X210APM Multi-band GSM/EDGE/UMTS/LTE Phone with Bluetooth and WLAN Test Report HAC TCoil LG Electronics MobileComm USA, Inc.

LG Electronics MobileComm USA, Inc. Multi-band GSM/EDGE/UMTS/LTE Phone with Bluetooth and WLAN

FCC ID Filing: ZNFX210APM
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PCTEST ENGINEERING LABORATORY, INC.
7185 Oakland Mills Road, Columbia, MD 21046 USA
Tel. 410.290.6652 / Fax 410.290.6654
http://www.pctest.com
HEARING AID COMPATIBILITY
Applicant Name:
LG Electronics MobileComm U.S.A. Inc.
1000 Sylvan Avenue
Englewood Cliffs, NJ 07632
United States
Date of Testing:
11/11/2017 - 12/26/2017
Test Site/Location:
PCTEST Lab, Columbia, MD, USA
Test Report Serial No.:
1M1711080290-08-R2.ZNF
FCC I D:
ZNFX210APM
APPLI C A NT:
LG ELECTRONICS MOBILECOMM U.S.A. INC.
Scope of Test:
Application Type:
FCC Rule Part(s):
HAC Standard:
Audio Band Magnetic Testing (T-Coil)
Certification
CFR §20.19(b)
ANSI C63.19-2011
285076 D01 HAC Guidance v05
285076 D02 T-Coil testing for CMRS IP v03
Portable Handset
LM-X210APM
LMX210APM, X210APM, LM-X210CM, LM-X210CMR, LMX210CM,
LMX210CMR, X210CM, X210CMR
Pre-Production Sample [S/N: 00715]
DUT Type:
Model:
Additional Model(s):
Test Device Serial No.:
C63.19-2011 HAC
Category:
T3 (SIGNAL TO NOISE CATEGORY)
Note: This revised Test Report (S/N: 1M1711080290-08-R2.ZNF) supersedes and replaces the previously issued test report on the
same subject device for the same type of testing as indicated. Please discard or destroy the previously issued test report(s) and
dispose of it accordingly.
This wireless portable device has been shown to be hearing-aid compatible under the above rated category, specified in ANSI/IEEE
Std. C63.19-2011 and has been tested in accordance with the specified measurement procedures. Test results reported herein
relate only to the item(s) tested. Hearing-Aid Compatibility is based on the assumption that all production units will be designed
electrically identical to the device tested in this report. North American Bands only.
I attest to the accuracy of data. All measurements reported herein were performed by me or were made under my supervision and
are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and
vouch for the qualifications of all persons taking them.
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 1 of 75
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© 2017 PCTEST Engineering Laboratory, Inc. All rights reserved. Unless otherwise specified, no part of this report may be reproduced or utilized in any part, form or by any means, electronic or
mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
T A B L E
O F
C O N T E N T S
1.
INTRODUCTION ............................................................................................................................. 3
2.
DUT DESCRIPTION ........................................................................................................................ 4
3.
ANSI C63.19-2011 PERFORMANCE CATEGORIES .................................................................... 6
4.
METHOD OF MEASUREMENT ...................................................................................................... 8
5.
VOLTE TEST SYSTEM SETUP AND DUT CONFIGURATION ................................................... 18
6.
VOWIFI TEST SYSTEM SETUP AND DUT CONFIGURATION .................................................. 20
7.
OTT VOIP TEST SYSTEM AND DUT CONFIGURATION ........................................................... 23
8.
FCC 3G MEASUREMENTS .......................................................................................................... 25
9.
TEST SUMMARY .......................................................................................................................... 26
10.
MEASUREMENT UNCERTAINTY ................................................................................................ 38
11.
EQUIPMENT LIST ......................................................................................................................... 39
12.
TEST DATA ................................................................................................................................... 40
13.
CALIBRATION CERTIFICATES.................................................................................................... 63
14.
CONCLUSION ............................................................................................................................... 70
15.
REFERENCES .............................................................................................................................. 71
16.
TEST SETUP PHOTOGRAPHS ................................................................................................... 73
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
1.
INTRODUCTION
On July 10, 2003, the Federal Communications Commission (FCC) adopted new rules requiring wireless
manufacturers and service providers to provide digital wireless phones that are compatible with hearing
aids. The FCC has modified the exemption for wireless phones under the Hearing Aid Compatibility Act of
1998 (HAC Act) in WT Docket 01-309 RM-86581 to extend the benefits of wireless telecommunications to
individuals with hearing disabilities. These benefits encompass business, social and emergency
communications, which increase the value of the wireless network for everyone. An estimated more than
10% of the population in the United States show signs of hearing impairment and of that fraction, almost
80% use hearing aids. Approximately 500 million people worldwide and 30 million people in the United
States suffer from hearing loss.
Compatibility Tests Involved:
The standard calls for wireless communications devices to be measured for:
 RF Electric-field emissions
 T-coil mode, magnetic-signal strength in the audio band
 T-coil mode, magnetic-signal frequency response through the audio band
 T-coil mode, magnetic-signal and noise articulation index
The hearing aid must be measured for:
 RF immunity in microphone mode
 RF immunity in T-coil mode
In the following tests and results, this report includes the evaluation for a wireless communications
device.
Figure 1-1 Hearing Aid in-vitu
FCC Rule & Order, WT Docket 01-309 RM-8658
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
2.
DUT DESCRIPTION
FCC ID:
Applicant:
ZNFX210APM
LG Electronics MobileComm U.S.A. Inc.
1000 Sylvan Avenue
Englewood Cliffs, NJ 07632
United States
Model:
Additional Model(s):
Serial Number:
LM-X210APM
LMX210APM, X210APM, LM-X210CM, LM-X210CMR, LMX210CM, LMX210CMR,
X210CM, X210CMR
00715
HW Version:
Rev.B
SW Version:
X210APM07i
Antenna:
Internal Antenna
HAC Test Configurations:
GSM 850, 128, 190, 251, BT Off, WLAN Off, LTE Off
EDGE 850, 190, BT Off, WLAN Off
GSM 1900, 512, 661, 810, BT Off, WLAN Off, LTE Off
EDGE 1900, 661, BT Off, WLAN Off
UMTS V, 4132, 4183, 4233, BT Off, WLAN Off, LTE Off
HSPA V, 4183, BT Off, WLAN Off
UMTS IV, 1312, 1412, 1513, BT Off, WLAN Off, LTE Off
HSPA IV, 1412, BT Off, WLAN Off
UMTS II, 9262, 9400, 9538, BT Off, WLAN Off, LTE Off
HSPA II, 9400, BT Off, WLAN Off
LTE FDD B2; BW's: 20MHz, 15MHz, 10MHz, 5MHz, 3MHz, 1.4MHz; BT Off, WLAN Off
LTE FDD B4; BW's: 20MHz, 15MHz, 10MHz, 5MHz, 3MHz, 1.4MHz; BT Off, WLAN Off
LTE FDD B5; BW's: 10MHz, 5MHz, 3MHz, 1.4MHz; BT Off, WLAN Off
LTE FDD B12; BW's: 10MHz, 5MHz, 3MHz, 1.4MHz; BT Off, WLAN Off
2.4GHz WIFI; 802.11b/g/n; BT Off, Licensed Data Off
* Note: LTE test channels for different bands and bandwidths can be found in Sect. 9.II
DUT Type:
Portable Handset
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
Table 2-1: ZNFX210APM HAC Air Interfaces
Band
(MHz)
Air‐Interface
Type Transport
HAC Tested
Simultaneous
But Not Tested
Name of Voice Service
VO
Yes
Yes: WIFI or BT
CMRS Voice*
VD
Yes
Yes: WIFI or BT
Google Duo**
VD
Yes
Yes: WIFI or BT
CMRS Voice*
VD
Yes
Yes: WIFI or BT
Google Duo**
VD
Yes
Yes: WIFI or BT
VoLTE*
Google Duo**
VD
Yes
Yes: GSM, UMTS, or LTE
VoWIFI**
Google Duo**
850
1900
GSM
GPRS/EDGE
850
1700
UMTS
1900
HSPA
700 (B12)
LTE (FDD)
850 (B5)
1700 (B4)
1900 (B2)
WIFI
2450
BT
2450
DT
Type Transport
VO = Voice Only
DT = Digital Data ‐ Not intended for CMRS Service
VD = CMRS and IP Voice over Data Transport
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
No
Yes: GSM, UMTS, or LTE
N/A
Notes:
*Reference level in accordance with 7.4.2.1 of ANSI C63.19‐2011 and July 2012
C63 VoLTE Interpretation.
**Reference level is ‐20dBm0 in accordance with FCC KDB 285076 D02
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 5 of 75
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
3.
I.
ANSI C63.19-2011 PERFORMANCE CATEGORIES
MAGNETIC COUPLING
Axial and Radial Field Intensity
All orientations of the magnetic field, in the axial and radial position along the measurement plane
shall be ≥ -18 dB(A/m) at 1 kHz in a 1/3 octave band filter per §8.3.1.
Frequency Response
The frequency response of the axial component of the magnetic field shall follow the response curve
specified in EIA RS-504-1983, over the frequency range 300 Hz – 3000 Hz per §8.3.2.
MAGNETIC FIELD STRENGTH RELATIVE TO 1000 Hz
dB Relative to Value at 1 kHz
20
-4 dB/Oct.
10
+2 dB
-2 dB
-6 dB/Oct.
-10
6 dB/Oct.
-20
300
500
1000
2000
3000
FREQUENCY (Hz)
Figure 3-1
Magnetic field frequency response for Wireless Devices with an axial field
≤-15 dB(A/m) at 1 kHz
MAGNETIC FIELD STRENGTH RELATIVE TO 1000 Hz
dB Relative to Value at 1 kHz
20
-4 dB/Oct.
10
+2 dB
-2 dB
-7
-10
6 dB/Oct.
-12
-20
300
500
1000
2000
3000
FREQUENCY (Hz)
Figure 3-2
Magnetic Field frequency response for wireless devices with an axial field that exceeds
-15 dB(A/m) at 1 kHz
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
Signal Quality
The table below provides the signal quality requirement for the intended audio magnetic signal from a
wireless device. 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. The only criterion that can be measured is the RF immunity in
T-coil mode. This is measured using the same procedure as the audio coupling mode at the same
levels.
The signal quality of the axial and radial components of the magnetic field was used to determine the
T-coil mode category.
Category
Telephone RF Parameters
Wireless Device Signal Quality
[(Signal + Noise)-to-noise ratio in dB]
T1
0 to 10 dB
T2
10 to 20 dB
T3
20 to 30 dB
T4
> 30 dB
Table 3-1
Magnetic Coupling Parameters
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
4.
I.
METHOD OF MEASUREMENT
Test Setup
The equipment was connected as shown in an acoustic/RF hemi-anechoic chamber:
Figure 4-1
Validation Setup with Helmholtz Coil
Callbox
Figure 4-2
T-Coil Test Setup
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
II.
Scanning Mechanism
Manufacturer:
TEM
Accuracy:
± 0.83 cm/meter
Minimum Step Size:
0.1 mm
Maximum speed
6.1 cm/sec
Line Voltage:
115 VAC
Line Frequency:
60 Hz
Material Composite:
Delrin (Acetal)
Data Control:
Parallel Port
Dynamic Range (X-Y-Z):
45 x 31.75 x 47 cm
Dimensions:
36” x 25” x 38”
Operating Area:
36” x 49” x 55”
Reflections:
< -20 dB (in anechoic chamber)
III.
Figure 4-3
RF Near-Field Scanner
ITU-T P.50 Artificial Voice
Manufacturer:
Active Frequency
Range:
Stimulus Type:
Single Sample
Duration:
Activity Level:
ITU-T
100 Hz – 8 kHz
Male and Female, no spaces
20.96 seconds
100%
Figure 4-4
Spectral Characteristic of full P.50
Figure 4-5
Temporal Characteristic of full P.50
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Figure 4-6 Magnetic Measurement Processing Steps
IV.
Test Procedure
1. Ambient Noise Check per C63.19 §7.3.1
a. Ambient interference was monitored using a Real-Time Analyzer between 100-10,000 Hz
with 1/3 octave filtering.
b. “A-weighting” and Half-Band Integration was applied to the measurements.
c. Since this measurement was measured in the same method as ABM2 measurements,
this level was verified to be more than 10 dB below the lowest measurement signal
(which is the highest ABM2 measurement for a T4 WD). Therefore the maximum noise
level for a T4 WD with an ABM1 = -18 dBA/m is:
-18 - 30 - 10= -58 dBA/m
2. Measurement System Validation(See Figure 4-1)
a. The measurement system including the probe, pre-amplifier and acquisition system were
validated as an entire system to ensure the reliability of test measurements.
b. ABM1 Validation
The magnetic field at the center of the Helmholtz coil is given by the equation (per
C63.19 Annex D.10.1):
N( )
Hc 

r 1.25
r 1.253
NI
Where Hc = magnetic field strength in amperes per meter
N = number of turns per coil
For the Helmholtz Coil, N=20; r=0.08m; R=10.2Ω and using V=18mV:
0.018
10.2  0.316 A / m  10dB( A / m)
Hc 
0.08  1.25 3
20  (
Therefore a pure tone of 1kHz was applied into the coils such that 18mV was observed
across the resistor. The voltmeter used for measurement was verified to be capable of
measurements in the audio band range. This theoretically generates an expected field of
-10 dB(A/m) in the center of the Helmholtz coil which was used to validate the probe
measurement at -10dB(A/m). This was verified to be within ± 0.5 dB of the -10dB(A/m)
value (see Pages 35-36).
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c.
Frequency Response Validation
The frequency response through the Helmholtz Coil was verified to be within 0.5 dB
relative to 1kHz, between 300 – 3000 Hz using the P.50 signal as shown below:
Figure 4-7 Frequency Response Validation
d. ABM2 Measurement Validation
WD noise measurements are filtered with A-weighting and Half-Band Integration over a
frequency range of 100Hz – 10kHz to process ABM2 measurements. Below is the
verification of the system processing A-weighting and Half-Band integration between
system input to output within 0.5 dB of the theoretical result:
Table 4-1
ABM2 Frequency Response Validation
HBI, A HBI, A Theoretical dB Var.
f (Hz)
Measured
(dB re 1kHz) (dB re 1kHz)
-0.010
100
-16.180
-16.170
-0.007
125
-13.257
-13.250
-0.007
160
-10.347
-10.340
-0.007
200
-8.017
-8.010
-0.005
250
-5.925
-5.920
-0.005
315
-4.045
-4.040
-0.005
400
-2.405
-2.400
-0.002
500
-1.212
-1.210
0.001
630
-0.349
-0.350
0.001
800
0.071
0.070
0.000
1000
0.000
0.000
-0.003
1250
-0.503
-0.500
-0.003
1600
-1.513
-1.510
0.002
2000
-2.778
-2.780
0.004
2500
-4.316
-4.320
0.004
3150
-6.166
-6.170
0.008
4000
-8.322
-8.330
0.017
5000
-10.573
-10.590
0.022
6300
-13.178
-13.200
0.029
8000
-16.241
-16.270
0.025
10000
-19.495
-19.520
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ABM2 Frequency Response Validation (LISTEN)
10
100
1000
10000
dBV, A weighted, HBI
-10
-20
-30
HBI, A - Measured
HBI, A - Theoretical
-40
-50
Frequency (Hz)
Figure 4-8
ABM2 Frequency Response Validation
The ABM2 result is a power sum from 100Hz to 10kHz with half-band integration and Aweighting. To verify the power sum measurement, a power sum over the full band was
measured and verified to track with the source level (See Figure 4-9). Therefore the
setup in this step was used to verify the power sum post-processing for ABM2
measurements. See below block diagram:
Figure 4-9
ABM2 Validation Block Diagram
The power summed output results for a known input were compared to the multi-meter
results to verify any deviation in the post-processing implemented with the power-sum.
Table 4-2
ABM2 Power Sum Validation
WN Input
(dBV)
Power Sum
(dBV)
Multimeter-Full
(dBV)
Dev (dB)
-60
-60.36
-60.2
0.16
-50
-50.19
-50.13
0.06
-40
-40.14
-40.03
0.11
-30
-30.13
-30.01
0.12
-20
-20.12
-20
0.12
-10
-10.14
-10
0.14
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ABM2 Power Sum Validation (LISTEN)
-10
-20
Measured Level (dBV)
-30
-40
Power Sum (dBV)
Multimeter-Full (dBV)
-50
-60
-70
-60
-55
-50
-45
-40
-35
-30
-25
-20
-15
-10
WN Input (dBV)
Figure 4-10
ABM2 Power Sum Validation
3. Measurement Test Setup
a. Fine scan above the WD (TEM)
i. A multitone signal was applied to the handset such that the phone acoustic
output was stable within 1dB over the probe settling time and with the acoustic
output level at the C63.19 specified levels (below). The measurement step size
was in 2 mm increments at a distance of 10 mm between the surface of the
wireless device as shown below (note that in Figure 4-12, the grid is not to scale
but merely a graphical representation of the coordinate system in use):
(5.2,5.2)
x‐axis
y‐axis
(0,0)
Figure 4-11
Measurement Distance
Figure 4-12
Measurement Grid
ii. After scanning, the planar field maximum point was determined. The position of
the probe was moved to this location to setup the test using the SoundCheck
system.
iii. These steps were repeated for all T-coil orientations (axial and radial) per Figure
4-15 after a T-coil orientation was fully measured with the SoundCheck system.
b. Speech Signal Setup to Base Station Simulator
i. C63.19 Table 7-1 states audio reference input levels for various technologies:
Standard
TIA/EIA/IS-2000
J-STD-007
T1/T1P1/3GPP
CDMA
GSM (217)
UMTS (WCDMA)
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-18
-16
-16
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ii. See Section 5 and 6 for more information regarding CMW500 audio level settings
for Voice Over LTE (VoLTE), and Voice Over WIFI (VoWIFI) testing.
iii. See Section 7 for more information regarding audio level settings for Over-TheTop (OTT) Voice Over IP (VoIP) Testing.
c. Real-Time Analyzer (RTA)
i. The Real-Time Analyzer was configured to analyze measurements using 1/3
Octave band weighted filtering.
d. WD Radio Configuration Selection
i. The device was chosen to be tested in the worst-case ABM2 condition (see
below for GSM, see Section 8 for more information regarding worst-case
configurations for UMTS. LTE configuration information can be found in Section
5. WIFI configuration information can be found in Section 6 and 7):
Figure 4-13
Vocoder Analysis for ABM Noise for GSM
4. Signal Quality Data Analysis
a. Narrow-band Magnetic Intensity
i. The standard specifies a 1kHz 1/3 octave band minimum field intensity for a sine
tone. The ABM1 measurements were evaluated at 1kHz with 1/3 octave band
filtering over an averaged period of 10 seconds.
b. Frequency Response
i. The appropriate frequency response curve was measured to curves in Figure 3-1
or Figure 3-2 between 300 – 3000 Hz using digital linear averaging (limit lines
chosen according to measurement found in step 4a). A linear average over 3x
the length of the artificial voice signal (3x sampling) was performed. A 10 second
delay was configured in the measurement process of the stimulus to ensure
handset vocoder latency effects and echo cancellation devices (if any) were
appropriately stabilized during measurements.
ii. The appropriate post-processing was applied according to the system processing
chain illustrated in Figure 4-7. All R10 frequencies were plotted with respect to
0dB at 1kHz value and aligned with respect to the EIA-504 mask.
iii. The margin is represented by the closest measured data point on the curve to
the EIA-504 limit lines, in dB.
c. Signal Quality Index
i. Ensuring the WD was at maximum RF power, maximum volume, backlight off,
display on, maximum contrast setting, keypad lights on (when possible) with no
audio signal through the vocoder, the WD was measured over at least 100 Hz –
10,000 Hz, maximized over 5 seconds with a 50ms sample time for the ABM2
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measurement (5 second time period is used in noise measurements under
standards such as IEEE 269, etc.).
ii. After applying half-band integration and A-weighting to the result, a power sum
was applied over each 1/3 octave bandwidth frequency for an ABM2 value.
iii. This result was subtracted from the ABM1 result in step a, to obtain the Signal
Quality.
V.
Test Setup
Integrator
1/3 Octave Bandpass
Filter
Probe Coil
(Shown in Axial Position)
RMS Voltmeter
Graphics
Recorder
Wireless Device
Antenna replaced
with Coaxial Connection
Reference
Base Station
Simulator
Signal
Source
Controller
Figure 4-14
Audio Magnetic Field Test Setup
VI.
Deviation from C63.19 Test Procedure
Non-conducted RF connection due to shielding effects of battery cover.
VII. Air Interface Technologies Tested
All air interfaces which support voice capabilities over a managed CMRS or pre-installed OTT VoIP
applications were tested for T-coil. See Table 2-1 for more details regarding which modes were tested.
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VIII. Wireless Device Channels and Frequencies
1. 2G/3G Modes
The frequencies listed in the table below are those that lie in the center of the bands used for
cellular telephony. Low, middle and high channels were tested in each band for FCC compliance
evaluation to ensure the maximum emission is captured across the entire band. Only middle
channels were evaluated for data modes since circuit-switched voice modes were worst case.
Table 4-3
Center Channels and Frequencies
Test frequencies & associated channels
Frequency
(MHz)
Channel
Cellular 850
190 (GSM)
4183 (UMTS)
836.60
836.60
AWS 1750
1412 (UMTS)
1730.40
PCS 1900
661 (GSM)
9400 (UMTS)
1880
1880
2. 4G (LTE) Modes
The middle channel for every band and bandwidth combination was tested for each probe
orientation. The band and bandwidth combination from each probe orientation resulting in the
worst-case SNNR was additionally tested using low and high channels for that band and
bandwidth combination. The middle channel and supported bandwidths from the worst-case band
was additionally evaluated with OTT VoIP for each probe orientation. See Tables 9-14 to 9-18 for
LTE bandwidths and channels.
3. WIFI
The middle channel for each 802.11 standard was tested for each probe orientation. The 2.4GHz
802.11 standard from each probe orientation resulting in the worst-case SNNR was additionally
tested using low and high channels. See Tables 9-19 and 9-20 for WIFI standards and channels.
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IX.
Test Flow
The flow diagram below was followed (From C63.19):
 Confirm calibration of test
equipment
 Configure and validate test
setup
 Establish WD reference level
 Scan for measurement locations
Position and orient probe
Measure desired audio band
Signal strength
Measure undesired audio
Band signal strength
 Calculate signal strength
 Calculate signal quality
 Measure frequency response
Both locations
measured?
Intensity and
Frequency response
compliant?
Determine and record signal
Quality category
Done
Figure 4-15
C63.19 T-Coil Signal Test Process
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5.
VOLTE TEST SYSTEM SETUP AND DUT CONFIGURATION
I.
Test System Setup for VoLTE over IMS T-coil Testing
1.
Equipment Setup
The general test setup used for VoLTE over IMS is shown below. The callbox used when
performing VoLTE over IMS T-coil measurements is a CMW500. The Data Application Unit
(DAU) of the CMW500 was used to simulate the IP Multimedia Subsystem (IMS) server.
Figure 5-1
Test Setup for VoLTE over IMS T-Coil Measurements
2. Audio Level Settings
According to the July 2012 interpretations by the C63 Committee regarding the appropriate audio
levels to be used for VoLTE over IMS T-coil testing, -16dBm0 shall be used for the normal
speech input level*. The CMW500 base station simulator was manually configured to ensure that
the settings for speech input and full scale levels resulted in the -16dBm0 speech input level to
the DUT for the VoLTE over IMS connection.
* http://c63.org/documents/misc/posting/new_interpretations.htm
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II.
DUT Configuration for VoLTE over IMS T-coil Testing
1. Radio Configuration
An investigation was performed to determine the modulation and RB configuration to be used for
testing. 16QAM, 1RB, 0RB offset was used for the testing as the worst-case configuration for the
handset. See below table for SNNR comparison between different radio configurations:
Table 5-1
VoLTE over IMS SNNR by Radio Configuration
Frequency
[MHz]
1880.0
18900
Bandwidth
[MHz]
20
QPSK
ABM1
[dB(A/m)]
-1.13
1880.0
18900
20
QPSK
50
-0.94
-27.71
26.77
1880.0
18900
20
QPSK
99
-1.12
-27.56
26.44
1880.0
18900
20
QPSK
50
-1.22
-28.14
26.92
1880.0
18900
20
QPSK
50
25
-1.34
-28.12
26.78
1880.0
18900
20
QPSK
50
50
-0.87
-27.65
26.78
1880.0
18900
20
QPSK
100
-1.40
-28.13
26.73
1880.0
18900
20
16QAM
-1.15
-27.07
25.92
1880.0
18900
20
16QAM
50
-1.15
-27.34
26.19
1880.0
18900
20
16QAM
99
-0.83
-27.33
26.50
1880.0
18900
20
16QAM
50
-1.35
-28.08
26.73
1880.0
18900
20
16QAM
50
25
-0.87
-28.22
27.35
1880.0
18900
20
16QAM
50
50
-1.32
-28.46
27.14
1880.0
18900
20
16QAM
100
-0.97
-27.76
26.79
Channel
Modulation
RB Size
RB Offset
ABM2
[dB(A/m)]
-27.54
SNNR
[dB]
26.41
2. Codec Configuration
An investigation was performed to determine the audio codec configuration to be used for testing.
The WB AMR 6.60kbps setting was used for the audio codec on the CMW500 for VoLTE over
IMS T-coil testing. See below table for comparisons between different codecs and codec data
rates:
Table 5-2
AMR Codec Investigation – VoLTE over IMS
WB AMR
23.85kbps
WB AMR
6.60kbps
NB AMR
12.2kbps
NB AMR
4.75kbps
ABM1 (dBA/m)
-0.26
-0.87
5.19
4.16
ABM2 (dBA/m)
-26.86
-26.75
-27.47
-27.47
Frequency Response
Pass
Pass
Pass
Pass
S+N/N (dB)
26.60
25.88
32.66
31.63
Codec Setting:


Orientation
Band / BW
Channel
Axial
LTE B2
20MHz
18900
Mute on; Backlight off; Max Volume; Max Contrast
TPC = “Max Power”
Figure 5-2
Audio Band Magnetic Curve Measurement Block Diagram
Mute on; Backlight off; Max Volume; Max Contrast
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6.
VOWIFI TEST SYSTEM SETUP AND DUT CONFIGURATION
I.
Test System Setup for VoWIFI over IMS T-coil Testing
1.
Equipment Setup
The general test setup used for VoWIFI over IMS, or CMRS WIFI Calling, is shown below. The
callbox used when performing VoWIFI over IMS T-coil measurements is a CMW500. The Data
Application Unit (DAU) of the CMW500 was used to simulate the IP Multimedia Subsystem (IMS)
server.
Figure 6-1
Test Setup for VoWIFI over IMS T-Coil Measurements
2. Audio Level Settings
According to KDB 285076 D02 released by the FCC OET regarding the appropriate audio levels
to be used for VoWIFI over IMS T-Coil testing, -20dBm0 shall be used for the normal speech
input level2. The CMW500 base station simulator was manually configured to ensure that the
settings for speech input and full scale levels resulted in the -20dBm0 speech input level to the
DUT for the VoWIFI over IMS connection.
FCC Office of Engineering and Technology KDB, “285076 D02 T-Coil Testing for CMRS IP v03,” September 13, 2017
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mechanical, including photocopying and microfilm, without permission in writing from PCTEST Engineering Laboratory, Inc. If you have any questions about this international copyright or have an
enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
II.
DUT Configuration for VoWIFI over IMS T-coil Testing
1. Radio Configuration
An investigation was performed on all applicable data rates and modulations to determine the
radio configuration to be used for testing. See tables below for SNNR comparison between radio
configurations in each 802.11 standard:
Table 6-1
802.11b SNNR by Radio Configuration
Data Rate
[Mbps]
ABM1
[dB(A/m)]
-4.56
ABM2
[dB(A/m)]
-29.51
SNNR
[dB]
24.95
DSSS
-4.98
-29.45
24.47
CCK
5.5
-4.93
-28.58
23.65
CCK
11
-4.86
-29.48
24.62
Mode
Channel
Modulation
802.11b
DSSS
802.11b
802.11b
802.11b
Table 6-2
802.11g SNNR by Radio Configuration
BPSK
Data Rate
[Mbps]
ABM1
[dB(A/m)]
-4.65
ABM2
[dB(A/m)]
-30.21
SNNR
[dB]
25.56
BPSK
-4.61
-30.24
25.63
QPSK
12
-5.03
-30.16
25.13
QPSK
18
-4.80
-30.04
25.24
802.11g
16-QAM
24
-5.08
-30.43
25.35
802.11g
16-QAM
36
-4.95
-30.49
25.54
802.11g
64-QAM
48
-4.94
-29.99
802.11g
64-QAM
54
-4.50
-30.14
25.05
25.64
Mode
Channel
Modulation
802.11g
802.11g
802.11g
802.11g
Table 6-3
802.11n 20MHz BW SNNR by Radio Configuration
802.11n
Bandwidth
[MHz]
20
BPSK
802.11n
20
QPSK
13
-4.44
-28.92
24.48
802.11n
20
QPSK
19.5
-4.32
-29.47
25.15
802.11n
20
16-QAM
26
-4.97
-29.37
24.40
802.11n
20
16-QAM
39
-4.90
-29.78
24.88
802.11n
20
64-QAM
52
-5.42
-29.50
24.08
802.11n
20
64-QAM
58.5
-4.92
-29.04
24.12
802.11n
20
64-QAM
65
-5.37
-29.68
24.31
Mode
Channel
Modulation
ABM1
[dB(A/m)]
-5.14
ABM2
[dB(A/m)]
-28.96
SNNR
[dB]
23.82
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6.5
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2. Codec Configuration
An investigation was performed to determine the audio codec configuration to be used for testing.
The WB AMR 6.6kbps setting was used for the audio codec on the CMW500 for VoWIFI over
IMS T-coil testing. See below table for comparisons between different codecs and codec data
rates:
Table 6-4
AMR Codec Investigation – VoWIFI over IMS
WB AMR
23.85kbps
WB AMR
6.60kbps
NB AMR
12.2kbps
NB AMR
4.75kbps
ABM1 (dBA/m)
-3.65
-4.89
0.75
0.62
ABM2 (dBA/m)
-29.55
-29.50
-29.51
-29.35
Frequency Response
Pass
Pass
Pass
Pass
S+N/N (dB)
25.90
24.61
30.26
29.97
Codec Setting:

Orientation
Band
Standard
Channel
Axial
2.4GHz
802.11b
Mute on; Backlight off; Max Volume; Max Contrast
Figure 6-2
Audio Band Magnetic Curve Measurement Block Diagram
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7.
OTT VOIP TEST SYSTEM AND DUT CONFIGURATION
I.
Test System Setup for OTT VoIP T-Coil Testing
1. OTT VoIP Application
Google Duo is a pre-installed application on the DUT which allows for VoIP calls in a held-to-ear
scenario. Duo uses the OPUS audio codec and supports a bitrate range of 6kb/s to 64kb/s. All air
interfaces capable of a data connection were evaluated with Google Duo.
2. Equipment Setup
A CMW500 callbox was used to perform OTT VoIP T-coil measurements. The Data Application
Unit (DAU) of the CMW500 was connected to the internet and allowed for an IP data connection
on the DUT. An auxiliary VoIP unit was used to initiate an OTT VoIP call to the DUT. The auxiliary
VoIP unit allowed for the configuration and monitoring of the OTT VoIP codec bitrate during a call.
Both high and low bitrate settings were evaluated in to determine the worst-case configuration.
3.
Audio Level Settings
According to KDB 285076 D02, the average speech level of -20dBm0 shall be used for protocols
not specifically listed in Table 7.1 of ANSI C63.19-2011 or the ANSI C63.19-2011 VoLTE
interpretation3. The auxiliary VoIP unit allowed for monitoring the signal input level to ensure that
the settings for speech input and full scale levels resulted in the -20dBm0 speech input level to
the DUT for the OTT VoIP call.
II.
DUT Configuration for OTT VoIP T-Coil Testing
1. Codec Configuration
An investigation was performed for each applicable data mode to determine the audio codec
configuration to be used for testing. The 6kbps codec setting was used for the audio codec on
the auxiliary VoIP unit for OTT VoIP T-Coil testing. See below tables for comparisons between
codec data rates on all applicable data modes:
Table 7-1
Codec Investigation – OTT VoIP (EDGE)
Codec Setting:
64kbps
6kbps
ABM1 (dBA/m)
9.29
9.12
ABM2 (dBA/m)
-19.10
-19.03
Frequency Response
Pass
Pass
S+N/N (dB)
28.39
28.15
Orientation
Channel
Axial
661
FCC Office of Engineering and Technology KDB, “285076 D02 T-Coil Testing for CMRS IP v03,” September 13, 2017
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
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Table 7-2
Codec Investigation – OTT VoIP (HSPA)
Codec Setting:
64kbps
6kbps
ABM1 (dBA/m)
9.04
8.84
ABM2 (dBA/m)
-28.33
-28.02
Frequency Response
Pass
Pass
S+N/N (dB)
37.37
36.86
Orientation
Channel
Axial
9400
Table 7-3
Codec Investigation – OTT VoIP (LTE)
Codec Setting:
64kbps
6kbps
ABM1 (dBA/m)
8.82
9.01
ABM2 (dBA/m)
-26.55
-26.02
Frequency Response
Pass
Pass
S+N/N (dB)
35.37
35.03
Orientation
Band / BW
Channel
Axial
Band 4
20MHz
20175
Table 7-4
Codec Investigation – OTT VoIP (WIFI)
Codec Setting:


64kbps
6kbps
ABM1 (dBA/m)
8.69
8.65
ABM2 (dBA/m)
-26.30
-26.27
Frequency Response
Pass
Pass
S+N/N (dB)
34.99
34.92
Orientation
Band
Standard
Channel
Axial
2.4GHz
802.11b
Mute on; Backlight off; Max Volume; Max Contrast
Radio Configurations can be found in Section 9.III.F
Figure 7-1
Audio Band Magnetic Curve Measurement Block Diagram
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FCC ID: ZNFX210APM
Filename:
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Portable Handset
Approved by:
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8.
FCC 3G MEASUREMENTS
I.
UMTS Test Configurations
AMR at 12.2kbps, 13.6kbps SRB was used for the testing as the worst-case configuration for the
handset. See below plot for ABM noise comparison between vocoder rates:
Figure 8-1
UMTS Audio Band Magnetic Noise
Table 8-1
FCC 3G ABM Measurements for ZNFX210APM (UMTS)
Codec Setting:
AMR 12.2kbps
AMR 7.95kbps
AMR 4.75kbps
ABM1 (dBA/m)
4.44
4.38
4.15
ABM2 (dBA/m)
-28.90
-29.81
-29.32
Frequency Response
Pass
Pass
Pass
S+N/N (dB)
33.34
34.19
33.47


Orientation
Channel
Axial
9400
Mute on; Backlight off; Max Volume; Max Contrast
TPC="All 1s"
Figure 8-2
Audio Band Magnetic Curve Measurement Block Diagram
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FCC ID: ZNFX210APM
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9.
I.
TEST SUMMARY
T-Coil Test Summary
Table 9-1
Table of Results for GSM
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
Test Description
Band
GSM
Cellular
GSM
PCS
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
dBA/m
8.4
-2.6
22.2
24.2
1.2
8.3
-2.5
27.5
29.1
1.3
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-10.
Table 9-2
Table of Results for EDGE (OTT VoIP)
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
Test Description
Band
EDGE
Cellular
EDGE
PCS
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
dBA/m
9.1
-0.4
23.4
23.8
1.3
8.8
-0.4
27.8
28.6
1.4
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-11.
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FCC ID: ZNFX210APM
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Table 9-3
Table of Results for UMTS
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
Test Description
Band
UMTS
Band 5
UMTS
Band 4
UMTS
Band 2
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
dBA/m
4.4
-5.9
33.1
32.8
1.6
4.4
-5.9
32.9
32.6
1.6
4.3
-5.9
33.5
32.3
1.5
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-12.
Table 9-4
Table of Results for HSPA (OTT VoIP)
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
Test Description
Band
HSPA
Band 5
HSPA
Band 4
HSPA
Band 2
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
dBA/m
9.1
-0.4
37.1
36.1
1.5
8.9
-0.6
37.0
36.0
1.5
9.0
-0.5
36.9
36.0
1.5
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-13.
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
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11/11/2017 - 12/26/2017
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Portable Handset
Approved by:
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Table 9-5
Table of Results for LTE FDD
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
Band
LTE FDD
Band 12
LTE FDD
Band 5
LTE FDD
Band 4
LTE FDD
Band 2
Test Description
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
dBA/m
-1.5
-10.3
27.0
26.0
1.3
-1.5
-10.0
25.8
24.9
1.2
-1.6
-10.2
25.8
24.8
1.2
-0.9
-9.9
26.0
25.4
1.3
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-14 through Table 9-16 and Table 9-18.
Table 9-6
Table of Results for LTE FDD (OTT VoIP)
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Mode
LTE
Band
Band 4
Test Description
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
dBA/m
9.1
-0.6
34.7
34.6
1.4
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-17.
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
DUT Type:
Portable Handset
Approved by:
Quality Manager
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Table 9-7
Table of Results for 2.4GHz WIFI
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Band
Test Description
Mode
WLAN
802.11b
WLAN
802.11g
WLAN
802.11n
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
dBA/m
-5.3
-12.8
24.0
22.4
1.0
-5.1
-12.8
25.2
24.0
1.0
-5.0
-12.8
24.0
24.5
1.0
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-19.
Table 9-8
Table of Results for 2.4GHz WIFI (OTT VoIP)
C63.19 Sec.
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
8.3.1
8.3.1
8.3.4
8.3.4
8.3.2
Band
Test Description
Mode
WLAN
802.11b
WLAN
802.11g
WLAN
802.11n
Minimum Limit*
Measured
Verdict
dBA/m
-18
-18
20
20
-18
-18
20
20
-18
-18
20
20
dBA/m
8.4
-0.9
34.7
32.7
1.4
8.5
-0.7
35.0
33.8
1.4
8.4
-0.6
35.2
33.1
1.4
PASS/FAIL
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
PASS
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Intensity, Axial
Intensity, Radial
Signal-to-Noise/Noise, Axial
Signal-to-Noise/Noise, Radial
Frequency Response, Axial
Note: The above summary table represents the worst-case numerical values according to configurations
in Table 9-20.
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Test Dates:
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Approved by:
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Table 9-9
Consolidated Tabled Results
Magnetic
Freq. Response
Intensity Verdict
Margin
Axial
GSM
EDGE
(OTT VoIP)
UMTS
HSPA
(OTT VoIP)
LTE FDD
LTE FDD
(OTT VoIP)
WLAN
WLAN
(OTT VoIP)
II.
Radial
Axial
Radial
FCC SNNR
Verdict
Axial
FCC Margin C63.19-2011
Rating
(dB)
Radial
Cellular
PASS
NA
PASS
PASS
PASS
PASS
PCS
PASS
NA
PASS
PASS
PASS
PASS
Cellular
PASS
NA
PASS
PASS
PASS
PASS
PCS
PASS
NA
PASS
PASS
PASS
PASS
Cellular
PASS
NA
PASS
PASS
PASS
PASS
AWS
PASS
NA
PASS
PASS
PASS
PASS
PCS
PASS
NA
PASS
PASS
PASS
PASS
Cellular
PASS
NA
PASS
PASS
PASS
PASS
AWS
PASS
NA
PASS
PASS
PASS
PASS
PCS
PASS
NA
PASS
PASS
PASS
PASS
B12
PASS
NA
PASS
PASS
PASS
PASS
B5
PASS
NA
PASS
PASS
PASS
PASS
B4
PASS
NA
PASS
PASS
PASS
PASS
B2
PASS
NA
PASS
PASS
PASS
PASS
B4
PASS
NA
PASS
PASS
PASS
PASS
802.11b
PASS
NA
PASS
PASS
PASS
PASS
802.11g
PASS
NA
PASS
PASS
PASS
PASS
802.11n
PASS
NA
PASS
PASS
PASS
PASS
802.11b
PASS
PASS
PASS
PASS
PASS
NA
802.11g
PASS
NA
PASS
PASS
PASS
PASS
802.11n
PASS
NA
PASS
PASS
PASS
PASS
-2.17
T3
-3.35
T3
-12.26
T4
-16.01
T4
-4.83
T3
-14.56
T4
-2.42
T3
-12.70
T4
Raw Handset Data
Table 9-10
Raw Data Results for GSM
Mode
Orientation
Axial
GSM850
Radial
Axial
GSM1900
Radial
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
128
8.43
-14.09
190
8.54
-13.63
251
128
8.75
-2.51
-13.65
-27.18
190
-2.33
-26.85
251
-2.56
-26.77
512
8.64
-18.89
661
8.56
-19.06
810
8.25
-19.42
512
661
-2.54
-2.50
-31.65
-31.86
810
-2.39
-32.12
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
1.32
22.52
20.00
-2.52
T3
1.20
22.17
1.22
22.40
24.67
20.00
20.00
-2.17
-2.40
T3
T3
20.00
-4.67
T3
N/A
24.52
20.00
-4.52
T3
24.21
20.00
-4.21
T3
1.35
27.53
20.00
-7.53
T3
1.31
27.62
20.00
-7.62
T3
1.36
27.67
-7.67
-9.11
T3
T3
N/A
29.11
29.36
20.00
20.00
20.00
-9.36
T3
20.00
-9.73
T3
-63.08
-63.34
-63.08
-63.34
29.73
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FCC Margin C63.19-2011
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Rating
Coordinates
2.6, 2.6
3.0, 2.2
2.6, 2.6
3.0, 2.2
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Table 9-11
Raw Data Results for EDGE (OTT VoIP)
Mode
EDGE850
EDGE1900
Orientation
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
Axial
190
9.06
-14.29
-63.31
20.00
-3.35
T3
2.6, 2.6
190
-0.37
-24.17
-63.16
1.32
N/A
23.35
Radial
23.80
20.00
-3.80
T3
3.0, 2.2
Axial
Radial
661
661
8.82
-0.39
-18.95
-28.94
-63.31
-63.16
1.35
N/A
27.77
28.55
20.00
20.00
-7.77
-8.55
T3
T3
2.6, 2.6
3.0, 2.2
Table 9-12
Raw Data Results for UMTS
Mode
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
4132
4.39
-28.93
4183
4.38
-29.29
4233
4.37
-28.77
4132
4183
-5.86
-5.87
-38.69
-38.67
4233
-5.89
-38.88
Orientation
Channel
Axial
UMTS V
Radial
Axial
UMTS IV
Radial
Axial
UMTS II
Radial
1312
4.39
-28.52
1412
1513
4.37
4.36
-29.07
-29.08
1312
-5.86
-38.44
1412
-5.90
-38.63
1513
-5.88
-38.67
9262
4.32
-29.30
9400
4.34
-29.12
9538
4.33
-29.41
9262
9400
-5.84
-5.85
-38.26
-38.11
9538
-5.84
-38.32
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
-63.08
-63.34
-63.08
-63.34
S+N/N
(dB)
FCC Limit
(dB)
1.63
33.32
20.00
-13.32
T4
1.66
33.67
20.00
-13.67
T4
1.65
33.14
-13.14
-12.83
T4
T4
N/A
32.83
32.80
20.00
20.00
20.00
-12.80
T4
32.99
20.00
-12.99
T4
1.64
32.91
20.00
-12.91
T4
1.62
1.64
33.44
33.44
20.00
-13.44
T4
20.00
-13.44
T4
32.58
20.00
-12.58
T4
N/A
32.73
20.00
20.00
-12.73
-12.79
T4
T4
32.79
-63.08
-63.34
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
1.57
33.62
20.00
-13.62
T4
1.54
33.46
1.61
33.74
20.00
20.00
-13.46
-13.74
T4
T4
32.42
32.26
20.00
-12.42
T4
N/A
20.00
-12.26
T4
32.48
20.00
-12.48
T4
2.6, 2.6
3.0, 2.2
2.6, 2.6
3.0, 2.2
2.6, 2.6
3.0, 2.2
Table 9-13
Raw Data Results for HSPA (OTT VoIP)
Mode
HSPA V
HSPA IV
HSPA II
Orientation
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
Axial
4183
9.11
-27.94
-63.31
Radial
4183
-0.41
-36.49
-63.16
1.48
N/A
Axial
Radial
1412
8.89
-28.14
1412
-0.56
-36.57
-63.31
-63.16
1.48
N/A
1.45
N/A
Axial
9400
8.99
-27.87
-63.31
Radial
9400
-0.45
-36.48
-63.16
S+N/N
(dB)
FCC Limit
(dB)
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
37.05
20.00
-17.05
T4
2.6, 2.6
36.08
20.00
-16.08
T4
3.0, 2.2
37.03
20.00
20.00
-17.03
-16.01
T4
T4
2.6, 2.6
3.0, 2.2
36.86
20.00
-16.86
T4
2.6, 2.6
36.03
20.00
-16.03
T4
3.0, 2.2
36.01
Table 9-14
Raw Data Results for LTE B12
Mode
Orientation
Axial
LTE Band
12
Radial
Bandwidth
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
10MHz
23095
-1.36
-28.35
5MHz
3MHz
23095
23095
-1.46
-1.37
-28.47
-28.41
1.4MHz
23095
-1.49
-28.55
10MHz
5MHz
23095
23095
-10.11
-10.17
-36.15
-36.18
3MHz
1.4MHz
23095
23095
-10.27
-10.20
-36.41
-36.17
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
1.25
26.99
20.00
-6.99
T3
1.40
1.32
27.01
27.04
20.00
20.00
-7.01
-7.04
T3
T3
27.06
20.00
-7.06
T3
26.04
26.01
20.00
20.00
-6.04
-6.01
T3
T3
26.14
25.97
20.00
20.00
-6.14
-5.97
T3
T3
-63.08
1.25
-63.34
N/A
HAC (T-COIL) TEST REPORT
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Rating
Coordinates
2.6, 2.6
3.0, 2.2
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Table 9-15
Raw Data Results for LTE B5
Mode
Orientation
Axial
LTE Band 5
Radial
Bandwidth
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
10MHz
5MHz
20525
20525
-1.30
-1.48
-27.10
-28.31
3MHz
1.4MHz
20525
20525
-1.42
-1.28
-28.63
-28.61
10MHz
5MHz
20525
20525
-9.94
-9.80
-34.84
-35.74
3MHz
1.4MHz
20525
20525
-9.75
-9.97
-35.98
-36.62
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
1.31
1.39
25.80
26.83
20.00
-5.80
T3
1.32
1.24
27.21
27.33
20.00
20.00
20.00
-6.83
-7.21
-7.33
T3
T3
T3
20.00
-4.90
T3
26.23
26.65
20.00
20.00
20.00
-5.94
-6.23
-6.65
T3
T3
T3
S+N/N
(dB)
FCC Limit
(dB)
20.00
20.00
20.00
-6.20
-6.02
-5.78
T3
T3
T3
20.00
20.00
20.00
20.00
-6.18
-5.98
-6.33
-6.63
T3
T3
T3
T3
-63.08
-63.34
N/A
24.90
25.94
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
2.6, 2.6
3.0, 2.2
Table 9-16
Raw Data Results for LTE B4
Mode
Orientation
Axial
LTE Band 4
Radial
Bandwidth
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
20MHz
20175
-1.10
-27.30
1.26
26.20
15MHz
15MHz
15MHz
20325
20175
20025
-1.33
-1.30
-1.57
-27.35
-27.08
-27.75
1.32
1.31
1.24
26.02
25.78
26.18
10MHz
5MHz
3MHz
1.4MHz
20175
20175
20175
20175
-1.37
-1.51
-1.27
-1.47
-27.35
-27.84
-27.90
-27.94
1.33
1.28
1.26
1.36
25.98
26.33
26.63
26.47
20MHz
20175
-10.18
-35.09
24.91
15MHz
15MHz
15MHz
20325
20175
20025
-9.50
-9.74
-9.87
-35.33
-34.57
-35.61
25.83
24.83
25.74
10MHz
5MHz
3MHz
20175
20175
20175
-9.74
-9.93
-9.97
-34.92
-35.01
-35.34
1.4MHz
20175
-9.97
-35.48
-63.08
-63.34
N/A
25.18
25.08
25.37
25.51
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
20.00
-6.47
T3
20.00
20.00
20.00
-4.91
-5.83
-4.83
T3
T3
T3
20.00
20.00
20.00
-5.74
-5.18
-5.08
T3
T3
T3
20.00
20.00
-5.37
-5.51
T3
T3
2.6, 2.6
3.0, 2.2
Table 9-17
Raw Data Results for LTE B4 (OTT VoIP)
Mode
Orientation
Axial
LTE Band 4
Radial
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
-25.90
1.41
34.73
-26.04
-26.69
-26.34
1.60
1.58
1.46
34.74
35.78
35.28
20.00
20.00
20.00
-14.73
-14.74
-15.78
T4
T4
T4
1.41
1.35
35.45
35.77
20.00
20.00
20.00
-15.28
-15.45
-15.77
T4
T4
T4
20.00
-14.56
T4
20.00
20.00
20.00
-14.61
-14.73
-14.93
T4
T4
T4
35.28
20.00
20.00
-14.79
-15.28
T4
T4
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
20.00
20.00
20.00
-5.96
-6.44
-6.99
T3
T3
T3
20.00
20.00
20.00
-7.11
-6.98
-7.33
T3
T3
T3
20.00
-5.65
T3
20.00
20.00
20.00
-5.57
-5.38
-5.66
T3
T3
T3
20.00
20.00
-6.14
-6.09
T3
T3
Bandwidth
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
20MHz
20175
8.83
15MHz
10MHz
5MHz
20175
20175
20175
8.70
9.09
8.94
3MHz
1.4MHz
20175
20175
8.92
8.88
-26.53
-26.89
20MHz
15MHz
20175
20175
-0.80
-0.67
-35.36
-35.28
10MHz
5MHz
3MHz
20175
20175
20175
-0.79
-0.70
-0.72
-35.52
-35.63
-35.51
1.4MHz
20175
-0.56
-35.84
Ambient Noise
[dB(A/m)]
-63.31
34.56
34.61
-63.16
N/A
34.73
34.93
34.79
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
2.6, 2.6
3.0, 2.2
Table 9-18
Raw Data Results for LTE B2
Mode
Orientation
Axial
LTE Band 2
Radial
Bandwidth
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
20MHz
18900
-0.91
-26.87
1.33
25.96
15MHz
10MHz
5MHz
18900
18900
18900
-0.92
-0.74
-0.90
-27.36
-27.73
-28.01
1.30
1.27
1.35
26.44
26.99
27.11
3MHz
1.4MHz
18900
18900
-0.87
-0.79
-27.85
-28.12
1.26
1.33
26.98
27.33
20MHz
15MHz
18900
18900
-9.76
-9.78
-35.41
-35.35
10MHz
5MHz
3MHz
18900
18900
18900
-9.89
-9.72
-9.69
-35.27
-35.38
-35.83
1.4MHz
18900
-9.64
-35.73
-63.08
25.65
25.57
-63.34
N/A
Test Dates:
1M1711080290-08-R2.ZNF
11/11/2017 - 12/26/2017
© 2017 PCTEST Engineering Laboratory, Inc.
25.38
25.66
26.14
26.09
HAC (T-COIL) TEST REPORT
FCC ID: ZNFX210APM
Filename:
Ambient Noise
[dB(A/m)]
DUT Type:
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FCC Margin C63.19-2011
Test
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Rating
Coordinates
2.6, 2.6
3.0, 2.2
Approved by:
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Table 9-19
Raw Data Results for 2.4GHz WIFI
Mode
Orientation
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
-5.25
-29.28
-5.12
-29.10
11
-5.13
-12.56
-29.36
-34.98
-12.78
-35.32
11
-12.56
-35.17
Axial
WLAN
802.11b
Radial
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
1.13
24.03
20.00
-4.03
T3
-63.69
1.04
23.98
1.06
24.23
22.42
20.00
20.00
-3.98
-4.23
T3
T3
20.00
-2.42
T3
N/A
22.54
22.61
20.00
20.00
-2.54
-2.61
T3
T3
0.97
N/A
25.19
20.00
-5.19
T3
2.6, 2.6
23.97
20.00
-3.97
T3
3.0, 2.0
0.97
N/A
24.02
20.00
-4.02
T3
2.6, 2.6
24.54
20.00
-4.54
T3
3.0, 2.0
-64.06
WLAN
802.11g
Axial
-5.13
-30.32
-63.69
Radial
-12.76
-36.73
-64.06
WLAN
802.11n
Axial
-5.03
-29.05
-63.69
Radial
-12.78
-37.32
-64.06
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
2.6, 2.6
3.0, 2.0
Table 9-20
Raw Data Results for 2.4GHz WIFI (OTT VoIP)
Mode
Orientation
Channel
ABM1
[dB(A/m)]
ABM2
[dB(A/m)]
8.55
-28.58
8.97
-25.93
11
8.39
-0.92
-26.34
-33.89
-0.73
-33.43
11
-0.89
-33.81
Axial
WLAN
802.11b
Radial
Ambient Noise
[dB(A/m)]
Frequency
Response
Margin (dB)
S+N/N
(dB)
FCC Limit
(dB)
1.36
37.13
20.00
-17.13
T4
-63.31
1.47
34.90
1.51
34.73
32.97
20.00
20.00
-14.90
-14.73
T4
T4
20.00
-12.97
T4
N/A
32.70
-12.70
-12.92
T4
T4
3.0, 2.2
32.92
20.00
20.00
1.42
N/A
34.98
20.00
-14.98
T4
2.6, 2.6
33.81
20.00
-13.81
T4
3.0, 2.2
1.39
N/A
35.19
20.00
-15.19
T4
2.6, 2.6
33.11
20.00
-13.11
T4
3.0, 2.2
-63.16
WLAN
802.11g
Axial
8.50
-26.48
-63.31
Radial
-0.73
-34.54
-63.16
WLAN
802.11n
Axial
8.42
-26.77
-63.31
Radial
-0.58
-33.69
-63.16
III.
FCC Margin C63.19-2011
Test
(dB)
Rating
Coordinates
2.6, 2.6
Test Notes
A. General
1. Phone Condition: Mute on; Backlight off; Max Volume; Max Contrast
2. 'Radial' orientation refers to radial transverse.
3. Hearing Aid Mode (PhoneCall SettingsMoreHearing aids) as well as Noise Suppression
Mode (PhoneCall SettingsMoreNoise Suppression) was set to ON as well as for
Frequency Response compliance.
4. Speech Signal: ITU-T P.50 Artificial Voice
B. GSM
1. Power Configuration: GSM850: PCL=5, GSM1900: PCL=0;
2. Vocoder Configuration: EFR (GSM);
C. UMTS
1. Power Configuration: TPC= ”All 1s”;
2. Vocoder Configuration: AMR 12.2 kbps (UMTS);
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D. LTE FDD
1.
2.
3.
4.
Power Configuration: TPC = “Max Power”
Radio Configuration: 16QAM, 1RB, 0RB offset
Vocoder Configuration: WB AMR 6.60kbps
The worst-case band and bandwidth combination for each probe orientation is additionally tested
on the low and high channels for those combinations. LTE Band 4 at 15MHz is the worst case for
both Axial and Radial probe orientations.
E. WIFI
1. Radio Configuration
a. 802.11b: CCK, 5.5Mbps
b. 802.11g: 64QAM, 48Mbps
c. 802.11n: BPSK, 6.5Mbps
2. Vocoder Configuration: WB AMR 6.6kbps
3. The worst case standard for 2.4GHz WIFI in each probe orientation is additionally tested on the
low and high channels. 802.11b is the worst case for both Axial and Radial probe orientations.
F. OTT VoIP
1. Vocoder Configuration: 6kbps
2. EDGE Configuration
a. MCS Index: 7
b. Number of TX slots: 2
3. HSPA Configuration:
a. Release: 6
b. 3GPP 34.121 Subtest 1
4. LTE FDD Configuration:
a. Power Configuration: TPC = “Max Power”
b. Radio Configuration: 16QAM, 1RB, 0RB offset
c. LTE Band 4 was the worst-case band from VoLTE testing.
5. WLAN Configuration:
a. Radio Configuration
i. 802.11b: CCK, 5.5Mbps
ii. 802.11g: 64QAM, 48Mbps
iii. 802.11n: BPSK, 6.5Mbps
b. The worst case standard for 2.4GHz WIFI in each probe orientation is additionally tested
on the low and high channels. 802.11b is the worst case for both Axial and Radial probe
orientations.
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IV.
1 kHz Vocoder Application Check
1kHz Tone Pass Through Check for LTE
1kHz Tone Pass-through for UMTS
1kHz Tone Pass-through Check for GSM
10
20
20
Field Intensity (dBA/m)
-10
-20
-30
-10
-20
-30
-40
-40
-50
-50
-60
-60
-70
Magnetic Intensity at 1kHz [dB(A/m)]
10
10
Field Intensity (dBA/m)
-60
-50
-40
-30
-20
-10
10
‐10
‐20
‐30
‐40
‐50
‐60
-70
-60
-50
-40
1kHz input level (dBm0)
-30
-20
-10
‐70
10
‐60
‐50
‐40
1kHz input level (dBm0)
‐30
‐20
‐10
Audio Input Level (dBm0)
This model was verified to be within the linear region for ABM1 measurements at -16 dBm0 for GSM,
UMTS, and VoLTE. This measurement was taken in the axial configuration above the maximum location.
1kHz Tone Pass‐through for Google Duo
1kHz Tone Pass‐through for VoWIFI
30
20
20
10
10
Field Intensity (dB[A/m])
Field Intensity (dB[A/m])
‐10
‐20
‐10
‐20
‐30
‐30
‐40
‐40
‐50
‐50
‐80
‐70
‐60
‐50
‐40
‐30
‐20
1kHz Input Level (dBm0)
‐10
10
20
‐80
‐70
‐60
‐50
‐40
‐30
‐20
1kHz Input Level (dBm0)
‐10
10
20
This model was verified to be within the linear region for ABM1 measurements at -20 dBm0 for VoWIFI
and OTT VoIP. This measurement was taken in the axial configuration above the maximum location.
V.
T-Coil Validation Test Results
Table 9-21
Helmholtz Coil Validation Table of Results – 11/11/2017
Item
Target
Result
Verdict
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.156
PASS
Environmental Noise
< -58 dBA/m
-63.08
PASS
> 0 dB
0.80
PASS
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.260
PASS
Environmental Noise
< -58 dBA/m
-63.34
PASS
> 0 dB
0.80
PASS
Axial
Frequency Response, from limits
Radial
Frequency Response, from limits
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Table 9-22
Helmholtz Coil Validation Table of Results – 12/02/2017
Item
Target
Result
Verdict
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.162
PASS
Environmental Noise
< -58 dBA/m
-63.69
PASS
> 0 dB
0.70
PASS
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.312
PASS
Environmental Noise
< -58 dBA/m
-64.06
PASS
> 0 dB
0.70
PASS
Axial
Frequency Response, from limits
Radial
Frequency Response, from limits
Table 9-23
Helmholtz Coil Validation Table of Results – 12/20/2017
Item
Target
Result
Verdict
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.175
PASS
Environmental Noise
< -58 dBA/m
-63.31
PASS
> 0 dB
0.70
PASS
Magnetic Intensity, -10 dBA/m
-10 ± 0.5 dB
-10.302
PASS
Environmental Noise
< -58 dBA/m
-63.16
PASS
> 0 dB
0.70
PASS
Axial
Frequency Response, from limits
Radial
Frequency Response, from limits
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VI.
ABM1 Magnetic Field Distribution Scan Overlays
Axial
Radial (Transverse)
Figure 9-1
T-Coil Scan Overlay Magnetic Field Distributions
Notes:
1. Final measurement locations are indicated by a black cursor on the contour plots. The VoWIFI
over IMS radial measurement location is indicated by a cyan cursor.
2. See Test Setup Photographs for actual WD overlay.
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10.
MEASUREMENT UNCERTAINTY
Table 10-1
Uncertainty Estimation Table
Contribution
ABM Noise
RF Reflections
Reference Signal Level
Positioning Accuracy
Probe Coil Sensitivity
Probe Linearity
Cable Loss
Frequency Analyzer
System Repeatability
WD Repeatability
Positioner Accuracy
Data +/- Data +/%
dB
7.0%
4.7%
12.2%
10.0%
12.2%
2.4%
2.8%
5.0%
5.0%
9.0%
1.0%
0.29
0.20
0.50
0.41
0.50
0.10
0.12
0.21
0.21
0.37
0.04
Data Type
Probability
distribution
Divisor
Std. Dev.
Specification
Specification
Uncertainty
Specification
Std. Dev.
Specification
Specification
Std. Dev.
Std. Dev.
Specification
Normal k=1
Rectangular
Rectangular
Rectangular
Rectangular
Normal k=1
Rectangular
Rectangular
Normal k=1
Normal k=1
Rectangular
1.00
1.73
1.73
1.73
1.73
1.00
1.73
1.73
1.00
1.00
1.73
Standard
Standard
Uncertainty
uncertainty
(dB)
7.0%
2.7%
7.0%
5.8%
7.0%
2.4%
1.6%
2.9%
5.0%
9.0%
0.6%
Combined standard uncertainty, uc (k=1)
17.7%
0.71
Expanded uncertainty (k=2), 95% confidence level
35.3%
1.31
Notes:
1. Test equipments are calibrated according to techniques outlined in NIS81, NIS3003 and NIST Tech Note 1297.
2. All equipments have traceability according to NIST. Measurement Uncertainties are defined in further detail in
NIS 81 and NIST Tech Note 1297 and UKAS M3003.
Measurement uncertainty reflects the quality and accuracy of a measured result as compared to the true
value. Such statements are generally required when stating results of measurements so that it is clear to
the intended audience that the results may differ when reproduced by different facilities. Measurement
results vary due to the measurement uncertainty of the instrumentation, measurement technique, and test
engineer. Most uncertainties are calculated using the tolerances of the instrumentation used in the
measurement, the measurement setup variability, and the technique used in performing the test. While
not generally included, the variability of the equipment under test also figures into the overall
measurement uncertainty. Another component of the overall uncertainty is based on the variability of
repeated measurements (so-called Type A uncertainty). This may mean that the Hearing Aid
compatibility tests may have to be repeated by taking down the test setup and resetting it up so that there
are a statistically significant number of repeat measurements to identify the measurement uncertainty. By
combining the repeat measurement results with that of the instrumentation chain using the technique
contained in NIS 81 and NIS 3003, the overall measurement uncertainty was estimated.
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11.
EQUIPMENT LIST
Table 11-1
Equipment List
Manufacturer
Model
Dell
Latitude E6540
Listen
SoundConnect
Listen
SoundConnect
RME
Fireface UC
Rohde & Schwarz
CMW500
Rohde & Schwarz
CMW500
Rohde & Schwarz
CMU200
Rohde & Schwarz
CMU200
TEM
Radial T‐Coil Probe
TEM
Axial T‐Coil Probe
TEM
Helmholtz Coil
TEM
TEM
Description
Cal Date
Cal Interval
Cal Due
Serial Number
SoundCheck Acoustic Analyzer Laptop
Microphone Power Supply
Microphone Power Supply
SoundCheck Acoustic Analyzer External Audio Interface
Wideband Radio Communication Tester
Wideband Radio Communication Tester
Radio Communication Tester
Radio Communication Tester
Radial T‐Coil Probe
Axial T‐Coil Probe
Helmholtz Coil
HAC System Controller with Software
HAC Positioner
4/11/2017
12/2/2016
N/A
4/11/2017
2/10/2017
7/14/2017
N/A
4/11/2017
12/7/2016
12/7/2016
12/7/2016
N/A
N/A
Annual
Biennial
N/A
Annual
Annual
Annual
N/A
Annual
Biennial
Biennial
Biennial
N/A
N/A
4/11/2018
12/2/2018
N/A
4/11/2018
2/10/2018
7/14/2018
N/A
4/11/2018
12/7/2018
12/7/2018
12/7/2018
N/A
N/A
7BFNM32
PS2612
0899‐PS150
23528889
162125
140144
107826
836371/079
TEM‐1130
TEM‐1124
925
N/A
N/A
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12.
TEST DATA
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13.
CALIBRATION CERTIFICATES
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14.
CONCLUSION
The measurements indicate that the wireless communications device complies with the HAC limits
specified in accordance with the ANSI C63.19 Standard and FCC WT Docket No. 01-309 RM-8658.
Precise laboratory measures were taken to assure repeatability of the tests. The tested device complies
with the requirements in respect to all parameters specific to the test. The test results and statements
relate only to the item(s) tested.
The measurement system and techniques presented in this evaluation are proposed in the ANSI standard
as a means of best approximating wireless device compatibility with a hearing-aid. The literature is under
continual re-construction.
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15.
REFERENCES
1.
ANSI C63.19-2011, American National Standard for Methods of Measurement of Compatibility between Wireless
communication devices and Hearing Aids.”, New York, NY, IEEE, May 2011
2.
FCC Office of Engineering and Technology KDB, “285076 D01 HAC Guidance v05,” September 13, 2017
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FCC Office of Engineering and Technology KDB, “285076 D02 T-Coil Testing for CMRS IP v03,” September 13, 2017
4.
FCC Public Notice DA 06-1215, Wireless Telecommunications Bureau and Office of Engineering and Technology Clarify
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FCC 3G Review Guidance, Laboratory Division OET FCC, May/June 2006
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of Commerce, National Bureau of Standards, Technical Note 1011, Nov. 1978.
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enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
22. Konigstein, D., and Hansen, D., “A New Family of TEM Cells with enlarged bandwidth and Optimized working Volume,” in
the Proceedings of the 7th International Symposium on EMC, Zurich, Switzerland, March 1987; 50:9, pp. 127-132.
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1:16-21, 1983
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Measurements, AIP Press.
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Download: X210APM Multi-band GSM/EDGE/UMTS/LTE Phone with Bluetooth and WLAN Test Report HAC TCoil LG Electronics MobileComm USA, Inc.
Mirror Download [FCC.gov]X210APM Multi-band GSM/EDGE/UMTS/LTE Phone with Bluetooth and WLAN Test Report HAC TCoil LG Electronics MobileComm USA, Inc.
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