Attachment SAR App C Part 1

This document pretains to SES-MOD-20100528-00661 for Modification on a Satellite Earth Station filing.

IBFS_SESMOD2010052800661_819687

                                                           Report No.: M100102 Page 36 of 53


         APPENDIX C CALIBRATION DOCUMENTS

1.       E-Field Probe Model ET3DV6 S/N 1377
2.       Antenna Dipole Model D1640V2 S/N 314




     This document must not be copied or reproduced, except in full without the written permission of
      the Manager, EMC Technologies Pty Ltd. The certificate on page 3 may be reproduced in full.
                                        www.emctech.com.au


   Calibration Laboratory of                                         «es                                           Schwelzerischer Kalibrierdienst




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   Schmid & Partner                                                  n                                             Service suisse d‘étalonnage
     Engineering AG                                                $ sf                                            Servizio svizzero di taratura
   Zeughausstrasse 43, 8004 Zurich, Switzerland                     f"wfiw‘?                                        Swiss Calibration Service
                                                                        "abile



   Accredited by the Swiss Accreditation Service (SAS)                                           Accreditation No.: SCS 108
   The Swiss Accreditation Service is one of the signatories to the EA
   Multilateral Agreement for the recognition of calibration certificates

   Client         L_EMI:‘:i“et:hrfi:fio_gles'V .                                                                     ET3—1377_Julog_                   |
                                                                                                                                                     |


   CALIBRATION CERTIFICATE_

    Object                              {efspve:sna@7__°____                                    CLIEILL] L CCOLGGoBl
    Callbration procedure(s)           | GA CAL—01.v6, QA CAL—28.v3and QA                                                                       |
                                                 ration procedure for dosimetric E—field               prob



    Calibration date:


    Condition of the calibrated item   [In Tolerance____

    This calbration certficate documents the traceabilty to national standards, which realize the physical units of measurements (S1).
    The measurements and the uncertainties with confidence probabilty are given on the following pages and are part of the certiicate.


    All ealibrations have been conducted in the closed laboratory faciity: environment temperature (22 + 3)°C and humnidity < 70%.


    Calbration Equipment used (M&TE crical for calibration)


    Primary Standards         _         JPE                        Cal Date (Certiicate No.)                           Scheduled Calibration
    Power meter E44198                   castzossre                1—Apr—09 (No. 217—01030)                            Apr—i0
    Power sensor E4412A                  mvysi49s277               1—Apr—09 (No. 217—01030)                            Apr—10
    Powersensor E4412A                   My4is9e087                1—Apr—08 (No. 217—01030)                            Apr—10
    Reference 3 dB Aftenuator            SN: 55054 (8)             31—Mar—08 (No. 217—01028)                           Mar—t0
    Reference 20 dB Attenuator           SN: ssoss (206)           31—Mar—0 (No. 217—01028)                            Mar—to
    Reference 30 dB Aftenuator           SN: Ss1 20 (dob)          31—Mar—08 (No. 217—01027)                           Mar—to
    Reference Probe ESSDV2               SN: 3013                  2—Jan—09 (No. ES3—3013_Jand8)                       Jan—10
    nags                                 N: seo                    9—Sep—08 (No. DAE4—660_Sep08)                       Sep—08

    Secondary Standards                 [1o#                       Check Date (in house)                               Scheduled Check
    RF generator HP 8648C                usss42u01700              4—Aug—99 (in house check Oct—07)                    in house checkc Oct.09
    Network Analyzer HP 8753E            usarsooses                18—0ct01 (in house check Oc—08)                     in house check: Oct—09

                                                                                 Function                               Signature
    Callbrated by:                                                                 iborat



   Approved by:                         | Kata Pokovic



                                                                                                                       Issued: July 14, 2009
   This calibration cortficate shall not be reproduced exceptin full without written approval of the laboratory.


  Certificate No: ET3—1377_Jul09                                       Page 1 of 9




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   Calibration Laboratory of                                                        G.— Schwelzerischer Kalibrierdienst
   Schmid & Partner                                                                 _ Service suisse a‘étatonnage
     Engineering AG                                                                     Servizio svizzero di taratura
   Zeughausstrasse 43, 8004 Zurich, Switzerland                                     S swiss Catibration Service

   Accredited by the Swiss Accreditation Service (SAS)                               Accreditation No.: SCS 108
   The Swiss Accreditation Service is one of the signatories to the EA
   Multilatera! Agreement for the recognition of callbration certificates



  Glossary:
  TSL                           tissue simulating liquid
  NORMx,y,z                     sensitivity in free space
  ConvF                         sensitivity in TSL / NORMx,y,z
   DCP                          diode compression point
   Polarization >               ip rotation around probe axis
   Polarization 8               8 rotation around an axis that is in the plane normal to probe axis (at
                                measurement center), i.e., 9 = 0 is normal to probe axis

  Calibration is Performed According to the Following Standards:
     a) IEEE Std 1528—2003, "IEEE Recommended Practice for Determining the Peak Spatial—
        Averaged Specific Absorption Rate (SAR) in the Human Head from Wireless
         Communications Devices: Measurement Techniques", December 2003
     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

  Methods Applied and Interpretation of Parameters:
     * NORMxy,z: Assessed for E—field polarization 8 = 0 (f < 900 MHz in TEM—cell; > 1800 MHz:
       R22 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).
        *     NORM(Mx,y,2 = 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 responseis included in the stated uncertainty of Conv.
        *    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.
        *    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 1 > 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 ConvF is used in DASY version 4.4 and higher which allows extending
             the validity from + 50 MHz to £ 100 MHz.
        *     Sphericalisotropy (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.


  Certificate No: ET3—1377_Jul09                                   Page 2 of 9




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     ET3DV6 SN:1377                                                                July 14, 2009




                         Probe ET3DV6
                                            SN:1377
                                 Manufactured:                   August 16, 1999
                                 Last calibrated:                July 14, 2008
                                 Recalibrated:                   July 14, 2009

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




Certificate No: ET3—1377_Jul09                  Page 3 of 9


                  ET3DV6 SN:1377                                                                                           July 14, 2009


                  DASY — Parameters of Probe: ET3DV6 SN:1377

                 Sensitivity in Free Space®                                                               Diode Compression®

                            NormX                      1.94 £10.1%               uV/(V/im)               DCP x           94 mV
                            NormY                      1.99 £10.1%               pV/i(V/im)"             DCP Y           95 mV
                            Normz.                     1.95 £10.1%               pV/(V/im)"              DCP Z           92 mV

                 Sensitivity in Tissue Simulating Liquid (Conversion Factors)
                 Please see Page 8.



                 Boundary Effect

                 TSL                       900 MHz           Typical SAR gradient: 5 % per mm


                           Sensor Center to Phantom Surface Distance                                     3.7 mm 4.7 mm
                           SARse [%]             Without Correction Algorithm                              11.8    T.9

                           SARse [%]             With Correction Algorithm                                  0.9    0.5

                 TSL                      1810 MHz           Typical SAR gradient: 10 % per mm


                           Sensor Center to Phantom Surface Distance                                    3.7 mm    4.7 mm
                           SARse [%]             Without Correction Algorithm                              16.0    114
                           SARte (%]             With Correction Algorithm                                  0.7    0.4


                 Sensor Offset

                           Probe Tip to Sensor Center                                              2.7 mm




                 The reported uncertainty of measurementis 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 NomX.Y.Z do not affect the E—feld uncertainty inside TSL (see Page 8).
                * Numerical linearization parameter: uncertainty not required.




           Certificate No: ET3—1377_Jul09                                  Page 4 of 9




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            ET3DV6 SN:1377                                                                                                   July 14, 2009



                                                                Frequency Response of E—Field
                                                                        (TEM—Cell:fi110 EXX, Waveguide: R22)




                                                     in
                                                     >
                                                     to
                   Frequency response (normalized)

                                                     ho
                                                     _
                                                     5




                                                     as

                                                     o8

                                                     o.7

                                                     o6

                                                     05
                                                           0      500        1000        1500        2000   2500      2000
                                                                                     f ibz]
                                                                        —@—TEM                    —@—R22



                                                               Uncertainty of Frequency Response of E—field: 2 6.3% (k=2)




     Certifate No: ET3—1377_Jul09                                                   Page 5 of 9




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    ET3DV6 SN: 1377                                                                       July 14, 2009



                                   Receiving Pattern (¢), 8 = 0°

                  f= 600 MHz, TEM ifif10EXX                          f= 1800 MHz, WG R22




                                                                                         —0—30 MHz
                                                                                         —m—100 MHz
     Error [dB]




                                                                                         ——600 MHz. |
                                                                                         —m— 1800 MHz
                                                                                         —A—2500 MHz




                  0        60         120         180          240        300
                                                 $F1



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




Certiicate No: ET3—1377_Jul09                    Page 6 of 9


           ET3DV6 SN:1377                                                                                      July 14, 2009


                                                      Dynamic Range f(SARpesg)
                                                             (Waveguide R22, £= 1800 MHz)




                7




                                                                                                     10
                     Input Signal fuV)




                                         1603




                                            0.0001   0.001     001        0.        1        10          100

                                                                     SAR [mWiom‘]                               |




                                                                     e
                                                                     reeginre.
                                                                                        L


                                                                  mt
                                                                   [
                                                                     SAR [mWiom‘I                                |
                    hoibocuieons ult iese auevaryGirtimonESE
                                                     Uncertainty of Linearity Assessment: £ 0.6% (k=2)




       Certifcate No: ET3—1377_Jul09                                 Page 7 of 9




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           ET3DV6 SN:1377                                                                                                                             July 14, 2009



                                                           Conversion Factor Assessment

                                      £=900 MHz, WGLS R9 (head)                                                   £=1810 MHz, WGLS R22 (head)
                                                                                                                30.0 —


                                                                                                                        4
                                                                                                                25.0 X
                  SAR[mW/em*] / W




                                                                                             SARJ[mWicm®] / W
                                                                                                                20.0




                                                                                                                              y¥
                                                                                                                 »|                           SW
                                                                                                                10.0                     .%




                                                                                                                 oo                                      Peepoog
                                       0              20            40             60                                  0            10          20      30      40 |
                                                            z[mm]                                                                             z[mm]


                                    —®—Analytical          —0—Measurements                                       —®—Analytical                —O—Measurements




           f [MHz]                  Validity [MHz]®          TSL    Permittivity    Conductivity                   __Alpha         Depth        ConvF Uncertainty

           900                      * 50 / + 100            Head    41.5%5%         0.97%5%                            0.38         244          6114 £11.0% (k=2)
           1810                     £50/2100                Head    40.0£5%         1402 5%                            0.36         3.83         5.22 £11.0% (k=2)




          © The validity of £ 100 MHz only applies for DASY v4.4 and higher (see Page 2). The uncertainty is the RSS
          of the Conv uncertainty at callbration frequency and the uncertainty for the indicated frequency band.




     Cerlificate No: ET3—1377_Jul09                                            Page 8 of 9




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Document Created: 2010-01-22 09:50:50
Document Modified: 2010-01-22 09:50:50

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