SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd

Samsung Electronics Co Ltd GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC

FCC ID Filing: A3LSMA600GN

Page 1 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 2 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 3 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 4 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 5 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
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Page 7 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 8 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 9 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
Page 10 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd
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Page 12 of SMA600GN GSM/WCDMA/LTE Phone + BT/BLE, DTS/UNII a/b/g/n and ANT+ and NFC Test Report Nuance Communications, Inc. Samsung Electronics Co Ltd

Calibration Laboratory of
Schmid & Panner
Engineering AG
Zoughausstrassa 43. 5004 Zurich, Switzerland
s Schwalzarischor Kalihrlerdienst
Service suisso d'étalonnage
Servizio svizzero Iii taratura
Swiss Calibration Servloe
Accredited by the Swiss Aoeredriarion Service (SAS) Accraditation no: 863 0108
The Swiss Ancreditatlon Servlue is one of the signatories to the EA
Multilateral Agreement tor the recognitlon of calibration certificatas
crroni UL (205 USA Certificate No: EF3-4028_Ju|17
CALIBRATION CERTIFICATE
Objecl EF3DV3 - SN:4028
Calibration prooedureis) QA CAL»02.v8, QA CAL-25.v6
Calibration procedure for E—field probes optimized for close near field
evaluations in air
calibration dare: July 24, 2017
This calibralian cemhoaro documents the traceability lo naironaI standards, which realize the physreeI units or measurements (50.
The measuremenrs and Ihe unoerlalnties with oohhdenoe probaoihiy are given on ihe lollowing pages and are pen of the cenificate.
All calibrations have been conducted in the closed laboratory facility: envlronmenl temperature (22 1 3)°C and humidity < 70%.
Callbralion Equlpment used (M&TE oniioaI Ior oahhrahon)
Primary srahdards l ID Cal Dale goenihcaie Nov) Scheduled Calibration
Power meter NRP SN: 104773 04-Apr-17 (No. 217—0252002522) Apr-18
Power sensor NRP-Z91 3 03244 04-Apr-17 (Nos 217025212 Aprr18
Power sensor NRP-291 s V 03245 04—Apr-17 (Nod 217432525) Apr-18
Relerence 20 dB Allenuator SN: $5277 (ZDxl 07rApr-17 (No. 217—02528) Aprrls
Relerenoe Probe ERBDVG SN: 2328 14-Oct-16 (No, ER}2328,00!16) com
DAE4 SN‘ 739 3-Mar-l7 (No. DAE4-739,Mari7) Mar»18
Secondary Standards ID Check Date (In house) Scheduled Check
Power meIer E44193 SN: (3041293574 06-Apr-16 (In house check Jun-16) In house check: Junr18
Power sensor E4412A SN: MY41498057 05-Apr-16 (in house cheek Jun-1B) In house check: Jun-18
Power sensor 5441271 SN: 000110210 06-Apr-16 (in house check Junr16) In house check: Jun—16
RF generator HF' B6480 SN' usas42u01700 04-Au9799 (in house check Jun-16) In house check: Jun~15
Network Analyzer HP 37535 SN: usmeosas re-oor»01 (in house check OCHB) In house check: Oct-17
Name Function Signature
Calibrated by: Michael Weber Laboratory Technidan Mr
Approved by: Kaije Fokavic Technical Manager fl (g:
Issued' July 24. 2017
Thls calibrailcrn cerlificate shall not be reproduced except in full without written approval of the laboraloryo
Certificate No: EF3~40287JUI17 Page 1 oi 12
Calibration Laboratory of gig/I
Schmid & Partner
Engineering AG
Zeughausstrasse 43, 8004 Zurich. Switzerland
Schweizerischar Kalibrlerdienst
Service suisse d'etalonnage
Servizlo svizzero di taratura
Swiss Calibration Service
pg
Accredited by the Swiss Accreditation Service (SAS) Accreditation No.2 $68 0108
The Swiss Accreditaflon Service is one 0' the signatories to the EA
Multilateral Agreement for the recognition of calibration certificates
Glossary:
NORMx,y.z sensitivity in free space
DCP diode compression point
CF crest factor (1/duty,cycle) of the RF signal
A. B, C, D modulation dependent linearization parameters
Polarization o (4) rotation around probe axis
Polarization 9 8 rotation around an axis that is in the plane normal to probe axis (at measurement center),
i.e.. S = 0 is normal to probe axis
Connector Angle information used in DASY system to align probe sensor X to the robot coordinate system
Calibration is Performed According to the Following Standards:
a) IEEE Std 1309-2005, “ IEEE Standard for calibration of electromagnetic field sensors and probes. excluding
antennas, from 9 kHz to 40 GHZ", December 2005
b) CTlA Test Plan for Hearing Aid Compatibility. Rev 30, November 2013
Methods Applied and Interpretation of Parameters:
NORMx.y,z: Assessed for E-field polarization 9 = 0 for XY sensors and S = 90 for Z sensor (i s 900 MHz in
TEM-cell; i > 1800 MHz: R22 waveguide).
NORMmm/J = NORMX,y,z “ frequency_response (see Frequency Response Chart).
DCPx,y,z: DCP are numerical linearization parameters assessed based on the data of power sweep with CW
signal (no uncertainty required). DCP does not depend on frequency nor media.
PAR: PAR is the Peak to Average Ratio that is not calibrated but determined based on the signal
characteristics
Ax.y,z; Bx,y.z: Cx,y,z; Dx.y,z; VRx,y,z: A, B, C. D are numerical linearization parameters assessed based on
the data of power sweep for specific modulation signal. The parameters do not depend on lrequency nor
media. VR is the maximum calibration range expressed in RMS voltage across the diode.
Sphen‘cal isotropy (SD deviation from isotropy): in a locally homogeneous field realized using an open
waveguide setup,
Sensor Offset: The sensor offset corresponds to the offset of virtual measurement center from the probe tip
(on probe axis). No tolerance required.
Connector Angle: The angle is assessed using the information gained by determining the NORMx (no
uncertainty required).
Certificate No: EF3—4028 Jul17 Page 2 of 12
EF3DV3 — SN:4028 July 24. 2017
Probe EF3DV3
SN:4028
Manufactured: March 11, 2013
Calibrated: July 24, 2017
Calibrated for DASY/EASY Systems
(Note: non—compatible with DASY2 system!)
Certificate No: EF3-4028_Jul17 Page 3 0! 12
EFSDV3 — SN:4028 July 24. 2017
DASYIEASY - Parameters of Probe: EF3DV3 - SN:4028
Basic Calibration Parameters
Sensor X Sensor Y Sensor Z Unc (k=2)
Norm (pV/(V/mf) 1.02 0.31 1.31 2 10.1 %
DCP mm" 95.8 96.2 93.5
Modulation Calibration Parameters
UID Communication System Name A 3 C D VR Unct
dB de/uv dB mV (k=2l
0 W x 0.0 0.0 1.0 0.00 148.6 23.3 %
Y 0.0 0.0 1.0 171.1
2 0.0 0.0 1.0 163.0
£33021- GSM-FDD (TDMA. GMSK) x 1.67 64.6 11.1 9.39 120.3 21.2 %
Y 176 64.1 11.4 107.5
2 1.66 63.5 11.3 1019
1033:23- GPRS-FDD (TDMA. GMSK. TN 0) x 1.57 63.4 10.6 9.57 117.6 21.4 %
Y 1.80 64.4 12.0 1060
Z 1.74 64.7 12.3 99.6
11333345 GPRS-FDD (TDMA1 GMSKV TN 0—1) x 1.18 63.1 9.0 6.56 114.8 21.4 %
Y 1.65 66.2 11.7 135.1
2 1.30 62.6 9.5 126.2
10027- GPRS-FDD (TDMA. GMSK. TN 0-1-2) x 0,73 514 7.6 4.30 132.6 :03 %
DAC
Y 030 59.3 6.6 117.3
2 1.49 66.3 10.7 149.6
10028— GPRS-FDD (TDMA. GMSK, TN 0-1-23) x 1.13 66.0 9.0 3.55 147.6 20.9 %
DAC
Y 080 60.9 6.6 131.1
z 4713 99.9 20.3 1240
220030- IEEE 802.151 Bluetooth (GFSK, DH1) x 129 642 3.4 5.30 128.1 20.9 91,
AA
Y 2.32 68.6 11.0 113.2
2 1.36 64.4 9.5 143.6
10061- IEEE 802.11b WiFi 2.4 GHz (D588. 11 x 3,03 71,3 21_1 3.60 138.6 20.7 %
CAB Mbps)
Y 3.05 70.2 20.3 120.6
2 2.76 68.1 19.3 114.3
10069- lEEE 802.11a/h WiFi 5 GHz (OFDM. 54 x 11.37 71_7 25,5 10.56 147.2 23.0 %
CAB Mbps)
Y 1107 70.5 24.6 125.6
2 10.95 69.9 24.2 113.5
10077— IEEE 802.11g WiFi 2.4 GHZ x 10.26 70.9 25.7 11.00 123.7 23.3 %
CAB (DSSS/OFDM, 54 Mbps)
Y 10.92 72.9 26.3 143.9
2 10.75 72.2 26.3 140.5
10173» LTE-TDD (SC-FDMA. 1 RB. 20 MHz. x 6.41 733 26.7 9.48 144.2 22.2 %
CAC 16-QAM)
Y 6.36 72.5 25.6 126.9
2 6.10 71.3 25.0 119.4
Certificate No: EF3-40237Jul17 Page 4 of 12
EFSDV3 — SN:4028 July 24. 2017
10235— LTE-TDD (SC-FDMA, 1 RB. 10 MHZ.
X 6.42 73.8 26.7 9.48 144.3 $2.2 %
CAC 16—QAM)
Y 6.38 72.6 25.7 1270
Z 6.09 71.2 24,9 119.4
10238- LTE»TDD (SC-FDMA, 1 RE, 15 MHZ, X 5.41 738 26,7 9.48 144.3 12.2 "/0
GAO 16»QAM)
V 6.35 72.5 25.6 126.5
2 6.03 71.2 24.9 119.2
32595- CDMAZDOO, RC1, SOS, 1/8111 Rale 25 fr. X 6.26 74.3 29.3 12.49 138.9 12.2 “/0
Y 651 74.5 29.1 124.9
Z 6.20 72.8 i 28.3 116.9
The reported uncertainty of measurement is s ated as the standard uncertainty of measurement
multiplied by the coverage factor k=2, which for a normal distribution corresponds to a coverage
probability of approximately 95%.
3 Numerical linearlzation parameter. uncertainty not requlred.
E Uncertainty is delermrned using the max. deviation from linear response appiying rectanguiar distribution and is expressed tor the square oi the
field value.
Certificate No: EF3—4028‘Jul17 Page 5 of 12
EF3DV3 7 SN:4028 July 24‘ 2017
Frequency Response of E-Field
(TEM-Cellzifi110 EXX, Waveguide: R22)
1.
Frequency response (normalized)
p d
‘ z I l 1 x i I 1 x : x x x r |
r I I I
0 500 1500 2000 2500 who
f[MHz]
TE ”) Rgflfl “5%“? REG“)
Uncertainty of Frequency Response of E-field: 1 6.3% (k=2)
Csnificate No: EF3-4028_Jul17 Page 6 of 12
July 24, 2017
EFSDV3 — SNI4028
Receiving Pattern (¢), 9 = 0°
f=1800 MHz,R22,0°
P.“
f=600 MHZ,TEM,0°
' ‘5 us - . ' A5
‘.02Mosne
" 0 fizam c6 nu
225 . . m 225. . .315
"an. ‘ ' =7» ‘
I O I O O O O 0
Tot X Y Z To! X V Z
Receiving Pattern (¢), 9 = 90°
f=600 MHZ,TEM,90° f=1800 MHZ,R22,90°
77“.“. ,. 7-99
./ ’ —.\ . ' N\\
.35 ‘ - 45 us - 45
/ \ A .
.\ .y
'9 . .
v i
m». o a: o. as a. a ""1 o m a. on N g
\\ / /
223x .415 225 . ,315
\.\‘.\ . > . .
' 3%" 'V 270' ' 7
a I n in o o u i...
Tot X Y Z Tot X Y Z
Cemficaie No: EF3-40287Jul17 Page 7 of 12
EF3DV3 r SN:4028 July 24, 2017
Receiving Pattern (¢), 9 = 0°
Rel 1°;
«Wu 50W” ‘56:de 25553”;
Uncertainty 01‘ Axial lsotropy Assessment: at 0.5% (k=2)
Receiving Pattern (¢), 9 = 90°
Rol m
o T
\mz 60%!!2 1mg“; 25 MHZ
Uncertainty of Axial Isotropy Assessment: t 0.5% (k=2)
Certificate No: EF3-40287Jul17 Page 8 0f 12
EF3DV3 — SN:4028
Dynamic Range f(E-field)
(TEM cell , f = 900 MHz)
103
105m.“
10‘
Input Signal [uV]
$1
102,
10‘
10° 10‘ 102 103
E total [V/m]
not compensated compensated
Enor [dB]
10° 10‘ 102 10‘
E iolal [Vlm]
9 0
not compensated compensated
Uncertainty of Linearity Assessment: 3: 0.6% (k=2)
July 24, 2017
Certificate No: EF3-4028_Ju|17 Page 9 of 12
EFSDV3 — SN:4028 July 24. 2017
Deviation from Isotropy in Air
Error (1), 9), f = 900 MHz
-1.0 -D.8 -06 -0.4 v02 0.0 0.2 0‘4 0‘6 03 1.0
Uncanainty of Spherical lsotropy Assessment: : 2.6% (k=2)
Certificate No: EF340287Ju|17 Page 10 of 12
EF3DV3 7 SN:4028
July 24. 2017
DASYIEASY - Parameters of Probe: EF3DV3 - SN:4028
Other Probe Parameters
Sensor Arrangement
Rectangular
Connector Angle (°) 91.6
Mechanical Surface Detection Mode enabled
Optical Surface Detection Mode disabled
Probe Overall Length 337 mm
Probe Body Diameter 12 mm
Tip Length 25 mm
Tip Diameter 4 mm
Probe Tip to Sensor X Calibration Point 1.5 mm
Probe Tip to Sensor Y Calibration Point 1.5 mm
Probe Tip to Sensor Z Calibration Point 15 mm
Certificate No: EF3-40287Jul17
Page 11 of12
EFSDV3 — SN:4028
July 24. 2017
Appendix (Additional assessments outside the scope of SOS 0108)
Calibration Parameters for 3-4 GHz
Sensor X Sensor Y SensorZ Uni: (k=2i
Norm (uV/(V/m) ) 1.17 0.94 1.45 t 10.1 %
DCP (mV)“ 95.8 96.2 93.5
Calibration Parameters for 5-6 GHz
Sensorx SensorY Sensor Z Um: (k=2)
Norm (pV/(V/mf) 1.39 1.10 1.72 110.1 %
DCP mm“ 95.8 96.2 93.5
The reported uncertainty of measurement is stated as th
multiplied by the coverage factor k
probability of approximately 95%.
e standard uncertainty of measurement
=2, which for a normal distribution corresponds to a coverage
5 Numerical lineanzation parameter: uncertainty not required.
X Calibration procedure ror lrequencies above 3 GHZ is pending accreditation.
Certificate No: EF3-4028_Jul17
Page 12 of12
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Document ID3810439
Application IDRRiIbZ9rloPfxC+BD9eW9g==
Document Description12186501-S3V1 Appendix E
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeTest Report
Display FormatAdobe Acrobat PDF - pdf
Filesize95.07kB (1188436 bits)
Date Submitted2018-04-09 00:00:00
Date Available2018-04-10 00:00:00
Creation Date2017-08-03 05:52:36
Producing SoftwareNuance Communications, Inc.
Document Lastmod2018-04-03 21:28:53
Document TitleNuance Communications, Inc.
Document CreatorNuance Communications, Inc.

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XMP Toolkit                     : Adobe XMP Core 5.4-c005 78.147326, 2012/08/23-13:03:03
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Title                           : Nuance Communications, Inc.
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