.14. Transmitter Spurious Emission - Conducted: GFSK, 2480 MHz, 30MHz - 1GHz

Fig.15. Transmitter Spurious Emission - Conducted: GFSK, 2480 MHz, 1GHz - 3GHz

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No. 23T04Z70506-06

Fig.16. Transmitter Spurious Emission - Conducted: GFSK, 2480 MHz, 3GHz - 10GHz

Fig.17. Transmitter Spurious Emission - Conducted: GFSK, 2480 MHz, 10GHz - 26GHz

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No. 23T04Z70506-06

B.5. Radiated Unwanted Emission

Limits Measurement Limit
Standard

Limit

FCC 47 CFR Part 15.247, 15.205, 15.209 20dB below peak output power

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)).

Limit in restricted band
Frequency (MHz)
0.009 - 0.490 0.490 - 1.705 1.705 ­ 30.0

Field strength(V/m)
2400/F(kHz) 24000/F(kHz)
30

Measurement distance (m) 300 30 30

Frequency of emission (MHz) 30-88 88-216 216-960
Above 960

Field strength (uV/m) 100 150 200 500

Field strength (dBuV/m) 40 43.5 46 54

Measurement distance (m) 3 3 3 3

Note: When performing measurements at a distance other than that specified, the results shall be extrapolated to the specified distance using an extrapolation factor.
Test setup

Figure B.5.1. Test Site Diagram (9kHz-30MHz)

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No. 23T04Z70506-06

Figure B.5.2. Test Site Diagram (30MHz-1GHz)

Figure B.5.3. Test Site Diagram (1GHz-40GHz)

Test Procedure

Radiated unwanted emissions from the EUT were measured according to ANSI C63.10-2013

(ANSI C63.10-2020).

Test setting

Frequency of emission

RBW/VBW

Sweep Time(s)

(MHz)

30-1000

100kHz/300kHz

5

1000-3000

1MHz/3MHz

15

3000-18000

1MHz/3MHz

40

18000-26500

1MHz/3MHz

20

Calculation

A "reference path loss" is established and the ARpl is the attenuation of "reference path loss", and including the gain of receive antenna, the gain of the preamplifier, the cable loss.

PMea is the field strength recorded from the instrument. The measurement results are obtained as described below:

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No. 23T04Z70506-06
Result=PMea+ARpl= PMea+Cable Loss+Antenna Factor
Test note 1. Investigation has been done on all modes and modulations/data rates. Only the radiated emissions of the configuration that produced the worst case emissions are reported in this section. 2Spurious emissions for all channels were investigated and almost the same below 1GHz. According to FCC 47 CFR §15.31, emission levels are not report much lower than the limit by over 20dB 3Measurement frequencies were performed from 9 kHz to the 10th harmonic of highest fundamental frequency.
Test Result

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No. 23T04Z70506-06

Average Measurement results

GFSK 2402MHz

Frequency Measurement Cable

(MHz)

Result

Loss

(dBuV/m)

(dB)

2386.500

41.49

5.66

2388.937

41.36

5.67

4804.200

27.28

-34.35

7205.850

31.98

-31.49

9607.950

34.64

-30.99

12010.050

34.05

-30.01

Antenna Factor (dB/m) 27.67 27.68 32.91 37.50 38.00 38.69

Receiver Reading (dBuV)
8.15 8.01 28.72 25.97 27.63 25.37

Limit (dBuV/m)
54.00 54.00 54.00 54.00 54.00 54.00

Margin (dB)
12.51 12.64 26.72 22.02 19.36 19.95

Antenna Pol. (H/V) V H V V H H

GFSK 2440MHz

Frequency Measurement

(MHz)

Result

(dBuV/m)

2434.950

43.00

2446.575

43.09

4882.050

28.10

7322.850

32.90

9764.100

34.02

12204.900

33.48

Cable Loss (dB) 5.73 5.70 -33.74 -31.42 -31.40 -29.41

Antenna Factor (dB/m) 27.63 27.61 33.00 37.60 38.13 38.70

Receiver Reading (dBuV)
9.64 9.79 28.84 26.72 27.29 24.19

Limit (dBuV/m)
54.00 54.00 54.00 54.00 54.00 54.00

Margin (dB)
11.00 10.91 25.90 21.10 19.98 20.52

Antenna Pol. (H/V) H V H H V V

GFSK 2480MHz

Frequency Measurement

(MHz)

Result

(dBuV/m)

2485.050

43.47

2484.300

43.46

4959.900

27.97

7439.850

32.82

9919.800

32.54

12400.200

33.54

Cable Loss (dB) 5.71 5.71 -34.43 -32.28 -32.06 -30.44

Antenna Factor (dB/m) 27.74 27.74 32.90 37.58 38.28 38.60

Receiver Reading (dBuV)
10.02 10.01 29.50 27.53 26.31 25.38

Limit (dBuV/m)
54.00 54.00 54.00 54.00 54.00 54.00

Margin (dB)
10.53 10.54 26.03 21.18 21.46 20.46

Antenna Pol. (H/V) H V V H V V

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No. 23T04Z70506-06

Peak Measurement results

GFSK 2402MHz

Frequency Measurement Cable

(MHz)

Result

Loss

(dBuV/m)

(dB)

2387.042

56.33

5.66

2387.420

55.67

5.67

4804.000

39.39

-34.35

7206.000

44.03

-31.50

9608.000

47.33

-30.99

12010.000

46.17

-30.01

Antenna Factor (dB/m) 27.67 27.68 32.91 37.50 38.00 38.69

Receiver Reading (dBuV)
22.99 22.33 40.83 38.03 40.31 37.49

Limit (dBuV/m)
74.00 74.00 74.00 74.00 74.00 74.00

Margin (dB)
17.67 18.33 34.61 29.97 26.67 27.83

Antenna Pol. (H/V) H H H V H V

GFSK 2440MHz

Frequency Measurement

(MHz)

Result

(dBuV/m)

2436.200

54.57

2443.600

55.96

4882.000

39.70

7323.000

44.95

9764.000

45.40

12205.000

45.40

Cable Loss (dB) 5.72 5.70 -33.74 -31.42 -31.40 -29.41

Antenna Factor (dB/m) 27.63 27.61 33.00 37.60 38.13 38.69

Receiver Reading (dBuV)
21.22 22.64 40.44 38.78 38.67 36.11

Limit (dBuV/m)
74.00 74.00 74.00 74.00 74.00 74.00

Margin (dB)
19.43 18.04 34.30 29.05 28.60 28.60

Antenna Pol. (H/V) H V H V V H

GFSK 2480MHz

Frequency Measurement

(MHz)

Result

(dBuV/m)

2483.555

57.02

2483.920

56.24

4960.000

39.58

7440.000

44.51

9920.000

44.49

12400.000

45.46

Cable Loss (dB) 5.71 5.71 -34.43 -32.29 -32.06 -30.44

Antenna Factor (dB/m) 27.73 27.74 32.90 37.58 38.28 38.60

Receiver Reading (dBuV)
23.58 22.80 41.11 39.21 38.27 37.30

Limit (dBuV/m)
74.00 74.00 74.00 74.00 74.00 74.00

Margin (dB)
16.98 17.76 34.42 29.49 29.51 28.54

Antenna Pol. (H/V) V V H H V V

Conclusion: PASS Note: the spurious emission above 18G is noise only and did not show on the report.

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Page 32 of 45.

No. 23T04Z70506-06

Band edge compliance

Mode

Channel

0 GFSK
39

Conclusion: PASS

Test graphs as below

Frequency Range 2.31GHz ~2.43GHz 2.45GHz ~2.5GHz

Test Results Fig.18 Fig.19

Conclusion P P

Level in dBuV/m

Fig.18. Frequency Band Edges: GFSK, 2402 MHz, Hopping Off, 2.31 GHz ­ 2.43GHz

Level in dBuV/m

Fig.19. Frequency Band Edges: GFSK, 2480 MHz, Hopping Off , 2.45 GHz - 2.50GHz

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Page 33 of 45.

B.6. 6dB Bandwidth
Method of Measurement:

No. 23T04Z70506-06

The measurement is made according to ANSI C63.10 clause 11.8.1 1.Set RBW = 100 kHz. 2. Set the video bandwidth (VBW) = 300 kHz. 3. Detector = Peak. 4. Trace mode = max hold. 5. Sweep = auto couple. 6. Allow the trace to stabilize. 7. Measure the maximum width of the emission that is constrained by the frequencies associated with the two outermost amplitude points (upper and lower frequencies) that are attenuated by 6 dB relative to the maximum level measured in the fundamental emission.

Measurement Limit: Standard
FCC 47 CFR Part 15.247(a)(2)

Limit >= 500KHz

Measurement Results:

For GFSK

Channel No. Frequency (MHz)

0

2402

19

2440

39

2480

Conclusion: PASS

Test graphs as below:

6dB Bandwidth (kHz)

Fig.20

1155.50

Fig.21

1153.50

Fig.22

1148.50

Conclusion P P P

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Page 34 of 45.

No. 23T04Z70506-06

Fig.20. 6dB Bandwidth: GFSK, 2402 MHz

Fig.21. 6dB Bandwidth: GFSK, 2440 MHz

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Page 35 of 45.

No. 23T04Z70506-06 Fig.22. 6dB Bandwidth: GFSK, 2480 MHz

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Page 36 of 45.

No. 23T04Z70506-06

B.7. Maximum Power Spectral Density Level

Method of Measurement: The measurement is made according to ANSI C63.10 clause 11.10.2

1. Set the RBW = 3 kHz. 2. Set the VBW = 10 kHz. 3. Set the span to 2 times the DTS bandwidth. 4. Detector = peak. 5. Sweep time = auto couple. 6. Trace mode = max hold. 7. Allow trace to fully stabilize. 8. Use the peak marker function to determine the maximum amplitude level within the RBW.

Measurement Limit: Standard
FCC 47 CFR Part 15.247(e)

Limit <=8.0dBm/3kHz

Measurement Results: For GFSK

Channel No. Frequency (MHz)

0

2402

19

2440

39

2480

Maximum Power Spectral Density

Level(dBm/3kHz)

Fig.23

-20.01

Fig.24

-18.55

Fig.25

-16.37

Conclusion
P P P

Test graphs as below:

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Page 37 of 45.

No. 23T04Z70506-06

Fig.23. Maximum Power Spectral Density Level Function: GFSK, 2402 MHz

Fig.24. Maximum Power Spectral Density Level Function: GFSK, 2440 MHz

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Page 38 of 45.

No. 23T04Z70506-06 Fig.25. Maximum Power Spectral Density Level Function: GFSK, 2480 MHz

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Page 39 of 45.

No. 23T04Z70506-06

B.8. AC Powerline Conducted Emission

Summary

All AC line conducted spurious emissions are measured with a receiver connected to a grounded

LISN while the EUT is operating at its maximum duty cycle, at maximum power, and at the

appropriate frequencies. All data rates and modes were investigated for conducted spurious

emissions. Only the conducted emissions of the configuration that produced the worst case

emissions are reported in this section

Method of Measurement:

See Clause 6.2 of ANSI C63.10 specifically.

See Clause 4 and Clause 5 of ANSI C63.10 generally.

The conducted emissions from the AC port of the EUT are measured in a shielding room. The EUT

is connected to a Line Impedance Stabilization Network (LISN). An overview sweep with peak

detection was performed. The measurements were performed with a quasi-peak detector and if

required, an average detector.

The conducted emission measurements were made with the following detector of the test receiver:

Quasi-Peak / Average Detector.

The measurement bandwidth is:

Frequency of Emission (MHz)

RBW/IF bandwidth

0.15-30

9kHz

Test Condition: VoltageV 120

FrequencyHz 60

Test setup

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Page 40 of 45.

No. 23T04Z70506-06

Measurement Result and limit:

Bluetooth (Quasi-peak Limit)

Frequency range Quasi-peak

(MHz)

Limit (dBV)

Result (dBV) With charger

bluetooth

Idle

Conclusion

0.15 to 0.5

66 to 56

0.5 to 5

56

Fig.B.8.1

Fig. B.8.2

P

5 to 30

60

NOTE: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to

0.5 MHz.

Bluetooth (Average Limit)

Frequency range Average Limit

(MHz)

(dBV)

Result (dBV)

With charger

bluetooth

Idle

Conclusion

0.15 to 0.5

56 to 46

0.5 to 5

46

Fig.B.8.1

Fig. B.8.2

P

5 to 30

50

NOTE: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz

to 0.5 MHz.

Conclusion: Pass Test graphs as below:

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Page 41 of 45.

No. 23T04Z70506-06

Level in dBuV

70 65 60 55 50 45 40 35 30 25 20 15 10
5 0 150 k

30 0 40 0 50 0

80 0 1M

2M

3M 4M 5M 6

F re q u e n c y in H z

8 10M

20 M 30 M

Fig.B.8.1

AC Powerline Conducted Emission- bluetooth

Note: The graphic result above is the maximum of the measurements for both phase line and neutral line.

Final Result 1

Frequency QuasiPeak Meas. Time Bandwidth Filter Line Corr. Margin Limit

(MHz)

(dBµV)

(ms)

(kHz)

(dB) (dB) (dBµV)

0.249000 43.4 0.361500 38.1 0.546000 36.6 0.865500 38.2 1.572000 34.2 9.276000 46.7 Final Result 2
Frequency Average

2000.0 2000.0 2000.0 2000.0 2000.0 2000.0
Meas. Time

9.000 9.000 9.000 9.000 9.000 9.000
Bandwidth

Off N 19.4 18.4 61.8 Off L1 19.4 20.6 58.7 Off L1 19.5 19.4 56.0 Off L1 19.5 17.8 56.0 Off L1 19.5 21.8 56.0 Off N 19.7 13.3 60.0
Filter Line Corr. Margin Limit

(MHz)

(dBµV)

(ms)

(kHz)

(dB)

(dB) (dBµV)

0.249000 33.0 0.361500 20.9 0.546000 28.1 0.865500 27.9 1.608000 21.6 9.240000 40.5

2000.0 2000.0 2000.0 2000.0 2000.0 2000.0

9.000 9.000 9.000 9.000 9.000 9.000

Off N 19.4 18.7 51.8 Off N 19.4 27.8 48.7 Off L1 19.5 18.0 46.0 Off L1 19.5 18.1 46.0 Off N 19.5 24.4 46.0 Off L1 19.7 9.5 50.0

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Page 42 of 45.

No. 23T04Z70506-06

Level in dBuV

70 65 60 55 50 45 40 35 30 25 20 15 10
5 0 150 k

30 0 40 0 50 0

80 0 1M

2M

3M 4M 5M 6

F re q u e n c y in H z

8 10M

20 M 30 M

Fig.B.8.2

AC Powerline Conducted Emission-Idle

Note: The graphic result above is the maximum of the measurements for both phase line and neutral line.

Final Result 1

Frequency QuasiPeak Meas. Time Bandwidth Filter Line Corr. Margin Limit

(MHz)

(dBµV)

(ms)

(kHz)

(dB) (dB) (dBµV)

0.244500 39.9 0.366000 34.1 0.555000 33.3 0.870000 38.1 1.243500 36.0 8.956500 48.8 Final Result 2
Frequency Average

2000.0 2000.0 2000.0 2000.0 2000.0 2000.0
Meas. Time

9.000 9.000 9.000 9.000 9.000 9.000
Bandwidth

Off L1 19.5 22.1 61.9 Off N 19.4 24.5 58.6 Off N 19.5 22.7 56.0 Off L1 19.5 17.9 56.0 Off L1 19.5 20.0 56.0 Off L1 19.7 11.2 60.0
Filter Line Corr. Margin Limit

(MHz)

(dBµV)

(ms)

(kHz)

(dB)

(dB) (dBµV)

0.244500 33.0 0.366000 33.2 0.555000 26.1 0.870000 27.2 1.239000 26.9 9.213000 40.8

2000.0 2000.0 2000.0 2000.0 2000.0 2000.0

9.000 9.000 9.000 9.000 9.000 9.000

Off L1 19.5 18.9 51.9 Off L1 19.4 15.4 48.6 Off N 19.5 19.9 46.0 Off L1 19.5 18.8 46.0 Off L1 19.5 19.1 46.0 Off L1 19.7 9.2 50.0

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Page 43 of 45.

No. 23T04Z70506-06
B.9. Antenna Requirement
The antenna of the device is permanently attached. There are no provisions for connection to an external antenna. The unit complies with the requirement of FCC Part 15.203.

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Page 44 of 45.

ANNEX C: Accreditation Certificate

No. 23T04Z70506-06

***END OF REPORT***

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Page 45 of 45.



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