SAR Test Report Part 2

FCC ID: V65E6920

RF Exposure Info

Download: PDF
FCCID_4087778

Calibration
      ‘     Laboratory of                                         SCs /z
                                                                  S                                         S      Schweizerischer Kalibrierdienst
Schmid & Partner                                                 SIB\E—u/{&é                                c      Service suisse d‘étalonnage
  Englneenng AG                                                   $ —m—te                                          Servizio svizzero di taratura
                                 g       ;                        zzwy                                                §
Zeughausstrasse 43, 8004 Zurich, Switzerland                       *4 /Q\ y                                 S      Swiss Calibration Service
                                                                     Arlitats®®

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       Auden                                                                              Certificate No: D835V2—4d120_Jun18

|CALIBRATION CERTIFICATE
 Object                                D835V2 — SN:4d120


 Calibration procedure(s)             QA CAL—O05.v10
                                      Calibration procedure for dipole validation kits above 700 MHz



 Calibration date:                    June 20, 2018


 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                04—Apr—18 (No. 217—02672/02673)                         Apr—19
 Power sensor NRP—Z91                   SN: 103244                04—Apr—18 (No. 217—02672)                               Apr—19
 Power sensor NRP—Z91                   SN: 103245                04—Apr—18 (No. 217—02673)                               Apr—19
 Reference 20 dB Attenuator             SN: 5058 (20k)            04—Apr—18 (No. 217—02682)                               Apr—19
 Type—N mismatch combination            SN: 5047.2 / 06327        04—Apr—18 (No. 217—02683)                               Apr—19
 Reference Probe EX3DV4                 SN: 7349                  30—Dec—17 (No. EX3—7349_Dec17)                          Dec—18
 DAE4                                   SN: 601                   26—Oct—17 (No. DAE4—601_Oct17)                          Oct—18


 Secondary Standards                    ID #                      Check Date (in house)                                   Scheduled Check
 Power meter EPM—442A                   SN:    GB37480704         07—Oct—15   (in   house check Oct—16)                   In   house   check:   Oct—18
 Power sensor HP 8481A                  SN:    US37202783         07—Oct—15   (in   house check Oct—16)                   In   house   check:   Oct—18
 Power sensor HP 8481A                  SN:    MY41092317         07—Oct—15   (in   house check Oct—16)                   In   house   check:   Oct—18
 RF generator R&S SMT—06                SN:    100972             15—Jun—15   (in   house check Oct—16)                   In   house   check:   Oct—18
 Network Analyzer HP 8753E              SN: US37390585            18—Oct—01 (in house check Oct—17)                       In house check: Oct—18


                                        Name                                      Function
 Calibrated by:                         Claudio Leubler                           Laboratory Technician



 Approved by:                           Katia Pokovic                             Technical Manager



                                                                                                                          Issued: June 21, 2018
 This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: D835V2—4d120_Jun18                                    Page 1 of 8


Calibration Laboratory of                                    s\
     :
Schmid
                                                             s              x   S   Schweizerischer Kalibrierdienst
           & Partner                                        i';‘\\\—_é;&/—!’_   c   Service suisse d‘étalonnage
  Engmeerung AG                                             & /R >                  Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                 1'/,,/Q\ y         S   Swiss Calibration Service
                                                                 thitabs®

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
ConvF                        sensitivity in TSL / NORM x,y,z
N/A                          not applicable or not measured
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"

Additional Documentation:
    ) DASY4/5 System Handbook
Methods Applied and Interpretation of Parameters:
         Measurement Conditions: Further details are available from the Validation Report at the end
         of the certificate. All figures stated in the certificate are valid at the frequency indicated.
         Antenna Parameters with TSL: The dipole is mounted with the spacer to position its feed
         point exactly below the center marking of the flat phantom section, with the arms oriented
         parallel to the body axis.
         Feed Point Impedance and Return Loss: These parameters are measured with the dipole
         positioned under the liquid filled phantom. The impedance stated is transformed from the
         measurement at the SMA connector to the feed point. The Return Loss ensures low
         reflected power. No uncertainty required.
         Electrical Delay: One—way delay between the SMA connector and the antenna feed point.
         No uncertainty required.
         SAR measured: SAR measured at the stated antenna input power.
         SAR normalized: SAR as measured, normalized to an input power of 1 W at the antenna
         connector.
         SAR for nominal TSL parameters: The measured TSL parameters are used to calculate the
         nominal SAR result.
  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%.




Certificate No: D835V2—40120_Jun18                               Page 2 of 8


Measurement Conditions
   DASY system configuration, as far as not given on page 1.
     DASY Version                                              DASY5                              V52.10.1

     Extrapolation                                   Advanced Extrapolation
     Phantom                                          Modular Flat Phantom
     Distance Dipole Center — TSL                              15 mm                             with Spacer
     Zoom Scan Resolution                              dx, dy, dz =5 mm
     Frequency                                          835 MHz &1 MHz



Head TSL parameters
   The following parameters and calculations were applied.
                                                               Temperature       Permittivity         Conductivity
     Nominal Head TSL parameters                                  22.0 °C           41.5               0.90 mho/m
     Measured Head TSL parameters                              (22.0 + 0.2) °C   40.7 + 6 %         0.93 mho/m + 6 %

     Head TSL temperature change during test                      <0.5 °C            «——~


SAR result with Head TSL

     SAR averaged over 1 cm* (1 g) of Head TSL                  Condition

     SAR measured                                        250 mW input power                     241 W/kg
     SAR for nominal Head TSL parameters                     normalized to 1W        9.37 Wikg + 17.0 %(k=2)

     SAR averaged over 10 cm* (10 g) of Head TSL                 condition
     SAR measured                                        250 mW input power                 1.55 W/kg
     SAR for nominal Head TSL parameters                     normalized to 1W        6.06 W/kg + 16.5 % (k=2)


Body TSL parameters
   The following parameters and calculations were applied.
                                                               Temperature       Permittivity         Conductivity
     Nominal Body TSL parameters                                  22.0 °C            55.2              0.97 mho/m
     Measured Body TSL parameters                              (22.0 + 0.2) °C   55.0 + 6 %         0.99 mho/m + 6 %
     Body TSL temperature change during test                      <0.5 °C            ————                    ————


SAR result with Body TSL

     SAR averaged over 1 cm* (1 g) of Body TSL                  Condition
     SAR measured                                        250 mW input power                     2.46 W/kg

     SAR for nominal Body TSL parameters                     normalized to 1W         9.68 W/kg + 17.0 % (k=2)

     SAR averaged over 10 cm* (10 g) of Body TSL                 condition

      SAR measured                                       250 mW input power                  1.61 W/kg
      SAR for nominal Body TSL parameters                    normalized to 1W         6.36 W/kg + 16.5 %(k=2)



Certificate No: D835V2—4d120_Jun18                    Page 3 of 8


Appendix (Additional assessments outside the scope of SCS 0108)

Antenna Parameters with Head TSL

      Impedance, transformed to feed point                                           §1.5 Q — 3.1 jQ
      Return Loss                                                                       — 29.3 dB



Antenna Parameters with Body TSL

      Impedance, transformed to feed point                                           48.3 Q — 5.8 jQ

      Return Loss                                                                       —24.3 dB




General Antenna Parameters and Design

      Electrical Delay (one direction)                                                   1.398 ns


After long term use with 100W radiated power, only a slight warming of the dipole near the feedpoint can be measured.

The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the
second arm of the dipole. The antenna is therefore short—circuited for DC—signals. On some of the dipoles, small end caps
are added to the dipole arms in order to improve matching when loaded according to the position as explained in the
"Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still
according to the Standard.
No excessive force must be applied to the dipole arms, because they might bend or the soldered connections near the
feedpoint may be damaged.



Additional EUT Data

      Manufactured by                                                                    SPEAG

      Manufactured on                                                                 June 29, 2010




Certificate No: DB35V2—4d120_Jun18                       Page 4 of 8


DASY5 Validation Report for Head TSL

                                                                                    Date: 20.06.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT: Dipole 835 MHz; Type: D835V2; Serial: D835V2 — SN:4d120

Communication System: UID 0 — CW; Frequency: 835 MHz
Medium parameters used: f = 835 MHz; 0 = 0.93 S/m; & = 40.7; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI €63.19—2011)

DASY52 Configuration:

   _   Probe: EX3DV4 — SN7349; ConvF(9.9, 9.9, 9.9) @ 835 MHz; Calibrated: 30.12.2017

        Sensor—Surface: 1.4mm (Mechanical Surface Detection)

       Electronics: DAE4 S$n601; Calibrated: 26.10.2017

        Phantom: Flat Phantom 4.9 (front); Type: QD OOL P49 AA; Serial: 1001

        DASY52 52.10.1(1476); SEMCAD X 14.6.11(7439)


Dipole Calibration for Head Tissue/Pin=250 mW, d=15mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 62.60 V/m; Power Drift = —0.02 dB
Peak SAR (extrapolated) = 3.71 W/kg
SAR(I g) = 2.41 W/kg; SAR(10 g) = 1.55 W/kg
Maximum value of SAR (measured) = 3.27 W/kg




        —2.20


        —4.40


        —6.60


        —8.80


        —11.00
                   0 dB = 3.27 W/ikg = 5.15 dBW/kg




Certificate No: D835V2—4d120_Jun18              Page 5 of 8


Impedance Measurement Plot for Head TSL




                                                                    20 Jun 2018     12:52:08
         CHI) sii     i U FS          4: 51.529 a   —34484 n   60,.539 pF          835.000 000 MHz




         De l


         Ca




         fvg
         16


         H1d


          CH2




         Ca




          Ay
          16°

          H1d

                    START 635.000 000 MHz                                   STOP 1 035.000 000 MHz




Certificate No: DB35V2—4d120_Jun18                    Page 6 of 8


DASYS5 Validation Report for Body TSL

                                                                                   Date: 20.06.2018
Test Laboratory: SPEAG, Zurich, Switzerland

DUT: Dipole 835 MHz; Type: D835V2; Serial: D835V2 — SN:4d120

Communication System: UID 0 — CW; Frequency: 835 MHz
Medium parameters used: f = 835 MHz; 0 = 0.99 S/m; & = 55; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASYS (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

   e   Probe: EX3DV4 — SN7349; ConvF(10.05, 10.05, 10.05) @ 835 MHz; Calibrated: 30.12.2017

   e   Sensor—Surface: 1.4mm (Mechanical Surface Detection)

   e   Electronics: DAE4 Sn601; Calibrated: 26.10.2017

   *   Phantom: Flat Phantom 4.9 (Back); Type: QD OOR P49 AA; Serial: 1005

   &   DASY52 52.10.1(1476); SEMCAD X 14.6.11(7439)


Dipole Calibration for Body Tissue/Pin=250 mW, d=15mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 61.00 V/m; Power Drift = —0.02 dB
Peak SAR (extrapolated) = 3.66 W/kg
SAR(1 g) = 2.46 W/kg; SAR(10 g) = 1.61 W/kg
Maximum value of SAR (measured) = 3.28 W/kg




       —2.20


       —4.40


       —6.60


        —8.80

        —11.00
                   0 dB = 3.28 W/kg = 5.16 dBW/kg




Certificate No: D835V2—4d120_Jun18             Page 7 of 8


Impedance Measurement Plot for Body TSL




                                                                      20 Jun 2018     12:50:13
          CHI sii     1 U FS            4: 48.336 a   —5.757§ n   33.104 pF          835.000 000 MHz
                                                      abmmp +.




          Av
          169


          H1d


          CH2




          Ca




          Ay
          16°

          H1d

                    START   635.000 000 MHz                                   STOP 1 035.000 000 MHz




Certificate No: D835V2—40120_Jun18                      Page 8 of 8


Calibration
      .     Laboratory of                                         &\\\0\1“\27,,,                            S      Schweizerischer Kalibrierdienst
Schmid & Partner                                                 ila\es\ém                                         Service suisse d‘étalonnage
  Engineering AG                                                 o —a                                       C Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                      %,7 /@\>                                 §       Swiss Calibration Service
                                                                     Colitubs®

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

Client      Auden                                                                               Certificate No: D1750V2—1023_Jun18

CALIBRATION CERTIFICATE
 Object                               D1750V2 — SN:1023


 Calibration procedure(s)             QA CAL—05.v10
                                      Calibration procedure for dipole validation kits above 700 MHz



 Calibration date:                    June 11, 2018


 This calibration certificate documents the traceatbility 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                04—Apr—18 (No. 217—02672/02673)                      Apr—19
 Power sensor NRP—Z91                   SN: 103244                04—Apr—18 (No. 217—02672)                            Apr—19
 Power sensor NRP—Z91                   SN: 103245                04—Apr—18 (No. 217—02673)                            Apr—19
 Reference 20 dB Attenuator             SN: 5058 (20k)            04—Apr—18 (No. 217—02682)                            Apr—19
 Type—N mismatch combination            SN: 5047.2 / 06827        04—Apr—18 (No. 217—02683)                            Apr—19
 Reference Probe EX3DV4                 SN: 7349                  30—Dec—17 (No. EX3—7349_Dec17)                       Dec—18
 DAE4                                   SN: 601                   26—Oct—17 (No. DAE4—601_Oct17)                       Oct—18


 Secondary Standards                    ID #                      Check Date (in house)                                 Scheduled Check
 Power meter EPM—442A                   SN:    GB37480704         07—Oct—15   (in   house check Oct—16)                 In   house   check:   Oct—18
 Power sensor HP 8481A                  SN:    US37202783         07—Oct—15   (in   house check Oct—16)                 In   house   check:   Oct—18
 Power sensor HP 8481A                  SN:    MY41092317         07—Oct—15   (in   house check Oct—16)                 In   house   check:   Oct—18
 RF generator R&S SMT—06                SN:    100972             15—Jun—15   (in   house check Oct—16)                 In   house   check:   Oct—18
 Network Analyzer HP 8753E              SN: US37390585            18—Oct—01 (in house check Oct—17)                     In house check: Oct—18


                                        Name                                     Function                               Signatgre
 Calibrated by:                        Jeton Kastrati                            Laboratory Technician     % %



 Approved by:                           Katia Pokovic                            Technical Manager                 /W%:



                                                                                                                       Issued: June 11, 2018
 This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: D1750V2—1023_Jun18                                    Page 1 of 8


Calibration Laboratory of                                       wl                         lom!        tnnarer
     s                                                      S                   S   Schweizerischer Kalibrierdienst
                                                            8              %
Schmid & Partner                                           ilag"{fi              c   Service suisse d‘étalonnage
   Englneerlng AG                                          T //% s                  Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                /f/,/£ I/?\ \\\\P   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 Agreementfor the recognition of calibration certificates

Glossary:
TSL                          tissue simulating liquid
ConvF                        sensitivity in TSL / NORM x,y,z
N/A                          not applicable or not measured

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"

Additional Documentation:
    e) DASY4/5 System Handbook
Methods Applied and Interpretation of Parameters:
         Measurement Conditions: Further details are available from the Validation Report at the end
         of the certificate. All figures stated in the certificate are valid at the frequency indicated.
         Antenna Parameters with TSL: The dipole is mounted with the spacer to position its feed
         point exactly below the center marking of the flat phantom section, with the arms oriented
         parallel to the body axis.
         Feed Point Impedance and Return Loss: These parameters are measured with the dipole
         positioned under the liquid filled phantom. The impedance stated is transformed from the
         measurement at the SMA connector to the feed point. The Return Loss ensures low
         reflected power. No uncertainty required.
         Electrical Delay: One—way delay between the SMA connector and the antenna feed point.
         No uncertainty required.
         SAR measured: SAR measured at the stated antenna input power.
         SAR normalized: SAR as measured, normalized to an input power of 1 W at the antenna
         connector.
         SAR for nominal TSL parameters: The measured TSL parameters are used to calculate the
         nominal SAR result.
  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%.




Certificate No: D1750V2—1023_Jun18                              Page 2 of 8


Measurement Conditions
   DASY system configuration, as far as not given on page 1.
     DASY Version                                              DASYS                              V52.10.1
     Extrapolation                                   Advanced Extrapolation
     Phantom                                         Modular Flat Phantom
     Distance Dipole Center — TSL                              10 mm                             with Spacer

     Zoom Scan Resolution                              dx, dy, dz =5 mm
     Frequency                                         1750 MHz + 1 MHz



Head TSL parameters
   The following parameters and calculations were applied.
                                                               Temperature       Permittivity         Conductivity
     Nominal Head TSL parameters                                  22.0 °C           40.1               1.37 mho/m
     Measured Head TSL parameters                              (22.0 + 0.2) °C   39.0 + 6 %         1.36 mho/m + 6 %

     Head TSL temperature change during test                      x6.5°C

SAR result with Head TSL

     SAR averaged over 1 cm* (1 g) of Head TSL                  Condition
     SAR measured                                        250 mW input power                     9.10 W/kg
     SAR for nominal Head TSL parameters                     normalized to 1W        36.3 W/kg + 17.0 % (k=2)

     SAR averaged over 10 cm* (10 g) of Head TSL                 condition
     SAR measured                                        250 mW input power                  4.82 Wikg
     SAR for nominal Head TSL parameters                     normalized to 1W         19.3 Wikg + 16.5 % (k=2)


Body TSL parameters
   The following parameters and calculations were applied.
                                                               Temperature       Permittivity          Conductivity
     Nominal Body TSL parameters                                  22.0 °C            53.4              1.49 mho/m

     Measured Body TSL parameters                              (22.0 + 0.2) °C   53.6 +6 %          1.47 mho/m + 6 %
     Body TSL temperature change during test                      <0.5 °C            ————                    «++

SAR result with Body TSL

     SAR averaged over 1 cm* (1 g) of Body TSL                  Condition
     SAR measured                                        250 mW input power                     9.12 W/kg
     SAR for nominal Body TSL parameters                     normalized to 1W         36.8 W/kg + 17.0 %(k=2)

      SAR averaged over 10 cm* (10 g) of Body TSL                condition

      SAR measured                                       250 mW input power                     4.90 Wikg
      SAR for nominal Body TSL parameters                    normalized to 1W         19.7 Wikg 16.5 % (k=2)



Certificate No: D1750V2—1023_Jun18                    Page 3 of 8


Appendix (Additional assessments outside the scope of SCS 0108)
Antenna Parameters with Head TSL

      Impedance, transformed to feed point                                           51.0 Q — 0.5 jQ

      Return Loss                                                                       — 39.1 dB



Antenna Parameters with Body TSL

      Impedance, transformed to feed point                                           46.0 Q + 0.3 jQ

      Return Loss                                                                       —27.5 dB




General Antenna Parameters and Design

      Electrical Delay (one direction)                                                   1.217 ns


After long term use with 100W radiated power, only a slight warming of the dipole near the feedpoint can be measured.

The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the
second arm of the dipole. The antenna is therefore short—circuited for DC—signals. On some of the dipoles, small end caps
are added to the dipole arms in order to improve matching when loaded according to the position as explained in the
"Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still
according to the Standard.
No excessive force must be applied to the dipole arms, because they might bend or the soldered connections near the
feedpoint may be damaged.



Additional EUT Data

      Manufactured by                                                                    SPEAG
      Manufactured on                                                                August 20, 2009




Certificate No: D1750V2—1023_Jun18                        Page 4 of 8


DASY5 Validation Report for Head TSL

                                                                                    Date: 11.06.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT: Dipole 1750 MHz; Type: D1750V2; Serial: D1750V2 — SN:1023

Communication System: UID 0 — CW; Frequency: 1750 MHz
Medium parameters used: £ = 1750 MHz; 0 = 1.36 S/m; &, = 39; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI €63.19—2011)

DASY52 Configuration:

   *   Probe: EX3DV4 — SN7349; ConvF(8.5, 8.5, 8.5) @ 1750 MHz; Calibrated: 30.12.2017

       Sensor—Surface: 1.4mm (Mechanical Surface Detection)

       Electronics: DAE4 Sn601; Calibrated: 26.10.2017

       Phantom: Flat Phantom 5.0 (front); Type: QD 000 P50 AA; Serial: 1001

       DASY52 52.10.1(1476); SEMCAD X 14.6.11(7439)


Dipole Calibration for Head Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 106.5 V/m; Power Drift = —0.05 dB
Peak SAR (extrapolated) = 16.5 W/kg
SAR(I g) = 9.1 W/kg; SAR(10 g) = 4.82 W/kg
Maximum value of SAR (measured) = 14.0 W/kg


       dB




       —6.00


       —9.00


       —12.00


        —15.00
                  0 dB = 14.0 W/kg = 11.46 dBW/kg




Certificate No: D1750V2—1023_Jun18            Page 5 of 8


Impedance Measurement Plot for Head TSL




                                                                                    11 Jun 2018                   @8:41:52
         (CHI sii     i U Fs          3t 5S1.016 a          —457.03 me 198.99 pF                                1 750.000 000 MHz

                                                                  \           —      VV."
         *                                          F                 *           * jA            §
         Del                                    /                         \       — ~—                4
                                            /               R                       \|        *
                                        /                                                                 %
         6#                            [                [        3                          \ o %



         fAvg
         16


         H1d


          CH2




          Ca




          Av
          169


          H1d

                    START 1 550.000 000 MHz                                                               STOP 1 950.000 000 MHz




Certificate No: D1750V2—1023_Jun18                              Page 6 of 8


DASY5 Validation Report for Body TSL

                                                                                   Date: 11.06.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT: Dipole 1750 MHz; Type: D1750V2; Serial: D1750V2 — SN:1023

Communication System: UID 0 — CW; Frequency: 1750 MHz
Medium parameters used: f = 1750 MHz; 0 = 1.47 S/m; &, = 53.6; p = 1000 kg/m‘
Phantom section: Flat Section
Measurement Standard: DASYS5 (IEEE/IEC/ANSI €C63.19—2011)

DASY52 Configuration:

   *   Probe: EX3DV4 — SN7349; ConvF(8.35, 8.35, 8.35) @ 1750 MHz; Calibrated: 30.12.2017

       Sensor—Surface: 1.4mm (Mechanical Surface Detection)

       Electronics: DAE4 $n601; Calibrated: 26.10.2017

       Phantom: Flat Phantom 5.0 (back); Type: QD 000 P50 AA; Serial: 1002

       DASY52 52.10.1(1476); SEMCAD X 14.6.11(7439)


Dipole Calibration for Body Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 102.3 V/m; Power Drift = —0.05 dB
Peak SAR (extrapolated) = 15.8 W/kg
SAR(I g) = 9.12 W/kg; SAR(10 g) = 4.9 W/kg
Maximum value of SAR (measured) = 13.5 W/kg


       dB
       0


       —3.20


       —6.40


        —9.60


        —12.80


        —16.00
                   0 dB = 13.5 W/kg = 11.30 dBW/kg



Certificate No: D1750V2—1023_Jun18             Page 7 of 8


Impedance Measurement Plot for Body TSL




                                                                     11 Jun 2018    @S:40:54
         CHI) sii     1 U FS           3: 49.982 0   ©.3281 0   25.041 pH          1 750.000 000 MHz




          Av
          169


          H1d


          CH2   S




          Ca




          Av
          163



          H1d

                    START 1 $559.000 000 MHz                                STOP 1 950.000 000 MHz




Certificate No: D1750V2—1023_Jun18                     Page 8 of 8


Calibration
      .     Laboratory of                                        $AN @4
                                                                     Sz                                     S      Schweizerischer Kalibrierdienst
Schmid & Partner                                                 SBE//M                                     c      Service suisse d‘étalonnage
  Engineering AG                                                 ";//-T'\\\?                                       Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                      */fi\?\y                                   S      swiss Calibration Service
                                                                     44   thi   a




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: D1900V2—50036_Jan18

[CALIBRATION CERTIFICATE                                                                                                                                   ‘
 Object                               D1900V2 — SN:5d036


 Calibration procedure(s)             QA CAL—O5.v9
                                      Calibration procedure for dipole validation kits above 700 MHz



 Calibration date:                    January 18, 2018


 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 (Certificate No.)                            Scheduled Calibration
 Power meter NRP                        SN:    104778             04—Apr—17 (No. 217—02521/02522)                       Apr—18
 Power sensor NRP—Z91                   SN:    103244             04—Apr—17 (No. 217—02521)                             Apr—18
 Power sensor NRP—Z91                   SN:    103245             04—Apr—17 (No. 217—02522)                             Apr—18
 Reference 20 dB Attenuator             SN:    5058 (20k)         07—Apr—17 (No. 217—02528)                             Apr—18
 Type—N mismatch combination            SN:    5047.2 / 06327     07—Apr—17 (No. 217—02529)                             Apr—18
 Reference Probe EX3DV4                 SN:    7349               30—Dec—17 (No. EX3—7349_Dec17)                        Dec—18
 DAE4                                   SN:    601                26—Oct—17 (No. DAE4—601_Oct17)                        Oct—18

 Secondary Standards                    ID #                      Check Date (in house)                                 Scheduled Check
 Power meter EPM—442A                   SN:    GB37480704         07—Oct—15 (in      house check Oct—16)                In       house   check:   Oct—18
 Power sensor HP 8481A                  SN:    US37292783         07—Oct—15 (in      house check Oct—16)                In       house   check:   Oct—18
 Power sensor HP 8481A                  SN:    MY41092317         07—Oct—15 (in      house check Oct—16)                In       house   check:   Oct—18
 RF generator R&S SMT—O6                SN:    100972             15—Jun—15 (in      house check Oct—16)                In       house   check:   Oct—18
 Network Analyzer HP 8753E              SN:    US37390585         18—Oct—01 (in      house check Oct—17)                In       house   check:   Oct—18


                                        Name                                        Function                             Signature .
 Calibrated by:                        Jeton Kastrati                               Laboratory Technician       :F           2



 Approved by:                           Katja Pokoviec                              Technical Manager              /g/?g


                                                                                                                        Issued: January 18, 2018
 This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: D1900V2—50036_Jan18                                   Page 1 of 8


Calibration Laboratory of                                    wil‘?»,
         .                                                   &                   >   S   Schweizerischer Kalibrierdienst
Schmid & Partner                                            m                        c   Service suisse d‘étalonnage
   Engineering AG                                           3 ,-/,__-—-_:\\ x            Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                 >7 / \\\‘&              S   Swiss Calibration Service
                                                                 ’4”'1 i n\“\‘



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
Convr                        sensitivity in TSL / NORM x.y,z
N/A                          not applicable or not measured

Calibration is Performed According to the Following Standards:
   a) IEEE Std 1528—2013, "EEE 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)       EC 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)       EC 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"

Additional Documentation:
    e)       DASY4/5 System Handbook

Methods Applied and Interpretation of Parameters:
    &        Measurement Conditions: Further details are available from the Validation Report at the end
             of the certificate. All figures stated in the certificate are valid at the frequency indicated.
             Antenna Parameters with TSL: The dipole is mounted with the spacer to position its feed
             point exactly below the center marking of the flat phantom section, with the arms oriented
             paralle! to the body axis.
             Feed Point Impedance and Return Loss: These parameters are measured with the dipole
             positioned under the liquid filled phantom. The impedance stated is transformed from the
             measurement at the SMA connector to the feed point. The Return Loss ensures low
             reflected power. No uncertainty required.
             Electrical Delay: One—way delay between the SMA connector and the antenna feed point.
             No uncertainty required.
             SAR measured: SAR measured at the stated antenna input power.
             SAR normalized: SAR as measured, normalized to an input power of 1 W at the antenna
             connector.
             SAR for nominal TSL parameters: The measured TSL parameters are used to calculate the
             nominal SAR result.
  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%.




Certificate No: D1900V2—50036_Jan18                                Page 2 of 8


Measurement Conditions
    DASY system configuration, as far as not given on page 1.
      DASY Version                                              DASY5                              V52.10.0
      Extrapolation                                   Advanced Extrapolation
      Phantom                                         Modular Flat Phantom
      Distance Dipole Center — TSL                              10 mm                             with Spacer
     Zoom Scan Resolution                               dx, dy, dz =5 mm
      Frequency                                         1900 MHz + 1 MHz



Head TSL parameters
   The following parameters and calculations were applied.
                                                                Temperature       Permittivity          Conductivity
      Nominal Head TSL parameters                                  22.0 °C           40.0                1.40 mho/m
      Measured Head TSL parameters                              (22.0 + 0.2) °C   40.4 £ 6 %          1.39 mho/m + 6 %
      Head TSL temperature change during test                      <0.5 °C

SAR result with Head TSL

      SAR averaged over 1 cm* (1 g) of Head TSL                  Condition
      SAR measured                                        250 mW input power                     10.1 Wi/kg
      SAR for nominal Head TSL parameters                    normalized to 1W          40.7 Wikg x 17.0 % (k=2)

      SAR averaged over 10 cm* (10 g) of Head TSL                 condition

      SAR measured                                        250 mW input power                     5.28 Wi/kg
      SAR for nominal Head TSL parameters                    normalized to 1W          21.2 Wikg + 16.5 % (k=2)


Body TSL parameters
   The following parameters and calculations were applied.
                                                                Temperature       Permittivity          Conductivity
      Nominal Body TSL parameters                                  22.0 °C            53.3               1.52 mho/m
      Measured Body TSL parameters                              (22.0 + 0.2) °C   54.8 +6 %           1.46 mho/im +6 %
      Body TSL temperature change during test                      <0.5 °C

SAR result with Body TSL

      SAR averaged over 1 cm* (1 g) of Body TSL                   Condition
      SAR measured                                        250 mW input power                     9.76 W/kg
      SAR for nominal Body TSL parameters                    normalized to 1W          40.2 Wi/kg + 17.0 % (k=2)

      SAR averaged over 10 cm* (10 g) of Body TSL                 condition

      SAR measured                                        250 mW input power                     5.21 W/kg
      SAR for nominal Body TSL parameters                    normalized to 1W          21.2 Wikg * 16.5 % (k=2)



Certificate No: D1900V2—50036_Jan18                    Page 3 of 8


Appendix (Additional assessments outside the scope of SCS 0108)

Antenna Parameters with Head TSL

      Impedance, transformed to feed point                                           51.3 Q + 5.2 jQ

      Return Loss                                                                       — 25.6 dB



Antenna Parameters with Body TSL

      Impedance, transformed to feed point                                           47.7 © 4+ 5.9 jQ
      Return Loss                                                                      — 23.8 dB




General Antenna Parameters and Design

      Electrical Delay (one direction)                                                  1.195 ns

After long term use with 100W radiated power, only a slight warming of the dipole near the feedpoint can be measured.

The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the
second arm of the dipole. The antenna is therefore short—circuited for DC—signals. On some of the dipoles, small end caps
are added to the dipole arms in order to improve matching when loaded according to the position as explained in the
"Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still
according to the Standard.
No excessive force must be applied to the dipole arms, because they might bend or the soldered connections near the
feedpoint may be damaged.                                                                      *



Additional EUT Data

      Manufactured by                                                                    SPEAG
      Manufactured on                                                                 May 08, 2003




Certificate No: D1900V2—5d036_Jan18                       Page 4 of 8


DASY5 Validation Report for Head TSL

                                                                                  Date: 18.01.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT: Dipole 1900 MHz; Type: D1900V2; Serial: D1900V2 — SN:50036

Communication System: UID 0 — CW; Frequency: 1900 MHz
Medium parameters used: f = 1900 MHz; 0 = 1.39 S/m; &, = 40.4; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

   e   Probe: EX3DV4 — SN7349; ConvF(8.18, 8.18, 8.18); Calibrated: 30.12.2017;

   e   Sensor—Surface: 1.4mm (Mechanical Surface Detection)

   e   Electronics: DAE4 Sn601; Calibrated: 26.10.2017

   e   Phantom: Flat Phantom 5.0 (front); Type: QD 000 P50 AA; Serial: 1001

   e   DASY52 52.10.0(1446); SEMCAD X 14.6.10(7417)


Dipole Calibration for Head Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 109.4 V/m; Power Drift = —0.07 dB
Peak SAR (extrapolated) = 18.4 W/kg
SAR(1 g) = 10.1 W/kg; SAR(10 g) = 5.28 W/kg
Maximum value of SAR (measured) = 15.2 W/kg




       —3.00


       —6.00


        —9.00


        —12.00


        —15.00
                   0 dB = 15.2 W/kg = 11.82 dBW/kg




Certificate No: D1900V2—5d036_Jan18            Page 5 of 8


Impedance Measurement Plot for Head TSL




                                                                       18 Jan 2018    10:22:152
          CHI S11i     1 U FS          31 51.295 a    51582 &     432.08 pH          1 900.000 000 MHz
                                                 .-"-—-‘-'—T_—-'_--'




          De l

          C&




          Ay
          169


          H1d

          CH2




          CA




          Ay
          16 9



          H1d

                     START 1 700.000 000   MHz                                STOP 2 100.000 000 MHz




Certificate No: D1900V2—5d036_Jan18                      Page 6 of 8


DASY5 Validation Report for Body TSL

                                                                                  Date: 17.01.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT : Dipole 1900 MHz; Type: D1900V2; Serial: D1900V2 — SN:504036

Communication System: UID 0 — CW; Frequency: 1900 MHz
Medium parameters used: £f = 1900 MHz; 0 = 1.46 S/m; &s, = 54.8; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

   e   Probe: EX3DV4 — SN7349; ConvF(8.15, 8.15, 8.15); Calibrated: 30.12.2017;

   e   Sensor—Surface: 1.4mm (Mechanical Surface Detection)

   e   Electronics: DAFE4 Sn601; Calibrated: 26.10.2017

   e   Phantom: Flat Phantom 5.0 (back); Type: QD 000 P50 AA; Serial: 1002

   e   DASY52 52.10.0(1446); SEMCAD X 14.6.10(7417)


Dipole Calibration for Body Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 103.6 V/m; Power Drift = —0.05 dB
Peak SAR (extrapolated) = 17.4 W/kg
SAR(1 g) = 9.76 W/kg; SAR(10 g) = 5.21 W/kg
Maximum value of SAR (measured) = 14.3 W/kg




       —3.00


       —6.00


       —9.00


       —12.00


       —15.00
                  0 dB = 14.3 W/kg = 11.55 dBW/kg




Certificate No: D1900V2—5d036_Jan18             Page 7 of 8


Impedance Measurement Plot for Body TSL—




                                                                      17 Jan 2018     16:26:31
         (CHZ S11     1 U FS          4:47.742 2        5.9297 a   496.70 pH         1 900.000 9090 MHz
                                                   a~   —~~—IT——

         Del

         CA




         Av
         16 C


         H1d

          CH2




         Ca




         Ay
         16°

         H1d

                    START 1 700.000 000 MHz                                    STOP 2 100.000 oop MHz




Certificate No: D1900V2—5d036_Jan18                       Page 8 of 8


Calibration Laboratory of                                          all‘s
                                                                  & ~\GZ >                                    S    Schweizerischer Kalibrierdienst
Schmid & Partner                                                 sfi&é                                         c    Service suisse d‘étalonnage
  Engineering AG                                                 z ,-/»-_-fi-___\\ s                                Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                      4'/,'//’F\?\@:‘"                            S    swiss Calibration Service
                                                                      Alul abs®



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: D2300V2—1004_Jan18

|CALIBRATION CERTIFICATE
 Object                               D2300V2 — SN:1004


 Calibration procedure(s)             QA CAL—O5.v9
                                      Calibration procedure for dipole validation kits above 700 MHz



 Calibration date:                    January 17, 2018


 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             04—Apr—17 (No. 217—02521/02522)                       Apr—18
 Power sensor NRP—Z91                   SN:    103244             04—Apr—17 (No, 217—02521)                             Apr—18
 Power sensor NRP—Z91                   SN:    103245             04—Apr—17 (No. 217—02522)                             Apr—18
 Reference 20 dB Attenuator             SN:    5058 (20k)         07—Apr—17 (No. 217—02528)                             Apr—18
 Type—N mismatch combination            SN:    5047.2 / 06327     07—Apr—17 (No. 217—02529)                             Apr—18
 Reference Probe EX3DV4                 SN:    7349               30—Dec—17 (No. EX3—7349_Dec17)                        Dec—18
 DAE4                                   SN: 601                   26—Oct—17 (No. DAE4—601_Oct17)                        Oct—18


 Secondary Standards                    ID #                      Check Date (in house)                                 Scheduled Check
 Power meter EPM—442A                   SN: GB37480704            07—Oct—15 (in house check Oct—16)                     In house check: Oct—18
 Power sensor HP 8481A                  SN:    US37292783         07—Oct—15       (in   house check Oct—16)             In   house   check:   Oct—18
 Power sensor HP 8481A                  SN:    MY41092317         07—Oct—15       (in   house check Oct—16)             In   house   check:   Oct—18
 RF generator R&S SMT—O6                SN:    100972             15—Jun—15       (in   house check Oct—16)             In   house   check:   Oct—18
 Network Analyzer HP 8753E              SN:    US37390585         18—Oct—01       (in   house check Oct—17)             In   house   check:   Oct—18


                                        Name                                        Function                             Signature
 Calibrated by:                         Jeton Kastrati                              Laboratory Technician         QY‘/ W0



 Approved by:                           Katjia Pokovic                             Technical Manager



                                                                                                                        Issued: January 17, 2018
 This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: D2300V2—1004_Jan18                                    Page 1 of 8


Calibration
      .     Laboratory of                                    zt
                                                             a \\~/ "/,‘       S   Schweizerischer Kalibrierdienst
Schmid & Partner                                            iia\-%\fif/;/&é     c   Service suisse d‘étalonnage
  Engineering AG                                            o aomdl &              Servizio svizzero di taratura
                              .       .                      z"— y             S      .      Sheag;       .
Zeughausstrasse 43, 8004 Zurich, Switzerland                  *4/fi\\\v             Swiss Calibration Service
                                                                Alulubs®



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
Convr                        sensitivity in TSL / NORM x,y,2
N/A                          not applicable or not measured

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"

Additional Documentation:
    e) DASY4/5 System Handbook

Methods Applied and Interpretation of Parameters:
   e Measurement Conditions: Further details are available from the Validation Report at the end
     of the certificate. All figures stated in the certificate are valid at the frequency indicated.
    e    Antenna Parameters with TSL: The dipole is mounted with the spacer to position its feed
         point exactly below the center marking of the flat phantom section, with the arms oriented
         parallel to the body axis.
    e    Feed Point Impedance and Return Loss: These parameters are measured with the dipole
         positioned under the liquid filled phantom. The impedance stated is transformed from the
         measurement at the SMA connector to the feed point. The Return Loss ensures low
         reflected power. No uncertainty required.
     e   Electrical Delay: One—way delay between the SMA connector and the antenna feed point.
         No uncertainty required.
         SAR measured: SAR measured at the stated antenna input power.
    e    SAR normalized: SAR as measured, normalized to an input power of 1 W at the antenna
         connector.
    e    SAR for nominal TSL parameters: The measured TSL parameters are used to calculate the
         nominal SAR result.
  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%.




Certificate No: D2300V2—1004_Jan18                               Page 2 of 8


Measurement Conditions
   DASY system configuration, as far as not given on page 1.
     DASY Version                                              DASYS                              V52.10.0
     Extrapolation                                   Advanced Extrapolation
     Phantom                                         Modular Flat Phantom
     Distance Dipole Center — TSL                              10 mm                             with Spacer

     Zoom Scan Resolution                              dx, dy, dz =5 mm
     Frequency                                         2300 MHz + 1 MHz



Head TSL parameters
   The followingparameters and calculations were applied.
                                                               Temperature       Permittivity         Conductivity
     Nominal Head TSL parameters                                  22.0 °C           39.5               1.67 mho/m
     Measured Head TSL parameters                              (22.0 + 0.2) °C   38.4 +6 %          1.71 mho/m +6 %
     Head TSL temperature change during test                      <0.5 °C                                    ————


SAR result with Head TSL

     SAR averaged over 1 cm* (1 g) of Head TSL                  Condition
     SAR measured                                        250 mW input power                     12.6 W/kg
     SAR for nominal Head TSL parameters                    normalized to 1W          49.5 W/kg + 17.0 % (k=2)


     SAR averaged over 10 cm* (10 g) of Head TSL                 condition
     SAR measured                                        250 mW input power                     5.97 W/kg
     SAR for nominal Head TSL parameters                    normalized to 1W          23.6 W/kg + 16.5 % (k=2)


Body TSL parameters
   The followingparameters and calculations were applied.
                                                               Temperature       Permittivity          Conductivity
     Nominal Body TSL parameters                                  22.0 °C            52.9              1.81 mho/m
     Measured Body TSL parameters                              (22.0 + 0.2) °C    52.0 x 6 %         1.85 mho/m + 6 %
     Body TSL temperature change during test                      <0.5 °C            ————                    ————


SAR result with Body TSL

     SAR averaged over 1 cm* (1 g) of Body TSL                   Condition
     SAR measured                                        250 mW input power                     12.0 W/kg
     SAR for nominal Body TSL parameters                    normalized to 1W          47.3 Wikg * 17.0 % (k=2)

     SAR averaged over 10 cm* (10 g) of Body TSL                 condition

     SAR measured                                        250 mW input power                     5.77 Wikg
      SAR for nominal Body TSL parameters                   normalized to 1W          22.9 Wikg + 16.5 % (k=2)



Certificate No: D2300V2—1004_Jan18                    Page 3 of 8


Appendix (Additional assessments outside the scope of SCS 0108)

Antenna Parameters with Head TSL

      Impedance, transformed to feed point                                           48.1 Q — 3.0 jQ
      Return Loss                                                                       — 28.7 dB



Antenna Parameters with Body TSL

      Impedance, transformed to feed point                                           44.0 Q — 1.9 jQ

      Return Loss                                                                       — 23.5 dB




General Antenna Parameters and Design

      Electrical Delay (one direction)                                                   1.165 ns

After long term use with 100W radiated power, only a slight warming of the dipole near the feedpoint can be measured.

The dipole is made of standard semirigid coaxial cable. The center conductor of the feeding line is directly connected to the
second arm of the dipole. The antenna is therefore short—circuited for DC—signals. On some of the dipoles, small end caps
are added to the dipole arms in order to improve matching when loaded according to the position as explained in the
"Measurement Conditions" paragraph. The SAR data are not affected by this change. The overall dipole length is still
according to the Standard.
No excessive force must be applied to the dipole arms, because they might bend or the soldered connections near the
feedpoint may be damaged.



Additional EUT Data

      Manufactured by                                                                    SPEAG
      Manufactured on                                                              December 23, 2006




Certificate No: D2300V2—1004_Jan18                        Page 4 of 8


DASY5 Validation Report for Head TSL

                                                                                  Date: 17.01.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT : Dipole 2300 MHz; Type: D2300V2; Serial: D2300V2 — SN:1004

Communication System: UID 0 — CW; Frequency: 2300 MHz
Medium parameters used: £ = 2300 MHz; 0 = 1.71 S/m; &, = 38.4; p = 1000 kg/m‘
Phantom section: Flat Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

   e   Probe: EX3DV4 — SN7349; ConvF(8.08, 8.08, 8.08); Calibrated: 30.12.2017;

   e   Sensor—Surface: 1.4mm (Mechanical Surface Detection)

   e   Electronics: DAF4 Sn601; Calibrated: 26.10.2017

   e   Phantom: Flat Phantom 5.0 (front); Type: QD 000 P50 AA; Serial: 1001

   e   DASY52 52.10.0(1446); SEMCAD X 14.6.10(7417)


Dipole Calibration for Head Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 113.5 V/m; Power Drift = —0.06 dB
Peak SAR (extrapolated) = 24.9 W/kg
SAR(1 g) = 12.6 W/kg; SAR(10 g) = 5.97 W/kg
Maximum value of SAR (measured) = 19.7 W/kg




       —14.32


        —8.64


        —12.95


        —17.27


        —21.59
                   0 dB = 19.7 W/kg = 12.94 dBW/kg




Certificate No: D2300V2—1004_Jan18             Page 5 of 8


Impedance Measurement Plot for Head TSL




                                                                     17 Jan 2018         10:16:35
         CHJ s11i     1i U FS           1: 48.070 &   —3.0176 h    22.932 pF            2 300.000 000 MHz
                                                      .~'-—T_—>_




         Del

         CA




         AV
         159


         H1a

          CH2




         CA




         Av
         16

         H1d

                    START 2 10990.000 000 MHz                                  STOP 2    $090.000 00n MHz




Certificate No: D2300V2—1004_Jan18                       Page 6 of 8


DASY5 Validation Report for Body TSL

                                                                                  Date: 17.01.2018

Test Laboratory: SPEAG, Zurich, Switzerland

DUT : Dipole 2300 MHz; Type: D2300V2; Serial: D2300V2 — SN:1004

Communication System: UID 0 — CW; Frequency: 2300 MHz
Medium parameters used: f = 2300 MHz; 0 = 1.85 S/m; s = 52; p = 1000 kg/m3
Phantom section: Flat Section
Measurement Standard: DASYS5 (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

   e   Probe: EX3DV4 — SN7349; ConvF(8.08, 8.08, 8.08); Calibrated: 30.12.2017;

   e   Sensor—Surface: 1.4mm (Mechanical Surface Detection)

   e   Electronics: DAF4 Sn601; Calibrated: 26.10.2017

   e   Phantom: Flat Phantom 5.0 (back); Type: QD 000 P50 AA; Serial: 1002

   e   DASY52 52.10.0(1446); SEMCAD X 14.6.10(7417)


Dipole Calibration for Body Tissue/Pin=250 mW, d=10mm/Zoom Scan (7x7x7)/Cube 0:
Measurement grid: dx=5mm, dy=5mm, dz=5mm
Reference Value = 105.5 V/m; Power Drift = —0.02 dB
Peak SAR (extrapolated) = 23.0 W/kg
SAR(1 g) = 12 W/kg; SAR(10 g) = 5.77 W/kg
Maximum value of SAR (measured) = 18.2 W/kg


       dB



       —4.00


       —8.00


        —12.00


        —16.00


        —20.00
                   0 dB = 18.2 W/kg = 12.60 dBW/kg




Certificate No: D2300V2—1004_Jan18             Page 7 of 8


Impedance Measurement Plot for Body TSL




                                                                                                                   17 Jan 2018      109:15:56
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                                                                                     sXA
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          16°                                                               *%                   4           x

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          CA




          Av
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                       START 2 100.000 000 MHz                                                                               STOP 2 $99.000 000 MHz




Certificate No: D2300V2—1004_Jan1t8                                                  Page 8 of 8



Document Created: 2018-11-15 18:47:57
Document Modified: 2018-11-15 18:47:57

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