SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd

Samsung Electronics Co Ltd BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet

FCC ID Filing: A3LSMT830

Page 1 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 2 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 3 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 4 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 5 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 6 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 7 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 8 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 9 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 10 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 11 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 12 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 13 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 14 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 15 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 16 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 17 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 18 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 19 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 20 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 21 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 22 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Page 23 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
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Page 25 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
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Page 33 of SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
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FCC 47 CFR PART 15 SUBPART E
INDUSTRY CANADA RSS-247 ISSUE 2
UNII
CERTIFICATION TEST REPORT
FOR
BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet
MODEL NUMBER : SM-T830
FCC ID: A3LSMT830
IC : 649E-SMT830
REPORT NUMBER: 4788494706-E4V1
ISSUE DATE: JUN 25, 2018
Prepared for
SAMSUNG ELECTRONICS CO., LTD.
129 SAMSUNG-RO, YEONGTONG-GU, SUWON-SI,
GYEONGGI-DO, 16677, KOREA
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
TL-637
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
Revision History
Rev.
Issue Date
Revisions
Revised By
V1
06/25/18
Initial issue
Junwhan Lee
Page 2 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
TABLE OF CONTENTS
1.
ATTESTATION OF TEST RESULTS ................................................................................. 7
1.1.
INTRODUCTION OF TEST DATA REUSE .................................................................. 8
1.2.
DIFFERENCE .............................................................................................................. 8
1.3.
SPOT CHECK VERIFICATION DATA ......................................................................... 8
1.4.
REFERENCE DETAIL ................................................................................................. 9
2.
TEST METHODOLOGY ....................................................................................................10
3.
FACILITIES AND ACCREDITATION ................................................................................10
4.
CALIBRATION AND UNCERTAINTY ...............................................................................10
5.
4.1.
MEASURING INSTRUMENT CALIBRATION .............................................................10
4.2.
SAMPLE CALCULATION ...........................................................................................10
4.3.
MEASUREMENT UNCERTAINTY ..............................................................................11
EQUIPMENT UNDER TEST ..............................................................................................12
5.1.
DESCRIPTION OF EUT .............................................................................................12
5.2.
MAXIMUM OUTPUT POWER.....................................................................................13
5.3.
DESCRIPTION OF AVAILABLE ANTENNAS .............................................................14
5.4.
List of test reduction and modes covering other modes: .............................................14
5.5.
WORST-CASE CONFIGURATION AND MODE .........................................................16
5.6.
DESCRIPTION OF TEST SETUP ...............................................................................17
6.
TEST AND MEASUREMENT EQUIPMENT ......................................................................19
7.
SUMMARY TABLE ...........................................................................................................20
8.
MEASUREMENT METHODS ............................................................................................21
9.
REFERENCE MEASUREMENTS RESULTS ....................................................................22
9.1.
ON TIME AND DUTY CYCLE RESULTS ....................................................................22
9.2.
DUTY CYCLE PLOTS ................................................................................................22
9.3. 26 dB BANDWIDTH ....................................................................................................25
9.3.1. 802.11a MODE IN THE 5.2 GHz BAND ...............................................................26
9.3.2. 802.11n HT20 MODE IN THE 5.2 GHz BAND .....................................................26
9.3.3. 802.11n HT40 MODE IN THE 5.2 GHz BAND .....................................................26
9.3.4. 802.11ac VHT80 MODE IN THE 5.2 GHz BAND .................................................26
9.3.5. 802.11a MODE IN THE 5.3 GHz BAND ...............................................................27
9.3.6. 802.11n HT20 MODE IN THE 5.3 GHz BAND .....................................................27
9.3.7. 802.11n HT40 MODE IN THE 5.3 GHz BAND .....................................................27
9.3.8. 802.11ac VHT80 MODE IN THE 5.3 GHz BAND .................................................27
9.3.9. 802.11a MODE IN THE 5.5 GHz BAND ...............................................................28
Page 3 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
9.3.10.
9.3.11.
9.3.12.
9.3.13.
9.3.14.
9.3.15.
9.3.16.
9.3.17.
DATE: JUN 25, 2018
IC : 649E-SMT830
802.11n HT20 MODE IN THE 5.5 GHz BAND .....................................................28
802.11n HT40 MODE IN THE 5.5 GHz BAND .....................................................28
802.11ac VHT80 MODE IN THE 5.5 GHz BAND .................................................28
802.11a MODE IN THE 5.8 GHz BAND ...............................................................29
802.11n HT20 MODE IN THE 5.8 GHz BAND .....................................................29
802.11n HT40 MODE IN THE 5.8 GHz BAND .....................................................29
802.11ac VHT80 MODE IN THE 5.8 GHz BAND .................................................29
26 dB BANDWIDTH PLOTS ................................................................................30
9.4. 99% BANDWIDTH ......................................................................................................43
9.4.1. 802.11a MODE IN THE 5.2 GHz BAND ...............................................................43
9.4.2. 802.11n HT20 MODE IN THE 5.2 GHz BAND .....................................................44
9.4.3. 802.11n HT40 MODE IN THE 5.2 GHz BAND .....................................................44
9.4.4. 802.11ac VHT80 MODE IN THE 5.2 GHz BAND .................................................44
9.4.5. 802.11a MODE IN THE 5.3 GHz BAND ...............................................................44
9.4.6. 802.11n HT20 MODE IN THE 5.3 GHz BAND .....................................................45
9.4.7. 802.11n HT40 MODE IN THE 5.3 GHz BAND .....................................................45
9.4.8. 802.11ac VHT80 MODE IN THE 5.3 GHz BAND .................................................45
9.4.9. 802.11a MODE IN THE 5.5 GHz BAND ...............................................................46
9.4.10. 802.11n HT20 MODE IN THE 5.5 GHz BAND .....................................................46
9.4.11. 802.11n HT40 MODE IN THE 5.5 GHz BAND .....................................................46
9.4.12. 802.11ac VHT80 MODE IN THE 5.5 GHz BAND .................................................46
9.4.13. 802.11a MODE IN THE 5.8 GHz BAND ...............................................................47
9.4.14. 802.11n HT20 MODE IN THE 5.8 GHz BAND .....................................................47
9.4.15. 802.11n HT40 MODE IN THE 5.8 GHz BAND .....................................................47
9.4.16. 802.11ac VHT80 MODE IN THE 5.8 GHz BAND .................................................47
9.4.17. 99% BANDWIDTH PLOTS ..................................................................................48
10. ANTENNA PORT TEST RESULTS ...................................................................................61
10.1.
6 dB BANDWIDTH ..................................................................................................61
10.1.1. 802.11a MODE IN THE 5.8 GHz BAND ...............................................................62
10.1.2. 802.11n HT20 MODE IN THE 5.8 GHz BAND .....................................................62
10.1.3. 802.11n HT40 MODE IN THE 5.8 GHz BAND .....................................................62
10.1.4. 802.11n VHT80 MODE IN THE 5.8 GHz BAND ...................................................62
10.1.5. 6 dB BANDWIDTH PLOTS ..................................................................................63
10.2.
OUTPUT POWER AND PPSD ................................................................................67
10.2.1. 802.11a MODE IN THE 5.2 GHz BAND ...............................................................69
10.2.2. 802.11n HT20 MODE IN THE 5.2 GHz BAND .....................................................70
10.2.3. 802.11n HT40 MODE IN THE 5.2 GHz BAND .....................................................71
10.2.4. 802.11ac VHT80 MODE IN THE 5.2 GHz BAND .................................................72
10.2.5. 802.11a MODE IN THE 5.3 GHz BAND ...............................................................73
10.2.6. 802.11n HT20 MODE IN THE 5.3 GHz BAND .....................................................74
10.2.7. 802.11n HT40 MODE IN THE 5.3 GHz BAND .....................................................75
10.2.8. 802.11ac VHT80 MODE IN THE 5.3 GHz BAND .................................................76
10.2.9. 802.11a MODE IN THE 5.5 GHz BAND ...............................................................77
10.2.10. 802.11n HT20 MODE IN THE 5.5 GHz BAND .....................................................78
10.2.11. 802.11n HT40 MODE IN THE 5.5 GHz BAND .....................................................79
10.2.12. 802.11ac VHT80 MODE IN THE 5.5 GHz BAND .................................................80
10.2.13. 802.11a MODE IN THE 5.8 GHz BAND ...............................................................81
10.2.14. 802.11n HT20 MODE IN THE 5.8 GHz BAND .....................................................82
10.2.15. 802.11n HT40 MODE IN THE 5.8 GHz BAND .....................................................83
Page 4 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
10.2.16.
10.2.17.
10.2.18.
10.2.19.
10.2.20.
10.2.21.
DATE: JUN 25, 2018
IC : 649E-SMT830
802.11ac VHT80 MODE IN THE 5.8 GHz BAND .................................................84
802.11a MODE IN THE STRADDLE CHANNEL ..................................................85
802.11n HT20 MODE IN THE STRADDLE CHANNEL ........................................86
802.11n HT40 MODE IN THE STRADDLE CHANNEL ........................................87
802.11ac VHT80 MODE IN THE STRADDLE CHANNEL ....................................88
OUTPUT POWER AND PPSD PLOTS ................................................................89
11. TRANSMITTER ABOVE 1 GHz .......................................................................................106
11.1.
5.2 GHz .................................................................................................................109
11.1.1. TX Above 1GHz 802.11a 2Tx CDD MODE IN THE 5.2GHz BAND ......................109
11.1.2. TX Above 1GHz 802.11n HT20 2Tx CDD MODE IN THE 5.2GHz BAND.............117
11.1.3. TX Above 1GHz 802.11n HT40 2Tx CDD MODE IN THE 5.2GHz BAND.............125
11.1.4. TX ABOVE 1GHz 802.11ac VHT80 2Tx CDD MODE IN THE 5.2GHz BAND..........131
11.2.
5.3 GHz .................................................................................................................135
11.2.1. TX ABOVE 1 GHz 802.11a 2Tx CDD MODE IN THE 5.3 GHz BAND ..................135
11.2.2. TX ABOVE 1GHz 802.11n HT20 2Tx CDD MODE IN THE 5.3GHz BAND ..........143
11.2.3. TX ABOVE 1GHz 802.11n HT40 2Tx CDD MODE IN THE 5.3GHz BAND ..........151
11.2.4. TX ABOVE 1GHz 802.11ac VHT80 2Tx CDD MODE IN THE 5.3GHz BAND ......157
RESTRICTED BANDEDGE (High CHANNEL) .................................................................157
11.3.
5.5-5.6 GHz ...........................................................................................................161
11.3.1. TX ABOVE 1 GHz 802.11a 2Tx CDD MODE IN THE 5.5 GHz BAND ..................161
11.3.2. TX ABOVE 1GHz 802.11n HT20 2Tx CDD MODE IN THE 5.5GHz BAND ..........171
11.3.3. TX ABOVE 1GHz 802.11n HT40 2Tx CDD MODE IN THE 5.5GHz BAND ..........181
11.3.4. TX ABOVE 1GHz 802.11ac VHT80 2Tx CDD MODE IN THE 5.5GHz BAND..........191
11.3.5. TX ABOVE 1GHz 802.11a 2Tx CDD MODE IN THE STRADDLE CHANNEL .........199
11.3.6. TX ABOVE 1GHz 802.11n HT20 2Tx CDD MODE IN THE STRADDLE CHANNEL 201
11.3.7. TX ABOVE 1GHz 802.11n HT40 2Tx CDD MODE IN THE STRADDLE CHANNEL 203
11.3.8. TX ABOVE 1GHz 802.11ac VHT80 2Tx CDD MODE IN THE STRADDLE CHANNEL
205
11.4.
5.8 GHz .................................................................................................................207
11.4.1. TX ABOVE 1GHz 802.11a 2Tx CDD MODE IN THE 5.8GHz BAND ....................207
11.4.2. TX ABOVE 1GHz 802.11n HT20 2Tx CDD MODE IN THE 5.8GHz BAND ..........217
11.4.3. TX ABOVE 1GHz 802.11n HT40 2Tx CDD MODE IN THE 5.8GHz BAND ..........227
11.4.4. TX ABOVE 1GHz 802.11ac VHT80 2Tx CDD MODE IN THE 5.8GHz BAND..........235
11.5.
Spurious Emissions for Simultaneous Transmission .............................................241
11.5.1. Worst test case condition ...................................................................................241
12. WORST-CASE BELOW 1 GHz .......................................................................................248
13. AC POWER LINE CONDUCTED EMISSIONS ................................................................252
14. DYNAMIC FREQUENCY SELECTION ............................................................................257
14.1.
OVERVIEW ...........................................................................................................257
14.1.1. LIMITS ...............................................................................................................257
14.1.1. TEST AND MEASUREMENT SYSTEM .............................................................261
14.1.2. SETUP OF EUT .................................................................................................264
14.1.3. DESCRIPTION OF EUT ....................................................................................265
14.2.
RESULTS FOR 20 MHz BANDWIDTH ..................................................................266
Page 5 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
14.2.1.
14.2.2.
14.2.3.
14.2.4.
DATE: JUN 25, 2018
IC : 649E-SMT830
TEST CHANNEL ...............................................................................................266
RADAR WAVEFORM AND TRAFFIC ................................................................266
OVERLAPPING CHANNEL TESTS ...................................................................268
MOVE AND CLOSING TIME .............................................................................268
14.3.
RESULTS FOR 40 MHz BANDWIDTH ..................................................................271
14.3.1. TEST CHANNEL ...............................................................................................271
14.3.2. RADAR WAVEFORM AND TRAFFIC ................................................................271
14.3.3. OVERLAPPING CHANNEL TESTS ...................................................................273
14.3.4. MOVE AND CLOSING TIME .............................................................................273
14.4.
RESULTS FOR 80 MHz BANDWIDTH ..................................................................276
14.4.1. TEST CHANNEL ...............................................................................................276
14.4.2. RADAR WAVEFORM AND TRAFFIC ................................................................276
14.4.3. OVERLAPPING CHANNEL TESTS ...................................................................278
14.4.4. MOVE AND CLOSING TIME .............................................................................278
15. SETUP PHOTOS .............................................................................................................281
Page 6 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
1. ATTESTATION OF TEST RESULTS
COMPANY NAME:
SAMSUNG ELECTRONICS CO., LTD.
EUT DESCRIPTION:
BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet
MODEL NUMBER:
SM-T830
SERIAL NUMBER:
R32K10045KW (RADIATED, Original);
R32K10044PB (CONDUCTED, Original)
R32K300G7VL (RADIATED, Spot check)
DATE TESTED:
APR 11, 2018 - JUN 08, 2018 (Original)
JUN 16, 2018 (Spot check)
APPLICABLE STANDARDS
STANDARD
TEST RESULTS
CFR 47 Part 15 Subpart E
INDUSTRY CANADA RSS-247 Issue 2
Pass
INDUSTRY CANADA RSS-GEN Issue 5
Pass
Pass
UL Korea, Ltd. 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 Korea,
Ltd. 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 Korea, Ltd. and all revisions are duly noted in the
revisions section. Any alteration of this document not carried out by UL Korea, Ltd. 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 IAS, any agency of the Federal
Government, or any agency of any government.
Approved & Released For
UL Korea, Ltd. By:
Tested By:
SungGil Park
Suwon Lab Engineer
UL Korea, Ltd.
Junwhan Lee
Suwon Lab Engineer
UL Korea, Ltd.
Page 7 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
1.1.
DATE: JUN 25, 2018
IC : 649E-SMT830
INTRODUCTION OF TEST DATA REUSE
This report referenced from the FCC ID: A3LSMT835 NII WLAN(FCC CFR 47 Part 15C).
And the applicant takes full responsibility that the test data as referenced in this report represent
compliance for this FCC ID.
1.2.
DIFFERENCE
The FCC ID: A3LSMT830(IC : 649E-SMT830, Model number : SM-T830), shares the same
enclosure and circuit board as FCC ID: A3LSMT835 (Model number : SM-T835). The WLAN
antennas and surrounding circuitry and layout are identical between these two units.
After confirming through preliminary radiated emissions that the performance of the FCC ID:
A3LSMT835 (Model number : SM-T835) remains representative of FCC ID: A3LSMT830(IC :
649E-SMT830, Model number : SM-T830). The test data of FCC ID: A3LSMT835 (Model
number : SM-T835) being submitted for this application to cover WLAN features.
Model number, SM-T835, is not certified for ISED certification.
1.3.
SPOT CHECK VERIFICATION DATA
(Worst case of the radiated spurious and band edge emissions)
Band
Test Item
Mode
Frequency
Test Limit
Original model
SM-T835 Results
FCC ID : A3LSMT835
UNII
WLAN
(5GHz)
Spot check model
SM-T830 Results
FCC ID : A3LSMT830
IC : 649E-SMT830
Deviation
Band Edge
802.11ac VHT80
5210 MHz
54 dBuV/m
46.09 dBuV/m
45.81 dBuV/m
-0.28 dB
RSE
802.11 a
5240 MHz
54 dBuV/m
40.14 dBuV/m
40.54 dBuV/m
0.40 dB
Band Edge
802.11ac VHT80
5290 MHz
54 dBuV/m
46.55 dBuV/m
48.69 dBuV/m
2.14 dB
RSE
802.11ac VHT80
5290 MHz
54 dBuV/m
40.11 dBuV/m
42.04 dBuV/m
1.93 dB
Band Edge
802.11ac VHT80
5530 MHz
54 dBuV/m
45.64 dBuV/m
46.58 dBuV/m
0.94 dB
RSE
802.11ac VHT80
5690 MHz
54 dBuV/m
41.76 dBuV/m
42.67 dBuV/m
0.91 dB
Band Edge
802.11 a
5825 MHz
-27 dBm
-35.13 dBm
-36.50 dBm
-1.37 dB
RSE
802.11 n HT20
5745 MHz
54 dBuV/m
40.53 dBuV/m
42.17 dBuV/m
1.64 dB
Remark
Comparison of two models, upper deviation is within 3dB range and all test results are under
FCC Technical Limits.
Page 8 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
1.4.
DATE: JUN 25, 2018
IC : 649E-SMT830
REFERENCE DETAIL
Reference application that contains the reused reference data.
Equipment
Class
DTS
DXX
NII
Reference
FCC ID
A3LSMT835
A3LSMT835
A3LSMT835
Type
Reference
Grant/Permissive
Application
Change
Folder
Test/RF
Report Tittle / Section
Exposure
4788429415E1V2
Test
FCC Report DTS
WLAN /
Test results of
Ch.1~Ch.11
4788429415E2V1
Test
FCC Report BLE
All sections
Grant
4788429415E5V1
Test
FCC Report ANT+ /
All sections
Grant
4788429415E4V1
Test
FCC Report UNII
WLAN /
All sections
Grant
Page 9 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
2. TEST METHODOLOGY
The tests documented in this report were performed in accordance with following methods.
1.
2.
3.
4.
5.
6.
7.
8.
9.
FCC CFR 47 Part 2.
FCC CFR 47 Part 15.
IC RSS-GEN Issue 5.
IC RSS-247 Issue 2.
KDB 789033 D02 General UNII Test Procedures New Rules v02r01
KDB 905462 D02 UNII DFS Compliance Procedures New Rules v02
KDB 905462 D03 UNII Clients Without Radar Detection New Rules v01r02
KDB 662911 D01 v02r01
ANSI C63.10-2013.
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
Chamber 1
Chamber 2
Chamber 3
UL Korea, Ltd. is accredited by IAS, Laboratory Code TL-637. The full scope of accreditation
can be viewed at http://www.iasonline.org/PDF/TL/TL-637.pdf.
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)
36.5 dBuV + 18.7 dB/m + 0.6 dB – 26.9 dB = 28.9 dBuV/m
Page 10 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
4.3.
DATE: JUN 25, 2018
IC : 649E-SMT830
MEASUREMENT UNCERTAINTY
Where relevant, the following measurement uncertainty levels have been estimated for tests
performed on the apparatus:
PARAMETER
Conducted Disturbance, 0.15 to 30 MHz
Radiated Disturbance, Below 1GHz
Radiated Disturbance, Above 1 GHz
UNCERTAINTY
2.32 dB
3.86 dB
5.97 dB
Uncertainty figures are valid to a confidence level of 95%.
Page 11 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
5. EQUIPMENT UNDER TEST
5.1.
DESCRIPTION OF EUT
The EUT is a BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet .
This test report addresses the NII (UNII) operational mode.
WiFi MIMO Condition
Frequency
2.4 GHz
5 GHz
Mode
802.11b
802.11g
802.11g MIMO
802.11n
802.11n MIMO
802.11a
802.11a MIMO
802.11n
802.11n MIMO
802.11ac
802.11ac MIMO
Antenna 1
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
Antenna 2
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
TX / RX
Simultaneous TX Condition
Frequency
2.4 GHz Antenna 1 + 5 GHz Antenna 2
2.4 GHz Antenna 2 + 5 GHz Antenna 1
2.4 GHz Antenna 1 + 5 GHz Antenna 1
2.4 GHz Antenna 2 + 5 GHz Antenna 2
Supported
Yes
No
No
No
Spurious Emissions for Simultaneous Transmission were reported on the section 11.5.
Page 12 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
5.2.
DATE: JUN 25, 2018
IC : 649E-SMT830
MAXIMUM OUTPUT POWER
The transmitter has a maximum total conducted average output power as follows:
Frequency
Range
[MHz]
5180 - 5240
Mode
802.11a MIMO
Output Power
[dBm]
Output Power
[mW]
Antenna1 Antenna2 Antenna1 Antenna2
12.57
18.07
802.11n HT20 MIMO
12.40
17.38
5190 - 5230
802.11n HT40 MIMO
12.80
19.05
5210
802.11ac VHT80 MIMO
12.60
18.20
802.11a MIMO
12.62
18.28
802.11n HT20 MIMO
12.44
17.54
5270 - 5310
802.11n HT40 MIMO
12.31
17.02
5290
802.11ac VHT80 MIMO
12.22
16.67
802.11a MIMO
12.41
17.42
802.11n HT20 MIMO
12.25
16.79
5510 - 5710
802.11n HT40 MIMO
12.81
19.10
5530 - 5690
802.11ac VHT80 MIMO
12.63
18.32
5260 - 5320
5500 - 5720
802.11a MIMO
12.51
17.82
802.11n HT20 MIMO
12.60
18.20
5755 - 5795
802.11n HT40 MIMO
12.79
19.01
5775
802.11ac VHT80 MIMO
12.62
18.28
5745 - 5825
Page 13 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
5.3.
DATE: JUN 25, 2018
IC : 649E-SMT830
DESCRIPTION OF AVAILABLE ANTENNAS
The radio utilizes a internal antenna, with a maximum gain of:
Frequency Range
[MHz]
Antenna Gain [dBi]
Antenna 1
Antenna 2
-3.62
-5.37
-3.62
-5.37
-3.62
-5.37
-3.62
-5.37
UNII 1
5150 – 5250
UNII 2A
5250 – 5350
UNII 2C
5470 – 5725
UNII 3
5725 – 5850
5.4.
List of test reduction and modes covering other modes:
The output power on covered modes is equal to or less than one referenced.
UNII 1
5150 - 5250 MHz Authorized Frequency Band (Radiated Testing)
Frequency Range
Mode
Covered by
[MHz]
5180 - 5240
802.11a legacy 1TX/CDD 2TX
802.11a 2TX CDD
5180 - 5240
802.11HT20 1TX
802.11n HT20 2TX CDD
5180 - 5240
802.11HT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5180 - 5240
802.11ac VHT20 1TX
802.11n HT20 2TX CDD
5180 - 5240
802.11ac VHT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5190 - 5230
802.11n HT40 1TX
802.11n HT40 2TX CDD
5190 - 5230
802.11n HT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5190 - 5230
802.11ac VHT40 1TX
802.11n HT40 2TX CDD
5190 - 5230
802.11ac VHT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5210
802.11ac VHT80 1TX
802.11ac VHT80 2TX CDD
5210
802.11ac VHT80 2TX SDM/CDD
802.11ac VHT80 2TX CDD
Page 14 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
UNII 2A
5250 - 5350 MHz Authorized Frequency Band (Radiated Testing)
Frequency Range
Mode
Covered by
[MHz]
5260 - 5320
802.11a legacy 1TX/CDD 2TX
802.11a 2TX CDD
5260 - 5320
802.11HT20 1TX
802.11n HT20 2TX CDD
5260 - 5320
802.11HT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5260 - 5320
802.11ac VHT20 1TX
802.11n HT20 2TX CDD
5260 - 5320
802.11ac VHT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5270 - 5310
802.11n HT40 1TX
802.11n HT40 2TX CDD
5270 - 5310
802.11n HT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5270 - 5310
802.11ac VHT40 1TX
802.11n HT40 2TX CDD
5270 - 5310
802.11ac VHT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5290
802.11ac VHT80 1TX
802.11ac VHT80 2TX CDD
5290
802.11ac VHT80 2TX SDM/CDD
802.11ac VHT80 2TX CDD
UNII 2C
5470 - 5725 MHz Authorized Frequency Band (Radiated Testing)
Frequency Range
Mode
Covered by
[MHz]
5500 - 5720
802.11a legacy 1TX/CDD 2TX
802.11a 2TX CDD
5500 - 5720
802.11HT20 1TX
802.11n HT20 2TX CDD
5500 - 5720
802.11HT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5500 - 5720
802.11ac VHT20 1TX
802.11n HT20 2TX CDD
5500 - 5720
802.11ac VHT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5510 - 5710
802.11n HT40 1TX
802.11n HT40 2TX CDD
5510 - 5710
802.11n HT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5510 - 5710
802.11ac VHT40 1TX
802.11n HT40 2TX CDD
5510 - 5710
802.11ac VHT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5530 - 5690
802.11ac VHT80 1TX
802.11ac VHT80 2TX CDD
5530 - 5690
802.11ac VHT80 2TX SDM/CDD
802.11ac VHT80 2TX CDD
Page 15 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
UNII 3
5725 - 5850 MHz Authorized Frequency Band (Radiated Testing)
Frequency Range
Mode
Covered by
[MHz]
5745 - 5825
802.11a legacy 1TX/CDD 2TX
802.11a 2TX CDD
5745 - 5825
802.11HT20 1TX
802.11n HT20 2TX CDD
5745 - 5825
802.11HT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5745 - 5825
802.11ac VHT20 1TX
802.11n HT20 2TX CDD
5745 - 5825
802.11ac VHT20 2TX SDM/CDD
802.11n HT20 2TX CDD
5755 - 5795
802.11n HT40 1TX
802.11n HT40 2TX CDD
5755 - 5795
802.11n HT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5755 - 5795
802.11ac VHT40 1TX
802.11n HT40 2TX CDD
5755 - 5795
802.11ac VHT40 2TX SDM/CDD
802.11n HT40 2TX CDD
5775
802.11ac VHT80 1TX
802.11ac VHT80 2TX CDD
5775
802.11ac VHT80 2TX SDM/CDD
802.11ac VHT80 2TX CDD
5.5.
WORST-CASE CONFIGURATION AND MODE
Radiated emission below 1GHz and power line conducted emission were performed with the
EUT set to transmit at the channel with highest output power as worst-case scenario.
Radiated emission above 1GHz was performed with the EUT set to transmit low/mid/high
channels.
The fundamental of the EUT was investigated in three orthogonal orientations X, Y and Z it was
determined that Z orientation was worst-case orientation; therefore, all final radiated testing was
performed with the EUT in Z orientation.
Based on the baseline scan, the worst-case data rates were:
802.11a mode: 6 Mbps (2Tx CDD)
802.11n HT20mode: MCS0 (2Tx CDD)
802.11n HT40mode: MCS0 (2Tx CDD)
802.11ac VHT80mode: MCS0 (2Tx CDD)
Page 16 of 288
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FORM ID: FCC_15E
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UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
5.6.
DATE: JUN 25, 2018
IC : 649E-SMT830
DESCRIPTION OF TEST SETUP
SUPPORT EQUIPMENT
Support Equipment List
Manufacturer
Model
Description
Serial Number
FCC ID
Charger
SAMSUNG
EP-TA20EWE
R37KDCZ1855DK3
N/A
Data Cable
SAMSUNG
EP-DN930CWE
N/A
N/A
Earphone
SAMSUNG
EO-EG920BW
N/A
N/A
I/O CABLES
Cable Port
No
I/O Cable List
# of identical Connector Cable Type Cable
Remarks
ports
Type
Length (m)
DC Power
C Type
Shielded
1.1m
N/A
Audio
Mini-Jack
Unshielded
1.2m
N/A
TEST SETUP
The EUT is a stand-alone unit during the tests.
Test software exercised the EUT to enable NII mode.
NOTE
Additional tests under 1 GHz were performed with the keyboard attached to check on all port
terminated conditions. Keyboard is not an in-box item.
Page 17 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
SETUP DIAGRAM FOR TESTS (CONDUCTED TEST SETUP)
SETUP DIAGRAM FOR TESTS (RADIATED TEST SETUP)
Page 18 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
REPORT NO: 4788480746-E4V1
FCC ID: A3LSMT830
DATE: JUN 25, 2018
IC : 649E-SMT830
6. TEST AND MEASUREMENT EQUIPMENT
The following test and measurement equipment was utilized for the tests documented in this
report:
Description
Antenna, Bilog, 30MHz-1GHz
Antenna, Bilog, 30MHz-1GHz
Antenna, Bilog, 30MHz-1GHz
Antenna, Horn, 18 GHz
Antenna, Horn, 18 GHz
Antenna, Horn, 18 GHz
Antenna, Horn, 18 GHz
Antenna, Horn, 18 GHz
Antenna, Horn, 40 GHz
Antenna, Horn, 40 GHz
Antenna, Horn, 40 GHz
Preamplifier, 1000 MHz
Preamplifier, 1000 MHz
Preamplifier, 1000 MHz
Preamplifier, 18 GHz
Preamplifier, 18 GHz
Preamplifier, 18 GHz
Spectrum Analyzer, 44 GHz
Spectrum Analyzer, 44 GHz
Spectrum Analyzer, 43.5 GHz
Average Power Sensor
Attenuator
Attenuator
Attenuator
Attenuator
EMI Test Receive, 40 GHz
EMI Test Receive, 40 GHz
EMI Test Receive, 44 GHz
EMI Test Receive, 3 GHz
Low Pass Filter 5GHz
Low Pass Filter 5GHz
Low Pass Filter 5GHz
High Pass Filter 3GHz
High Pass Filter 3GHz
High Pass Filter 3GHz
High Pass Filter 6GHz
High Pass Filter 6GHz
High Pass Filter 6GHz
LISN
Description
Radiated software
AC Line Conducted software
Test Equipment List
Manufacturer
Model
SCHWARZBECK
VULB9163
SCHWARZBECK
VULB9163
SCHWARZBECK
VULB9163
ETS
3115
ETS
3115
ETS
3117
ETS
3117
ETS
3117
ETS
3116C
ETS
3116C
ETS
3116C-PA
Sonoma
310N
Sonoma
310N
Sonoma
310N
Miteq
AFS42-00101800-25-S-42
Miteq
AFS42-00101800-25-S-42
Miteq
AFS42-00101800-25-S-42
Agilent / HP
N9030A
Agilent / HP
N9030A
R&S
FSW43
Agilent / HP
U2000
PASTERNACK
PE7087-10
PASTERNACK
PE7087-10
PASTERNACK
PE7087-10
PASTERNACK
PE7087-10
R&S
ESU40
R&S
ESU40
R&S
ESW44
R&S
ESR3
Micro-Tronics
LPS17541
Micro-Tronics
LPS17541
Micro-Tronics
LPS17541
Micro-Tronics
HPM17543
Micro-Tronics
HPM17543
Micro-Tronics
HPM17543
Micro-Tronics
HPS17542
Micro-Tronics
HPS17542
Micro-Tronics
HPS17542
R&S
ENV-216
UL Software
Manufacturer
Model
UL
UL EMC
UL
UL EMC
S/N
Cal Due
750
749
845
00167211
00161451
00168724
00168717
00205959
00166155
00168645
00168841
341282
351741
370599
1876511
1896138
2029169
MY54170614
MY54490312
104089
MY54270007
A001
A008
A009
100439
100457
101590
101832
009
015
020
010
015
020
009
016
021
101837
08-31-19
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11-13-19
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Version
Ver 9.5
Ver 9.5
Page 19 of 288
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7. SUMMARY TABLE
FCC Part
Section
RSS
Section
Test Description
Test Limit
15.407(e)
RSS-247
6.2.4.1
6dB Band width (5.8Ghz)
500KHz
PASS
15.407
(a)(2)
RSS-247
6.2.1.1
6.2.2.1
6.2.3.1
TX Cond. Power 5.15-2.25, 5.255.35 & 5.47-5.725
<24dBm or
11+10Log(OBW)
PASS
15.407
(a)(3)
RSS-247
6.2.4.1
TX Cond. Power 5.725-5.825
< 30dBm or
17+10Log(OBW)
15.407
(a)(5)
RSS-247
6.2.1.1
6.2.2.1
6.2.3.1
PSD (5.2,5.3,5.5GHz)
15.407
(a)(5)
RSS-247
6.2.4.1
PSD (5.8GHz)
15.207 (a)
RSS-GEN
Clause 8.8
AC Power Line conducted
emissions
Test Condition
Condcuted
Test Result
PASS
<11dBm
PASS
30dBm per 500kHz
PASS
Section 10
PASS
Radiated
15.407 (b)
RSS-GEN
Radiated Spurious Emission
& 15.209 Clause 7 & 8.9
15.407
(h)(2)
RSS-247
6.3
< 54dBuV/m
Dynamic Frequency Selection
N/A
PASS
Condcuted
PASS
Page 20 of 288
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8. MEASUREMENT METHODS
On-Time and Duty Cycle : KDB 789033 D02 v02r01, Section B.
6dB Emission BW : KDB 789033 D02 v02r01, Section C.2.
26dB Emission BW : KDB 789033 D02 v02r01, Section C.1.
99% Occupied BW : KDB 789033 D02 v02r01, Section D.
Conducted Output Power : KDB 789033 D02 v02r01, Section E.3.a(Method PM)
Conducted Output Power for Straddle Channel (ch144/142/138 for 20/40/80MHz BW):
KDB 789033 D02 v02r01, Section E.2.d(Method SA-2)
Power Spectral Density : KDB 789033 D02 v02r01, Section F.
Unwanted emissions in restricted bands : KDB 789033 D02 v02r01, Section G.
Unwanted emissions in non-restricted bands : KDB 789033 D02 v02r01, Section G.
AC Power Line Conducted Emission : ANSI C63.10-2013, Section 6.2.
Page 21 of 288
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9. REFERENCE MEASUREMENTS RESULTS
9.1.
ON TIME AND DUTY CYCLE RESULTS
ON Time Period Duty Cycle Duty
Duty Cycle
1/T
Cycle Correction Factor Minimum VBW
[msec) [msec] [linear]
[%]
[dB]
[kHz]
802.11a
3.049 3.138
0.972 97.2%
0.12
0.328
802.11n HT20
2.835 2.925
0.969 96.9%
0.14
0.353
802.11n HT40
1.383 1.463
0.945 94.5%
0.24
0.723
802.11ac VHT80
0.664 0.750
0.884 88.4%
0.53
1.507
Mode
LIMITS
None; for reporting purposes only.
PROCEDURE
KDB 789033 D02 v02r01 Zero-Span Spectrum Analyzer Method.
9.2.
DUTY CYCLE PLOTS
DUTY CYCLE 802.11a MODE
Page 22 of 288
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DUTY CYCLE 802.11n HT20 MODE
DUTY CYCLE 802.11n HT40 MODE
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DUTY CYCLE 802.11ac VHT80 MODE
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9.3.
DATE: JUN 25, 2018
IC : 649E-SMT830
26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
Reference to 789033 D02 General UNII Test Procedures New Rules v02r01: The transmitter output is
connected to a spectrum analyzer with the RBW set to approximately 1% of EBW, the VBW >
RBW, peak detector and max hold.
NOTE

Calculation for 26dB Bandwidth of UNII-2C and UNII-3 Straddle Channel
ex) Fundamental frequency : 5720MHz
o 26dB BW : 20.58MHz
o Turning Frequency : 5725MHz
o 26dB Bandwidth of UNII-2C band Portion
= (5725 – (5720 - (20.58 / 2)) = 15.29 MHz
o 26dB Bandwidth of UNII-3 band Portion
= (5720 + (20.58 / 2) -5725) = 5.29 MHz
Page 25 of 288
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RESULTS
9.3.1. 802.11a MODE IN THE 5.2 GHz BAND
Channel
Low
Mid
High
Frequency
[MHz]
5180
5200
5240
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
20.91
18.95
20.08
20.24
20.96
19.66
20.96
9.3.2. 802.11n HT20 MODE IN THE 5.2 GHz BAND
Channel
Frequency
[MHz]
Low
5180
Mid
5200
High
5240
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
20.27
20.22
20.88
21.10
20.55
20.51
21.10
9.3.3. 802.11n HT40 MODE IN THE 5.2 GHz BAND
Channel
Low
High
Frequency
[MHz]
5190
5230
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
39.57
39.77
40.03
39.98
40.03
9.3.4. 802.11ac VHT80 MODE IN THE 5.2 GHz BAND
Channel
Middle
Frequency
[MHz]
5210
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
81.08
81.77
81.77
Page 26 of 288
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9.3.5. 802.11a MODE IN THE 5.3 GHz BAND
Channel
Frequency
[MHz]
Low
5260
Mid
5300
High
5320
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
20.55
20.43
21.00
20.15
21.27
20.68
21.27
9.3.6. 802.11n HT20 MODE IN THE 5.3 GHz BAND
Channel
Frequency
[MHz]
Low
5260
Mid
5300
High
5320
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
21.12
21.21
21.10
20.29
20.57
21.88
21.88
9.3.7. 802.11n HT40 MODE IN THE 5.3 GHz BAND
Channel
Low
High
Frequency
[MHz]
5270
5310
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
39.66
39.17
39.65
39.53
39.66
9.3.8. 802.11ac VHT80 MODE IN THE 5.3 GHz BAND
Channel
Middle
Frequency
[MHz]
5290
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
81.67
81.49
81.67
Page 27 of 288
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9.3.9. 802.11a MODE IN THE 5.5 GHz BAND
Channel
Frequency
[MHz]
Low
5500
Mid
5580
High
5700
Straddle
5720
Worst
9.3.10.
802.11n HT20 MODE IN THE 5.5 GHz BAND
Channel
Frequency
[MHz]
Low
5500
Mid
5580
High
5700
Straddle
5720
Worst
9.3.11.
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
20.93
21.50
21.73
20.88
21.64
20.95
15.44
16.13
21.73
802.11n HT40 MODE IN THE 5.5 GHz BAND
Channel
Frequency
[MHz]
Low
5510
Mid
5590
High
5670
Straddle
5710
Worst
9.3.12.
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
20.20
20.30
20.89
19.98
21.24
20.56
15.31
15.00
21.24
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
40.39
40.05
40.21
39.85
39.87
39.77
35.06
34.88
40.39
802.11ac VHT80 MODE IN THE 5.5 GHz BAND
Channel
Frequency
[MHz]
Low
5530
High
5610
Staddle
5690
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
81.15
81.85
81.79
81.32
75.44
75.67
81.85
Page 28 of 288
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9.3.13.
DATE: JUN 25, 2018
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802.11a MODE IN THE 5.8 GHz BAND
Channel
Frequency
[MHz]
Straddle
5720
Low
5745
Mid
5785
High
5825
Worst
9.3.14.
802.11n HT20 MODE IN THE 5.8 GHz BAND
Channel
Frequency
[MHz]
Straddle
5720
Low
5745
Mid
5785
High
5825
Worst
9.3.15.
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
5.44
6.13
21.66
21.46
21.86
20.39
20.70
19.98
21.86
802.11n HT40 MODE IN THE 5.8 GHz BAND
Channel
Frequency
[MHz]
Straddle
5710
Low
5755
High
5795
Worst
9.3.16.
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
5.31
5.00
20.79
19.94
20.63
21.70
20.89
21.79
21.79
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
5.06
4.88
39.69
39.67
40.18
40.42
40.42
802.11ac VHT80 MODE IN THE 5.8 GHz BAND
Channel
Frequency
[MHz]
Straddle
5690
Middle
5775
Worst
26 dB Bandwidth
[MHz]
Antenna 1
Antenna 2
5.44
5.67
80.19
80.40
80.40
Page 29 of 288
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9.3.17.
DATE: JUN 25, 2018
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26 dB BANDWIDTH PLOTS
UNII 5.2 GHz IEEE 802.11a mode
11a Mode Low Channel Antenna 1
11a Mode Low Channel Antenna 2
11a Mode Middle Channel Antenna 1
11a Mode Middle Channel Antenna 2
11a Mode High Channel Antenna 1
11a Mode High Channel Antenna 2
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UNII 5.2 GHz IEEE 802.11n HT20 mode
11n HT20 Mode Low Channel Antenna 1
11n HT20 Mode Low Channel Antenna 2
11n HT20 Mode Middle Channel Antenna 1
11n HT20 Mode Middle Channel Antenna 2
11n HT20 Mode High Channel Antenna 1
11n HT20 Mode High Channel Antenna 2
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UNII 5.2 GHz IEEE 802.11n HT40 mode
11n HT40 Mode Low Channel Antenna 1
11n HT40 Mode Low Channel Antenna 2
11n HT40 Mode High Channel Antenna 1
11n HT40 Mode High Channel Antenna 2
UNII 5.2 GHz IEEE 802.11ac VHT80 mode
11ac VHT80 Mode Middle Channel Antenna 1
11ac VHT80 Mode Middle Channel Antenna 2
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UNII 5.3 GHz IEEE 802.11a mode
11a Mode Low Channel Antenna 1
11a Mode Low Channel Antenna 2
11a Mode Middle Channel Antenna 1
11a Mode Middle Channel Antenna 2
11a Mode High Channel Antenna 1
11a Mode High Channel Antenna 2
Page 33 of 288
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REPORT NO: 4788480746-E4V1
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UNII 5.3 GHz IEEE 802.11n HT20 mode
11n HT20 Mode Low Channel Antenna 1
11n HT20 Mode Low Channel Antenna 2
11n HT20 Mode Middle Channel Antenna 1
11n HT20 Mode Middle Channel Antenna 2
11n HT20 Mode High Channel Antenna 1
11n HT20 Mode High Channel Antenna 2
Page 34 of 288
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UNII 5.3 GHz IEEE 802.11n HT40 mode
11n HT40 Mode Low Channel Antenna 1
11n HT40 Mode Low Channel Antenna 2
11n HT40 Mode High Channel Antenna 1
11n HT40 Mode High Channel Antenna 2
UNII 5.3 GHz IEEE 802.11ac VHT80 mode
11ac VHT80 Mode Middle Channel Antenna 1
11ac VHT80 Mode Middle Channel Antenna 2
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UNII 5.5 GHz IEEE 802.11a mode
11a Mode Low Channel Antenna 1
11a Mode Low Channel Antenna 2
11a Mode Middle Channel Antenna 1
11a Mode Middle Channel Antenna 2
11a Mode High Channel Antenna 1
11a Mode High Channel Antenna 2
11a Mode Straddle Channel Antenna 1
11a Mode Straddle Channel Antenna 2
Page 36 of 288
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REPORT NO: 4788480746-E4V1
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UNII 5.5 GHz IEEE 802.11n HT20 mode
11n HT20 Mode Low Channel Antenna 1
11n HT20 Mode Low Channel Antenna 2
11n HT20 Mode Middle Channel Antenna 1
11n HT20 Mode Middle Channel Antenna 2
11n HT20 Mode High Channel Antenna 1
11n HT20 Mode High Channel Antenna 2
11n HT20 Mode Straddle Channel Antenna 1
11n HT20 Mode Straddle Channel Antenna 2
Page 37 of 288
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UNII 5.5 GHz IEEE 802.11n HT40 mode
11n HT40 Mode Low Channel Antenna 1
11n HT40 Mode Low Channel Antenna 2
11n HT40 Mode Middle Channel Antenna 1
11n HT40 Mode Middle Channel Antenna 2
11n HT40 Mode High Channel Antenna 1
11n HT40 Mode High Channel Antenna 2
11n HT40 Mode Straddle Channel Antenna 1
11n HT40 Mode Straddle Channel Antenna 2
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REPORT NO: 4788480746-E4V1
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UNII 5.5 GHz IEEE 802.11ac VHT80 mode
11ac HT80 Mode Low Channel Antenna 1
11ac HT80 Mode Low Channel Antenna 2
11ac HT80 Mode High Channel Antenna 1
11ac HT80 Mode High Channel Antenna 2
11ac VHT80 Mode Straddle Channel
Antenna 1
11ac VHT80 Mode Straddle Channel
Antenna 2
Page 39 of 288
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REPORT NO: 4788480746-E4V1
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UNII 5.8 GHz IEEE 802.11a mode
11a Mode Low Channel Antenna 1
11a Mode Low Channel Antenna 2
11a Mode Middle Channel Antenna 1
11a Mode Middle Channel Antenna 2
11a Mode High Channel Antenna 1
11a Mode High Channel Antenna 2
Page 40 of 288
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REPORT NO: 4788480746-E4V1
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UNII 5.8 GHz IEEE 802.11n HT20 mode
11n HT20 Mode Low Channel Antenna 1
11n HT20 Mode Low Channel Antenna 2
11n HT20 Mode Middle Channel Antenna 1
11n HT20 Mode Middle Channel Antenna 2
11n HT20 Mode High Channel Antenna 1
11n HT20 Mode High Channel Antenna 2
Page 41 of 288
UL Korea, Ltd. Suwon Laboratory
FORM ID: FCC_15E
218 Maeyeong-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do, 16675 Korea TEL: (031) 337-9902,FAX: (031) 213-5433
UL Korea, Ltd. Confidential
This report shall not be reproduced except in full, without the written approval of
UL Korea, Ltd.
Download: SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
Mirror Download [FCC.gov]SMT830 BT/BLE, DTS/UNII a/b/g/n/ac and ANT+ Tablet Test Report _20180627_v1 - 4788480746-E4V1_FCC IC Report UNII DFS WLAN_Part1 Samsung Electronics Co Ltd
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Short Term ConfidentialNo
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Document TypeTest Report
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Date Submitted2018-07-02 00:00:00
Date Available2018-07-02 00:00:00
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