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Page 1: 17047102 007 SAR TL107961b64fc16ad15a92ef-9f98f1eddca1ebd26a80f4b64e8bd016.r62.cf3.r… · 17047102 007 Seite 2 von 133 ... System Simulator CMU200 A0304212 2015/06/10 ... Symbol
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Contents

1. GENERAL REMARKS ......................................................................................................... 4

1.1 COMPLEMENTARY MATERIALS .......................................................................................... 4

2. TEST SITES ...................................................................................................................... 4

2.1 TEST FACILITIES .............................................................................................................. 4

2.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS .............................................................. 5

3. GENERAL PRODUCT INFORMATION .................................................................................... 6

3.1 PRODUCT FUNCTION AND INTENDED USE .......................................................................... 6

3.2 RATINGS AND SYSTEM DETAILS ........................................................................................ 6

4. TEST SET-UP AND OPERATION MODES .............................................................................. 8

5. SPECIFIC ABSORPTION RATE (SAR) ............................................................................... 16 5.1.1 Introduction ................................................................................................................................ 16 5.1.2 SAR Definition ............................................................................................................................ 16 5.1.3 SAR Measurement System ....................................................................................................... 16 5.1.4 Probe description ....................................................................................................................... 17 5.1.5 Phantom description .................................................................................................................. 18 5.1.6 Device holder description .......................................................................................................... 18 5.1.7 Scanning procedure ................................................................................................................... 19

5.2 DIELECTRIC PERFORMANCE............................................................................................ 20 5.2.1 System check procedure ........................................................................................................... 20

5.3 MEASUREMENT UNCERTAINTY ........................................................................................ 23

6. MEASUREMENT RESULTS ............................................................................................... 25

6.1 CONDUCTED POWER ...................................................................................................... 25

6.2 SAR TEST RESULTS ....................................................................................................... 41 6.2.1 Results overview of GSM900 .................................................................................................... 41 6.2.2 Results overview of GSM1800 .................................................................................................. 42 6.2.3 Results overview of GSM900 .................................................................................................... 43 6.2.4 Results overview of GSM1800 .................................................................................................. 44 6.2.5 Results overview of UMTS Band VIII ......................................................................................... 45 6.2.6 Results overview of UMTS Band I ............................................................................................. 46 6.2.7 Results overview of UMTS Band V ............................................................................................ 47 6.2.8 Results overview of LTE ............................................................................................................ 48

RESULTS OVERVIEW OF LTE BAND 1 BANDWIDTH 20M .............................................................. 48

RESULTS OVERVIEW OF LTE BAND 3 BANDWIDTH 20M .............................................................. 49

RESULTS OVERVIEW OF LTE BAND 7 BANDWIDTH 20M .............................................................. 50

RESULTS OVERVIEW OF LTE BAND 38 BANDWIDTH 20M ............................................................ 51

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RESULTS OVERVIEW OF LTE BAND 40 BANDWIDTH 20M ............................................................ 52 6.2.9 Results overview of WiFi............................................................................................................ 53

7. MULTIPLE TRANSMITTER INFORMATION ........................................................................... 56

8. PHOTOGRAPHS OF THE TEST SET-UP .............................................................................. 60

9. ANNEX A: SYSTEM PERFORMANCE CHECK ...................................................................... 62

SYSTEM PERFORMANCE CHECK (900MHZ) ................................................................................. 62

10. ANNEX B: TEST RESULT ................................................................................................. 70

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1. General Remarks

1.1 Complementary Materials

All attachments are integral parts of this test report. This applies especially to the following Annex: Annex A: System Performance Check Data and Highest SAR Plots;

2. Test Sites

2.1 Test Facilities

CCIC Southern Electronic Product Testing (Shenzhen) Co., Ltd. Electronic Testing Building, Shahe Road Xili, Nanshan District, Shenzhen, 518055, P. R. China Phone: +86 755 28780808 FAX: +86 755 26627238

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2.2 List of Test and Measurement Instruments

EQUIPMENT Type Serial number Due Date

System Simulator CMU200 A0304212 2015/06/10 System Simulator E5515C GB 47200710 2015/09/15 System Simulator CMW500 130805 2015/06/10

SAR Probe SATIMO SN_0913_EP169 2015/04/04 SAR Probe SATIMO SN 07/14 EPG211 2015/06/30

Dipole SID900 SN_0913_DIP0G900-215 2015/08/27 Dipole SID1800 SN_0913_DIP1G800-216 2015/08/27 Dipole SID2000 SN_0913_DIP2G000-219 2015/08/27 Dipole SID2450 SN 09/13_DIP2G450-220 2015/08/27 Dipole SWG5500 SN 24/11 WGA16 2015/06/17

Vector Network Analyzer ZVB8 A0802530 2015/06/10 Signal Generator SMR27 A0304219 2015/06/10

Power Meter NRP2 A140401673 2015/03/04 Power Sensor NPR-Z11 1138.3004.02-114072-nq 2015/03/04

Amplifier Nucletudes 143060 2015/04/04 Directional Coupler DC6180A 305827 2015/06/10

Power Meter NRVS A0802531 2015/06/10 Power Sensor NRV-Z4 100069 2015/06/10

Multimeter Keithley-2000 4014020 2015/04/16 Table 1: List of Test and Measurement Equipment Note: All the test equipments are calibrated once a year, except the dipoles, which are calibrated every three years. Moreover, we have self-calibration every year to the dipoles.

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3. General Product Information

3.1 Product Function and Intended Use PE-TL10 is subscriber equipment in the GSM/WCDMA/LTE system. The GSM/GPRS/EDGE frequency band includes GSM900 and DCS1800. The HSPA+ /HSUPA /HSDPA/DC-HSDPA/UMTS frequency band are Band I and Band VIII. The LTE Band are 1,3,7,38,40. The Mobile Phone implements such functions as RF signal receiving/transmitting, GSM/GPRS/EDGE and HSPA+/HSUPA/HSDPA/DC-HSDPA/UMTS protocol processing, voice, video, MMS service, CA Downlink Only,LTE,GPS, NFC and WIFI etc.

3.2 Ratings and System Details

device type : portable device DUT Name: Smart Phone Type Identification: PE-TL10 IMEI No : 864601020046751 exposure category: uncontrolled environment / general population test device production information

production unit

operating mode(s) GSM900/1800,UMTS Band I/V/VIII,LTE Band 1,3,7,38,40 WiFi(Tested),BT

Test modulation GSM(GMSK),UMTS(QPSK),LTE(QPSK) ,WIFI(DSSS/OFDM) Device Class : B operating frequency range(s) transmitter frequency range receiver frequency range GSM900 (tested): 880-915 MHz 925-960 MHz GSM1800 (tested): 1710-1785 MHz 1805-1880 MHz UMTS Band I (tested): 1920-1980 MHz 2110-2170 MHz UMTS Band VIII (tested): 880-915 MHz 925-960 MHz UMTS Band V (tested): 824-849 MHz 896-894 MHz LTE Band1(tested): 1920-1980MHz 2110-2170 MHz LTE Band3(tested): 1710-1785 MHz 1805-1880 MHz LTE Band7(tested): 2500-2570 MHz 2620-2690 MHz LTE Band38(tested): 2572.5-2610 MHz 2572.5-2610 MHz LTE Band40(tested): 2302.5-2390 MHz 2302.5-2390 MHz WiFi(tested): 2400-2483.5 MHz 2400-2483.5 MHz

5150-5250 MHz 5150-5250 MHz 5250-5350 MHz 5250-5350 MHz 5470-5725 MHz 5470-5725 MHz

BT: 2400-2483.5 MHz 2400-2483.5 MHz

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Power class :

tested with power level 5(GSM900) tested with power level 0(GSM1800) tested with power control “all 1”(UMTS Band I) tested with power control “all 1”(UMTS Band V) tested with power control “all 1”(UMTS Band VIII) tested with power control “23dBm”(LTE Band 1) tested with power control “23dBm ”( LTE Band 3) tested with power control “23dBm ”( LTE Band 7) tested with power control “23dBm ”( LTE Band 38) tested with power control “23dBm ”( LTE Band 40)

test channels (low-mid-high) :

975-37-124(GSM900) 512-698-885(GSM1800) 9613-9750-9887(UMTS Band I) 2712-2788-2863(UMTS Band VIII) 4132-4182-4233(UMTS Band V) 18100-18300-18500( LTE Band 1 BandWidth 20M) 19300-19575-19850( LTE Band 3 BandWidth 20M) 20850-21100-21350( LTE Band 7 BandWidth 20M) 37850-38000-38150( LTE Band 38 BandWidth 20M) 24250-24300-24350( LTE Band 40 BandWidth 20M) 1-7-13(WiFi 802.11b) 36-64-100-120-140(WiFi 802.11a)

hardware version : HL2PINEMH software version : PE-TL10V100R001CHNC900B001 antenna type : Integrated antenna

battery options :

Huawei Technologies Co., Ltd. Rechargeable Li-ion Battery Model: HB4547B6EBC Rated capacity: 3500mAh

Nominal Voltage: +3.8V

Charging Voltage: +4.35V

Earphone options:

B1# EMC323-011-01 B2# HG-04A

. Merry Electronics Co., Ltd. GoerTek.

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4. Test Set-up and Operation Modes The DUT is tested using a CMU 200 and a CMW 500 communications tester as controller unit to set test channels and maximum output power to the DUT, as well as for measuring the conducted peak power. Test positions as described in the tables above are in accordance with the specified test standard.

GSM Test Configurations

SAR tests for GSM900 and GSM1800, a communication link is set up with a base station by air link. The tests in the band of GSM900 and GSM1800 are performed in the mode of GPRS/EGPRS function. Since the GPRS class is 12 for this EUT, it has at most 4 timeslots in uplink and at most 4 timeslots in downlink, the maximum total timeslot is 5. The EGPRS class is 12 for this EUT, it has at most 4 timeslots in uplink, and at most 4 timeslots in downlink, the maximum total timeslot is 5. When SAR tests for EGPRS mode is necessary, GMSK modulation should be used to minimize SAR measurement error due to higher peak-to-average power (PAR) ratios inherent in 8-PSK.

UMTS Test Configurations

1) RMC As the SAR body tests for UMTS Band I and UMTS Band VIII,we established the radio link through call processing. The maximum output power were verified on high, middle and low channels for each test band according to 3GPP TS 34.121 with the following configuration:

1) 12.2kbps RMC, 64,144,384 kbps RMC with TPC set to ‘all 1’. 2) Test loop Mode 1.

For the output power, the configurations for the DPCCH and DPDCH1 are as followed (EUT do not support the DPDCH2-n)

Channel Bit Rate (kbps)

Channel Symbol Rate (ksps)

Spreading Factor

Spreading Code Number

Bits/Slot

DPCCH 15 15 256 0 10

DPDCH1

15 15 256 64 10 30 30 128 32 20 60 60 64 16 40 120 120 32 8 80 240 240 16 4 160 480 480 8 2 320 960 960 4 1 640

DPDCHn 960 960 4 1, 2, 3 640 SAR for body exposure configurations is measured using the 12.2 kbps RMC with the TPC bits configured to all “1s”. SAR for other spreading codes and multiple DPDCHn, when supported by the EUT, are not required when the maximum average outputs of each RF channel, for each spreading code and DPDCHn configuration, are less than ¼ dB higher than those measured in 12.2 kbps RMC.

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2) HSDPA SAR for body exposure configurations is measured according to the ‘’Body SAR Measurements’’ procedures of 3G device. In addition, body SAR is also measured for HSDPA when the maximum average outputs of each RF channel with HSDPA active is at ¼ dB higher than that measured without HSDPA using 12.2kbps RMC or the maximum SAR 12.2kbps RMC is above 75% of the SAR limit. Body SAR for HSDPA is measured using an FRC with H-Set 1 in Sub-test 1 and a 12.2kbps RMC configured in Test Loop Mode 1, using the highest body SAR configuration in 12.2 kbps RMC without HSDPA. HSDPA should be configured according to UE category of a test device. The number of HS-DSCH/ HS-PDSCHs, HAPRQ processes, minimum inter-TTI interval, transport block sizes and RV coding sequence are defined by the H-set. To maintain a consistent test configuration and stable transmission condition, QPSK is used in the H-set for SAR testing. HS-DPCCH should be configured with a CQI feedback cycle of 4ms with a CQI repetition factor of 2 to maintain a constant rate of active CQI slots. The Ec and Ed gain factors for DPCCH and DPDCH were set according to the values in the below table, Ehs for HS-DPCCH is set automatically to the correct value when ΔACK, ΔNACK, ΔCQI = 8. The variation of the Ec /Ed ratio causes a power reduction at sub-tests 2 - 4.

Sub-test

Ec Ed Ed (SF) Ec /Ed Ehs (1) CM(dB)(2)

MPR (dB)

1 2/15 15/15 64 2/15 4/15 0.0 0 2 12/15(3

) 15/15(3

) 64 12/15(3) 24/15 1.0 0

3 15/15 8/15 64 15/8 30/15 1.5 0.5 4 15/15 4/15 64 15/4 30/15 1.5 0.5

Note 1: ΔACK, ΔNACK and ΔCQI = 8 Ahs = Ehs/Ec = 30/15 Ehs = 30/15 * Ec

Note 2 : CM = 1 for Ec/Ed = 12/15, Ehs/Ec = 24/15 Note 3 : For subtest 2 the Ec/Ed ratio of 12/15 for the TFC during the measurement period (TF1, TF0) is achieved by setting the signalled gain factors for the reference TFC (TF1,TF1) to Ec = 11/15 and Ed = 15/15

Sub-tests for UMTS Release 5 HSDPA

The measurements were performed with a Fixed Reference Channel (FRC) and H-Set 1 QPSK. Parameter Value Nominal average inf. bit rate 534 kbit/s Inter-TTI Distance 3 TTI’s Number of HARQ Processes 2 Processes Information Bit Payload 3202 Bits MAC-d PDU size 336 Bits Number Code Blocks 1 Block Binary Channel Bits Per TTI 4800 Bits Total Available SMLs in UE 19200 SMLs Number of SMLs per HARQ Process 9600 SMLs Coding Rate 0.67 Number of Physical Channel Codes 5

settings of required H-Set 1 QPSK acc. to 3GPP 34.121

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Sub-test

Ec Ed

Ed (SF)

Ec/Ed Ehs(1) Eec Eed

Ee

c

(SF

)

Eed(c

ode)

CM(2)

(dB) MPR (dB)

AG(4)

Index

E-TFC

I

1 11/15(3)

15/15(3) 64

11/15(3) 22/15

209/225

1039/225

4 1 1.0 0.0 20 75

2 6/15 15/1

5 64 6/15 12/15 12/15 94/75 4 1 3.0 2.0 12 67

3 15/1

5 9/15 64 15/9 30/15 30/15

Eed1:47/15 Eed2:47/15

4 2 2.0 1.0 15 92

4 2/15 15/1

5 64 2/15 4/15 2/15 56/75 4 1 3.0 2.0 17 71

5 15/15(4)

15/15(4) 64

15/15(4) 30/15 24/15

134/15

4 1 1.0 0.0 21 81

Note 1: ΔACK, ΔNACK and ΔCQI = 8 Ahs = Ehs/Ec = 30/15 Ehs = 30/15 * Ec

Note 2: CM = 1 for Ec/Ed = 12/15, Ehs/Ec = 24/15. For all other combinations of DPDCH, DPCCH, HS-DPCCH, E-DPDCH and E-DPCCH the MPR is based on the relative CM difference

Note 3 : For subtest 1 the Ec/Ed ratio of 11/15 for the TFC during the measurement period (TF1, TF0) is achieved by setting the signalled gain factors for the reference TFC (TF1,TF1) to Ec = 10/15 and Ed = 15/15

Note 4 : For subtest 5 the Ec/Ed ratio of 15/15 for the TFC during the measurement period (TF1, TF0) is achieved by setting the signalled gain factors for the reference TFC (TF1,TF1) to Ec = 14/15 and Ed = 15/15

Note 5 : Testing UE using E-DPDCH Physical Layer category 1 Sub-test 3 is not required according to TS 25.306 Table 5.1g Note 6: Eed can not be set directly; it is set by Absolute Grant Value.

Subtests for HSUPA.

UE E-DCH Category

Maximum E-DCH Codes

Transmitted

Number of HARQ

Processes

E-DCH TTI(ms

)

Minimum Speading

Factor

Maximum E-DCH

Transport Block Bits

Max Rate

(Mbps)

1 1 4 10 4 7110 0.7296

2 2 8 2 4 2798

1.4592 2 4 10 4 14484

3 2 4 10 4 14484 1.4592

4 2 8 2 2 5772 2.9185 2 4 10 2 20000 2.00

5 2 4 10 2 20000 2.00 6

(No DPDCH) 4 8 10 2SF2&2S

F4 11484 5.76

4 4 2 20000 2.00 7

(No DPDCH) 4 8 2 2SF2&2S

F4 22996

4 4 10 20000 NOTE: When 4 codes are transmitted in parallel, two codes shall be transmitted with SF2 and two with SF4. UE categories 1 to 6 support QPSK only. UE category 7 supports QPSK and 16QAM.(TS25.306-7.3.0)

HSUPA UE category

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4) DC-HSDPA

SAR for body exposure configurations is measured according to the ‘’Body SAR Measurements’’ procedures of 3G device. SAR is required for Rel. 8 DC-HSDPA when SAR is required for Rel. 5 HSDPA; otherwise, the 3G SAR test reduction procedure is applied to DC-HSDPA with 12.2 kbps RMC as the primary mode.Power is measured for DC-HSDPA according to the H-Set 12, FRC configuration in Table C.8.1.12 of 3GPP TS 34.121-1 to determine SAR test reduction. A primary and a secondary serving HS-DSCH Cell are required to perform the power measurement and for the results to be acceptable.

Subtests for HS-DSCH

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LTE Test Configurations

The CMU500 WideBand Radio Communication Tester was used for LTE output power measurements and SAR testing. Closed loop power control was used so the UE transmits with maximum output power during SAR testing. SAR test were performed with the same number of RB and RB offsets transmitting on all frames.

For Time-Division Duplex (TDD) systems, SAR must be tested using a fixed periodic duty

factor according to the highest transmission duty factor implemented for the device and

supported by the defined 3GPP LTE TDD configurations.

TDD LTE Band 38/40 supports 3GPP TS 36.211 section 4.2 for Type 2 Frame Structure

and Table 4.2-2 for uplink-downlink configurations and Table 4.2-1 for Special subframe

configurations.

Figure 4.2-1: Frame structure type 2

One slot, Tslot=15360Ts

GP UpPTSDwPTS

One radio frame, Tf = 307200Ts = 10 ms

One half-frame, 153600Ts = 5 ms

30720Ts

One subframe, 30720Ts

GP UpPTSDwPTS

Subframe #2 Subframe #3 Subframe #4Subframe #0 Subframe #5 Subframe #7 Subframe #8 Subframe #9

Table 4.2-1: Configuration of special subframe (lengths of DwPTS/GP/UpPTS)

Special subframe configuration

Normal cyclic prefix in downlink Extended cyclic prefix in downlink DwPTS UpPTS DwPTS UpPTS

Normal

cyclic prefix in uplink

Extended cyclic prefix

in uplink

Normal cyclic prefix in uplink

Extended cyclic prefix in uplink

0 s6592 T�

s2192 T� s2560 T�

s7680 T�

s2192 T� s2560 T� 1 s19760 T� s20480 T�

2 s21952 T� s23040 T�

3 s24144 T� s25600 T�

4 s26336 T� s7680 T�

s4384 T� s5120 T� 5 s6592 T�

s4384 T� s5120 T�

s20480 T�

6 s19760 T� s23040 T�

7 s21952 T� s

12800 T�

8 s24144 T� - - -

9 s13168 T� - - -

Table 4.2-2: Uplink-downlink configurations

Uplink-downlink configuration

Downlink-to-Uplink Switch-point periodicity

Subframe number 0 1 2 3 4 5 6 7 8 9

0 5 ms D S U U U D S U U U 1 5 ms D S U U D D S U U D 2 5 ms D S U D D D S U D D 3 10 ms D S U U U D D D D D 4 10 ms D S U U D D D D D D 5 10 ms D S U D D D D D D D 6 5 ms D S U U U D S U U D

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According to Figure 4.2-1, one radio frame is configured by 10 subframes, which consist of

Uplink-subframe, Downlink-subframe and Special subframe. For TD-LTE, the Duty Cycle should

be calculated on Uplink-subframes and Special subframes, due to Special subframe containing

both Uplink transmissions.

For the TDD Band38/40

1)Spectrum Plots for RB configurations

A properly configured base station simulator was used for LTE output power measurements and SAR testing. Therefore, spectrum plots for RB configurations were not required to be included in this report.

2)MPR

When MPR is implemented permanently within the UE, regardless of network requirements, only those RB configurations allowed by 3GPP for the channel banwidth and modulation conbinations may be tested with MPR active. Configurations with RB allocations less than the RB thresholds required by 3GPP must be tested without MPR.

The allowed Maximum Power Reduction(MPR) for the maximum output power due to higher order modulation and transmit bandwidth configuration (resource blocks) is specified in Table 6.2.3-1 of the 3GPP TS36.101:

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3)A-MPR

A-MPR(Additional MPR) has been disabled for all SAR tests by using Network Signalling Value of “NS_01” on the base station simulator.

WIFI Test Configurations

For the 802.11b/g/n SAR tests, a communication link is set up with the test mode software for WiFi mode test. The Absolute Radio Frequency Channel Number(ARFCN) is allocated to 1,7and 13 respectively in the case of 2450 MHz.During the test,at the each test frequency channel, theEUT is operated at the RF continuous emission mode.Each channel should be tested at the lowest data rate. 802.11b operating modes are tested independently according to the service requirements in each frquency band.802.11b/g/n modes are tested on channel 1,7,13; however,if output power reduction is necessary for channels 1 and/or 13 to meet restricted band requirements the highest output channel closest to each of these channels must be tested instead. SAR is not required for 802.11g/n channels when the maximum average output power is less than 0.25dB higher than that measured on the corresponding 802.11b channels. For the 802.11a SAR tests, a communication link is set up with the test mode software for WIFI mode test. 802.11a operating modes are tested independently according to the service requirements in each 5G WIFI frequency band. During the test at each test frequency channel, the EUT is operated at the RF continuous emission mode. Each channel should be tested at the lowest data rate.

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5. Specific Absorption Rate (SAR)

5.1.1 Introduction SAR is related to the rate at which energy is absorbed per unit mass in an object exposed to

a radio field. The SAR distribution in a biological body is complicated and is usually carried out

by experimental techniques or numerical modeling. The standard recommends limits for two

tiers of groups, occupational/controlled and general population/uncontrolled, based on a

person’s awareness and ability to exercise control over his or her exposure. In general,

occupational/controlled exposure limits are higher than the limits for general

population/uncontrolled.

5.1.2 SAR Definition The SAR definition is the time derivative (rate) of the incremental energy (dW) absorbed by

(dissipated in) an incremental mass (dm) contained in a volume element (dv) of a given density

(). The equation description is as below:

SAR is expressed in units of Watts per kilogram (W/kg)

SAR measurement can be either related to the temperature elevation in tissue by

where C is the specific head capacity, δ T is the temperature rise and δ t the exposure

duration, or related to the electrical field in the tissue by

where σ is the conductivity of the tissue, ρ is the mass density of the tissue and E is the rms

electrical field strength.

However for evaluating SAR of low power transmitter, electrical field measurement is typically

applied.

5.1.3 SAR Measurement System The SAR measurement system being used is the COMOSAR test system, the system is

controlled remotely from a PC, which contains the software to control the robot and data acquisition equipment. The software also displays the data obtained from test scans.

In operation, the system first does an area (2D) scan at a fixed depth within the liquid from the inside wall of the phantom. When the maximum SAR point has been found, the system will then carry out a 3D scan centred at that point to determine volume averaged SAR level.

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5.1.4 Probe description

Probe Specification

Construction Symmetrical design with triangular core Interleaved sensors Built-in shielding against static charges PEEK enclosure material (resistant to organic solvents, e.g., DGBE)

Calibration ISO/IEC 17025 calibration service available.

Frequency 700 MHz to 3 GHz; Linearity: ± 0.5 dB (700 MHz to 3 GHz)

Directivity ± 0.25 dB in HSL (rotation around probe axis) ± 0.5 dB in tissue material (rotation normal to probe axis)

Dynamic Range 1.5 µW/g to 100 mW/g; Linearity: ± 0.5 dB

Dimensions Overall length: 330 mm (Tip: 20 mm) Tip diameter: 5 mm (Body: 8 mm) Distance from probe tip to dipole centers: <2.7 mm

Application General dosimetry up to 3 GHz Dosimetry in strong gradient fields Compliance tests of mobile phones

Frequency 700 MHz to 6 GHz; Linearity: ± 0.5 dB (700 MHz to 6 GHz)

Dimensions Overall length: 330 mm Tip diameter: 2.5 mm (Body: 8 mm) Distance from probe tip to dipole centers: 1 mm

Compatibility COMOSAR

Isotropic E-Field Probe

The isotropic E-Field probe has been fully calibrated and assessed for isotropicity, and

boundary effect within a controlled environment. Depending on the frequency for which the

probe is calibrated the method utilized for calibration will change.

The E-Field probe utilizes a triangular sensor arrangement as detailed in the diagram below:

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5.1.5 Phantom description

The phantom used for all tests i.e. for both system checks and device testing, was the twin-

headed "SAM Phantom", manufactured by SATIMO. The SAM twin phantom is a fiberglass

shell phantom with 2mm shell thickness (except the ear region, where shell thickness increases

to 6mm).

System checking was performed using the flat section, whilst Head SAR tests used the left

and right head profile sections. Body SAR testing also used the flat section between the head

profiles.

SAM Twin Phantom Testing tissue liquid

5.1.6 Device holder description

The device was placed in the device holder (illustrated below) that is supplied by SATIMO as

an integral part of the COMOSAR test system.

The device holder is designed to cope with the different positions given in the standard. It has

two scales for device rotation (with respect to the body axis) and device inclination (with respect

to the line between the ear reference points). The rotation centers for both scales is the ear

reference point (ERP). Thus the device needs no repositioning when changing the angles.

Device holder

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5.1.7 Scanning procedure

The SAR test against the head phantom was carried out as follow:

The same procedure should be also executed for the operation mode GSM1800.

The SAR test against the body-worn was carried out as follow:

The EUT was controlled to operate in GSM900 mode in channel 38 with the maximum output

power.

After an area scan has been done at a fixed distance of 2mm from the surface of the phantom

on the source side, a 3D scan is set up around the location of the maximum spot SAR. First, a

point within the scan area is visited by the probe and a SAR reading taken at the start of testing.

At the end of testing, the probe is returned to the same point and a second reading is taken.

Comparison between these start and end readings enables the power drift during measurement

to be assessed.

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The same procedure should be also executed for GSM900 in channel 975 and 124. And the

same measurement procedure should be carried out for the operation mode GSM 1800 MHz,

GPRS 900/ 1800MHz, WCDMA2100MHz/900/850MHz, LTE Band 1/3/7/38/40 in the lowest,

middle and the highest channel respectively.

Above is the scanning procedure flow chart and table from the IEEEp1528 standard. This is

the procedure for which all compliant testing should be carried out to ensure that all variations of

the device position and transmission behaviour are tested.

5.2 Dielectric Performance

5.2.1 System check procedure

The system check is performed by using a system check dipole which is positioned parallel to the planar part of the SAM phantom at the reference point. The distance of the dipole to the SAM phantom is determined by a plexiglass spacer. The dipole is connected to the signal source consisting of signal generator and amplifier via a directional coupler, N-connector cable and adaption to SMA. It is fed with a power of 250 mW(below 5GHz) or 100mW(above 5GHz). To adjust this power a power meter is used. The power sensor is connected to the cable before the system check to measure the power at this point and do adjustments at the signal generator. At the outputs of the directional coupler both return loss as well as forward power are controlled during the system check to make sure that emitted power at the dipole is kept constant. This can also be checked by the power drift measurement after the test (result on plot). System check results have to be equal or near the values determined during dipole calibration (target SAR in table above) with the relevant liquids and test system.

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5.2.2 Tissue Dielectric Parameters

The simulating liquids should be checked at the beginning of a series of SAR measurements to determine of the dielectic parameter are whichin the tolerances of the specified target values. The measured conductivity and relative permittivity shoud be within ±5% of the target values. Composition of Ingredients for the Tissue Material Used in the SAR Tests refer to EN 62209-1:2006

Frequency:5200/5400/5600/5800MHz Ingredients (% by weight)

Water 78 Mineral oil 11 Emulsifiers 9

Additives and Salt 2 Recommended Tissue Dielectric Parameters

Frequency (MHz) Head Tissue

εr σ(S/m)

300 45.3 0.87

450 43.5 0.87

835 41.5 0.90

900 41.5 0.97

1450 40.5 1.20

1800 40.0 1.40

1900 40.0 1.40

1950 40.0 1.40

2000 40.0 1.40

2450 39.2 1.80

3000 38.5 2.40

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5.2.3 Simulant liquids

For measurements against the phantom head, the “cheek” and “tilt” position on both the left hand and the right hand sides of the phantom. Simulant liquids that are used for testing at frequencies of GSM 900MHz, GSM 1800MHz, WCDMA 2100MHz/850MHz/ 900MHz, LTE Band 1,3,7,38,40,WIFI 802.11b which are made mainly of sugar, salt and water solutions may be left in the phantoms.

Dielectric Performance of Tissue Simulating Liquid

Temperature: 23.2°C; Humidity: 64%;

/ Frequency Permittivity ε Conductivity σ

(S/m)

Target value 900MHz 41.79±5% 0.97±5%

Validation value(2015-02-04) 900MHz 41.67 0.96

Target value 1800 MHz 40.17±5% 1.39±5%

Validation value(2015-02-06) 1800 MHz 39.98 1.38

Target value 2000MHz 38.93±5% 1.42±5% Validation value(2015-02-09) 2000MHz 38.88 1.43

Target value 2450MHz 38.64±5% 1.82±5% Validation value(2015-02-11) 2450MHz 38.57 1.83

Target value 5200MHz 36±5% 4.66±5% Validation value(2015-03-04) 5200MHz 36.8 4.78

Target value 5600MHz 35.5±5% 4.86±5% Validation value(2015-03-04) 5600MHz 36.1 4.90

Target value 900MHz 41.79±5% 0.97±5% Validation value(2015-03-07) 900MHz 41.71 0.95

Target value 1800 MHz 40.17±5% 1.39±5% Validation value(2015-03-07) 1800 MHz 39.97 1.41

System Verification Results

Frequency Duty cycle Target value 10g Test value 10g

900MHz (2015-02-04) 1:1 6.83 W/kg±10% 7.08 W/kg 1800MHz (2015-02-06) 1:1 20.30 W/kg±10% 20.32 W/kg 2000MHz (2015-02-09) 1:1 20.84 W/kg±10% 20.72 W/kg 2450MHz (2015-02-11) 1:1 23.77 W/kg±10% 23.68 W/kg 5200MHz (2015-03-04) 1:1 5.70 W/kg±10% 5.68 W/kg 5600MHz (2015-03-04) 1:1 6.04 W/kg±10% 6.12 W/kg 900MHz (2015-03-07) 1:1 6.83 W/kg±10% 7.00W/kg

1800MHz (2015-03-07) 1:1 20.30 W/kg±10% 20.24 W/kg *Note: All SAR values are normalized to 1W forward power.

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5.3 Measurement Uncertainty

No. Uncertainty Component Type Uncertainty Value (%)

Probability Distribution

k ci Standard

Uncertainty (%) ui(%)

Degree of freedom

Veff or vi

Measurement System

1 -Probe Calibration B 5.8 N 1 1 5.8 ∞

2 -Axial isotropy B 3.5 R 3 0.5 1.43 ∞

3 Hemispherical Isotropy B 5.9 R 3 0.5 2.41 ∞

4 -Boundary Effect B 1 R 3 1 0.58 ∞

5 -Linearity B 4.7 R 3 1 2.71 ∞

6 -System Detection Limits B 1.0 R 3 1 0.58 ∞

7 Modulation response B 3 N 1 1 3.00

8 -Readout Electronics B 0.5 N 1 1 0.50 ∞

9 -Response Time B 1.4 R 3 1 0.81 ∞

10 -Integration Time B 3.0 R 3 1 1.73 ∞

11 -RF Ambient Conditions B 3.0 R 3 1 1.73 ∞

12 -Probe Position Mechanical

tolerance B 1.4 R 3 1 0.81 ∞

13 -Probe Position with

respect to Phantom Shell B 1.4 R 3 1 0.81 ∞

14

-Extrapolation, Interpolation and Integration

Algorithms for Max. SAR evaluation

B 2.3 R 3 1 1.33 ∞

Uncertainties of the DUT

15 -Position of the DUT A 2.6 N 3 1 2.6 5

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16 -Holder of the DUT A 3 N 3 1 3.0 5

17 -Output Power Variation –

SAR drift measurement B 5.0 R 3 1 2.89 ∞

Phantom and Tissue Parameters

18 -Phantom

Uncertainty(shape and thickness tolerances)

B 4 R 3 1 2.31 ∞

19 Uncertainty in SAR

correction for deviation(in permittivity and conductivity)

B 2 N 1 1 2.00

20 -Liquid Conductivity Target

–tolerance B 2.5 R 3 0.6 1.95 ∞

21 -Liquid Conductivity –

measurement Uncertainty) B 4 N 3 1 0.92 9

22 -Liquid Permittivity Target

tolerance B 2.5 R 3 0.6 1.95 ∞

23 -Liquid Permittivity –

measurement uncertainty B 5 N 3 1 1.15 ∞

Combined Standard Uncertainty RSS 10.63

Expanded uncertainty (Confidence interval of 95 %)

K=2 21.26

Table 2: Measurement uncertainties

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6. Measurement Results

Result: Passed

Date of testing : 2015-02-04 to 2015-03-07 Test standard : EN50360,EN 50566 Measurement method : EN62209-1/EN62209-2 Limits : 2.0W/kg Kind of test site : Non-shielded room

Test setup

Ambient temperature : 22℃ Relative humidity : 45~75%

6.1 Conducted Power For the measurements a Rohde & Schwarz Radio Communication Tester CMU 200 was used. SAR drift measured at the same position in liquid before and after each SAR test as below 6.2 chapter. Note: CMU200 measures GSM peak and average output power for active timeslots.For SAR the timebased average power is relevant. The difference in between depends on the duty cycle of the TDMA signal :

No. of timeslots 1 2 3 4 Duty Cycle 1:8.3 1:4.1 1:2.77 1:2.08

timebased avg. power compared to slotted avg. power

-9.19dB -6.13dB -4.42dB -3.18dB

The signalling modes differ as follows:

mode coding scheme modulation GPRS CS1 to CS4 GMSK EDGE MCS1 to MCS4 GMSK EDGE MCS5 to MCS9 8PSK

Apart from modulation change (GMSK/8PSK) coding schemes differ in code rate without influence on the RF signal. Therefore one coding scheme per mode was selected for conducted power measurements.

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SIM 1 Conducted Power

GSM900 Burst-Averaged output Power

(dBm) Division

Factors

Frame-Averaged output Power (dBm)

975CH 37CH 124CH 975CH 37CH 124CH

GSM (CS) 32.26 32.24 31.90 -9.19 23.07 23.05 22.71

GPRS (GMSK)

1 Tx Slot 32.19 32.08 31.9 -9.19 23.00 22.89 22.71

2 Tx Slots 30.29 30.05 29.9 -6.13 24.16 23.92 23.77

3 Tx Slots 28.27 28.07 27.85 -4.42 23.85 23.65 23.43

4 Tx Slots 26.26 26.03 25.83 -3.18 23.08 22.85 22.65

EDGE (GMSK)

1 Tx Slot 32.19 32.08 31.9 -9.19 23.00 22.89 22.71

2 Tx Slots 30.29 30.05 29.9 -6.13 24.16 23.92 23.77

3 Tx Slots 28.27 28.07 27.85 -4.42 23.85 23.65 23.43

4 Tx Slots 26.26 26.03 25.83 -3.18 23.08 22.85 22.65

EDGE (8PSK)

1 Tx Slot 26.54 26.51 26.44 -9.19 17.35 17.32 17.25

2 Tx Slots 24.39 24.33 24.29 -6.13 18.26 18.20 18.16

3 Tx Slots 21.99 21.99 21.95 -4.42 17.57 17.57 17.53

4 Tx Slots 19.85 19.76 19.81 -3.18 16.67 16.58 16.63 Note: 1) The conducted power of GSM900 is measured with RMS detector. 2) Frame-averaged output power was calculated from the measured burst-averaged output power by converting the slot powers into linear units and calculating the energy over 8 timesolts. 3) The bolded GPRS 2Tx slots mode was selected for SAR testing according to the highest frame-averaged output power.

GSM1800 Burst-Averaged output Power

(dBm) Division

Factors

Frame-Averaged output Power (dBm)

512CH 698CH 885CH 512CH 698CH 885CH

GSM (CS) 29.62 29.88 29.85 -9.19 20.43 20.69 20.66

GPRS (GMSK)

1 Tx Slot 29.58 29.87 29.81 -9.19 20.39 20.68 20.62

2 Tx Slots 27.56 27.84 27.85 -6.13 21.43 21.71 21.72

3 Tx Slots 25.38 25.72 25.71 -4.42 20.96 21.30 21.29

4 Tx Slots 23.39 23.71 23.72 -3.18 20.21 20.53 20.54

EDGE (GMSK)

1 Tx Slot 29.58 29.87 29.81 -9.19 20.39 20.68 20.62

2 Tx Slots 27.56 27.84 27.85 -6.13 21.43 21.71 21.72

3 Tx Slots 25.38 25.72 25.71 -4.42 20.96 21.30 21.29

4 Tx Slots 23.39 23.71 23.72 -3.18 20.21 20.53 20.54

EDGE (8PSK)

1 Tx Slot 25.62 25.61 25.6 -9.19 16.43 16.42 16.41

2 Tx Slots 23.2 23.16 23.14 -6.13 17.07 17.03 17.01

3 Tx Slots 21.02 21.01 21 -4.42 16.60 16.59 16.58

4 Tx Slots 18.81 18.76 18.79 -3.18 15.63 15.58 15.61 Note: 1) The conducted power of GSM1800 is measured with RMS detector. 2) Frame-averaged output power was calculated from the measured burst-averaged output power by converting the slot powers into linear units and calculating the energy over 8 timesolts. 3) The bolded GPRS 2Tx slots mode was selected for SAR testing according to the highest frame-averaged output power.

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SIM 2 Conducted Power

GSM900

Burst-Averaged output Power (dBm) Division

Factors

Frame-Averaged output Power (dBm)

975CH

37CH 124CH 975CH 37CH 124CH

GSM (CS) 31.64 31.64 31.65 -9.19 22.45 22.45 22.46

GPRS (GMSK)

1 Tx Slot 32.21 32.09 32.16 -9.19 23.02 22.90 22.97

2 Tx Slots 30.35 30.29 30.30 -6.13 24.22 24.16 24.17

3 Tx Slots 28.29 28.30 28.32 -4.42 23.87 23.88 23.90

4 Tx Slots 26.27 26.21 26.28 -3.18 23.09 23.03 23.10

EDGE (GMSK)

1 Tx Slot 32.21 32.09 32.16 -9.19 23.02 22.90 22.97

2 Tx Slots 30.35 30.29 30.30 -6.13 24.22 24.16 24.17

3 Tx Slots 28.29 28.30 28.32 -4.42 23.87 23.88 23.90

4 Tx Slots 26.27 26.21 26.28 -3.18 23.09 23.03 23.10

EDGE (8PSK)

1 Tx Slot 27.21 27.14 27.16 -9.19 18.02 17.95 17.97

2 Tx Slots 25.13 25.08 25.03 -6.13 19.00 18.95 18.90

3 Tx Slots 22.93 22.86 22.86 -4.42 18.51 18.44 18.44

4 Tx Slots 20.69 20.70 20.62 -3.18 17.51 17.52 17.44 Note: 1) The conducted power of GSM900 is measured with RMS detector. 2) Frame-averaged output power was calculated from the measured burst-averaged output power by converting the slot powers into linear units and calculating the energy over 8 timesolts. 3) The bolded GPRS 2Tx slots mode was selected for SAR testing according to the highest frame-averaged output power.

GSM1800 Burst-Averaged output

Power (dBm) Division Factors

Frame-Averaged output Power (dBm)

512CH 698CH 885CH 512CH 698CH 885CH

GSM (CS) 29.82 29.79 29.70 -9.19 20.63 20.60 20.51

GPRS (GMSK)

1 Tx Slot 29.82 29.79 29.68 -9.19 20.63 20.60 20.49

2 Tx Slots 27.86 27.84 27.71 -6.13 21.73 21.71 21.58

3 Tx Slots 25.74 25.67 25.55 -4.42 21.32 21.25 21.13

4 Tx Slots 23.72 23.65 23.53 -3.18 20.54 20.47 20.35

EDGE (GMSK)

1 Tx Slot 29.82 29.79 29.68 -9.19 20.63 20.60 20.49

2 Tx Slots 27.86 27.84 27.71 -6.13 21.73 21.71 21.58

3 Tx Slots 25.74 25.67 25.55 -4.42 21.32 21.25 21.13

4 Tx Slots 23.72 23.65 23.53 -3.18 20.54 20.47 20.35

EDGE (8PSK)

1 Tx Slot 25.48 25.55 25.56 -9.19 16.29 16.36 16.37

2 Tx Slots 23.43 23.40 23.34 -6.13 17.30 17.27 17.21

3 Tx Slots 21.06 21.06 21.04 -4.42 16.64 16.64 16.62

4 Tx Slots 18.99 18.98 18.98 -3.18 15.81 15.80 15.80 Note: 1) The conducted power of GSM1800 is measured with RMS detector. 2) Frame-averaged output power was calculated from the measured burst-averaged output power by converting the slot powers into linear units and calculating the energy over 8 timesolts. 3) The bolded GPRS 2Tx slots mode was selected for SAR testing according to the highest frame-averaged output power.

UMTS2100 Average Power (dBm)

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(Band I) 9262CH 9750CH 9887CH

WCDMA 12.2kbps RMC 23.84 23.92 23.71

HSDPA

Subtest 1 23.77 23.94 23.64

Subtest 2 22.52 22.68 22.45

Subtest 3 21.65 21.84 21.56

Subtest 4 21.67 21.83 21.56

HSUPA

Subtest 1 19.98 20.30 19.93

Subtest 2 19.13 19.94 19.85

Subtest 3 20.83 20.98 20.92

Subtest 4 20.08 20.11 20.06

Subtest 5 20.37 20.70 19.97

DC-HSDPA

Subtest 1 23.77 23.94 23.64

Subtest 2 22.52 22.68 22.45

Subtest 3 21.65 21.84 21.56

Subtest 4 21.67 21.83 21.56

Note:1) The bolded 12.2kbps RMC mode was selected for SAR testing. 2) When maximum output of each RF channel with HSDPA/HSUPA/DC-HSDPA active is

≤ ¼ dB higher than without HSDPA/HSUPA/DC-HSDPA using 12.2 kbps RMC and maximum

SAR for 12.2 kbps RMC is ≤ 75% of SAR limit, SAR evaluation for HSDPA/HSUPA/DC-HSDPA is not required.

UMTS900 (Band VIII)

Average Power (dBm)

2712CH 2788CH 2863CH

WCDMA 12.2kbps RMC 24.19 24.08 23.97

HSDPA

Subtest 1 24.16 24.09 23.95

Subtest 2 22.89 22.78 22.72

Subtest 3 22.28 22.19 22.13

Subtest 4 22.27 22.19 22.12

HSUPA

Subtest 1 20.36 20.29 20.14

Subtest 2 19.37 20.11 19.83

Subtest 3 21.26 21.41 21.62

Subtest 4 20.35 20.20 19.87

Subtest 5 20.42 20.26 20.46

DC-HSDPA

Subtest 1 24.16 24.09 23.95

Subtest 2 22.89 22.78 22.72

Subtest 3 22.28 22.19 22.13

Subtest 4 22.27 22.19 22.12 Note:1) The bolded 12.2kbps RMC mode was selected for SAR testing.

2) When maximum output of each RF channel with HSDPA/HSUPA/DC-HSDPA active is ≤ ¼ dB higher than without HSDPA/HSUPA/DC-HSDPA using 12.2 kbps RMC and maximum

SAR for 12.2 kbps RMC is ≤ 75% of SAR limit, SAR evaluation for HSDPA/HSUPA/DC-HSDPA is not required.

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UMTS850 (Band V)

Average Power (dBm)

4132CH 4182CH 4233CH

WCDMA 12.2kbps RMC 24.25 24.24 24.19

HSDPA

Subtest 1 24.22 24.27 24.17

Subtest 2 22.94 22.96 22.91

Subtest 3 22.29 22.32 22.25

Subtest 4 22.24 22.3 22.23

HSUPA

Subtest 1 20.35 20.28 20.29

Subtest 2 20.27 20.34 20.23

Subtest 3 21.42 21.61 21.56

Subtest 4 20.44 20.47 20.26

Subtest 5 20.7 21.12 20.58

DC-HSDPA

Subtest 1 24.22 24.27 24.17

Subtest 2 22.94 22.96 22.91

Subtest 3 22.29 22.32 22.25

Subtest 4 22.24 22.3 22.23 Note:1) The bolded 12.2kbps RMC mode was selected for SAR testing.

2) When maximum output of each RF channel with HSDPA/HSUPA/DC-HSDPA active is ≤ ¼ dB higher than without HSDPA/HSUPA/DC-HSDPA using 12.2 kbps RMC and maximum

SAR for 12.2 kbps RMC is ≤ 75% of SAR limit, SAR evaluation for HSDPA/HSUPA/DC-HSDPA is not required.

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LTE FDD 1 Conducted Power(dBm)

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

5MHz

QPSK

1 0 21.98 21.78 21.88

1 13 22.67 22.46 22.71

1 24 21.92 21.79 22.11

12 0 21.75 21.68 21.7

12 6 21.91 21.86 22.05

12 13 21.73 21.73 21.98

25 0 21.77 21.75 21.69

16QAM

1 0 21.13 21.03 20.91

1 13 21.81 21.74 21.76

1 24 21.15 21.07 21.2

12 0 20.82 20.7 20.66

12 6 20.99 20.9 20.99

12 13 20.81 20.76 20.92

25 0 20.93 20.85 20.73

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

10MHz

QPSK

1 0 22.08 22.17 22.1

1 25 22.79 22.65 22.54

1 49 22.23 22.17 22.16

25 0 21.74 21.61 21.56

25 13 22 21.92 21.66

25 25 21.8 21.64 21.34

50 0 21.63 21.7 21.3

16QAM

1 0 21.45 21.37 21.08

1 25 21.92 21.79 21.48

1 49 21.41 21.36 21.06

25 0 20.75 20.59 20.61

25 13 21.03 20.86 20.73

25 25 20.87 20.62 20.4

50 0 20.67 20.64 20.37

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

15MHz

QPSK

1 0 22.39 22.24 22.25

1 38 22.89 22.61 22.52

1 74 22.18 22.03 22.05

36 0 21.9 21.76 21.59

36 18 22.1 21.91 21.72

36 39 22.05 21.85 21.49

75 0 21.89 21.82 21.51

16QAM

1 0 21.51 21.24 21.38

1 38 21.97 21.58 21.64

1 74 21.35 21.09 21.17

36 0 20.98 20.78 20.71

36 18 21.18 20.92 20.84

36 39 21.12 20.86 20.59

75 0 20.94 20.8 20.6

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

20MHz

QPSK

1 0 22.65 22.53 22.79

1 50 22.90 22.56 22.43

1 99 22.39 22.50 22.53

50 0 22.03 22.19 21.96

50 25 22.24 21.97 21.66

50 50 22.24 21.74 21.69

100 0 22.19 21.95 21.74

16QAM

1 0 22.10 21.95 22.24

1 50 22.31 21.94 21.87

1 99 21.87 21.88 21.91

50 0 21.10 21.20 21.04

50 25 21.30 20.95 20.77

50 50 21.32 20.76 20.77

100 0 21.22 20.91 20.81

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LTE FDD 3 Conducted Power(dBm)

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

1.4MHz

QPSK

1 0 22.26 22.58 21.84

1 3 22.39 22.74 21.27

1 5 22.39 22.61 21.01

3 0 22.55 22.63 21.34

3 2 22.6 22.7 21.27

3 3 22.57 22.66 21.16

6 0 21.81 21.9 20.55

16QAM

1 0 21.25 21.6 20.8

1 3 21.41 21.53 20.01

1 5 21.48 21.42 19.76

3 0 21.34 21.47 20.09

3 2 21.33 21.55 20.01

3 3 21.3 21.47 19.91

6 0 20.77 20.99 19.59

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

3MHz

QPSK

1 0 22.19 22.34 21.9

1 7 22.59 22.76 22.2

1 14 22.26 22.43 20.87

8 0 21.67 21.77 21.53

8 4 21.76 21.89 21.53

8 7 21.7 21.85 20.58

15 0 21.67 21.8 21.46

16QAM

1 0 21.25 21.4 21.1

1 7 21.42 21.58 21.38

1 14 21.09 21.26 19.95

8 0 20.72 20.82 20.54

8 4 20.82 20.94 20.55

8 7 20.76 20.91 19.61

15 0 20.63 20.82 20.39

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

5MHz

QPSK

1 0 22.02 22.22 21.94

1 13 22.6 22.79 22.39

1 24 21.79 22 20.57

12 0 21.62 21.74 21.56

12 6 21.81 21.97 21.73

12 13 21.64 21.72 21.37

25 0 21.55 21.72 21.53

16QAM

1 0 20.97 21.23 21

1 13 21.54 21.77 21.39

1 24 20.86 21.02 19.47

12 0 20.56 20.73 20.5

12 6 20.73 20.96 20.64

12 13 20.58 20.7 20.29

25 0 20.54 20.74 20.49

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

10MHz

QPSK

1 0 22.3 22.45 22.33

1 25 22.52 22.82 22.58

1 49 21.89 22.01 20.69

25 0 21.37 21.64 21.67

25 13 21.54 21.72 21.65

25 25 21.27 21.37 21.27

50 0 21.31 21.43 21.47

16QAM

1 0 21.17 21.23 21.38

1 25 21.47 21.55 21.6

1 49 20.77 20.79 19.62

25 0 20.36 20.69 20.63

25 13 20.55 20.77 20.61

25 25 20.3 20.43 20.24

50 0 20.31 20.45 20.47

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

15MHz

QPSK

1 0 22.45 22.49 22.02

1 38 22.54 22.8 22.97

1 74 21.93 21.92 20.93

36 0 21.62 21.68 21.72

36 18 21.69 21.84 21.99

36 39 21.5 21.57 21.72

75 0 21.42 21.56 21.68

16QAM

1 0 21.24 21.67 21.07

1 38 21.44 21.87 21.77

1 74 20.85 21.11 19.71

36 0 20.5 20.81 20.73

36 18 20.57 20.96 20.98

36 39 20.38 20.7 20.56

75 0 20.52 20.67 20.64

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

20MHz

QPSK

1 0 22.75 22.98 22.52

1 50 22.52 22.89 22.82

1 99 22.31 22.58 22.01

50 0 21.71 22.04 21.71

50 25 21.86 22.02 21.91

50 50 21.91 22.06 21.85

100 0 21.93 22.04 21.68

16QAM

1 0 21.97 22.14 21.57

1 50 21.83 22.05 21.87

1 99 21.81 21.68 21.01

50 0 20.79 20.86 20.71

50 25 20.68 20.83 20.91

50 50 20.77 20.88 20.81

100 0 20.76 20.87 20.62

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LTE FDD 7 Conducted Power(dBm)

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

5MHz

QPSK

1 0 20.87 21.37 21.49

1 13 21.58 21.95 22.09

1 24 20.94 21.18 21.47

12 0 20.85 20.92 20.97

12 6 21.07 21.11 21.2

12 13 20.87 21.14 20.99

25 0 20.79 21.32 20.96

16QAM

1 0 20.31 20.78 20.56

1 13 21.01 21.36 21.21

1 24 20.44 20.62 20.58

12 0 19.5 19.8 19.65

12 6 19.76 20 19.9

12 13 19.58 19.74 19.71

25 0 19.52 19.81 19.68

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

10MHz

QPSK

1 0 21.38 21.6 21.44

1 25 21.93 21.93 21.79

1 49 21.31 21.24 21.14

25 0 20.46 20.74 20.5

25 13 20.73 20.91 20.59

25 25 20.49 20.56 20.38

50 0 20.44 20.64 20.45

16QAM

1 0 20.5 20.97 20.84

1 25 21.06 21.3 21.02

1 49 20.48 20.59 20.41

25 0 19.19 19.41 19.18

25 13 19.48 19.6 19.44

25 25 19.26 19.25 19.22

50 0 19.24 19.35 19.31

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

15MHz

QPSK

1 0 21.39 21.63 21.7

1 38 21.86 21.83 21.6

1 74 21.31 21.23 21.1

36 0 20.6 20.87 20.72

36 18 20.8 20.93 20.78

36 39 20.63 20.7 20.43

75 0 20.6 20.73 20.58

16QAM

1 0 20.67 21.1 20.86

1 38 21.12 21.29 20.93

1 74 20.63 20.67 20.28

36 0 19.51 19.65 19.7

36 18 19.72 19.74 19.58

36 39 19.56 19.52 19.39

75 0 19.53 19.54 19.52

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

20MHz

QPSK

1 0 21.57 21.85 22.25

1 50 21.88 22.08 21.94

1 99 21.61 21.85 21.51

50 0 20.74 21.15 21.07

50 25 20.81 21.04 20.92

50 50 20.79 20.99 20.86

100 0 20.7 21.02 21.09

16QAM

1 0 21.02 21.47 21.48

1 50 21.31 21.44 21.34

1 99 21.14 21.14 20.8

50 0 19.65 19.75 19.73

50 25 19.73 19.67 19.6

50 50 19.73 19.66 19.51

100 0 19.65 19.66 19.74

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LTE FDD 38 Conducted Power(dBm)

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

5MHz

QPSK

1 0 21.2 21.5 21.48

1 13 22.23 22.25 22.16

1 24 21.5 21.56 21.37

12 0 20.85 20.87 21.01

12 6 21.11 21.19 21.17

12 13 20.9 20.99 20.85

25 0 20.86 21.06 20.92

16QAM

1 0 20.62 20.78 20.99

1 13 21.38 21.53 21.67

1 24 20.67 20.86 20.89

12 0 19.71 19.89 19.98

12 6 19.98 20.2 20.14

12 13 19.79 20 19.81

25 0 19.75 20 19.89

Bandwidth Modulation RB size RB offset Channel Channel Channel

10MHz

QPSK

1 0 21.65 21.84 21.89

1 25 22.31 22.29 22.25

1 49 21.4 21.58 21.37

25 0 20.64 20.68 20.91

25 13 20.95 21.04 20.95

25 25 20.52 20.67 20.58

50 0 20.64 20.6 20.66

16QAM

1 0 20.75 21.32 21.25

1 25 21.37 21.74 21.65

1 49 20.43 21.07 20.75

25 0 19.58 19.63 19.91

25 13 19.89 20.02 19.97

25 25 19.49 19.66 19.56

50 0 19.58 19.57 19.7

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

15MHz

QPSK

1 0 21.8 22.03 22.08

1 38 22.21 22.29 22.48

1 74 21.43 21.77 21.5

36 0 20.91 20.94 21.09

36 18 20.97 21.18 21.15

36 39 20.69 20.89 20.85

75 0 20.88 20.92 20.91

16QAM

1 0 20.89 21.42 21.47

1 38 21.26 21.66 21.89

1 74 20.47 21.17 20.89

36 0 19.89 19.92 20.17

36 18 19.96 20.16 20.23

36 39 19.69 19.87 19.94

75 0 19.84 19.9 19.96

Bandwidth Modulation RB size RB offset Channel Channel Channel

20MHz

QPSK

1 0 22.06 22.11 22.44

1 50 22.18 22.23 22.36

1 99 21.89 22 21.69

50 0 21.11 21.09 21.36

50 25 20.98 20.99 21.13

50 50 21.02 21.2 21.02

100 0 21.06 21.09 21.13

16QAM

1 0 21.12 21.06 21.55

1 50 21.21 21.15 21.51

1 99 20.97 20.91 20.81

50 0 20.08 20.06 20.39

50 25 19.97 19.98 20.17

50 50 19.98 20.16 20.09

100 0 20.05 20.06 20.21

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LTE TDD 40 Conducted Power(dBm)

Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

5MHz

QPSK

1 0 21.88 21.93 22.21

1 13 22.94 22.75 22.96

1 24 22.05 21.92 21.98

12 0 21.51 21.5 21.89

12 6 21.76 21.7 22.15

12 13 21.49 21.58 21.89

25 0 21.52 21.49 21.92

16QAM

1 0 21.11 21.01 21.63

1 13 22.03 21.87 22.39

1 24 21.16 21 21.41

12 0 20.33 20.21 20.54

12 6 20.58 20.58 20.8

12 13 20.32 20.28 20.54

25 0 20.34 20.35 20.56

Bandwidth Modulation RB size RB offset Channel Channel Channel

10MHz

QPSK

1 0 22.38 22.25 22.47

1 25 22.98 22.84 23.02

1 49 22.57 22.15 22.1

25 0 21.44 21.31 21.6

25 13 21.57 21.54 21.86

25 25 21.44 21.28 21.61

50 0 21.3 21.33 21.6

16QAM

1 0 21.5 21.62 21.69

1 25 21.99 22.19 22.25

1 49 21.65 21.51 21.34

25 0 20.2 19.96 20.21

25 13 20.34 20.37 20.45

25 25 20.07 19.95 20.2

50 0 20.09 20.19 20.25

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Bandwidth Modulation RB size RB offset Channel Channel Channel

LCH MCH HCH

15MHz

QPSK

1 0 22.45 22.51 22.66

1 38 23.15 22.85 22.96

1 74 22.35 22.22 22.17

36 0 21.7 21.56 21.71

36 18 21.95 21.69 21.99

36 39 21.97 21.47 21.74

75 0 21.5 21.5 21.84

16QAM

1 0 21.2 21.64 21.63

1 38 21.92 22 22.13

1 74 21.15 21.36 21.35

36 0 20.5 20.24 20.35

36 18 20.62 20.54 20.64

36 39 20.64 20.17 20.39

75 0 20.14 20.2 20.51

Bandwidth Modulation RB size RB offset Channel Channel Channel

20MHz

QPSK

1 0 22.89 22.79 22.94

1 50 23.34 22.9 22.98

1 99 22.85 22.73 22.67

50 0 21.92 21.75 21.91

50 25 22.1 21.75 21.92

50 50 21.9 21.84 21.95

100 0 21.88 21.79 21.91

16QAM

1 0 21.79 21.66 21.75

1 50 22.25 21.78 21.94

1 99 21.71 21.6 21.66

50 0 20.68 20.59 20.74

50 25 20.71 20.61 20.58

50 50 20.51 20.56 20.64

100 0 20.55 20.53 20.61

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6.2 SAR test results

SIM1 test results 6.2.1 Results overview of GSM900

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 1

Left Cheek 38/897.4 Voice 0.190 -3.63 2.0 21.5°C

Left Tilt 38/897.4 Voice 0.180 3.54 2.0 21.5°C

Right Cheek 38/897.4 Voice 0.177 -4.71 2.0 21.5°C

Right Tilt 38/897.4 Voice 0.149 4.42 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 1

Face Upward 38/897.4 Voice 0.209 4.39 2.0 21.5°C

Back Upward 975/880.2 Voice 0.218 0.22 2.0 21.5°C

Back Upward 38/897.4 Voice 0.234 -3.76 2.0 21.5°C

Back Upward 124/914.8 Voice 0.222 -1.89 2.0 21.5°C

Back Upward with Earphone 1#

38/897.4 Voice 0.062 -0.57 2.0 21.5°C

Back Upward with Earphone 2#

38/897.4 Voice 0.043 -2.84 2.0 21.5°C

Face Upward 38/897.4 Data 0.034 -1.14 2.0 21.5°C

Back Upward 975/880.2 Data 0.041 -0.27 2.0 21.5°C

Back Upward 38/897.4 Data 0.041 -0.46 2.0 21.5°C

Back Upward 124/914.8 Data 0.043 0.98 2.0 21.5°C

Back Upward with Earphone 1#

38/897.4 Data 0.044 1.23 2.0 21.5°C

Back Upward with Earphone 2#

38/897.4 Data 0.043 0.82 2.0 21.5°C

Table 3: Test results GSM900 of SIM 1

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6.2.2 Results overview of GSM1800

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/k

g)

Liquid Temp.

10-g

Tested data with the SIM1

Left Cheek 698/1747.4 Voice 0.201 1.1 2.0 21.5°C

Left Tilt 698/1747.4 Voice 0.182 0.5 2.0 21.5°C

Right Cheek 698/1747.4 Voice 0.284 -2.8 2.0 21.5°C

Right Tilt 698/1747.4 Voice 0.201 -2.86 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 1

Face Upward 698/1747.4 Voice 0.243 -1.71 2.0 21.5°C

Back Upward 512/1710.2 Voice 0.416 -4.52 2.0 21.5°C

Back Upward 698/1747.4 Voice 0.418 -3.81 2.0 21.5°C

Back Upward 885/1784.8 Voice 0.413 4.09 2.0 21.5°C

Back Upward with Earphone 1#

698/1747.4 Voice 0.378 1.98 2.0 21.5°C

Back Upward with Earphone 2#

698/1747.4 Voice 0.375 -2.36 2.0 21.5°C

Face Upward 698/1747.4 Data 0.241 2.17 2.0 21.5°C

Back Upward 512/1710.2 Data 0.458 2.21 2.0 21.5°C

Back Upward 698/1747.4 Data 0.461 3.6 2.0 21.5°C

Back Upward 885/1784.8 Data 0.460 -0.91 2.0 21.5°C

Back Upward with Earphone 1#

698/1747.4 Data 0.389 1.04 2.0 21.5°C

Back Upward with Earphone 2#

698/1747.4 Data 0.392 4.64 2.0 21.5°C

Table 4: Test results GSM1800 of SIM 1

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SIM2 test results 6.2.3 Results overview of GSM900

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 2

Right Cheek 975/880.2 Voice 0.239 1.25 2.0 21.5°C

Right Cheek 38/897.4 Voice 0.262 -1.27 2.0 21.5°C

Right Cheek 124/914.8 Voice 0.240 -0.23 2.0 21.5°C

Right Tilt 38/897.4 Voice 0.126 -0.33 2.0 21.5°C

Left Cheek 38/897.4 Voice 0.242 -1.94 2.0 21.5°C

Left Tilt 38/897.4 Voice 0.199 4.06 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 2

Face Upward 38/897.4 Voice 0.144 0.04 2.0 21.5°C

Back Upward 975/880.2 Voice 0.261 -2.66 2.0 21.5°C

Back Upward 38/897.4 Voice 0.273 -4.53 2.0 21.5°C

Back Upward 124/914.8 Voice 0.281 1.65 2.0 21.5°C

Back Upward with Earphone 1#

38/897.4 Voice 0.268 -4.64 2.0 21.5°C

Back Upward with Earphone 2#

38/897.4 Voice 0.267 -2.02 2.0 21.5°C

Face Upward 38/897.4 Data 0.127 0.95 2.0 21.5°C

Back Upward 975/880.2 Data 0.221 -0.61 2.0 21.5°C

Back Upward 38/897.4 Data 0.228 2.03 2.0 21.5°C

Back Upward 124/914.8 Data 0.224 1.92 2.0 21.5°C

Back Upward with Earphone 1#

38/897.4 Data 0.194 4.51 2.0 21.5°C

Back Upward with Earphone 2#

38/897.4 Data 0.1.87 -1.04 2.0 21.5°C

Table 3: Test results GSM900 of SIM2

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6.2.4 Results overview of GSM1800

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/k

g)

Liquid Temp.

10-g

Tested data with the SIM2

Left Cheek 512/1710.2 Voice 0.019 4.04 2.0 21.5°C

Left Cheek 698/1747.4 Voice 0.019 3.68 2.0 21.5°C

Left Cheek 885/1784.8 Voice 0.020 2.07 2.0 21.5°C

Left Tilt 698/1747.4 Voice 0.009 -2.82 2.0 21.5°C

Right Cheek 698/1747.4 Voice 0.013 4.03 2.0 21.5°C

Right Tilt 698/1747.4 Voice 0.005 3.97 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Tested data with the SIM 2

Face Upward 698/1747.4 Voice 0.167 -2.15 2.0 21.5°C

Back Upward 512/1710.2 Voice 0.441 -1.54 2.0 21.5°C

Back Upward 698/1747.4 Voice 0.464 0.63 2.0 21.5°C

Back Upward 885/1784.8 Voice 0.447 0.83 2.0 21.5°C

Back Upward with Earphone 1#

698/1747.4 Voice 0.436 -2.46 2.0 21.5°C

Back Upward with Earphone 2#

698/1747.4 Voice 0.432 -1.34 2.0 21.5°C

Face Upward 698/1747.4 Data 0.106 3.00 2.0 21.5°C

Back Upward 512/1710.2 Data 0.358 1.23 2.0 21.5°C

Back Upward 698/1747.4 Data 0.355 -1.97 2.0 21.5°C

Back Upward 885/1784.8 Data 0.396 3.49 2.0 21.5°C

Back Upward with Earphone 1#

698/1747.4 Data 0.364 2.91 2.0 21.5°C

Back Upward with Earphone 2#

698/1747.4 Data 0.357 -3.21 2.0 21.5°C

Table 4: Test results GSM1800 of SIM2

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6.2.5 Results overview of UMTS Band VIII

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 2788/897.6 RMC 0.055 1.38 2.0 21.5°C

Left Tilt 2788/897.6 RMC 0.040 -0.03 2.0 21.5°C

Right Cheek 2712/882.4 RMC 0.061 -0.50 2.0 21.5°C

Right Cheek 2788/897.6 RMC 0.063 -0.10 2.0 21.5°C

Right Cheek 2863/912.6 RMC 0.065 -2.70 2.0 21.5°C

Right Tilt 2788/897.6 RMC 0.043 0.07 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 2788/897.6 RMC 0.052 -2.80 2.0 21.5°C

Back Upward 2712/882.4 RMC 0.084 -1.33 2.0 21.5°C

Back Upward 2788/897.6 RMC 0.088 -2.90 2.0 21.5°C

Back Upward 2863/912.6 RMC 0.085 -1.45 2.0 21.5°C

Back Upward with Earphone 1#

2788/897.6 RMC 0.067 -0.46 2.0 21.5°C

Back Upward with Earphone 2#

2788/897.6 RMC 0.069 -0.31 2.0 21.5°C

Table 5: Test results UMTS Band VIII

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6.2.6 Results overview of UMTS Band I

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 9612/1922.4 RMC 0.048 2.98 2.0 21.5°C

Left Cheek 9750/1950 RMC 0.062 -0.61 2.0 21.5°C

Left Cheek 9888/1977 RMC 0.048 -2.47 2.0 21.5°C

Left Tilt 9750/1950 RMC 0.034 0.32 2.0 21.5°C

Right Cheek 9750/1950 RMC 0.032 1.92 2.0 21.5°C

Right Tilt 9750/1950 RMC 0.031 -0.34 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 9750/1950 RMC 0.084 -3.34 2.0 21.5°C

Back Upward 9612/1922.4 RMC 0.181 1.60 2.0 21.5°C

Back Upward 9750/1950 RMC 0.247 -0.93 2.0 21.5°C

Back Upward 9888/1977 RMC 0.184 -3.13 2.0 21.5°C

Back Upward with Earphone 1#

9750/1950 RMC 0.179 -0.00 2.0 21.5°C

Back Upward with Earphone 2#

9750/1950 RMC 0.168 0.21 2.0 21.5°C

Table 6: Test results UMTS Band I Note: 1) The maximum SAR value of each test band is marked bold.

2)The SAR test shall be performed at the high, middle and low frequency channels of each operating mode. If the SAR measured at mid-band channel for each test configuration is at least 3.0 dB lower than the SAR limit (< 1 W/kg), testing at the high and low channels is optional, apart from the worst case configuration.

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6.2.7 Results overview of UMTS Band V

Test Position of Head Test

channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Right Cheek 4132/826.4 RMC 0.098 -0.94 2.0 21.5°C

Right Cheek 4182/836.4 RMC 0.097 -0.28 2.0 21.5°C

Right Cheek 4233/846.6 RMC 0.099 -0.84 2.0 21.5°C

Right Tilt 4182/836.4 RMC 0.053 -1.04 2.0 21.5°C

Left Cheek 4182/836.4 RMC 0.095 -0.23 2.0 21.5°C

Left Tilt 4182/836.4 RMC 0.064 -1.13 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 4182/836.4 RMC 0.074 -0.55 2.0 21.5°C

Back Upward 4132/826.4 RMC 0.122 -0.27 2.0 21.5°C

Back Upward 4182/836.4 RMC 0.124 -0.95 2.0 21.5°C

Back Upward 4233/846.6 RMC 0.125 -0.12 2.0 21.5°C

Back Upward with Earphone 1#

4182/836.4 RMC 0.114 -0.72 2.0 21.5°C

Back Upward with Earphone 2#

4182/836.4 RMC 0.109 2.52 2.0 21.5°C

Table 6: Test results UMTS Band V Note: 1) The maximum SAR value of each test band is marked bold.

2)The SAR test shall be performed at the high, middle and low frequency channels of each operating mode. If the SAR measured at mid-band channel for each test configuration is at least 3.0 dB lower than the SAR limit (< 1 W/kg), testing at the high and low channels is optional, apart from the worst case configuration.

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6.2.8 Results overview of LTE Results overview of LTE Band 1 BandWidth 20M

Test Position of Head

Test channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

1RB

Right Cheek 18100/1930 Data 0.019 -3.49 2.0 21.5°C

Right Cheek 18300/1950 Data 0.039 0.76 2.0 21.5°C

Right Cheek 18500/1970 Data 0.020 0.18 2.0 21.5°C

Right Tilt 18300/1950 Data 0.008 -3.62 2.0 21.5°C

Left Cheek 18300/1950 Data 0.013 -2.90 2.0 21.5°C

Left Tilt 18300/1950 Data 0.010 4.64 2.0 21.5°C

50%RB

Right Cheek 18300/1950 Data 0.036 -0.41 2.0 21.5°C

Right Tilt 18300/1950 Data 0.007 -1.33 2.0 21.5°C

Left Cheek 18300/1950 Data 0.012 0.02 2.0 21.5°C

Left Tilt 18300/1950 Data 0.010 0.00 2.0 21.5°C

Table 7: Test results LTE Band 1

Test Position of Body

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (Db)

Limit (W/kg)

Liquid Temp.

10-g

1RB

Face Upward 18300/1950 Data 0.071 -0.98 2.0 21.5°C

Back Upward 18100/1930 Data 0.115 0.31 2.0 21.5°C

Back Upward 18300/1950 Data 0.145 -0.05 2.0 21.5°C

Back Upward 18500/1970 Data 0.119 3.48 2.0 21.5°C

Back Upward with Earphone 1#

18300/1950 Data 0.130 0.55 2.0 21.5°C

Back Upward with Earphone 2#

18300/1950 Data 0.124 -0.07 2.0 21.5°C

50%RB

Face Upward 18300/1950 Data 0.075 0.28 2.0 21.5°C

Back Upward 18300/1950 Data 0.119 -1.46 2.0 21.5°C

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Results overview of LTE Band 3 BandWidth 20M

Test Position of Head

Test channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

1RB

Right Cheek 19300/1720 Data 0.006 1.14 2.0 21.5°C

Right Cheek 19575/1747.5 Data 0.011 0.83 2.0 21.5°C

Right Cheek 19850/1775 Data 0.007 1.95 2.0 21.5°C

Right Tilt 19575/1747.5 Data 0.007 -4.56 2.0 21.5°C

Left Cheek 19575/1747.5 Data 0.005 1.24 2.0 21.5°C

Left Tilt 19575/1747.5 Data 0.008 1.64 2.0 21.5°C

50%RB

Right Cheek 19575/1747.5 Data 0.005 0.18 2.0 21.5°C

Right Tilt 19575/1747.5 Data 0.007 -0.54 2.0 21.5°C

Left Cheek 19575/1747.5 Data 0.004 0.81 2.0 21.5°C

Left Tilt 19575/1747.5 Data 0.008 -0.68 2.0 21.5°C

Table 8: Test results LTE Band 3

Test Position of Body

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (Db)

Limit (W/kg)

Liquid Temp.

10-g

1RB

Face Upward 19575/1747.5 Data 0.146 0.30 2.0 21.5°C

Back Upward 19575/1747.5 Data 0.382 -1.73 2.0 21.5°C

50%RB

Face Upward 19575/1747.5 Data 0.308 2.96 2.0 21.5°C

Back Upward 19300/1720 Data 0.317 -1.09 2.0 21.5°C

Back Upward 19575/1747.5 Data 0.384 -0.59 2.0 21.5°C

Back Upward 19850/1775 Data 0.402 -4.59 2.0 21.5°C

Back Upward with Earphone 1#

19850/1775 Data 0.385 1.44 2.0 21.5°C

Back Upward with Earphone 2#

19850/1775 Data 0.381 -1.01 2.0 21.5°C

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Results overview of LTE Band 7 BandWidth 20M

Test Position of Head

Test channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

1RB

Right Cheek 21100/2535 Data 0.018 2.80 2.0 21.5°C

Right Tilt 21100/2535 Data 0.006 -4.39 2.0 21.5°C

Left Cheek 20850/2510 Data 0.007 0.00 2.0 21.5°C

Left Cheek 21100/2535 Data 0.021 -2.95 2.0 21.5°C

Left Cheek 21350/2560 Data 0.007 1.35 2.0 21.5°C

Left Tilt 21100/2535 Data 0.009 -4.14 2.0 21.5°C

50%RB

Right Cheek 21100/2535 Data 0.017 -0.70 2.0 21.5°C

Right Tilt 21100/2535 Data 0.006 1.10 2.0 21.5°C

Left Cheek 21100/2535 Data 0.016 -1.80 2.0 21.5°C

Left Tilt 21100/2535 Data 0.009 -4.91 2.0 21.5°C

Table 9: Test results LTE Band 7

Test Position of Body

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (Db)

Limit (W/kg)

Liquid Temp.

10-g

1RB

Face Upward 21100/2535 Data 0.066 4.48 2.0 21.5°C

Back Upward 21100/2535 Data 0.065 -3.10 2.0 21.5°C

50%RB

Back Upward 21100/2535 Data 0.062 -3.61 2.0 21.5°C

Face Upward 20850/2510 Data 0.067 -0.72 2.0 21.5°C

Face Upward 21100/2535 Data 0.068 -0.77 2.0 21.5°C

Face Upward 21350/2560 Data 0.074 0.73 2.0 21.5°C

Face Upward with Earphone 1#

21350/2560 Data 0.061 -0.94 2.0 21.5°C

Face Upward with Earphone 2#

21350/2560 Data 0.062 -0.31 2.0 21.5°C

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Results overview of LTE Band 38 BandWidth 20M

Test Position of Head

Test channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

1RB

Left Cheek 37850/2580 Data 0.003 0.00 2.0 21.5°C

Left Cheek 38000/2595 Data 0.008 0.00 2.0 21.5°C

Left Cheek 38150/2610 Data 0.003 0.00 2.0 21.5°C

Left Tilt 38000/2595 Data 0.003 0.00 2.0 21.5°C

Right Cheek 38000/2595 Data 0.006 0.00 2.0 21.5°C

Right Tilt 38000/2595 Data 0.002 0.00 2.0 21.5°C

50%RB

Right Cheek 38000/2595 Data 0.005 0.00 2.0 21.5°C

Right Tilt 38000/2595 Data 0.002 0.00 2.0 21.5°C

Left Cheek 38000/2595 Data 0.006 0.00 2.0 21.5°C

Left Tilt 38000/2595 Data 0.002 0.00 2.0 21.5°C

Table 10: Test results LTE Band 38

Test Position of Body

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (Db)

Limit (W/kg)

Liquid Temp.

10-g

1RB

Back Upward 38000/2595 Data 0.176 4.50 2.0 21.5°C

Face Upward 37850/2580 Data 0.177 -1.61 2.0 21.5°C

Face Upward 38000/2595 Data 0.209 -2.03 2.0 21.5°C

Face Upward 38150/2610 Data 0.150 -0.01 2.0 21.5°C

Face Upward with Earphone 1#

38000/2595 Data 0.202 0.23 2.0 21.5°C

Face Upward with Earphone 2#

38000/2595 Data 0.200 0.14 2.0 21.5°C

50%RB

Face Upward 38000/2595 Data 0.161 1.05 2.0 21.5°C

Back Upward 38000/2595 Data 0.203 3.54 2.0 21.5°C

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Results overview of LTE Band 40 BandWidth 20M

Test Position of Head

Test channel /Frequency

Test Mode

SAR Value (W/kg)

Power Drift

(dB)%

Limit (W/kg)

Liquid Temp.

10-g

1RB

Left Cheek 38750/2310 Data 0.002 1.61 2.0 21.5°C

Left Cheek 39150/2350 Data 0.026 4.48 2.0 21.5°C

Left Cheek 39550/2390 Data 0.002 -0.39 2.0 21.5°C

Left Tilt 39150/2350 Data 0.005 -0.38 2.0 21.5°C

Right Cheek 39150/2350 Data 0.014 -2.69 2.0 21.5°C

Right Tilt 39150/2350 Data 0.004 -2.19 2.0 21.5°C

50%RB

Right Cheek 39150/2350 Data 0.009 -2.38 2.0 21.5°C

Right Tilt 39150/2350 Data 0.003 -0.48 2.0 21.5°C

Left Cheek 39150/2350 Data 0.019 3.46 2.0 21.5°C

Left Tilt 39150/2350 Data 0.003 -2.40 2.0 21.5°C

Table 11: Test results LTE Band 40

Test Position of Body

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (Db)

Limit (W/kg)

Liquid Temp.

10-g

1RB

Face Upward 39150/2350 Data 0.165 3.78 2.0 21.5°C

Back Upward 39150/2350 Data 0.153 1.78 2.0 21.5°C

50%RB

Face Upward 39150/2350 Data 0.159 -2.05 2.0 21.5°C

Back Upward 38750/2310 Data 0.202 0.26 2.0 21.5°C

Back Upward 39150/2350 Data 0.185 0.26 2.0 21.5°C

Back Upward 39550/2390 Data 0.192 0.61 2.0 21.5°C

Back Upward with Earphone 1#

38750/2310 Data 0.192 -0.96 2.0 21.5°C

Back Upward with Earphone 2#

38750/2310 Data 0.187 1.02 2.0 21.5°C

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6.2.9 Results overview of WiFi

WIFI802.11.b

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 1/2412 DSSS 0.219 -1.52 2.0 21.5°C

Left Cheek 7/2442 DSSS 0.253 -3.81 2.0 21.5°C

Left Cheek 13/2472 DSSS 0.202 -4.36 2.0 21.5°C

Left Tilt 7/2442 DSSS 0.169 4.63 2.0 21.5°C

Right Cheek 7/2442 DSSS 0.203 -3.87 2.0 21.5°C

Right Tilt 7/2442 DSSS 0.151 -3.81 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 7/2442 DSSS 0.153 4.31 2.0 21.5°C

Back Upward 1/2412 DSSS 0.173 4.17 2.0 21.5°C

Back Upward 7/2442 DSSS 0.188 -4.66 2.0 21.5°C

Back Upward 13/2472 DSSS 0.173 4.59 2.0 21.5°C

Back Upward with Earphone 1#

7/2442 DSSS 0.178 -3.51 2.0 21.5°C

Back Upward with Earphone 2#

7/2442 DSSS 0.179 0.34 2.0 21.5°C

Table 12: Test results WiFi

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WIFI 5G 802.11a

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 36/5180 OFDM 0.039 4.24 2.0 21.5°C

Left Tilt 36/5180 OFDM 0.010 -3.12 2.0 21.5°C

Right Cheek 36/5180 OFDM 0.032 2.54 2.0 21.5°C

Right Tilt 36/5180 OFDM 0.007 0.35 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 36/5180 OFDM 0.028 2.04 2.0 21.5°C

Back Upward 36/5180 OFDM 0.033 -1.45 2.0 21.5°C

WIFI 5G 802.11a

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 64/5320 OFDM 0.069 -0.87 2.0 21.5°C

Left Tilt 64/5320 OFDM 0.031 2.14 2.0 21.5°C

Right Cheek 64/5320 OFDM 0.065 3.02 2.0 21.5°C

Right Tilt 64/5320 OFDM 0.030 -1.25 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 64/5320 OFDM 0.006 -4.57 2.0 21.5°C

Back Upward 64/5320 OFDM 0.025 2.31 2.0 21.5°C

WIFI 5G 802.11a

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 100/5500 OFDM 0.120 -2.03 2.0 21.5°C

Left Tilt 100/5500 OFDM 0.009 1.12 2.0 21.5°C

Right Cheek 100/5500 OFDM 0.120 0.87 2.0 21.5°C

Right Tilt 100/5500 OFDM 0.008 -1.17 2.0 21.5°C

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Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 100/5500 OFDM 0.039 -0.24 2.0 21.5°C

Back Upward 100/5500 OFDM 0.071 1.31 2.0 21.5°C

WIFI 5G 802.11a

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 120/5600 OFDM 0.240 3.26 2.0 21.5°C

Left Tilt 120/5600 OFDM 0.070 -2.31 2.0 21.5°C

Right Cheek 120/5600 OFDM 0.113 1.42 2.0 21.5°C

Right Tilt 120/5600 OFDM 0.030 0.87 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 120/5600 OFDM 0.011 -0.54 2.0 21.5°C

Back Upward 120/5600 OFDM 0.035 2.08 2.0 21.5°C

WIFI 5G 802.11a

Test Position of Head

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Left Cheek 140/5700 OFDM 0.121 0.57 2.0 21.5°C

Left Tilt 140/5700 OFDM 0.068 -0.42 2.0 21.5°C

Right Cheek 140/5700 OFDM 0.111 1.24 2.0 21.5°C

Right Tilt 140/5700 OFDM 0.054 -2.03 2.0 21.5°C

Test Position of Body With 15 mm

Test channel

/Frequency

Test Mode

SAR Value (W/kg)

Power Drift (dB)

Limit (W/kg)

Liquid Temp.

10-g

Face Upward 140/5700 OFDM 0.010 3.12 2.0 21.5°C

Back Upward 140/5700 OFDM 0.024 2.37 2.0 21.5°C

Note: 1) The maximum SAR value of each test band is marked bold.

2)The SAR test shall be performed at the high, middle and low frequency channels of each operating mode. If the SAR measured at mid-band channel for each test configuration is at least 3.0 dB lower than the SAR limit (< 1 W/kg), testing at the high and low channels is optional, apart from the worst case configuration.

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7. Multiple Transmitter Information

The location of the antennas inside mobile phone is shown as below picture:

The output power of WiFi antenna is as following:

Wi-Fi

Channel Average Power (dBm) for Data Rates (Mbps)

802.11b 802.11g 802.11n-20

2.4GHz

1(2412) 18.3 17.8 16.9

7(2442) 17.5 17.2 16.3

13(2472) 16.6 16.4 15.4

Wi-Fi 2450MHz

Channel Average Power (dBm) for Data Rates (Mbps)

802.11n-40

2.4GHz

3(2422) 16.5

7(2442) 16.7

11(2462) 16.3

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Wi-Fi

Channel Average Power (dBm) for Data Rates (Mbps)

802.11a 802.11n-20

5GHz

5180 14.45 13.59

5320 14.18 13.37

5500 15.25 13.92

5600 15.05 13.51

5700 14.8 13.45

Wi-Fi

Channel Average Power (dBm) for Data Rates (Mbps)

802.11n-40

5GHz

5190 12.30

5310 12.03

5510 12.70

5600 12.35

5670 12.27

The output power of BT antenna is as following:

BT 3.0 Average Conducted Power (dBm) BT 4.0 Average Conducted Power (dBm)

DH5 9.1 2402 8.4

2DH5 6 2442 8.7

3DH5 6.1 2480 7.1

Stand-alone SAR Stand-alone SAR evaluation is required for WiFi, because the output power of WiFi unlicensed transmitter is 18.3dBm >20mW (13dBm). According to the output power measurement result we can draw the conclusion that: Stand-alone SAR evaluation is not required for BT, because the output power of BT unlicensed transmitter is 9.1dBm ≤ 20mW (13dBm).(EN 62479)

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Simultaneous SAR

Antenna Combinations Transmitter Combinations Head Body(15mm)

Sub GSM+Main WCDMA GSM Voice+ WCDMA Data Yes Yes GSM Voice+ WCDMA Voice Yes Yes

Sub GSM+Main LTE GSM Voice + LTE DATA Yes Yes

Sub GSM+Main GSM GSM Voice + GSM Voice Yes Yes GSM Voice + GSM Data Yes Yes

Sub GSM+Main WCDMA GSM Data + WCDMA Voice Yes Yes Sub GSM+Main GSM GSM Data + GSM Voice Yes Yes

Sub GSM+BT GSM Voice + BT Yes Yes GSM DATA + BT N/A Yes

Sub GSM+WLAN GSM Voice + WLAN Yes Yes GSM DATA + WLAN N/A Yes

Main GSM+WLAN GSM Voice + WLAN Yes Yes GSM DATA + WLAN N/A Yes

Main GSM+BT GSM Voice + BT Yes Yes GSM DATA + BT N/A Yes

Main WCMDA+WLAN WCDMA Voice + WLAN Yes Yes WCDMA Data + WLAN N/A Yes

Main WCMDA+BT WCDMA Voice + BT Yes Yes WCDMA Data + BT N/A Yes

Main LTE+WIFI LTE Data + WLAN Yes Yes Main LTE+BT LTE Data + BT N/A Yes

Sub GSM+Main WCDMA+BT GSM Voice+ WCDMA Data + BT N/A Yes

GSM Voice+ WCDMA Voice + BT N/A Yes Sub GSM+Main LTE+BT GSM Voice + LTE DATA + BT N/A Yes

Sub GSM+Main GSM+BT GSM Voice + GSM Voice + BT N/A Yes GSM Voice + GSM Data + BT N/A Yes

Sub GSM+Main WCDMA+BT GSM Data + WCDMA Voice + BT N/A Yes Sub GSM+Main GSM+BT GSM Data + GSM Voice + BT N/A Yes

Sub GSM+Main WCDMA+WLAN GSM Voice+ WCDMA Data +WiFi Yes Yes GSM Voice+ WCDMA Voice +WiFi Yes Yes

Sub GSM+Main LTE+WLAN GSM Voice + LTE DATA + WIFI Yes Yes

Sub GSM+Main GSM+WIFI GSM Voice + GSM Voice + WIFI Yes Yes GSM Voice + GSM Data + WIFI Yes Yes

Sub GSM+Main WCDMA+WIFI GSM Data + WCDMA Voice +WiFi Yes Yes

Sub GSM+Main GSM+WIFI GSM Data + WCDMA Voice +

WIFI Yes Yes

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Applicable Multiple Scenario Evaluation

Test Position

GSM SAR Max.(W/Kg)

GSM&WCDMA& LTE SAR Max.(W/Kg)

Wifi SAR Max.(W/Kg)

Bluetooth Max.(W/Kg)

∑10-gSARMAX.(W/Kg) BT&Main

Ant Wifi&Main

Ant Head SAR

0.284 0.262 0.253 0 0.546 0.799

Body SAR

0.461 0.464 0.188 0 0.925 1.113

Table 13: Simultaneous Transmission Simultaneous Transmission SAR evaluation is not required for GSM and Wifi and GSM/ WCDMA/ LTE,because the sum of 10g SAR Max is 1.113W/Kg<2 W/Kg for GSM and Wifi and GSM/ WCDMA/ LTE. Simultaneous Transmission SAR evaluation is not required for GSM and BT and GSM/ WCDMA/ LTE, because the sum of 10g SAR Max is 0.925W/Kg<2 W/Kg for GSM and BT and GSM/ WCDMA/ LTE.

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8. Photographs of the Test Set-Up

Photo 1: Measurement System SATIMO Photo 2: Front View

Photo 3: Rear View Photo 4: Left hand touched

Photo 5: Left hand tilted 15° Photo 6: Right hand touched

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Photo 7: Right hand tilted 15° Photo 8: Front Side 15mm

Photo 9: Back Side 15mm Photo 10:Back Side with Headset B1# 15mm

Photo 11: Back Side with Headset B2# 15mm Photo 12:Face Side with Headset B1# 15mm

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9. Annex A: System Performance Check

System Performance Check (900MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 04/02/2015 Measurement duration: 12 minutes 57 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 900MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 900.000000 Relative permittivity (real part) 41.673480

Relative permittivity 15.072413 Conductivity (S/m) 0.960425

Power drift (%) -0.620000 Ambient Temperature: 23.2°C Liquid Temperature: 23.5°C

Crest factor: 1:1 ConvF: 5.20

SURFACE SAR VOLUME SAR

Maximum location: X=7.00, Y=-1.00

SAR 10g (W/Kg) 1.773854 SAR 1g (W/Kg) 2.483632

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System Performance Check (1800MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 06/02/2015 Measurement duration: 12 minutes 52 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 1750MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 1750.000000 Relative permittivity (real part) 39.983427

Relative permittivity 15.067700 Conductivity (S/m) 1.383643

Power drift (%) -0.050000 Ambient Temperature: 23.3°C Liquid Temperature: 23.6°C

Crest factor: 1:1 ConvF: 4.80

SURFACE SAR VOLUME SAR

Maximum location: X=7.00, Y=0.00 SAR 10g (W/Kg) 5.083246 SAR 1g (W/Kg) 9.284638

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System Performance Check (2000MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 09/02/2015 Measurement duration: 12 minutes 57 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 1950MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 1950.000000 Relative permittivity (real part) 38.883742

Relative permittivity 15.067700 Conductivity (S/m) 1.434571

Power drift (%) 0.920000 Ambient Temperature: 22.3°C Liquid Temperature: 22.6°C

Crest factor: 1:1 ConvF: 4.81

SURFACE SAR VOLUME SAR

Maximum location: X=6.00, Y=0.00 SAR 10g (W/Kg) 5.178643 SAR 1g (W/Kg) 9.786874

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System Performance Check (2450MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 11/02/2015 Measurement duration: 12 minutes 57 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 2450MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 2450.000000 Relative permittivity (real part) 38.573064

Relative permittivity 15.067700 Conductivity (S/m) 1.830425

Power drift (%) -0.200000 Ambient Temperature: 22.3°C Liquid Temperature: 22.6°C

Crest factor: 1:1 ConvF: 4.81

SURFACE SAR VOLUME SAR

Maximum location: X=6.00, Y=0.00 SAR 10g (W/Kg) 5.922045 SAR 1g (W/Kg) 9.987312

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System Validation (Head, 5200MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 04/03/2015 Measurement duration: 12 minutes 57 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Dipole Band 5200MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 5200 Relative permittivity (real part) 36.8

Relative permittivity 16.2 Conductivity (S/m) 4.78

Power drift (%) -0.940000 ConvF: 2.96

Crest factor: 1:1

SURFACE SAR VOLUME SAR

Maximum location: X=-5.00, Y=6.00

SAR 10g (W/Kg) 1.423571 SAR 1g (W/Kg) 4.072531

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System Validation (Head, 5600MHz)

Type: Phone measurement (Complete)

Area scan resolution: dx=8mm,dy=8mm Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 04/03/2015 Measurement duration: 14 minutes 51 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Dipole Band 5600MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 5600 Relative permittivity (real part) 36.1

Relative permittivity 18.46 Conductivity (S/m) 4.9

Power drift (%) -4.730000 ConvF: 3.04

Crest factor: 1:1

SURFACE SAR VOLUME SAR

Maximum location: X=0.00, Y=8.00 SAR 10g (W/Kg) 1.534270 SAR 1g (W/Kg) 4.382687

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System Performance Check (900MHz) Type: Phone measurement (Complete)

Area scan resolution: dx=8mm,dy=8mm Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 07/03/2015 Measurement duration: 12 minutes 56 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 900MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 900.000000 Relative permittivity (real part) 41.712435

Relative permittivity 15.068742 Conductivity (S/m) 0.953471

Power drift (%) -0.620000 Ambient Temperature: 23.2°C Liquid Temperature: 23.5°C

Crest factor: 1:1 ConvF: 5.20

SURFACE SAR VOLUME SAR

Maximum location: X=7.00, Y=-1.00

SAR 10g (W/Kg) 1.773854 SAR 1g (W/Kg) 2.483632

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System Performance Check (1800MHz)

Type: Phone measurement (Complete) Area scan resolution: dx=8mm,dy=8mm

Zoom scan resolution: dx=8mm, dy=8mm, dz=5mm Date of measurement: 07/03/2015 Measurement duration: 12 minutes 53 seconds A. Experimental conditions.

Phantom File surf_sam_plan.txt Phantom Flat Plane

Device Position Band 1750MHz

Channels Signal CW

B. SAR Measurement Results Band SAR

Frequency (MHz) 1750.000000 Relative permittivity (real part) 39.970542

Relative permittivity 15.035471 Conductivity (S/m) 1.408753

Power drift (%) -0.050000 Ambient Temperature: 23.3°C Liquid Temperature: 23.6°C

Crest factor: 1:1 ConvF: 4.80

SURFACE SAR VOLUME SAR

Maximum location: X=7.00, Y=0.00 SAR 10g (W/Kg) 5.083246 SAR 1g (W/Kg) 9.284638

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10. Annex B: Test Result

Testing result (GSM900MHz, Left Cheek, Middle SIM1)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 6 minutes 8 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head Device Position Cheek

Band GSM900 Channels Middle

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 897.4

Relative permittivity (real part) 41.712435

Relative permittivity (imaginary part)

15.068742

Conductivity (S/m) 0.953471

Variation (%) -3.63

SURFACE SAR VOLUME SAR

Maximum location: X=-34.00, Y=-18.00

SAR Peak: 0.30 W/kg SAR 10g (W/Kg) 0.189796 SAR 1g (W/Kg) 0.242137

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.2850 0.2366 0.1915 0.1608 0.1406

3D screen shot Hot spot position

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Testing result (GSM900MHz, Back, Middle SIM1) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band GSM900

Channels Middle

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 897.4

Relative permittivity (real part) 41.712435

Relative permittivity (imaginary part) 15.068742

Conductivity (S/m) 0.953471

Variation (%) -3.76

SURFACE SAR VOLUME SAR

Maximum location: X=31.00, Y=45.00

SAR Peak: 0.44 W/kg SAR 10g (W/Kg) 0.233554 SAR 1g (W/Kg) 0.331058

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.4098 0.3253 0.2448 0.1872 0.1459

3D screen shot Hot spot position

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Testing result (GSM1800MHz, Right Cheek, Middle SIM1) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 6 minutes 26 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Right head

Device Position Cheek

Band GSM1800

Channels Middle

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 1747.4

Relative permittivity (real part) 39.970542

Relative permittivity (imaginary part)

15.035471

Conductivity (S/m) 1.408753

Variation (%) -2.8

SURFACE SAR VOLUME SAR

Maximum location: X=-12.00, Y=2.00

SAR Peak: 0.87 W/kg SAR 10g (W/Kg) 0.283506 SAR 1g (W/Kg) 0.530231

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17047102 007 Seite 75 von 133 Page 75 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.8417 0.5560 0.3226 0.1856 0.1079

3D screen shot Hot spot position

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Test Report No.

17047102 007 Seite 76 von 133 Page 76 of 133

Testing result (GSM1800MHz, Back, Middle SIM1)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: --

A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Validation plane

Device Position Body Band GSM1800

Channels Middle Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 1747.4

Relative permittivity (real part) 39.970542

Relative permittivity (imaginary part)

15.035471

Conductivity (S/m) 1.408753

Variation (%) -3.81

SURFACE SAR VOLUME SAR

Maximum location: X=28.00, Y=-42.00

SAR 10g (W/Kg) 0.417550 SAR 1g (W/Kg) 0.794154

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17047102 007 Seite 77 von 133 Page 77 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

1.1534 0.7207 0.3824 0.1959 0.0986

3D screen shot Hot spot position

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Test Report No.

17047102 007 Seite 78 von 133 Page 78 of 133

Testing result (GSM900MHz, Right Cheek, Middle SIM2)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 6 minutes 8 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Right head Device Position Cheek

Band GSM900 Channels Middle

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 897.4

Relative permittivity (real part) 41.673480

Relative permittivity (imaginary part)

15.072413

Conductivity (S/m) 0.960425

Variation (%) -1.27

SURFACE SAR VOLUME SAR

Maximum location: X=-49.00, Y=-23.00

SAR Peak: 0.42 W/kg SAR 10g (W/Kg) 0.261867 SAR 1g (W/Kg) 0.344436

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17047102 007 Seite 79 von 133 Page 79 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.4164 0.3474 0.2789 0.2273 0.1883

3D screen shot Hot spot position

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17047102 007 Seite 80 von 133 Page 80 of 133

Testing result (GSM900MHz, Back, High SIM2) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band GSM900

Channels High

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 914.8

Relative permittivity (real part) 41.673480

Relative permittivity (imaginary part) 15.072413

Conductivity (S/m) 0.960425

Variation (%) 1.65

SURFACE SAR VOLUME SAR

Maximum location: X=-14.00, Y=24.00

SAR Peak: 0.49 W/kg SAR 10g (W/Kg) 0.281486 SAR 1g (W/Kg) 0.379961

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17047102 007 Seite 81 von 133 Page 81 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.4568 0.3704 0.2845 0.2192 0.1694

3D screen shot Hot spot position

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17047102 007 Seite 82 von 133 Page 82 of 133

Testing result (GSM1800MHz, Left Cheek, High SIM2) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 6 minutes 26 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head

Device Position Cheek

Band GSM1800

Channels High

Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 1784.8

Relative permittivity (real part) 39.983427

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.383643

Variation (%) 2.07

SURFACE SAR VOLUME SAR

Maximum location: X=-49.00, Y=-55.00

SAR Peak: 0.06 W/kg SAR 10g (W/Kg) 0.019739 SAR 1g (W/Kg) 0.035654

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17047102 007 Seite 83 von 133 Page 83 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.0563 0.0380 0.0226 0.0132 0.0077

3D screen shot Hot spot position

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17047102 007 Seite 84 von 133 Page 84 of 133

Testing result (GSM1800MHz, Back, Middle SIM2)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: --

A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Validation plane

Device Position Body Band GSM1800

Channels Middle Signal GSM (Duty cycle: 1:8)

B. SAR Measurement Results

Frequency (MHz) 1747.4

Relative permittivity (real part) 39.983427

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.383643

Variation (%) 0.63

SURFACE SAR VOLUME SAR

Maximum location: X=-1.00, Y=-72.00

SAR Peak: 1.64 W/kg SAR 10g (W/Kg) 0.463542 SAR 1g (W/Kg) 0.931852

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17047102 007 Seite 85 von 133 Page 85 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

1.5448 0.9549 0.5022 0.2597 0.1370

3D screen shot Hot spot position

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17047102 007 Seite 86 von 133 Page 86 of 133

Testing result (WCDMA2100MHz, Left Cheek, Middle) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 09/02/2015 Measurement duration: 5 minutes 34 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Left head

Device Position Cheek Band Band1_UMTS

Channels Middle Signal WCDMA (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 1950

Relative permittivity (real part) 38.883742

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.434571

Variation (%) -0.61

SURFACE SAR VOLUME SAR

Maximum location: X=-48.00, Y=-41.00

SAR Peak: 0.19 W/kg SAR 10g (W/Kg) 0.061531 SAR 1g (W/Kg) 0.114813

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17047102 007 Seite 87 von 133 Page 87 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1933 0.1217 0.0656 0.0346 0.0182

3D screen shot Hot spot position

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17047102 007 Seite 88 von 133 Page 88 of 133

Testing result (WCDMA2100MHz, Back, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 09/02/2015 Measurement duration: 7 minutes 25 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band Band1_UMTS

Channels Middle

Signal WCDMA (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 1950

Relative permittivity (real part) 38.883742

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.434571

Variation (%) -0.93

SURFACE SAR VOLUME SAR

Maximum location: X=3.00, Y=71.00

SAR Peak: 0.91 W/kg SAR 10g (W/Kg) 0.246672 SAR 1g (W/Kg) 0.504592

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17047102 007 Seite 89 von 133 Page 89 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.7822 0.4663 0.2320 0.1129 0.0567

3D screen shot Hot spot position

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17047102 007 Seite 90 von 133 Page 90 of 133

Testing result (WCDMA900MHz, Right Cheek, High)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 5 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Right head

Device Position Cheek

Band GSM900

Channels High

Signal WCDMA(Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 912.6

Relative permittivity (real part) 41.673480

Relative permittivity (imaginary part)

15.072413

Conductivity (S/m) 0.960425

Variation (%) -2.70

SURFACE SAR VOLUME SAR

Maximum location: X=-43.00, Y=-30.00

SAR Peak: 0.10 W/kg SAR 10g (W/Kg) 0.064815 SAR 1g (W/Kg) 0.083434

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17047102 007 Seite 91 von 133 Page 91 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1000 0.0860 0.0712 0.0591 0.0490

3D screen shot Hot spot position

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17047102 007 Seite 92 von 133 Page 92 of 133

Testing result (WCDMA900MHz, Back, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 8 minutes 29 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band Band8_WCDMA900

Channels Middle

Signal WCDMA (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 897.6

Relative permittivity (real part) 41.673480

Relative permittivity (imaginary part) 15.072413

Conductivity (S/m) 0.960425

Variation (%) -2.90

SURFACE SAR VOLUME SAR

Maximum location: X=6.00, Y=-15.00

SAR Peak: 0.15 W/kg SAR 10g (W/Kg) 0.087721 SAR 1g (W/Kg) 0.116640

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17047102 007 Seite 93 von 133 Page 93 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.1418 0.1150 0.0886 0.0688 0.0540

3D screen shot Hot spot position

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17047102 007 Seite 94 von 133 Page 94 of 133

Testing result (WCDMA850MHz, Right Cheek, High)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 5 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Right head

Device Position Cheek

Band Band5_WCDMA850

Channels High

Signal WCDMA(Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 846.6

Relative permittivity (real part) 41.712435

Relative permittivity (imaginary part)

15.068742

Conductivity (S/m) 0.953471

Variation (%) -0.84

SURFACE SAR VOLUME SAR

Maximum location: X=-51.00, Y=-46.00

SAR Peak: 0.15 W/kg SAR 10g (W/Kg) 0.099090 SAR 1g (W/Kg) 0.125386

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17047102 007 Seite 95 von 133 Page 95 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1489 0.1294 0.1089 0.0922 0.0786

3D screen shot Hot spot position

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17047102 007 Seite 96 von 133 Page 96 of 133

Testing result (WCDMA850MHz, Back, High)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 07/03/2015 Measurement duration: 8 minutes 29 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band Band5_WCDMA850

Channels High

Signal WCDMA (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 846.6

Relative permittivity (real part) 41.712435

Relative permittivity (imaginary part) 15.068742

Conductivity (S/m) 0.953471

Variation (%) -0.12

SURFACE SAR VOLUME SAR

Maximum location: X=-1.00, Y=16.00

SAR Peak: 0.19 W/kg SAR 10g (W/Kg) 0.124685 SAR 1g (W/Kg) 0.156941

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17047102 007 Seite 97 von 133 Page 97 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1799 0.1541 0.1267 0.1043 0.0858

3D screen shot Hot spot position

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17047102 007 Seite 98 von 133 Page 98 of 133

Testing result (LTE Band 1 BandWidth 20M, Right Cheek, Middle) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 09/02/2015 Measurement duration: 5 minutes 34 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Right head

Device Position Cheek Band LTE Band 1

Channels Middle Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 1950

Relative permittivity (real part) 38.883742

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.434571

Variation (%) 0.76

SURFACE SAR VOLUME SAR

Maximum location: X=-53.00, Y=-60.00

SAR Peak: 0.14 W/kg SAR 10g (W/Kg) 0.039110 SAR 1g (W/Kg) 0.078133

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17047102 007 Seite 99 von 133 Page 99 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1413 0.0822 0.0392 0.0182 0.0086

3D screen shot Hot spot position

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17047102 007 Seite 100 von

133 Page 100 of 133

Testing result ((LTE Band 1 BandWidth 20M, Back, Middle) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 09/02/2015 Measurement duration: 7 minutes 25 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band LTE Band 1

Channels Middle

Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 1950

Relative permittivity (real part) 38.883742

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.434571

Variation (%) -0.05

SURFACE SAR VOLUME SAR

Maximum location: X=19.00, Y=-72.00

SAR Peak: 0.59 W/kg SAR 10g (W/Kg) 0.145033 SAR 1g (W/Kg) 0.314032

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17047102 007 Seite 101 von

133 Page 101 of 133

Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.5340 0.3020 0.1380 0.0608 0.0280

3D screen shot Hot spot position

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Testing result (LTE Band 3 BandWidth 20M, Right Cheek, Middle) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 6 minutes 26 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Right head

Device Position Cheek

Band LTE Band 3

Channels Middle

Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 1747.5

Relative permittivity (real part) 39.983427

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.383643

Variation (%) 0.83

SURFACE SAR VOLUME SAR

Maximum location: X=-51.00, Y=-54.00

SAR Peak: 0.04 W/kg SAR 10g (W/Kg) 0.011151 SAR 1g (W/Kg) 0.021803

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.0383 0.0233 0.0120 0.0061 0.0032

3D screen shot Hot spot position

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Testing result (LTE Band 3 BandWidth 20M, Back, High)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: --

A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Validation plane

Device Position Body Band LTE Band 3

Channels High Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 1775

Relative permittivity (real part) 39.983427

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.383643

Variation (%) -4.59

SURFACE SAR VOLUME SAR

Maximum location: X=20.00, Y=-61.00

SAR Peak: 1.51 W/kg SAR 10g (W/Kg) 0.402780 SAR 1g (W/Kg) 0.830207

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

1.3439 0.8014 0.4000 0.1970 0.1015

3D screen shot Hot spot position

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Testing result (LTE Band 7 BandWidth 20M, Left Cheek, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 6 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head

Device Position Cheek

Band LTE Band 7

Channels Middle

Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 2535

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.830425

Variation (%) -2.95

SURFACE SAR VOLUME SAR

Maximum location: X=-49.00, Y=-63.00

SAR Peak: 0.10 W/kg SAR 10g (W/Kg) 0.020531 SAR 1g (W/Kg) 0.047051

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.0985 0.0490 0.0180 0.0062 0.0025

3D screen shot Hot spot position

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Testing result (LTE Band 7 BandWidth 20M, Face, High) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 7 minutes 36 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band LTE Band 7

Channels High

Signal Duty cycle: 1:1

B. SAR Measurement Results

Frequency (MHz) 2560

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.830425

Variation (%) 0.73

SURFACE SAR VOLUME SAR

Maximum location: X=-30.00, Y=71.00

SAR Peak: 0.41 W/kg SAR 10g (W/Kg) 0.074228 SAR 1g (W/Kg) 0.178651

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.2922 0.1381 0.0451 0.0124 0.0036

3D screen shot Hot spot position

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Testing result (LTE Band 38 BandWidth 20M, Left Cheek, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 5 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head

Device Position Cheek

Band LTE Band 38

Channels Middle

Signal Duty cycle: 0.629

B. SAR Measurement Results

Frequency (MHz) 2595

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.830425

Variation (%) 0.00

SURFACE SAR VOLUME SAR

Maximum location: X=-62.00, Y=-62.00

SAR Peak: 0.04 W/kg SAR 10g (W/Kg) 0.007547 SAR 1g (W/Kg) 0.016642

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.0377 0.0168 0.0051 0.0016 0.0010

3D screen shot Hot spot position

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Testing result (LTE Band 38 BandWidth 20M, Face, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 8 minutes 29 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band LTE Band 38

Channels Middle

Signal Duty cycle: 0.629

B. SAR Measurement Results

Frequency (MHz) 2595

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.830425

Variation (%) -2.03

SURFACE SAR VOLUME SAR

Maximum location: X=26.00, Y=27.00

SAR Peak: 0.30 W/kg SAR 10g (W/Kg) 0.209375 SAR 1g (W/Kg) 0.238484

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.2712 0.2171 0.1789 0.1716 0.1891

3D screen shot Hot spot position

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Testing result (LTE Band 40 BandWidth 20M, Left Cheek, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 5 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head

Device Position Cheek

Band LTE Band 40

Channels Middle

Signal Duty cycle: 0.629

B. SAR Measurement Results

Frequency (MHz) 2350

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.830425

Variation (%) 4.48

SURFACE SAR VOLUME SAR

Maximum location: X=-59.00, Y=-58.00

SAR Peak: 0.12 W/kg SAR 10g (W/Kg) 0.026106 SAR 1g (W/Kg) 0.058208

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.1191 0.0616 0.0239 0.0084 0.0030

3D screen shot Hot spot position

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Testing result (LTE Band 40 BandWidth 20M, Back, Low) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 8 minutes 29 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band LTE Band 40

Channels Low

Signal Duty cycle: 0.629

B. SAR Measurement Results

Frequency (MHz) 2310

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.830425

Variation (%) 0.26

SURFACE SAR VOLUME SAR

Maximum location: X=-28.00, Y=61.00

SAR Peak: 0.25 W/kg SAR 10g (W/Kg) 0.201693 SAR 1g (W/Kg) 0.229011

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.1863 0.1831 0.1778 0.1711 0.1632

3D screen shot Hot spot position

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Testing result (GPRS900MHz, Back, High SIM1) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 04/02/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body Band CUSTOM (GPRS900_2Tx)

Channels High

Signal GPRS (Duty cycle: 1:4)

B. SAR Measurement Results

Frequency (MHz) 914.8

Relative permittivity (real part) 41.712435

Relative permittivity (imaginary part) 15.068742

Conductivity (S/m) 0.953471

Variation (%) 1.23

SURFACE SAR VOLUME SAR

Maximum location: X=32.00, Y=33.00

SAR Peak: 0.11 W/kg SAR 10g (W/Kg) 0.044288 SAR 1g (W/Kg) 0.069925

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.1010 0.0722 0.0473 0.0314 0.0214

3D screen shot Hot spot position

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Testing result (GPRS1800MHz, Back, Middle SIM1)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 6 minutes 49 seconds Mobile Phone IMEI number: --

A. Experimental conditions.

Area Scan dx=8mm dy=8mm

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast Phantom Validation plane

Device Position Body Band CUSTOM (GPRS1800_2Tx)

Channels Middle Signal GPRS (Duty cycle: 1:4)

B. SAR Measurement Results

Frequency (MHz) 1747.4

Relative permittivity (real part) 39.970542

Relative permittivity (imaginary part)

15.035471

Conductivity (S/m) 1.408753

Variation (%) 3.6

SURFACE SAR VOLUME SAR

Maximum location: X=12.00, Y=-15.00

SAR 10g (W/Kg) 0.460837

SAR 1g (W/Kg) 0.596285

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.6609 0.5910 0.5003 0.4082 0.3187

3D screen shot Hot spot position

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Testing result (GPRS900MHz, Back, Middle SIM2)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement:04/02/2015 Measurement duration: 7 minutes 10 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band CUSTOM (GPRS900_2Tx)

Channels Middle

Signal GPRS (Duty cycle: 1:4)

B. SAR Measurement Results

Frequency (MHz) 897.4

Relative permittivity (real part) 41.673480

Relative permittivity (imaginary part) 15.072413

Conductivity (S/m) 0.960425

Variation (%) 2.03

SURFACE SAR VOLUME SAR

Maximum location: X=-14.00, Y=17.00

SAR Peak: 0.37 W/kg SAR 10g (W/Kg) 0.227875 SAR 1g (W/Kg) 0.297850

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.3180 0.2891 0.2479 0.2028 0.1569

3D screen shot Hot spot position

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Testing result (GPRS1800MHz, Back, High SIM2) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 06/02/2015 Measurement duration: 7 minutes 36 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band CUSTOM (GPRS1800_2Tx)

Channels High

Signal GPRS (Duty cycle: 1:4)

B. SAR Measurement Results

Frequency (MHz) 1784.8

Relative permittivity (real part) 39.983427

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.383643

Variation (%) 3.49

SURFACE SAR VOLUME SAR

Maximum location: X=0.00, Y=-62.00

SAR Peak: 1.28 W/kg SAR 10g (W/Kg) 0.396453 SAR 1g (W/Kg) 0.779360

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

1.2829 0.8250 0.4592 0.2514 0.1381

3D screen shot Hot spot position

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Testing result (WIFI 802.11b, Left Cheek, Middle)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 5 minutes 21 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan sam_direct_droit2_surf8mm.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Left head

Device Position Cheek

Band WIFI 802.11b

Channels Middle

Signal DSSS (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 2442

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part)

15.067700

Conductivity (S/m) 1.830425

Variation (%) -3.81

SURFACE SAR VOLUME SAR

Maximum location: X=-28.00, Y=16.00

SAR Peak: 0.88 W/kg SAR 10g (W/Kg) 0.252766 SAR 1g (W/Kg) 0.449795

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Z (mm) 0.00 4.00 9.00 14.00 19.00 SAR

(W/Kg) 0.8640 0.4587 0.2078 0.1245 0.1236

3D screen shot Hot spot position

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Testing result (WIFI 802.11b, Back, Middle) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 7 minutes 36 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band WIFI 802.11b

Channels Middle

Signal DSSS (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 2442

Relative permittivity (real part) 38.573064

Relative permittivity (imaginary part) 15.067700

Conductivity (S/m) 1.830425

Variation (%) -4.66

SURFACE SAR VOLUME SAR

Maximum location: X=25.00, Y=50.00

SAR Peak: 0.27 W/kg SAR 10g (W/Kg) 0.187873 SAR 1g (W/Kg) 0.231248

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Z (mm) 0.00 4.00 9.00 14.00 19.00

SAR (W/Kg)

0.2417 0.2108 0.1819 0.1628 0.1512

3D screen shot Hot spot position

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Testing result (WIFI 802.11a, Left Check) Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 7 minutes 36 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band WIFI 802.11a

Channels 120

Signal DSSS (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 5600.000000

Relative permittivity (real part) 36.1

Relative permittivity (imaginary part) 18.46

Conductivity (S/m) 4.9

Variation (%) 3.26

SURFACE SAR VOLUME SAR

Maximum location: X=-24.00, Y=8.00

SAR Peak: 2.63 W/kg SAR 10g (W/Kg) 0.240109 SAR 1g (W/Kg) 0.787041

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Z axis scan

3D screen shot Hot spot position

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Testing result (WIFI 802.11a, Back)

Type: Phone measurement (Very fast, 11 points in the volume) Date of measurement: 11/02/2015 Measurement duration: 7 minutes 36 seconds Mobile Phone IMEI number: -- A. Experimental conditions.

Area Scan surf_sam_plan.txt

ZoomScan 5x5x7,dx=8mm dy=8mm dz=5mm,Very fast

Phantom Validation plane

Device Position Body

Band WIFI 802.11a

Channels 100

Signal DSSS (Duty cycle: 1:1)

B. SAR Measurement Results

Frequency (MHz) 5500.000000

Relative permittivity (real part) 36.1

Relative permittivity (imaginary part) 18.46

Conductivity (S/m) 4.9

Variation (%) 1.31

SURFACE SAR VOLUME SAR

Maximum location: X=-7.00, Y=-25.00

SAR Peak: 0.82 W/kg SAR 10g (W/Kg) 0.071190 SAR 1g (W/Kg) 0.235100

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Z axis scan

3D screen shot Hot spot position