SAR Report Appendix C-2

FCC ID: S9E-EM7455

RF Exposure Info

Download: PDF
FCCID_3671714

Calibration Laboratory of                                                                                  S      Schweizerischer Kalibrierdienst
Schmid & Partner                                                                                           C      Service suisse d‘étalonnage
  Engineering AG                                                                                           5      Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                                                                      Swiss Calibration Service


Accredited by the Swiss Accreditation Service (SAS)                                                        Accreditation No.: SCS 0108
The Swiss Accreditation Service is one of the signatories to the EA
Multilateral Agreement for the recognition of calibration certificates

Client      B.V.ADT (Auden)                                                                    Certificate No: EX3—3971_Mar17

CALIBRATION CERTIFICATE
Object                                EX3DV4 — SN:3971


Calibration procedure(s)              QA CAL—01.v9, QA CAL—12.v9, QA CAL—14.v4, QA CAL—23.v5,
                                      QA CAL—25.v6
                                      Calibration procedure for dosimetric E—field probes

Calibration date:                     March 24, 2017

This calibration certificate documents the traceability to national standards, which realize the physical units of measurements (S1).
The measurements and the uncertainties with confidence probability are given on the following pages and are part of the certificate.


All calibrations have been conducted in the closed laboratory facility: environment temperature (22 + 3)°C and humidity < 70%.


Calibration Equipment used (M&TE critical for calibration)



 Primary Standards                   ID                                Cal Date (Certificate No.)                    Scheduled Calibration
 Power meter NRP                    SN: 104778                         06—Apr—16 (No. 217—02288/02289)               Apr—17
 Power sensor NRP—291               SN: 103244                         06—Apr—16 (No. 217—02288)                     Apr—17
 Power sensor NRP—Z291              SN: 103245                         06—Apr—16 (No. 217—02289)                     Apr—17
 Reference 20 dB Attenuator         SN: $5277 (20x%)                   05—Apr—16 (No. 217—02293)                     Apr—17
 Reference Probe ES3DV2             SN: 3013                           31—Dec—16 (No. ES3—3013_Dec16)                Dec—17
 DAE4                               SN: 660                            7—Dec—16 (No. DAE4—660_Dec16)                 Dec—17

 Secondary Standards                 ID                                Check Date (in house)                         Scheduled Check
 Power meter E4419B                 SN: GB41293874                     06—Apr—16 (in house check Jun—16)             In house check: Jun—18
 Power sensor E4412A                SN: MY41498087                     06—Apr—16 (in house check Jun—16)             In house check: Jun—18
 Power sensor E4412A                 SN: 000110210                     06—Apr—16 (in house check Jun—16)             In house check: Jun—18
 RF generator HP 8648C               SN: US3642U01700                  04—Aug—99 (in house check Jun—16)             In house check: Jun—18
 Network Analyzer HP 8753E          SN: US37390585                      18—Oct—01 (in house check Oct—16)            In house check: Oct—17

                                          Name                                Function                                 Signature
 Calibrated by:                        Jeton Kastrati                         Laboratory Technician                                 W
                                                                                                            Dr’;
Approved by:                           Katfa Pokovic                          Technical Manager                    %



                                                                                                                       Issued: March 24, 2017
This calibration certificate shall not be reproduced except in full without written approval of the laboratory.




Certificate No: EX3—3971_Mar17                                       Page 1 of 11


                                                                   \\l.\upa,,?’
Calibration
      .
            Laboratory of                                      &
                                                             ® \/ ’/3                         Schweizerischer Kalibrierdienst
Schmid & Partner                                            ;%                            g   Service suisse d‘étalonnage
  Engineering AG                                            L zes                             Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                 f.,”Afi.\“\?                 S    Swiss Calibration Service



Accredited by the Swiss Accreditation Service (SAS)                                       Accreditation No.: SCS 0108
The Swiss Accreditation Service is one of the signatories to the EA
Multilateral Agreement for the recognition of calibration certificates

Glossary:
TSL                          tissue simulating liquid
NORMx,y,z                    sensitivity in free space
ConvF                        sensitivity in TSL / NORMx,y,z
DCP                          diode compression point
CF                           crest factor (1/duty_cycle) of the RF signal
A, B, C, D                   modulation dependent linearization parameters
Polarization q                rotation around probe axis
Polarization 8               8 rotation around an axis that is in the plane normal to probe axis (at measurement center),
                             iie., 8 = 0 is normal to probe axis
Connector Angle              information used in DASY system to align probe sensor X to the robot coordinate system

Calibration is Performed According to the Following Standards:
    a)   IEEE Std 1528—2013, "IEEE Recommended Practice for Determining the Peak Spatial—Averaged Specific
         Absorption Rate (SAR) in the Human Head from Wireless Communications Devices: Measurement
         Techniques", June 2013
    b)   IEC 62209—1, "Procedure to measure the Specific Absorption Rate (SAR) for hand—held devices used in close
         proximity to the ear (frequency range of 300 MHz to 3 GHz)", February 2005
    c)   1EC 62209—2, "Procedure to determine the Specific Absorption Rate (SAR) for wiretess communication devices
         used in close proximity to the human body (frequency range of 30 MHz to 6 GHz)", March 2010
    d)   KDB 865664, "SAR Measurement Requirements for 100 MHz to 6 GHz"
Methods Applied and Interpretation of Parameters:
         NORMx,y,z: Assessed for E—field polarization 8 = 0 (f < 900 MHz in TEM—cell; f > 1800 MHz: R22 waveguide).
         NORMx,y,z are only intermediate values, i.e., the uncertainties of NORMx,y,z does not affect the E*—field
         uncertainty inside TSL (see below ConvF).
         NORM(F)x,y,.z = NORMx,y.z * frequency_response (see Frequency Response Chart). This linearization is
         implemented in DASY4 software versions later than 4.2. The uncertainty of the frequency response is included
         in the stated uncertainty of ConvF.
         DCPx,y,z: DCP are numerical linearization parameters assessed based on the data of power sweep with CW
         signal (no uncertainty required). DCP does not depend on frequency nor media.
         PAR: PAR is the Peak to Average Ratio that is not calibrated but determined based on the signal
         characteristics
         Ax.y,z; Bx,y.z; Cx,y.z; Dx,y,z; VRx,y,z: A, B, C, D are numerical linearization parameters assessed based on
         the data of power sweep for specific modulation signal. The parameters do not depend on frequency nor
         media. VR is the maximum calibration range expressed in RMS voltage across the diode.
         ConvF and Boundary Effect Parameters: Assessed in flat phantom using E—field (or Temperature Transfer
         Standard for f < 800 MHz) and inside waveguide using analytical field distributions based on power
         measurements for f > 800 MHz. The same setups are used for assessment of the parameters applied for
         boundary compensation (alpha, depth) of which typical uncertainty values are given. These parameters are
         used in DASY4 software to improve probe accuracy close to the boundary. The sensitivity in TSL corresponds
         to NORMx,y,z * ConvF whereby the uncertainty corresponds to that given for ConvF. A frequency dependent
         ConvrF is used in DASY version 4.4 and higher which allows extending the validity from + 50 MHz to + 100
         MHz.
         Spherical isotropy (3D deviation from isotropy): in a field of low gradients realized using a flat phantom
         exposed by a patch antenna.
         Sensor Offset: The sensor offset corresponds to the offset of virtual measurement center from the probe tip
         (on probe axis). No tolerance required.
         Connector Angle: The angle is assessed using the information gained by determining the NORMx (no
         uncertainty required).


Certificate No: EX3—3971_Mar17                                     Page 2 of 11


EX3DV4 — SN:3971                                                                March 24, 2017




                      Probe EX3DV4

                                          SN:3971

                                  Manufactured:            December 30, 2013
                                  Calibrated:              March 24, 2017




                                 Calibrated for DASY/EASY Systems
                                    (Note: non—compatible with DASY2 system!)




Certificate No: EX3—3971_Mar17                    Page 3 of 11


EX3DV4— SN:3971                                                                                                                 March 24, 2017



DASY/EASY — Parameters of Probe: EX3DV4 — SN:3971
Basic Calibration Parameters
                                                Sensor X                         Sensor Y                    Sensor Z             Unc (k=2)
 Norm (uV/(V/m)")*                                 0.40                            0.50                        0.48                +101 %
 DCP (mV)’d                                        101.4                           99.2                        100.2


Modulation Calibration Parameters
 UID           Communication System Name                                    A             B          C          D          VR         Unc"®
                                                                           dB        dByuV                     dB          mV         (k=2)
 0             CW                                                 xX       0.0            0.0       1.0       0.00       156.0       +3.0 %
                                                                  Y        0.0            0.0       1.0                  141.4
                                                                  Z        0.0            0.0       1.0                  141.6


 The reported uncertainty of measurement is stated as the standard uncertainty of measurement
 multiplied by the coverage factor k=2, which for a normal distribution corresponds to a coverage
 probability of approximately 95%.


* The uncertainties of Norm X,Y.Z do not affect the E"—field uncertainty inside TSL (see Pages 5 and 6).
® Numerical linearization parameter: uncertainty not required.
© Uncertainty is determined using the max. deviation from linear response applying rectangular distribution and is expressed for the square of the
field value.




Certificate No: EX3—3971_Mar17                                     Page 4 of 11


EX3DV4— SN:3971                                                                                                                March 24, 2017




DASY/EASY — Parameters of Probe: EX3DV4 — SN:3971


Calibration Parameter Determined in Head Tissue Simulating Media
                        Relative         Conductivity                                                                DeptF             Unc
     f (MHz)°        _|__Permittivity"       (S/im)"         ConvFX        ConvF Y        ConvFZ        Aipha®         _(mm)          (k=2)
          6               55.5                0.75             21.45         21.45          21.45         0.00         1.00         + 13.3 %

         13               55.5                0.75             18.18         18.18          18.18         0.00         1.00         + 13.3 %

        750               41.9                0.89             10.91         10.91          10.91         0.46         0.95         +12.0 %
        835               41.5                0.90             10.67         10.67          10.67         0.40         0.95         +12.0 %
        900               41.5                0.97             10.51         10.51          10.51         0.46         0.85         +12.0 %
        1450              40.5                1.20             8.99           8.99          8.99          0.30         0.90         +12.0 %
        1640              40.2                1.31             8.94           8.94          8.94          0.36         0.80         +12.0 %
        1750              40.1                1.37             8.92           8.92          8.92          0.34         0.81         +12.0 %
        1900              40.0                1.40             8.59           8.59          8.59          0.33         0.84         + 12.0 %

       2000               40.0                1.40             8.54           8.54           8.54         0.33         0.84         +12.0 %

       2300               39.5                1.67             8.12           8.12           8.12         0.29         0.84         + 12.0 %

       2450               39.2                1.80             7.77           7.77           7.77         0.35         0.80         +12.0 %
       2600               39.0                1.96             7.59           7.59           7.59         0.39         0.80         +12.0 %

       5250               35.9                4.71             5.34           5.34           5.34         0.35         1.80         +131 %
       5500               35.6                4.96             5.14           5.14           5.14         0.40          1.80        +13.1 %
       5600               35.5                5.07             4.96           4.96           4.96         0.40          1.80        +131 %
       5800               35.3                5.27             4.98           4.98           4.98         0.40          1.80        +13.1 %


© Frequency validity above 300 MHz of + 100 MHz only applies for DASY v4.4 and higher (see Page 2), else it is restricted to + 50 MHz. The
uncertainty is the RSS of the ConvF uncertainty at calibration frequency and the uncertainty for the indicated frequency band. Frequency validity
below 300 MHz is + 10, 25, 40, 50 and 70 MHz for ConvF assessments at 30, 64, 128, 150 and 220 MHz respectively, Above 5 GHz frequency
validity can be extended to + 110 MHz.
" At frequencies below 3 GHz, the validity of tissue parameters (s and &) can be relaxed to + 10% if liquid compensation formula is applied to
measured SAR values. At frequencies above 3 GHz, the validity of tissue parameters (e and 0) is restricted to + 5%. The uncertainty is the RSS of
the ConvF uncertainty for indicated target tissue parameters.
® Alpha/Depth are determined during calibration. SPEAG warrants that the remaining deviation due to the boundary effect after compensation is
always less than + 1% for frequencies below 3 GHz and below + 2% for frequencies between 3—6 GHz at any distance larger than half the probe tip
diameter from the boundary.




Certificate No: EX3—3971_Mar17                                     Page 5 of 11


EX3DV4— SN:3971                                                                                                                March 24, 2017




DASY/EASY — Parameters of Probe: EX3DV4 — SN:3971


Calibration Parameter Determined in Body Tissue Simulating Media
               Relative  Conductivity                                                                                 Depth ©           Unc
     f (MHz)°        Permittivity"           (S/m)"          ConvF X        ConvFY        ConvFZ         Alpha®        _(mm)           (k=2)

        750               55.5                0.96             10.61         10.61          10.61          0.49         0.80        + 12.0 %

        835               55.2                0.97             10.52          10.52         10.52          0.44         0.80        +12.0 %
        900               55.0                1.05             10.48          10.48         10.48          0.47         0.82        +12.0 %
        1450              54.0                1.30              8.80          8.80           8.80          0.33         0.80        +12.0 %
        1640              53.7                1.42              8.73          8.73           8.73          0.40         0.80        +12.0 %
        1750              53.4                1.49              8.51          8.51           8.51          0.34         0.89        +12.0 %
        1900              53.3                1.52              8.26          8.26           8.26          0.27         0.95        +12.0 %
       2000               53.3                1.52              8.43          8.43           8.43          0.33         0.88        +12.0 %
       2300               52.9                1.81              7.85          7.85           7.85          0.36         0.80        +12.0 %
       2450               52.7                 1.95             7.67          7.67           7.67          0.30         0.85        +12.0 %
       2600               52.5                216               7.32          7.32           7.32          0.21         0.99        +12.0 %
       5250               48.9                5.36              4.70          4.70           4.70          0.45         1.90         + 13.1 %

       5500               48.6                5.65              4.32          4.32           4.32          0.50         1.90        £#13.1 %
       5600               48.5                5.77              4.10          4.10           4.10          0.50         1.90         £13.1 %
       5800               48.2                6.00              4.22          4.22           4.22          0.50         1.90         +131 %


© Frequency validity above 300 MHz of + 100 MHz anly applies for DASY v4.4 and higher (see Page 2), else it is restricted to + 50 MHz. The
uncertainty is the RSS of the ConvF uncertainty at calibration frequency and the uncertainty for the indicated frequency band. Frequency validity
below 300 MHz is + 10, 25, 40, 50 and 70 MHz for ConvF assessments at 30, 64, 128, 150 and 220 MHz respectively. Above 5 GHz frequency
validity can be extended to + 110 MHz.
" At frequencies below 3 GHz, the validity of tissue parameters (r and a) can be relaxed to + 10% if liquid compensation formula is applied to
measured SAR values. At frequencies above 3 GHz, the validity of tissue parameters (s and 0) is restricted to + 5%. The uncertainty is the RSS of
the ConvF uncertainty for indicated target tissue parameters.
© Alpha/Depth are determined during calibration. SPEAG warrants that the remaining deviation due to the boundary effect after compensation is
always less than + 1% for frequencies below 3 GHz and below + 2% for frequencies between 3—6 GHz at any distance larger than half the probe tip
diameter from the boundary.




Certificate No: EX3—3971_Mar17                                     Page 6 of 11


EX3DV4— SN:3971                                                                                                                                                 March 24, 2017


                                      Frequency Response of E—Field
                                                 (TEM—Cell:ifi110 EXX, Waveguide: R22)




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                      0                    500              1000                    1500                  2000                   2500                     3000
                                                                                    f [MHz]
                                                     red                                                                 52
                                    Uncertainty of Frequency Response of E—field: £ 6.3% (k=2)




Certificate No: EX3—3971_Mar17                                             Page 7 of 11


EX3DV4— SN:3971                                                                                                                                                                                                                                                                        March 24, 2017




                                                                                Receiving Pattern (¢), 9 = 0°

                                 f=600 MHz,TEM                                                                                                                                                  f=1800 MHz,R22
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                             150                                                 100                                                30                        6                            50                                         100                                          150



                                                                       Uncertainty of Axial Isotropy Assessment: £ 0.5% (k=2)




Certificate No: EX3—3971_Mar17                                                                                                                    Page 8 of 11


EX3DV4— SN:3971                                                                                                                     March 24, 2017




                                                          Dynamic Range f(SARneaq)
                  Input Signal [uV]                                     (TEM cell , fevai= 1900 MHz)




                                                                                           #5
                                                                                          10°
                                                                                     SAR [mW/cm3]

                                                               not compensated                              compensated




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                                               102              102            104          100         101        102        103
                                                                                     SAR {[mW/cm3]

                                                               not compensated                          compensated


                                                         Uncertainty of Linearity Assessment: £ 0.6% (k=2)




Certificate No: EX3—3971_Mar17                                                       Page 9 of 11


EX3DV4— SN:3971                                                                                                                                                                                        March 24, 2017


                                                               Conversion Factor Assessment
                         f= 835 MHz,WGLS R9 (H_convF)                                                                                        f= 1900 MHz,WGLS R22 (H_convF)
         40

         35                                                                                                                           304
                   %,                                                                                                                   |
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               d             5           10               15      20           25            30            35          40               0     &           10         15        20    25          30           35             40
                                                                2 [mm}                                                                                                     z [mm}
                                      _8]                                                   _*®                                                        _®|                                      _®_
                                   analytical                                             measured                                                  analytical                               measured



                                                          Deviation from Isotropy in Liquid
                                                                                               Error (¢, 8), f = 900 MHz
                                              Deviation




                                                      —~1.0     —0.8          —0.6             —0.4             —0.2        0.0        0.2    0.4              0.6        08        1.0
                                                          Uncertainty of Spherical Isotropy Assessment: £ 2.6% (k=2)




Certificate No: EX3—3971_Mar17                                                                                    Page 10 of 11


EX3DV4— SN:3971                                              March 24, 2017




DASY/EASY — Parameters of Probe: EX3DV4 — SN:3971

Other Probe Parameters
 Sensor Arrangement                                            Triangular
 Connector Angle (°)                                                 73.4
 Mechanical Surface Detection Mode                               enabled
 Optical Surface Detection Mode                                  disabled
 Probe Overall Length                                            337 mm
 Probe Body Diameter                                               10 mm
Tip Length                                                          9 mm
 Tip Diameter                                                     2.5 mm
 Probe Tip to Sensor X Calibration Point                            1 mm
 Probe Tip to Sensor Y Calibration Point                            1 mm
 Probe Tip to Sensor Z Calibration Point                            1 mm
 Recommended Measurement Distance from Surface                    1.4 mm




Certificate No: EX3—3971_Mar17               Page 11 of 11


                                          in Collaboration with                      $ ~ . A 4 B {AoJ
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                                          CADBRATION LABORAIORY                      To—sy \esff cmmnou
             Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China        /,,,‘‘\.‘\
                                                                                            ile C                   CNAS LO570
             Tel: +86—10—62304633—2218           Fax: +86—10—62304633—2209
             E—mail: cttl@chinattl.com           Hittp:/www.chinattl.on
      Client             Auden                                                Certificate No: Z16—97206

CALIBRATION CERTIFICATE

Object                                      EX3DV4 — SN:7375

Calibration Procedure(s)                    FD—211—004—01

                                            Calibration Procedures for Dosimetric E—field Probes

Calibration date:                           December 08, 2016


This calibration Certificate documents the traceability to national standards, which realize the physical units of
measurements(S1). The measurements and the uncertainties with confidence probability are given on the following
pages and are part of the certificate.


All calibrations have been conducted in the closed laboratory facility: environment temperature(22*3)°c and
humidity<70%.


Calibration Equipment used (M&TE critical for calibration)
Primary Standards                         ID #          Cal Date(Calibrated by, Certificate No.)      Scheduled Calibration
 Power Meter        NRP2           101919                 27—Jun—16 (CTTL, No.J16X04777)               Jun—17
 Power sensor       NRP—Z91        101547                 27—Jun—16 (CTTL, No.J16X04777)               Jun—17
 Power sensor       NRP—Z91        101548                 27—Jun—16 (CTTL, No.J16X04777)               Jun—17
 Reference10dBAttenuator           18N50W—10dB             13—Mar—16(CTTL,No.J16X01547)                Mar—18
 Reference20dBAttenuator           18N50W—204B            13—Mar—16(CTTL, No.J16X01548)                Mar—18
 Reference Probe EX3DV4            SN 7307                19—Feb—16(SPEAG,No.EX3—7307_Feb16)           Feb—17
 DAE4                              SN 1331                21—Jan—16(SPEAG, No.DAE4—1331_Jan16)         Jan —17

 Secondary Standards               ID #                   Cal Date(Calibrated by, Certificate No.)   Scheduled Calibration
 SignalGeneratorMG3700A            6201052605             27—Jun—16 (CTTL, No.J16X04776)               Jun—17
 Network Analyzer E5071C           MY46110673             26—Jan—16 (CTTL, No.J16X00894)               Jan —17
                                Name                              Function                              Signature
Calibrated by:                   Yu Zongying                    SAR Test Engineer                     / /’Qw%

Reviewed by:                     Qi Dianyuan                    SAR Project Leader                   %

Approved by:                     Lu Bingsong                    Deputy Director of the laboratory     E/&, Mdifi;
                                                                                                                I
                                                                                        Issued: December 09, 2016
This calibration certificate shall not be reproduced except in full without written approval of the laboratory.



    Certificate No: Z16—97206                                  Page 1 of 11


            fi ;cmlabomaonewm a

                                       CALIBRATION LABORATORY
           Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
           Tel: +86—10—62304633—2218      Fax: +86—10—62304633—2209
           E—mail: cttl@chinattl.com       Hitp://www.chinattl.en


Glossary:
TSL                      tissue simulating liquid
NORMx,y,z                sensitivity in free space
ConvF                    sensitivity in TSL / NORMx,y,z
DCP                      diode compression point
CF                       crest factor (1/duty_cycle) of the RF signal
A,B,C,D                  modulation dependentlinearization parameters
Polarization ®           ® rotation around probe axis
Polarization 0           0 rotation around an axis that is in the plane normal to probe axis (at measurement center), i
                         0=0 is normal to probe axis
Connector Angle          information used in DASY system to align probe sensor X to the robot coordinate system
Calibration is Performed According to the Following Standards:
a) IEEE Std 1528—2013, "IEEE Recommended Practice for Determining the Peak Spatial—Averaged
   Specific Absorption Rate (SAR) in the Human Head from Wireless Communications Devices:
   Measurement Techniques", June 2013
b) IEC 62209—1, "Procedure to measure the Specific Absorption Rate (SAR) for hand—held devices used
   in close proximity to the ear (frequency range of 300MHz to 3GHz)", February 2005
c) IEC 62209—2, "Procedure to determine the Specific Absorption Rate (SAR) for wireless communication
   devices used in close proximity to the human body (frequency range of 30 MHz to 6 GHz)", March
    2010
d) KDB 865664, "SAR Measurement Requirements for 100 MHz to 6 GHz"
Methods Applied and Interpretation of Parameters:
e    NORMx,y,z: Assessed for E—field polarization 0=0 (fs900MHz in TEM—cell; f> 1800MHz: waveguide).
     NORMx,y,z are only intermediate values, i.e., the uncertainties of NORMx,y,z does not effect the
     E" —field uncertainty inside TSL (see below ConvF).
e    NORM(A)x,y,z = NORMx,y,z* frequency_response (see Frequency Response Chart). This
     linearization is implemented in DASY4 software versions later than 4.2. The uncertainty of the
     frequency response is included in the stated uncertainty of ConvF.
e    DCPx,y,z: DCP are numerical linearization parameters assessed based on the data of power sweep
     (no uncertainty required). DCP does not depend on frequency nor media.
e    PAR: PAR is the Peak to Average Ratio that is not calibrated but determined based on the signal
     characteristics.
e    Ax,y,z; Bx,y.z; Cx,y,z;VRxX,y,z:A,B,C are numerical linearization parameters assessed based on the
     data of power sweep for specific modulation signal. The parameters do not depend on frequency nor
     media. VR is the maximum calibration range expressed in RMS voltage across the diode.
e    ConvF and Boundary Effect Parameters: Assessed in flat phantom using E—field (or Temperature
     Transfer Standard for f<800MHz) and inside waveguide using analytical field distributions based on
     power measurements for f >800MHz. The same setups are used for assessment of the parameters
     applied for boundary compensation (alpha, depth) of which typical uncertainty valued are given.
     These parameters are used in DASY4 software to improve probe accuracy close to the boundary.
     The sensitivity in TSL corresponds to NORMx,y,z* ConvF whereby the uncertainty corresponds to
     that given for ConvF. A frequency dependent ConvF is used in DASY version 4.4 and higher which
     allows extending the validity from+50MHz to+100MHz.
e    Spherical isotropy (3D deviation from isotropy): in a field of low gradients realized using a flat
     phantom exposed by a patch antenna.
e    Sensor Offset: The sensor offset corresponds to the offset of virtual measurement center from the
     probe tip (on probe axis). No tolerance required.
e    Connector Angle: The angle is assessed using the information gained by determining the NORMx
     (no uncertainty required).



Certificate No: Z16—97206                                Page 2 of 11


                                    In Collaboration with

         w TTL a
                                    CALIBRATION LABORATORY
       Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
       Tel: +86—10—62304633—2218         Fax: +86—10—62304633—2209
        E—mail; cttl@chinattl.com        Hitp://www.chinattl.on




                       Probe EX3DV4


                                              SN: 7375


                                    Calibrated: December 08, 2016

                                Calibrated for DASY/EASY Systems
                                        (Note: non—compatible with DASY2 system!)




Certificate No: Z16—97206                               Page 3 of11


                                    In Collaboration with

                TTL CALIBRATION
                    a           LABORATORY
        Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
        Tel: +86—10—62304633—2218      Fax: +86—10—62304633—2209
        E—mail: cttl@chinattl.com        Hitp://www.chinattl.on


     DASY/EASY — Parameters of Probe: EX3DV4 — SN: 7375

Basic Calibration Parameters
                                     Sensor X                Sensor Y             Sensor Z    Unc (k=2)
 Norm(uV/(V/im)) A                   0.52                    0.42                 0.46        £10.8%
 DCP(mV)®                            99.7                    98.3                 100.7


Modulation Calibration Parameters
 UID         Communication                         A              B         6         D      VR      Unc®
             System Name                           dB             dB/uV               dB     mV      (k=2)
 0           Cw                           X        0.0            0.0       1.0       0.00   195.6   £2.4%
                                          Y        0.0            0.0       1.0              177.1
                                          2        0.0            0.0       1.0              187.8



     The reported uncertainty of measurement is stated as the standard uncertainty of
     Measurement multiplied by the coverage factor k=2, which for a normal distribution
     Corresponds to a coverage probability of approximately 95%.


* The uncertainties of Norm X, Y, Z do not affect the E*—field uncertainty inside TSL (see Page 5 and Page 6).
® Numerical linearization parameter: uncertainty not required.
& Uncertainly is determined using the max. deviation from linear response applying rectangular distribution
and is expressed for the square of the field value.




Certificate No: Z16—97206                                Page 4 of 11


             {”’2 l;Collaboranonewim a

                                        CALIBRATION LABORATORY
            Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
            Tel: +86—10—62304633—2218        Fax: +86—10—62304633—2209
            E—mail: cttl@chinattl.com        Hitp://www.chinattl.en


       DASY/EASY — Parameters of Probe: EX3DV4 — SN: 7375

Calibration Parameter Determined in Head Tissue Simulating Media
                          —                      10.                                                        6

 f [MHz]®      Pefri|i:ttil\\:;y ¢   Con(:;;:r:\)n:y    ConvF X       ConvF Y   ConvF Z   Alpha®   D(:’:)       :(’:;t)

    750              41.9                0.89             9.90           9.90    9.90      0.40     0.75        +12%
    835              41.5                0.90             9.73           9.73    9.73      0.15     1.41        +12%
    900              41.5                0.97             9.78           9.78    9.78      9.16     1.43        £12%
   1750              40.1                 1.37            8.31           8.31    8.31      0.30     0.95        +12%
   1900              40.0                 1.40            7.92           7.92    7.92      0.25     1.04        +12%
   2000              40.0                 1.40            7.99           7.99    7.99      0.26     1.04        £12%
   2100              39.8                 1.49            8.30           8.30    8.30      0.32     0.92        £12%
   2300              39.5                 1.67            7.57           1.97    1.57      0.32     1.02        +12%
   2450              39.2                 1.80            7.27           7.27    7.27      0.38     1.01        +12%
   2600              39.0                 1.96            7.25           7.25    7.26      0.49     0.81        +12%
   3500              37.9                2.91             7.01           7.01    7.01      0.38     1122        £15%
   5200              36.0                4.66             5.58           5.58    5.58      0.36     1.55        +13%
   5300              35.9                4.76             5.31           5.31    5.31      0.36     1.55        +13%
   5500              35.6                4.96             5.09           5.09    5.09      0.36     1.55        £13%
   5600              35.5                5.07             4.79           4.79    4.179     0.36     1.68        +13%
   5800              35.3                5.27             4.78           4.78    4.78      0.40     1.65        +13%




& Frequency validity above 300 MHz of +100MHz only applies for DASY v4.4 and higher (Page 2), else it is restricted to
#50MHz. The uncertainty is the RSS of ConvF uncertainty at calibration frequency and the uncertainty for the indicated
frequency band. Frequency validity below 300 MHz is + 10, 25, 40, 50 and 70 MHz for ConvF assessments at 30, 64, 128,
150 and 220 MHz respectively. Above 5 GHz frequency validity can be extended to + 110 MHz.
"At frequency below 3 GHz, the validity of tissue parameters (¢ and 0) can be relaxed to £10% if liquid compensation
formula is applied to measured SAR values. At frequencies above 3 GHz, the validity of tissue parameters (€ and 0) is
restricted to £5%. The uncertainty is the RSS of the ConvF uncertainty for indicated target tissue parameters.
©Alpha/Depth are determined during calibration. SPEAG warrants that the remaining deviation due to the boundary
effect after compensation is always less than + 1% for frequencies below 3 GHz and below + 2% for the frequencies
between 3—6 GHz at any distance larger than half the probe tip diameter from the boundary.




   Certificate No: Z16—97206                              Page 5 of11


                                      In Collaboration with

                   TTL                §      p_      e        a@    q
                                      CALIBRATION LABORATORY
           Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
           Tel: +86—10—62304633—2218      Fax: +86—10—62304633—2209
           E—mail: cttl@chinattl.com      Hittp:/www.chinattl.en



      DASY/EASY — Parameters of Probe: EX3DV4 — SN: 7375

Calibration Parameter Determined in Body Tissue Simulating Media
                        —                   .                                           =
 f [MHz]® Pe'::lliat‘:il\\l,i(:yF c°"‘:;7:1“)":y ConvF X ConvF Y ConvF Z Alpha® D(::’:)                      (L::zt)
    750           555                  0.96        9.94    994     994    030     0.85                       +12%
    835           552                  0.97        9.94    994     994    015     150                        +12%
    900           55.0                 1.05        9.89    a89     ass    or      122                        +12%
   1750           534                  1.49        8.22    822     822    o23     112                        +12%
   1900           53.3                 1.52        7.62    T62     762    on8     124                        +12%
   2000           53.3                 1.52        7.90    790     790    o16     1.62                       £12%
   2100           53.2                 1.62        817     817     817    017     175                        +12%
   2300           52.9                 1.81        7.43    7as3    743    045     0.95                       +12%
   2450           52.7                 1.95        7.33    733     733    033     122                        +12%
   2600           525                  216         716     716     716    048     092                        £12%
   3500           51.3                 3.31        6.52    652     652    044     133                        +13%
   5200          49.0                  5.30        482     as2    482     045     1.50                       £13%
   5300          48.9                  5.42        4.57    as?    457     045     1.50                       £13%
   5500          48.6                  5.65        aro     420    420     048     1.60                       +13%
   5600          485                   5.77        3.99    399     399    050     1.65                       +13%
   5800          482                   6.00        aos     408    408     055     195                        £13%

& Frequency validity above 300 MHz of £100MHz only applies for DASY v4.4 and higher (Page 2), else it is restricted to
*50MHz. The uncertainty is the RSS of ConvF uncertainty at calibration frequency and the uncertainty for the indicated
frequency band. Frequency validity below 300 MHz is + 10, 25, 40, 50 and 70 MHz for ConvF assessments at 30, 64, 128,
150 and 220 MHz respectively. Above 5 GHz frequency validity can be extended to + 110 MHz.
"At frequency below 3 GHz, the validity of tissue parameters (e and 0) can be relaxed to £10% if liquid compensation
formula is applied to measured SAR values. At frequencies above 3 GHz, the validity of tissue parameters (€ and 0) is
restricted to £5%. The uncertainty is the RSS of the ConvF uncertainty for indicated target tissue parameters.
©Alpha/Depth are determined during calibration. SPEAG warrants that the remaining deviation due to the boundary
effect after compensation is always less than + 1% for frequencies below 3 GHz and below + 2% for the frequencies
between 3—6 GHz at any distance larger than half the probe tip diameter from the boundary.




   Certificate No: Z16—97206                              Page 6 of 11


                           fi ;Coflaborationewi'm a

                                                           CALIBRATION LABORATORY
          Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
          Tel: +86—10—62304633—2218                              Fax: +86—10—62304633—2209
          E—mail: cttl@chinattl.com                              Hitp://www.chinattl.en



                                                     Frequency Response of E—Field
                                                     (TEM—Cell: ifi110 EXX, Waveguide: R22)

                                         1.5 7
                                         1.44‘...
       Frequency response (normalized)




                                         1.3 |.—
                                         121.
                                         140.
                                         10|
                                         o. |...
                                         §B8—L——




                                         0.5           oc                  T              T      T          T      T
                                               0           500           1000           1500   2000       2500   3000
                                                                 E*—3                 fIMHz           _
                                                                 TEM                     MH)          .
                                                   Uncertainty of Frequency Response of E—field: £7.5% (k=2)




Certificate No: Z16—97206                                                     Page 7 of 11


                                          In Collaboration with

                      TTL a
                          CALIBRATION LABORATORY
              Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
              Tel: +86—10—62304633—2218          Fax: +86—10—62304633—2209
              E—mail: cttl@chinattl.com          Hitp:/www.chinattl.en



                                     Receiving Pattern (®), 0=0°

                    f=600 MHz, TEM                                                       f=1800 MHz, R22




                                                                                   1a0   [~—




             0.5



                                           os,yeacactmintfrode. .
  ErrofdB]




             0.0    *Tedcbe.pleg. 4#                                                 Cb porg oge—a+#


             —0.5



             —1.0          I               T               um       *          T               I       T    T
                         —150             —100            —50J          so     100                         150
                                                          Rollf*]
                                  [{—*»—1100MHz   «__600MHz       + 1800MHz +— 2500MHz
                                  Uncertainty of Axial Isotropy Assessment: £0.9% (k=2)




Certificate No: Z16—97206                                       Page 8 of 11


                                            In Collaboration with

                   TTL a_
                                            CALIBRATION LABORATORY
        Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
        Tel: +86—10—62304633—2218                   Fax: +86—10—62304633—2209
        E—mail; cttl@chinattl.com                   Hitp://www.chinattl.en



                                           Dynamic Range f(SARneaq)
                                                       (TEM cell, f= 900 MHz)
                    10°   4                                                      dousks        io          £»   e at444+




                    10° 4



           s 1964
              C
              £
           9                   —
           1                   —
            4&      10‘ .s 4
           £


                    10° 4



                          10°                       10                     10°               10‘                     10°          10°
                                                                           SAR[mW/cm*]
                                                           [—MO)not compensated           —@— compensated




                  1 4


          a
          >
          O
                                                                                      ?
                                                                                      %
          o                                                                           h
          u                                                                         .
                  1 4                                                                 ..


                                                                                           m
                  2+               +        ++             f—fHHPbH———i—i—t—ppbpq.                  it ;           +H——i———iH—+rmh
                   10°                        10°                   1 o°       , 10                                10°           10°
                                                                       SAR[mW/cm
                                       |    —s— not compensated                                     —®—     compensated __|
                                           Uncertainty of Linearity Assessment: £0.9% (k=2)
Certificate No: Z16—97206                                        Page 9 of 11


          4Wl                                        in Collaboration with
          a=‘/"["/ §a
                    e _a
                                                     CALIBRATION LABORATORY
        Add: No.51 Xueyuan Road, Haidian District, Beijing, 100191, China
        Tel: +86—10—62304633—2218                           Fax: +86—10—62304633—2209
        E—mail; cttl@chinattl.com                           Hitp:/www.chinattl.en



                              Conversion Factor Assessment
      f=900 MHz, WGLS R9(H_convF)                                                                   f=1750 MHz, WGLS R22(H_convF)
                W qo p                                 og                                                 B               4o                                            ———;
                    t
                350 |
                                         |                                                                                                                                       |
                       f                                                                                  25.00 4                                                                j
                a0                                                                                                    |                                                          |
                       f                                                                                  z00 |—&
            & 2s                                                                                     a                    *
            o                                                                                        g‘                   .h
            S 20 |                                                                                   3 is00                   |—e—.                                          —
            a use |                                                                                  &                          ‘i_
                       ;                                                                                  10.00                                                              —
                1.00
                                     ‘                                                                    5.00
                050                  :

                coo C                ‘                                                                    a oo                    ‘
                       0            20                40            so           80       100                     9              10    2o     %            40   800     s0   To
                                                           2{mm]                                                                                  zimim]
                                    |__—®—measured                 ——analytical                                                       —*+—measured     __—— analytica




                           Deviation from Isotropy in Liquid

                                             08

                                             0.6
                                             04

                                             0.2
                           7 Axis




                                              0.0
                                             —0.2
                                              —0 4
                                              —06
                                              —0.8
                                              .18



                                                            * 19 200
                                                                4«\'/;9          250




                                                           10   .Gao      .Gso    040   .020    0    D20      040             060     080   10
                                             Uncertainty of Spherical Isotropy Assessment: £2.8% (K=2)




Certificate No: Z16—97206                                                        Page 10 of 11


         fi ;Collaborationewith 3

                                    CALIBRATION LABORATORY

        Add: No.31 Xueyuan Road, Haidian District, Beijing, 100191, China
        Tel: +86—10—62304633—2218       Fax: +86—10—62304633—2209
        E—mail: cttl@chinattl.com       Hitp:/www.chinattl.en



   DASY/EASY — Parameters of Probe: EX3DV4 — SN: 7375


     Other Probe Parameters
    Sensor Arrangement                                                      Triangular

    Connector Angle (°)                                                           16.3

    Mechanical Surface Detection Mode                                         enabled

    Optical Surface Detection Mode                                             disable

    Probe Overall Length                                                       337mm

    Probe Body Diameter                                                         10mm

    Tip Length                                                                   9mm

    Tip Diameter                                                               2.5mm

    Probe Tip to Sensor X Calibration Point                                      1mm

    Probe Tip to Sensor Y Calibration Point                                      1imm

    Probe Tip to Sensor Z Calibration Point                                      1imm

    Recommended Measurement Distance from Surface                              1.4mm




Certificate No: Z16—97206                              Page 11 of 11



Document Created: 2017-11-30 16:25:04
Document Modified: 2017-11-30 16:25:04

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