Test Report HAC T-Coil

FCC ID: IHDT56YD3

Test Report

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FCCID_4445411

         HAC T-COIL TEST REPORT                                                      Report No. : HA932836-04B




         HEARING AID COMPATIBILITY
            T-COIL TEST REPORT
       FCC ID                 : IHDT56YD3
       Equipment              : Mobile Cellular Phone
       Brand Name             : Motorola
       T-Rating               : T3
       Applicant              : Motorola Mobility LLC
                                222 W,Merchandise Mart Plaza, Chicago IL 60654 USA
       Manufacturer           : Motorola Mobility LLC
                                222 W,Merchandise Mart Plaza, Chicago IL 60654 USA
       Standard               : FCC 47 CFR §20.19
                                ANSI C63.19-2011


      The product was received on Jul. 29, 2019 and testing was started from Aug. 14, 2019 and
      completed on Aug. 18, 2019. We, SPORTON INTERNATIONAL INC., would like to declare
      that the tested sample has been evaluated in accordance with the test procedures and has
      been in compliance with the applicable technical standards.

      The report must not be used by the client to claim product certification, approval, or
      endorsement by TAF or any agency of government.

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




            Approved by: Cona Huang / Deputy Manager



SPORTON INTERNATIONAL INC. EMC & Wireless Communications Laboratory
                       No. 52, Huaya 1st Rd., Guishan Dist., Taoyuan City, Taiwan (R.O.C.)




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             HAC T-COIL TEST REPORT                                                                                                       Report No. : HA932836-04B

                                                                Table of Contents
1.    Attestation of Test Results ........................................................................................................................................ 4
2.    General Information ................................................................................................................................................... 5
3.    Testing Location......................................................................................................................................................... 6
4.    Applied Standards ..................................................................................................................................................... 6
5.    Air Interface and Operating Mode............................................................................................................................. 7
6.    Measurement standards for T-Coil ........................................................................................................................... 8
      6.1     Frequency Response ....................................................................................................................................... 8
      6.2     T-Coil Signal Quality Categories ....................................................................................................................... 8
7.    T-Coil Test Procedure ................................................................................................................................................ 9
      7.1     Test Flow Chart................................................................................................................................................10
      7.2     Test Setup Diagram for GSM/UMTS/CDMA/VoLTE ......................................................................................... 11
      7.3     Test Setup Diagram for VoWiFi........................................................................................................................13
      7.4     Test Setup and Diagram for OTT VoIP ............................................................................................................15
      7.5     Description of EUT Test Position .....................................................................................................................17
8.    Test Equipment List ..................................................................................................................................................18
9.    T-Coil testing for CMRS Voice ..................................................................................................................................19
      9.1     GSM Tests Results ..........................................................................................................................................19
      9.2     UMTS Tests Results ........................................................................................................................................20
      9.3     CDMA Tests Results ........................................................................................................................................20
10.   T-Coil testing for CMRS IP Voice .............................................................................................................................21
      10.1 VoLTE Tests Results ........................................................................................................................................21
      10.2 VoWiFi Tests Results .......................................................................................................................................23
11.   T-Coil testing for OTT VoIP Application ..................................................................................................................25
12.   Uncertainty Assessment ..........................................................................................................................................28
13.   References .................................................................................................................................................................29

Appendix A. Plots of T-Coil Measurement
Appendix B. DASY Calibration Certificate




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         HAC T-COIL TEST REPORT                                   Report No. : HA932836-04B


                        History of this test report
       Report No.      Version                     Description                Issued Date

     HA932836-04B      Rev. 01    Initial issue of report                    Sep. 05, 2019




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          HAC T-COIL TEST REPORT                                                           Report No. : HA932836-04B

1. Attestation of Test Results
                                                                             Frequency                  Magnetic
     Air Interface           Band MHz                T-Rating
                                                                             Response                   Intensity
                              GSM850                   T3                          Pass                   Pass
  GSM CMRS Voice
                             GSM1900                   T3                          Pass                   Pass
                             EDGE850                   T3                          Pass                   Pass
   OTT over EDGE
                            EDGE1900                   T3                          Pass                   Pass
                              Band 2                   T4                          Pass                   Pass
  UMTS CMRS Voice             Band 4                   T4                          Pass                   Pass
                              Band 5                   T4                          Pass                   Pass
                              Band 2                   T4                          Pass                   Pass
   OTT over UMTS              Band 4                   T4                          Pass                   Pass
                              Band 5                   T4                          Pass                   Pass
                               BC0                     T4                          Pass                   Pass
  CDMA CMRS Voice              BC1                     T4                          Pass                   Pass
                               BC10                    T4                          Pass                   Pass
                               BC0                     T4                          Pass                   Pass
   OTT over CDMA               BC1                     T4                          Pass                   Pass
                               BC10                    T4                          Pass                   Pass
                              Band 2                   T4                          Pass                   Pass
                              Band 4                   T4                          Pass                   Pass
                              Band 5                   T4                          Pass                   Pass
                              Band 7                   T4                          Pass                   Pass
                              Band 12                  T4                          Pass                   Pass
                              Band 13                  T4                          Pass                   Pass
        VoLTE
                              Band 17                  T4                          Pass                   Pass
                              Band 25                  T4                          Pass                   Pass
                              Band 26                  T4                          Pass                   Pass
                              Band 66                  T4                          Pass                   Pass
                              Band 38                  T4                          Pass                   Pass
                              Band 41                  T3                          Pass                   Pass
                              Band 26                  T4                          Pass                   Pass
    OTT over LTE
                              Band 41                  T3                          Pass                   Pass
                               2450                    T4                          Pass                   Pass
                               5200                    T4                          Pass                   Pass
       VoWiFI                  5300                    T4                          Pass                   Pass
                               5500                    T4                          Pass                   Pass
                               5800                    T4                          Pass                   Pass
                               2450                    T4                          Pass                   Pass
    OTT over WiFi
                               5200                    T4                          Pass                   Pass
     Date Tested                                            2019/8/14 ~2019/8/18
The device is compliance with HAC limits specified in guidelines FCC 47CFR §20.19 and ANSI Standard ANSI C63.19.

Reviewed by: Jason Wang
Report Producer: Wan Liu




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         HAC T-COIL TEST REPORT                                                 Report No. : HA932836-04B
2. General Information
                                      Product Feature & Specification
Applicant Name         Motorola Mobility LLC
Equipment Name         Mobile Cellular Phone
Brand Name             Motorola
FCC ID                 IHDT56YD3
HW Version             DVT2
EUT Stage              Identical Prototype
                       GSM850: 824.2 MHz ~ 848.8 MHz
                       GSM1900: 1850.2 MHz ~ 1909.8 MHz
                       WCDMA Band II: 1852.4 MHz ~ 1907.6 MHz
                       WCDMA Band IV: 1712.4 MHz ~ 1752.6 MHz
                       WCDMA Band V: 826.4 MHz ~ 846.6 MHz
                       CDMA2000 BC0: 824.7 MHz ~ 848.31 MHz
                       CDMA 2000 BC1: 1851.25 MHz ~ 1908.75 MHz
                       CDMA 2000 BC10: 817.9 MHz ~ 823.1 MHz
                       LTE Band 2: 1850.7 MHz ~ 1909.3 MHz
                       LTE Band 4: 1710.7 MHz ~ 1754.3 MHz
                       LTE Band 5: 824.7 MHz ~ 848.3 MHz
                       LTE Band 7: 2502.5 MHz ~ 2567.5 MHz
                       LTE Band 12: 699.7 MHz ~ 715.3 MHz
Frequency Band
                       LTE Band 13: 779.5 MHz ~ 784.5 MHz
                       LTE Band 17: 706.5 MHz ~ 713.5 MHz
                       LTE Band 25: 1850.7 MHz ~ 1914.3 MHz
                       LTE Band 26: 814.7 MHz ~ 848.3 MHz
                       LTE Band 38: 2572.5 MHz ~ 2617.5 MHz
                       LTE Band 41: 2498.5 MHz ~ 2687.5 MHz
                       LTE Band 66: 1710.7 MHz ~ 1779.3 MHz
                       WLAN 2.4GHz Band: 2412 MHz ~ 2462 MHz
                       WLAN 5.2GHz Band: 5180 MHz ~ 5240 MHz
                       WLAN 5.3GHz Band: 5260 MHz ~ 5320 MHz
                       WLAN 5.5GHz Band: 5500 MHz ~ 5720 MHz
                       WLAN 5.8GHz Band: 5745 MHz ~ 5825 MHz
                       Bluetooth: 2402 MHz ~ 2480 MHz
                       GSM/GPRS/EGPRS
                       AMR / RMC 12.2Kbps
                       HSDPA
                       HSUPA
Mode                   DC-HSDPA
                       CDMA2000 : 1xRTT/1xEv-Do(Rev.0)/1xEv-Do(Rev.A)
                       LTE: QPSK, 16QAM, 64QAM
                       WLAN: 802.11a/b/g/n/ac HT20 / HT40 / VHT20 / VHT40 / VHT80
                       Bluetooth BR/EDR/LE




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            HAC T-COIL TEST REPORT                                                        Report No. : HA932836-04B


3. Testing Location
Sporton Lab is accredited to ISO 17025 by Taiwan Accreditation Foundation (TAF code: 1190) and the FCC designation
No. TW1190 under the FCC 2.948(e) by Mutual Recognition Agreement (MRA) in FCC test.

                                                Testing Laboratory
Test Site                          SPORTON INTERNATIONAL INC.
                                   No. 52, Huaya 1st Rd., Guishan Dist., 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




4. Applied Standards
‧    FCC CFR47 Part 20.19
‧    ANSI C63.19 2011-version
‧    FCC KDB 285076 D01 HAC Guidance v05
‧    FCC KDB 285076 D02 T Coil testing v03
‧    FCC KDB 285076 D03 HAC FAQ v01




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            HAC T-COIL TEST REPORT                                                            Report No. : HA932836-04B
5. Air Interface and Operating Mode
   Air                                         C63.19              Simultaneous              Name of Voice      Power
Interface      Band MHz            Type
                                               Tested               Transmitter                Service         Reduction
                GSM850                                               WLAN, BT                                      No
                                    VO           Yes                                          CMRS Voice
                GSM1900                                              WLAN, BT                                      No
  GSM
                EDGE850
                                    VD           Yes                 WLAN, BT                 Google Duo(1)        No
               EDGE1900
                   850                                               WLAN, BT                                      No
                  1750              VO           Yes                 WLAN, BT                 CMRS Voice           No
 UMTS
                  1900                                               WLAN, BT                                      No
                  HSPA              VD           Yes                 WLAN, BT                 Google Duo(1)        No
                   850                                               WLAN, BT                                      No
                                    VO           Yes                                          CMRS Voice
 CDMA             1900                                               WLAN, BT                                      No
                  EVDO              VD           Yes                 WLAN, BT                 Google Duo(1)        No
                 Band 2                                              WLAN, BT                                      No
                 Band 4                                              WLAN, BT                                      No
                 Band 5                                              WLAN, BT                                      No
                 Band 7                                              WLAN, BT                                      No
                 Band 12                                             WLAN, BT                   VoLTE              No
   LTE
                                    VD           Yes                                               /
  (FDD)          Band 13                                             WLAN, BT                                      No
                                                                                              Google Duo(1)
                 Band 17                                             WLAN, BT                                      No
                 Band 25                                             WLAN, BT                                      No
                 Band 26                                             WLAN, BT                                      No
                 Band 66                                             WLAN, BT                                      No
                 Band 38                                             WLAN, BT                   VoLTE              No
   LTE
                                    VD           Yes                                               /
  (TDD)          Band 41                                             WLAN, BT                                      No
                                                                                              Google Duo(1)
                  2450                                                                                             No
                  5200                                                                          VoWiFi (1)         No
  Wi-Fi           5300              VD           Yes         GSM,WCDMA,CDMA,LTE                    /               No
                  5500                                                                        Google Duo(1)        No
                  5800                                                                                             No
   BT              2450               DT           No          GSM,WCDMA,CDMA,LTE                      NA             No
Type Transport:
VO= Voice only
DT= Digital Transport only (no voice)
VD= CMRS and IP Voice Service over Digital Transport
Remark:
1. For protocols not listed in Table 7.1 of ANSI C63.19-2011 or the ANSI C63.19-2011 VoLTE interpretation, the average
    speech level of −20 dBm0 should be used.
2. The device have similar frequency in some LTE bands: LTE B12/17, 5/26, 4/66, 2/25, 38/41, since the supported frequency
    spans for the smaller LTE bands are completely cover by the larger LTE bands, therefore, only larger LTE bands were
    required to be tested for hearing-aid compliance.




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         HAC T-COIL TEST REPORT                                                         Report No. : HA932836-04B
6. Measurement standards for T-Coil
6.1 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 1.1 and Figure 1.2 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. 1.1 Magnetic field frequency response for WDs with field strength≤-15dB at 1 KHz




     Fig. 1.2 Magnetic field frequency response for WDs with a field that exceeds –15 dB(A/m) at 1 kHz



6.2 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 1. 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 1 T-Coil Signal Quality Categories




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         HAC T-COIL TEST REPORT                                                             Report No. : HA932836-04B
7. T-Coil Test Procedure
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.
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.
f. 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.)
g. 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.
h. 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).
i. 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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       HAC T-COIL TEST REPORT                                 Report No. : HA932836-04B
7.1 Test Flow Chart




                       Fig. 2 T-Coil Signal Test flowchart




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       HAC T-COIL TEST REPORT                                                             Report No. : HA932836-04B
7.2 Test Setup Diagram for GSM/UMTS/CDMA/VoLTE

                                     Test Setup for GSM / CDMA / VoLTE




General Note:
1. Define the all applicable input audio level as below according to C63 and KDB 285076 D02v03:
   -    GSM input level: -16dBm0
   -    UMTS input level: -16dBm0
   -    CDMA input level: -18dBm0
   -    VoLTE input level: -16dBm0
2. For GSM / UMTS / CDMA test setup and input level, the correct input level definition is via a communication tester
   CMU200’s “Decoder Cal” and “Codec Cal” with audio option B52 and B85 to set the correct audio input levels.
3. CMU200 is able to output 1kHz audio signal equivalent to 3.14dBm0 at "Decoder Cal." confuguration, the signal
   reference is used to adjust the AMMI gain setting to reach -16dBm0 for GSM/UMTS and -18dBm0 for CDMA.
   CMW500 input is calibrated and the relation between the analog input voltage and the internal level in dBm0 can be
   determined
4. Voice over Long-Term Evolution (VoLTE) is a standard for high-speed wireless communication for mobile phones
   and data terminals — including IoT devices and wearables. It is based on the IP Multimedia Subsystem (IMS)
   network, with specific profiles for control and media planes of voice service on LTE defined by GSMA in PRD IR.92.
   This approach results in the voice service (control and media planes) being delivered as data flows within the LTE
   data bearer. This means that there is no dependency on the legacy circuit-switched voice network to be maintained
5. The test setup used for VoLTE over IMS is via the callbox of CMW500 for T-coil measurement, The data application
   unit of the CMW500 was used to simulate the IP multimedia subsystem server. The CMW500 can be manually
   configured to ensure and control the speech input level result is -16dBm0 for VoLTE when the device during the IMS
   connection.




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           HAC T-COIL TEST REPORT                                                                               Report No. : HA932836-04B

<Define the input level for GSM/UMTS/CDMA>
1.    The Required gain factor for the specific signal shall typically be multiplied by this factor to achieve approx. the
      same level as for the 1kHz sine signal
2.    The below calculation formula is an example and showing how to determine the input level for the device.




<Example define the input level for GSM/UMTS/CDMA>
        Gain Value              20* log(gain)                 AMCC Coil In                   Level
          (linear)                     dB                      (dBv RMS)                     dBm0
                                                                 -2.47                       3.14
            10                         20                        -19.85                      -14.24
           8.17                      18.24                       -21.61                       -16

                                       Duration           Peak to RMS                RMS              Required Gain         Calculated
           Signal Type
                                         (s)                 (dB)                    (dB)                Factor            Gain Setting
            1kHz sine                     -                    3                       0                    1                  8.17
         48k_voice_1kHz                      1                  16.2                 -12.7                   4.33             35.36
     48k_voice_300Hz ~ 3kHz                  2                  21.6                 -18.6                   8.48             69.25


<Example define the input level for VoLTE>
                                                                                               AMMI audio out           AMCC Coil Out
       Gain Value             dBm0               Full scal Voltage            dB
                                                                                                 dBv (RMS)               (dBv (RMS)
                              3.14                     1.5                                         0.51
          100                 5.61                                            40                       2.98                   3.13
          8.31                -16                                            18.39                                           -18.48
                            Duration              Peak to RMS                RMS
      Signal Type                                                                                   Gain Factor          Gain Setting
                              (s)                    (dB)                    (dB)
       1kHz sine               -                       3                       0                         1                    8.31
     48k_voice_1kHz             1                      16.2                  -12.7                     4.33                  35.98
48k_voice_300-3000              2                      21.6                  -18.6                     8.48                  70.46




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       HAC T-COIL TEST REPORT                                                              Report No. : HA932836-04B
7.3 Test Setup Diagram for VoWiFi

                                              Test Setup for VoWiFi




General Note:
1. Define the all applicable input audio level as below according to C63 and KDB 285076 D02v03:
   -    VoWiFi input level: -20dBm0
2. For Voice over Wi-Fi (VoWiFi) is a term typically employed to describe the delivery of commercial telephony services
   using Voice over IP (VoIP) technologies from mobile devices connected across Wi-Fi. This is typically counter to
   alternatives, predominantly Voice over LTE (VoLTE), in which a mobile network operator’s (MNO’s) licensed
   spectrum (i.e. 4G LTE) is used to carry packetized voice. Broadly speaking, VoWiFi terminology is assigned to all
   core IMS services accessed from unlicensed spectrum and across untrusted access infrastructures, such as public
   Wi-Fi access points
3. The test setup used for VoWiFi over IMS is via the callbox of CMW500 for T-coil measurement, The data application
   unit of the CMW500 was used to simulate the IP multimedia subsystem server. The CMW500 can be manually
   configured to ensure and control the speech input level result is -20dBm0 for VoWiFi when the device during the IMS
   connection.
4. An investigation was perfromed to determine worst case codec, bit rate and air interface configuration refer to
   section10.2




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           HAC T-COIL TEST REPORT                                                                    Report No. : HA932836-04B

<Define the input level for VoWiFi>
1.    The Required gain factor for the specific signal shall typically be multiplied by this factor to achieve approx. the
      same level as for the 1kHz sine signal
2.    The below calculation formula is an example and showing how to determine the input level for the device.




                                                                                       AMMI audio out         AMCC Coil Out
       Gain Value            dBm0            Full scal Voltage          dB
                                                                                         dBv (RMS)             (dBv (RMS)
                              3.14                  1.5                                    0.51
          100                 5.61                                       40                  2.98                  3.13
          5.24                -20                                      14.39                                      -22.48
                            Duration           Peak to RMS             RMS
      Signal Type                                                                        Gain Factor           Gain Setting
                              (s)                 (dB)                 (dB)
       1kHz sine               -                    3                    0                    1                    5.24
     48k_voice_1kHz            1                   16.2                -12.7                 4.33                  22.70
48k_voice_300-3000             2                   21.6                -18.6                 8.48                  44.46




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       HAC T-COIL TEST REPORT                                                                  Report No. : HA932836-04B
7.4 Test Setup and Diagram for OTT VoIP
                                       Test Setup for 3rd party VoIP calling




General Note:
1. Define the all applicable input audio level as below according to C63 and KDB 285076 D02v03:
   -    OTT VoIP input Level: -20dBm0
2. Voice over Internet Protocol (VoIP) such as google duo application, also called IP telephony, is a methodology and
   group of technologies for the delivery of voice communications and multimedia sessions over Internet Protocol (IP)
   networks, such as the Internet. The terms Internet telephony, broadband telephony, and broadband phone service
   specifically refer to the provisioning of communications services (voice, fax, SMS, voice-messaging) over the public
   Internet, rather than via the public switched telephone network (PSTN)
3. The Google DUO service and relate codec “OPUS” and support 6Kbps to 75Kbps bitrate and the customized
   Google DUO software is installed on a mobile phone which is used as the Auxiliary for the test. The DUO software
   enables audio coding rate to be changed, and reports the input digital audio level before DUO audio processing which
   can be used to calibrate the input audio level.
4. This device comes with the preinstalled VoIP application that supports the Google DUO service and related codec
   OPUS. The test configuration establishes a call between the device under test and an auxiliary handset via the DUO
   server
5. The test setup used for Google DUO VoIP call is via the data application unit on the CMW, connected to the internet
   via the DUO server to the auxiliary device. The auxiliary device runs special software that allows the codec bit rate
   (6Kbps to 75 Kbps) to be fixed to a specific value. Please refer to section11, an assessment was made of each of the
   different codec bit rates to determine the worst case for each of the different OTT transport (WiFi, LTE FDD, LTE
   TDD, GSM, WCDMA)
6. The auxiliary device includes software that displays the audio level in dBFS which allows calibration of the system to
   establish the -20dBm0 reference level. After establishing the voice call between auxiliary device and device under
   test the audio output from the AMMI is injected into the auxiliary device. The gain factor to establish a reference level
   of -20dBm0 for use during the test is determined as detailed in the next page based on the 0dBFull Scale (0dBFS)
   value being equivalent to 3.14dBm0.




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              HAC T-COIL TEST REPORT                                                                           Report No. : HA932836-04B


<Define the input level for OTT VoIP>
1.     The Required gain factor for the specific signal shall typically be multiplied by this factor to achieve approx. the same
       level as for the 1kHz sine signal
2.     The below calculation formula is an example and showing how to determine the input level for the device.
3.     Input a gain value to readout the -23dBFS level as reference. (0dBFS = 3.14 dBm0)
4.     Adjust gain level until to readout the dBFS level until it changes to -24dBFS.
5.     Based on the step 1 and 2, and then calculate the gain value(dB) by interpolation to get the -20dBm0 corresponding
       gain value.




                                                      Audio out                                             Target Level
     Step      Signal type
                                     Gain value                   Gain value (dB)                   dBFS                      dBm0
     Step 1    1KHz Sine                 7.7                       17.73 (Ref.)                     -23
     Step 2    1KHz Sine                 6.8                          16.65                         -24
     Step 3    1KHz Sine               7.57**                         17.58*                     -23.14                       -20
        (*) Based on the step 1 and 2 and then via interpolation to get this value.
 Remark
        (**) Gain value=10^Gain value(dB)/20
                                       Duration            Peak to RMS                        RMS
          Signal type                                                                                        Gain Factor       Gain value
                                         (s)                    (dB)                          (dB)
               1kHz sine                                                   3                    0                  1                7.57
        48k_voice_1kHz_1s.wav                     1                      16.2                 -12.7              4.33               32.77
      48k_voice_300-3000_2s.wav                   2                      21.6                 -18.6              8.48               64.79
1.     According to the gain setting for 1kHz sine wave, determine the gain setting for signals above.
2.     The gain for the specific signal is multiplied by this factor to achieve the same level as for the 1kHz sine signal.




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       HAC T-COIL TEST REPORT                                                            Report No. : HA932836-04B
7.5 Description of EUT Test Position
    Fig.3 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.3 A typical EUT reference and plane for T-Coil measurements




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FAX : 886-3-328-4978                                                                    Issued Date : Sep. 05, 2019
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           HAC T-COIL TEST REPORT                                                       Report No. : HA932836-04B
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. 20, 2018    Nov. 19, 2019
   SPEAG                Data Acquisition Electronics       DAE4           854         May. 21, 2019    May. 20, 2020
   SPEAG               Audio Magnetic Calibration Coil     AMCC           1049            NCR                 NCR
   SPEAG                Audio Measuring Instrument         AMMI           1041            NCR                 NCR
  RCPTWN                       Thermometer                 HTC-1        TM560-2       Nov. 12, 2018    Nov. 11, 2019
     R&S                        Base Station              CMW500         115793       Jun. 04, 2019    Jun. 03, 2020
     R&S                        Base Station              CMU200         103937       Jan. 17, 2019    Jan. 16, 2020
   SPEAG                    Test Arch Phantom               N/A           N/A             NCR                 NCR
   SPEAG                    Phone Positioner                N/A           N/A             NCR                 NCR
Note:
1. NCR: “No-Calibration Required”




TEL : 886-3-327-3456                                                                         Page : 18 of 29
FAX : 886-3-328-4978                                                                  Issued Date : Sep. 05, 2019
Form version: 181113


            HAC T-COIL TEST REPORT                                                                  Report No. : HA932836-04B
9. T-Coil testing for CMRS Voice
General Note:
1. Codec Investigation: For a voice service/air interface, investigate the variations of codec configurations (WB, NB bit
   rate) and document the parameters (ABM1, ABM2, S+N/N, frequency response) for that voice service. It is only
   necessary to document this for one channel/band, the following worst investigation codec would be remarked to be
   used for the testing for the handset.
2. Air Interface Investigation:
   a. Use the worst-case codec test and document a limited set of bands/channel/bandwidths. Observe the effect of
        changing the band and bandwidth to ensure that there are no unexpected variations. Using the knowledge of the
        observed variations, it is necessary to report only a set band/channel/bandwidth for each orientation for a voice
        service/air interface.
   b. According to the ANSI C63.19 2011 section 7.3.2, test middle channel of each frequency band for HAC testing
        for each orientation to determine worst HAC T-Coil rating.


9.1 GSM Tests Results
<Codec Investigation>

           Codec                    FR_V1                     HR_V1                  Orientation             Band / Channel

      ABM 1 (dBA/m)                 -5.87                      -5.17

      ABM 2 (dBA/m)                 -28.66                    -31.64
                                                                                        Axial                 GSM850 / 189
     Signal Quality (dB)            22.79                     26.47

      Freq. Response                Pass                       Pass
Remark: According to codec investigation, the worst codec is FR_V1



<Air Interface Investigation>
                                                                                                Ambient  Freq.
                                                                     ABM1 ABM2 Signal
Plot                                                      Probe                            T     Noise Response Frequency
     Air Interface          Mode             Channel                   dB     dB Quality
No.                                                      Position                        Rating    dB   Variation Response
                                                                     (A/m) (A/m)    dB
                                                                                                 (A/m)     dB
                                                        Axial (Z)     -5.87 -28.66 22.79  T3     -50.35
 1      GSM850              Voice              189                                                        1.12      Pass
                                                     Transversal (Y) -11.79 -41.62 29.83  T3     -50.21
                                                         Axial (Z)     -7.29 -37.20 29.91   T3      -50.36
 2     GSM1900              Voice              661                                                             1.08       Pass
                                                      Transversal (Y) -12.53 -44.69 32.16   T4      -50.22




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FAX : 886-3-328-4978                                                                               Issued Date : Sep. 05, 2019
Form version: 181113


      HAC T-COIL TEST REPORT                                                                               Report No. : HA932836-04B
9.2 UMTS Tests Results
<Codec Investigation>

        Codec              AMR 4.75Kbps        AMR 7.95Kbps               AMR 12.2Kbps          Orientation        Band / Channel

     ABM 1 (dBA/m)             -2.69                  -2.71                   -2.53

     ABM 2 (dBA/m)             -48.15                 -48.77                 -47.35
                                                                                                   Axial            Band 2 / 9400
 Signal Quality (dB)           45.46                  46.06                   44.82

     Freq. Response             Pass                  Pass                    Pass
Remark: According to codec investigation, the worst codec is AMR 12.2Kbps



<Air Interface Investigation>
                                                                                                 Ambient  Freq.
                                                                      ABM1 ABM2 Signal
Plot                                                           Probe                        T     Noise Response Frequency
     Air Interface            Mode            Channel                   dB     dB Quality
No.                                                           Position                    Rating    dB   Variation Response
                                                                      (A/m) (A/m)    dB
                                                                                                  (A/m)     dB
                                                         Axial (Z)     -2.53 -47.35 44.82  T4     -50.34
 3     WCDMA II               Voice            9400                                                        0.32      Pass
                                                      Transversal (Y) -11.21 -49.08 37.87  T4     -50.24
                                                              Axial (Z)    -3.00 -48.13 45.13    T4    -50.38
 4     WCDMA IV               Voice            1413                                                               0.36       Pass
                                                        Transversal (Y) -11.04 -47.14 36.10      T4    -50.21
                                                              Axial (Z)    -4.25 -48.31 44.06    T4    -50.03
 5     WCDMA V                Voice            4182                                                               0.85       Pass
                                                        Transversal (Y) -12.29 -47.44 35.15      T4    -50.25




9.3 CDMA Tests Results
<Codec Investigation>

        Codec                RC1 SO68            RC3 SO68                  RC4 SO68             Orientation        Band / Channel

     ABM 1 (dBA/m)             -7.65                  -7.57                   -7.02

     ABM 2 (dBA/m)             -46.61                 -46.46                 -46.12
                                                                                                   Axial             BC0 / 384
 Signal Quality (dB)           38.96                  38.89                   39.1

     Freq. Response             Pass                  Pass                    Pass
Remark: According to codec investigation, the worst codec is RC3 SO68


<Air Interface Investigation>
                                                                                                 Ambient  Freq.
                                                                      ABM1 ABM2 Signal
Plot                                                           Probe                        T     Noise Response Frequency
     Air Interface            Mode            Channel                   dB     dB Quality
No.                                                           Position                    Rating    dB   Variation Response
                                                                      (A/m) (A/m)    dB
                                                                                                  (A/m)     dB
                         RC3+SO68 Voice                  Axial (Z)     -7.45 -46.34 38.89  T4     -50.30
 6     CDMA BC0                                 384                                                        0.74      Pass
                       codec8K Enhanced low           Transversal (Y) -13.39 -46.52 33.13  T4     -50.22
                         RC3+SO68 Voice                       Axial (Z)    -3.87 -47.70 43.83    T4    -50.38
 7     CDMA BC1                                 600                                                                0.5       Pass
                       codec8K Enhanced low             Transversal (Y) -12.28 -47.29 35.01      T4    -50.23
                         RC3+SO68 Voice                       Axial (Z)    -3.82 -48.84 45.02    T4    -50.37
 8    CDMA BC10                                 580                                                               0.61       Pass
                       codec8K Enhanced low             Transversal (Y) -11.73 -47.84 36.11      T4    -50.26




TEL : 886-3-327-3456                                                                                         Page : 20 of 29
FAX : 886-3-328-4978                                                                                  Issued Date : Sep. 05, 2019
Form version: 181113


                    HAC T-COIL TEST REPORT                                                                  Report No. : HA932836-04B
       10. T-Coil testing for CMRS IP Voice
       10.1 VoLTE Tests Results
       General Note:
       1. Codec Investigation: For a voice service/air interface, investigate the variations of codec configurations (WB, NB bit
          rate) and document the parameters (ABM1, ABM2, S+N/N, frequency response) for that voice service. It is only
          necessary to document this for one channel / band, the following worst investigation codec would be remarked to be
          used for the testing for the handset.
       2. Air Interface Investigation:
          a. Use the worst-case codec test and document a limited set of bands / channel / bandwidths. Observe the effect of
               changing the band and bandwidth to ensure that there are no unexpected variations. Using the knowledge of the
               observed variations, it is necessary to report only a set band/channel/bandwidth for each orientation for a voice
               service/air interface and the following worst configure would be remarked to be used for the testing for the
               handset.
          b. Select LTE FDD one frequency band to do measurement at the worst SNR position was additionally performed
               with varying the BWs/Modulations/RB size to verify the variation to find out worst configuration , the observed
               variation is very little to be within 1 dB which is much less than the margin from the rating threshold.
          c. According to the ANSI C63.19 2011 section 7.3.2, test middle channel of each frequency band for HAC testing
               for each orientation to determine worst HAC T-Coil rating.


       <Codec Investigation>

       LTE FDD
                 NB AMR     WB AMR     NB AMR      WB AMR     EVS SWB    EVS SWB   EVS WB    EVS WB    EVS NB     EVS NB              Band / BW
   Codec                                                                                                                  Orientation
                 4.75Kbps   6.60Kbps   12.2Kbps   23.85Kbps    9.6Kbps   128Kbps   5.9Kbps   128Kbps   5.9Kbps   24.4Kbps             / Channel
   ABM 1
                  -2.55      -3.93      -3.25       -3.32       -3.02     -4.15     -3.93     -3.82     -3.87      -3.82
  (dBA/m)
   ABM 2
                  -47.99     -45.48     -48.57     -48.86      -45.58     -46.47   -45.81     -46.14   -46.14     -45.96
  (dBA/m)                                                                                                                              B25 / 20M /
                                                                                                                             Axial
Signal Quality                                                                                                                           26340
                  45.44      41.55      45.32       45.54      42.56      42.32     41.88     42.32     42.27     42.14
    (dB)
   Freq.
                  Pass       Pass        Pass       Pass        Pass      Pass      Pass      Pass      Pass       Pass
 Response
       Remark: According to codec investigation, the worst codec is WB AMR 6.60Kbps


       LTE TDD
                 NB AMR     WB AMR     NB AMR      WB AMR     EVS SWB    EVS SWB   EVS WB    EVS WB    EVS NB     EVS NB              Band / BW
   Codec                                                                                                                  Orientation
                 4.75Kbps   6.60Kbps   12.2Kbps   23.85Kbps    9.6Kbps   128Kbps   5.9Kbps   128Kbps   5.9Kbps   24.4Kbps             / Channel
   ABM 1
                   -6.4      -8.04      -6.07       -6.78       -8.52     -8.04     -7.72     -8.17     -6.53      -6.68
  (dBA/m)
   ABM 2
                  -38.28     -36.81     -38.13     -38.07       -41.4     -40.74   -39.51     -40.63   -39.16      -38.7
  (dBA/m)                                                                                                                              B41 / 20M /
                                                                                                                             Axial
Signal Quality                                                                                                                           40620
                  31.88      28.77      32.06       31.29      32.88       32.7     31.79     32.46     32.63     32.02
    (dB)
   Freq.
                  Pass       Pass        Pass       Pass        Pass      Pass      Pass      Pass      Pass       Pass
 Response
       Remark: According to codec investigation, the worst codec is WB AMR 6.60Kbps




       TEL : 886-3-327-3456                                                                                     Page : 21 of 29
       FAX : 886-3-328-4978                                                                              Issued Date : Sep. 05, 2019
       Form version: 181113


            HAC T-COIL TEST REPORT                                                                        Report No. : HA932836-04B
  <Air Interface Investigation>
                                                                                                                               Signal
                          BW     Modulation    RB          RB                      UL-DL          ABM1           ABM2
      Air Interface                                                   Channel                                                  Quality
                         (MHz)    / Mode       Size       offset                Configuration    dB (A/m)       dB (A/m)
                                                                                                                                 dB
           LTE B25        20        QPSK         1          0          26340                      -5.24             -45.33      40.09
           LTE B25        20        QPSK        50          0          26340                      -5.07             -45.54     40.47
           LTE B25        20        QPSK        100         0          26340                      -5.03             -45.23     40.20
           LTE B25        20       16QAM         1          0          26340                      -5.28             -45.52     40.24
           LTE B25        20       64QAM         1          0          26340                      -5.09             -45.51     40.42
  FDD
           LTE B25        15        QPSK         1          0          26340                      -5.03             -45.17     40.14
           LTE B25        10        QPSK         1          0          26340                      -4.98             -45.17     40.19
           LTE B25         5        QPSK         1          0          26340                      -5.11             -45.39     40.28
           LTE B25         3        QPSK         1          0          26340                      -5.12             -45.43     40.31
           LTE B25        1.4       QPSK         1          0          26340                      -5.13             -45.53     40.40
           LTE B41        20        QPSK         1          0          40620         0            -9.84             -39.45     29.61
           LTE B41        20        QPSK        50          0          40620         0            -10.11            -40.66     30.55
           LTE B41        20        QPSK        100         0          40620         0            -9.42             -39.59     30.17
           LTE B41        20       16QAM         1          0          40620         0            -9.21             -39.75     30.54
           LTE B41        20       64QAM         1          0          40620         0            -9.54             -39.79     30.25
           LTE B41        15        QPSK         1          0          40620         0            -9.45             -39.18     29.73
           LTE B41        10        QPSK         1          0          40620         0            -9.45             -40.49     31.04
  TDD
           LTE B41         5        QPSK         1          0          40620         0            -9.52             -39.95     30.43
           LTE B41        20        QPSK         1          0          40620         1            -10.95            -40.93     29.98
           LTE B41        20        QPSK         1          0          40620         2            -9.38             -40.87     31.49
           LTE B41        20        QPSK         1          0          40620         3            -9.29             -39.79     30.50
           LTE B41        20        QPSK         1          0          40620         4            -9.67             -39.87     30.20
           LTE B41        20        QPSK         1          0          40620         5            -9.38             -39.97     30.59
           LTE B41        20        QPSK         1          0          40620         6            -9.36             -40.22     30.86



                                                                                                 Ambient  Freq.
                                                                      ABM1 ABM2 Signal
Plot                BW              RB RB                     Probe                         T     Noise Response Frequency
     Air Interface       Modulation             Channel                 dB     dB Quality
No.                (MHz)            Size offset              Position                     Rating    dB   Variation Response
                                                                      (A/m) (A/m)    dB
                                                                                                  (A/m)     dB
                                                         Axial (Z)     -5.05 -45.53 40.48  T4     -50.36
 9   LTE Band 7   20M     QPSK       1     0    21100                                                      1.74      Pass
                                                      Transversal (Y) -12.81 -47.68 34.87  T4     -50.24
                                                                Axial (Z)   -5.28 -46.04 40.76    T4       -50.31
10 LTE Band 12 10M        QPSK       1     0    23095                                                                    2        Pass
                                                          Transversal (Y) -12.70 -47.59 34.89     T4       -50.23
                                                                Axial (Z)   -5.49 -46.32 40.83    T4       -50.36
11 LTE Band 13 10M        QPSK       1     0    23230                                                                    2        Pass
                                                          Transversal (Y) -13.73 -47.60 33.87     T4       -50.27
                                                                Axial (Z)   -3.93 -45.48 41.55    T4       -50.32
12 LTE Band 25 20M        QPSK       1     0    26340                                                                    2        Pass
                                                          Transversal (Y) -12.80 -47.50 34.70     T4       -50.21
                                                                Axial (Z)   -5.37 -46.16 40.79    T4       -50.34
13 LTE Band 26 15M        QPSK       1     0    26865                                                                   1.94      Pass
                                                          Transversal (Y) -13.70 -47.20 33.50     T4       -50.24
                                                                Axial (Z)   -4.62 -45.83 41.21    T4       -50.38
14 LTE Band 66 20M        QPSK       1     0   132322                                                                   1.76      Pass
                                                          Transversal (Y) -13.42 -48.35 34.93     T4       -50.28
                                                                Axial (Z)   -8.04 -36.81 28.77    T3       -50.35
15 LTE Band 41 20M        QPSK       1     0    40620                                                                    2        Pass
                                                          Transversal (Y) -12.77 -42.81 30.04     T4       -50.23




  TEL : 886-3-327-3456                                                                                        Page : 22 of 29
  FAX : 886-3-328-4978                                                                                 Issued Date : Sep. 05, 2019
  Form version: 181113


             HAC T-COIL TEST REPORT                                                                      Report No. : HA932836-04B
      10.2 VoWiFi Tests Results
      General Note:
      1. Codec Investigation: For a voice service/air interface, investigate the variations of codec configurations
         (WB, NB bit rate) and document the parameters (ABM1, ABM2, S+N/N, frequency response) for that voice service. It
         is only necessary to document this for one channel/band, the following worst investigation codec would be remarked
         to be used for the testing for the handset.
      2. Air Interface Investigation:
         a. Use the worst-case codec test and document a limited set of bands/channel/bandwidths. Observe the effect of
              changing the band and bandwidth to ensure that there are no unexpected variations. Using the knowledge of the
              observed variations, it is necessary to report only a set band/channel/bandwidth for each orientation for a voice
              service/air interface and the following worst configure would be remarked to be used for the testing for the
              handset.
         b. Select WLAN 2.4GHz and WLAN 5GHz one frequency band to do measurement at the worst SNR position was
              additionally performed with varying the BWs/Modulations/data rate to verify the variation to find out worst
              configuration , the observed variation is very little to be within 1 dB which is much less than the margin from the
              rating threshold.
         c. According to the ANSI C63.19 2011 section 7.3.2, test middle channel of each frequency band for HAC testing
              for each orientation to determine worst HAC T-Coil rating.


      <Codec Investigation>
                 NB AMR     WB AMR     NB AMR      WB AMR EVS SWB     EVS SWB   EVS WB    EVS WB    EVS NB     EVS NB                 Band /
   Codec                                                                                                               Orientation
                 4.75Kbps   6.60Kbps   12.2Kbps   23.85Kbps 9.6Kbps   128Kbps   5.9Kbps   128Kbps   5.9Kbps   24.4Kbps               Channel
   ABM 1
                  -6.62      -7.36      -6.54       -7.46    -6.76     -7.24     -7.13     -7.16     -7.31      -7.2
  (dBA/m)
   ABM 2
                  -49.82     -45.02     -49.95     -46.16    -45.43    -46.03   -45.43     -45.77   -45.99     -45.94
  (dBA/m)                                                                                                                            2.4GHz
                                                                                                                          Axial
Signal Quality                                                                                                                       WLAN / 6
                   43.2      37.66      43.41       38.7     38.67     38.79     38.3      38.61     38.68     38.74
    (dB)
   Freq.
                  Pass       Pass        Pass       Pass     Pass      Pass      Pass      Pass      Pass       Pass
 Response
      Remark: According to codec investigation, the worst codec is WB AMR 6.60Kbps




      TEL : 886-3-327-3456                                                                                    Page : 23 of 29
      FAX : 886-3-328-4978                                                                             Issued Date : Sep. 05, 2019
      Form version: 181113


         HAC T-COIL TEST REPORT                                                                      Report No. : HA932836-04B
<Air Interface Investigation>
                                                                                                                         Signal
 Frequency                                                                              ABM1            ABM2
                     Air Interface     Bandwidth      Data Rate       Channel                                            Quality
   Bands                                                                               dB (A/m)        dB (A/m)
                                                                                                                           dB
                       802.11b            20             1M               6                -8.15            -46.16        38.01
                       802.11b            20             11M              6                -8.06            -46.21       38.15
                       802.11g            20             6M               6                -7.79            -46.13       38.34
WLAN 2.4GHz
                       802.11g            20             54M              6                -7.90            -46.37       38.47
                     802.11n-HT20         20            MCS0              6                -7.89            -46.15       38.26
                     802.11n-HT20         20            MCS7              6                -8.08            -46.26       38.18
                       802.11a            20             6M              40                -9.25            -45.55       36.30
                       802.11a            20             54M             40                -8.55            -45.31       36.76
                 802.11an-HT20            20            MCS0             40                -9.00            -45.36       36.36
                 802.11an-HT20            20            MCS7             40                -9.16            -45.47       36.31
                 802.11an-HT40            40            MCS0             38                -8.80            -45.26       36.46
                 802.11an-HT40            40            MCS7             38                -8.71            -45.54       36.83
WLAN 5GHz
                802.11ac-VHT20            20            MCS0             40                -9.11            -45.82       36.71
                802.11ac-VHT20            20            MCS8             40                -8.64            -45.35       36.71
                802.11ac-VHT40            40            MCS0             38                -8.79            -45.59       36.80
                802.11ac-VHT40            40            MCS8             38                -8.97            -45.88       36.91
                802.11ac-VHT80            80            MCS0             50                -9.23            -45.71       36.48
                802.11ac-VHT80            80            MCS8             50                -9.15            -45.56       36.41

                                                                                                         Freq.
                                                                   ABM1 ABM2 Signal           Ambient
Plot                                                   Probe                             T             Response Frequency
     Air Interface          Mode        Channel                      dB     dB Quality         Noise
No.                                                   Position                         Rating          Variation Response
                                                                   (A/m) (A/m)    dB          dB (A/m)
                                                                                                          dB
                                                      Axial (Z)     -7.36 -45.02 37.66  T4     -50.33
16 WLAN2.4GHz          802.11b 1Mbps       6                                                               2       Pass
                                                   Transversal (Y) -15.90 -46.00 30.10  T4     -50.20
                                                      Axial (Z)    -9.51 -46.58    37.07      T4   -50.34
17    WLAN5GHz         802.11a 6Mbps      40                                                                         2     Pass
                                                   Transversal (Y) -17.60 -48.12   30.52      T4   -50.21
                                                      Axial (Z)    -8.03 -45.95    37.92      T4   -50.30
18    WLAN5GHz         802.11a 6Mbps      60                                                                         2     Pass
                                                   Transversal (Y) -15.87 -47.93   32.06      T4   -50.20
                                                      Axial (Z)    -7.71 -45.70    37.99      T4   -50.35
19    WLAN5GHz         802.11a 6Mbps      124                                                                        2     Pass
                                                   Transversal (Y) -16.03 -46.98   30.95      T4   -50.24
                                                      Axial (Z)    -8.27 -46.35    38.08      T4   -50.36
20    WLAN5GHz         802.11a 6Mbps      157                                                                        2     Pass
                                                   Transversal (Y) -15.98 -48.16   32.18      T4   -50.22




TEL : 886-3-327-3456                                                                                      Page : 24 of 29
FAX : 886-3-328-4978                                                                               Issued Date : Sep. 05, 2019
Form version: 181113


           HAC T-COIL TEST REPORT                                                                   Report No. : HA932836-04B
11. T-Coil testing for OTT VoIP Application
General Notes:
1.    According to the ANSI C63.19 2011 section 7.3.2, test middle channel of each frequency band for HAC testing for
      each orientation to determine worst HAC T-Coil rating.
2.    The google Duo VoIP application are pre-installed on this device. According to KDB 285076 D02, all air interfaces via
      a data connection with VoIP application need to be considered HAC testing.
3.    The Google Duo only support OPUS audio codec and support 6Kbps to 75Kbps bitrate.
4.    The test setup used for OTT VoIP call is the DUT connect to the CMW500 and via the data application unit on
      CMW500 connection to the Internet, the Auxiliary EUT is connected to the WiFi access point, the
      channel/Modulation/Frequency bands/data rate is configured on the CMW500 for the DUT unit. For the
      Auxiliary VoIP unit which is used to configure the audio codec rate and determine the audio input level of -20dBm0
      based on the KDB 285076 D02v03 requirement.
5.    Codec Investigation: For a voice service/air interface, investigate the variations of codec configurations (WB, NB bit
      rate) and document the parameters (ABM1, ABM2, S+N/N, frequency response) for that voice service. It is only
      necessary to document this for one channel/band, the following tests results which the worst case codec would be
      remarked to be used for the testing for the handset.
6.    Air Interface Investigation:
      a. Use the worst-case codec test and document a limited set of bands/channel/bandwidths. Observe the effect of
           changing the band and bandwidth to ensure that there are no unexpected variations. Using the knowledge of the
           observed variations, it is necessary to report only a set band/channel/bandwidth for each orientation for a voice
           service/air interface.
      b. Due to OTT service and CMRS IP service are all be established over the internet protocol for the voice service,
           and on both services use the identical RF air interface for the WIFI and LTE, therefore according to VoLTE and
           VoWiFi test results of air interface investigation, the worst configuration and frequency band of air interface was
           used for OTT T-Coil testing.
           -LTE FDD worst configuration and band: LTE Band 26/15MHz/QPSK/1RB Size
           -LTE TFDD worst configuration and band: LTE Band 41/20MHz/QPSK/1RB Size
           -WLAN2.4GHz worst configuration: 802.11b /1Mbps
           -WLAN5GHz worst configuration and Band: WLAN 5.2GHz /11a/6Mbps



<Codec Investigation>

EDGE

        Codec             Opus 6kbps            Opus 40kbps            Opus 75kbps       Orientation        Band / Channel

     ABM 1 (dBA/m)            -12.76                -12.55                    -12.63

     ABM 2 (dBA/m)            -36.3                  -35.8                    -35.7
                                                                                            Axial            GSM850 / 189
 Signal Quality (dB)          23.54                  23.25                    23.07

     Freq. Response           Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 75Kbps


HSPA

        Codec             Opus 6kbps            Opus 40kbps            Opus 75kbps       Orientation        Band / Channel

     ABM 1 (dBA/m)            -6.18                  -4.91                    -5.74

     ABM 2 (dBA/m)            -50.56                -48.86                    -49.5
                                                                                            Axial           UMTS B2 / 9400
 Signal Quality (dB)          44.38                  43.95                    43.76

     Freq. Response           Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 75Kbps




TEL : 886-3-327-3456                                                                                  Page : 25 of 29
FAX : 886-3-328-4978                                                                           Issued Date : Sep. 05, 2019
Form version: 181113


          HAC T-COIL TEST REPORT                                                                  Report No. : HA932836-04B
1XEVDO Rev A

       Codec               Opus 6kbps           Opus 40kbps            Opus 75kbps     Orientation        Band / Channel

   ABM 1 (dBA/m)              -6.28                  -4.81                    -5.47

   ABM 2 (dBA/m)              -50.95                -49.06                    -49.5
                                                                                          Axial             BC0 / 384
 Signal Quality (dB)          44.67                  44.25                    44.03

  Freq. Response              Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 6Kbps




LTE FDD

       Codec               Opus 6kbps           Opus 40kbps            Opus 75kbps     Orientation        Band / Channel

   ABM 1 (dBA/m)              -6.19                  -6.64                    -6.15

   ABM 2 (dBA/m)              -50.53                -50.48                    -49.96
                                                                                          Axial          B26 / 15M / 26865
 Signal Quality (dB)          44.34                  43.84                    43.81

  Freq. Response              Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 75Kbps




LTE TDD

       Codec               Opus 6kbps           Opus 40kbps            Opus 75kbps     Orientation        Band / Channel

   ABM 1 (dBA/m)              -10.38                -10.34                    -11.06

   ABM 2 (dBA/m)              -41.64                -41.58                    -41.62
                                                                                          Axial          B41 / 20M / 40620
 Signal Quality (dB)          31.26                  31.24                    30.56

  Freq. Response              Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 75Kbps




WLAN

       Codec               Opus 6kbps           Opus 40kbps            Opus 75kbps     Orientation        Band / Channel

   ABM 1 (dBA/m)              -5.94                  -5.87                    -6.47

   ABM 2 (dBA/m)              -50.49                -50.34                    -50.23
                                                                                          Axial           WLAN2.4G / 6
 Signal Quality (dB)          44.55                  44.47                    43.76

  Freq. Response              Pass                   Pass                     Pass
Remark: According to codec investigation, the worst codec bitrate is 75Kbps




TEL : 886-3-327-3456                                                                                Page : 26 of 29
FAX : 886-3-328-4978                                                                         Issued Date : Sep. 05, 2019
Form version: 181113


          HAC T-COIL TEST REPORT                                                               Report No. : HA932836-04B

                                                                                                         Freq.
                                                                   ABM1 ABM2 Signal           Ambient
Plot                                                  Probe                              T             Response Frequency
     Air Interface         Mode          Channel                     dB     dB Quality         Noise
No.                                                  Position                          Rating          Variation Response
                                                                   (A/m) (A/m)    dB          dB (A/m)
                                                                                                          dB
                                                      Axial (Z)    -12.63 -35.70 23.07  T3     -50.38
21     GSM850          EDGE 2 Tx slots     189                                                           1.04      Pass
                                                   Transversal (Y) -12.87 -40.05 27.18  T3     -50.25
                                                      Axial (Z)   -9.41 -37.01 27.60     T3   -50.34
22     GSM1900         EDGE 2 Tx slots     661                                                           1.45       Pass
                                                   Transversal (Y) -12.72 -44.44 31.72   T4   -50.22
                                                      Axial (Z)   -5.74 -49.50 43.76     T4   -50.34
23    WCDMA II             HSPA           9400                                                           1.27       Pass
                                                   Transversal (Y) -13.97 -49.52 35.55   T4   -50.20
                                                      Axial (Z)   -5.96 -49.59 43.63     T4   -50.35
24    WCDMA IV             HSPA           1413                                                           0.86       Pass
                                                   Transversal (Y) -14.04 -46.58 32.54   T4   -50.35
                                                      Axial (Z)   -5.74 -49.17 43.43     T4   -50.30
25    WCDMA V              HSPA           4182                                                           1.22       Pass
                                                   Transversal (Y) -15.78 -47.59 31.81   T4   -50.25
                                                      Axial (Z)   -5.47 -49.50 44.03     T4   -50.32
26    CDMA BC0         RTAP 153.6Kbps      384                                                           0.85       Pass
                                                   Transversal (Y) -13.63 -45.85 32.22   T4   -50.22
                                                      Axial (Z)   -5.52 -49.92 44.40     T4   -50.36
27    CDMA BC1         RTAP 153.6Kbps      600                                                           0.88       Pass
                                                   Transversal (Y) -13.61 -46.09 32.48   T4   -50.22
                                                      Axial (Z)   -5.52 -49.58 44.06     T4   -50.34
28   CDMA BC10         RTAP 153.6Kbps      580                                                           0.78       Pass
                                                   Transversal (Y) -13.64 -46.76 33.12   T4   -50.24
                                                      Axial (Z)   -6.15 -49.96 43.81     T4   -50.33
29   LTE Band 26       15M_QPSK_1_0       26865                                                          0.55       Pass
                                                   Transversal (Y) -14.70 -49.78 35.08   T4   -50.21
                                                      Axial (Z)   -11.06 -41.62 30.56    T4   -50.30
30   LTE Band 41       20M_QPSK_1_0       40620                                                          0.69       Pass
                                                   Transversal (Y) -14.85 -44.29 29.44   T3   -50.20
                                                      Axial (Z)   -6.47 -50.23 43.76     T4   -50.35
31 WLAN2.4GHz          802.11b 1Mbps        6                                                            1.42       Pass
                                                   Transversal (Y) -14.70 -49.26 34.56   T4   -50.23
                                                      Axial (Z)   -6.97 -47.01 40.04     T4   -50.31
32    WLAN5GHz         802.11a 6Mbps       40                                                            0.64       Pass
                                                   Transversal (Y) -13.83 -48.89 35.06   T4   -50.22




     Remark:
      1. Phone Condition: Mute on; Backlight off; Max Volume
      2. The detail frequency response results please refer to appendix A.
      3. Test Engineer:Nick Yu and Bevis Chang




TEL : 886-3-327-3456                                                                                 Page : 27 of 29
FAX : 886-3-328-4978                                                                          Issued Date : Sep. 05, 2019
Form version: 181113


          HAC T-COIL TEST REPORT                                                              Report No. : HA932836-04B
12. 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.
The judgment of conformity in the report is based on the measurement results excluding the measurement
uncertainty.

                                Uncertainty                                                      Standard       Standard
                                  Value         Probability                   Ci       Ci
      Error Description                                           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




TEL : 886-3-327-3456                                                                               Page : 28 of 29
FAX : 886-3-328-4978                                                                        Issued Date : Sep. 05, 2019
Form version: 181113


         HAC T-COIL TEST REPORT                                                  Report No. : HA932836-04B

13. 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]   FCC KDB 285076 D01v05, “Equipment Authorization Guidance for Hearing Aid Compatibility”, Sep
       2017
 [3]   FCC KDB 285076 D02v03, “Guidance for performing T-Coil tests for air interfaces supporting voice
       over IP (e.g., LTE and WiFi) to support CMRS based telephone services”, Sep 2017
 [4]   FCC KDB 285076 D03v01, “Hearing aid compatibility frequently asked questions”, Sep 2017
 [5]   SPEAG DASY System Handbook




TEL : 886-3-327-3456                                                                  Page : 29 of 29
FAX : 886-3-328-4978                                                           Issued Date : Sep. 05, 2019
Form version: 181113



Document Created: 2019-09-20 16:44:16
Document Modified: 2019-09-20 16:44:16

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