HAC 14.4-5

FCC ID: BCG-E2816A

Test Report

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FCCID_2345721

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


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

Client       UL CCS USA                                                                         Certificate No: CD835V3—1175_May14

CALIBRATION CERTIFICATE

 Object                                CD835V3 — SN: 1175


 Calibration procedure(s)              QA CAL—20.v6
                                       Calibration procedure for dipoles in air



 Calibration date:                     May 19, 2014




 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 EPM—442A                    GB37480704                09—Oct—13 (No. 217—01827)                             Oct—14
 Power sensor HP 8481A                   US37292783                09—Oct—13 (No. 217—01827)                             Oct—14
 Power sensor HP 8481A                   MY41092317                09—Oct—13 (No. 217—01828)                             Oct—14
 Type—N mismatch combination             SN: 5047.2 / 06327        03—Apr—14 (No. 217—01921)                             Apr—15
 Probe ERSDVE6                           SN: 2336                  30—Dec—13 (No. ER3—2336_Dec13)                        Dec—14
 Probe H3DV6                             SN: 6065                  30—Dec—13 (No. H3—6065_Dec13)                         Dec—14
  DAE4                                   SN: 781                   13—Sep—13 (No. DAE4—781_Sep13)                         Sep—14


 Secondary Standards                     ID #                      Check Date (in house)                                  Scheduled Check
  Power meter Agilent 4419B              SN: GB42420191            09—Oct—09 (in house check Oct—13)                      In house check: Oct—15
  Power sensor HP E4412A                 SN: MY41495277            01—Apr—08 (in house check Oct—13)                      In   house check:   Oct—15
  Power sensor HP 8482A                  SN: US37295597            09—Oct—09 (in house check Oct—13)                      In   house check:   Oct—15
  Network Analyzer HP 8753E              US37390585                18—Oct—01 (in house check Oct—13)                      In   house check:   Oct—14
  RF generator R&S SMT—O6                SN: 832283/011            27—Aug—12 (in house check Oct—13)                      In   house check:   Oct—16

                                         Name                                   Function                                  Signature
  Calibrated by:                         Israe El—Naouq                         Laboratory Technician



 Approved by:                            Fin Bomholt                            Deputy Technical Manager                             /7/ p
                                                                                                                      7. l//%;          2


                                                                                                                         Issued: May 20, 2014
  This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: CD835V3—1175_May14                           Page 1 of 5


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


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


Reference
     #   ANSI—C63.19—2011
         American National Standard, Methods of Measurement of Compatibility between Wireless Communications
         Devices and Hearing Aids.
Methods Applied and Interpretation of Parameters:
     #    Coordinate System: y—axis is in the direction of the dipole arms. z—axis is from the basis of the antenna
          (mounted on the table) towards its feed point between the two dipole arms. x—axis is normal to the other axes.
          In coincidence with the standards [1], the measurement planes (probe sensor center) are selected to be at a
         distance of 15 mm above the top metal edge of the dipole arms.
          Measurement Conditions: Further details are available from the hardcopies at the end of the certificate. All
         figures stated in the certificate are valid at the frequency indicated. The forward power to the dipole connector
          is set with a calibrated power meter connected and monitored with an auxiliary power meter connected to a
          directional coupler. While the dipole under test is connected, the forward power is adjusted to the same level.
          Antenna Positioning: The dipole is mounted on a HAC Test Arch phantom using the matching dipole
          positioner with the arms horizontal and the feeding cable coming from the floor. The measurements are
          performed in a shielded room with absorbers around the setup to reduce the reflections.
          It is verified before the mounting of the dipole under the Test Arch phantom, that its arms are perfectly in a
          line. It is installed on the HAC dipole positioner with its arms parallel below the dielectric reference wire and
          able to move elastically in vertical direction without changing its relative position to the top center of the Test
          Arch phantom. The vertical distance to the probe is adjusted after dipole mounting with a DASYS5 Surface
          Check job. Before the measurement, the distance between phantom surface and probe tip is verified. The
          proper measurement distance is selected by choosing the matching section of the HAC Test Arch phantom
          with the proper device reference point (upper surface of the dipole) and the matching grid reference point (tip
          of the probe) considering the probe sensor offset. The vertical distance to the probe is essential for the
          accuracy.
          Feed Point Impedance and Return Loss: These parameters are measured using a HP 8753E Vector Network
          Analyzer. The impedance is specified at the SMA connector of the dipole. The influence of reflections was
          eliminating by applying the averaging function while moving the dipole in the air, at least 70cm away from any
          obstacles.
          E—field distribution: E field is measured in the x—y—plane with an isotropic ERS3D—field probe with 100 mW
          forward power to the antenna feed point. in accordance with [1], the scan area is 20mm wide, its length
          exceeds the dipole arm length (180 or 90mm). The sensor center is 15 mm (in z) above the metal top of the
          dipole arms. Two 3D maxima are available near the end of the dipole arms. Assuming the dipole arms are
          perfectly in one linge, the average of these two maxima (in subgrid 2 and subgrid 8) is determined to
          compensate for any non—parallelity to the measurement plane as well as the sensor displacement. The E—field
          value stated as calibration value represents the maximum of the interpolated 3D—E—field, in the plane above
          the dipole surface.




 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: CD835V3—1175_May14                      Page 2 of 5


Measurement Conditions
    DASY system configuration, as far as not given on page 1.
     DASY Version                                                DASY5                           V52.8.8
      Phantom                                                HAC Test Arch
      Distance Dipole Top — Probe Center                         15mm
     Scan resolution                                         dx, dy = 5 mm
      Frequency                                          835 MHz + 1 MHz
      Input power drift                                         < 0.05 dB



Maximum Field values at 835 MHz

      E—field 15 mm above dipole surface                            condition            Interpolated maximum
      Maximum measured above high end                         100 mW input power         107.2 V/m = 40.60 dBV/m


      Averaged maximum above arm                              100 mW input power         107.0 V/m + 12.8 % (k=2)



Appendix

Antenna Parameters

      Frequency                                                   Return Loss                  Impedance

      800 MHz                                                        16.4 dB                 42.0 O — 11.5 jQ
      835 MHz                                                        26.5 dB                  49.3 Q + 4.7 jQ
      900 MHz                                                        17.6 dB                 56.9 Q — 12.4 jQ
      950 MHz                                                        19.7 dB                  47.8 0 + 9.9 jQQ
      960 MHz                                                        14.6 dB                 56.4 Q + 19.1 jQ



3.2 Antenna Design and Handling

The calibration dipole has a symmetric geometry with a built—in two stub matching network, which leads to the
enhanced bandwidth.
The dipole is built of standard semirigid coaxial cable. The internal matching line is open ended. The antenna is
therefore open for DC signals.
Do not apply force to dipole arms, as they are liable to bend. The soldered connections near the feedpoint may be
damaged. After excessive mechanical stress or overheating, check the impedance characteristics to ensure that the
internal matching network is not affected.

After long term use with 40W radiated power, only a slight warming of the dipole near the feedpoint can be measured.




Certificate No: CD835V3—1175_May14             Page 3 of 5


Impedance Measurement Plot




                                                               19 May 2014     13:341:34
         CH1i   S11i     LOG       5 dB/ REF —15 dB           2:—26,.458 dB   835.000 A0d MHz


                                                                                                  CH1 Mark ers

                                                                                                  1:—16.390 de
         Cor                                                                                      $00.000 MHz

                                                                                                  3:—17.570 dB
                                                                                                   900.000 MHz

                                                                                                  4:—19.703 dB
                                                                                                   950.000 MHz
         Av
         169                                                                                      5:—14.609 dB
                                                                                                   960.000 MHz

         H1d

         [cH2] s11       1 U FS                                               8$35.000 @ona MHz




         Del                                                                                      CH2 Markers
                                                                                                   11 41.977 o
         Cor                                                                                         —11.529
                                                                                                  800.9000 MHz




         Av
         16"
                                                                                                   3: 56.428
                                                                                                      19.055
         H1d
                                                                                                  960.000 MH

                       START 335.000 000 MHz                          STOP 1 335.050 000 MHz




Certificate No: CD835V3—1175_May14              Page 4 of 5


DASY5 E—field Result

                                                                                               Date: 19.05.2014


Test Laboratory: SPEAG Lab2

DUT: HAC—Dipole 835 MHz; Type: CD835V3; Serial: CD835V3 — SN: 1175

Communication System: UID 0 — CW; Frequency: 835 MHz
Medium parameters used: 0 = 0 S/m, &, = 1; p = 1000 kg/m‘
Phantom section: RF Section
Measurement Standard: DASY5 (IEEE/IEC/ANSI C€63.19—2011)

DASY52 Configuration:

    e   Probe: ER3DV6 — SN2336; ConvF(1, 1, 1); Calibrated: 30.12.2013;
    e   Sensor—Surface: (Fix Surface)
    e   Electronics: DAE4 Sn781; Calibrated: 13.09.2013
    e   Phantom: HAC Test Arch with AMCC; Type: SD HAC PO1 BA; Serial: 1070
    e   DASY52 52.8.8(1222); SEMCAD X 14.6.10(7331)



Dipole E—Field measurement @ 835MHz/E—Scan — 835MHz d=15mm/Hearing Aid Compatibility Test (41x361x1):
Interpolated grid: dx=0.5000 mm, dy=0.5000 mm
Device Reference Point: 0, 0, —6.3 mm
Reference Value = 123.3 V/m; Power Drift = 0.00 dB
Applied MIF = 0.00 dB
RF audio interference level = 40.60 dBV/m
Emission category: M3
                                            MIF scaled E—field

                                            Grid 1 M3      Grid 2 M3      Grid 3 M3
                                            40.28 dBV/m|40.6 dBV/m        40.53 dBV/m

                                            Grid 4 M4                     Grid 6 M4
                                            35.86 dBV/m                   36.02 dBV/m

                                            Grid 7 M3                     Grid 9 M3
                                            40.33 dBV/m|40.56 dBV/m 40.43 dBV/m




                          —1.92


                          —3.84


                           —5.77


                          ~7.69


                           —9.61

                                   0 dB = 107.2 V/m = 40.60 dBV/m




Certificate No: CD835V3—1175_May14                 Page 5 of 5


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


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      UL CCS USA                                                                         Certificate No: CD1880V3—1159_May14


CALIBRATION CERTIFICATE
 Object                               CD1880V3 — SN: 1159


 Calibration procedure(s)             QA CAL—20.v6
                                      Calibration procedure for dipoles in air



 Calibration date:                     May 19, 2014



 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 EPM—442A                   GB37480704                09—Oct—13 (No. 217—01827)                             Oct—14
 Power sensor HP 8481A                  US37292783                09—Oct—13 (No. 217—01827)                             Oct—14
 Power sensor HP 8481A                  MY41092317                09—Oct—13 (No. 217—01828)                             Oct—14
 Type—N mismatch combination            SN: 5047.2 / 06327        03—Apr—14 (No. 217—01921)                             Apr—15
 Probe ER3DV6                           SN: 2336                  30—Dec—13 (No. ER3—2336_Dec13)                        Dec—14
 Probe H3DV6                            SN: 6065                  30—Dec—13 (No. H3—6065_Dec13)                         Dec—14
 DAE4                                   SN: 781                   13—Sep—13 (No. DAE4—781_Sep13)                        Sep—14


 Secondary Standards                   | 1D #                     Check Date (in house)                                 Scheduled Check
 Power meter Agilent 4419B              SN: GB42420191            09—Oct—09 (in house check Oct—13)                     In   house check:   Oct—15
 Power sensor HP E4412A                 SN: MY41495277            01—Apr—08 (in house check Oct—13)                     In   house check:   Oct—15
 Power sensor HP 8482A                  SN: US37295597            09—Oct—09 (in house check Oct—13)                     In   house check:   Oct—15
 Network Analyzer HP 8753E              US37390585                18—Oct—01 (in house check Oct—13)                     In   house check:   Oct—14
 RF generator R&S SMT—O6                SN: 832283/011            27—Aug—12 (in house check Oct—13)                     In   house check:   Oct—16

                                        Name                                   Function                                  Signature
 Calibrated by:                         Israe El—Naouq                         Laboratory Technician

                                                                                                               O/%ca,. éWM,
                                                                                                                   /. uho                       y
 Approved by:                           Fin Bomholt                            Deputy Technical Manager             e           /7’             z,~



                                                                                                                        Issued: May 20, 2014
 This calibration certificate shall not be reproduced except in full without written approval of the laboratory.


Certificate No: CD1880V3—1159_May14                         Page 1 of 7


Calibration Laboratory of                                     \\\“\‘@7”@                        Schweizerischer Kalibrierdienst
Schmid & Partner                                            iiafifiié                             Service suisse d‘étalonnage
   Engineering AG                                           Z zm s                              Servizio svizzero di taratura
Zeughausstrasse 43, 8004 Zurich, Switzerland                 7A¥4evVe
                                                               //_\\ S                          Swiss Calibration Service
                                                               ,I/’llul u\\‘\\\


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


Reference
     e   ANS1—C63.19—2011
         American National Standard, Methods of Measurement of Compatibility between Wireless Communications
         Devices and Hearing Aids.
Methods Applied and Interpretation of Parameters:
     e    Coordinate System: y—axis is in the direction of the dipole arms. z—axis is from the basis of the antenna
          (mounted on the table) towards its feed point between the two dipole arms. x—axis is normal to the other axes.
         In coincidence with the standards [1], the measurement planes (probe sensor center) are selected to be at a
         distance of 15 mm above the top metal edge of the dipole arms.
     *   Measurement Conditions: Further details are available from the hardcopies at the end of the certificate. All
         figures stated in the certificate are valid at the frequency indicated. The forward power to the dipole connector
         is set with a calibrated power meter connected and monitored with an auxiliary power meter connected to a
         directional coupler. While the dipole under test is connected, the forward power is adjusted to the same level.
     e   Antenna Positioning: The dipole is mounted on a HAC Test Arch phantom using the matching dipole
          positioner with the arms horizontal and the feeding cable coming from the floor. The measurements are
          performed in a shielded room with absorbers around the setup to reduce the reflections.
          It is verified before the mounting of the dipole under the Test Arch phantom, that its arms are perfectly in a
          line. It is installed on the HAC dipole positioner with its arms parallel below the dielectric reference wire and
          able to move elastically in vertical direction without changing its relative position to the top center of the Test
          Arch phantom. The vertical distance to the probe is adjusted after dipole mounting with a DASYS5 Surface
          Check job. Before the measurement, the distance between phantom surface and probe tip is verified. The
          proper measurement distance is selected by choosing the matching section of the HAC Test Arch phantom
          with the proper device reference point (upper surface of the dipole) and the matching grid reference point (tip
          of the probe) considering the probe sensor offset. The vertical distance to the probe is essential for the
          accuracy.
     e    Feed Point Impedance and Return Loss: These parameters are measured using a HP 8753E Vector Network
          Analyzer. The impedance is specified at the SMA connector of the dipole. The influence of reflections was
          eliminating by applying the averaging function while moving the dipole in the air, at least 70cm away from any
          obstacles.
     *    E—field distribution: E fietd is measured in the x—y—plane with an isotropic ER3D—field probe with 100 mW
          forward power to the antenna feed point. In accordance with [1], the scan area is 20mm wide, its length
          exceeds the dipole arm length (180 or 9$Omm). The sensor center is 15 mm (in z) above the metal top of the
          dipole arms. Two 3D maxima are available near the end of the dipole arms. Assuming the dipole arms are
          perfectly in one line, the average of these two maxima (in subgrid 2 and subgrid 8) is determined to
          compensate for any non—parallelity to the measurement plane as well as the sensor displacement. The E—field
          value stated as calibration value represents the maximum of the interpolated 3D—E—field, in the plane above
          the dipole surface.




 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: CD1880V3—1159_May14                     Page 2 of 7


Measurement Conditions
   DASY system configuration, as far as not given on page 1.
     DASY Version                                               DASY5                      V52.8.8
     Phantom                                             HAC Test Arch
     Distance Dipole Top — Probe Center                         15 mm
     Scan resolution                                         dx, dy = 5 mm
                                                        1730 MHz +1 MHz
     Frequency                                          1880 MHz x 1 MHz
     Input power drift                                         <0.05 dB


Maximum Field values at 1730 MHz

     E—field 15 mm above dipole surface                            condition       Interpolated maximum
     Maximum measured above high end                          100 mW input power   97.7 V/m = 39.80 dBV/m

     Maximum measured above low end                           100 mW input power   95.1 V/m = 39.57 dBV/m

     Averaged maximum above arm                               100 mW input power   96.4 V/im + 12.8 % (k=2)


Maximum Field values at 1880 MHz

     E—field 15 mm above dipole surface                            condition       Interpolated maximum
     Maximum measured above high end                          100 mW input power   90.3 V/m = 39.11 dBV/m

     Maximum measured above low end                           100 mW input power   88.5 V/m = 38.94 dBV/m

     Averaged maximum above arm                               100 mW input power   89.4 V/m + 12.8 % (k=2)




Certificate No: CD1880V3—1159_May14            Page 3 of 7


Appendix

Antenna Parameters

Nominal Frequencies

      Frequency                                                Return Loss                     Impedance
      1730 MHz                                                    34.4 dB                     48.7 ) + 1.3 jQ

      1880 MHz                                                    18.7 dB                    45.5 Q + 10.2 jQ
      1900 MHz                                                    18.9 dB                    48.6 Q + 11.1 jQ
      1950 MHz                                                    23.7 dB                     53.7 Q + 5.7 jQ
      2000 MHz                                                    24.1 dB                     45.1 Q + 3.4 jQ



3.2 Antenna Design and Handling

The calibration dipole has a symmetric geometry with a built—in two stub matching network, which leads to the
enhanced bandwidth.
The dipole is built of standard semirigid coaxial cable. The internal matching line is open ended. The antenna is
therefore open for DC signals.
Do not apply force to dipole arms, as they are liable to bend. The soldered connections near the feedpoint may be
damaged. After excessive mechanical stress or overheating, check the impedance characteristics to ensure that the
internal matching network is not affected.

After long term use with 40W radiated power, only a slight warming of the dipole near the feedpoint can be measured.




Certificate No: CD1880V3—1159_May14            Page 4 of 7


Impedance Measurement Plot




                                                                   19 May 2014     13:38:34
         CH] s1i1      Los      5 dB/REF —18 dB                   21—18.680 dB    1 880.000 000 MHz




                                                                                                      CH1 Markers

                                                                                                      1:—34.377_ dB
         Cor                                                                                           1.730090 GHz

                                                                                                      3:—18,937 dB
                                                                                                       1.30090 GHz

                                                                                                      4:—23.7 20 dB
                                                                                                       1.95090 GHz
         Av
         159                                                                                          S:—24.063 dB
                                                                                                       2,.00000 GHz

         H1d


         CH2 S11      1 U FS          2: 45.480 &    10.223 &   865.42 pH         1 $80.000 000 MHz
                                                    sem



         Del                                                                                          CH2 Markers
                                                                                                       11 48.664 &
         Cor                                                                                              1.3281 &
                                                                                                      1.73000 GHz
                                                                                                       3: 48.572 4
                                                                                                          111117 &
                                                                                                      1.9900900 GHz

         Av                                                                                            4: 53.705 ¢
         16°                                                                                              5.6641 a
                                                                                                      1.959080 GHz
                                                                                                       3: 45,.086 a
         H1d                                                                                              3.37 30 0
                                                                                                      200000 GHz

                    CENTER 1 880.000 000 MHz                                SPAN 1 a00.000 000 MHz




Certificate No: CD1880V3—1159_May14            Page 5 of 7


DASY5 E—fie!ld Result

                                                                                               Date: 19.05.2014


Test Laboratory: SPEAG Lab2

DUT: HAC Dipole 1880 MHz; Type: CD1880V3; Serial: CD1880V3 — SN: 1159

Communication System: UID 0 — CW; Frequency: 1730 MHz, Frequency: 1880 MHz
Medium parameters used: 0 = 0 S/m, &, = 1; p = 1000 kg/m3
Phantom section: RF Section
Measurement Standard: DASYS5 (IEEE/IEC/ANSI C63.19—2011)

DASY52 Configuration:

    *   Probe: ER3DV6 — SN2336; ConvF(1, 1, 1); Calibrated: 30.12.2013;
    e   Sensor—Surface: (Fix Surface)
    *   Electronics: DAE4 Sn781; Calibrated: 13.09.2013
    *   Phantom: HAC Test Arch with AMCC; Type: SD HAC PO1 BA; Serial: 1070
    *   DASY52 52.8.8(1222); SEMCAD X 14.6.10(7331)



Dipole E—Field measurement @ 1880MHz/E—Scan — 1730MHz d=15mm/Hearing Aid Compatibility Test (41x181x1):
Interpolated grid: dx=0.5000 mm, dy=0.5000 mm
Device Reference Point: 0, 0, —6.3 mm
Reference Value = 151.6 V/m; Power Drift =—0.01 dB
Applied MIF = 0.00 dB
RF audio interference level = 39.80 dBV/m
Emission category: M2
                                          MIF scaled E—field

                                          Grid 1 M2      Grid 2 M2        Grid 3 M2
                                          39.32 dBV/m|39.57 dBV/m|39.46 dBV/m

                                          Grid 4 M2                       Grid 6 M2
                                          37.52 dBV/m                     37.79 dBV/m

                                          Grid 7 M2      Grid 8 M2        Grid 9 M2
                                          39.56 dBV/m|39.8 dBV/m          |39.7 dBV/m




Certificate No: CD1880V3—1159_May14              Page 6 of 7


Dipole E—Field measurement @ 1880MHz/E—Scan — 1880MHz d=15mm/Hearing Aid Compatibility Test (41x181x1): Interpolated
grid: dx=0.5000 mm, dy=0.5000 mm
Device Reference Point: 0, 0, —6.3 mm
Reference Value = 140.5 V/m; Power Drift = 0.01 dB
Applied MIF = 0.00 dB
RF audio interference level = 39.11 dBV/m
Emission category: M2
                                            MIF scaled E—field

                                            Grid 1 M2      Grid 2 M2    Grid 3 M2
                                            38.71 dBV/m|38.94 dBV/m |38.84 dBV/m

                                            Grid 4 M2                   Grid 6 M2
                                            36.65 dBV/m                 36.8 dBV/m

                                            Grid 7 M2      Grid 8 M2    Grid 9 M2
                                            38.92 dBV/m|39.11 dBV/m|38.97 dBV/m




                —1.06


                —2.13


                —3.19


                —~4.26


                —5.32

                                                        0 dB = 97.72 V/m = 39.80 dBV/m




Certificate No: CD1880V3—1159_May14                Page 7 of 7



Document Created: 2014-07-18 23:51:29
Document Modified: 2014-07-18 23:51:29

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