Test Report_20160530_v1 - PY7-PM0954_TestRpt_HAC-T-Coil

FCC ID: PY7-PM0954

Test Report

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        FCC HAC T-Coil Test Report                                              Report No. : HA620411B




     Hearing Aid Compatibility (HAC)
           T-Coil Test Report

                  APPLICANT            : Sony Mobile Communications Inc.
                  BRAND NAME           : Sony
                  FCC ID               : PY7-PM0954
                  STANDARD             : FCC 47 CFR §20.19
                                         ANSI C63.19-2011
                  HAC RATING           : T4

     We, SPORTON INTERNATIONAL INC., would like to declare that the tested sample has been
     evaluated in accordance with the procedures and shown the compliance with the
     applicable technical standards.


     The test results in this report apply exclusively to the tested model / sample. Without
     written approval of SPORTON INTERNATIONAL INC., the test report shall not be
     reproduced except in full.




     Reviewed by: Eric Huang / Deputy Manager




         Approved by: Jones Tsai / Manager



                             SPORTON INTERNATIONAL INC.
   No.52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Taoyuan City, Taiwan
                                          (R.O.C.)




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TEL : 886-3-327-3456                                               Report Issued Date : May. 10, 2016
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            FCC HAC T-Coil Test Report                                                                                                         Report No. : HA620411B

                                                               Table of Contents
1.   Attestation of Test Results ........................................................................................................................................ 4
2.   Administration Data ................................................................................................................................................... 4
3.   General Information ................................................................................................................................................... 5
     3.1    Wireless Technologies ...................................................................................................................................... 5
     3.2    Air Interface and Operating Mode..................................................................................................................... 6
     3.3    Applied Standards ............................................................................................................................................ 6
4.   HAC T-Coil .................................................................................................................................................................. 7
     4.1    T-Coil Coupling Field Intensity .......................................................................................................................... 7
     4.2    T-Coil Frequency Response ............................................................................................................................. 7
     4.3    T-Coil Signal Quality Categories ....................................................................................................................... 9
5.   Measurement System Specification ........................................................................................................................10
     5.1    System Configuration ......................................................................................................................................10
     5.2    Test Arch Phantom ..........................................................................................................................................10
     5.3    AMCC .............................................................................................................................................................. 11
     5.4    AM1D Probe .................................................................................................................................................... 11
     5.5    AMMI ...............................................................................................................................................................12
     5.6    System Hardware ............................................................................................................................................12
     5.7    Cabling of System ...........................................................................................................................................13
     5.8    Test Equipment List .........................................................................................................................................13
     5.9    Probe Calibration in AMCC ..............................................................................................................................14
     5.10 Reference Input of Audio Signal Spectrum ......................................................................................................15
     5.11 Establish Reference Level ...............................................................................................................................16
6.   T-Coil Test Procedure ...............................................................................................................................................17
     6.1    Test Process and Flow Chart ...........................................................................................................................17
     6.2    Description of EUT Test Position .....................................................................................................................20
7.   HAC T-Coil Test Results ...........................................................................................................................................21
     7.1    Frequency Response Plots .............................................................................................................................22
8.   Uncertainty Assessment ..........................................................................................................................................23
9.   References .................................................................................................................................................................24

Appendix A. Plots of T-Coil Measurement
Appendix B. DASY Calibration Certificate
Appendix C. Test Setup Photos




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TEL : 886-3-327-3456                                                                                                        Report Issued Date : May. 10, 2016
FAX : 886-3-328-4978                                                                                                        Report Version     : Rev. 02
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        FCC HAC T-Coil Test Report                                             Report No. : HA620411B

                                 Revision History
  REPORT NO.        VERSION                         DESCRIPTION                      ISSUED DATE

   HA620411B         Rev. 01   Initial issue of report                                Apr. 22, 2016

   HA620411B         Rev. 02   Updated SW Version and BT Version from 4.0 to 4.1      May. 10, 2016




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            FCC HAC T-Coil Test Report                                                      Report No. : HA620411B

1. Attestation of Test Results

Applicant Name             Sony Mobile Communications Inc.
Equipment Name             Smart phone
Brand Name                 Sony
FCC ID                     PY7-PM0954
S/N                        WUJ01M917S
HW Version                 A
SW Version                 36.0.A.1.42
EUT Stage                  Production Unit
Exposure category          General Population/Uncontrolled Exposure
HAC Rating                 T4
Date Tested                2016/03/04
Test Result                Pass
The device is compliance with HAC limits specified in guidelines FCC 47CFR §20.19 and ANSI Standard ANSI C63.19.




2. Administration Data
                                               Testing Laboratory
Test Site                         SPORTON INTERNATIONAL INC.
                                  No.52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Taoyuan City,
                                  Taiwan (R.O.C.)
Test Site Location
                                  TEL: +886-3-327-3456
                                  FAX: +886-3-328-4978
                                  Sporton Site No. :
Test Site No.
                                  SAR04-HY
                                                     Applicant
Company Name                      Sony Mobile Communications Inc.
Address                           4-12-3 Higashi-Shinagawa, Shinagawa-ku,Tokyo, 140-0002, Japan
                                                  Manufacturer
Company Name                      Sony Mobile Communications Inc.
Address                           4-12-3 Higashi-Shinagawa, Shinagawa-ku,Tokyo, 140-0002, Japan




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            FCC HAC T-Coil Test Report                                                     Report No. : HA620411B

3. General Information
3.1 Wireless Technologies
         Wireless
                                   Frequency                                  Operating Mode
       Technologies
                                                        .GSM Voice
                        850                                                            Multi-Slot Class:
                                                        .GPRS (GMSK)
GSM                     1900                                                           Class 12
                                                        .EDGE (8PSK)
                        Does device support dual transfer mode?   (No)
                                                        .AMR / RMC 12.2Kbps
                        Band 2                          .HSDPA
W-CDMA (UMTS)           Band 4
                                                        .HSUPA
                        Band 5
                                                        .DC-HSDPA
                        Band 2
                        Band 4
                        Band 5                          .QPSK
LTE (FDD)               Band 7
                                                        .16QAM
                        Band 12
                        Band 13
                        Band 17
                                                        .11b
                        2.4GHz:                         .11g
                        2412 MHz ~ 2462 MHz             .11n (HT20)
                                                        .11n (HT40)
WiFi                    5GHz:
                        5.2GHz: 5180 MHz ~ 5240 MHz     .11a
                        5.3GHz: 5260 MHz ~ 5320 MHz     .11n (HT20)
                        5.5GHz: 5500 MHz ~ 5720 MHz     .11n (HT40)
                        5.8GHz: 5745 MHz ~ 5825 MHz
Bluetooth               2.4GHz                          Version 4.1 with LE




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        FCC HAC T-Coil Test Report                                                     Report No. : HA620411B
3.2 Air Interface and Operating Mode

    Air                                        C63.19          Simultaneous                         Power
 Interface        Band MHz          Type                                                  OTT
                                               Tested           Transmitter                        Reduction
                    850                                             WLAN, BT               NA          No
                                    VO          Yes
   GSM             1900                                             WLAN, BT               NA          No
                 GPRS/EDGE          DT           No             WLAN, BT                  Yes          No
                     850                                        WLAN, BT                  NA           No
                    1750            VO          Yes             WLAN, BT                  NA           No
 WCDMA
                    1900                                        WLAN, BT                  NA           No
                    HSPA            DT           No             WLAN, BT                  Yes          No
                   Band 2                                       WLAN, BT                               No
                   Band 4                                       WLAN, BT                               No
                   Band 5                                       WLAN, BT                               No
   LTE             Band 7           DT           No             WLAN, BT                  Yes          No
                   Band 12                                      WLAN, BT                               No
                   Band 13                                      WLAN, BT                               No
                   Band 17                                      WLAN, BT                               No
                    2450                                     GSM,WCDMA,LTE                             No
                    5200                                     GSM,WCDMA,LTE                             No
  WLAN              5300            DT           No          GSM,WCDMA,LTE                Yes          No
                    5500                                     GSM,WCDMA,LTE                             No
                    5800                                     GSM,WCDMA,LTE                             No
    BT              2450            DT           No          GSM,WCDMA,LTE                 NA          No
VO=CMRS Voice Service
DT=Digital Transport



3.3 Applied Standards
            FCC CFR47 Part 20.19
            ANSI C63.19 2011-version
            FCC KDB 285076 D01 HAC Guidance v04
            FCC KDB 285076 D02 T Coil testing for CMRS IP v01r01




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        FCC HAC T-Coil Test Report                                                       Report No. : HA620411B
4. HAC T-Coil
    FCC wireless hearing aid compatibility rules ensure that consumers with hearing loss are able to access
    wireless communications services through a wide selection of handsets without experiencing disabling
    radio frequency (RF) interference or other technical obstacles.
    To define and measure the hearing aid compatibility of handsets, in CFR47 part 20.19 ANSI C63.19 is
    referenced. A handset is considered hearing aid-compatible for acoustic coupling if it meets a rating of at
    least M3 under ANSI C63.19, and A handset is considered hearing aid compatible for inductive coupling
    if it meets a rating of at least T3.

    For inductive coupling, the wireless communication devices should be measured as below.
    1) Magnetic signal strength in the audio band
    2) Magnetic signal frequency response through the audio band
    3) Magnetic signal to noise


4.1 T-Coil Coupling Field Intensity
    When measured as specified in this standard, the T-Coil signal shall be ≥ –18 dB (A/m) at 1 kHz, in a 1/3
    octave band filter for all orientations.
4.2 T-Coil Frequency Response
    The frequency response of the perpendicular component of the magnetic field, measured in 1/3 octave
    bands, shall follow the response curve specified in this sub-clause, over the frequency range 300 Hz to
    3000 Hz.

    Figure 4.1 and Figure 4.2 provide the boundaries as a function of frequency. These response curves are
    for true field-strength measurements of the T-Coil signal. Thus, the 6 dB/octave probe response has
    been corrected from the raw readings.




    Fig. 4.1 Magnetic field frequency response for WDs with field strength≤-15dB at 1 KHz




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    Fig. 4.2 Magnetic field frequency response for WDs with a field that exceeds –15 dB(A/m) at 1 kHz




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      FCC HAC T-Coil Test Report                                                        Report No. : HA620411B
4.3 T-Coil Signal Quality Categories
   This section provides the signal quality requirement for the intended T-Coil signal from a WD. Only the RF
   immunity of the hearing aid is measured in T-Coil mode. It is assumed that a hearing aid can have no
   immunity to an interference signal in the audio band, which is the intended reception band for this mode.
   A device is assessed beginning by determining the category of the RF environment in the area of the
   T-Coil source.

   The RF measurements made for the T-Coil evaluation are used to assign the category T1 through T4.
   The limitation is given in Table 4.3. This establishes the RF environment presented by the WD to a
   hearing aid.



                                                            Telephone parameters WD signal quality
                         Category
                                                              ((signal + noise) to noise ratio in dB)
                       Category T1                                           0 to 10 dB
                       Category T2                                          10 to 20 dB
                       Category T3                                          20 to 30 dB
                       Category T4                                        > 30 dB
                                Table 4.3 T-Coil Signal Quality Categories




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        FCC HAC T-Coil Test Report                                                 Report No. : HA620411B
5. Measurement System Specification
5.1 System Configuration




                             Fig. 5.1 T-Coil setup with HAC Test Arch and AMCC
5.2 Test Arch Phantom
     Construction :   Enables easy and well defined positioning
                      of the phone and validation dipoles as well
                      as simple teaching of the robot.

     Dimensions :     370 x 370 x 370 mm




                                                                    Fig. 5.2 Photo of Arch Phantom




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5.3 AMCC

     The Audio Magnetic Calibration coil is a Helmholtz Coil designed for calibration of the AM1D probe. The
    two horizontal coils generate a homogeneous magnetic field in the z direction. The DC input resistance is
    adjusted by a series resistor to approximately 50Ohm, and a shunt resistor of 10 Ohm permits monitoring
    the current with a scale of 1:10.

                                                   Port description

    Signal                 Connector              Resistance
    Coil In                BNC                    typically 50 Ohm
    Coil Monitor           BNO                    10Ohm ±1%(100mV corresponding to 1 A/m)

                                                     Specification

    Dimensions             370 x 370 x 196 mm, according to ANSI C63.19



5.4 AM1D Probe

     The AM1D probe is an active probe with a single sensor. It is fully RF-shielded and has a rounded tip
    6mm in diameter incorporating a pickup coil with its center offset 3mm from the tip and the sides. The
    symmetric signal preamplifier in the probe is fed via the shielded symmetric output cable from the AMMI
    with a 48V “phantom” voltage supply. The 7-pin connector on the back in the axis of the probe does not
    carry any signals. It is mounted to the DAE for the correct orientation of the sensor. If the probe axis is
    tilted 54.7 degree from the vertical, the sensor is approximately vertical when the signal connector is at
    the underside of the probe (cable hanging downwards).

                                                     Specification
    Frequency Range            0.1 ~ 20 kHz (RF sensitivity <-100dB, fully RF shielded )
    Sensitivity                <-50dB A/m @ 1 kHz
    Pre-amplifier              40 dB, symmetric
    Dimensions                 Tip diameter/ length: 6/ 290 mm, sensor according to ANSI-C63.19




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      FCC HAC T-Coil Test Report                                                          Report No. : HA620411B
5.5 AMMI




                                              Fig. 5.3 AMMI front panel

    The Audio Magnetic Measuring Instrument (AMMI) is a desktop 19-inch unit containing a sampling unit, a
    waveform generator for test and calibration signals, and a USB interface.

                                                    Specification
    Sampling rate                  48 kHz/24 bit
    Dynamic range                  85 dB
    Test signal generation         User selectable and predefined (vis PC)
    Calibration                    Auto-calibration/full system calibration using AMCC with monitor output
    Dimensions                     482 x 65 x 270 mm


5.6 System Hardware


                                                         DAE
     The data acquisition electronics (DAE) consists of a highly sensitive electrometer-grade preamplifier with
    auto-zeroing, a channel and gain-switching multiplexer, a fast 16 bit AD-converter and a command decoder
    and control logic unit.


                                                        Robot
     The SPEAG DASY system uses the high precision robots (DASY5: TX90XL) type from Stäubli SA
    (France). For the 6-axis controller system, the robot controller version (DASY5: CS8c) from Stäubli is used.




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5.7 Cabling of System
    The principal cabling of the T-Coil setup is shown in Fig. 5.4. All cables provided with the basic setup
    have a length of approximately 5 m.




                                              Fig. 5.4 T-Coil setup cabling



5.8 Test Equipment List
                                                                                                  Calibration
Manufacturer           Name of Equipment                 Type/Model   Serial Number
                                                                                          Last Cal.        Due Date
   SPEAG          Audio Magnetic 1D Field Probe           AM1DV3          3130          Nov. 10, 2015    Nov. 09, 2016
   SPEAG            Data Acquisition Electronics            DAE4          778           Feb. 18, 2016    Feb. 17, 2017
   SPEAG          Audio Magnetic Calibration Coil          AMCC           1049              NCR                 NCR
   SPEAG            Audio Measuring Instrument              AMMI          1041              NCR                 NCR
  WonDer                   Thermometer                    WD-5015        TM281          Oct. 16, 2015    Oct. 15, 2016
    R&S               Base Station(Measure)                CMU200        103937         Mar. 30, 2015    Mar. 29, 2016
   SPEAG                Test Arch Phantom                   N/A           N/A               NCR                 NCR
   SPEAG                 Phone Positoiner                   N/A           N/A               NCR                 NCR


                                            Table 5.1 Test Equipment List
Note:
1. NCR: “No-Calibration Required”




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5.9 Probe Calibration in AMCC

     The probe sensitivity at 1 kHz is 0.06556 V/(A/m) (-23.66 dBV/(A/m)) was calibrated by AMCC coil for
    verification of setup performance.

     The evaluated probe sensitivity was able to be compared to the calibration of the AM1D probe. The
    frequency response and sensitivity was shown in Fig. 5.5. The probe signal is represented after application
    of an ideal integrator. The green curve represents the current though the AMCC, the blue curve the
    integrated probe signal. The DIFFERENCE between the two curves is equivalent to the frequency response
    of the probe system and shows the characteristics. The probe/system complies with the frequency
    response and linearity requirements in C63.19 according to the SPEAG’s calibrated report as shown in
    Annex B (AM1D probe: SPAM100AF) (1)The frequency response has been tested within +/- 0.5 dB of ideal
    differentiator from 100 Hz to 10 kHz. (2)The linearity has also been tested within 0.1dB from 5 dB below
    limitation to 16 dB above noise level. The AMCC coil is qualified according to certificate report,
    SDHACPO02A as shown in Annex B.




                            Fig. 5.5 The frequency response and sensitivity of AM1D probe




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5.10 Reference Input of Audio Signal Spectrum
    With the reference job "use as reference" in the beginning of a procedure, measure the spectrum of the
    current when applied to the AMCC, i.e. the input magnetic field spectrum, as shown below Fig. 5.6 and
    Fig. 5.7. For this, the delay of the window shall be set to a multiple of the signal period and at least 2s.
    From the measurement on the device, using the same signal, the postprocessor deducts the input
    spectrum, so the result represents the net EUT response.




           Fig. 5.6 Audio signal spectrum of the broadband signal (48kHz_voice_300Hz~3 kHz)




              Fig. 5.7 Audio signal spectrum of the narrowband signal (48kHz_voice_1kHz)




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5.11 Establish Reference Level


     According to ANSI C63.19:2011 section 7.4.2.1, the normal speech input level for HAC T-coil tests shall be
    set to -16 dBm0 for GSM and UMTS (WCDMA), and to -18 dBm0 for CDMA. This technical note shows a
    possibility to evaluate and set the correct level with the HAC T-Coil setup with a Rohde&Schwarz
    communication tester CMU200 with audio option B52 and B85.

     Establish a call from the CMU200 to a wireless device. Select CMU200 Network Bitstream ”Decoder Cal”
    to have a 1 kHz signal with a level of 3.14 dBm0 at the speech output. Run the measurement job and read
    the voltage level at the multi-meter display “Coil signal”. Read the RMS voltage corresponding to 3.14 dBm0
    and note it.


     Determine the 1 kHz input level to generate the desired signal level of -16 dBm 0. Select CMU200 Network
    Bitstream “Codec Cal” to loop the input via the codec to the output. Run the measurement job (AMMI 1 kHz
    signal with gain 10 inserted) and read the voltage level at the multimeter display “Coil signal”. With Gain 10
    setting, the measurement signal difference to the desired signal level of -16 dBm 0.


    Calculations:
     3.14 dBm0 = -2.29 dBV  -16 dBm0 = -21.43 dBV
     Gain 10 = -19.96 dBV
     -21.43 - (-19.96) = -1.47 dB
     10* [10 ^ ((-1.47) / 20)] = 10 x 0.844 = 8.44
     Required Gain Factor = 10^(-RMS(dB)/20)
     Gain Setting = Required Gain Factor * 8.44
    Note: Calculated Gain Setting = Resulting Gain * Required Gain Factor


     The predefined signal types have the following differences / factors compared to the 1 kHz sine signal:
                                                                                                Calculated     Adjusted
                                 Duration      Peak to RMS          RMS       Required Gain
       Signal Type                                                              Factor
                                                                                       (1)        Gain           Gain
                                     (s)            (dB)            (dB)                                               (2)
                                                                                                 Setting       Setting
    48k_voice_1kHz                   1              16.2           -12.7          4.33             36.56         36.6
48k_voice_300Hz ~ 3kHz               2              21.6           -18.6          8.48             71.60         72.3
    Remark:
     (1) The gain for the specific signal shall typically be multiplied by this factor to achieve approx. the same
     level as for the 1kHz sine signal
     (2) If the measurement for each signal type with calculated gain setting does not meet the desired level, the gain
     setting will be manually adjusted until the desired level is obtained.




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6. T-Coil Test Procedure
6.1 Test Process and Flow Chart
   Referenced to ANSI C63.19-2011, Section 7.4

   This section describes the procedures used to measure the ABM (T-Coil) performance of the WD. In
   addition to measuring the absolute signal levels, the A-weighted magnitude of the unintended signal shall
   also be determined. To assure that the required signal quality is measured, the measurement of the
   intended signal and the measurement of the unintended signal must be made at the same location for
   each measurement position. In addition, the RF field strength at each measurement location must be at or
   below that required for the assigned category.

   Measurements shall not include undesired properties from the WD's RF field; therefore, use of a coaxial
   connection to a base station simulator or non-radiating load, there might still be RF leakage from the WD,
   which can interfere with the desired measurement. Pre-measurement checks should be made to avoid
   this possibility. All measurements shall be performed with the WD operating on battery power with an
   appropriate normal speech audio signal input level given in ANSI C63.19-2011 Table 7.1. If the device
   display can be turned off during a phone call, then that may be done during the measurement as well,

   Measurement shall be performed at two locations specified in ANSI C63.19-2011 A.3, with the correct
   probe orientation for a particular location, in a multistage sequence by first measuring the field intensity of
   the desired T-Coil signal the same location as the desired ABM or T-Coil signal (ABM1), and the ratio of
   desired to undesired magnetic components (ABM2) must be measured at the same location as the
   desired ABM or T-Coil signal (ABM1), and the ratio of desired to undesired ABM signals must be
   calculated. For the perpendicular field location, only the ABM1 frequency response shall be determined in
   a third measurement stage.

   The following steps summarize the basic test flow for determining ABM1 and ABM2. These steps assume
   that a sine wave or narrowband 1/3 octave signal can be used for the measurement of ABM1.

   a)   A validation of the test setup and instrumentation may be performed using a TMFS or Helmholtz coil
        Measure the emissions and confirm that they are within the specified tolerance.

   b)   Position the WD in the test setup and connect the WD RF connector to a base station simulator or a
        non-radiating load. Confirm that equipment that requires calibration has been calibrated, and that
        the noise level meets the requirements given in ANSI C63.19-2011 clause 7.3.1.

   c)   The drive level to the WD ise set such that the reference input level specified in ANSI C63.19-2011
        Table 7.1 is input to the base station simulator (or manufacturer's test mode equivalent) in 1 kHz, 1/3
        octave band. This drive level shall be used for the T-Coil signal test (ABM1) at f = 1 kHz. Either a
        sine wave at 1025 Hz or a voice-like signal, band-limited to the 1 kHz 1/3 octave, as defined in ANSI
        C63.19-2011 clause 7.4.2, shall be used for the reference audio signal. If interference is found at
        1025 Hz an alternative nearby reference audio signal frequency may be used. The same drive level
        shall be used for the ABM1 frequency response measurements at each 1/3 octave band center
        frequency. The WD volume control may be set at any level up to maximum, provided that a signal at
        any frequency at maximum modulation would not result in clipping or signal overload.




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        FCC HAC T-Coil Test Report                                                         Report No. : HA620411B
   d)   Determine the magnetic measurement locations for the WD device (A.3), if not already specified by
        the manufacturer, as described in ANSI C63.19-2011 clause 7.4.4.1.1 and 7.4.4.2.

   e)   At each measurement location, measure and record the desired T-Coil magnetic signals (ABM1 at fi)
        as described in ANSI C63.19-2011 clause 7.4.4.2 in each individual ISO 266-1975 R10 standard 1/3
        octave band. The desired audio band input frequency (fi) shall be centered in each 1/3 octave band
        maintaining the same drive level as determined in item c) and the reading taken for that band.

        Equivalent methods of determining the frequency response may also be employed, such as fast
        Fourier transform (FFT) analysis using noise excitation or input-output comparison using simulated
        speech. The full-band integrated probe output, as specified in D.9, may be used, as long as the
        appropriate calibration curve is applied to the measured result, so as to yield an accurate
        measurement of the field magnitude. (The resulting measurement shall be an accurate
        measurement in dB A/m.)

        All Measurements of the desired signal shall be shown to be of the desired signal and not of an
        undesired signal. This may be shown by turning the desired signal ON and OFF with the probe
        measuring the same location. If the scanning method is used the scans shall show that all
        measurement points selected for the ABM1 measurement meet the ambient and test system noise
        criteria in ANSI C63.19-2011 clause 7.3.1.

   f)   At the measurement location for each orientation, measure and record the undesired broadband
        audio magnetic signal (ABM2) as specified in ANSI C63.19-2011 clause 7.4.4.4 with no audio signal
        applied (or digital zero applied, if appropriate) using A-weighting and the half-band integrator.
        Calculate the ratio of the desired to undesired signal strength (i,e., signal quality).

   g)   Obtain the data from the postprocessor, SEMCAD, and determine the category that properly
        classifies the signal quality based on ANSI C63.19-2011 Table 8.5.




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                                Confirm calibration of test equipment
                                Configure and validate the test setup
                                Establish WD reference level
                                Scan for measurement locations




                              Position and orient probe
                              Measure desired audio band signal
                               Strength
                              Measure undesired audio band signal
                               Strength




                              Calculate signal strength
                              Calculate signal quality
                              Measure frequency response




                                                                                          N
                                   Both y z locations measured?


                                                      Y

                                      Intensity and frequency                N
                                      response compliant ?


                                                     Y
                                   Determine and record signal
                                    quality category                                             Done



                                   Fig. 6.1 Test Flow Chart




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6.2 Description of EUT Test Position
   Fig.6.2 illustrate the references and reference plane that shall be used in a typical EUT emissions
   measurement. The principle of this section is applied to EUT with similar geometry. Please refer to
   Appendix C for the setup photographs.

         The area is 5 cm by 5 cm.
         The area is centered on the audio frequency output transducer of the EUT.
         The area 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 area of the phone and is defined by the points of the receiver-end of the EUT handset,
          which, in normal handset use, rest against the ear.
         The measurement plane is parallel to, and 10 mm in front of, the reference plane.




                     Fig 6.2 A typical EUT reference and plane for T-Coil measurements




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7. HAC T-Coil Test Results

                                                                   Telephone parameters WD signal quality
                          Category
                                                                     ((signal + noise) to noise ratio in dB)
                         Category T1                                               0 to 10 dB
                         Category T2                                              10 to 20 dB
                         Category T3                                              20 to 30 dB
                         Category T4                                                   > 30 dB
The Table 7.1 shows testing result in position coordinates which are defined as deviation from earpiece center in
millimeters. Signal strength measurement scans are presented in appendix A.



 Plot                                                         Probe             ABM1        ABM2     SNR
         Air Interface    Operating Mode      Channel                                                        T Rating
 No.                                                         Position         (dB A/m)    (dB A/m)   (dB)

                         Voice(speech codec                  Axial (Z)         -0.53       -31.26    30.73      T4
  1          GSM850                             189
                            /handset low)                 Transversal (Y)       3.65       -26.76    30.41      T4
                         Voice(speech codec                  Axial (Z)         -0.48       -32.30    31.82      T4
  2          GSM1900                            661
                            /handset low)                 Transversal (Y)       2.90       -28.99    31.89      T4
                         Voice(speech codec                  Axial (Z)          3.86       -38.56    42.42      T4
  3          WCDMA V                           4182
                                low)                      Transversal (Y)       2.72       -43.02    45.74      T4
                         Voice(speech codec                  Axial (Z)          3.68       -38.57    42.25      T4
  4      WCDMA IV                              1413
                                low)                      Transversal (Y)       2.47       -43.11    45.58      T4
                         Voice(speech codec                  Axial (Z)          4.07       -38.50    42.57      T4
  5          WCDMA II                          9400
                                low)                      Transversal (Y)       2.96       -43.12    46.08      T4

                                       Table 7.1 Test Result for Various Positions

      Remark:
        1.     There is no special HAC mode software on this EUT.
        2.     Test Engineer:Jerry Hu.




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7.1 Frequency Response Plots




              Fig 7.1 GSM850 Ch189                             Fig 7.2 GSM1900 Ch661




              Fig 7.3 WCDMA V Ch4182                      Fig 7.4 WCDMA IV Ch1413




                                     Fig 7.5 WCDMA II Ch9400




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8. Uncertainty Assessment
The evaluation of uncertainly by the statistical analysis of a series of observations is termed a Type A
evaluation of uncertainty. The evaluation of uncertainty by means other than the statistical analysis of a series
of observation is termed a Type B evaluation of uncertainty. Each component of uncertainty, however
evaluated, is represented by an estimated standard deviation, termed standard uncertainty, which is
determined by the positive square root of the estimated variance. The combined standard uncertainty of the
measurement result represents the estimated standard deviation of the result. It is obtained by combining the
individual standard uncertainties of both Type A and Type B evaluation using the usual “root-sum-squares”
(RSS) methods of combining standard deviations by taking the positive square root of the estimated
variances. Expanded uncertainty is a measure of uncertainty that defines an interval about the measurement
result within which the measured value is confidently believed to lie. It is obtained by multiplying the combined
standard uncertainty by a coverage factor. For purpose of this document, a coverage factor two is used, which
corresponds to confidence interval of about 95 %. The DASY uncertainty Budget is showed in Table 8.2.

                                Uncertainty                                                      Standard       Standard
                                                Probability                   Ci        Ci
      Error Description           Value                           Divisor                       Uncertainty    Uncertainty
                                                Distribution                (ABM1)    (ABM2)
                                  (±%)                                                           (ABM1)         (ABM2)
                                                     Probe Sensitivity
      Reference Level              3.0            Normal              1       1          1        ± 3.0 %         ± 3.0 %
      AMCC Geometry                0.4          Rectangular           √3      1          1        ± 0.2 %         ± 0.2 %
      AMCC Current                 1.0          Rectangular           √3      1          1        ± 0.6 %         ± 0.6 %
  Probe Positioning During
                                   0.1          Rectangular           √3      1          1        ± 0.1 %         ± 0.1 %
         Calibrate
     Noise Contribution            0.7          Rectangular           √3    0.0143       1        ± 0.0 %         ± 0.4 %
      Frequency Slope              5.9          Rectangular           √3     0.1         1        ± 0.3 %         ± 3.5 %
                                                      Probe System
     Repeatability / Drift         1.0          Rectangular           √3      1          1        ± 0.6 %         ± 0.6 %
  Linearity / Dynamic Range        0.6          Rectangular           √3      1          1        ± 0.4 %         ± 0.4 %
       Acoustic Noise              1.0          Rectangular           √3     0.1         1        ± 0.1 %         ± 0.6 %
        Probe Angle                2.3          Rectangular           √3      1          1        ± 1.4 %         ± 1.4 %
     Spectral Processing           0.9          Rectangular           √3      1          1        ± 0.5 %         ± 0.5 %
      Integration Time             0.6            Normal              1       1          5        ± 0.6 %         ± 3.0 %
      Field Disturbation           0.2          Rectangular           √3      1          1        ± 0.1 %         ± 0.1 %
                                                        Test Signal
  Reference Signal Spectral
                                   0.6          Rectangular           √3      0          1        ± 0.0 %         ± 0.4 %
         Response
                                                        Positioning
      Probe Positioning            1.9          Rectangular           √3      1          1        ± 1.1 %         ± 1.1 %
     Phantom Thickness             0.9          Rectangular           √3      1          1        ± 0.5 %         ± 0.5 %
      EUT Positioning              1.9          Rectangular           √3      1          1        ± 1.1 %         ± 1.1 %
                                                  External Contributions
       RF Interference             0.0          Rectangular           √3      1         0.3       ± 0.0 %         ± 0.0 %
    Test Signal Variation          2.0          Rectangular           √3      1          1        ± 1.2 %         ± 1.2 %
                               Combined Standard Uncertainty                                      ± 4.1 %         ± 6.1 %
                                  Coverage Factor for 95 %                                                  K=2
                                    Expanded Uncertainty                                          ± 8.1 %         ± 12.3 %

                       Table 8.2 Uncertainty Budget of audio band magnetic measurement




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          FCC HAC T-Coil Test Report                                                Report No. : HA620411B

9. References
    [1]    ANSI C63.19 2011, “American National Standard for Methods of Measurement of Compatibility
           between Wireless Communications Devices and Hearing Aids”, 27 May 2011
    [2]    SPEAG DASY System Handbook




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Document Created: 2019-07-13 17:16:21
Document Modified: 2019-07-13 17:16:21

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