SMP205 Multi-band GSM/GPRS/UMTS/LTE Tablet with Bluetooth and WLAN RF Exposure Info 2 Samsung Electronics Co Ltd

Samsung Electronics Co Ltd Multi-band GSM/GPRS/UMTS/LTE Tablet with Bluetooth and WLAN

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APPENDIX D: SAR TISSUE SPECIFICATIONS
Measurement Procedure for Tissue verification:
1) The network analyzer and probe system was configured and calibrated.
2) The probe was immersed in the tissue. The tissue was placed in a nonmetallic container.
Trapped air bubbles beneath the flange were minimized by placing the probe at a slight angle.
3) The complex admittance with respect to the probe aperture was measured
4) The complex relative permittivity ε’ can be calculated from the below equation (Pournaropoulos
and Misra):
1/ 2
b b π
r 0
0 r 0
2 a a 0
Y=
j 2ωε ε
[ln(b a )]
∫ ∫ ∫
cos φ ′
exp − jωr ( µ ε ε )
] dφ ′dρ ′dρ
where Y is the admittance of the probe in contact with the sample, the primed and unprimed coordinates refer to
source and observation points, respectively, r 2 = ρ 2 + ρ ′2 − 2 ρρ ′ cos φ ′ , ω is the angular frequency, and j = − 1 .
Table D-I
Composition of the Tissue Equivalent Matter
Frequency (MHz)
Tissue
Ingredients (% by weight)
750
750
835
835
1750
1750
1900
1900
2450
2450
Head
Body
Head
Body
Head
Body
Head
Body
Head
Body
0.1
0.1
47
31
44.92
29.44
1.45
0.94
0.4
0.2
0.18
0.39
57
44.9
40.45
53.06
52.6
68.8
54.9
70.17
Bactericide
DGBE
HEC
See page See page
NaCl
Sucrose
Polysorbate (Tween) 80
Water
5200 5800
Head
5200 5800
Body
26.7
See page 4
See page See page
0.1
73.2
Approved by:
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Quality Manager
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
APPENDIX D:
Page 1 of 6
REV 21.3 M
02/15/2019
Figure D-1
Composition of 750 MHz Head and Body Tissue Equivalent Matter
Note: 750MHz liquid recipes are proprietary SPEAG. Since the composition is approximate to the actual liquids
utilized, the manufacturer tissue-equivalent liquid data sheets are provided below.
Figure D-2
750MHz Body Tissue Equivalent Matter
Approved by:
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Quality Manager
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
APPENDIX D:
Page 2 of 6
REV 21.3 M
02/15/2019
Figure D-3
750MHz Head Tissue Equivalent Matter
Approved by:
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Quality Manager
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
APPENDIX D:
Page 3 of 6
REV 21.3 M
02/15/2019
Figure D-4
Composition of 2.4 GHz Head Tissue Equivalent Matter
Approved by:
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Quality Manager
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
APPENDIX D:
Page 4 of 6
REV 21.3 M
02/15/2019
Figure D-5
Composition of 5 GHz Head Tissue Equivalent Matter
Note: 5 GHz head liquid recipes are proprietary SPEAG. Since the composition is approximate to the actual
liquids utilized, the manufacturer tissue-equivalent liquid data sheets are provided below.
Approved by:
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Quality Manager
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
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APPENDIX D:
Page 5 of 6
REV 21.3 M
02/15/2019
Figure D-6
Composition of 5 GHz Body Tissue Equivalent Matter
Note: 5 GHz Body liquid recipes are proprietary SPEAG. Since the composition is approximate to the actual
liquids utilized, the manufacturer tissue-equivalent liquid data sheets are provided below.
Figure D-7
5 GHz Body Tissue Equivalent Matter
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APPENDIX D:
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REV 21.3 M
02/15/2019
APPENDIX E: SAR SYSTEM VALIDATION
Per FCC KDB Publication 865664 D02v01r02, SAR system validation status should be documented to confirm
measurement accuracy. The SAR systems (including SAR probes, system components and software versions)
used for this device were validated against its performance specifications prior to the SAR measurements.
Reference dipoles were used with the required tissue- equivalent media for system validation, according to the
procedures outlined in FCC KDB Publication 865664 D01v01r04 and IEEE 1528-2013. Since SAR probe
calibrations are frequency dependent, each probe calibration point was validated at a frequency within the valid
frequency range of the probe calibration point, using the system that normally operates with the probe for routine
SAR measurements and according to the required tissue-equivalent media.
A tabulated summary of the system validation status including the validation date(s), measurement frequencies,
SAR probes and tissue dielectric parameters has been included.
Table E-1
SAR System Validation Summary – 1g
SAR
SYSTEM FREQ. [MHz]
AM8
750
AM2
835
AM6
835
AM6
1750
AM6
1900
AM8
1900
AM1
2450
AM8
2600
AM2
5250
AM2
5600
AM2
5750
AM3
750
AM6
835
AM3
835
AM6
1750
AM1
1750
AM1
1900
AM3
1900
AM1
2450
AM1
2600
AM2
5250
AM2
5600
AM2
5750
DATE
11/5/2018
11/14/2018
4/16/2018
3/26/2018
4/16/2018
11/6/2018
11/20/2018
11/6/2018
11/15/2018
11/15/2018
11/15/2018
12/3/2018
4/4/2018
12/3/2018
4/4/2018
7/12/2018
7/11/2018
11/30/2018
7/16/2018
7/16/2018
11/13/2018
11/13/2018
11/13/2018
PROBE SN PROBE TYPE
7491
7416
3131
3131
3131
7491
3275
7491
7416
7416
7416
7420
3131
7420
3131
3275
3275
7420
3275
3275
7416
7416
7416
EX3DV4
EX3DV4
ES3DV3
ES3DV3
ES3DV3
EX3DV4
ES3DV3
EX3DV4
EX3DV4
EX3DV4
EX3DV4
EX3DV4
ES3DV3
EX3DV4
ES3DV3
ES3DV3
ES3DV3
EX3DV4
ES3DV3
ES3DV3
EX3DV4
EX3DV4
EX3DV4
PROBE CAL. POINT
750
835
835
1750
1900
1900
2450
2600
5250
5600
5750
750
835
835
1750
1750
1900
1900
2450
2600
5250
5600
5750
Head
Head
Head
Head
Head
Head
Head
Head
Head
Head
Head
Body
Body
Body
Body
Body
Body
Body
Body
Body
Body
Body
Body
COND.
PERM.
(σ)
(εr)
SENSITIVITY
0.878
0.908
0.928
1.372
1.460
1.432
1.829
1.940
4.489
4.864
5.028
0.954
0.997
0.990
1.543
1.548
1.565
1.573
2.004
2.144
5.514
5.991
6.190
41.135
41.474
42.395
42.026
40.389
38.930
38.920
37.891
34.556
33.971
33.725
54.631
56.122
53.172
54.544
52.213
51.519
51.227
52.717
52.469
48.030
47.432
47.195
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
CW VALIDATION
MOD. VALIDATION
PROBE
PROBE
MOD.
DUTY FACTOR
LINEARITY
ISOTROPY
TYPE
PASS
PASS
N/A
N/A
PASS
PASS
GMSK
PASS
PASS
PASS
GMSK
PASS
PASS
PASS
N/A
N/A
PASS
PASS
GMSK
PASS
PASS
PASS
GMSK
PASS
PASS
PASS
OFDM/TDD
PASS
PASS
PASS
TDD
PASS
PASS
PASS
OFDM
N/A
PASS
PASS
OFDM
N/A
PASS
PASS
OFDM
N/A
PASS
PASS
N/A
N/A
PASS
PASS
GMSK
PASS
PASS
PASS
GMSK
PASS
PASS
PASS
N/A
N/A
PASS
PASS
N/A
N/A
PASS
PASS
GMSK
PASS
PASS
PASS
GMSK
PASS
PASS
PASS
OFDM/TDD
PASS
PASS
PASS
TDD
PASS
PASS
PASS
OFDM
N/A
PASS
PASS
OFDM
N/A
PASS
PASS
OFDM
N/A
PAR
N/A
N/A
N/A
N/A
N/A
N/A
PASS
N/A
PASS
PASS
PASS
N/A
N/A
N/A
N/A
N/A
N/A
N/A
PASS
N/A
PASS
PASS
PASS
NOTE: While the probes have been calibrated for both CW and modulated signals, all measurements were
performed using communication systems calibrated for CW signals only. Modulations in the table above represent
test configurations for which the measurement system has been validated per FCC KDB Publication 865664
D01v01r04 for scenarios when CW probe calibrations are used with other signal types. SAR systems were
validated for modulated signals with a periodic duty cycle, such as GMSK, or with a high peak to average ratio (>5
dB), such as OFDM according to FCC KDB Publication 865664 D01v01r04.
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APPENDIX E:
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02/15/2019
APPENDIX G
POW ER REDUCTION VERI FICATION
Per the May 2017 TCBC Workshop Notes, demonstration of proper functioning of the power reduction
mechanisms is required to support the corresponding SAR configurations. The verification process was
divided into two parts: (1) evaluation of output power levels for individual or multiple triggering
mechanisms and (2) evaluation of the triggering distances for proximity-based sensors.
G.1
Power Verification Procedure
The power verification was performed according to the following procedure:
1. A base station simulator was used to establish a conducted RF connection and the output power
was monitored. The power measurements were confirmed to be within expected tolerances for all
states before and after a power reduction mechanism was triggered.
2.
Step 1 was repeated for all relevant modes and frequency bands for the mechanism being
investigated.
3. Steps 1 and 2 were repeated for all individual power reduction mechanisms and combinations
thereof. For the combination cases, one mechanism was switched to a 'triggered' state at a time;
powers were confirmed to be within tolerances after each additional mechanism was activated.
G.2
Distance Verification Procedure
The distance verification procedure was performed according to the following procedure:
1. A base station simulator was used to establish an RF connection and to monitor the power levels.
The device being tested was placed below the relevant section of the phantom with the relevant
side or edge of the device facing toward the phantom.
2. The device was moved toward and away from the phantom to determine the distance at which
the mechanism triggers and the output power is reduced, per KDB Publication 616217
D04v01r02 and FCC Guidance. Each applicable test position was evaluated. The distances were
confirmed to be the same or larger (more conservative) than the minimum distances provided by
the manufacturer.
3. Steps 1 and 2 were repeated for low, mid, and high bands, as appropriate (see note below Table
G-2 for more details).
4. Steps 1 through 3 were repeated for all distance-based power reduction mechanisms.
SAR EVALUATION REPORT
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APPENDIX G:
Page 1 of 3
REV 20.05 M
11/15/2017
G.3
Main Antenna Verification Summary
Table G-1
Power Measurement Verification for Main Antenna
Mechanism(s)
Conducted Power (dBm)
Mode/Band
1st
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Grip
Grip
Grip
Grip
Grip
Grip
Grip
2nd
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
Held-to-Ear
GSM1900
UMTS 1750
UMTS 1900
LTE FDD Band 4
LTE FDD Band 66
LTE FDD Band 2
LTE TDD Band 41
GSM850
GSM1900
UMTS 850
UMTS 1750
UMTS 1900
LTE FDD Band 12
LTE FDD Band 17
LTE FDD Band 5
LTE FDD Band 4
LTE FDD Band 66
LTE FDD Band 2
LTE TDD Band 41
GSM1900
UMTS 1750
UMTS 1900
LTE FDD Band 4
LTE FDD Band 66
LTE FDD Band 2
LTE TDD Band 41
GSM1900
UMTS 1750
UMTS 1900
LTE FDD Band 4
LTE FDD Band 66
LTE FDD Band 2
LTE TDD Band 41
Mechanism #1
(Reduced)
Mechanism #2
(Reduced)
28.86
22.93
23.59
23.53
23.71
23.25
22.33
32.32
28.77
23.82
22.81
23.38
24.18
23.90
24.21
23.81
23.69
24.07
22.37
28.82
22.98
23.60
23.57
23.86
23.43
22.37
28.66
22.93
23.27
23.55
23.88
23.45
22.40
19.15
10.53
10.98
10.44
10.57
9.91
12.51
24.27
19.68
13.97
10.44
10.98
16.82
16.76
16.90
10.79
10.56
10.89
12.49
19.26
10.53
10.97
10.42
10.67
9.92
12.36
19.48
10.41
10.95
10.59
10.66
10.65
12.41
19.37
10.56
11.00
10.40
10.76
9.95
12.18
19.20
10.40
10.84
10.38
10.86
10.40
12.20
SAR EVALUATION REPORT
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Un-triggered
(Max)
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APPENDIX G:
Page 2 of 3
REV 20.05 M
11/15/2017
Table G-2
Distance Measurement Verification for Main Antenna
Mechanism(s)
Test Condition
Band
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Body - Back Side
Body - Back Side
Body - Back Side
Body - Top Edge
Body - Top Edge
Body - Top Edge
Body - Left Edge
Body - Left Edge
Body - Left Edge
Low
Mid
High
Low
Mid
High
Low
Mid
High
Distance Measurements (mm)
Moving Toward
Moving Away
20
22
20
22
20
22
13
14
13
14
13
14
10
10
10
Minimum Distance per
Manufacturer (mm)
20
20
20
13
13
13
*Note: Low band refers to: GSM850, UMTS B5, LTE B5/12/17; Mid band refers to: GSM1900, UMTS
B2/4, LTE B2/4//66; High band refers to: LTE B41
G.4
WIFI Verification Summary
Table G-3
Power Measurement Verification WIFI
Mechanism(s)
Conducted Power (dBm)
Mode/Band
1st
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
Grip
802.11b
802.11g
802.11n (2.4GHz)
802.11a
802.11n (5GHz, 20MHz BW)
802.11ac (20MHz BW)
802.11n (5GHz, 40MHz BW)
802.11ac (40MHz BW)
802.11ac (80MHz BW)
Un-triggered
(Max)
Mechanism #1
(Reduced)
17.29
15.55
14.53
11.14
11.09
11.79
11.92
11.91
10.62
10.05
11.53
10.36
8.31
8.24
8.05
8.48
8.45
8.21
Table G-4
Distance Measurement Verification for WIFI
Mechanism(s)
Test Condition
Band
Grip
Grip
Body - Back Side
Body - Back Side
2.4GHz
5GHz
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Distance Measurements (mm)
Moving Toward
Moving Away
Minimum Distance per
Manufacturer (mm)
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APPENDIX G:
Page 3 of 3
REV 20.05 M
11/15/2017
APPENDIX H: DOWNLINK LTE CA RF CONDUCTED POWERS
1.1
LTE Downlink Only Carrier Aggregation Test Reduction Methodology
SAR test exclusion for LTE downlink Carrier Aggregation is determined by power measurements according to the
number of component carriers (CCs) supported by the product implementation. Per April 2018 TCBC Workshop
Notes, the following test reduction methodology was applied to determine the combinations required for
conducted power measurements.
LTE DLCA Test Reduction Methodology:
•
•
The supported combinations were arranged by the number of component carriers in columns.
Any limitations on the PCC or SCC for each combination were identified alongside the combination (e.g.
CA_2A-2A-4A-12A, but B12 can only be configured as a SCC).
Power measurements were performed for "supersets" (LTE CA combinations with multiple components
carriers) and any "subsets" (LTE CA combinations with fewer component carriers) that were not
completely covered by the supersets.
Only subsets that have the exact same components as a superset were excluded for measurement.
When there were certain restrictions on component carriers that existed in the superset that were not
applied for the subset, the subset configuration was additionally evaluated.
Both inter-band and intra-band downlink carrier aggregation scenarios were considered.
Downlink CA combinations for SISO and 4x4 Downlink MIMO operations were measured independently,
per May 2017 TCBC Workshop notes.
•
•
•
•
•
Table 1 – Example of Exclusion Table for SISO Configurations
Index
2CC #1
2CC #2
2CC #3
2CC #4
2CC #5
2CC #6
2CC #8
2CC #9
2CC #10
2CC #11
2CC #12
2CC #13
2CC #14
2CC #15
2CC #16
2CC #17
2CC #18
2CC #19
2CC #20
2CC #21
2CC #22
2CC #23
Supported Channel Bandwidth [MHz]
2CC
CA_2C
CA_2A-5A
CA_2A-12A
CA_2A-13A
CA_2A-17A
CA_2A-30A
CA_2A-66A (2)
CA_2A-71A
CA_4A-4A
CA_4A-5A (1)
CA_4A-12A (4)
CA_4A-13A
CA_4A-17A
CA_5B
CA_5A-25A
CA_7C
CA_7A-7A (1)
CA_7A-12A
CA_12B
CA_12A-25A
CA_12A-30A
CA_41A-41A (1)
CC1
CC2
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
10
5, 10
5, 10
5, 10, 15, 20
15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10, 15, 20
5, 10
5, 10, 15, 20
Restriction
B17 SCC Only
Completely Covered by
Measurement Superset
3CC #4
4CC #1
3CC #3
3CC #9
No
3CC #14
5CC #1
3CC #10
3CC #6
4CC #1
3CC #8
3CC #9
No
5CC #1
No
No
No
3CC #12
3CC #13
No
3CC #14
No
Index
3CC #1
3CC #2
3CC #3
3CC #4
3CC #5
3CC #6
3CC #7
3CC #8
3CC #9
3CC #10
3CC #11
3CC #12
3CC #13
3CC #14
3CC #15
3CC #16
3CC #17
3CC #18
3CC #19
3CC #20
3CC #21
3CC #22
3CC #23
3CC #24
3CC
CA_2A-2A-4A
CA_2A-2A-5A
CA_2A-2A-12A
CA_2C-66A
CA_2A-2A-71A
CA_2A-4A-4A
CA_2A-4A-5A
CA_2A-4A-12A
CA_2A-4A-13A
CA_2A-4A-71A
CA_2A-5B
CA_2A-7A-12A
CA_2A-12B
CA_2A-12A-30A
CA_4A-4A-5A
CA_5B-30A
CA_5B-66A
CA_5A-30A-66A
CA_12A-66C
CA_30A-66A-66A
CA_41D
CA_41A-41C
CA_66D
CA_66A-66C
Supported Channel Bandwidth [MHz]
CC1
CC2
CC3
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
10
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
Restriction
Completely Covered
by Measurement
Superset
4CC #1
4CC #1
No
No
No
No
4CC #1
No
No
No
4CC #5
No
No
No
No
5CC #1
5CC #1
4CC #9
No
4CC #9
No
No
No
No
Index
4CC #1
4CC #2
4CC #3
4CC #4
4CC #5
4CC #6
4CC #7
4CC #8
4CC #9
4CC #10
Supported Channel Bandwidth [MHz]
4CC
CA_2A-2A-4A-5A
CA_2A-2A-4A-12A
CA_2A-2A-5A-30A
CA_2A-2A-5A-66A
CA_2A-5B-30A
CA_2A-5B-66A
CA_5B-30A-66A
CA_5B-66A-66A
CA_5A-30A-66A-66A
CA_41E
CC1
CC2
CC3
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
15, 20
Restriction
CC4
5, 10
5, 10
B12 SCC Only
5, 10
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10, 15, 20
20
Completely Covered
by Measurement
Superset
No
No
No
No
5CC #1
5CC #1
5CC #1
5CC #2
No
No
Index
5CC #1
5CC #2
Supported Channel Bandwidth [MHz]
5CC
CA_2A-5B-30A-66A
CA_2A-5B-66A-66A
Restriction
CC1
CC2
CC3
CC4
CC5
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
Completely Covered by
Measurement Superset
No
No
Table 2 – Example of Exclusion Table for 4x4 Downlink MIMO Configurations
Index
2CC
2CC #M1
2CC #M2
2CC #M3
2CC #M4
2CC #M5
2CC #M6
2CC #M7
2CC #M8
2CC #M9
2CC #M10
2CC #M11
2CC #M12
2CC #M13
2CC #M14
2CC #M15
2CC #M16
2CC #M17
2CC #M18
2CC #M19
2CC #M20
2CC #M21
2CC #M22
2CC #M23
CA_[2C]
CA_[2A]-2A
CA_[2A]-[2A]
CA_[2A]-4A (2)
CA_[2A]-[4A] (2)
CA_[2A]-5A
CA_[2A]-12A (1)
CA_[2A]-13A
CA_[2A]-17A
CA_[2A]-29A (2)
CA_[2A]-30A
CA_[2A]-66A (2)
CA_2A-[66A] (2)
CA_[2A]-[66A] (2)
CA_[2A]-71A
CA_5A-[66A]
CA_12A-[66A] (4)
CA_13A-[66A]
CA_30A-[66A]
CA_[66B]
CA_[66C]
CA_[66A]-66A
CA_[66A]-[66A]
Supported Channel Bandwidth [MHz]
CC1
CC2
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
3, 5, 10
10
5, 10
5, 10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
Restriction
B29 SCC Only
Completely Covered by
Measurement Superset
3CC #M6
3CC #M1
No
3CC #M1
No
4CC #M3
No
3CC #M4
No
3CC #M12
3CC #M5
4CC #M1
4CC #M2
No
3CC #M11
3CC #M16
3CC #M17
3CC #M19
3CC #M20
4CC #M4
4CC #M6
3CC #M28
No
Index
3CC #M1
3CC #M2
3CC #M3
3CC #M4
3CC #M5
3CC #M6
3CC #M7
3CC #M8
3CC #M9
3CC #M10
3CC #M11
3CC #M12
3CC #M13
3CC #M14
3CC #M15
3CC #M16
3CC #M17
3CC #M18
3CC #M19
3CC #M20
3CC #M21
3CC #M22
3CC #M23
3CC #M24
3CC #M25
3CC #M26
3CC #M27
3CC #M28
3CC #M29
3CC
CA_[2A]-2A-4A
CA_[2A]-2A-5A
CA_[2A]-2A-12A
CA_[2A]-2A-13A
CA_[2A]-2A-30A
CA_[2C]-66A
CA_2C-[66A]
CA_[2C]-[66A]
CA_[2A]-2A-66A
CA_2A-2A-[66A]
CA_[2A]-2A-71A
CA_[2A]-4A-29A
CA_[2A]-4A-71A
CA_[2A]-5B
CA_[2A]-5A-66A
CA_2A-5A-[66A]
CA_2A-12A-[66A]
CA_[2A]-13A-66A
CA_2A-13A-[66A]
CA_2A-30A-[66A]
CA_[2A]-66B
CA_2A-[66B]
CA_[2A]-[66B]
CA_[2A]-66C
CA_2A-[66C]
CA_[2A]-[66C]
CA_[2A]-66A-66A
CA_2A-[66A]-66A
CA_[2A]-66A-71A
Supported Channel Bandwidth [MHz]
CC1
CC2
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10, 15
5, 10, 15
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
Completely Covered by
Measurement Superset
Restriction
CC3
5, 10, 15, 20
5, 10
5, 10
10
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
B29 SCC Only
5, 10, 15, 20
5, 10
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15
5, 10, 15
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
No
No
No
No
No
No
No
No
No
No
No
No
No
4CC #M1
No
No
No
No
No
No
4CC #M3
4CC #M4
No
4CC #M5
4CC #M6
No
No
No
No
Index
4CC #M1
4CC #M2
4CC #M3
4CC #M4
4CC #M5
4CC #M6
Supported Channel Bandwidth [MHz]
4CC
CA_[2A]-5B-66A
CA_2A-5B-[66A]
CA_[2A]-5A-66B
CA_2A-5A-[66B]
CA_[2A]-5A-66C
CA_2A-5A-[66C]
Restriction
CC1
CC2
CC3
CC4
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10
5, 10, 15
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15, 20
5, 10, 15
5, 10, 15
5, 10, 15, 20
5, 10, 15, 20
Completely Covered by
Measurement Superset
No
No
No
No
No
No
Note: [CC] indicates component carrier with 4x4 DL MIMO antenna configuration
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
Reviewed by:
Quality Manager
APPENDIX H:
Page 1 of 4
REV 21.3 M
02/15/2019
1.2
LTE Downlink Only Carrier Aggregation Test Selection and Setup
SAR test exclusion for LTE downlink Carrier Aggregation is determined by power measurements according to the
number component carriers (CCs) supported by the product implementation. For those configurations required by
April 2018 TCBC Workshop Notes, conducted power measurements with LTE Carrier Aggregation (CA) (downlink
only) active are made in accordance to KDB Publication 941225 D05Av01r02. The RRC connection is only
handled by one cell, the primary component carrier (PCC) for downlink and uplink communications. After making
a data connection to the PCC, the UE device adds secondary component carrier(s) (SCC) on the downlink only.
All uplink communications and acknowledgements remain identical to specifications when downlink carrier
aggregation is inactive on the PCC. Additional conducted output powers are measured with the downlink carrier
aggregation active for the configuration with highest measured maximum conducted power with downlink carrier
aggregation inactive measured among the channel bandwidth, modulation, and RB combinations in each
frequency band.
Per FCC KDB Publication 941225 D05Av01r02, no SAR measurements are required for carrier aggregation
configurations when the maximum average output power with downlink only carrier aggregation active is not more
than 0.25 dB higher than the average output power with downlink only carrier aggregation inactive. All bands
required for SAR testing per FCC KDB procedures were considered. Based on the measured maximum powers
below, no additional SAR tests were required for DLCA SAR configurations.
General PCC and SCC configuration selection procedure
PCC uplink channel, channel bandwidth, modulation and RB configurations were selected based on
section C)3)b)ii) of KBD 941225 D05 V01r02. The downlink PCC channel was paired with the
selected PCC uplink channel according to normal configurations without carrier aggregation.
To maximize aggregated bandwidth, highest channel bandwidth available for that CA combination
was selected for SCC. For inter-band CA, the SCC downlink channels were selected near the middle
of their transmission bands. For contiguous intra-band CA, the downlink channel spacing between the
component carriers was set to multiple of 300 kHz less than the nominal channel spacing defined in
section 5.4.1A of 3GPP TS 36.521. For non-contiguous intra-band CA, the downlink channel spacing
between the component carriers was set to be larger than the nominal channel spacing and provided
maximum separation between the component carriers.
All selected PCC and SCC(s) remained fully within the uplink/downlink transmission band of the
respective component carrier.
Base Station
Simulator
Wireless Device
Figure 1
DL CA Power Measurement Setup
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
Reviewed by:
Quality Manager
APPENDIX H:
Page 2 of 4
REV 21.3 M
02/15/2019
1.3
Downlink Carrier Aggregation RF Conducted Powers
1.3.1
LTE Band 12 as PCC
Table 1
Maximum Output Powers
PCC
Combination
PCC Band
PCC BW
[MHz]
CA_12A-66A (1)
CA_12A-66A (2)
LTE B12
LTE B12
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
23155
23155
713.5
713.5
SCC 1
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
QPSK
QPSK
12
12
5155
5155
743.5
743.5
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
LTE B66
LTE B66
20
20
66786
66786
2145
2145
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
24.01
24.02
24.01
24.02
Table 2
Reduced Output Powers
PCC
SCC 1
Combination
PCC Band
PCC BW
[MHz]
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
CA_12A-66A (1)
CA_12A-66A (2)
LTE B12
LTE B12
23155
23155
713.5
713.5
16QAM
16QAM
5155
5155
743.5
743.5
LTE B66
LTE B66
20
20
66786
66786
2145
2145
1.3.2
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
16.95
16.99
16.95
16.99
LTE Band 5 as PCC
Table 3
Maximum Output Powers
PCC
SCC 1
Combination
PCC Band
PCC BW
[MHz]
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
CA_4A-5A (1)
CA_5B
CA_5B (1)
CA_5A-66A
LTE B5
LTE B5
LTE B5
LTE B5
20425
20425
20635
20425
826.5
826.5
847.5
826.5
QPSK
QPSK
QPSK
QPSK
24
24
24
2425
2425
2635
2425
871.5
871.5
892.5
871.5
LTE B4
LTE B5
LTE B5
LTE B66
20
10
20
2175
2497
2596
66786
2132.5
878.7
888.6
2145
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
2175
2553
2577
66786
2132.5
884.3
886.7
2145
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
23.99
24.20
24.14
24.20
24.14
24.28
24.03
24.20
Table 4
Reduced Output Powers
PCC
Combination
PCC Band
PCC BW
[MHz]
CA_4A-5A (1)
CA_5B
CA_5B (1)
CA_5A-66A
LTE B5
LTE B5
LTE B5
LTE B5
1.3.3
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
20625
20625
20625
20625
846.5
846.5
846.5
846.5
SCC 1
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
QPSK
QPSK
QPSK
QPSK
2625
2625
2625
2625
891.5
891.5
891.5
891.5
LTE B4
LTE B5
LTE B5
LTE B66
20
10
20
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
2525
5095
5095
66536
67018
66838
881.5
737.5
737.5
2120
2168.2
2150.2
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
16.91
16.97
16.97
16.97
16.96
16.97
16.93
16.97
LTE Band 66 as PCC
Table 5
Maximum Output Powers
PCC
Combination
PCC Band
PCC BW
[MHz]
CA_5A-66A
CA_12A-66A (1)
CA_12A-66A (2)
CA_66A-66A
CA_66B
CA_66C
LTE B66
LTE B66
LTE B66
LTE B66
LTE B66
LTE B66
20
20
20
20
20
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
132572
132572
132572
132572
132647
132572
1770
1770
1770
1770
1777.5
1770
SCC 1
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
QPSK
QPSK
QPSK
QPSK
QPSK
QPSK
50
50
50
50
24
50
67036
67036
67036
67036
67111
67036
2170
2170
2170
2170
2177.5
2170
LTE B5
LTE B12
LTE B12
LTE B66
LTE B66
LTE B66
10
10
10
20
15
20
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
24.32
24.32
24.29
24.32
24.29
24.32
24.24
24.32
24.13
24.20
24.24
24.32
Reviewed by:
Quality Manager
APPENDIX H:
Page 3 of 4
REV 21.3 M
02/15/2019
Table 6
Reduced Output Powers
PCC
Combination
PCC Band
PCC BW
[MHz]
CA_5A-66A
CA_12A-66A (1)
CA_12A-66A (2)
CA_66A-66A
CA_66B
CA_66C
LTE B66
LTE B66
LTE B66
LTE B66
LTE B66
LTE B66
20
20
20
20
15
20
1.3.4
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
132322
132322
132322
132322
132597
132322
1745
1745
1745
1745
1772.5
1745
SCC 1
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
16QAM
16QAM
16QAM
16QAM
16QAM
16QAM
99
99
99
99
99
66786
66786
66786
66786
67061
66786
2145
2145
2145
2145
2172.5
2145
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
LTE B5
LTE B12
LTE B12
LTE B66
LTE B66
LTE B66
10
10
10
20
20
2525
5095
5095
67236
66968
66588
881.5
737.5
737.5
2190
2163.2
2125.2
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
10.71
10.55
10.55
10.96
10.75
10.87
11.00
11.00
11.00
11.00
11.00
11.00
LTE Band 2 as PCC
Table 7
Maximum Output Powers
PCC
SCC 1
Combination
PCC Band
PCC BW
[MHz]
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
CA_2A-2A
CA_2A-12A (1)
LTE B2
LTE B2
18625
18625
1852.5
1852.5
QPSK
QPSK
24
24
625
625
1932.5
1932.5
LTE B2
LTE B12
20
10
1100
5095
1980
737.5
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
1100
5095
1980
737.5
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
24.11
24.15
24.11
24.15
Table 8
Reduced Output Powers
PCC
Combination
PCC Band
PCC BW
[MHz]
CA_2A-2A
CA_2A-12A (1)
LTE B2
LTE B2
20
20
1.3.5
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
18700
18700
1860
1860
SCC 1
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
16QAM
16QAM
99
99
700
700
1940
1940
LTE B2
LTE B12
20
10
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
10.45
11.00
10.54
11.00
LTE Band 41 as PCC
Table 9
Maximum Output Powers
PCC
SCC 1
Combination
PCC Band
PCC BW
[MHz]
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
CA_41C (1)
CA_41A-41A (1)
LTE B41
LTE B41
40620
40620
2593
2593
QPSK
QPSK
40620
40620
2593
2593
LTE B41
LTE B41
20
20
40737
39750
2604.7
2506
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
23.17
23.19
23.16
23.19
Table 10
Reduced Output Powers
PCC
SCC 1
Combination
PCC Band
PCC BW
[MHz]
PCC (UL) Ch.
PCC (UL)
Freq. [MHz]
Mod.
PCC UL#
RB
PCC UL RB
Offset
PCC (DL)
Channel
PCC (DL) Freq.
[MHz]
SCC Band
SCC BW
[MHz]
SCC (DL)
Channel
SCC (DL)
Freq. [MHz]
CA_41C (1)
CA_41A-41A (1)
LTE B41
LTE B41
20
20
40185
40185
2549.5
2549.5
16QAM
16QAM
40185
40185
2549.5
2549.5
LTE B41
LTE B41
20
20
40383
41490
2569.3
2680
SAR EVALUATION REPORT
FCC ID: A3LSMP205
Test Dates:
DUT Type:
02/03/19 - 02/21/19
Portable Tablet
© 2019 PCTEST Engineering Laboratory, Inc.
Power
LTE Tx.Power
LTE Single
with DL CA
Carrier Tx
Enabled
Power (dBm)
(dBm)
13.06
13.25
12.96
13.25
Reviewed by:
Quality Manager
APPENDIX H:
Page 4 of 4
REV 21.3 M
02/15/2019
Download: SMP205 Multi-band GSM/GPRS/UMTS/LTE Tablet with Bluetooth and WLAN RF Exposure Info 2 Samsung Electronics Co Ltd
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