CE EMC TEST REPORT

Harris

SAR Report (1 of 2)

Langogo Technology Co., LTD. T1 Wearable & handheld translation device 2AQLY-T1 2AQLYT1 t1

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SAR TEST REPORT
FCC ID: 2AQLY-T1 Product: Wearable & handheld translation device
Model No.: Langogo Genesis Additional Model: SPK01, S1, T1
Trade Mark: Report No.: TCT180706E005 Issued Date: Aug. 16, 2018
Issued for: Langogo Technology Co., LTD. 2 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen,
518000 China
Issued By: Shenzhen Tongce Testing Lab. 1B/F., Building 1, Yibaolai Industrial Park, Qiaotou, Fuyong, Baoan District, Shenzhen, Guangdong, China
TEL: +86-755-27673339 FAX: +86-755-27673332
Note: This report shall not be reproduced except in full, without the written approval of Shenzhen Tongce Testing Lab..
This document may be altered or revised by Shenzhen Tongce Testing Lab. personnel only, and shall be noted in the revision section of the document. The test results in the report only apply to the tested sample.
Hotline: 400-6611-140 Tel: 86-755-27673339 Fax: 86-755-27673332 http://www.tct-lab.com

Report No.: TCT180706E005
TABLE OF CONTENTS
1. Test Certification ........................................................................................................................................................ 3 2. Facilities and Accreditations ..................................................................................................................................... 4
2.1. FACILITIES ............................................................................................................................................................ 4 2.2. LOCATION ............................................................................................................................................................. 4 2.3. ENVIRONMENT CONDITION ...................................................................................................................................... 4 3. Test Result Summary ................................................................................................................................................. 5 4. EUT Description ............................................................................................................................................................... 6 5. RF Exposure Limit ...................................................................................................................................................... 8 6. SAR Measurement System Configuration ................................................................................................................ 9 6.1. SAR MEASUREMENT SET-UP ................................................................................................................................. 9 6.2. E-FIELD PROBE ................................................................................................................................................... 10 6.3. PHANTOM ........................................................................................................................................................... 10 6.4. DEVICE HOLDER .................................................................................................................................................. 11 6.5. DATA STORAGE AND EVALUATION......................................................................................................................... 12 6.6. POSITION OF THE WIRELESS DEVICE IN RELATION TO THE PHANTOM........................................................................... 13 6.7. TISSUE DIELECTRIC PARAMETERS......................................................................................................................... 16 6.8. TISSUE-EQUIVALENT LIQUID PROPERTIES .............................................................................................................. 17 6.9. SYSTEM CHECK ................................................................................................................................................... 18 7. Measurement Procedure .......................................................................................................................................... 19 8. Conducted Output Power ........................................................................................................................................ 22 9. Exposure Position Consideration ........................................................................................................................... 37 9.1. EUT ANTENNA LOCATION .................................................................................................................................... 37 9.2. TEST POSITION CONSIDERATION ........................................................................................................................... 37 10. SAR Test Results Summary .................................................................................................................................... 38 10.1. BODY-WORN 1G SAR DATA ................................................................................................................................ 38 10.2. HOTSPOT 1G SAR DATA...................................................................................................................................... 40 10.3. SIMULTANEOUS TRANSMISSION CONCLUSION......................................................................................................... 43 10.4. SAR SIMULTANEOUS TRANSMISSION ANALYSIS ..................................................................................................... 44 10.5. MEASUREMENT UNCERTAINTY (450MHZ-3GHZ).................................................................................................... 48 10.6. TEST EQUIPMENT LIST ......................................................................................................................................... 50 11. System Check Results ............................................................................................................................................. 51 12. SAR Test Data ........................................................................................................................................................... 59 Appendix A: EUT Photos................................................................................................................................................. 111 Appendix B: Test Setup Photos...................................................................................................................................... 113 Appendix C: Probe Calibration Certificate..................................................................................................................... 115 Appendix D: Dipole Calibration Report .......................................................................................................................... 131 Appendix E: SAR SYSTEM VALIDATION ....................................................................................................................... 175 Appendix F: The Check Data of Impedance and Return Loss ..................................................................................... 176
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1. Test Certification

Product:

Wearable & handheld translation device

Model No.:

Langogo Genesis

Additional Model No. SPK01, S1, T1

Trade Mark:

Report No.: TCT180706E005

Applicant:

Langogo Technology Co., LTD.

Address: Manufacturer:

2 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen, 518000 China
Shenzhen Shuangping tai Medical Technology Co., LTD

Address:

7 / F, Boxun Building, Keyuan North Road, Nanshan District, Shenzhen

Date of Test:

Jul. 09, 2018 - Aug. 15, 2018

SAR Max. Values:

1.08 W/Kg (1g) for Body-worn; 1.11 W/Kg (1g) for Hotspot;

Applicable Standards:

FCC 47 CFR §2.1093 IEEE1528-2013:Recommended Practice for Determining the Peak Spatial-Average Specific Absorption Rate in the Human Head from Wireless Communications Devices: Measurement Techniques KDB447498 D01:General RF Exposure Guidance v06 KDB865664 D01:SAR measurement 100MHz to 6GHz v01r04 KDB865664 D02:RF Exposure Reporting v01r02. KDB941225 D01:3G SAR Procedures v03r01 KDB248227 D01:802.11 wi-fi SAR v02r02 KDB941225 D05:SAR for LTE devices v02r05 KDB941225 D06:Hotspot Mode v02r01
KDB941225 D07:UMPC Mini Tablet v01r02
KDB690783 D01:SAR Listings on Grant v01r03

The above equipment has been tested by Shenzhen Tongce Testing Lab. and found compliance with the requirements set forth in the technical standards mentioned above. The results of testing in this report apply only to the product/system, which was tested. Other similar equipment will not necessarily produce the same results due to production tolerance and measurement uncertainties.

Tested By:

Date:

Aug. 15, 2018

Aaron Mo

Reviewed By:

Date:

Aug. 16, 2018

Beryl Zhao

Approved By:

Date:

Aug. 16, 2018

Tomsin

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Report No.: TCT180706E005

2. Facilities and Accreditations

2.1. Facilities
The test facility is recognized, certified, or accredited by the following organizations:  FCC - Registration No.: 645098
Shenzhen Tongce Testing Lab The 3m Semi-anechoic chamber has been registered and fully described in a report with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in our files.  IC - Registration No.: 10668A-1 The 3m Semi-anechoic chamber of Shenzhen Tongce Testing Lab.. has been registered by Certification and Engineering Bureau of Industry Canada for radio equipment testing
2.2. Location
Shenzhen Tongce Testing Lab Address: 1B/F., Building 1, Yibaolai Industrial Park, Qiaotou, Fuyong, Baoan District, Shenzhen, Guangdong, China
2.3. Environment Condition

Temperature: Humidity: Atmospheric Pressure:

18C ~25C 35%~75% RH 1011 mbar

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Report No.: TCT180706E005

3. Test Result Summary

The maximum results of Specific Absorption Rate (SAR) found during test as bellows:

<Highest Reported standalone SAR Summary>

Exposure Position Frequency Band

Reported SAR (W/kg)

Equipment Class

Highest Reported SAR (W/kg)

GSM 850

0.76

GSM 1900

1.08

WCDMA Band II

0.64

WCDMA Band V

0.68

Body-worn 1-g SAR

LTE Band 2

0.74

PCE

1.08

(10 mm Gap)

LTE Band 5

0.80

LTE Band 7

0.77

LTE Band 17

0.69

LTE Band 41

0.44

WLAN 2.4 GHz

0.04

DTS

GSM 850

0.79

GSM 1900

1.11

WCDMA Band II

0.65

WCDMA Band V

0.69

Hotspot

LTE Band 2

0.76

PCE

1-g SAR

1.11

(10 mm Gap)

LTE Band 5

0.61

LTE Band 7

0.87

LTE Band 17

0.78

LTE Band 41

0.49

WLAN 2.4 GHz

0.08

<Highest Reported simultaneous SAR Summary>

DTS

Exposure Position

Frequency Band

Highest Reported Simultaneous Transmission SAR (W/kg)

Body-worn 1-g SAR (10 mm Gap)

GSM 1900+WIFI

1.17

Hotspot 1-g SAR (10 mm Gap)

GSM 1900+WIFI

1.19

Note:

1. The highest simultaneous transmission is scalar summation of Reported standalone SAR per FCC KDB

690783 D01 v01r03, and scalar SAR summation of all possible simultaneous transmission scenarios are <

1.6W/kg.

2. This device is compliance with Specific Absorption Rate (SAR) for general population/uncontrolled exposure

limits specified in FCC 47 CFR part 2 (2.1093) and ANSI/IEEE C95.1-2005, and had been tested in

accordance with the measurement methods and procedures specified in IEEE 1528-2013.

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4. EUT Description
Product Name: Model : Additional Model:
Trade Mark: Hardware Version: Software Version: Power Supply:
Operation Band: Supported type: Power Class: Modulation Type: GSM Release Version: GPRS Multislot Class: EGPRS Multislot Class:
Operation Band: Power Class: Modulation Type: WCDMA Release Version: HSDPA Release Version: HSUPA Release Version: DC-HSUPA Release Version:
Operation Band:
Power Class: Modulation Type:
Supported type: Modulation:
Operation frequency:
Channel number:
Channel separation:

Report No.: TCT180706E005
Wearable & handheld translation device Langogo Genesis SPK01, S1, T1
YK909-V1.2 YK909_lwtg_36_HEYAN_V001_180709_2247 Rechargeable Li-ion Battery DC3.7V
2G GSM850, GSM1900 GPRS GSM850:Power Class 5; GSM1900:Power Class 0 GMSK for GPRS R99 12 N/A
3G FDD Band II & FDD Band V Power Class 3 QPSK for WCDMA/HSDPA/HSUPA R99 Release 5 Release 6 Not Supported
LTE LTE Band 2 & LTE Band 5 & LTE Band 7 & LTE Band 17 & LTE Band 41 Power Class 3 QPSK &16-QAM for LTE
Wi-Fi 802.11b/802.11g/802.11n 802.11b: DSSS 802.11g/802.11n:OFDM 802.11b/802.11g/802.11n(HT20):2412MHz~2462MHz; 802.11n(HT40): 2422MHz~2452MHz 802.11b/802.11g/802.11n(HT20):11; 802.11n(HT40):9 5MHz

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Bluetooth Version: Modulation: Operation frequency: Channel number: Channel separation:

Report No.: TCT180706E005
Bluetooth Supported 4.0 GFSK(1Mbps) , /4-DQPSK(2Mbps) , 8-DPSK(3Mbps) 2402MHz~2480MHz 79/40 1MHz/2MHz

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Report No.: TCT180706E005

5. RF Exposure Limit

Type Exposure

SAR (W/kg) Uncontrolled Exposure Limit

Spatial Peak SAR (averaged over any 1 g of tissue)

1.60

Spatial Peak SAR

(hands/wrists/feet/ankles averaged

4.00

over 10g)

Spatial Peak SAR (averaged over the whole body)

0.08

Note:

1. The Spatial Peak value of the SAR averaged over any 1 gram of tissue (defined as a tissue volume in the

shape of a cube) and over the appropriate averaging time.

2. The Spatial Average value of the SAR averaged over the whole body.

3. The Spatial Peak value of the SAR averaged over any 10 grams of tissue (defined as a tissue volume in the

shape of a cube) and over the appropriate averaging time.

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Report No.: TCT180706E005
6. SAR Measurement System Configuration
6.1. SAR Measurement Set-up
The OPENSAR system for performing compliance tests consist of the following items: A standard high precision 6-axis robot (KUKA) with controller and software. KUKA Control Panel (KCP) A dosimetric probe, i.e., an isotropic E-field probe optimized and calibrated for usage in tissue simulating liquid. The probe is equipped with a Video Positioning System (VPS). The stress sensor is composed with mechanical and electronic when the electronic part detects a change on the electro-mechanical switch; it sends an "Emergency signal" to the robot controller that to stop robot's moves A computer operating Windows XP. OPENSAR software Remote control with teaches pendant and additional circuitry for robot safety such as warning lamps, etc. The SAM phantom enabling testing left-hand right-hand and body usage. The Position device for handheld EUT Tissue simulating liquid mixed according to the given recipes. System validation dipoles to validate the proper functioning of the system.
KUKA SAR Test Sysytem Configuration
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6.2. E-field Probe

Report No.: TCT180706E005

The SAR measurement is conducted with the dosimetric probe (manufactured by MVG). The probe is specially designed and calibrated for use in liquid with high permittivity. The dosimetric probe has special calibration in liquid at different frequency. This probe has a built in optical surface detection system to prevent from collision with phantom.

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.

Device Type

COMOSAR DOSIMETRIC E FIELD PROBE

Manufacturer

MVG

Model

SSE5

Serial Number

SN 07/15 EP248

Frequency Range of Probe Resistance of Three Dipoles at Connector

0.45 GHz-3GHz
Dipole 1:R1=0.218M Dipole 2:R3=0.217M Dipole 3:R3=0.215M

Photo of E-Field Probe
6.3. Phantom
The SAM Phantom SAM120 is constructed of a fiberglass shell integrated in a wooden table. The shape of the shell is in compliance with the specification set in IEEE P1528 and CENELEC IEC 62209-1, IEC 62209-2:2010. The phantom enables the dosimetric evaluation of left and right hand phone usage as well as body mounted usage at the flat phantom region. A cover prevents the evaporation of the liquid. Reference markings on the Phantom allow the complete setup of all predefined phantom positions and measurement grids by manually teaching three points in the robot 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.
Name: COMOSAR IEEE SAM PHANTOM S/N: SN 19/15 SAM 120 Manufacture: MVG

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Report No.: TCT180706E005
SAM Twin Phantom
6.4. Device Holder
In combination with the Generic Twin Phantom SAM120, the Mounting Device enables the rotation of the mounted transmitter in spherical coordinates whereby the rotation points is the ear opening. The devices can be easily, accurately, and repeatedly positioned according to the FCC and CENELEC specifications. The device holder can be locked at different phantom locations (left head, right head, flat phantom).
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COMOSAR Mobile phone positioning system

6.5. Data Storage and Evaluation

Report No.: TCT180706E005

Data Storage The OPENSAR software stores the acquired data from the data acquisition electronics as raw data (in microvolt readings from the probe sensors), together with all necessary software parameters for the data evaluation (probe calibration data, liquid parameters and device frequency and modulation data) in measurement files. The software evaluates the desired unit and format for output each time the data is visualized or exported. This allows verification of the complete software setup even after the measurement and allows correction of incorrect parameter settings. For example, if a measurement has been performed with a wrong crest factor parameter in the device setup, the parameter can be corrected afterwards and the data can be re-evaluated.

The measured data can be visualized or exported in different units or formats, depending on the selected probe type ([V/m], [A/m], [°C], [mW/g], [mW/cm²], [dBrel], etc.). Some of these units are not available in certain situations or show meaningless results, e.g., a SAR output in a lossless media will always be zero. Raw data can also be exported to perform the evaluation with other software packages.

Data Evaluation The OPENSAR software automatically executes the following procedures to calculate the field units from the microvolt readings at the probe connector. The parameters used in the evaluation are stored in the configuration modules of the software:

Probe parameters: - Sensitivity

Normi, ai0, ai1, ai2

- Conversion factor

ConvFi

- Diode compression point

Dcpi

Device parameters: - Frequency

f

- Crest factor

cf

Media parameters: - Conductivity



- Density



These parameters must be set correctly in the software. They can be found in the component documents

or they can be imported into the software from the configuration files issued for the OPENSAR

components. In the direct measuring mode of the millimeter option, the parameters of the actual system

setup are used. In the scan visualization and export modes, the parameters stored in the corresponding

document files are used.

The first step of the evaluation is a linearization of the filtered input signal to account for the compression characteristics of the detector diode. The compensation depends on the input signal, the diode type and the DC-transmission factor from the diode to the evaluation electronics. If the exciting field is pulsed, the crest factor of the signal must be known to correctly compensate for peak power. The formula for each channel can be given as:
Vi = Ui + Ui2 ·c f / d c pi

With

Vi = compensated signal of channel i ( i = x, y, z )

Ui = input signal of channel i

( i = x, y, z )

cf = crest factor of exciting field

(MVG parameter)

dcpi = diode compression point

(MVG parameter)

From the compensated input signals the primary field data for each channel can be evaluated: E-field probes: Ei = ( Vi / Normi ·ConvF )1/2 H-field probes: Hi = ( Vi )1/2 ·( ai0 + ai1 f + ai2f2 ) / f

With Vi Normi
ConvF aij
f Ei Hi

= compensated signal of channel i (i = x, y, z)

= sensor sensitivity of channel i

(i = x, y, z)

[mV/(V/m)2] for E-field Probes

= sensitivity enhancement in solution

= sensor sensitivity factors for H-field probes

= carrier frequency [GHz]

= electric field strength of channel i in V/m

= magnetic field strength of channel i in A/m

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Report No.: TCT180706E005
The RSS value of the field components gives the total field strength (Hermitian magnitude): Etot = (Ex2+ EY2+ Ez2)1/2

The primary field data are used to calculate the derived field units. SAR = (Etot) 2 · / (·1000)

with SAR Etot  

= local specific absorption rate in mW/g = total field strength in V/m = conductivity in [mho/m] or [Siemens/m] = equivalent tissue density in g/cm3

Note that the density is normally set to 1 (or 1.06), to account for actual brain density rather than the density of the simulation liquid. The power flow density is calculated assuming the excitation field to be a free space field.
6.6. Position of the wireless device in relation to the phantom
Handset Reference Points Ppwe = Etot2 / 3770 or Ppwe = Htot2 ·37.7
With Ppwe = equivalent power density of a plane wave in mW/cm2 Etot = total electric field strength in V/m Htot = total magnetic field strength in A/m

Wt Width of the handset at the level of the acoustic Wb Width of the bottom of the handset A Midpoint of the width wt of the handset at the level of the acoustic output B Midpoint of the width wb of the bottom of the handset
Positioning for Cheek / Touch
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Report No.: TCT180706E005
Positioning for Ear / 15ºTilt
Body Worn Accessory Configurations To position the device parallel to the phantom surface with either keypad up or down. To adjust the device parallel to the flat phantom. To adjust the distance between the device surface and the flat phantom to 15mm or holster surface and the flat phantom to 0 mm.
Illustration for Body Worn Position Ireless RouterHotspotConfigurations Some battery-operated handsets have the capability to transmit and receive internet connectivity through simultaneous transmission of WIFI in conjunction with a separate licensed transmitter. The FCC has provided guidance in KDB Publication 941225 D06 where SAR test considerations for handsets (L x W  9 cm x 5 cm) are based on a composite test separation distance of 10 mm from the front, back and edges of the device with antennas 2.5 cm or closer to the edge of the device, determined from general mixed use conditions for this type of devices. Since the hotspot SAR results may overlap with the body-worn accessory SAR requirements, the more conservative configurations can be considered, thus excluding some body-worn accessory SAR tests. When the user enables the personal wireless router functions for the handset, actual operations include simultaneous transmission of both the WIFI transmitter and another licensed transmitter. Both transmitters often do not transmit at the same transmitting frequency and thus cannot be evaluated for SAR under actual use conditions. Therefore, SAR must be evaluated for each frequency transmission and mode separately and summed with the WIFI transmitter according to KDB 648474 publication procedures. The "Portable Hotspot" feature on the handset was NOT activated, to ensure the SAR measurements were evaluated for a single transmission frequency RF signal.
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Report No.: TCT180706E005
Illustration for Hotspot Position Limb-worn device A limb-worn device is a unit whose intended use includes being strapped to the arm or leg of the user while transmitting (except in idle mode). It is similar to a body-worn device. Therefore, the test positions of 6.1.4.4 also apply. The strap shall be opened so that it is divided into two parts as shown in Figure 9. The device shall be positioned directly against the phantom surface with the strap straightened as much as possible and the back of the device towards the phantom. If the strap cannot normally be opened to allow placing in direct contact with the phantom surface, it may be necessary to break the strap of the device but ensuring to not damage the antenna.
Test position for limb-worn devices
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6.7. Tissue Dielectric Parameters

Report No.: TCT180706E005

The liquid used for the frequency range of 100MHz-6G consisted of water, sugar, salt and Cellulose. The liquid has been previously proven to be suited for worst-case. The following Table shows the detail solution. It's satisfying the latest tissue dielectric parameters requirements proposed by the IEEE 1528 and IEC 62209. The simulating liquids should be checked at the beginning of a series of SAR measurements to determine of the determine of the dielectric parameter are within the tolerances of the specified target values. The measured conductivity and relative permittivity should be within ±5% of the target values.
The following materials are used for producing the tissue-equivalent materials Targets for tissue simulating liquid

Frequency (MHz)

Liquid Type

Liquid Type ()

± 5% Range

Permittivity ()

± 5% Range

300

Head

0.87

0.83~0.91

45.3

43.04~47.57

450

Head

0.87

0.83~0.91

43.5

41.33~45.68

835

Head

0.90

0.86~0.95

41.5

39.43~43.58

900

Head

0.97

0.92~1.02

41.5

39.43~43.58

1800-2000

Head

1.40

1.33~1.47

40.0

38.00~42.00

2450

Head

1.80

1.71~1.89

39.2

37.24~41.16

2600

Head

1.96

1.86~2.06

39.0

37.05~40.95

3000

Head

2.40

2.28~2.52

38.5

36.58~40.43

5800

Head

5.27

5.01~5.53

35.3

33.54~37.07

300

Body

0.92

0.87~0.97

58.2

55.29~61.11

450

Body

0.94

0.89~0.99

56.7

53.87~59.54

835

Body

0.97

0.92~1.02

55.2

52.44~57.96

900

Body

1.05

1.00~1.10

55.0

52.25~57.75

1800-2000

Body

1.52

1.44~1.60

53.3

50.64~55.97

2450

Body

1.95

1.85~2.05

52.7

50.07~55.34

2600

Body

2.16

2.05~2.27

52.5

49.88~55.13

3000

Body

2.73

2.60~2.87

52.0

49.40~54.60

5800

Body

6.00

5.70~6.30

48.2

45.79~50.61

(r = relative permittivity,  = conductivity and  = 1000 kg/m3)

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6.8. Tissue-equivalent Liquid Properties

Test Date dd/mm/yy
07/17/2018

Temp 
22

07/24/2018

22

07/31/2018

22

08/08/2018

22

Tissue Type 835B 1900B
2450B 2600B

Measured
Frequency
MHz 825 835 850 1850 1880 1900 1910 2410 2435 2450 2460 2506 2535 2680

r
55.26 55.24 55.21 53.34 53.32 53.31 53.29 54.65 54.63 54.62 54.59 51.96 52.01 52.13

Report No.: TCT180706E005

(s/m)
0.93 0.94 0.97 1.49 1.50 1.51 1.53 1.97 1.98 2.01 2.03 2.10 2.11 2.13

Dev r(%)
0.11 0.07 0.02 0.08 0.04 0.02 -0.02 3.70 3.66 3.64 3.59 -1.02 -0.93 -0.70

Dev (%)
-4.12 -3.09 0.00 -1.97 -1.32 -0.66 0.66 1.03 1.54 3.08 4.10 -2.78 -2.31 -1.39

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6.9. System Check

Report No.: TCT180706E005

The SAR system must be validated against its performance specifications before it is deployed. When SAR probe and system component or software are changed, upgraded or recalibrated, these must be validated with the SAR system(s) that operates with such component. Reference dipoles are used with the required tissue-equivalent media for system validation.

System check results have to be equal or near the values determined during dipole calibration with the relevant liquids and test system (±10 %).

System check is performed regularly on all frequency bands where tests are performed with the OPENSAR system.

System Check Set-up

Frequency (MHz)
835

Liquid Type
Body

Verification Results

Measured Value in

100mW

(W/kg)

1 g

10 g

Average Average

Normalized to 1W (W/kg)

Target Value (W/kg)

1 g

10 g

1 g

10 g

Average Average Average Average

Deviation (%)

1 g

10 g

Average Average

0.95

0.63

9.50

6.30

9.60

6.36

-1.04

-0.94

1800

Body

3.78

2.05

37.79 20.46 37.63 20.53

0.43

-0.34

1900

Body

3.77

1.99

37.70 19.90 38.73 20.48

-2.66

-2.83

2450

Body

5.07

2.42

50.70 24.16 50.72 23.43

-0.04

3.12

2600

Body

5.31

2.38

53.10 23.81 53.17 23.86

-0.13

-0.21

Comparing to the original SAR value provided by MVG, the verification data should be within its specification of 10%. Below table shows the target SAR and measured SAR after normalized to 1W input power. The table as below indicates the system performance check can meet the variation criterion and the plots can be referred to Section 10 of this report.

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Report No.: TCT180706E005
7. Measurement Procedure
Conducted power measurement
For WWAN power measurement, use base station simulator to configure EUT WWAN transition in conducted connection with RF cable, at maximum power in each supported wireless interface and frequency band. Read the WWAN RF power level from the base station simulator. For WLAN/BT power measurement, use engineering software to configure EUT WLAN/BT continuously transmission, at maximum RF power in each supported wireless interface and frequency band. Connect EUT RF port through RF cable to the power meter or spectrum analyser, and measure WLAN/BT output power.
Conducted power measurement
Use base station simulator to configure EUT WWAN transmission in radiated connection, and engineering software to configure EUT WLAN/BT continuously transmission, at maximum RF power, in the highest power channel. Place the EUT in positions as Appendix B demonstrates. Set scan area, grid size and other setting on the MVG software. Measure SAR results for the highest power channel on each testing position. Find out the largest SAR result on these testing positions of each band. Measure SAR results for other channels in worst SAR testing position if the Reported SAR or highest power channel is larger than 0.8 W/kg.
According to the test standard, the recommended procedure for assessing the peak spatial-average SAR value consists of the following steps:
Power reference measurement Area scan Zoom scan Power drift measurement
Spatial Peak SAR Evaluation
The procedure for spatial peak SAR evaluation has been implemented according to the test standard. It can be conducted for 1g and 10g, as well as for user-specific masses. The MVG software includes all numerical procedures necessary to evaluate the spatial peak SAR value.
The base for the evaluation is a "cube" measurement. The measured volume must include the 1g and 10 g cubes with the highest averaged SAR values. For that purpose, the center of the measured volume is aligned to the interpolated peak SAR value of a previously performed area scan.
The entire evaluation of the spatial peak values is performed within the post-processing engine (SEMCAD). The system always gives the maximum values for 1g and 10g cubes. The algorithm to find the cube with highest averaged SAR is divided into the following stages: Extraction of the measured data (grid and values) from the Zoom Scan.
Calculation of the SAR value at every measurement point based on all stored data (A/D values and measurement parameters).
Generation of a high-resolution mesh within the measured volume.
Interpolation of all measured values form the measurement grid to the high-resolution grid
Extrapolation of the entire 3-D field distribution to the phantom surface over the distance from sensor to surface
Calculation of the averaged SAR within masses of 1g and 10g.
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Report No.: TCT180706E005
Power Reference Measurement
The Power Reference Measurement and Power Drift Measurement are for monitoring the power drift of the device under test in the batch process. The minimum distance of probe sensors to surface determines the closest measurement point to phantom surface. This distance cannot be smaller than the distance of sensor calibration points to probe tip as defined in the probe properties
Area & Zoom Scan Procedures
First Area Scan is used to locate the approximate location(s) of the local peak SAR value(s). The measurement grid within an Area Scan is defined by the grid extent, grid step size and grid offset. Next, in order to determine the EM field distribution in a three-dimensional spatial extension, Zoom Scan is required. The Zoom Scan is performed around the highest E-field value to determine the averaged SAR-distribution over 10g. Area scan and zoom scan resolution setting follows KDB 865664 D01v01r03 quoted below.
Volume Scan Procedures
The volume scan is used for assess overlapping SAR distributions for antennas transmitting in different frequency bands. It is equivalent to an oversized zoom scan used in standalone measurements. The measurement volume will be used to enclose all the simultaneous transmitting antennas. For antennas transmitting simultaneously in different frequency bands, the volume scan is measured separately in each frequency band. In order to sum correctly to compute the 1g aggregate SAR, the EUT remain in the same test position for all measurements and all volume scan use the same spatial resolution and grid spacing. When all volume scan were completed, the software, SEMCAD post-processor scan combine and subsequently superpose these measurement data to calculating the multiband SAR.
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Report No.: TCT180706E005
SAR Averaged Methods
In MVG, the interpolation and extrapolation are both based on the modified Quadratic Shepard's method. The interpolation scheme combines a least-square fitted function method and a weighted average method which are the two basic types of computational interpolation and approximation. Extrapolation routines are used to obtain SAR values between the lowest measurement points and the inner phantom surface. The extrapolation distance is determined by the surface detection distance and the probe sensor offset. The uncertainty increases with the extrapolation distance. To keep the uncertainty within 1% for the 1g and 10g cubes, the extrapolation distance should not be larger than 5 mm.
Power Drift Monitoring
All SAR testing is under the EUT install full charged battery and transmit maximum output power. In MVG measurement software, the power reference measurement and power drift measurement procedures are used for monitoring the power drift of EUT during SAR test. Both these procedures measure the field at a specified reference position before and after the SAR testing. The software will calculate the field difference in dB. If the power drifts more than 5%, the SAR will be retested.
Power Drift measurement
The drift job measures the field at the same location as the most recent reference job within the same procedure, and with the same settings. The drift measurement gives the field difference in dB from the reading conducted within the last reference measurement. Several drift measurements are possible for
Measurement Uncertainty
Per KDB 865664 D01 SAR Measurement 100KHz to 6GHz ,when the highest measurement 1-g SAR within a frequency band is <1.5W/kg, the extensive SAR measurement uncertainty analysis described IEEE Std 1528-2013 is not required in SAR report submitted for equipment approval.
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8. Conducted Output Power

Report No.: TCT180706E005

Band: GSM 850 Channel Frequency

Measured Power (dBm)

128

190

251

824.2 836.6 848.8

Calculation (dB)

Averaged Power (dBm)

128

190

251

824.2 836.6 848.8

GPRS (GMSK, 1-slot) 32.45 32.52 32.57

-9.03

23.42 23.49 23.54

GPRS (GMSK, 2-slot) 31.73 31.82 31.88

-6.02

25.71 25.80 25.86

GPRS (GMSK, 3-slot) 30.15 30.23 30.32

-4.26

25.89 25.97 26.06

GPRS (GMSK, 4-slot) 29.07 29.16 29.25

-3.01

26.06 26.15 26.24

EGPRS (8PSK, 1 TX slot) 25.58 25.67 25.74

-9.03

16.55 16.64 16.71

EGPRS (8PSK, 2 TX slot) 24.53 24.68 24.72

-6.02

18.51 18.66 18.70

EGPRS (8PSK, 3 TX slot) 22.46 22.55 22.60

-4.26

18.20 18.29 18.34

EGPRS (8PSK, 4 TX slot) 21.23 21.32 21.41

-3.01

18.22 18.31 18.40

Note: 1. Division Factors
To average the power, the division factor is as follows: 1TX-slot = 1 transmit time slot out of 8 time slots=> conducted power divided by (8/1) => -9.03dB 2TX-slots = 2 transmit time slots out of 8 time slots=> conducted power divided by (8/2) => -6.02dB 3TX-slots = 3 transmit time slots out of 8 time slots=> conducted power divided by (8/3) => -4.26dB 4TX-slots = 4 transmit time slots out of 8 time slots=> conducted power divided by (8/4) => -3.01dB 2. According to the conducted power as above, the body measurements are performed with 4Txslots for 850MHz for GPRS. 3. The device do not support power reduction, so power of hotspot activated as the same as hotspot disabled

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Report No.: TCT180706E005

Band: GSM 1900 Channel Frequency

Measured Power (dBm)

512

661

810

1850.2 1880.0 1909.8

Calculation (dB)

Averaged Power (dBm)

512

661

810

1850.2 1880.0 1909.8

GPRS (GMSK, 1-slot) 29.77 29.67 29.61

-9.03 20.74 20.64 20.58

GPRS (GMSK, 2-slot) 29.07 28.98 28.93

-6.02 23.05 22.96 22.91

GPRS (GMSK, 3-slot) 27.33 27.23 27.24

-4.26 23.07 22.97 22.98

GPRS (GMSK, 4-slot) 26.21 26.14 26.20

-3.01 23.20 23.13 23.19

EGPRS (8PSK, 1-slot) 25.64 25.56 25.77

-9.03 16.61 16.53 16.74

EGPRS (8PSK, 2-slot) 24.78 24.66 24.86

-6.02 18.76 18.64 18.84

EGPRS (8PSK, 3-slot) 22.82 22.68 22.84

-4.26 18.56 18.42 18.58

EGPRS (8PSK, 4-slot) 21.71 21.59 21.82

-3.01 18.70 18.58 18.81

Note: 1. Division Factors
To average the power, the division factor is as follows: 1TX-slot = 1 transmit time slot out of 8 time slots=> conducted power divided by (8/1) => -9.03dB 2TX-slots = 2 transmit time slots out of 8 time slots=> conducted power divided by (8/2) => -6.02dB 3TX-slots = 3 transmit time slots out of 8 time slots=> conducted power divided by (8/3) => -4.26dB 4TX-slots = 4 transmit time slots out of 8 time slots=> conducted power divided by (8/4) => -3.01dB 2. According to the conducted power as above, the body measurements are performed with 4 TX slots for 1900MHz for GPRS. 3. The device do not support power reduction, so power of hotspot activated as the same as hotspot disabled

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Report No.: TCT180706E005

Band

WCDMA Band II

WCDMA Band V

Channel

9262

9400

9538

4132

4182

4233

Frequency

1852.4 1880.0 1907.6 826.4

836.4

846.6

RMC 12.2Kbps

22.95 22.67 22.60 23.33 23.42 23.43

HSDPA Subtest-1

22.49 22.62 22.54 22.87 23.00 22.92

HSDPA Subtest-2

22.19 22.31 22.26 22.57 22.69 22.64

HSDPA Subtest-3

22.13 22.26 22.20 22.51 22.64 22.58

HSDPA Subtest-4

22.07 22.24 22.19 22.45 22.62 22.57

HSUPA Subtest-1

21.83 21.96 21.86 22.21 22.34 22.24

HSUPA Subtest-2

21.73 21.86 21.78 22.11 22.24 22.16

HSUPA Subtest-3

21.68 21.49 21.46 22.06 21.87 21.84

HSUPA Subtest-4

21.29 21.43 21.34 21.67 21.81 21.72

HSUPA Subtest-5

21.20 21.27 21.25 21.58 21.65 21.63

Note: 1. According to the power listed above, the HSDPA and HSUPA were not determined for SAR testing.
2.The default test configuration is to measure SAR with an established radio link between the EUT and a communication test set using a 12.2kbps RMC(reference measurement channel) configuration in test loop mode
3. The device do not support power reduction, so power of hotspot activated as the same as hotspot disabled

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Report No.: TCT180706E005

WLAN 2.4G

Mode

802.11b

802.11g

Channel

1

6

11

1

6

11

Frequency

2412

2437

2462

2412

2437

2462

Average Power (dBm)

15.35

15.05

15.40

14.44

14.07

14.37

Mode

802.11n(HT20)

802.11n(HT40)

Channel

1

6

11

3

6

9

Frequency

2412

2437

2462

2422

2437

2452

Average Power (dBm)

14.34

14.31

14.26

14.07

13.63

14.64

Conducted power measurement results of wi-fi 2.4G

Channel

Frequency (GHz)

Max. Tune-up Power (dBm)

Max. Power (mW)

Test distance
(mm)

b/CH 11

2.462

16.00

39.81

10

Result 6.25

Exclusion thresholds for
1-g SAR

Exclusion thresholds for
10-g SAR

3.0

7.5

Note
1. Per KDB 447498 D01v05r02, the 1-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances  50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW) / (min. test separation distance, mm)] · [f(GHz)]  3.0 for 1-g SAR, and  7.5 for 10-extremity SAR, where f(GHz) is the RF channel transmit frequency in GHz Power and distance are rounded to the nearest mW and mm before calculation The result is rounded to one decimal place for comparison
2. Base on the result of note1, RF exposure evaluation of 802.11 b mode is required. 3. Per KDB 248227 D01 v02r02, choose the highest output power channel to test SAR and determine further SAR
exclusion. 4. The output power of all data rate were prescan , just the worst case (the lowest data rate) of all mode were shown in
report.

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Mode Channel Frequency Average Power (dBm)
Mode Channel Frequency Average Power (dBm)

0 2402 6.38
0 2402 5.50

Bluetooth GFSK
39 2441 3.36 8DPSK
39 2441 2.51

78 2480 5.13
78 2480 4.31

Report No.: TCT180706E005

0 2402 5.20
0 2402 6.33

Pi/4DQPSK 39
2441 2.30 BLE 20 2440 3.01

78 2480 4.05
39 2480 4.92

Channel

Frequency (GHz)

0

2.402

Max. Tune-up Power (dBm)
6.5

Max. Power (mW)
4.47

Test distance
(mm)
10

Result 0.69

Exclusion thresholds for
1-g SAR

Exclusion thresholds for
10-g SAR

3.0

7.5

Note
1. Per KDB 447498 D01v06, the 1-g SAR test exclusion thresholds for 100 MHz to 6 GHz at test separation distances  50 mm are determined by: [(max. power of channel, including tune-up tolerance, mW) / (min. test separation distance, mm)] · [f(GHz)]  3.0 for 1-g SAR, where f(GHz) is the RF channel transmit frequency in GHz Power and distance are rounded to the nearest mW and mm before calculation The result is rounded to one decimal place for comparison
2. Base on the result of note1, RF exposure evaluation of BT is not required. 3. Per KDB 248227 D01 v02r02, choose the highest output power channel to test SAR and determine further SAR
exclusion. 4. The output power of all data rate were prescan, just the worst case (the lowest data rate) of all mode were shown in
report.

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LTE Band 2 Bandwidth 1.4MHz Bandwidth 3MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 2

RB size 1
3 6 1
3 6 RB size 1
8 15 1
8 15

RB offset
0 3 5 0 2 3 0 0 3 5 0 2 3 0
RB offset
0 7 14 0 4 7 0 0 7 14 0 4 7 0

Channel 18607
22.48 22.68 22.44 22.60 22.60 22.58 21.49 21.69 21.87 21.66 21.71 21.72 21.68 20.55
Channel 18615
22.39 22.63 22.38 21.43 21.43 21.46 21.39 21.68 21.75 21.68 20.55 20.62 20.57 20.44

Report No.: TCT180706E005

Channel 18900
22.36 22.48 22.32 22.47 22.51 22.48 21.39 21.60 21.81 21.56 21.63 21.63 21.60 20.41
Channel 18900
22.32 22.63 22.29 21.35 21.37 21.30 21.30 21.61 21.81 21.55 20.47 20.50 20.41 20.34

Channel 19193
22.48 22.62 22.46 22.55 22.59 22.59 21.52 21.63 21.82 21.63 21.67 21.69 21.63 20.44
Channel 19185
22.43 22.51 22.40 21.46 21.50 21.44 21.47 21.61 21.87 21.61 20.48 20.59 20.47 20.40

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Report No.: TCT180706E005

Bandwidth 5MHz
Bandwidth 10MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 2

RB size 1
12 25 1
12 25 RB size 1
25 50 1
25 50

RB offset
0 13 24 0 6 13 0 0 13 24 0 6 13 0
RB offset
0 25 49 0 13 25 0 0 25 49 0 13 25 0

Channel 18625
22.44 22.70 22.41 21.47 21.53 21.40 21.52 21.68 21.98 21.70 20.62 20.66 20.60 20.56
Channel 18650
22.43 22.63 22.41 21.61 21.54 21.56 21.58 21.73 21.92 21.72 20.70 20.61 20.63 20.67

Channel 18900
22.36 22.64 22.33 21.38 21.38 21.35 21.41 21.66 21.95 21.56 20.51 20.53 20.51 20.45
Channel 18900
22.36 22.51 22.33 21.46 21.42 21.44 21.45 21.65 21.79 21.57 20.53 20.51 20.52 20.51

Channel 19175
22.45 22.61 22.43 21.48 21.49 21.44 21.51 21.69 21.91 21.64 20.59 20.57 20.51 20.52
Channel 19150
22.45 22.65 22.46 21.57 21.54 21.56 21.58 21.74 21.92 21.67 20.61 20.53 20.58 20.54

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Bandwidth 15MHz
Bandwidth 20MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 2

RB size 1
36 75 1
36 75 RB size 1
50 100
1
50 100

RB offset
0 38 74 0 18 39 0 0 38 74 0 18 39 0
RB offset
0 50 99 0 25 50 0 0 50 99 0 25 50 0

Channel 18675
22.41 22.62 22.38 21.57 21.52 21.49 21.59 21.70 21.91 21.67 20.65 20.61 20.59 20.62
Channel 18700
22.35 22.73 22.26 21.58 21.55 21.54 21.58 21.55 21.95 21.46 20.67 20.59 20.55 20.63

Report No.: TCT180706E005

Channel 18900
22.40 22.61 22.27 21.46 21.49 21.52 21.51 21.67 21.84 21.56 20.49 20.50 20.50 20.54
Channel 18900
22.36 22.65 22.20 21.47 21.50 21.45 21.43 21.59 21.81 21.39 20.49 20.48 20.49 20.46

Channel 19125
22.43 22.63 22.39 21.60 21.56 21.58 21.57 21.70 22.01 21.61 20.57 20.57 20.58 20.58
Channel 19100
22.32 22.74 22.32 21.61 21.54 21.48 21.51 21.49 21.94 21.48 20.65 20.53 20.48 20.52

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LTE Band 5 Bandwidth 1.4MHz Bandwidth 3MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band5

RB size 1
3 6 1
3 6 RB size 1
8 15 1
8 15

RB offset
0 3 5 0 2 3 0 0 3 5 0 2 3 0
RB offset
0 7 14 0 4 7 0 0 7 14 0 4 7 0

Channel 20407
23.51 23.65 23.50 23.51 23.56 23.53 22.58 22.56 22.73 22.58 22.59 22.60 22.58 21.52
Channel 20415
23.44 23.68 23.40 22.54 22.55 22.49 22.47 22.62 22.82 22.62 21.58 21.64 21.51 21.46

Report No.: TCT180706E005

Channel 20525
23.42 23.54 23.41 23.50 23.51 23.47 22.46 22.60 22.78 22.64 22.62 22.64 22.61 21.47
Channel 20525
23.41 23.62 23.41 22.45 22.49 22.48 22.45 22.65 22.84 22.66 21.58 21.63 21.55 21.47

Channel 20643
23.39 23.60 23.46 23.49 23.52 23.45 22.48 22.58 22.75 22.58 22.58 22.57 22.50 21.47
Channel 20635
23.39 23.73 23.40 22.46 22.48 22.45 22.44 22.59 22.79 22.64 21.52 21.60 21.52 21.44

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Report No.: TCT180706E005

Bandwidth 5MHz
Bandwidth 10MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 5

RB size 1
12 25 1
12 25 RB size 1
25 50 1
25 50

RB offset
0 13 24 0 6 13 0 0 13 24 0 6 13 0
RB offset
0 25 49 0 13 25 0 0 25 49 0 13 25 0

Channel 20425
23.47 23.76 23.40 22.39 22.48 22.45 22.43 22.57 22.89 22.56 21.51 21.61 21.55 21.48
Channel 20450
23.50 23.75 23.41 22.46 22.46 22.46 22.45 22.65 22.78 22.65 21.53 21.55 21.55 21.50

Channel 20525
23.40 23.77 23.40 22.38 22.50 22.43 22.42 22.63 22.85 22.62 21.57 21.64 21.55 21.53
Channel 20525
23.42 23.54 23.42 22.56 22.49 22.50 22.54 22.66 22.83 22.62 21.65 21.54 21.59 21.56

Channel 20625
23.38 23.83 23.40 22.38 22.44 22.36 22.41 22.55 22.86 22.56 21.54 21.57 21.47 21.44
Channel 20600
23.45 23.88 23.44 22.46 22.48 22.38 22.40 22.67 22.74 22.61 21.55 21.52 21.49 21.47

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LTE Band 7 Bandwidth Modulation QPSK 5MHz 16QAM Bandwidth Modulation QPSK 10MHz 16QAM

Conducted Power of LTE Band 7

RB size 1
12 25 1
12 25 RB size 1
25 50 1
25 50

RB offset
0 13 24 0 6 13 0 0 13 24 0 6 13 0
RB offset
0 25 49 0 13 25 0 0 25 49 0 13 25 0

Channel 20775
21.77 22.09 21.77 20.82 20.87 20.85 20.89 21.03 21.34 21.02
20.33 20.42 20.36 20.35
Channel 20800
21.86 21.96 21.83 20.93 20.94 20.98 20.92 21.12 21.26 21.10
20.40 20.39 20.48 20.39

Report No.: TCT180706E005

Channel 21100
21.89 22.21 21.92 20.94 20.97 20.91 20.97 21.09 21.41 21.11 20.45 20.52 20.44 20.45
Channel 21100
21.91 22.11 21.98 21.08 21.07 21.05 21.02 21.20 21.36 21.22 20.55 20.48 20.53 20.58

Channel 21425
22.30 22.70 22.42 21.40 21.44 21.44 21.44 21.50 21.82 21.57 20.41 20.49 20.43 20.38
Channel 21400
22.26 22.48 21.97 20.96 20.94 20.98 20.94 21.17 21.27 21.14 20.43 20.48 20.53 20.46

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Bandwidth 15MHz
Bandwidth 20MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 7

RB size 1
36 75 1
36 75 RB size 1
50 100
1
50 100

RB offset
0 38 74 0 18 39 0 0 38 74 0 18 39 0
RB offset
0 50 99 0 25 50 0 0 50 99 0 25 50 0

Channel 20825
21.45 21.49 21.27 20.38 20.45 20.44 20.50 20.62 20.79 20.56 20.42 20.45 20.56 20.47
Channel 20850
22.29 21.65 21.28 20.35 20.48 20.48 20.39 21.49 20.89 20.44 20.36 20.48 20.50 20.46

Report No.: TCT180706E005

Channel 21100
21.36 21.56 21.45 20.51 20.57 20.58 20.61 20.63 20.93 20.72 20.52 20.60 20.58 20.60
Channel 21100
22.36 21.77 21.50 20.55 20.56 20.58 20.52 20.49 20.95 20.67 20.57 20.56 20.57 20.52

Channel 21375
21.69 21.94 21.85 20.97 20.97 21.02 21.05 20.93 21.24 21.08 20.94 20.98 20.71 20.86
Channel 21350
21.58 22.83 21.82 20.95 20.91 20.84 20.87 20.80 21.17 20.96 20.90 20.93 20.81 20.87

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LTE Band 17

Report No.: TCT180706E005 Conducted Power of LTE Band 17

Bandwidth Modulation RB size

1

QPSK 12

25 5MHz
1

16QAM 12

Bandwidth

Modulation

25 RB size

1
QPSK 25
50 10MHz
1
16QAM 25
50

RB offset
0 13 24 0 6 13 0 0 13 24 0 6 13 0
RB offset
0 25 49 0 13 25 0 0 25 49 0 13 25 0

Channel 23755
22.95 23.33 22.98 21.96 22.05 22.05 22.09 22.18 22.55 22.29 21.05 21.17 21.17 21.06
Channel 23780
22.93 23.49 22.93 22.08 22.12 22.04 22.04 22.21 22.42 22.28 21.09 21.11 21.19 21.05

Channel 23790
22.97 23.47 22.99 22.04 22.16 21.99 22.09 22.29 22.69 22.27 21.17 21.29 21.21 21.12
Channel 23790
22.94 23.18 22.99 22.18 22.11 22.18 22.10 22.18 22.48 22.22 21.22 21.32 21.17 21.33

Channel 23825
23.01 23.31 22.98 22.11 22.13 22.05 22.11 22.29 22.54 22.13 21.18 21.21 21.11 21.13
Channel 23800
22.95 23.20 23.04 22.16 22.10 22.13 22.13 22.28 22.49 22.24 21.22 21.21 21.10 21.11

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LTE Band 41

Report No.: TCT180706E005 Conducted Power of LTE Band 41

Bandwidth Modulation RB size

1

QPSK 12

25 5MHz
1

16QAM 12

Bandwidth

Modulation

25 RB size

1
QPSK 25
50 10MHz
1
16QAM 25
50

RB offset
0 13 24 0 6 13 0 0 13 24 0 6 13 0
RB offset
0 25 49 0 13 25 0 0 25 49 0 13 25 0

Channel 39675
22.28 22.64 22.31 21.37 21.42 21.37 21.39 21.45 21.76 21.50 20.39 20.47 20.39 20.40
Channel 39700
22.39 22.48 22.46 21.51 21.48 21.48 21.47 21.55 21.66 21.62 20.47 20.44 20.44 20.42

Channel 40620
22.87 23.31 22.93 21.95 21.94 21.87 21.90 21.91 22.26 21.92 20.93 20.91 20.84 20.82
Channel 40620
22.89 23.07 23.05 22.02 21.99 21.91 21.99 21.98 22.08 22.10 20.95 20.92 20.85 20.93

Channel 41565
23.63 23.14 23.70 22.64 22.68 22.66 22.62 22.73 23.07 22.69 21.62 21.67 21.66 21.56
Channel 41540
23.77 23.91 23.80 22.69 22.81 22.78 22.72 22.80 22.87 22.77 21.61 21.72 21.72 21.70

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Report No.: TCT180706E005

Bandwidth 15MHz
Bandwidth 20MHz

Modulation QPSK
16QAM Modulation
QPSK
16QAM

Conducted Power of LTE Band 41

RB size 1
36 75 1
36 75 RB size 1
50 100
1
50 100

RB offset
0 38 74 0 18 39 0 0 38 74 0 18 39 0
RB offset
0 50 99 0 25 50 0 0 50 99 0 25 50 0

Channel 39725
22.35 22.69 22.45 21.52 21.54 21.57 21.60 21.50 21.89 21.61 20.47 20.49 20.51 20.52
Channel 39750
22.28 22.63 22.38 21.45 21.50 21.62 21.50 21.41 21.83 21.57 20.37 20.47 20.53 20.47

Channel 40620
22.81 23.29 22.99 22.17 22.20 22.11 22.19 21.90 22.24 21.97 21.01 21.05 20.97 21.05
Channel 40620
22.65 23.25 22.95 22.02 21.96 21.82 21.95 21.83 22.17 22.00 20.96 20.94 20.72 20.88

Channel 41515
23.73 23.13 23.70 22.82 22.91 22.95 22.95 22.70 23.07 22.66 21.70 21.78 21.82 21.80
Channel 41490
23.52 23.08 23.95 22.61 22.83 22.90 22.78 22.52 22.98 22.56 21.52 21.73 21.83 21.69

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9. Exposure Position Consideration
9.1. EUT Antenna Location

Report No.: TCT180706E005

9.2. Test Position Consideration

Test Positions

Mode

Back

Front

Top Side

GSM/WCDMA/LTE HOTSPOT

Yes

Yes

Yes

WIFI 2.4G/BT

Yes

Yes

No

Bottom Side Right Side Left Side

No

Yes

Yes

Yes

Yes

Yes

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10. SAR Test Results Summary

Report No.: TCT180706E005

10.1. Body-Worn 1g SAR Data

Band

Mode

Test

Position

CH.

with 5mm

Freq. (MHz)

Ave. Power (dBm)

GSM850

GPRS 4 slots

Front Back

251

848.8 29.25

251

848.8 29.25

Tune-U p Limit (dBm)
29.50
29.50

Power Drift (%)
2.01
-0.08

Front

512 1850.2 26.21 26.50

1.36

Back

512 1850.2 26.21 26.50 -0.91

GSM1900

GPRS 4 slots

Backrepeated

512

1850.2 26.21 26.50

-0.86

Back

661

1880 26.14 26.50

0.79

Back

810 1909.8 26.20 26.50 -0.26

WCDMA Band II

RMC

Front Back

9262 1852.4 22.95 23.00 9262 1852.4 22.95 23.00

1.36 -0.72

WCDMA Band V

RMC

Front Back

4233 846.6 23.43 23.50

1.18

4233 846.6 23.43 23.50

0.30

2.4G

802.11b

Front Back

11

2462 15.40 15.50 -1.30

11

2462 15.40 15.50 -0.81

Meas. SAR1g (W/kg)
0.32 0.72 0.47 1.01 1.00 0.86 0.91 0.33 0.63 0.29 0.67 0.02 0.04

Scaling Factor
1.059

Reported SAR1g (W/kg)
0.34

Limit (W/Kg)

1.059

0.76

1.069

0.50

1.069

1.08

1.069

1.07

1.086

0.93

1.072

0.98

1.60

1.012

0.33

1.012

0.64

1.016

0.29

1.016

0.68

1.023

0.02

1.023

0.04

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Report No.: TCT180706E005

Band
LTE Band
2
LTE Band
5
LTE Band
7
LTE Band
17
LTE Band
41

Mode
QPSK (20MHz)
QPSK (10MHz)
QPSK (20MHz)
QPSK (5MHz)
QPSK (20MHz)

Test

Positio

n

CH.

with5m

m

Front 19100

Back 19100

Front 20600

Back 20600

Front 21350

Back 21350

Front 23790

Back 23790

Front 41490

Back 41490

Freq.

RB

(MHz) allocation

1 1900
50 1 1900 50 1 844 25 1 844 25 1 2560 50 1 2560 50 1 710 12 1 710 12 1 2680 50 1 2680 50

RB offset
50 0 50 0 25 13 25 13 50 0 50 0 13 6 13 6 0 25 0 25

Ave. Power (dBm)

Tune-U p Limit (dBm)

Power Drift (%)

22.74 21.61 22.74 21.61 23.88 22.48 23.88 22.48 22.83 20.95 22.83 20.95 23.47 22.16 23.47 22.16 23.52 22.83 23.52 22.83

23.00 23.00 23.00 23.00 24.00 24.00 24.00 24.00 22.85 22.85 22.85 22.85 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00

1.05 -2.34 -0.37 1.25 -1.02 0.20 -0.20 0.38 0.12 -1.54 1.03 0.27 -2.17 -1.26 -0.16 0.17 -2.97 -2.15 0.80 0.11

Meas. SAR1g (W/kg)

Scaling Factor

Reported SAR1g (W/kg)

0.37

1.062

0.39

0.26

1.377

0.36

0.70

1.062

0.74

0.52

1.377

0.72

0.35

1.028

0.36

0.26

1.419

0.37

0.58

1.028

0.60

0.39

1.419

0.55

0.33

1.005

0.33

0.21

1.549

0.33

0.74

1.005

0.74

0.5

1.549

0.77

0.29

1.130

0.33

0.22

1.528

0.34

0.57

1.130

0.64

0.45

1.528

0.69

0.21

1.117

0.23

0.13

1.309

0.17

0.39

1.117

0.44

0.24

1.309

0.31

Note:
1. Per KDB 447498 D01 v06, for each exposure position, if the highest output power channel Reported SAR  0.8W/kg, other channels SAR testing is not necessary.
2. Per KDB 447498 D01 v06, body-worn use is evaluated with the device positioned at 10 mm from a flat phantom filled with head tissue-equivalent medium.
3. Per KDB 447498 D01 v06, the report SAR is measured SAR value adjusted for maximum tune-up tolerance. Scaling Factor=10^[(tune-up limit power(dBm) - Ave.power power (dBm))/10], where tune-up limit is the maximum rated power among all production units. Reported SAR(W/kg)=Measured SAR (W/kg)*Scaling Factor.
4. Per KDB865664D01 v01r04 perform a second repeated measurement only the ratio of largest to smallest SAR for the original and first repeated measurement is >1.20 or when the original or repeated measurement is 1.45W/kg.
5. Perform a second measurement only if the original, first and second repeated measurement is 1.5w/kg and the ratio
of largest to smallest SAR for the original, first and second repeated measurement is >1.20.

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10.2. Hotspot 1g SAR Data

Band

Mode

Test

Position

CH.

with10mm

Front

251

Freq. (MHz)
848.8

GSM850

GPRS 4 slots

Back Right Left

251

848.8

251

848.8

251

848.8

Top

251

848.8

Front

512 1850.2

GSM1900

GPRS 4 slots

Back Backrepeated Back
Back

512 1850.2

512 1850.2

661

1880

810 1909.8

Right

512 1850.2

Left

512 1850.2

Top

512 1850.2

Front

9262 1852.4

UMTS Band II

RMC

Back Right Left

9262 9262 9262

1852.4 1852.4 1852.4

Top

9262 1852.4

Front

4233 846.6

UMTS Band V

RMC

Back Right Left

4233 4233 4233

846.6 846.6 846.6

Top

4233 846.6

Front

11

2462

Back

11

2462

2.4G

802.11b

Left

11

2462

Right

11

2462

Bottom

11

2462

Ave. Power (dBm)
29.25

Tune-U p Limit (dBm)
29.50

29.25 29.50

29.25 29.50

29.25 29.50

29.25 29.50

26.21 26.50

26.21 26.50

26.21 26.50

26.14 26.50

26.20 26.50

26.21 26.50

26.21 26.50

26.21 26.50

22.95 23.00

22.95 23.00

22.95 23.00

22.95 23.00

22.95 23.00

23.43 23.50

23.43 23.50

23.43 23.50

23.43 23.50

23.43 23.50

15.40 15.50

15.40 15.50

15.40 15.50

15.40 15.50

15.40 15.50

Power Drift (%) 1.23 -2.81 0.01 -1.22 1.04 0.76 3.26 -3.22 1.95 0.83 -1.20 0.20 -1.33 0.82 -0.81 -0.89 -1.15 -0.22 2.34 0.15 -0.23 -0.60 0.07 0.13 0.72 -1.31 0.61 -0.22

Report No.: TCT180706E005

Meas. SAR1g (W/kg)
0.34
0.75
0.24 0.21 0.13 0.48 1.04 1.03 0.87 0.96 0.17 0.23 0.60 0.33 0.64 0.12 0.29 0.50 0.28 0.68 0.31 0.27 0.09 0.03 0.08 0.02 0.01 0.05

Scaling Factor 1.059 1.059 1.059 1.059 1.059 1.069 1.069 1.069 1.086 1.072 1.069 1.069 1.069 1.012 1.012 1.012 1.012 1.012 1.016 1.016 1.016 1.016 1.016 1.023 1.023 1.023 1.023 1.023

Reported SAR1g (W/kg)
0.36 0.79 0.25 0.22 0.14 0.51 1.11 1.10 0.95 1.03 0.18 0.25 0.64 0.33 0.65 0.12 0.29 0.51 0.28 0.69 0.32 0.27 0.09 0.03 0.08 0.02 0.01 0.05

Limit (W/Kg)
1.60

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Report No.: TCT180706E005

Band
LTE Band
2
LTE Band
5
LTE Band
7
LTE Band
17

Mode

Test

Position with5m

CH.

m

Front 19100

Back 19100

QPSK (20MHz)

Right

19100

Left 19100

Top 19100

Front 20600

Back 20600

QPSK (10MHz)

Right

20600

Left 20600

Top 20600

Front 21350

Back 21350

QPSK (20MHz)

Right

21350

Left 21350

Top 21350

Front 23790

Back 23790

QPSK (5MHz)

Right 23790

Left 23790

Top 23790

Freq. (MHz) 1900 1900 1900 1900 1900
844 844 844 844 844 2560 2560 2560 2560 2560 710 710 710 710 710

RB allocatio
n
1 50 1 50 1 50 1 50 1 50 1 25 1 25 1 25 1 25 1 25 1 50 1 50 1 50 1 50 1 50 1 12 1 12 1 12 1 12 1 12

RB offset
50 0 50 0 50 0 50 0 50 0 25 13 25 13 25 13 25 13 25 13 50 0 50 0 50 0 50 0 50 0 13 6 13 6 13 6 13 6 13 6

Ave. Power (dBm)
22.74 21.61 22.74 21.61 22.74 21.61 22.74 21.61 22.74 21.61 23.88 22.48 23.88 22.48 23.88 22.48 23.88 22.48 23.88 22.48 22.83 20.95 22.83 20.95 22.83 20.95 22.83 20.95 22.83 20.95 23.47 22.16 23.47 22.16 23.47 22.16 23.47 22.16 23.47 22.16

Tune-Up Limit (dBm)

Power Drift (%)

23.00 23.00 23.00 23.00 23.00 23.00 23.00 23.00 23.00 23.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 22.85 22.85 22.85 22.85 22.85 22.85 22.85 22.85 22.85 22.85 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00 24.00

3.61 -0.36 -0.58 1.34 -0.48 -0.10 -0.31 -1.25 -0.92 -0.99 -0.16 2.31 0.15 -2.14 -0.16 0.36 -0.38 0.24 0.23 1.26 1.22 -2.01 -4.57 -1.20 -1.56 1.02 -0.66 -0.19 -0.92 0.24 0.29 1.81 -4.62 0.21 0.71 -1.29 1.43 -1.26 -1.19 1.62

Meas. SAR1g (W/kg)
0.38 0.25 0.72 0.55 0.11 0.08 0.17 0.12 0.06 0.03 0.37 0.25 0.59 0.40 0.33 0.22 0.21 0.10 0.08 0.06 0.35 0.22 0.74 0.56 0.07 0.03 0.17 0.09 0.22 0.16 0.29 0.24 0.63 0.51 0.23 0.16 0.27 0.19 0.08 0.05

Scaling Factor
1.062 1.377 1.062 1.377 1.062 1.377 1.062 1.377 1.062 1.377 1.028 1.419 1.028 1.419 1.028 1.419 1.028 1.419 1.028 1.419 1.005 1.549 1.005 1.549 1.005 1.549 1.005 1.549 1.005 1.549 1.130 1.528 1.130 1.528 1.130 1.528 1.130 1.528 1.130 1.528

Reported SAR1g (W/kg)
0.40 0.34 0.76 0.76 0.12 0.11 0.18 0.17 0.06 0.04 0.38 0.35 0.61 0.57 0.34 0.31 0.22 0.14 0.08 0.09 0.35 0.34 0.74 0.87 0.07 0.05 0.17 0.14 0.22 0.25 0.33 0.37 0.71 0.78 0.26 0.24 0.31 0.29 0.09 0.08

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Report No.: TCT180706E005

1 Front 41490 2680
50

1 Back 41490 2680
50

LTE Band
41

QPSK (20MHz)

Right 41490

2680

1 50

1 Left 41490 2680
50

1 Top 41490 2680
50

0

23.52 24.00

1.08

0.22

1.117

0.25

25

22.83

24.00

-0.11

0.12

1.309

0.16

0

23.52 24.00

0.24

0.44

1.117

0.49

25

22.83

24.00

-0.27

0.26

1.309

0.34

0

23.52

24.00

-0.14

0.07

1.117

0.08

25

22.83

24.00

-1.74

0.03

1.309

0.04

0

23.52

24.00

-0.64

0.12

1.117

0.13

25

22.83

24.00

-2.36

0.08

1.309

0.10

0

23.52

24.00

-2.01

0.09

1.117

0.10

25

22.83

24.00

-2.82

0.06

1.309

0.08

Note:
1. Per KDB 447498 D01 v06, for each exposure position, if the highest output power channel Reported SAR  0.8W/kg, other channels SAR testing is not necessary.
2. Per KDB 447498 D01 v06, body-worn with hotspot use is evaluated with the device positioned at 10 mm from a flat phantom filled with head tissue-equivalent medium.
3. Per KDB 447498 D01 v06, the report SAR is measured SAR value adjusted for maximum tune-up tolerance. Scaling Factor=10^[(tune-up limit power(dBm) - Ave. power (dBm))/10], where tune-up limit is the maximum rated power among all production units. Reported SAR(W/kg)=Measured SAR (W/kg)*Scaling Factor.
4. Per KDB865664D01 v01r04 perform a second repeated measurement only the ratio of largest to smallest SAR for the original and first repeated measurement is >1.20 or when the original or repeated measurement is 1.45W/kg.
5. Perform a second measurement only if the original, first and second repeated measurement is 1.5w/kg and the ratio
of largest to smallest SAR for the original, first and second repeated measurement is >1.20.

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Report No.: TCT180706E005
10.3. Simultaneous Transmission Conclusion
Multi-Band Simultaneous Transmission Considerations
According to FCC KDB Publication 447498 D01v05r02, transmitters are considered to be transmitting simultaneously when there is overlapping transmission, with the exception of transmissions during network hand-offs with maximum hand-off duration less than 30 seconds. Possible transmission paths for the EUT are shown in below Figure and are color-coded to indicate communication modes which share the same path. Modes which share the same transmission path cannot transmit simultaneously with one another.

Path 1 GSM/WCDMA/LTE

Path 2 WIFI/BT

Simultaneous Transmission Paths
Simultaneous Transmission Procedures
This device contains transmitters that may operate simultaneously. Therefore simultaneous transmission analysis is required. Per FCC KDB 447498 D01v05r02, simultaneous transmission SAR test exclusion may be applied when the sum of the 1-g SAR for all the simultaneous transmitting antennas in a specific a physical test configuration is  1.6 W/kg. When standalone SAR is not required to be measured, per FCC KDB 447498 D01v05r02 4.3.2.2), the following equation must be used to estimate the standalone 1g SAR and 10g extremity SAR for simultaneous transmission assessment involving that transmitter.
Estimated SAR = f (GHz)  Max. power of channel, mW 7.5(18.75) Min.Separation Distance, mm

Mode

Max. tune-up Power (dBm)

Exposure Position Test Distance (mm)

Body -worn 10

BT

6.5

Estimated SAR (W/kg)

0.09

Note:

1. When the minimum test separation distance is < 5 mm, a distance of 5 mm according is applied to determine

estimated SAR.

2. (max. power of channel, including tune-up tolerance, mW)/(min. test separation distance, mm)]·[f(GHz)/x] W/kg for

test separation distances  50 mm; where x = 7.5 for 1-g SAR, and x = 18.75 for 10-g SAR.

3. Next to the mouth exposure requires 1-g SAR, and the wrist-worn condition requires 10-g extremity SAR.

Simultaneous Transmission Possibilities

The Simultaneous Transmission Possibilities of this device are as below:

NO.

Configuration

Body-Worn

Hotspot

2

GPRS 850/1900(DATA)+WIFI

YES

YES

3

WCDMA+ WIFI

YES

YES

4.

LTE+WIFI

YES

YES

6

GPRS/EDGE 850/1900(DATA)+BT

YES

NO

7.

WCDMA+ BT

YES

NO

8.

LTE+BT

YES

NO

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Report No.: TCT180706E005
10.4. SAR Simultaneous Transmission Analysis

Band

Scaled SAR

Test Position

Body-Worn

WIFI

BT

GSM850 (GPRS 4slot

Front Back

0.34

0.02

0.09

0.76

0.04

0.09

GSM1900 (GPRS 4slot)

Front Back

0.50

0.02

0.09

1.08

0.04

0.09

WCDMA Band II

Front Back

0.33

0.02

0.09

0.64

0.04

0.09

WCDMA Band V

Front Back

0.29

0.02

0.09

0.68

0.04

0.09

 SAR (W/kg)
0.43 0.85 0.59 1.17 0.42 0.73 0.38 0.77

SPLSR
N/A N/A N/A N/A N/A N/A N/A N/A

Remark
N/A N/A N/A N/A N/A N/A N/A N/A

Band

Test Position

RB allocation

Scaled Body-Worn WIFI2.4G

Bluetooth

 SAR (W/kg)

1

0.39

0.02

0.09

0.48

Front

LTE Band 2

12

0.36

0.02

0.09

0.45

QPSK

(20MHz)

1

0.74

0.04

0.09

0.83

Back

12

0.72

0.04

0.09

0.81

1

0.36

0.02

0.09

0.45

Front

LTE Band 5

50

0.37

0.02

0.09

0.46

QPSK

(10MHz)

1

0.6

0.04

0.09

0.69

Back

50

0.55

0.04

0.09

0.64

1

0.33

0.02

0.09

0.42

Front

LTE Band 7

50

0.33

0.02

0.09

0.42

QPSK

(20MHz)

1

0.74

0.04

0.09

0.83

Back

50

0.77

0.04

0.09

0.86

1

0.33

0.02

0.09

0.42

Front

LTE Band 17

12

0.34

0.02

0.09

0.43

QPSK

(5MHz)

1

0.64

0.04

0.09

0.73

Back

12

0.69

0.04

0.09

0.78

1

0.23

0.02

0.09

0.32

Front

LTE Band 41

50

0.17

0.02

0.09

0.26

QPSK

(20MHz)

1

0.44

0.04

0.09

0.53

Back

50

0.31

0.04

0.09

0.4

SPLSR
N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A

Remark
N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A

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Report No.: TCT180706E005

Band

Test Position

GSM850 (GPRS)
GSM1900 (GPRS)
WCDMA Band II
WCDMA Band V

Front Back Right Left Bottom Top Front Back Right Left Bottom Top Front Back Right Left Bottom Top Front Back Right Left Bottom Top

Scaled SAR

Hotspot

WIFI

0.36

0.03

0.79

0.08

0.25

0.02

0.22

0.01

/

0.05

0.14

/

0.51

0.03

1.11

0.08

0.18

0.02

0.25

0.01

/

0.05

0.64

/

0.33

0.03

0.65

0.08

0.12

0.02

0.29

0.01

/

0.05

0.51

/

0.28

0.03

0.69

0.08

0.32

0.02

0.27

0.01

/

0.05

0.09

/

 SAR (W/kg)
0.39 0.87 0.27 0.23 0.05 0.14 0.54 1.19 0.20 0.26 0.05 0.64 0.36 0.73 0.14 0.30 0.05 0.51 0.31 0.77 0.34 0.28 0.05 0.09

SPLSR
N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A

Remark
N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A N/A

Band

Test Position

RB allocation

Scaled

Hotspot

WIFI2.4G

 SAR (W/kg)

SPLSR

Remark

1

0.4

Front

12

0.34

1

0.76

Back

12

0.76

LTE Band 2

1

0.12

QPSK

Left

(20MHz)

12

0.11

1

0.18

Right

12

0.17

1

/

Bottom

12

/

0.03

0.49

N/A

N/A

0.03

0.43

N/A

N/A

0.08

0.85

N/A

N/A

0.08

0.85

N/A

N/A

0.02

0.21

N/A

N/A

0.02

0.20

N/A

N/A

0.01

0.27

N/A

N/A

0.01

0.26

N/A

N/A

0.05

0.09

N/A

N/A

0.05

0.09

N/A

N/A

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1

0.06

Top

12

0.04

1

0.38

Front

25

0.35

1

0.61

Back

25

0.57

1

0.34

Left

LTE Band 5

25

0.31

QPSK

(10MHz)

1

0.22

Right

25

0.14

1

/

Bottom

25

/

1

0.08

Top

25

0.09

1

0.35

Front

50

0.34

1

0.74

Back

50

0.87

1

0.07

Left

LTE Band 7

50

0.05

QPSK

(20MHz)

1

0.17

Right

50

0.14

1

/

Bottom

50

/

1

0.22

Top

50

0.25

1

0.33

Front

12

0.37

1

0.71

Back

12

0.78

1

0.26

Left

LTE Band 17

12

0.24

QPSK

(5MHz)

1

0.31

Right

12

0.29

1

/

Bottom

12

/

1

0.09

Top

12

0.08

Report No.: TCT180706E005

/

0.15

N/A

N/A

/

0.13

N/A

N/A

0.03

0.47

N/A

N/A

0.03

0.44

N/A

N/A

0.08

0.70

N/A

N/A

0.08

0.66

N/A

N/A

0.02

0.43

N/A

N/A

0.02

0.40

N/A

N/A

0.01

0.31

N/A

N/A

0.01

0.23

N/A

N/A

0.05

0.09

N/A

N/A

0.05

0.09

N/A

N/A

/

0.17

N/A

N/A

/

0.18

N/A

N/A

0.03

0.38

N/A

N/A

0.03

0.37

N/A

N/A

0.08

0.82

N/A

N/A

0.08

0.95

N/A

N/A

0.02

0.09

N/A

N/A

0.02

0.07

N/A

N/A

0.01

0.18

N/A

N/A

0.01

0.15

N/A

N/A

0.05

0.05

N/A

N/A

0.05

0.05

N/A

N/A

/

0.22

N/A

N/A

/

0.25

N/A

N/A

0.03

0.36

N/A

N/A

0.03

0.40

N/A

N/A

0.08

0.79

N/A

N/A

0.08

0.86

N/A

N/A

0.02

0.28

N/A

N/A

0.02

0.26

N/A

N/A

0.01

0.32

N/A

N/A

0.01

0.30

N/A

N/A

0.05

0.05

N/A

N/A

0.05

0.05

N/A

N/A

/

0.09

N/A

N/A

/

0.08

N/A

N/A

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Report No.: TCT180706E005

1

0.25

Front

50

0.16

1

0.49

Back

50

0.34

1

0.08

Left

LTE Band 41

50

0.04

QPSK

(20MHz)

1

0.13

Right

50

0.1

1

/

Bottom

50

/

1

0.1

Top

50

0.08

0.03

0.28

N/A

N/A

0.03

0.19

N/A

N/A

0.08

0.57

N/A

N/A

0.08

0.42

N/A

N/A

0.02

0.10

N/A

N/A

0.02

0.06

N/A

N/A

0.01

0.14

N/A

N/A

0.01

0.11

N/A

N/A

0.05

0.05

N/A

N/A

0.05

0.05

N/A

N/A

/

0.10

N/A

N/A

/

0.08

N/A

N/A

Simultaneous Transmission Conclusion
The above numerical summed SAR results for all the case simultaneous transmission conditions were below the SAR limit. Therefore, the above analysis is sufficient to determine that simultaneous transmission cases will not exceed the SAR limit and therefore measured volumetric simultaneous SAR summation is not required per FCC KDB Publication 447498 D01v05r02.

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Report No.: TCT180706E005

10.5. Measurement Uncertainty (450MHz-3GHz)

UNCERTAINTY EVALUATION FOR HEADSET SAR

Uncertainty Component

Descriptio n

Uncertainty Value(%)

Probably Distribution

Div.

(Ci) 1g

(Ci) 10g

Std.

Std.

Unc. Unc. v

1g(%) 10g(%)

Measurement system Probe calibration
Axial isotropy

7.2.1

5.8

7.2.1.1

3.5

N

1

1

1

5.8

5.8 

R

3 (1-Cp)1/2 (1-Cp)1/2 1.43

1.43



Hemispherical isotropy

7.2.1.1

5.9

R

3

C p

C p

2.41 2.41 

Boundary Effects

7.2.1.4

1.00

R

3

1

1

0.58 0.58 

Linearity

7.2.1.2

4.70

R

3

1

1

2.71 2.71 

System detection limits Modulation Response Readout Electronics

7.2.1.2

1

7.2.1.3

3

7.2.1.5

0.5

R

3

1

N

1

1

N

1

1

1

0.58 0.58 

1

3.00 3.00 

1

0.50 0.50 

Response Time

7.2.1.6

0

R

3

1

1

0.00 0.00 

Integration Time

7.2.1.7

1.4

RF Ambient Conditions-Noise

7.2.3.7

3

RF Ambient Conditions-Reflection

7.2.3.7

3

Probe positioned mechanical Tolerance

7.2.2.1

1.4

Probe positioning with respect to phantom shell

7.2.2.3

1.4

Extrapolation interpolation

and integration algorithms

7.2.4

2.3

for Max.SAR evaluation

Test sample related

Test sample positioning

7.2.2.4.4

2.6

Device holder uncertainty

7.2.2.4.2 7.2.2.4.3

3

output power variation-SAR drift measurement

7.2.3.6

5

SAR scaling

7.2.5

2

R

3

1

R

3

1

R

3

1

R

3

1

R

3

1

R

1

1

N

1

1

N

1

1

R

3

1

R

3

1

1

0.81 0.81 

1

1.73 1.73 

1

1.73 1.73 

1

0.81 0.81 

1

0.81 0.81 

1

1.33 1.33 

1

2.60 2.60 

1

3.00 3.00 

1

2.89 2.89 

1

1.15 1.15 

Phantom and tissue parameters

Phantom uncertainty

(shape and thickness

7.2.2.2

4

tolerances)

uncertainty in SAR

correction for deviation (in permittivity and

7.2.6

2

conductivity)

Liquid conductivity (temperature uncertainty)

7.2.3.5

2.5

Liquid conductivity -measurement uncertainty

7.2.3.3

4

Liquid permittivity (temperature uncertainty)

7.2.3.5

2.5

Liquid permittivity measurement uncertainty

7.2.3.4

5

Combined standard

uncertainty

Expanded uncertainty

(95%CONFIDENCEINTER

VAL

R
N
N N N N RSS k

3

1

1

2.31 2.31 

1

1

1

0.78

1

0.23

1

0.78

1

0.23

0.84 2.00 1.68 
0.71 1.95 1.78  0.26 0.92 1.04  0.71 1.95 1.78  0.26 1.15 1.30 
10.83 10.54 21.26 21.08

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Report No.: TCT180706E005

UNCERTAINTY FOR PERFORMANCE CHECK

Uncertainty Component

Description

Uncertainty Value(%)

Probably Distribution

Div.

(Ci) 1g

(Ci) 10g

Std.

Std.

Unc. Unc. v

1g(%) 10g(%)

Measurement system

Probe calibration

7.2.1

5.8

Axial isotropy

7.2.1.1

3.5

N

1

1

1

5.8

5.8 

R

3 (1-Cp)1/2 (1-Cp)1/2 1.43

1.43



Hemispherical isotropy

7.2.1.1

5.9

R

3

C p

C p

2.41 2.41 

Boundary Effects

7.2.1.4

1.00

R

3

1

1

0.58 0.58 

Linearity

7.2.1.2

4.70

R

3

1

1

2.71 2.71 

System detection limits

7.2.1.2

1

Modulation Response

7.2.1.3

3

Readout Electronics

7.2.1.5

0.5

R

3

1

N

1

1

N

1

1

1

0.58 0.58 

1

0.00 0.00 

1

0.50 0.50 

Response Time

7.2.1.6

0

R

3

1

1

0.00 0.00 

Integration Time

7.2.1.7

1.4

RF Ambient Conditions-Noise

7.2.3.7

3

RF Ambient Conditions-Reflection

7.2.3.7

3

Probe positioned mechanical Tolerance

7.2.2.1

1.4

Probe positioning with respect to phantom shell

7.2.2.3

1.4

Extrapolation interpolation

and integration algorithms

7.2.4

2.3

for Max.SAR evaluation

Dipole

Deviation of experimental

source from numerical

4

source

Input power and SAR drift measurement

7.2.3.6

5

Dipole axis to liquid distance

2

Phantom and tissue parameters

Phantom uncertainty

(shape and thickness

7.2.2.2

4

tolerances)

uncertainty in SAR

correction for deviation (in permittivity and

7.2.6

2

conductivity)

Liquid conductivity (temperature uncertainty)

7.2.3.5

2.5

Liquid conductivity -measurement uncertainty

7.2.3.3

4

Liquid permittivity (temperature uncertainty)

7.2.3.5

2.5

Liquid permittivity measurement uncertainty

7.2.3.4

5

Combined standard

uncertainty

Expanded uncertainty

(95%CONFIDENCEINTE

RVAL

R

3

1

R

3

1

R

3

1

R

3

1

R

3

1

R

1

1

1

0.81 0.81 

1

1.73 1.73 

1

1.73 1.73 

1

0.81 0.81 

1

0.81 0.81 

1

1.33 1.33 

N R R
R
N
N N N N RSS k

1

1

3

1

3

1

1

4.00 4.00 

1

2.89 2.89 

1



3

1

1

2.31 2.31 

1

1

1

0.78

1

0.23

1

0.78

1

0.23

0.84 2.00 1.68 
0.71 1.95 1.78  0.26 0.92 1.04  0.71 1.95 1.78  0.26 1.15 1.30 
10.15 10.05 20.29 20.10

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Report No.: TCT180706E005

10.6. Test Equipment List

Test Equipment
PC Signal Generator
Multimeter Network Analyzer
Wireless Communication
Test Set Wideband Radio Communication
Tester Power Meter Power Meter Power Meter Power Sensor Power Sensor Power Sensor Power Amplifier Directional Coupler
Attenuator
E-Field PROBE
DIPOLE 835
DIPOLE 1900
DIPOLE 2450
DIPOLE 2600
Limesar Dielectric Probe
Communication Antenna
Mobile Phone Position Device Dummy Probe
SAM PHANTOM
PHANTOM TABLE
Robot TABLE
6 AXIS ROBOT

Manufacturer
Lenovo Angilent Keithley Agilent
R & S
R&S Agilent Agilent Agilent Agilent Agilent Agilent
PE Agilent Chensheng MVG
MVG
MVG
MVG
MVG
MVG
MVG
MVG MVG MVG
MVG
MVG KUKA

Model
H3050 N5182A Multimeter 2000
8753E

Serial Number
N/A MY47070282
4078275 US38432457

Calibration

Calibration

Calibration

Date

Due

(D.M.Y)

(D.M.Y)

N/A

N/A

Sep. 28, 2017 Sep. 27, 2018

Sep. 28, 2017 Sep. 27, 2018

Sep. 28, 2017 Sep. 27, 2018

CMU200

111382

Sep. 28, 2017 Sep. 27, 2018

CMW500 E4418B E4416A N1912A E9301A E9327A E9323A PE15A4019
722D FF779 SSE5
SID835
SID1900
SID 2450
SID 2600
SCLMP
ANTA59
MSH101 DP66
SAM120
TABP101
TABP61 KR6-R900

114220
GB43312526 MY45101555 MY50001018 MY41497725 MY44421198 MY53070005
112342 MY52180104
134251 SN 07/15
EP248 SN 16/15 DIP
0G835-369 SN 16/15 DIP
1G900-372 SN 16/15 DIP
2G450-374 SN 16/15 DIP
2G600-375 SN 19/15 OCPG71 SN 39/14 ANTA59 SN 19/15 MSH101 SN 13/15 DP66 SN 19/15 SAM120 SN 19/15 TABP101 SN 19/15 TABP61 501822

Sep. 28, 2017 Sep. 28, 2017 Sep. 28, 2017 Sep. 28, 2017 Sep. 28, 2017 Sep. 28, 2017 Sep. 28, 2017
N/A N/A N/A Jan. 09, 2018
Jun. 05, 2018
Jun. 05, 2018
Jun. 05, 2018
Jun. 05, 2018
Jun. 05, 2018
N/A
N/A N/A N/A
N/A
N/A N/A

Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018 Sep. 27, 2018
N/A N/A N/A Jan. 08, 2019
Jun. 04, 2021
Jun. 04, 2021
Jun. 04, 2021
Jun. 04, 2021
Jun. 04, 2021
N/A
N/A N/A N/A
N/A
N/A N/A

Note:1.N/A means this equipment no need to calibrate 2.Each Time means this device need to calibrate every use time 3. The dipole was not damaged properly repaired. 4. The measured SAR deviates from the calibrated SAR value by less than 10% 5. The most recent return-loss result meets the required 20 dB minimum return-loss requirement 6. The most recent measurement of the real or imaginary parts of the impedance deviates by less than 5  from the previous measurement.

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11. System Check Results

Report No.: TCT180706E005

Date of measurement: 0072172018 Test mode: 835 (Body) Product Description: Validation Dipole Model: SID835 E-Field Probe: SSE5 (SN 07/15 EP248)

Phantom

Validation plane

Input Power

100mW

Crest Factor

1.0

Probe Conversion factor

5.22

Frequency (MHz)

835.000000

Relative permittivity (real part) Relative permittivity (imaginary part)

55.242077 21.378187

Conductivity (S/m)

0.938883

Variation (%) SAR 10g (W/Kg)

-0.150000 0.633123

SAR 1g (W/Kg)

0.949446

SURFACE SAR

VOLUME SAR

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Z (mm) SAR (W/Kg)

0.00 0.9625

4.00 0.6022

9.00 0.3594

Report No.: TCT180706E005

14.00 0.2202

19.00 0.0725

Hot spot position

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Report No.: TCT180706E005

Date of measurement: 07/24/2018 Test mode: 1900MHz (Body) Product Description: Validation Dipole Model: SID1900 E-Field Probe: SSE5 (SN 07/15 EP248)

Phantom

Validation plane

Input Power Crest Factor

100mW 1.0

Probe Conversion factor Frequency (MHz)
Relative permittivity (real part) Relative permittivity (imaginary part)
Conductivity (S/m) Variation (%)
SAR 10g (W/Kg) SAR 1g (W/Kg)

5.05 1900.000000
53.309999 14.329440 1.510354 1.250000 1.994255 3.766112

SURFACE SAR

VOLUME SAR

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Z (mm) SAR (W/Kg)

0.00 3.7752

4.00 2.7154

9.00 1.9525

Report No.: TCT180706E005

14.00 1.5694

19.00 0.9014

Hot spot position

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Report No.: TCT180706E005
Date of measurement: 07/31/2018Test mode: 2450MHz (Body) Product Description: Validation Dipole Model: SID2450 E-Field Probe: SSE5 (SN 07/15 EP248)

Phantom Input Power Crest Factor Probe Conversion factor Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) SAR 10g (W/Kg) SAR 1g (W/Kg)

Validation plane 100mW 1.0 4.36
2450.000000 54.616199 14.930150 2.012159 -0.230000 2.416669 5.066368

SURFACE SAR

VOLUME SAR

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Z (mm) SAR (W/Kg)

0.00 5.0622

4.00 2.7984

9.00 1.5251

Report No.: TCT180706E005

14.00 0.8352

19.00 0.4200

Hot spot position

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Report No.: TCT180706E005
Date of measurement: 08/08/2018 Test mode: 2600MHz (Body) Product Description: Validation Dipole Model: SID2600 E-Field Probe: SSE5 (SN 07/15 EP248)

Phantom Input Power Crest Factor Probe Conversion factor Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) SAR 10g (W/Kg) SAR 1g (W/Kg)

Validation plane 100mW 1.0 4.50
2535.000000 52.013887 14.935214 2.114821 -1.800000 2.382177 5.365098

SURFACE SAR

VOLUME SAR

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Z (mm) SAR (W/Kg)

0.00 5.7721

4.00 3.2210

9.00 0.1937

Report No.: TCT180706E005

14.00 0.0321

19.00 0.0203

Hot spot position

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Report No.: TCT180706E005

12. SAR Test Data

GSM850

MEASUREMENT 1

Higher Band SAR (Channel 251):

Date: 07/17/2018

Frequency (MHz)

848.800000

Relative permittivity (real part)

55.211082

Relative permittivity (imaginary part)

21.371429

Conductivity (S/m)

0.967210

Variation (%)

-0.080000

Crest Factor:

2.0

Probe Conversion factor

5.65

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM850(GPRS 4slot) VOLUME SAR

Maximum location: X=2.00, Y=15.00 SAR Peak: 0.94 W/kg

SAR 10g (W/Kg)

0.498607

SAR 1g (W/Kg)

0.718590

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Z (mm) SAR (W/Kg)

0.00 0.8866

4.00 0.7197

9.00 0.5473

Report No.: TCT180706E005

14.00 0.4096

19.00 0.3001

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 251):

Date: 07/17/2018

Frequency (MHz)

848.800000

Relative permittivity (real part)

55.211082

Relative permittivity (imaginary part)

21.371429

Conductivity (S/m)

0.967210

Variation (%)

-2.810000

Crest Factor:

2.0

Probe Conversion factor

5.65

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM850(GPRS 4slot hotspot) VOLUME SAR

Maximum location: X=-3.00, Y=15.00 SAR Peak: 1.11 W/kg

SAR 10g (W/Kg)

0.504867

SAR 1g (W/Kg)

0.752201

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Z (mm) SAR (W/Kg)

0.00 0.9814

4.00 0.7662

9.00 0.5591

Report No.: TCT180706E005

14.00 0.4080

19.00 0.2978

Hot spot position

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Report No.: TCT180706E005

GSM1900 MEASUREMENT 1 Lower Band SAR (Channel 512): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/24/2018 1850.199951
53.343053 14.225122 1.493667 -0.910000
2.0 5.01

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot) VOLUME SAR

Maximum location: X=6.00, Y=45.00 SAR Peak: 1.80 W/kg

SAR 10g (W/Kg)

0.609523

SAR 1g (W/Kg)

1.010541

Page 63 of 177
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Z (mm) SAR (W/Kg)

0.00 1.7158

4.00 1.1318

9.00 0.6586

Report No.: TCT180706E005

14.00 0.3845

19.00 0.2312

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2-repeated

Lower Band SAR (Channel 512):

Date: 07/24/2018

Frequency (MHz)

1850.199951

Relative permittivity (real part)

53.343053

Relative permittivity (imaginary part)

14.225122

Conductivity (S/m)

1.493667

Variation (%)

-0.860000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot) VOLUME SAR

Maximum location: X=0.00, Y=33.00 SAR Peak: 1.91 W/kg

SAR 10g (W/Kg)

0.515100

SAR 1g (W/Kg)

1.001339

Page 65 of 177
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Z (mm) SAR (W/Kg)

0.00 1.8976

4.00 1.1884

9.00 0.6451

Report No.: TCT180706E005

14.00 0.3559

19.00 0.2104

Hot spot position

Page 66 of 177
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Report No.: TCT180706E005

MEASUREMENT 3

Middle Band SAR (Channel 661):

Date: 07/24/2018

Frequency (MHz)

1880.000000

Relative permittivity (real part)

53.320121

Relative permittivity (imaginary part)

14.225400

Conductivity (S/m)

1.500251

Variation (%)

0.790000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot) VOLUME SAR

Maximum location: X=-21.00, Y=34.00 SAR Peak: 1.50 W/kg

SAR 10g (W/Kg)

0.473725

SAR 1g (W/Kg)

0.855395

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Z (mm) SAR (W/Kg)

0.00 1.4359

4.00 0.9304

9.00 0.5273

Report No.: TCT180706E005

14.00 0.2992

19.00 0.1752

Hot spot position

Page 68 of 177
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Report No.: TCT180706E005

MEASUREMENT 4

Higher Band SAR (Channel 810):

Date: 07/24/2018

Frequency (MHz)

1909.800049

Relative permittivity (real part)

53.290177

Relative permittivity (imaginary part)

14.221246

Conductivity (S/m)

1.533540

Variation (%)

-0.260000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot) VOLUME SAR

Maximum location: X=8.00, Y=40.00 SAR Peak: 1.96 W/kg

SAR 10g (W/Kg)

0.627902

SAR 1g (W/Kg)

0.919946

Page 69 of 177
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Z (mm) SAR (W/Kg)

0.00 1.9264

4.00 1.2573

9.00 0.7219

Report No.: TCT180706E005

14.00 0.4173

19.00 0.2507

Hot spot position

Page 70 of 177
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Report No.: TCT180706E005

MEASUREMENT 5

Lower Band SAR (Channel 512):

Date: 07/24/2018

Frequency (MHz)

1850.199951

Relative permittivity (real part)

53.343053

Relative permittivity (imaginary part)

14.225122

Conductivity (S/m)

1.493667

Variation (%)

3.260000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot hotspot) VOLUME SAR

Maximum location: X=1.00, Y=47.00 SAR Peak: 2.12 W/kg

SAR 10g (W/Kg)

0.624114

SAR 1g (W/Kg)

1.037674

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Z (mm) SAR (W/Kg)

0.00 2.0922

4.00 1.3392

9.00 0.7478

Report No.: TCT180706E005

14.00 0.4208

19.00 0.2480

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 6-repeated

Lower Band SAR (Channel 512):

Date: 07/24/2018

Frequency (MHz)

1850.199951

Relative permittivity (real part)

53.343053

Relative permittivity (imaginary part)

14.225122

Conductivity (S/m)

1.493667

Variation (%)

-3.220000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot hotspot) VOLUME SAR

Maximum location: X=-9.00, Y=-27.00 SAR Peak: 2.12 W/kg

SAR 10g (W/Kg)

0.614804

SAR 1g (W/Kg)

1.032127

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Z (mm) SAR (W/Kg)

0.00 2.1034

4.00 1.3324

9.00 0.7410

Report No.: TCT180706E005

14.00 0.4192

19.00 0.2451

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 7

Middle Band SAR (Channel 661):

Date: 07/24/2018

Frequency (MHz)

1880.000000

Relative permittivity (real part)

53.320121

Relative permittivity (imaginary part)

14.225400

Conductivity (S/m)

1.500251

Variation (%)

1.950000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot hotspot) VOLUME SAR

Maximum location: X=17.00, Y=26.00 SAR Peak: 1.42 W/kg

SAR 10g (W/Kg)

0.497503

SAR 1g (W/Kg)

0.873008

Page 75 of 177
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Z (mm) SAR (W/Kg)

0.00 1.3974

4.00 0.9574

9.00 0.5834

Report No.: TCT180706E005

14.00 0.3515

19.00 0.2109

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 8

Higher Band SAR (Channel 810):

Date: 07/24/2018

Frequency (MHz)

1909.800049

Relative permittivity (real part)

53.290177

Relative permittivity (imaginary part)

14.221246

Conductivity (S/m)

1.533540

Variation (%)

0.830000

Crest Factor

2.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) GSM1900(GPRS 4slot hotspot) VOLUME SAR

Maximum location: X=-7.00, Y=30.00 SAR Peak: 1.88 W/kg

SAR 10g (W/Kg)

0.505764

SAR 1g (W/Kg)

0.963396

Page 77 of 177
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Z (mm) SAR (W/Kg)

0.00 1.8637

4.00 1.1658

9.00 0.6310

Report No.: TCT180706E005

14.00 0.3458

19.00 0.2022

Hot spot position

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Report No.: TCT180706E005

WCDMA Band II MEASUREMENT 1 Lower Band SAR (Channel 9262): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/24/2018 1852.400000
53.343053 14.225122 1.493667 -0.720000
1.0 5.01

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) BAND1_WCDMA2100 VOLUME SAR

Maximum location: X=-16.00, Y=33.00 SAR Peak: 1.31 W/kg

SAR 10g (W/Kg)

0.355213

SAR 1g (W/Kg)

0.631854

Page 79 of 177
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Z (mm) SAR (W/Kg)

0.00 1.2996

4.00 0.8772

9.00 0.5270

Report No.: TCT180706E005

14.00 0.3175

19.00 0.1956

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2

Lower Band SAR (Channel 9262):

Date: 07/24/2018

Frequency (MHz)

1852.400000

Relative permittivity (real part)

53.343053

Relative permittivity (imaginary part)

14.225122

Conductivity (S/m)

1.493667

Variation (%)

-0.810000

Crest Factor

1.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back hot(10mm) BAND1_WCDMA2100 VOLUME SAR

Maximum location: X=-9.00, Y=31.00 SAR Peak: 1.31 W/kg

SAR 10g (W/Kg)

0.354948

SAR 1g (W/Kg)

0.641846

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Z (mm) SAR (W/Kg)

0.00 1.3047

4.00 0.8804

9.00 0.5286

Report No.: TCT180706E005

14.00 0.3180

19.00 0.1954

Hot spot position

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Report No.: TCT180706E005

WCDMA Band V

MEASUREMENT 1

Higher Band SAR (Channel 4182):

Date: 07/17/2018

Frequency (MHz)

846.599976

Relative permittivity (real part)

55.211082

Relative permittivity (imaginary part)

21.371429

Conductivity (S/m)

0.967210

Variation (%)

0.300000

Crest Factor:

1.0

Probe Conversion factor

5.65

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) BAND5_WCDMA850 VOLUME SAR

Maximum location: X=-1.00, Y=10.00 SAR Peak: 1.24 W/kg

SAR 10g (W/Kg)

0.410395

SAR 1g (W/Kg)

0.672586

Page 83 of 177
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Z (mm) SAR (W/Kg)

0.00 1.2356

4.00 0.9810

9.00 0.7320

Report No.: TCT180706E005

14.00 0.5465

19.00 0.4081

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 4182):

Date: 07/17/2018

Frequency (MHz)

846.599976

Relative permittivity (real part)

55.211082

Relative permittivity (imaginary part)

21.371429

Conductivity (S/m)

0.967210

Variation (%)

0.150000

Crest Factor:

1.0

Probe Conversion factor

5.65

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) BAND5_WCDMA850(hotspot) VOLUME SAR

Maximum location: X=-1.00, Y=15.00 SAR Peak: 1.22 W/kg

SAR 10g (W/Kg)

0.441251

SAR 1g (W/Kg)

0.680023

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Z (mm) SAR (W/Kg)

0.00 1.2150

4.00 0.9659

9.00 0.7215

Report No.: TCT180706E005

14.00 0.5387

19.00 0.4019

Hot spot position

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Report No.: TCT180706E005

LTE Band 2 MEASUREMENT 1 Higher Band SAR (Channel 19100): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/24/2018 1900.000000
53.290177 14.221246 1.533540 -0.370000
1.0 5.01

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) LTE band 2 (1 RB#50) VOLUME SAR

Maximum location: X=16.00, Y=46.00 SAR Peak: 1.12 W/kg

SAR 10g (W/Kg)

0.424017

SAR 1g (W/Kg)

0.703698

Page 87 of 177
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Z (mm) SAR (W/Kg)

0.00 1.1181

4.00 0.7662

9.00 0.4699

Report No.: TCT180706E005

14.00 0.2885

19.00 0.1802

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 19100):

Date: 07/24/2018

Frequency (MHz)

1900.000000

Relative permittivity (real part)

53.290177

Relative permittivity (imaginary part)

14.221246

Conductivity (S/m)

1.533540

Variation (%)

-0.580000

Crest Factor

1.0

Probe Conversion factor

5.01

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back (hotspot 10mm)
LTE band 2 (1 RB#50) VOLUME SAR

Maximum location: X=10.00, Y=44.00 SAR Peak: 1.13 W/kg

SAR 10g (W/Kg)

0.435610

SAR 1g (W/Kg)

0.716796

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Z (mm) SAR (W/Kg)

0.00 1.1102

4.00 0.7597

9.00 0.4655

Report No.: TCT180706E005

14.00 0.2864

19.00 0.1799

Hot spot position

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Report No.: TCT180706E005

LTE Band 5 MEASUREMENT 1 Higher Band SAR (Channel 20600): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/17/2018 835.000000 55.242077 21.378187
0.938883 -0.200000
1.0 4.52

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) LTE band 5(1 RB#25) VOLUME SAR

Maximum location: X=-6.00, Y=9.00 SAR Peak: 0.96 W/kg

SAR 10g (W/Kg)

0.320577

SAR 1g (W/Kg)

0.582216

Page 91 of 177
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Z (mm) SAR (W/Kg)

0.00 0.9562

4.00 0.7634

9.00 0.5743

Report No.: TCT180706E005

14.00 0.4329

19.00 0.3270

Hot spot position

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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 20700):

Date: 07/17/2018

Frequency (MHz)

835.000000

Relative permittivity (real part)

55.242077

Relative permittivity (imaginary part)

21.378187

Conductivity (S/m)

0.938883

Variation (%)

0.150000

Crest Factor

1.0

Probe Conversion factor

4.52

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(hotspot 10mm)
LTE band 5(1 RB#25) VOLUME SAR

Maximum location: X=1.00, Y=14.00 SAR Peak: 0.98 W/kg

SAR 10g (W/Kg)

0.333243

SAR 1g (W/Kg)

0.593150

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Z (mm) SAR (W/Kg)

0.00 0.9783

4.00 0.7816

9.00 0.5873

Report No.: TCT180706E005

14.00 0.4407

19.00 0.3298

Hot spot position

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Report No.: TCT180706E005

LTE Band 7 MEASUREMENT 1 Higher Band SAR (Channel 21350): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 08/08/2018 2560.000000
52.132855 12.468146 2.130256 1.030000
1.0 4.52

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) LTE band 7(1 RB#0) VOLUME SAR

Maximum location: X=5.00, Y=50.00 SAR Peak: 1.30 W/kg

SAR 10g (W/Kg)

0.392158

SAR 1g (W/Kg)

0.742115

Page 95 of 177
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Z (mm) SAR (W/Kg)

0.00 1.2762

4.00 0.7888

9.00 0.4142

Report No.: TCT180706E005

14.00 0.2132

19.00 0.1113

Hot spot position

Page 96 of 177
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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 20350):

Date: 08/08/2018

Frequency (MHz)

2560.000000

Relative permittivity (real part)

52.132855

Relative permittivity (imaginary part)

12.468146

Conductivity (S/m)

2.130256

Variation (%)

-4.570000

Crest Factor

1.0

Probe Conversion factor

4.52

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(hotspot 10mm)
LTE band 7(1 RB#0) VOLUME SAR

Maximum location: X=11.00, Y=53.00 SAR Peak: 1.36 W/kg

SAR 10g (W/Kg)

0.393387

SAR 1g (W/Kg)

0.769243

Page 97 of 177
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Z (mm) SAR (W/Kg)

0.00 1.3339

4.00 0.8062

9.00 0.4108

Report No.: TCT180706E005

14.00 0.2068

19.00 0.1084

Hot spot position

Page 98 of 177
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Report No.: TCT180706E005

LTE Band 17 MEASUREMENT 1 Middle Band SAR (Channel 23790): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/17/2018 710.000000 55.242077 21.378187
0.938883 -0.160000
1.0 4.52

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) LTE band 41(1 RB#0) VOLUME SAR

Maximum location: X=-3.00, Y=18.00 SAR Peak: 0.73 W/kg

SAR 10g (W/Kg)

0.409241

SAR 1g (W/Kg)

0.570534

Page 99 of 177
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Z (mm) SAR (W/Kg)

0.00 0.7259

4.00 0.5840

9.00 0.4440

Report No.: TCT180706E005

14.00 0.3385

19.00 0.2588

Hot spot position

Page 100 of 177
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Report No.: TCT180706E005

MEASUREMENT 2

Middle Band SAR (Channel 23790):

Date: 07/17/2018

Frequency (MHz)

710.000000

Relative permittivity (real part)

55.242077

Relative permittivity (imaginary part)

21.378187

Conductivity (S/m)

0.938883

Variation (%)

-4.620000

Crest Factor

1.0

Probe Conversion factor

4.52

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(hotspot 10mm)
LTE band 41(1 RB#0) VOLUME SAR

Maximum location: X=-6.00, Y=18.00 SAR Peak: 0.80 W/kg

SAR 10g (W/Kg)

0.456587

SAR 1g (W/Kg)

0.631163

Page 101 of 177
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Z (mm) SAR (W/Kg)

0.00 0.7876

4.00 0.6394

9.00 0.4913

Report No.: TCT180706E005

14.00 0.3779

19.00 0.2909

Hot spot position

Page 102 of 177
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Report No.: TCT180706E005

LTE Band 41 MEASUREMENT 1 Higher Band SAR (Channel 41490): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 08/08/2018 2680.000000
52.132855 12.468146 2.130256 0.800000
1.0 4.52

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) LTE band 41(1 RB#0) VOLUME SAR

Maximum location: X=16.00, Y=55.00 SAR Peak: 0.71 W/kg

SAR 10g (W/Kg)

0.201972

SAR 1g (W/Kg)

0.391912

Page 103 of 177
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Z (mm) SAR (W/Kg)

0.00 0.6979

4.00 0.4243

9.00 0.2179

Report No.: TCT180706E005

14.00 0.1103

19.00 0.0577

Hot spot position

Page 104 of 177
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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 41490):

Date: 08/08/2018

Frequency (MHz)

2680.000000

Relative permittivity (real part)

52.132855

Relative permittivity (imaginary part)

12.468146

Conductivity (S/m)

2.130256

Variation (%)

0.240000

Crest Factor

1.0

Probe Conversion factor

4.52

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(hotspot 10mm)
LTE band 41(1 RB#0) VOLUME SAR

Maximum location: X=16.00, Y=48.00 SAR Peak: 0.78 W/kg

SAR 10g (W/Kg)

0.225073

SAR 1g (W/Kg)

0.444007

Page 105 of 177
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Z (mm) SAR (W/Kg)

0.00 0.7781

4.00 0.4730

9.00 0.2428

Report No.: TCT180706E005

14.00 0.1227

19.00 0.0640

Hot spot position

Page 106 of 177
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Report No.: TCT180706E005

WLAN 2.4 MEASUREMENT 1 Higher Band SAR (Channel 11): Frequency (MHz) Relative permittivity (real part) Relative permittivity (imaginary part) Conductivity (S/m) Variation (%) Crest Factor Probe Conversion factor

Date: 07/31/2018 2462.000000
54.587104 14.318310 2.031742 -0.810000
1.0 4.70

E-Field Probe: Area Scan ZoomScan

SSE5 (SN 07/15 EP248) dx=8mm dy=8mm, h= 5.00 mm
5x5x7,dx=8mm dy=8mm dz=5mm,Complete/ndx=8mm dy=8mm, h=
5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body front(10mm) IEEE 802.11b ISM VOLUME SAR

Maximum location: X=8.00, Y=-47.00 SAR Peak: 0.07 W/kg

SAR 10g (W/Kg)

0.022890

SAR 1g (W/Kg)

0.043243

Page 107 of 177
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Z (mm) SAR (W/Kg)

0.00 0.0695

4.00 0.0449

9.00 0.0255

Report No.: TCT180706E005

14.00 0.0148

19.00 0.0090

Hot spot position

Page 108 of 177
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Report No.: TCT180706E005

MEASUREMENT 2

Higher Band SAR (Channel 11):

Date: 07/31/2018

Frequency (MHz)

2462.000000

Relative permittivity (real part)

54.587104

Relative permittivity (imaginary part)

14.318310

Conductivity (S/m)

2.031742

Variation (%)

0.720000

Crest Factor

1.0

Probe Conversion factor

4.70

E-Field Probe:

SSE5 (SN 07/15 EP248)

Area Scan

dx=8mm dy=8mm, h= 5.00 mm

ZoomScan

5x5x7,dx=8mm dy=8mm

dz=5mm,Complete/ndx=8mm dy=8mm, h=

5.00 mm

Phantom Device Position
Band SURFACE SAR

Validation plane Body back(10mm) IEEE 802.11b ISM(hotspot) VOLUME SAR

Maximum location: X=6.00, Y=-54.00 SAR Peak: 0.14 W/kg

SAR 10g (W/Kg)

0.042632

SAR 1g (W/Kg)

0.083458

Page 109 of 177
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Z (mm) SAR (W/Kg)

0.00 0.1362

4.00 0.0868

9.00 0.0480

Report No.: TCT180706E005

14.00 0.0266

19.00 0.0152

Hot spot position

Page 110 of 177
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