HAC RF Report

FCC ID: V65SCP-27H

Test Report

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FCCID_1073296

                                                                                  FCC ID: V65SCP-27H




                             Hearing Aid Compatibility

                         FCC 47 CFR section 20.19 Test Report


                      Dual-Band CDMA Cellular Phone with Bluetooth

                                            FCC ID: V65SCP-27H
                                             Model: SCP-2700



                                      STATEMENT OF CERTIFICATION

        The data, data evaluation and equipment configuration represented herein are a true and accurate
        representation of the measurements of the sample’s HAC RF emissions characteristics as of the
        dates and at the times of the test under the conditions herein specified.

                                        STATEMENT OF COMPLIANCE
        This product was tested in accordance with the measurement procedures specified in ANSI
        C63.19-2006 and has been shown to be capable of compliance with the technical requirements of
        FCC 47 CFR section 20.19.



                                            Report No:    KWC-V65-20.19R-1208-R0

                                 Report Prepared for:     KYOCERA Corporation

                                                          KYOCERA SANYO Telecom, Inc.
                                                          21605 Plummer Street
                                                          Chatsworth, CA 91311 United States

                                          Date of Test:   December 12 – December 13, 2008

                                                          Kyocera Wireless Corp.
                                   Test performed by:     10300 Campus Point Drive
                                                          San Diego, CA 92121

                                  Report Prepared by:     Binh Thai, Test Technician

                  Report Prepared and Reviewed by:        Ngoc-Thi Nguyen, Regulatory Engineer

                 Report Reviewed and Approved by:         C.K. Li, Director of Regulatory Engineering




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                                                                TABLE OF CONTENTS



1      Introduction ......................................................................................................................................... 3
2      Equipment Under Test (EUT)............................................................................................................. 3
3      Summary of Test Results................................................................................................................... 3
4     Test conditions ................................................................................................................................... 4
    4.1   Ambient Conditions ....................................................................................................................... 4
    4.2   RF characteristics of the test site .................................................................................................. 4
    4.3   Test Signal, Frequencies and Output Power ................................................................................ 4
    4.4   EUT Operating Conditions............................................................................................................. 5
5     Description of the test equipment .................................................................................................... 5
    5.1  Test Equipment Used .................................................................................................................... 5
    5.2  Near Field Measurement System..................................................................................................6
    5.3  Isotropic E-Field Probe .................................................................................................................. 6
    5.4  Isotropic H-Field Probe.................................................................................................................. 7
6      System Validation ............................................................................................................................... 8
7     Description Of The Test Procedure .................................................................................................. 9
    7.1    Test Positions ................................................................................................................................ 9
    7.2    RF Emission Measurements Reference and Plane ...................................................................... 9
    7.3    RF Emissions Measurement Procedures...................................................................................... 10
    7.4    Probe Modulation Factor (PMF) .................................................................................................... 11
      7.4.1    Measurement Procedures...................................................................................................... 11
      7.4.2    PMF Test Results................................................................................................................... 12
      7.4.3    PMF Peak Power Measurement Plots ................................................................................... 13
8      Emission Data Extraction and Post processing.............................................................................. 16
9      Measurement Uncertainty.................................................................................................................. 17
10 RF Emissions Tests............................................................................................................................ 18
  10.1 Emission Limits.............................................................................................................................. 18
  10.2 CDMA 800 Test Results ................................................................................................................ 19
  10.3 CDMA 1900 Test Results .............................................................................................................. 20
  10.4 Worst-Case Configuration Evaluation ........................................................................................... 21
    10.4.1 Peak Reading 360o Probe Rotation at Azimuth axis.............................................................. 21
11 Appendix A: Probe Calibration Certification ................................................................................... 22
12 Appendix B: System Validation Plots............................................................................................... 24
13 Appendix C: Test Results/Plots ........................................................................................................ 24
14 Appendix D: Photo Test Setup .......................................................................................................... 24




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1       Introduction

        This test report describes the Hearing Aid Compatibility (HAC) measurement of a wireless portable
        device manufactured by Kyocera Wireless Corp. (KWC). These measurements were performed for
        compliance with the rules and regulations of the U.S. Federal Communications Commission (FCC).
        The testing was performed in accordance with ANSI C63.19-2006.

        This report covers test and data on:

                 X     RF Emissions                     ANSI C63.19 Clause 4

                       T-Coil                           ANSI C63.19 Clause 6



2       Equipment Under Test (EUT)

                                                     KYOCERA Corporation
                                                     KYOCERA SANYO Telecom, Inc.
          Applicant:                                 21605 Plummer Street
                                                     Chatsworth California
                                                     United States 91311
          Product:                                   Dual-Band CDMA Cellular Phone with Bluetooth
          FCC ID:                                    V65SCP-27H
          Model Number:                              SCP-2700
          EUT Serial Number:                         2700D307
          Type:                                      [X ] Prototype, [ ] Pre-Production, [ ] Production
          Device Category:                           Portable
          RF Exposure Environment:                   General Population / Uncontrolled
          Antenna:                                   Internal Antenna
          Detachable Antenna:                        No
          External Input:                            Audio/Digital Data
          Quantity:                                  Quantity production is planned
          Modes:                                              800 CDMA                   1900 CDMA
          Multiple Access Scheme:                               CDMA                       CDMA
          TX Frequency (MHz):                                 824 – 849                  1850 - 1910
          Rated RF Conducted Output Power                        24.5                        24.5
          (dBm)



3       Summary of Test Results

                                               ANSI C63.19 (2005)
                                               Section 4 RF Emissions
                     Test                Test Results                     Overall Category
          E-Field Emissions                     M4
                                                                                   M4
          H-Field Emissions                     M4



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4       Test conditions

4.1     Ambient Conditions
        All tests were performed under the following environmental conditions:

          Ambient Temperature:                        23 ± 2 Degrees C
          Tissue simulating liquid temperature:       22 ± 1 Degrees C
          Relative Humidity (RH):                     0% <RH < 80%
          Atmospheric Pressure:                       101.3kPa + 10 to –5kPa


4.2     RF characteristics of the test site
        All HAC measurements were performed inside a shielded room that provide isolation from external
        EM fields, with the RF ambient at least 20 dB below the intended measurement limits.


4.3     Test Signal, Frequencies and Output Power

        Peak and Average conducted power were measured for each mode for comparison. RC3 SO55 was
        chosen for worst-case power configuration.



               CONFIGURATION                              CONDUCTED POWER (dBm)
                                                      CDMA 800                      CDMA 1900
                                                        Ch 383                         Ch 600
                                                  Peak       Average             Peak       Average
         SO2, RC1 Full Rate                       28.57        24.64             28.44        24.58
         SO2, RC3 Full Rate                       28.25        24.62             28.19        24.55
         SO55, RC1 Full Rate                      28.68        24.62             28.51        24.60
         SO55, RC3 Full Rate                      28.88        24.68             28.59        24.62
         TDSO SO32, RC3 (FCH +SCH)                28.37        24.65             28.15        24.56
         Full Rate
         TDSO SO32, RC3 (-SCH) Full               28.36            24.64         28.35        24.59
         Rate




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During tests, the EUT was put in in-call mode and controlled by a CDMA simulator to generate the required
signal and power using the configuration below.

          Protocol:                            6 (IS-2000)
          Radio Configuration:                 3
          Power Control:                       All Up Bits
          Service Option:                      55
          Data Rate:                           Full

        In all operating modes, the phone was set to rate maximum RF power level and the measurements
        were performed on low, mid and high channels.

        The measurement system measures power drift during HAC testing by comparing E/H-field in the
        same location at the beginning and at the end of measurement. These records were used to monitor
        stability of power output during tests. Conducted RF power measurements were also performed
        before and after each HAC measurements to confirm the output power.

4.4     EUT Operating Conditions

        The EUT was tested with the following configurations and conditions, if applicable:

          X   Fully charged standard as supplied with the handset
          X   At ear use position.
              Both retracted and extended antenna positions
          X   Back-light tested ON and OFF
          X   Simultaneous transmission with Bluetooth transmitter ON


5       Description of the test equipment

5.1     Test Equipment Used
        Below is a list of the calibrated equipment used for the measurements:

         Description                    Manufacturer           Model           Serial         Cal Due
                                                              Number          Number           Date
         Power Meter                      Giga-tronics         8541C         1831038          07/15/09
         Signal Generator               Hewlett Packard       E4421B       US38440337         07/14/09
         Radio Communication                Rohde &           CMU200          101328          03/10/09
         Tester                             Schwarz
         Data Acq                            Speag             DAE4             530           04/15/09
         E-field Probe                       Speag            ER3DV6           2341           04/17/09
         H-field Probe                       Speag             H3DV6           6123           08/18/09
         Dipole Antenna (835MHz)             Speag           CD835V3           1020           04/26/09
         Dipole Antenna                      Speag           CD1880V3          1015           04/26/09
         (1880MHz)
         Spectrum Analyzer              Hewlett Packard        8594E       3710A04899         02/27/10

        The calibration certificates of E-field and H-field probes are attached in Appendix A.



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5.2   Near Field Measurement System

      The measurements were performed with Dasy4 automated near-field scanning system comprised of
      high precision robot, robot controller, computer, near-field probe, probe alignment sensor, non-
      conductive phone positioner, Test Arch and software extension. The overall expanded uncertainty
      (K=2) of the measurement system is ±10.9% and ±14.7% for H-field and E-field resp. The
      measurement uncertainty budget is given in section 6.

5.3   Isotropic E-Field Probe

       Model                        ER3DV6
       Construction                 One dipole parallel, two dipoles normal to probe axis
                                    Built-in shielding against static charges
                                    PEEK enclosure material (resistant to organic solvents, e.g.,
                                    glycolether)
       Calibration                  In air from 100 MHz to 3.0 GHz (absolute accuracy ± 6%; k=2)
       Frequency                    100MHz to 6 GHz
                                    Linearity: ± 0.2dB (100MHz to 3GHz)
       Directivity                  ± 0.2 dB in air (rotation around probe axis)
                                    ± 0.4 dB in air (rotation normal to probe axis)
       Dynamic Range                2 V/m to > 1000 V/m
                                    Linearity: ± 0.2 dB
       Dimensions                   Overall length: 330 mm (Tip: 16 mm)
                                    Tip diameter: 8 mm (Body: 12 mm)
                                    Distance from probe tip to dipole centers: 2.5 mm
       Application                  General near-field measurements up to 6 GHz
                                    Field component measurements
                                    Fast automatic scanning in phantoms




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5.4   Isotropic H-Field Probe

       Model                        H3DV6
       Construction                 Three concentric loop sensors with 3.8 mm loop diameters
                                    Resistively loaded detector diodes for linear response
                                    Built-in shielding against static charges
                                    PEEK enclosure material (resistant to organic solvents, e.g.,
                                    glycolether)
       Frequency                    200 MHz to 3 GHz (± 6.0%, k=2); Output linearized
       Directivity                  ± 0.25 dB (spherical isotropy error)
       Dynamic Range                10 mA/m to 2 A/m at 1 GHz
       E-Field Interference         < 10% at 3 GHz (for plane wave)
       Dimensions                   Overall length: 330 mm (Tip: 40 mm)
                                    Tip diameter: 6 mm (Body: 12 mm)
                                    Distance from probe tip to dipole centers: 3 mm
       Application                  General magnetic near-field measurements up to 3 GHz
                                    Field component measurements
                                    Surface current measurements
                                    Measurements in air or liquids
                                    Low interaction with the measured field




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6       System Validation

        The manufacturer calibrates the probes annually. The HAC measurements of the device were done
        within 24 hours of system accuracy verification, which was done using calibration dipoles.
        Unmodulated continuous wave of power level of 20dBm was supplied to a dipole antenna placed
        under Test Arch. The measurement probes are positioned over the illuminated dipole at 10mm
        distance from the top surface of the dipole element to the calibration reference point of the sensor,
        defined by the probe manufacturer.




                                            Figure 6 - System Check Setup


        The length of the dipole was scanned with both E and H-field probes and the maximum values for
        each were recorded. The validation results are in the table below and printouts of the validation test
        are attached in Appendix B. All the measured parameters were within the specification.


          Freq.        Parameter         Target,     Measured       Delta       Limit      Test date
          (MHz)                          SPEAG                       (%)         (%)

                     E dB(V/m)            165.2         153.8       -6.90        ± 25       12/12/08
                     H dB(A/m)            0.447         0.424       -5.15        ± 25       12/12/08
          836.49
                     E dB(V/m)            165.2         166.8        0.97        ± 25       12/13/08
                     H dB(A/m)            0.447         0.470        5.15        ± 25       12/13/08
                     E dB(V/m)            134.5         134.5        0.00        ± 25       12/12/08
                     H dB(A/m)            0.461         0.464        0.65        ± 25       12/12/08
          1880
                     E dB(V/m)            134.5         142.1        5.65        ± 25       12/13/08
                     H dB(A/m)            0.461         0.494        7.20        ± 25       12/13/08




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7        Description Of The Test Procedure
         The device was positioned and setup according to ANSI C63.19-2006.

7.1      Test Positions
         The device was placed on a non-conductive phone positioner under the Test Arch.

7.2      RF Emission Measurements Reference and Plane
         Figure 7.2 illustrates the references and reference plane that shall be used in the EUT emissions
         measurement:

         •   The grid is 5 cm by 5 cm area that is divided into 9 evenly sized blocks or sub-grids.
         •   The grid is centered on the audio frequency output transducer (speaker) of the EUT.
         •   The grid is in a reference plane, which is defined as the planar area that contains the highest
             point in the area of the phone that normally rests against the user's ear. It is parallel to the
             centerline of the receiver of the EUT and is defined by the points of the receiver-end of the EUT,
             which, in normal handset use, rest against the ear.
         •   The measurement plane is parallel to, and 1.0 cm in front of, the reference plane.



                              Vertical centerline of phone

      5 x 5 cm grid

                                      Horizontal centerline of
                                      acoustic output




                                              Measurement plane
                                                               1.0 cm
                                              Reference plane




                                Figure 7.2 – Measurement Reference and Plane




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7.3    RF Emissions Measurement Procedures
       Figure 7.6 shows the near field emission measurement flowchart:


                  •   Confirm proper operation of probes and
                      instrumentation
                  •   Position EUT in test position
                  •   Configure EUT TX Operation



                  •   Initialize field probe and take first reading
                  •   Scan Area
                  •   Measure Drift



                  •   Identify exclusion area and then identify
                                                                        Rescan for E or H-Field as
                      and record maximum reading in V/m or
                                                                        needed
                      A/m




                                All Configurations and
                                   Both E & H Field
                                      Scanned?


                                             Yes

                      •   Identify and record Category



                           Figure 7.3 - Near field emission measurement flowchart


1. The center of the probe was scanning to the edges of the grid. Accordingly the total area covered by the
   outside edge of the probe was the 5 cm by 5 cm area, increased by half (½) the probe diameter on all
   sides.
2. The nearest point on the probe measurement element(s) was held 1.0 cm from the EUT reference plane.
3. The probe element is that portion of the probe that is designed to receive and sense the field being
   measured.
4. The physical body of the probe housing was not used when setting this 1.0 cm distance as this would
   place the sensing elements at an indeterminate distance from the reference plane.
5. The step size of the scan is set to 5 mm or less.
6. Up to three blocks were excluded for each field measurement.
       • The center block containing the EUT output was not excluded.
       • A maximum of five blocks were excluded for both E- and H-field measurements for the EUT
           output being measured. Stated differently, the center sub-grid or block and 3 other blocks were
           common to both the E- and H-field measurements for a given grid.


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7.4      Probe Modulation Factor (PMF)

7.4.1    Measurement Procedures
         A calibration was made of the modulation response of the probe and its instrumentation chain. This
         calibration was performed with the field probe, attached to its instrumentation. The response of the
         probe system to a CW field at the frequency of interest is compared to its response to a modulated
         signal with equal peak amplitude to that of a CW signal. The field level of the test signals shall be
         more than 10 dB above the ambient level and the noise floor of the instrumentation being used. The
         ratio of the CW reading to that taken with a modulated reading was applied to the DUT
         measurements. The measurement procedures are as following:

1. Fix the field probe in a set location relative to the dipole antenna, as illustrated in Figure 7.4.
2. Setup the wireless device (EUT) with intended signal at the intended measurement frequency.
3. Record the reading of the probe measurement system.
4. Replace the wireless device with a RF signal generator producing an unmodulated CW signal and set to
   the wireless device operating frequency.
5. Set the peak power of the unmodulated signal to equal that recorded from the wireless device
6. Record the reading of the probe measurement system of the unmodulated CW signal.
7. The ratio of probe reading (CW) in step 6 to the probe reading (EUT) in step 3 is the modulation factor.




                                      Figure 7.4 - Probe Modulation Setup


The modulation factors obtained by above method shall be applied to readings taken of the actual WD, in
order to obtain an accurate peak field reading.




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7.4.2   PMF Test Results

                                                 E-Field
           Frequency      Peak Power                   Protocol
                                         Protocol                  PMF Ratio PMF (dB)
             (MHz)          (dBm)                    Reading (V/m)
                             24.98          CW             103.9
             836.49          24.97         CDMA            106.3         0.98         -0.20
                             24.95          AM             66.54         1.56          3.9
                             23.60          CW             70.76
              1880           23.62         CDMA            73.12         0.97         -0.28
                             23.63          AM             46.97         1.51          3.6
                                                 H-Field
           Frequency      Peak Power                   Protocol
                                         Protocol                  PMF Ratio PMF (dB)
             (MHz)          (dBm)                    Reading (A/m)
                             24.97          CW             0.312
             836.49          24.95         CDMA            0.319         0.98         -0.2
                             24.94          AM             0.206         1.51          3.6
                             23.82          CW             0.294
              1880           23.81         CDMA            0.305         0.96         -0.3
                             23.83          AM             0.189         1.56          3.8




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7.4.3   PMF Peak Power Measurement Plots




                                                CDMA-800




                                                CDMA-1900




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                                                 CW -800




                                                 CW -1900




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                                               80% AM -800




                                              80% AM -1900




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8       Emission Data Extraction and Post processing
        At the end of the measurements, the DASY4 system automatically evaluates the slot-averaged
        results, exclusion of the three highest sub-grid, application of the AWF factor per ANSI-C63.19
        requirements.

        The following AWF factors were used for the standard transmission protocols:

          Standard                    Technology                                  AWF
          TIA/EIA/IS-2000             CDMA                                           0
          TIA/EIA-136                 TDMA (50 Hz)                                   0
          J-STD-007                   GSM (217)                                     -5
          T1/T1P1/3GPP                UMTS (WCDMA)                                  0
                 TM
          iDEN                        TDMA(22 and 11 Hz)                            0

                               Table 7.5a - Articulation Weighting Factor (AWF)

        All DASY4 measurements are in RMS values. The Dasy4 system incorporates the crest factor of the
        signal in the computation of the RMS values. Although the software also has the capability to
        estimate the peak field by applying a square root of the crest factor value to the readings, the probe
        modulation factor was applied manually instead per ANSI C63.19 in the measurement tables in this
        report using equation:

                                 Peak Field = (DASY4 reading) x PMF


        where DASY4 reading = measurement from DASY4 in V/m or A/m
              PMF = Probe Modulation Factor in linear unit




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9       Measurement Uncertainty
        Table 9 shows the uncertainty budget for HAC free field assessment according to ANSI C63.19-2006.
        The budget is valid for the frequency range 800 MHz - 3 GHz and represents a worst-case analysis.
        For specific tests and configurations, the uncertainty could be smaller.

               Uncertainty Description          Uncert.    Prob.    Div.       Ci     Ci      Stand.       Stand.
                                                 Value     Dist.              (E)    (H)     Uncert (E)   Uncert (H)
                                                 (± %)                                         (±%)         (±%)
          Measurement system
          Probe calibration                      5.1         N      1          1      1         5.1          5.1
          Axial isotropy of the probe             4.7        R      √3         1      1         2.7          2.7
          Sensor displacement                    16.5        R      √3         1    0.145       9.5          1.4
          Boundary effects                        2.4        R      √3         1      1         1.4          1.4
          Probe linearity                         4.7        R      √3         1      1         2.7          2.7
          Scaling to Peak Envelope Power          2.0        R      √3         1      1         1.2          1.2
          System Detection limit                  1.0        R      √3         1      1         0.6          0.6
          Readout electronics                     0.3        N      1          1      1         0.3          0.3
          Response time                           0.8        R      √3         1      1         0.5          0.5
          Integration time                       2.6         R      √3         1      1         1.5          1.5
          RF ambient conditions                   3.0        R      √3         1      1         1.7          1.7
          RF Reflections                          12         R      √3         1      1         6.9          6.9
          Probe Positioner                        1.2        R      √3         1    0.67        0.7          0.5
          Probe positioning                       4.7        R      √3         1    0.67        2.7          1.8
          Extrap. and integration                 1.0        R      √3         1      1         0.6          0.6
          Test Sample Related
          Device positioning vertical             4.7        R      √3         1    0.67        2.7          1.8
          Device Positioning Lateral              1.0        R      √3         1      1         0.6          0.6
          Device Holder and Phantom               2.4        R      √3         1      1         1.4          1.4
          Power drift                             5.0        R      √3         1      1         2.9          2.9
          Phantom and Setup Related
          Phantom thickness                       2.4      R      √3      1       0.67           1.4        0.9
                                                      Combined Standard Uncertainty:            14.7        10.9
                                         Extended Standard Uncertainty on Power (k=2):          29.4        21.8
                                          Extended Standard Uncertainty on Field (k=2):         14.7        10.9
        N: Normal
        R: Rectangular

                        Table 9 - Worst-Case uncertainty budget for HAC free field assessment




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10       RF Emissions Tests

10.1     Emission Limits

         Table 10.1 shows the M-rating criteria from ANSCI C63.19. All digital transmission modes in all
         frequency bands contained in a HAC phone must meet M3 or M4 levels.


             Near                           Wireless Device RF Parameters
             Field                                           [AWF = 0]
                                   E-Field Emissions                        H-Field Emissions
           Category
                           dB(V/m) Peak           V/m Peak          dB(A/m) Peak          A/m Peak
                                                 Freq < 960 MHz
               M1          56.0 to 61.0        631.0 to 1122.0       5.6 to 10.6         1.91 to 3.39
               M2          51.0 to 56.0        354.8 to 631.0         0.6 to 5.6         1.07 to 1.91
               M3          46.0 to 51.0        199.5 to 354.8        -4.4 to 0.6         0.60 to 1.07
               M4              < 46.0              < 199.5               < -4.4             < 0.60
                                                 Freq > 960 MHz
               M1          46.0 to 51.0        199.5 to 354.8        -4.4 to 0.6         0.60 to 1.07
               M2          41.0 to 46.0        112.2 to 199.5        -9.4 to -4.4        0.34 to 0.60
               M3          36.0 to 41.0         63.1 to 112.2       -14.4 to -9.4        0.19 to 0.34
               M4              < 36.0               < 63.1               < -14.4            < 0.19

                                         Table 10.1 - RF Emission Limits




Kyocera Wireless Corp.                              Page 18 of 24    Report #: KWC-V65-20.19R-1208-R0

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10.2   CDMA 800 Test Results

                                              CDMA 800 E-Field
 Configuration:             At ear position                        Antenna          Internal
       Ch.          Back      Battery         BT   Power      Power      Dasy4       PMF       Peak     Categor
                    Light                          before      after    Reading                Field       y
                                                    Test       Test

        #                                           dBm        dBm         V/m                  V/m        M
       1013          ON      Standard      OFF      24.43     24.47       90.00      1.00      90.00       4
       383           ON      Standard      OFF      24.29     24.32      116.20      1.00      116.20      4
       777           ON      Standard      OFF      24.12     24.18       99.30      1.00      99.30       4
       383           OFF     Standard      OFF      24.29     24.32      118.10      1.00      118.10      4
  383 (Bluetooth)    OFF     Standard         ON    24.29     24.32      115.10      1.00      115.10      4
Data plots are shown in Appendix C




                                              CDMA 800 H-Field
 Configuration:             At ear position                        Antenna          Internal
       Ch.          Back      Battery         BT   Power      Power      Dasy4       PMF       Peak     Categor
                    light                          before      after    Reading                Field       y
                                                    Test       Test
        #                                           dBm        dBm         A/m                             M
       1013          ON      Standard      OFF      24.43     24.47       0.123      1.00      0.123       4
       383           ON      Standard      OFF      24.29     24.32       0.152      1.00      0.152       4
       777           ON      Standard      OFF      24.12     24.18       0.125      1.00      0.125       4
       383           OFF     Standard      OFF      24.29     24.32       0.151      1.00      0.151       4
  383 (Bluetooth)    OFF     Standard         ON    24.29     24.32       0.160      1.00      0.160       4
   383(360°)        OFF     Standard          ON    24.29     24.32       0.157      1.00      0.157       4
Data plots are shown in Appendix C




Kyocera Wireless Corp.                             Page 19 of 24   Report #: KWC-V65-20.19R-1208-R0

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10.3    CDMA 1900 Test Results

                                             CDMA 1900 E-Field
 Configuration:            At ear position                        Antenna         Internal
       Ch.         Back     Battery      BT     Power      Power       Dasy4       PMF       Peak     Categor
                   light                        before      after     Reading                Field       y
                                                 Test       Test

        #                                        dBm        dBm          V/m                 V/m          M
        25          ON      Standard    OFF      24.60      24.66       45.50      1.00      45.50        4
       600          ON      Standard    OFF      24.76      24.80       51.50      1.00      51.50        4
       1175         ON      Standard    OFF      24.81      24.84       52.80      1.00      52.80        4
       600          OFF     Standard    OFF      24.76      24.80       51.50      1.00      51.50        4

 600 (Bluetooth)    ON      Standard    ON       24.76      24.80       50.00      1.00      50.00        4
Data plots are shown in Appendix C



                                             CDMA 1900 H-Field
 Configuration:            At ear position                        Antenna         Internal
       Ch.         Back     Battery      BT     Power      Power       Dasy4       PMF       Peak     Categor
                   light                        before      after     Reading                Field       y
                                                 Test       Test

        #                                        dBm        dBm         A/m                  A/m          M
        25          ON      Standard    OFF      24.60      24.66       0.181      1.00      0.181        4
       600          ON      Standard    OFF      24.76      24.80       0.180      1.00      0.180        4
       1175         ON      Standard    OFF      24.81      24.84       0.157      1.00      0.157        4
       600          OFF     Standard    OFF      24.76      24.80       0.178      1.00      0.178        4
 600 (Bluetooth)    ON      Standard    ON       24.76      24.80       0.114      1.00      0.114        4
   600 (360°)       ON     Standard     OFF      24.76      24.80       0.118      1.00      0.118        4
Data plots are shown in Appendix C




Kyocera Wireless Corp.                            Page 20 of 24     Report #: KWC-V65-20.19R-1208-R0

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10.4   Worst-Case Configuration Evaluation

10.4.1 Peak Reading 360o Probe Rotation at Azimuth axis

       The probe was rotated 360o in the worst-case configuration. The rotation was performed at the
       location of maximum field strength in the included blocks.

                                                 CDMA 800 E-Field
        Configuration:       At ear position                  Antenna:         Internal
         Ch.    Backlight     Battery          Conducted          Peak Field   PMF        Peak Field   Category
                                                 Power

          #                                      dBm                 V/m                     V/m          M
         383       OFF        Standard           24.29               115        1.0          115          4




                                                CDMA 1900 E-Field
        Configuration:        At ear position                 Antenna:         Internal
         Ch.     Backlight      Battery         Conducted         Peak Field   PMF        Peak Field   Category
                                                  Power

          #                                       dBm                V/m                     V/m          M
         600         ON        Standard           24.76             52.30       1.0         52.30         4
       Data plots are shown in Appendix C




Kyocera Wireless Corp.                            Page 21 of 24     Report #: KWC-V65-20.19R-1208-R0

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APp NgJULEING


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        Posear mater E44199                                     GBD411233074                              1—Agr—1]£. {Ne. 217—00728}                                                                           Apr—0d
        Porer sanzor E441 2A                                    M¥A1ag42®                                 1—Apr—0£ iho 217—00726}                                                                              Apr—05
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                                                                                                                                                                                                               Isgsued: Agril 17, 2008
        This callkration certificate shall not be reproduced axooptinful without waitten approval af the Iaboratary.


                                                                                  FCC ID: V65SCP-27H




Kyocera Wireless Corp.                           Page 23 of 24    Report #: KWC-V65-20.19R-1208-R0

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12       Appendix B: System Validation Plots

(See attachment)


13       Appendix C: Test Results/Plots

(See attachment)


14       Appendix D: Photo Test Setup

(see attachment)




Kyocera Wireless Corp.                              Page 24 of 24    Report #: KWC-V65-20.19R-1208-R0

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Document Created: 2009-01-06 10:16:10
Document Modified: 2009-01-06 10:16:10

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