Annex E1 DASY Calibration Certificate

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         ORLAB,
         '                                                                                    REPORT No. : $Z18030098S01

   Annex E DASY Calibration Certificate




NOTE: This document is issued by MORLAB, the test report shall not be reproduced except in full without prior written permission of the
company. The test results apply only to the particular sample(s) tested and to the specific tests carried out which is available on request for
validation and information confirmed at our website.

                         SHENZHEN MORLAB COMMUNICATIONS TECHNOLOGY Co., Ltd.                  Tel: 86—755—36898555   Fax: 86—766—36008525
  M o RLAB               FL1—3, Building A, FeiYang Science Park, No.8 LongChang Road,
                         Block67, BacAn Distrct, ShenZhen , GuangDong Province, P. R. China   Hiteitwvwmortab.on     E—mail: service@morlab.on


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                 mm©                      |n Collsboration with                    s&‘\\fi\_j//h”z   A :PE“.E‘

                 eT—TL s_p_e_2 isskCNASs:_                                         ZIGaNy v CALIBRATION
             Add: No.51 Xueyuan Road. Haidian District, Beijing, 100191, China       AnluatitsS®                        CNAS LO570
             Tel: +86—10—62304633—2218     Fax: +86—10—62304633—2209
             E—mail: cttl@chinattl.com          Http://www.chinattl.cn
      Client _            Morlab                                             Certificate No: Z17—97168

CALIBRATION CERTIFICATE_
Object                                     EX3DV4 — SN:3823

Calibration Procedure(s)                   FF—211—004—01
                                           Calibration Procedures for Dosimetric E—field Probes

Calibration date:                          September 30, 2017


This calibration Certificate documents the traceability to national standards, which realize the physical units of
measurements(Sl). 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—17 (CTTL, No.J17X05857)                   Jun—18
 Power sensor       NRP—Z91       101547                 27—Jun—17 (CTTL, No.J17X05857)                   Jun—18
 Power sensor       NRP—Z91       101548                 27—Jun—17 (CTTL, No.J17X05857)                   Jun—18
 Reference10dBAttenuator          18N5OW—10d4B           13—Mar—16(CTTL,No.J16X01547)                     Mar—18
 Reference20dBAttenuator          18N5OW—20dB            13—Mar—16(CTTL, No.J16X01548)                    Mar—18
 Reference Probe EX3DV4           SN 7433                26—Sep—16(SPEAG,No.EX3—7433_Sep16)               Sep—17
 DAE4                             SN 549                 13—Dec—16(SPEAG, No.DAE4—549_Dec16)              Dec—17


 Secondary Standards              ID #                   Cal Date(Calibrated by, Certificate No.)        Scheduled Calibration
 SignalGeneratorMG3700A           6201052605             27—Jun—17 (CTTL, No.J17X05858)                   Jun—18
 Network Analyzer E5071C          MY46110673             13—Jan—17 (CTTL, No.J17X00285)                   Jan —18
                                Name                           Function                                    Signature
Calibrated by:                   Yu Zongying                   SAR Test Engineer                          %

Reviewed by:                     Lin Hao                      SAR Test Engineer                          Ffi]i%

Approved by:                     Qi Dianyuan                  SAR Project Leader                   %

                                                                                      Issued: October 02, 2017
This calibration certificate shall not be reproduced except in full without written approval of the laboratory.



     Certificate No: Z17—97168                                Page 1 of 11


             ==A®                      In Collaboration with
            =‘/"[‘] s p e a q
            imayys"" 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        Http://www.chinattl.cn


Glossary:
TSL                      tissue simulating liquid
NORMx,y,z                sensitivity in free space
ConvrF                   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 ®           © 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, "Measurement procedure for the assessment of Specific Absorption Rate (SAR) from
    hand—held and body—mounted devices used next to the ear (frequency range of 300 MHz to 6 GHz)",
    July 2016
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(PA)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,yz; Bx,y,z; Cx,y,.z;VRx,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 Convr. 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: Z17—97168                                 Page 2 of 11


           =A®                      In Collaboration with

         a=®‘/""/‘/, s p e a g
           uy‘                      CALIBERATION 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        Http://www.chinattl.cn




                       Probe EX3DV4


                                              SN: 3823


                                    Calibrated: September 30, 2017

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




Certificate No: Z17—97168                              Page 3 of 11


          é!\‘@ in Collaboration with
          a=®‘/"/‘/, s p e a g
          ~aayye""   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       Http://www.chinattl.cn


     DASY/EASY — Parameters of Probe: EX3DV4 — SN: 3823

Basic Calibration Parameters
                                    Sensor X               Sensor Y               Sensor Z         Unc (k=2)
 Norm(uV/(V/m)")A                   0.38                   0.38                   0.47             £10.0%
 DCP(mV)®                           101.9                  105.9                  102.1


Modulation Calibration Parameters
  UID        Communication                        A              B          C             D      VR         Unc ®
             System Name                          dB             dBvuV                    dB     mV         (k=2)
 0           CwW                         X        0.0            0.0        1.0           0.00   152.4      £2.5%
                                         Y        0.0            0.0        1.0                  154.0
                                         Z        0.0            0.0        1.0                  179.7



     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.
G 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: Z17—97168                             Page 4 of 11


             mm® in Collsboration with
             =_‘/"/‘]/,
             y‘
                        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       Http://www.chinattl.cn


      DASY/EASY — Parameters of Probe: EX3DV4 — SN: 3823


Calibration Parameter Determined in Head Tissue Simulating Media
                        .                      To                                                           G

 f [MHz]® Pelf:'lli:ttil\‘/’i:yF C°"‘:;7::‘)"Fty ConvF X ConvF Y ConvF Z Alpha® D(Z:‘h)                         :(':;t)
    900            41.5                 0.97             9.27            9.27   927       012        144        +121%
   1750            40.1                 1.37             7.95            7.95   7.95      018        140        +121%
   2450            39.2                 1.80             7.33            7.33   733       0.33       0.99       +121%
   5200            36.0                 4.66             5.42            5.42   5.42      0.40       120        +13.3%
   5300            35.9                 4.76             5.18            5.18   518       0.40       125        +13.3%
   5500            35.6                 4.96             4.69            4.69   4.69      0.40       1.30       +13.3%
   5600            35.5                 5.07             4.49            4.49   449       0.40       130        +13.3%
   5800            35.3                 5.27             4.57            4.57   4.57      040        135        +13.3%

& 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 ConvrF 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 (g and 0) is
restricted to +£5%. The uncertainty is the RSS of the ConvF uncertainty for indicated target tissue parameters.
GAIpha/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: Z17—97168                              Page 5 of 11


             * in Colleboration with
             =/"[‘]J,
             y
                      s_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.cn



       DASY/EASY — Parameters of Probe: EX3DV4 — SN: 3823

Calibration Parameter Determined in Body Tissue Simulating Media
                        C                      ies                                                         G

 fmHz]©       P;;':t':i"‘l';y,:   C°"°:;7:1")"Fty      ConvF X ConvF Y ConvF Z Alpha® [::::;                   :(':;t)
    900            55.0                 1.05             9.20           9.20   9.20       019       122        +121%
   1750            53.4                 1.49             7.71           7.71   771        018       122        £121%
   2450            52.7                 1.95             717            717    717        036       0.99       £121%
   5200            49.0                 5.30             4.81           4.81   481        045       150        +13.3%
   5300            48.9                 5.42             4.46           4.46   446        0.50      140        +13.3%
   5500            48.6                 5.65             4.15           4.15   415        0.50      155        £13.3%
   5600            48.5                 5.77             397            3.97   3.97       0.50      1.55       +13.3%
   5800            48.2                 6.00             3.99           3.99   3.99       0.55      1.55       +13.3%

© 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 (s£ 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 (s and 0) is
restricted to +5%. The uncertainty is the RSS of the ConvF uncertainty for indicated target tissue parameters.
GAIpha/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: Z17—97168                              Page 6 of 11


                               ;fi                        In Collaboration with
                          =_‘/"/‘/,
                          ~aayye»""
                                    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                              Http://www.chinattl.cn



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




                                          0.5        '    T               T                       T            I
                                                0        500           1000             1500     2000         2500   3000
                                                               —#—                     f [MHz]          —o—
                                                               TEM                                      R22

                                                Uncertainty of Frequency Response of E—field: £7.4% (k=2)




Certificate No: Z17—97168                                                     Page 7 of 11


                     m© \n Collaboration with
                     =_‘/"[‘J, a
                     ~aayys" 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       Http://www.chinattl.cn



                                        Receiving Pattern (®), 0=0°

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



                                                                                           »ffset] /y D
                                                                                           [LXNLLK
                                                                                       .L
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                                                                                               \\“,/gg%fiL‘C
  Error[dB]




              ~1.0    +      t      t       t       t       t       t          t       t     t     t     T     t    T


                                                                        Rollf*]
                                    [—=<7100MHz          __—+—600MHz               __—+— 1800MHz   __—+— 2500MHz]
                                     Uncertainty of Axial Isotropy Assessment: £1.2% (k=2)




Certificate No: Z17—97168                                       Page 8 of 11


                                    ®
                                            In Collaboration with

                     TTL a_
            mt‘          CALIBRATION LABORATORY
       Add No.51 Xueyuan Road, Ha i ian D istric t, Beijing, 100191, Ch ma
       Tel +86—10—62304633—2218      Fax +86—10—62304633—2209
       E —mali : cttl@chiinattl.com  H //www.chinattl.cn



                                        Dynamic Range f(SARneaq)
                                                          (TEM cell            f =   900 MHz)




                           ue en d e ane hn uts aha t i                                         Uhescect   ȴshet 444 2s s on o




                                                                                     T   l[lll'

                           o
                       1                                                                     10

                                                                             SAR[mW/em*
                                                            M—)not compensated           —@— compensated
          [aplhou3




                                                                         0
                                                                    10                    10‘                     10°             10°
                                                                         SAR[mW/cm *
                                            [—=—|not compensated                                  —S&— compensated            |
                                        Uncertainty of L Inearl ty Assessment: £0.9% (k=2)
Certificate No Z17—97168                                        Page 9 of 11


          m© _\ Collsboration with
          =_‘/"/‘/, a
          uaaayy»"                                       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                            Http://www.chinattl.cn



                                      Conversion Factor Assessment
      f=900 MHz, WGLS R9(H_convPF)                                                             f=1750 MHz, WGLS R22(H_convFr)
              4.00                                                                                   30.00
               3.50
                                                                                                     25.00
              3.00 |
                      x                                                                              20.00
            22.50                                                                                5


            gzoo                                                                                 S 15.00
            a& 1.50                                                                              C%
                                      \!                                                            10.00
              1.00
                                                                                                      5.00
              0.50
              §.49.       Eo oae                 h P t                                                §:%9 Li sls
                      o                     20     40 6o                       so      100                00   40 2000   30           400   500—   é0   fo
                                                            2{mm]                                                             2{mm]




                               Deviation from Isotropyin L|qU|d
                                                 1.0

                                                 0.8
                                                 0.6
                                                 0.4
                                                 0.2
                                                 0.0
                                   7 Axis




                                                 —0.2
                                                 —0.4
                                                  —0.6
                                                  —0.8
                                                   -1.8


                                                             * 150
                                                                         200
                                                                ’q*/;g         250
                                                                                     300
                                                                                           350

                                                       —1.0 —0.80 —060 —0.40 —0.20 0 0.20 040 0.60 0.80 1.0
                                                 Uncertainty of Spherical Isotropy Assessment: +£3.2% (K=2)



Certificate No: Z17—97168                                                      Page 10 of 11


          mm© \n Collsboration with
          =‘/"[‘ a
          y 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       Http://www.chinattl.cn



    DASY/EASY — Parameters of Probe: EX3DV4 — SN: 3823


     Other Probe Parameters
    Sensor Arrangement                                                      Triangular

    Connector Angle (°)                                                         167.7

    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                                      1imm

    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: Z17—97168                             Page 11 of 11



Document Created: 2019-10-16 22:41:43
Document Modified: 2019-10-16 22:41:43

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