CERTIFICATION TEST REPORT

Report Number: 4790541040-E9V2

Applicant: SAMSUNG ELECTRONICS CO., LTD.

129 SAMSUNG-RO, YEONGTONG-GU, SUWON-SI, GYEONGGI-DO, 16677, KOREA

Model: SM-S916B/DSM, SM-S916B

FCC ID: A3LSMS916B

EUT Description: GSM/WCDMA/LTE/5G NR Phone + BT/BLE, DTS/UNII a/b/g/n/ac/ax, NFC, WPT and UWB.

Test Standard(s): FCC 47 CFR PART 15 SUBPART C

Date Of Issue: 2022-11-08

Prepared by: UL Korea, Ltd.

26th floor, 152, Teheran-ro, Gangnam-gu Seoul, 06236, Korea

Suwon Test Site: UL Korea, Ltd. Suwon Laboratory

218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675, Korea

TEL: (031) 337-9902 FAX: (031) 213-5433

Accreditation: IAS ACCREDITED Testing Laboratory

Revision History

Rev. Issue Date Revisions Revised By
V1 2022-10-27 Initial issue Yeonhee Lim
V2 2022-11-08 Updated to address TCB's Question Yeonhee Lim

Table of Contents

  1. ATTESTATION OF TEST RESULTS
  2. TEST METHODOLOGY
  3. FACILITIES AND ACCREDITATION
  4. CALIBRATION AND UNCERTAINTY
    • 4.1. MEASURING INSTRUMENT CALIBRATION
    • 4.2. SAMPLE CALCULATION
    • 4.3. MEASUREMENT UNCERTAINTY
    • 4.4. DECISION RULE
  5. EQUIPMENT UNDER TEST
    • 5.1. DESCRIPTION OF EUT
    • 5.2. MAXIMUM E-FIELD STRENGTH
    • 5.3. PRELIMINARY TEST CONFIGURATIONS
    • 5.4. MODIFICATIONS
    • 5.5. DESCRIPTION OF TEST SETUP
  6. TEST AND MEASUREMENT EQUIPMENT
  7. APPLICABLE LIMITS AND TEST RESULTS
    • 7.1. RADIATED EMISSIONS
    • 7.2. AC MAINS LINE CONDUCTED EMISSIONS

1. ATTESTATION OF TEST RESULTS

COMPANY NAME: SAMSUNG ELECTRONICS CO., LTD.

EUT DESCRIPTION: GSM/WCDMA/LTE/5G NR Phone + BT/BLE, DTS/UNII a/b/g/n/ac/ax, NFC, WPT and UWB.

MODEL NUMBER: SM-S916B/DS, SM-S916B

SERIAL NUMBER: R3CT90EXXPJ (RADIATED);

DATE TESTED: 2022-09-30 ~ 2022-10-12;

APPLICABLE STANDARDS

STANDARD TEST RESULTS
CFR 47 Part 15 Subpart C Complies

UL Verification Services Inc. tested the above equipment in accordance with the requirements set forth in the above standards. All indications of Pass/Fail in this report are opinions expressed by UL Verification Services Inc. based on interpretations and/or observations of test results. Measurement Uncertainties were not taken into account and are published for informational purposes only. The test results show that the equipment tested is capable of demonstrating compliance with the requirements as documented in this report.

Note: The results documented in this report apply only to the tested sample, under the conditions and modes of operation as described herein. This document may not be altered or revised in any way unless done so by UL Verification Services Inc. and all revisions are duly noted in the revisions section. Any alteration of this document not carried out by UL Verification Services Inc. will constitute fraud and shall nullify the document. This report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, any agency of the Federal Government, or any agency of any government.

Approved & Released For UL Korea, Ltd. By:

Seokhwan Hong
Suwon Lab Engineer
UL Korea, Ltd.

Tested By:

Yeonhee Lim
Suwon Lab Engineer
UL Korea, Ltd.

2. TEST METHODOLOGY

The tests documented in this report were performed in accordance with following methods:

  1. FCC CFR 47 Part 2.
  2. FCC CFR 47 Part 15.
  3. ANSI C63.10-2013.
  4. 680106 D01 RF Exposure Wireless Charging Apps v03r01.

3. FACILITIES AND ACCREDITATION

The test sites and measurement facilities used to collect data are located at 218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675, Korea. Line conducted emissions are measured only at the 218 address. The following table identifies which facilities were utilized for radiated emission measurements documented in this report. Specific facilities are also identified in the test results sections.

218 Maeyeong-ro Facilities

  • Chamber 1 (3m semi-anechoic chamber)
  • Chamber 2 (3m semi-anechoic chamber)
  • Chamber 3 (3m semi-anechoic chamber)
  • Chamber 4 (3m Full-anechoic chamber)
  • Chamber 5 (3m Full-anechoic chamber)

UL Korea, Ltd. is accredited by IAS, Laboratory Code TL-637. The full scope of accreditation can be viewed at IAS Accreditation Certificate.

4. CALIBRATION AND UNCERTAINTY

4.1. MEASURING INSTRUMENT CALIBRATION

The measuring equipment utilized to perform the tests documented in this report has been calibrated in accordance with the manufacturer's recommendations, and is traceable to recognized national standards.

4.2. SAMPLE CALCULATION

Where relevant, the following sample calculation is provided:

Field Strength (dBuV/m) = Measured Voltage (dBuV) + Antenna Factor (dB/m) + Cable Loss (dB) – Preamp Gain (dB)
Example: 36.5 dBuV + 18.7 dB/m + 0.6 dB – 26.9 dB = 28.9 dBuV/m

Corrected Reading (dBuV) = Meter Reading (dBuV) + External Cable (dB) + Cableloss (dB)
Example: 46.62 dBuV + 9.8 dB + 0.1 dB = 56.52 dBuV

4.3. MEASUREMENT UNCERTAINTY

Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the apparatus:

PARAMETER UNCERTAINTY
Conducted Disturbance, 0.15 to 30 MHz 3.02 dB
Radiated Disturbance, 9 kHz to 30 MHz 1.72 dB
Radiated Disturbance, 30 MHz to 1 GHz 4.05 dB

Uncertainty figures are valid to a confidence level of 95%.

4.4. DECISION RULE

Decision rule for statement(s) of conformity is based on Procedure 2, Clause 4.4.3 in IEC Guide 115:2007.

5. EQUIPMENT UNDER TEST

5.1. DESCRIPTION OF EUT

The EUT is a GSM/WCDMA/LTE/5G NR Phone + BT/BLE, DTS/UNII a/b/g/n/ac/ax and NFC, WPT and UWB. This test report addresses the CDC (WPT) operational mode.

This report covers the Samsung models SM-S916B/DS and SM-S916B. These models are identical in hardware except SM-S916B has single SIM tray. With some pre-scan, model SM-S916B/DS was set for final test.

5.2. MAXIMUM E-FIELD STRENGTH

Power sharing mode

Fundamental Frequency [kHz] Mode E-field (300m distance) FCC[dBuV/m]
110 - 148 Charging -0.16

5.3. PRELIMINARY TEST CONFIGURATIONS

The Power Sharing mode of the EUT was investigated in three orthogonal orientations X, Y and Z. It was determined that Y orientation was worst-case orientation; therefore, radiated testing was reported with the EUT in Y orientation.

WORST-CASE CONFIGURATION AND MODE

Mode Test Case Description
Power sharing mode 1 Charging from EUT to Phone
2 Charging from EUT(Charging from TA) to Phone
3 Charging from EUT to Phone (Cross position)
4 Charging from EUT(Charging from TA) to Phone (Cross position)
5 Charging from EUT to Wearable device
6 Charging from EUT(Charging from TA) to Wearable device

For radiated test, test case 1/3/5, the EUT can operate the power sharing mode when battery level is over 30%. Because test results are not different between fully charged status and battery level 30% status(EUT condition), test were performed fully charged condition.

Also according to current client device's(Phone and Wearable device) battery level, test results are different. Because the test results were worst when the battery level was 1%~20%, tests were performed when the battery level was 1%~20%. (Client device)

During radiated test for test case 1/3/5, the EUT didn't connected AC adapter, but for AC line conducted test for all test case was performed with connected with AC adapter.

For power sharing mode, test results of case 5 is worst, so this test report described test case 5.

5.4. MODIFICATIONS

No modifications were made during testing.

5.5. DESCRIPTION OF TEST SETUP

Support Equipment List

Description Manufacturer Model Serial Number FCC ID
Charger SAMSUNG EP-TA800 R37R38J4A28SE3 N/A
Data Cable SAMSUNG EP-DN980 GH39-02111ABBE N/A
Mobile Phone SAMSUNG SM-G986B R3CMB0C70XN A3LSMG986B
Wearable Device SAMSUNG SM-R835 RFAM90ZXFTF A3LSMR835

I/O Cable List

Cable No. Port # of identical ports Connector Type Cable Type Cable Length (m) Remarks
1 DC Power 1 C Type Shielded 1.0 m N/A

TEST SETUP DIAGRAMS

The EUT is installed in a typical configuration. Charging from EUT.

NOTE: Test case 1/3/5, EUT did not connected with Travel adapter (AC Main) in below set-up diagram for radiated test.

Test Case 1 and 2: Charging Phone

Diagram Description: Shows AC Main connected to an Adapter (labeled '1' and '2'), which is then connected to a 'Charging Phone' (EUT).

Test Case 3 and 4: Charging Phone (Cross position)

Diagram Description: Similar to Test Case 1 and 2, showing AC Main, Adapter, and 'Charging Phone' (EUT), with the phone possibly in a different orientation.

Test Case 5 and 6: Charging Wearable device

Diagram Description: Shows AC Main connected to an Adapter (labeled '1' and '2'), which is then connected to a 'Wearable device' placed on top of the 'EUT'.

6. TEST AND MEASUREMENT EQUIPMENT

The following test and measurement equipment was utilized for the tests documented in this report:

Test Equipment List

Description Manufacturer Model S/N Cal Due
Antenna, Bilog, 30MHz-1GHz SCHWARZBECK VULB9163 845 2024-08-15
Antenna, Bilog, 30MHz-1GHz SCHWARZBECK VULB9163 749 2024-08-15
Preamplifier, 1000 MHz Sonoma 310N 341282 2023-08-02
Preamplifier, 1000 MHz Sonoma 310N 351741 2023-08-02
EMI Test Receive, 40 GHz R&S ESU40 100457 2023-07-29
EMI Test Receive, 3 GHz R&S ESR3 101832 2023-08-01
Spectrum Analyzer, 7 GHz Agilent/HP N9010A MY54200580 2023-08-01
LISN R&S ENV-216 101837 2023-08-04
Antenna, Loop, 9kHz-30MHz R&S HFH2-Z2 100418 2023-10-06

UL Software

Description Manufacturer Model Version
Radiated software UL UL EMC Ver 9.5
AC Line Conducted software UL UL EMC Ver 9.5

7. APPLICABLE LIMITS AND TEST RESULTS

7.1. RADIATED EMISSIONS

TEST PROCEDURE

ANSI C63.10: 2013

The highest clock frequency generated or used in the EUT is 110 kHz therefore the frequency range was investigated from 9 kHz to 30 MHz.

LIMIT

FCC §15.209 (a)

Frequency (MHz) Field Strength (microvolts/meter) Measurement Distance (m)
0.009-0.490 2400/F(kHz) 300
0.490-1.705 24000/F(kHz) 30
1.705-30.0 30 30
30-88 100 3
88 to 216 150 3
216 to 960 200 3
Above 960 MHz 500 3

Note: The lower limit shall apply at the transition frequency.

RESULTS

The EUT belongs to Test Case 5.

Although these tests were performed other than open field test site, adequate comparison measurements were confirmed against 300 m open field test site. Therefore sufficient tests were made to demonstrate that the alternative site produces results that correlate with the ones of tests made in an open field based on KDB 414788 D01.

Radiated Emissions 9 kHz to 30 MHz (Power sharing mode Test Case 5)

A chart displays radiated emission levels versus frequency. The chart includes Peak and Average limits.

Trace Markers [Face On]
Marker Frequency (MHz) Meter Reading (dBuV) Det HFH2-Z2_Loop Antenna Cable Loss (dB) Dist Corr 300m Corrected Reading dBuV/m Peak Limit (dBuV/m) Margin (dB) Avg Limit (dBuV/m) Margin (dB) Azimuth (Degs)
**1 .11028 59.94 Pk 19.8 .1 -80 -.16 46.78 -46.94 26.78 -26.94 0-360
2 .33261 41.26 Pk 19.7 .1 -80 -18.94 37.17 -56.11 17.17 -36.11 0-360
3 .4303 36.99 Pk 19.7 .1 -80 -23.21 34.93 -58.14 14.93 -38.14 0-360
Trace Markers [Face Off]
Marker Frequency (MHz) Meter Reading (dBuV) Det HFH2-Z2_Loop Antenna Cable Loss (dB) Dist Corr 30m Corrected Reading dBuV/m Peak Limit (dBuV/m) Margin (dB) Avg Limit (dBuV/m) Margin (dB) Azimuth (Degs)
**8 .11034 55.72 Pk 19.8 .1 -80 -4.38 46.77 -51.15 26.77 -31.15 0-360
9 .33221 36.61 Pk 19.7 .1 -80 -23.59 37.18 -60.77 17.18 -40.77 0-360
10 .43171 34.41 Pk 19.7 .1 -80 -25.79 34.9 -60.69 14.9 -40.69 0-360

Note: Radiated test were investigated with three receiving antenna axes: Face-on, Face-off and horizontal (parallel to the ground plane) and the worse orientations of Face-on and Face-off were set for final test.

7.2. AC MAINS LINE CONDUCTED EMISSIONS

TEST PROCEDURE

ANSI C63.10: 2013

The EUT is placed on a non-conducting table 40 cm from the vertical ground plane and 80 cm above the horizontal ground plane. The EUT is configured in accordance with ANSI C63.10.

The receiver is set to a resolution bandwidth of 9 kHz. Peak detection is used unless otherwise noted as quasi-peak or average.

Line conducted data is recorded for both NEUTRAL and HOT lines.

LIMIT

FCC §15.207 (a)

Frequency range (MHz) Limits (dBμV) Quasi-peak Limits (dBμV) Average
0.15 to 0.50 66 to 56* 56 to 46*
0.50 to 5 56 46
5 to 30 60 50

*Decreases with the logarithm of the frequency.

RESULTS

The EUT belongs to Test Case 6.

WORST EMISSIONS (Power sharing mode Test Case 6)

A chart displays conducted emission levels versus frequency for Phase L1.

LINE 1 RESULTS
Range 1: Phase L1 .15 - 30MHz
Marker Frequency (MHz) Meter Reading (dBuV) Det 101836_With EX_L1[dB] CABLELOSS(dB) Corrected Reading (dB(uVolts)) CFR 47 FCC PART 15 Class B QP Margin (dB) CFR 47 FCC PART 15 Class B AV Margin (dB)
1 .189 38.9 Pk 9.9 .2 49 64.08 -15.08 54.49 -24.77
2 .18 19.62 Av 9.9 .2 29.72 54.49 -24.77 N/A N/A
3 .201 36.5 Pk 9.8 .2 46.5 63.57 -17.07 52.63 -27.43
4 .225 15.3 Av 9.7 .2 25.2 52.63 -27.43 N/A N/A
5 .225 34.49 Pk 9.7 .2 44.39 62.63 -18.24 52.63 -27.43
6 .225 15.3 Av 9.7 .2 25.2 52.63 -27.43 N/A N/A
7 .432 31.12 Pk 9.8 .2 41.12 57.21 -16.09 47.69 -24
8 .408 13.69 Av 9.8 .2 23.69 47.69 -24 46 -24
9 4.323 23.37 Pk 9.7 .3 33.37 56 -22.63 46 -24
10 4.314 12 Av 9.7 .3 22 46 -24 N/A N/A
11 11.499 20.87 Pk 9.9 .3 31.07 60 -28.93 50 -26.82
12 11.499 12.98 Av 9.9 .3 23.18 50 -26.82 N/A N/A

Pk - Peak detector

Av - Average detection

A chart displays conducted emission levels versus frequency for Phase N.

LINE 2 RESULTS
Range 2: Phase N .15 - 30MHz
Marker Frequency (MHz) Meter Reading (dBuV) Det 101836_With EX_N[dB] CABLELOSS(dB) Corrected Reading (dB(uVolts)) CFR 47 FCC PART 15 Class B QP Margin (dB) CFR 47 FCC PART 15 Class B AV Margin (dB)
13 .162 35.67 Pk 9.9 .1 45.67 65.36 -19.69 55.36 -27.15
14 .162 18.21 Av 9.9 .1 28.21 55.36 -27.15 N/A N/A
15 .18 33.5 Pk 9.9 .2 43.6 64.49 -20.89 54.21 -28.17
16 .186 15.94 Av 9.9 .2 26.04 54.21 -28.17 N/A N/A
17 .222 30.78 Pk 9.7 .2 40.68 62.74 -22.06 52.74 -30.39
18 .222 12.45 Av 9.7 .2 22.35 52.74 -30.39 N/A N/A
19 .465 25.28 Pk 9.9 .2 35.38 56.6 -21.22 46.6 -24.34
20 .465 12.16 Av 9.9 .2 22.26 46.6 -24.34 N/A N/A
21 11.82 27.54 Pk 9.9 .3 37.74 60 -22.26 50 -25.92
22 11.823 13.88 Av 9.9 .3 24.08 50 -25.92 N/A N/A
23 20.457 28.14 Pk 10.3 .4 38.84 60 -21.16 50 -25.88
24 20.457 13.42 Av 10.3 .4 24.12 50 -25.88 N/A N/A

Pk - Peak detector

Av - Average detection

END OF TEST REPORT

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