SMG973U Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+ Test Report HAC RFE Samsung Electronics Co Ltd

Samsung Electronics Co Ltd Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+

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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:
Samsung Electronics Co., Ltd.
129, Samsung-ro, Maetan dong,
Yeongtong-gu, Suwon-si
Gyeonggi-do 16677, Korea
Date of Testing:
11/12/2018 - 11/27/2018
Test Site/Location:
PCTEST Lab, Columbia, MD, USA
Test Report Serial No.:
1M1810250195-13-R3.A3L
FCC I D:
A3LSMG973U
APPLI C A NT:
SAMSUNG ELECTRONICS CO., LTD.
Scope of Test:
Application Type:
FCC Rule Part(s):
HAC Standard:
DUT Type:
Model:
Additional Model(s):
Test Device Serial No.:
RF Emissions Testing
Certification
CFR §20.19(b)
ANSI C63.19-2011
CTIA Test Plan for Hearing Aid Compatibility Rev 3.1.1, May 2017
285076 D01 HAC Guidance v05
285076 D02 T-Coil testing for CMRS IP v03
Portable Handset
SM-G973U
SM-G973U1, SM-G973W
Pre-Production Sample [S/N: 0230M]
C63.19-2011 HAC Category:
M4 (RF EMISSIONS CATEGORY)
Note: This revised Test Report (S/N: 1M1810250195-13-R3.A3L) 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. Hearing-Aid Compatibility is
based on the assumption that all production units will be designed electrically identical to the device tested in this report. Test results
reported herein relate only to the item(s) tested. North America 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.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 1 of 119
REV 3.2.M
04/17/2018
© 2018 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/IEEE C63.19 PERFORMANCE CATEGORIES .................................................................... 7
4.
SYSTEM SPECIFICATIONS ........................................................................................................... 8
5.
TEST PROCEDURE ..................................................................................................................... 13
6.
SYSTEM CHECK .......................................................................................................................... 15
7.
MODULATION INTERFERENCE FACTOR.................................................................................. 18
8.
RF CONDUCTED POWER MEASUREMENTS............................................................................ 29
9.
JUSTIFICATION OF HELD TO EAR MODES TESTED ............................................................... 67
10.
LTE TDD UPLINK-DOWNLINK CONFIGURATION...................................................................... 69
11.
OVERALL MEASUREMENT SUMMARY ..................................................................................... 71
12.
EQUIPMENT LIST ......................................................................................................................... 74
13.
MEASUREMENT UNCERTAINTY ................................................................................................ 75
14.
TEST DATA ................................................................................................................................... 76
15.
CALIBRATION CERTIFICATES.................................................................................................... 86
16.
CONCLUSION ............................................................................................................................. 114
17.
REFERENCES ............................................................................................................................ 115
18.
TEST PHOTOGRAPHS .............................................................................................................. 117
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 2 of 119
REV 3.2.M
04/17/2018
© 2018 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.
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 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
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 3 of 119
REV 3.2.M
04/17/2018
© 2018 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.
2.
DUT DESCRIPTION
FCC ID:
Manufacturer:
Model:
Additional Model(s):
Serial Number:
Antenna Configurations:
DUT Type:
I.
A3LSMG973U
Samsung Electronics Co., Ltd.
129, Samsung-ro, Maetan dong,
Yeongtong-gu, Suwon-si
Gyeonggi-do 16677, Korea
SM-G973U
SM-G973U1, SM-G973W
0230M
Internal Antenna
Portable Handset
Power Reduction for WIFI
This device uses an independent fixed level power reduction mechanism for all WIFI operations during
voice or VoIP held to ear scenarios. Reduced powers were used to evaluate for low-power exemption in
Section 9.II for WIFI. Detailed descriptions of the power reduction mechanism are included in the
operational description.
II. LTE Band Selection
This device supports the following pairs of LTE bands with similar frequencies: LTE B25 & B2, LTE B66 &
B4 and LTE B41 & B38. These pairs of LTE bands share the same transmission path and either have the
same target power or the smaller band has a lower target power. Since the supported frequency span for
the smaller LTE band is completely covered by the larger LTE bands, only the larger LTE bands (LTE
B66, B25, and B41) were evaluated for hearing-aid compliance.
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Table 2-1
SM-G973U & SM-G973U1 HAC Air Interfaces
Air-Interface
Band
(MHz)
CDMA
1900
835
EvDO
850
GSM
1900
GPRS/EDGE
Type Transport
HAC Tested
Simultaneous
But Not Tested
Name of Voice Service
VO
Yes
Yes: WIFI or BT
CMRS Voice
VD
No¹
Yes: WIFI or BT
Google Duo
VO
Yes
Yes: WIFI or BT
CMRS Voice
VD
No¹
Yes: WIFI or BT
Google Duo
VD
No¹
Yes: WIFI or BT
CMRS Voice
No¹
Yes: WIFI or BT
Google Duo
Yes: WIFI or BT
VoLTE, Google Duo
850
UMTS
1700
1900
HSPA
VD
No1 2
680 (B71)
700 (B12)
780 (B13)
790 (B14)
850 (B5)
LTE (FDD)
850 (B26)
1700 (B4)
VD
No1
1700 (B66)
1900 (B2)
1900 (B25)
2300 (B30)
2500 (B7)
LTE (TDD)
2600 (B38)
2600 (B41)
VD
Yes
Yes: WIFI or BT
VoLTE, Google Duo
VD
No¹
Yes: CDMA, GSM, UMTS, or LTE
VoWIFI, Google Duo
No
Yes: CDMA, GSM, UMTS, or LTE
N/A
2450
5200 (U-NII 1)
WIFI
5300 (U-NII 2A)
5500 (U-NII 2C)
5800 (U-NII 3)
BT
2450
DT
Type Transport
VO = Voice Only
DT = Digital Data - Not intended for CMRS Service
VD = CMRS and IP Voice over Data Transport
Notes:
1. Evaluated for MIF and low-power exemption.
2. LTE B71, while outside the scope of ANSI C63.19 and FCC HAC regulations, was additionally
tested according to the existing HAC procedures.
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Table 2-2
SM-G973W HAC Air Interfaces
Air-Interface
CDMA
Band
(MHz)
HAC Tested
Simultaneous
But Not Tested
Name of Voice Service
835
VO
Yes
Yes: WIFI or BT
CMRS Voice
EvDO
VD
No¹
Yes: WIFI or BT
Google Duo
VO
Yes
Yes: WIFI or BT
CMRS Voice
VD
No¹
Yes: WIFI or BT
Google Duo
VD
No¹
Yes: WIFI or BT
CMRS Voice
VD
No¹
Yes: WIFI or BT
Google Duo
VD
No1
Yes: WIFI or BT
VoLTE, Google Duo
VD
Yes
Yes: WIFI or BT
VoLTE, Google Duo
VD
No¹
Yes: CDMA, GSM, UMTS, or LTE
VoWIFI, Google Duo
No
Yes: CDMA, GSM, UMTS, or LTE
N/A
850
GSM
Type Transport
1900
GPRS/EDGE
850
UMTS
1700
1900
HSPA
700 (B12)
780 (B13)
850 (B5)
1700 (B4)
LTE (FDD)
1700 (B66)
1900 (B2)
1900 (B25)
2300 (B30)
2500 (B7)
LTE (TDD)
2600 (B41)
2450
5200 (U-NII 1)
WIFI
5300 (U-NII 2A)
5500 (U-NII 2C)
5800 (U-NII 3)
BT
2450
DT
Type Transport
VO = Voice Only
DT = Digital Data - Not intended for CMRS Service
VD = CMRS and IP Voice over Data Transport
Notes:
1. Evaluated for MIF and low-power exemption.
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3.
ANSI/IEEE C63.19 PERFORMANCE CATEGORIES
I. RF EMISSIONS
The ANSI Standard presents performance requirements for acceptable interoperability of hearing aids
with wireless communications devices. When these parameters are met, a hearing aid operates
acceptably in close proximity to a wireless communications device.
Category
Telephone RF Parameters
Near field Category
E-field emissions
CW
dB(V/m)
f < 960 MHz
M1
50 to 55
M2
45 to 50
M3
40 to 45
M4
< 40
f > 960 MHz
M1
40 to 45
M2
35 to 40
M3
30 to 35
M4
< 30
Table 3-1
WD near-field categories as defined in ANSI C63.19-2011
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4.
SYSTEM SPECIFICATIONS
ER3DV6 E-Field Probe Description
Construction:
Calibration:
Frequency:
Directivity
Dynamic Range
Linearity:
Dimensions
One dipole parallel, two dipoles normal to probe axis
Built-in shielding against static charges
In air from 100 MHz to 3.0 GHz
(absolute accuracy ±6.0%, k=2)
100 MHz to > 6 GHz;
Linearity: ± 0.2 dB (100 MHz to 3 GHz)
± 0.2 dB in air (rotation around probe axis)
± 0.4 dB in air (rotation normal to probe axis)
2 V/m to > 1000 V/m
(M3 or better device readings fall well below diode
compression point)
± 0.2 dB
Overall length: 330 mm (Tip: 16 mm)
Tip diameter: 8 mm (Body: 12 mm)
Distance from probe tip to dipole centers: 2.5 mm
Figure 4-1
E-field Free-space
Probe
Probe Tip Description
HAC field measurements take place in the close near field with high gradients. Increasing the measuring
distance from the source will generally decrease the measured field values (in case of the validation
dipole approx. 10% per mm).
The electric field probes have an irregular internal geometry because it is physically not possible to have
the 3 orthogonal sensors situated with the same center. The effect of the different sensor centers is
accounted for in the HAC uncertainty budget ("sensor displacement"). Their geometric center is at 2.5mm
from the tip, and the element ends are 1.1mm closer to the tip.
The antistatic shielding inside the probe is connected to the probe connector case.
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Instrumentation Chain
Equation 1
Probe Response to Frequency
The E-field sensors have inherently a very flat frequency response. They are calibrated with a number of
frequencies resulting in a common calibration factor, with the frequency behavior documented in the
calibration certificate (See also below).
Figure 4-2 E-Field Probe Frequency Response
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SPEAG Robotic System
E-field measurements are performed using the DASY5 automated dosimetric assessment system.
The DASY5 is made by Schmid & Partner Engineering AG (SPEAG) in Zurich, Switzerland and
consists of high precision robotics system (Staubli), robot controller, Intel CORE i7 computer, nearfield probe, probe alignment sensor, and the HAC phantom. The robot is a six-axis industrial robot
performing precise movements to position the probe to the location (points) of maximum
electromagnetic field (EMF).
Figure 4-3
SPEAG Robotic System
System Hardware
A cell controller system contains the power supply, robot controller, teach pendant (Joystick), and a
remote control used to drive the robot motors. The PC consists of the computer with operating
system and RF Measurement Software DASY5 v52.8 (with HAC Extension), A/D interface card,
monitor, mouse, and keyboard. The Staubli Robot is connected to the cell controller to allow software
manipulation of the robot. A data acquisition electronic (DAE) circuit that performs the signal
amplification, signal multiplexing, AD-conversion, offset measurements, mechanical surface
detection, collision detection, etc. is connected to the Electro-optical coupler (EOC). The EOC
performs the conversion from the optical into digital electric signal of the DAE and transfers data to
the PC plug-in card.
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System Electronics
The DAE consists of a highly sensitive electrometer-grade preamplifier with auto-zeroing, a channel
and gain-switching multiplexer, a fast 16 bit AD-converter and a command decoder and control logic
unit. Transmission to the PC-card is accomplished through an optical downlink for data and status
information and an optical uplink for commands and clock lines. The mechanical probe mounting
device includes two different sensor systems for frontal and sidewise probe contacts. They are also
used for mechanical surface detection and probe collision detection. The robot uses its own controller
with a built in VME-bus computer.
Figure 4-4
SPEAG Robotic System Diagram
DASY5 Instrumentation Chain
The first step of the evaluation is a linearization of the filtered input signal to account for the
compression characteristics of the detector diode. The compensation depends on the input
signal, the diode type and the DC-transmission factor from the diode to the evaluation electronics.
If the exciting field is pulsed, the crest factor of the signal must be known to correctly compensate
for peak power. The formula for each channel can be given as:
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The measurement/integration time per point, as specified by the system manufacturer is >500ms.
The signal response time is evaluated as the time required by the system to reach 90% of the
expected final value after an on/off switch of the power source with an integration time of 500ms
and a probe response time of <5 ms. In the current implementation, DASY5 waits longer than
100ms after having reached the grid point before starting a measurement, i.e., the response time
uncertainty is negligible.
If the device under test does not emit a CW signal, the integration time applied to measure the
electric field at a specific point may introduce additional uncertainties due to the discretization.
The tolerances for the different systems had the worst-case of 2.6%.
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5.
TEST PROCEDURE
I. RF EMISSIONS
Per 5.5.1.2 (a-c)
Per 5.5.1.2 (d-f)
Per 5.5.1.2 (g-h) & 5.5.1.3
Per 5.5.1.2 (i-j)
Figure 5-1 RF Emissions Flow Chart
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Test Setup
Figure 5-2
E-Field Emissions Test Setup Diagram (See Test
Photographs for actual WD scan grid overlay)
Figure 5-3
HAC Phantom
RF Emissions Test Procedure:
The following illustrate a typical RF emissions test scan over a wireless communications device:
1. Proper operation of the field probe, probe measurement system, other instrumentation, and the
positioning system was confirmed.
2. WD is positioned in its intended test position, acoustic output point of the device perpendicular to
the field probe.
3. The WD operation for maximum rated RF output power was configured and confirmed with the
base station simulator, at the test channel and other normal operating parameters as intended for
the test. The battery was ensured to be fully charged before each test.
4. The center sub-grid was centered over the center of the acoustic output (also audio band
magnetic output, if applicable). The WD audio output was positioned tangent (as physically
possible) to the measurement plane.
5. A surface calibration was performed before each setup change to ensure repeatable spacing and
proper maintenance of the measurement plane using the HAC Phantom.
6. The measurement system measured the field strength at the reference location.
7. Measurements at 2mm or 5mm increments in the 5 x 5 cm region were performed at a distance
15 mm from the center point of the probe measurement element to the WD. A 360o rotation about
the azimuth axis at the maximum interpolated position was measured. For the worst-case
condition, the peak reading from this rotation was used in re-evaluating the HAC category.
8. The system performed a drift evaluation by measuring the field at the reference location. If the
power drift deviated by more than 5%, the HAC test and drift measurements were repeated.
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6.
SYSTEM CHECK
I. System Check Parameters
The input signal was an un-modulated continuous wave. The following points were taken into
consideration in performing this check:
•
•
•
Average Input Power P = 100mW RMS (20dBm RMS) after adjustment for return loss
The test fixture must meet the 2 wavelength separation criterion
The proper measurement of the 15 mm probe to dipole separation, which is measured from top
surface of the dipole to the calibration reference point of the sensor, defined by the probe
manufacturer is shown in the following diagram:
E-field probe
Housing
Manufactures
Probe Calibration
Reference point
15 mm
Top surface of dipole
Dipole
arm
Center of dipole
Figure 6-1
Separation Distance from Dipole to Field Probe
RF power was recorded using both an average reading meter and a peak reading meter. Readings of the
probe are provided by the measurement system.
To assure proper operation of the near-field measurement probe the input power to the dipole shall be
commensurate with the full rated output power of the wireless device [e.g. - for a cellular phone wireless
device the average peak antenna input power will be on the order of 100mW (20dBm) RMS] after
adjustment for any mismatch.
II. Validation Procedure
A dipole antenna meeting the requirements given in C63.19 was placed in the position normally occupied
by the WD.
The length of the dipole was scanned, and the average peak value was recorded.
Measurement of CW
Using the near-field measurement system, scan the antenna over the radiating dipole and record the
greatest field reading observed. Due to the nature of E-fields about free-space dipoles, the two E-field
peaks measured over the dipole are averaged to compensate for non-parallelity of the setup (see
manufacturer method on dipole calibration certificates, page 2). Field strength measurements shall be
made only when the probe is stationary.
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RF power was recorded using both an average and a peak power reading meter.
Output Power Meter
Signal
Generator
Amplifier
Directional Coupler
Output Power Meter
Signal
Generator
Amplifier
Directional Coupler
Reference Dipole
Reference Dipole
Power Meter
Reference
Power Meter
Reference
Figure 6-2
Setup for Desired Output Power to Dipole
Figure 6-3
Setup to Dipole
Using this setup configuration, the signal generator was adjusted for the desired output power (100mW)
at a specified frequency. The reference power from the coupled port of the directional coupler is
recorded. Next, the output cable is connected to the reference dipole, as shown in Figure 6-3.
The input signal level was adjusted until the reference power from the coupled port of the directional
coupler was the same as previously recorded, to compensate for the impedance mismatch between the
output cable and the reference dipole. To assure proper operation of the near-field measurement probe
the input power to the reference dipole was verified to the full rated output power of the wireless device.
The dipole was secured in a holder in a manner to meet the 20 dB reflection. The near-field measurement
probe was positioned over the dipole. The antenna was scanned over the appropriate sized area to cover
the dipole from end to end. SPEAG uses 2D interpolation algorithms between the measured points.
Please see below two dimensional plots showing that the interpolated values interpolate smoothly
between 5mm steps for a free-space RF dipole:
Figure 6-4
2-D Raw Data from scan along dipole axis
Figure 6-5
2-D Interpolated points from scan along dipole axis
Figure 6-6
2-D Raw Data from scan along transverse axis
Figure 6-7
2-D Interpolated points from scan along transverse axis
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III. System Check Results
Validation Results
Date
Frequency
(MHz)
11/12/2018
11/26/2018
Probe S/N
DAE S/N
835
1880
2353
2600
1415
Dipole S/N
Input
Power
(dBm)
E-field
Result
(V/m)
Target
Field
(V/m)
Deviation
1003
20.0
110.9
106.8
3.8%
1137
20.0
95.8
90.4
6.0%
1013
20.0
89.9
84.5
6.4%
Figure 6-8
System Check Setup
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7.
MODULATION INTERFERENCE FACTOR
I. Measuring Modulation Interference Factors
For any specific fixed and repeatable modulated signal, a modulation interference factor (MIF, expressed
in dB) may be determined that relates its interference potential to its steady-state RMS signal level or
average power level. This factor is a function only of the audio-frequency amplitude modulation
characteristics of the signal and is the same for field-strength and conducted power measurements. The
MIF is valid only for a specific repeatable audio-frequency amplitude modulation characteristic; any
change in modulation characteristic requires determination and application of a new MIF.
The MIF may be determined using a radiated RF field or a conducted RF signal:
a. Using RF illumination or conducted coupling, apply the specific modulated signal in question
to the measurement system at a level within its confirmed operating dynamic range.
b. Measure the steady-state RMS level at the output of the fast probe or sensor.
c. Measure the steady-state average level at the weighting output.
d. Without changing the square-law detector or weighting system, and using RF illumination or
conducted coupling, substitute for the specific modulated signal a 1 kHz, 80% amplitude
modulated carrier at the same frequency and adjust its strength until the level at the
weighting output equals the step c) measurement.
e. Without changing the carrier level from step d), remove the 1 kHz modulation and again
measure the steady-state RMS level indicated at the output of the fast probe or sensor.
f. The MIF for the specific modulation characteristic is provided by the ratio of the step e)
measurement to the step b) measurement, expressed in dB (20 × log[(step e)/(step b)]).
The following procedure was used to measure the MIF using the SPEAG Audio Interference Analyzer
(AIA), Type No: SE UMS 170 CB, Serial No.: 1010:
1. The device was placed into a simulated call using a base station simulator or set to transmit
using test software for a given mode.
2. The device was then set to continuously transmit at maximum power.
3. Using a coupler if needed, the device output signal was connected to the RF In port of the
AIA, which was connected to a desktop computer. Alternatively, a radiated RF signal may be
used with the AIA’s built-in antenna.
4. The MIF measurement procedure in the DASY software was run, and the resulting MIF value
was recorded.
5. Steps 1-4 were repeated for all CMRS air interfaces, frequency bands, and modulations.
The modulation interference factors obtained were applied to readings taken of the actual wireless device
in order to obtain an accurate audio interference level reading using the formula:
Audio Interference Level [dB(V/m)] = 20 * log[Raw Field Value (V/m)] + MIF (dB)
Because the MIF value is output power independent, MIF values for a given mode should be constant
across all devices; however, per C63.19-2011 §D.7, MIF values should be measured for each device
being evaluated. The voice modes for this device have been investigated in this section of the report.
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II. MIF Measurement Block Diagrams
Figure 7-2
MIF Measurement Setup
for unlicensed modes
Figure 7-1
MIF Measurement Setup
for licensed modes
III. Measured Modulation Interference Factors:
Table 7-1
CDMA Modulation Interference Factors1
Cell
Mode
CDMA
PCS
90S
22H
22H
22H
24E
24E
24E
564
1013
384
777
25
600
1175
RC1/SO3
3.03
3.04
3.04
3.04
3.03
3.05
3.08
RC1/SO55
-18.84
-19.05
-19.15
-18.97
-19.21
-19.09
-19.18
EvDO
-18.65
-18.34
-18.19
-18.50
-18.46
-18.48
-18.03
Table 7-2
GSM Modulation Interference Factors1
GSM850
Mode
GSM1900
128
190
251
512
661
810
Voice
3.55
3.55
3.55
3.55
3.55
3.55
EDGE
3.76
3.74
3.75
3.69
3.69
3.67
GSM
Table 7-3
UMTS Modulation Interference Factors1
UMTS V
Mode
UMTS
12.2 kbps
RMC
12.2 kbps
AMR
HSUPA
Subtest1
UMTS IV
UMTS II
4132
4183
4233
1312
1412
1513
9262
9400
9538
-23.78
-23.02
-24.27
-22.94
-23.91
-23.67
-23.98
-23.50
-22.47
-14.02
-13.96
-13.95
-14.25
-14.15
-14.17
-14.08
-14.12
-13.74
-23.22
-22.44
-23.54
-22.16
-23.40
-22.75
-22.68
-23.15
-23.94
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
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Table 7-4
LTE FDD Modulation Interference Factors1,2,3
LTE
Band
Frequency
[MHz]
Channel
Bandwidth
Modulation
[MHz]
RB Size
RB Offset
MIF
[dB]
71
680.5
133297
20
16QAM
-10.37
66
1745.0
132322
20
16QAM
-10.56
25
1882.5
26365
20
16QAM
-10.60
1745.0
21100
20
16QAM
-10.53
26
831.5
26865
15
16QAM
-10.58
836.5
20525
10
16QAM
-10.35
12
707.5
23095
10
16QAM
-10.39
13
782.0
23230
10
16QAM
-10.55
14
793.0
23330
10
16QAM
-10.54
30
2310.0
27710
10
16QAM
-10.29
30
2310.0
27710
10
QPSK
-13.27
30
2310.0
27710
10
64QAM
-9.60
30
2310.0
27710
10
256QAM
-10.18
30
2310.0
27710
10
64QAM
25
-9.40
30
2310.0
27710
10
64QAM
49
-9.56
30
2310.0
27710
10
64QAM
25
-16.07
30
2310.0
27710
10
64QAM
50
-15.91
30
2310.0
27710
64QAM
12
-9.00
Table 7-5
LTE FDD Uplink Carrier Aggregation Modulation Interference Factor1,4
Combination
CA_5B
CA_66B
CA_66C
PCC Band
LTE B5
LTE B66
LTE B66
PCC
Bandwidth
[MHz]
10
10
20
PCC (UL)
Channel
20525
132322
132322
PCC
PCC (UL)
Frequency Modulation PCC UL# RB
[MHz]
836.5
16QAM
1745.0
16QAM
1745.0
16QAM
PCC UL RB
Offset
SCC Band
LTE B5
LTE B66
LTE B66
SCC
Bandwidth
[MHz]
10
20
SCC (UL)
Channel
20453
132223
132124
SCC
SCC (UL)
Frequency Modulation SCC UL# RB
[MHz]
829.3
16QAM
1735.1
16QAM
1725.2
16QAM
SCC UL RB
Offset
MIF (dB)
24
49
99
-10.46
-12.97
-12.16
Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note: All FDD LTE bands were found to have substantially similar MIF values given similar RB, BW, and modulation
configurations.
3 Note:
Since LTE Band 30 at 5 MHz bandwidth is the overall worst-case LTE MIF and does not support 3 nonoverlapping channels, MIF measurements were made only on the middle channel.
4 Note:
LTE FDD ULCA was evaluated to ensure LTE FDD standalone was the worst-case scenario. The
configurations in Table 7-5 were determined from Table 7-4 and satisfy the configuration requirements as defined in
3GPP 36.101.
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Table 7-6
LTE TDD (Power Class 3) Modulation Interference Factors1,2
RB Size
RB Offset
MIF
[dB]
16QAM
1.43
QPSK
1.43
20
64QAM
1.59
40620
20
256QAM
1.36
40620
20
64QAM
50
1.63
2593.0
40620
20
64QAM
99
1.64
2593.0
40620
20
64QAM
50
1.33
41
2593.0
40620
20
64QAM
100
1.31
41
2593.0
40620
15
64QAM
74
1.63
41
2593.0
40620
10
64QAM
49
1.63
41
2593.0
40620
64QAM
24
1.61
41
2506.0
39750
20
64QAM
99
1.61
41
2549.5
40185
20
64QAM
99
1.61
41
2636.5
41055
20
64QAM
99
1.60
41
2680.0
41490
20
64QAM
99
1.62
Bandwidth
Modulation
[MHz]
LTE
Band
Frequency
[MHz]
Channel
41
2593.0
40620
20
41
2593.0
40620
20
41
2593.0
40620
41
2593.0
41
2593.0
41
41
Table 7-7
LTE TDD (Power Class 2) Modulation Interference Factors1,2
RB Size
RB Offset
MIF
[dB]
16QAM
1.52
QPSK
1.46
20
64QAM
1.68
40620
20
256QAM
1.44
40620
20
64QAM
50
1.66
2593.0
40620
20
64QAM
99
1.70
2593.0
40620
20
64QAM
50
1.38
41
2593.0
40620
20
64QAM
100
1.37
41
2593.0
40620
15
64QAM
74
1.69
41
2593.0
40620
10
64QAM
49
1.70
41
2593.0
40620
64QAM
24
1.82
41
2506.0
39750
64QAM
24
1.66
41
2549.5
40185
64QAM
24
1.67
41
2636.5
41055
64QAM
24
1.74
41
2680.0
41490
64QAM
24
1.67
Bandwidth
Modulation
[MHz]
LTE
Band
Frequency
[MHz]
Channel
41
2593.0
40620
20
41
2593.0
40620
20
41
2593.0
40620
41
2593.0
41
2593.0
41
41
Table 7-8
LTE TDD Uplink Carrier Aggregation Modulation Interference Factor1,3
Combination
PCC Band
PCC
PCC
PCC (UL/DL)
PCC (UL/DL)
Bandwidth
Frequency Modulation PCC UL# RB
Channel
[MHz]
[MHz]
PCC UL RB
Offset
SCC Band
SCC
SCC
SCC (UL/DL)
SCC (UL/DL)
Bandwidth
Frequency Modulation SCC UL# RB
Channel
[MHz]
[MHz]
SCC UL RB
Offset
MIF (dB)
CA_41C (PC2)
LTE B41
20
40620
2593.0
16QAM
LTE B41
20
40422
2573.2
16QAM
99
1.48
CA_41C (PC3)
LTE B41
20
40620
2593.0
16QAM
LTE B41
20
40422
2573.2
16QAM
99
1.46
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
Power Class 3 LTE TDD MIFs were taken using UL-DL Configuration 2. Power Class 2 LTE TDD MIFs were
taken using UL-DL Configuration 2. More information about the chosen UL-DL Configuration can be found in Section
10.
3 Note:
LTE TDD ULCA was evaluated to ensure LTE TDD standalone was the worst-case scenario. The
configuration in Table 7-8 was determined from Tables 7-6 & 7-7 and satisfies the configuration requirements as
defined in 3GPP 36.101. These MIFs were evaluated with UL-DL Configuration 2 for Power Class 3 LTE TDD and
UL-DL Configuration 2 for Power Class 2 LTE TDD.
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Table 7-9
802.11b (2.4GHz, SISO) Modulation Interference Factors1,2
802.11b MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11b
-9.69
-9.14
5.5
-7.25
11
-6.32
Table 7-10
802.11g (2.4GHz, SISO) Modulation Interference Factors1,2
802.11g MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11g
-7.50
-6.75
12
-6.17
18
-5.47
24
-5.05
36
-4.79
48
-4.91
54
-4.96
Table 7-11
802.11g (2.4GHz, MIMO) Modulation Interference Factors1,2
802.11g MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11g
12
-7.45
18
-6.73
24
-6.18
36
-5.39
48
-5.03
72
-4.75
92
-4.84
108
-4.92
Table 7-12
802.11n (2.4GHz, SISO) Modulation Interference Factors1,2
802.11n (2.4GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
6.5
-7.33
13
-6.11
19.5
-5.47
26
-5.06
39
-4.78
52
-4.82
58.5
-4.93
65
-5.04
Table 7-13
802.11n (2.4GHz, MIMO) Modulation Interference Factors1,2
802.11n (2.4GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
13
-7.29
26
-6.02
39
-5.38
52
-4.95
78
-4.70
104
-4.77
117
-4.89
130
-4.97
Table 7-14
802.11ax (2.4GHz, SU, SISO) Modulation Interference Factors1,2
20MHz 802.11ax (2.4GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
-6.93
16
-5.80
24
-5.15
33
-4.85
49
-4.70
65
-4.80
73
-4.89
81
-4.98
98
-5.10
108
-5.22
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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Table 7-15
802.11ax (2.4GHz, SU, MIMO) Modulation Interference Factors1,2
20MHz 802.11ax (2.4GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
-5.71
32
-4.85
48
-4.62
66
-4.74
98
-5.02
130
-5.29
146
-5.43
162
-5.55
196
-5.71
216
-5.83
Table 7-16
802.11a (5GHz, 20MHz BW, SISO) Modulation Interference Factors1,2
802.11a MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11a
-7.51
-6.83
12
-6.23
18
-5.54
24
-5.12
36
-4.88
48
-4.98
54
-5.04
Table 7-17
802.11a (5GHz, 20MHz BW, MIMO) Modulation Interference Factors1,2
802.11a MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11a
12
-7.56
18
-6.79
24
-6.19
36
-5.53
48
-5.12
72
-4.85
92
-4.99
108
-5.03
Table 7-18
802.11n (5GHz, 20MHz BW, SISO) Modulation Interference Factors1,2
20MHz BW 802.11n (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
6.5
-7.45
13
-6.19
19.5
-5.54
26
-5.13
39
-4.86
52
-4.90
58.5
-5.01
65
-5.12
Table 7-19
802.11n (5GHz, 20MHz BW, MIMO) Modulation Interference Factors1,2
20MHz BW 802.11n (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
13
-7.46
26
-6.16
39
-5.49
52
-5.14
78
-4.86
104
-4.90
117
-5.01
130
-5.10
Table 7-20
802.11ac (5GHz, 20MHz BW, SISO) Modulation Interference Factors1,2
20MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
6.5
-7.48
13
-6.20
19.5
-5.53
26
-5.11
39
-4.84
52
-4.89
58.5
-4.94
65
-5.07
78
-5.24
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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Table 7-21
802.11ac (5GHz, 20MHz BW, MIMO) Modulation Interference Factors1,2
20MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
13
-6.25
26
-5.14
39
-4.85
52
-4.87
78
-5.19
104
-5.56
117
-5.67
130
-5.82
156
-6.05
Table 7-22
802.11ax (5GHz, 20MHz BW, SU, SISO) Modulation Interference Factors1,2
20MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
-6.98
16
-5.90
24
-5.24
33
-4.95
49
-4.77
65
-4.89
73
-4.96
81
-5.07
98
-5.18
108
-5.31
122
-5.42
135
-5.60
244
-5.88
270
-6.05
Table 7-23
802.11ax (5GHz, 20MHz BW, SU, MIMO) Modulation Interference Factors1,2
20MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
-5.90
32
-5.01
48
-4.82
66
-4.85
98
-5.14
130
-5.40
146
-5.50
162
-5.62
196
-5.75
216
-5.88
Table 7-24
802.11n (5GHz, 40MHz BW, SISO) Modulation Interference Factors1,2
40MHz BW 802.11n (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
13.5
-5.95
27
-4.91
40.5
-4.68
54
-4.76
81
-5.25
108
-5.73
121.5
-5.85
135
-6.02
Table 7-25
802.11n (5GHz, 40MHz BW, MIMO) Modulation Interference Factors1,2
40MHz BW 802.11n (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11n
27
-5.94
54
-4.92
81
-4.68
108
-4.75
162
-5.23
216
-5.73
243
-5.89
270
-6.07
Table 7-26
802.11ac (5GHz, 40MHz BW, SISO) Modulation Interference Factors1,2
40MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
13.5
-5.96
27
-4.89
40.5
-4.66
54
-4.73
81
-5.20
108
-5.67
121.5
-5.82
135
-5.94
180
-6.38
Table 7-27
802.11ac (5GHz, 40MHz BW, MIMO) Modulation Interference Factors1,2
40MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
27
-4.91
54
-4.74
81
-5.16
108
-5.61
162
-6.09
216
-6.59
243
-6.72
270
-6.86
360
-7.11
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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Table 7-28
802.11ax (5GHz, 40MHz BW, SU, SISO) Modulation Interference Factors1,2
40MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
-5.62
33
-4.74
49
-4.61
65
-4.75
98
-5.09
130
-5.47
146
-5.54
163
-5.73
195
-5.82
217
-5.95
244
-6.04
271
-6.26
488
-6.36
542
-6.37
510
-6.60
567
-6.60
1020
-6.04
1134
-6.13
Table 7-29
802.11ax (5GHz, 40MHz BW, SU, MIMO) Modulation Interference Factors1,2
40MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
16
-4.77
66
-4.71
98
-5.04
130
-5.32
196
-5.65
260
-5.94
292
-6.05
326
-6.12
390
-6.36
434
-6.36
Table 7-30
802.11ac (5GHz, 80MHz BW, SISO) Modulation Interference Factors1,2
80MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
29.3
-4.86
58.5
-4.82
87.8
-5.27
117
-5.69
175.5
-6.25
234
-6.65
263.3
-6.80
292.5
-6.93
351
-7.06
390
-7.17
Table 7-31
802.11ac (5GHz, 80MHz BW, MIMO) Modulation Interference Factors1,2
80MHz BW 802.11ac (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ac
58.5
-4.31
117
-5.09
175.5
-5.52
234
-5.86
351
-6.29
468
-6.64
526.5
-6.63
585
-6.68
702
-6.68
780
-6.97
Table 7-32
802.11ax (5GHz, 80MHz BW, SU, SISO) Modulation Interference Factors1,2
80MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
17
-4.76
68
-4.81
102
-5.11
136
-5.51
204
-5.85
272
-6.21
306
-6.20
340
-6.29
408
-6.43
453
-6.40
Table 7-33
802.11ax (5GHz, 80MHz BW, SU, MIMO) Modulation Interference Factors1,2
80MHz 802.11ax (5GHz) MIF Measurements [dB]
Data Rate [Mbps]
Mode
802.11ax
34
-4.32
136
-4.91
204
-5.11
272
-5.45
408
-5.58
544
-5.86
612
-5.78
680
-5.85
816
-6.13
906
-6.12
Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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Table 7-34
Simultaneous 2.4GHz and 5GHz WIFI Modulation Interference Factors1,2,3
Tx
5 GHz WIFI
[dBm]
Ant1
Ant2
2.4 GHz WIFI
[dBm]
Ant1
Ant2
Measured MIF
(dB)
-4.74
-4.73
-4.71
-4.75
-6.03
-6.01
-4.74
-4.74
-6.02
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WLAN MIF values were found to be independent of the transmit channel.
3 Note:
The configuration for each scenario (e.g. bandwidth, data rate, etc.) was determined using the worst-case
configuration from SISO and MIMO MIF measurements.
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Table 7-35
802.11ax (2.4GHz, RU, SISO) Modulation Interference Factors1,3
20MHz 802.11ax (2.4GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 24Mbps)
37
40
53
54
802.11ax
-8.99
-8.84
-7.96
-7.74
-6.63
-6.40
61
-5.20
Table 7-36
802.11ax (2.4GHz, RU, MIMO) Modulation Interference Factors1,3
20MHz 802.11ax (2.4GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 8Mbps)
37
40
53
54
802.11ax
-9.09
-8.97
-8.37
-8.37
-7.21
-7.10
61
-5.69
Table 7-37
802.11ax (5GHz, 20MHz BW, RU, SISO) Modulation Interference Factors1,2
20MHz 802.11ax (5GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 24Mbps)
37
40
53
54
61
802.11ax
-9.01
-8.90
-7.92
-7.90
-6.59
-6.57
-5.26
Table 7-38
802.11ax (5GHz, 20MHz BW, RU, MIMO) Modulation Interference Factors1,2
20MHz 802.11ax (5GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 8Mbps)
37
40
53
54
61
802.11ax
-9.43
-9.39
-8.46
-8.46
-7.36
-7.21
-5.80
Table 7-39
802.11ax (5GHz, 40MHz BW, RU, SISO) Modulation Interference Factors1,2
40MHz 802.11ax (5GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 24Mbps)
17
37
44
53
56
61
802.11ax
-9.13
-8.90
-8.05
-7.94
-6.64
-6.57
-5.25
65
-4.62
Table 7-40
802.11ax (5GHz, 40MHz BW, RU, MIMO) Modulation Interference Factors1,2
40MHz 802.11ax (5GHz) MIF Measurements [dB]
Mode
RU Index (Data Rate: 8Mbps)
17
37
44
53
56
61
802.11ax
-9.38
-9.39
-8.70
-8.50
-7.39
-7.29
-5.79
65
-4.81
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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Table 7-41
802.11ax (5GHz, 80MHz BW, RU, SISO) Modulation Interference Factors1,2
80MHz 802.11ax (5GHz) MIF Measurements [dB]
RU Index (Data Rate: 24Mbps)
Mode
802.11ax
-8.94
36
-8.92
37
-7.97
52
-7.88
53
-6.61
60
-6.49
61
-5.23
65
-4.59
66
-4.59
67
-5.06
Table 7-42
802.11ax (5GHz, 80MHz BW, RU, MIMO) Modulation Interference Factors1,2
80MHz 802.11ax (5GHz) MIF Measurements [dB]
RU Index (Data Rate: 8Mbps)
Mode
802.11ax
-9.25
36
-8.94
37
-8.54
52
-8.36
53
-7.04
60
-6.96
61
-5.53
65
-4.48
66
-4.45
67
-4.22
1 Note: Measured MIF values may be lower than sample MIF values provided in ANSI C63.19-2011 Annex D.7 Table
D.5 due to manufacturing variations for each device, however per Annex D.7, the sample MIF values of Table D.5 are
not intended to substitute for measurements of actual devices under test and their respective operating modes.
2 Note:
WIFI MIF values were found to be independent of the transmit channel.
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8.
RF CONDUCTED POWER MEASUREMENTS
I. Procedures Used to Establish RF Signal for HAC Testing
The handset was placed into a simulated call using a base station simulator in a shielded chamber.
Such test signals offer a consistent means for testing HAC and are recommended for evaluating HAC.
Measurements were taken with a fully charged battery. In order to verify that the device was tested and
maintained at full power, this was configured with the base station simulator.
II. HAC Measurement Conditions
Output Power Verification
Maximum output power is verified on the High, Middle and Low channels for all applicable air interfaces.
See Table 8-1 for air interface specific settings of transmit power parameters.
Table 8-1
Power Control Parameters and Settings by Air Interface
Air Interface:
Parameter Name:
Parameter Set To:
CDMA
Power Control Bits
“All Up”
GSM
PCL
GSM850: “5”; GSM1900: “0”
UMTS
TPC
“All 1’s”
LTE
TPC
“Max Power”
WIFI
PLS
Mfr Specified
III. Setup Used to Measure RF Conducted Powers
Power measurements for licensed modes were performed using a base station simulator under digital
average power. Power measurements for unlicensed modes were performed using a power meter and
power sensor.
Figure 8-1
Power Measurement Setup for licensed modes
Figure 8-2
Power Measurement Setup for unlicensed modes
IV. CDMA Conducted Powers
Band
Channel
Cellular
PCS
SO2
[dBm]
SO2
[dBm]
SO55
[dBm]
SO55
[dBm]
SO75
[dBm]
SO3
[dBm]
1x EvDO
Rev. A
[dBm]
RC3
RC4
(RETAP)
24.88
24.87
24.85
24.85
24.88
24.83
24.91
24.99
24.97
24.93
24.85
24.85
24.86
24.86
24.86
23.25
23.24
23.25
23.26
23.37
23.28
23.21
23.20
23.24
23.21
23.31
23.30
23.19
23.17
23.21
23.20
23.30
SO9
[dBm]
SO9
[dBm]
SO3
[dBm]
Frequency
MHz
RC1
RC3
RC4
RC1
RC3
RC11
RC2
RC5
RC1
564
90S
820.1
24.87
24.83
24.86
24.89
24.88
24.89
24.90
24.86
24.84
1013
22H
824.7
24.88
24.83
24.82
24.87
24.85
24.87
24.88
24.84
24.81
384
22H
836.52
25.00
24.94
24.95
24.97
24.98
24.99
24.98
24.96
777
22H
848.31
24.89
24.87
24.85
24.90
24.86
24.89
24.87
25
24E
1851.25
23.36
23.24
23.22
23.31
23.27
23.24
23.31
600
24E
1880
23.35
23.21
23.19
23.28
23.25
23.25
1175
24E
1908.75
23.30
23.18
23.17
23.24
23.24
23.21
F-RC
Cellular
SO2
[dBm]
Rule Part
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V. GSM Conducted Powers
Band
GSM 850
GSM 1900
Channel
GSM
[dBm]
CS
(1 Slot)
EDGE
[dBm]
1 Tx
Slot
128
32.30
26.33
190
32.34
26.25
251
32.19
26.25
512
29.44
25.36
661
29.21
25.50
810
29.00
25.01
VI. UMTS Conducted Powers
Mode
WCDMA
3GPP 34.121
Subtest
AWS Band [dBm]
PCS Band [dBm]
4132
4183
4233
1312
1412
1513
9262
9400
9538
12.2 kbps RMC
24.22
24.31
24.30
23.72
23.94
23.97
23.92
23.80
23.70
12.2 kbps AMR
24.21
24.32
24.29
23.73
23.92
23.98
23.91
23.84
23.68
Subtest 1
23.16
23.22
23.18
22.91
22.94
22.90
22.83
22.69
22.72
HSUPA
VII.
Cellular Band [dBm]
LTE Conducted Powers
a. LTE Band 71
Table 8-2
LTE Band 71 (680.5MHz) Conducted Powers – 20MHz Bandwidth
LTE Band 71
20 MHz Bandwidth
Mid Channel
Modulation
RB Size
RB Offset
133297
(680.5 MHz)
Conducted Power
[dBm]
24.47
50
24.03
QPSK
24.32
23.61
25
23.59
50
50
23.53
100
23.54
23.63
50
23.26
99
0-1
0-1
23.48
50
22.58
50
25
22.54
50
50
22.48
100
22.52
22.61
50
22.26
99
0-2
0-2
22.46
50
21.64
50
25
21.56
50
50
21.52
100
21.52
0-3
19.76
50
19.39
256QAM
50
64QAM
MPR [dB]
50
16QAM
99
MPR Allowed per
3GPP [dB]
99
19.53
50
19.58
50
25
19.61
50
50
19.55
100
19.60
0-5
Note: Since LTE Band 71 at 20MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
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Table 8-3
LTE Band 71 (680.5MHz) Conducted Powers – 15MHz Bandwidth
LTE Band 71
15 MHz Bandwidth
Mid Channel
Modulation
RB Size
RB Offset
133297
(680.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power
[dBm]
QPSK
24.13
36
24.00
74
24.01
36
23.30
36
18
23.21
36
37
23.20
75
23.16
23.52
36
23.34
16QAM
74
256QAM
0-1
0-1
23.32
36
22.26
36
18
22.21
36
37
22.20
75
22.15
22.44
36
22.31
64QAM
74
0-2
0-2
22.25
36
21.24
36
18
21.20
36
37
21.16
75
21.15
19.43
36
19.23
74
19.27
0-3
36
19.22
36
18
19.18
0-5
36
37
19.15
75
19.16
Note: Since LTE Band 71 at 15MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
Table 8-4
LTE Band 71 (680.5MHz) Conducted Powers – 10MHz Bandwidth
Low Channel
Modulation
RB Size
RB Offset
133172
(668.0 MHz)
LTE Band 71
10 MHz Bandwidth
Mid Channel
133297
(680.5 MHz)
High Channel
133422
(693.0 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
23.73
23.91
23.90
25
23.61
23.95
24.08
49
23.85
23.85
24.00
25
22.86
23.08
23.22
25
12
22.89
23.01
23.15
25
25
22.91
22.95
23.11
50
23.02
23.02
23.18
23.00
23.20
23.17
25
22.89
23.21
23.40
49
23.15
23.15
23.28
25
21.95
22.11
22.22
25
12
22.00
22.02
22.16
25
25
21.96
21.93
22.09
50
22.01
21.96
22.14
22.04
22.18
22.12
25
21.83
22.16
22.38
64QAM
256QAM
49
22.12
22.07
0-1
0-1
0-2
0-2
22.31
25
20.93
21.05
21.21
25
12
20.95
21.01
21.15
25
25
20.92
20.89
21.09
50
21.00
20.99
21.17
19.23
19.22
19.29
25
18.82
19.05
19.27
0-3
49
19.06
19.04
19.10
25
19.12
19.06
19.24
25
12
19.10
19.01
19.14
25
25
19.18
18.92
19.08
50
19.07
19.00
19.15
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Table 8-5
LTE Band 71 (680.5MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 71
5 MHz Bandwidth
Mid Channel
Low Channel
Modulation
RB Size
133147
(665.5 MHz)
RB Offset
133297
(680.5 MHz)
High Channel
133447
(695.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
23.67
23.85
23.99
12
23.98
23.94
24.11
24
23.91
23.90
24.12
12
22.76
23.00
23.18
12
22.99
23.09
23.23
12
13
22.92
23.04
23.16
25
16QAM
22.96
23.18
23.42
12
23.25
23.28
23.43
24
23.13
23.23
23.39
12
21.79
22.07
22.23
12
22.11
22.12
22.27
12
13
22.06
22.09
22.26
21.82
22.04
21.92
22.11
22.36
12
22.20
22.18
22.37
24
22.13
22.18
22.33
12
20.85
21.06
21.19
12
21.17
21.10
21.32
12
13
21.05
21.08
21.12
20.86
0-1
21.04
0-1
0-2
22.15
23.19
25
256QAM
23.03
25
64QAM
22.80
0-2
0-3
21.15
19.09
19.04
19.51
12
19.14
19.12
19.34
24
19.09
19.09
19.24
12
19.11
19.02
19.15
12
19.14
19.11
19.19
12
13
19.10
19.03
19.21
25
19.12
19.05
19.18
0-5
b. LTE Band 12
Table 8-6
LTE Band 12 (707.5MHz) Conducted Powers – 10MHz Bandwidth
LTE Band 12
10 MHz Bandwidth
Mid Channel
Modulation
QPSK
16QAM
64QAM
RB Offset
23095
(707.5 MHz)
Conducted Power
[dBm]
24.36
25
24.00
49
24.49
RB Size
25
23.45
25
12
23.48
25
25
23.53
50
23.42
23.06
25
22.79
MPR [dB]
0-1
0-1
49
23.28
25
22.41
25
12
22.48
25
25
22.52
50
22.38
22.29
25
22.11
0-2
0-2
49
22.52
25
21.46
25
12
21.39
25
25
21.47
50
21.41
19.70
25
19.52
256QAM
MPR Allowed per
3GPP [dB]
49
0-3
19.75
25
19.64
25
12
19.57
25
25
19.61
50
19.59
0-5
Note: Since LTE Band 12 at 10MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
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Table 8-7
LTE Band 12 (707.5MHz) Conducted Powers – 5MHz Bandwidth
Low Channel
Modulation
RB Size
RB Offset
23035
(701.5 MHz)
LTE Band 12
5 MHz Bandwidth
Mid Channel
23095
(707.5 MHz)
High Channel
23155
(713.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
24.08
24.30
24.47
12
24.23
24.45
24.59
24
24.26
24.60
24.60
12
23.27
23.48
23.62
12
23.38
23.57
23.70
12
13
23.37
23.56
23.70
25
16QAM
23.57
23.44
23.55
23.77
12
23.55
23.80
23.96
24
23.57
23.74
23.85
12
22.36
22.53
22.69
12
22.38
22.62
22.72
12
13
22.40
22.66
22.76
22.35
22.55
22.37
22.61
22.74
12
22.53
22.76
22.85
24
22.55
22.71
22.80
12
21.26
21.51
21.69
12
21.41
21.62
21.71
12
13
21.40
21.61
21.73
21.39
0-1
0-1
0-2
22.65
23.63
25
256QAM
23.36
25
64QAM
21.56
0-2
0-3
21.64
19.32
19.51
19.74
12
19.47
19.71
19.75
24
19.46
19.62
19.73
12
19.24
19.48
19.59
12
19.35
19.60
19.64
12
13
19.34
19.55
19.67
25
19.33
19.54
19.61
0-5
Table 8-8
LTE Band 12 (707.5MHz) Conducted Powers – 3MHz Bandwidth
Low Channel
Modulation
RB Size
RB Offset
23025
(700.5 MHz)
LTE Band 12
3 MHz Bandwidth
Mid Channel
23095
(707.5 MHz)
High Channel
23165
(714.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
24.12
24.36
24.56
24.18
24.43
24.59
14
24.22
24.44
24.65
23.23
23.49
23.71
23.33
23.57
23.74
23.31
23.54
23.70
15
23.34
23.59
23.75
23.51
23.66
23.88
23.55
23.79
23.93
14
23.57
23.76
23.91
22.33
22.57
22.75
22.44
22.66
22.82
0-1
0-1
0-2
22.39
22.63
22.79
15
22.34
22.59
22.78
22.45
22.66
22.88
22.50
22.71
22.87
14
22.46
22.84
22.89
21.22
21.50
21.69
21.38
21.61
21.80
21.32
21.62
21.75
15
21.35
21.58
21.76
19.37
19.54
19.69
19.41
19.63
19.75
14
19.45
19.64
19.76
19.24
19.47
19.64
19.33
19.58
19.74
19.31
19.56
19.72
15
19.28
19.53
19.73
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Table 8-9
LTE Band 12 (707.5MHz) Conducted Powers – 1.4MHz Bandwidth
LTE Band 12
1.4 MHz Bandwidth
Mid Channel
Low Channel
Modulation
RB Size
23017
(699.7 MHz)
RB Offset
23095
(707.5 MHz)
High Channel
23173
(715.3 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
24.01
24.30
24.52
24.11
24.42
24.61
24.10
24.35
24.56
24.01
24.30
24.48
24.13
24.43
24.61
24.09
24.36
24.58
23.12
23.48
23.70
23.46
23.58
23.83
23.50
23.68
23.92
23.44
23.72
23.85
23.20
23.52
23.64
23.34
23.55
23.75
23.27
23.55
23.74
22.27
22.50
22.67
22.37
22.54
22.80
22.40
22.72
22.91
22.42
22.61
22.80
22.27
22.48
22.63
22.36
22.63
22.77
22.28
22.55
22.74
21.15
21.46
21.69
19.31
19.50
19.63
19.42
19.63
19.74
19.32
19.57
19.70
19.27
19.51
19.62
19.37
19.61
19.78
19.33
19.56
19.71
19.16
19.43
19.62
0-1
0-1
0-2
0-2
0-3
0-5
c. LTE Band 13
Table 8-10
LTE Band 13 (780.0MHz) Conducted Powers – 10MHz Bandwidth
LTE Band 13
10 MHz Bandwidth
Mid Channel
Modulation
RB Size
RB Offset
23230
(782.0 MHz)
Conducted Power
[dBm]
QPSK
16QAM
24.32
25
24.28
49
24.55
25
23.89
25
12
23.83
25
25
23.78
50
23.84
23.53
25
23.51
0-1
0-1
49
23.95
22.88
25
12
22.80
25
25
22.79
50
22.79
22.52
25
22.58
49
0-2
0-2
22.85
25
21.87
25
12
21.80
25
25
21.71
50
21.79
19.88
25
19.50
256QAM
MPR [dB]
25
64QAM
MPR Allowed per
3GPP [dB]
49
0-3
19.71
0-5
25
19.83
25
12
19.87
25
25
19.79
50
19.83
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Table 8-11
LTE Band 13 (780.0MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 13
5 MHz Bandwidth
Mid Channel
Modulation
QPSK
16QAM
64QAM
23230
(782.0 MHz)
Conducted Power
[dBm]
24.56
12
24.51
RB Size
RB Offset
MPR [dB]
24
24.80
12
23.86
12
23.72
12
13
23.97
25
23.79
23.87
12
23.78
0-1
0-1
24
23.98
12
22.93
12
22.92
12
13
22.79
25
22.82
22.82
12
22.90
24
22.89
12
21.88
12
21.92
12
13
21.95
21.80
25
256QAM
MPR Allowed per
3GPP [dB]
0-2
0-2
0-3
19.78
12
19.50
24
19.61
12
19.83
0-5
12
19.88
12
13
19.72
25
19.91
Note: Since LTE Band 13 at 5MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
d. LTE Band 14
Table 8-12
LTE Band 14 (793.0MHz) Conducted Powers – 10MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
49
12
25
25
49
12
25
25
49
12
25
25
49
12
25
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LTE Band 14
10 MHz Bandwidth
Mid Channel
23330
(793.0 MHz)
Conducted Power
[dBm]
25.02
24.99
24.95
24.16
24.07
24.00
24.05
24.25
24.07
24.05
23.16
23.08
23.03
23.00
23.36
23.19
23.11
22.09
22.04
21.90
22.01
20.22
20.20
20.09
20.05
20.04
19.96
20.01
MPR Allowed per
3GPP [dB]
0-1
0-1
0-2
0-2
0-3
0-5
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Table 8-13
LTE Band 14 (793.0MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 14
5 MHz Bandwidth
Mid Channel
Modulation
QPSK
16QAM
23330
(793.0 MHz)
Conducted Power
[dBm]
25.01
12
24.70
24
24.86
12
24.03
12
23.99
12
13
23.95
25
24.13
24.37
12
23.86
RB Size
RB Offset
24
24.26
12
23.15
12
23.08
12
13
23.18
23.16
25
64QAM
256QAM
23.27
12
22.96
24
23.25
12
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
22.41
12
22.42
12
13
22.35
25
22.45
20.43
12
20.39
0-3
24
20.29
12
20.34
12
20.25
12
13
20.26
25
20.18
0-5
Note: Since LTE Band 14 at 5MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
e. LTE Band 5
Table 8-14
LTE Band 5 (836.5MHz) Conducted Powers – 10MHz Bandwidth
LTE Band 5 (Cell)
10 MHz Bandwidth
Mid Channel
Modulation
RB Offset
20525
(836.5 MHz)
Conducted Power
[dBm]
24.75
25
24.50
RB Size
QPSK
16QAM
24.73
23.97
25
12
23.93
25
25
23.88
50
23.92
24.22
25
23.89
49
24.02
25
22.93
25
12
22.91
25
25
22.82
50
22.91
23.22
25
22.79
49
0-1
0-1
0-2
0-2
23.07
25
21.89
25
12
21.93
25
25
21.84
21.92
50
256QAM
MPR [dB]
25
64QAM
49
MPR Allowed per
3GPP [dB]
0-3
20.15
25
19.76
49
19.96
0-5
25
19.97
25
12
19.91
25
25
19.87
50
19.91
Note: Since LTE Band 5 at 10MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
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Table 8-15
LTE Band 5 (836.5MHz) Conducted Powers – 5MHz Bandwidth
Low Channel
Modulation
RB Size
RB Offset
20425
(826.5 MHz)
LTE Band 5 (Cell)
5 MHz Bandwidth
Mid Channel
20525
(836.5 MHz)
High Channel
20625
(846.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
24.30
24.41
24.59
12
24.42
24.45
24.30
24
24.35
24.26
24.34
12
23.53
23.58
23.88
12
23.65
23.60
23.90
12
13
23.55
23.37
23.98
25
16QAM
23.50
23.65
23.72
23.92
12
23.79
23.80
23.45
24
23.80
23.59
23.43
12
22.59
22.60
22.98
12
22.67
22.70
22.95
12
13
22.60
22.43
23.02
22.57
22.52
22.66
22.65
22.87
12
22.77
22.72
22.61
24
22.75
22.60
22.65
12
21.57
21.58
22.03
12
21.64
21.62
21.96
12
13
21.62
21.45
22.00
21.58
0-1
21.49
0-1
0-2
22.90
23.95
25
256QAM
23.59
25
64QAM
0-2
0-3
21.96
19.60
19.60
19.98
12
19.72
19.68
20.00
24
19.66
19.55
20.02
12
19.52
19.51
19.83
12
19.54
19.62
19.82
12
13
19.61
19.53
20.00
25
19.60
19.54
19.92
0-5
Table 8-16
LTE Band 5 (836.5MHz) Conducted Powers – 3MHz Bandwidth
Low Channel
Modulation
RB Size
RB Offset
20415
(825.5 MHz)
LTE Band 5 (Cell)
3 MHz Bandwidth
Mid Channel
20525
(836.5 MHz)
High Channel
20635
(847.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
24.33
24.64
24.52
24.40
24.62
24.44
14
24.45
24.63
24.24
23.51
23.57
23.73
23.61
23.58
23.73
23.55
23.45
23.69
15
23.57
23.54
23.80
23.62
23.86
23.93
23.91
23.76
23.95
14
23.75
23.55
23.90
22.63
22.72
22.82
22.68
22.68
22.82
0-1
0-1
0-2
22.69
22.70
22.75
15
22.61
22.57
22.76
22.64
22.76
22.98
22.75
22.69
22.88
14
22.76
22.56
22.90
21.48
21.63
21.77
21.64
21.65
21.76
21.57
21.57
21.72
15
21.66
21.61
21.80
19.67
19.72
19.85
19.66
19.63
19.83
14
19.68
19.65
19.78
19.54
19.62
19.61
19.64
19.69
19.76
19.60
19.58
19.70
15
19.56
19.61
19.75
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Table 8-17
LTE Band 5 (836.5MHz) Conducted Powers – 1.4MHz Bandwidth
LTE Band 5 (Cell)
1.4 MHz Bandwidth
Mid Channel
Low Channel
Modulation
RB Size
20407
(824.7 MHz)
RB Offset
20525
(836.5 MHz)
High Channel
20643
(848.3 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
24.26
24.36
24.69
24.37
24.46
24.65
24.35
24.35
24.47
24.25
24.41
24.50
24.37
24.45
24.53
24.35
24.37
24.44
23.51
23.34
23.36
23.59
23.70
23.33
23.71
23.76
23.38
23.75
23.71
23.33
23.48
23.54
23.15
23.52
23.57
23.20
23.53
23.57
23.13
22.52
22.53
22.86
22.58
22.64
22.23
22.69
22.75
22.31
22.69
22.67
22.20
22.50
22.60
22.19
22.60
22.64
22.19
22.57
22.55
22.15
21.52
21.52
21.86
19.55
19.57
19.45
19.62
19.66
19.50
19.61
19.55
19.31
19.57
19.61
19.46
19.66
19.65
19.45
19.63
19.59
19.38
19.49
19.48
19.54
0-1
0-1
0-2
0-2
0-3
0-5
f. LTE Band 26
Table 8-18
LTE Band 26 (836.5MHz) Conducted Powers – 15MHz Bandwidth
LTE Band 26 (Cell)
15 MHz Bandwidth
Modulation
Mid Channel
26865
(831.5 MHz)
Conducted Power
[dBm]
24.96
36
24.95
RB Size
QPSK
16QAM
64QAM
256QAM
RB Offset
74
MPR Allowed per
3GPP [dB]
MPR [dB]
24.82
36
24.09
36
18
24.07
36
37
24.00
75
24.05
24.20
36
24.28
74
24.07
36
23.13
36
18
23.06
36
37
22.99
75
23.05
23.19
36
23.24
74
23.03
36
22.15
36
18
22.06
36
37
21.97
75
22.05
0-1
0-1
0-2
0-2
0-3
20.14
36
20.21
74
20.01
36
20.03
36
18
20.05
36
37
20.03
75
20.04
0-5
Note: Since LTE Band 26 at 15MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
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Table 8-19
LTE Band 26 (831.5MHz) Conducted Powers – 10MHz Bandwidth
Modulation
QPSK
RB Size
256QAM
High Channel
26990
(844.0 MHz)
24.58
24.82
24.64
25
24.27
24.43
24.26
49
24.57
24.68
24.35
25
23.77
23.90
23.73
25
12
23.74
23.92
23.67
25
25
23.70
23.82
23.54
50
23.77
23.94
23.66
23.91
24.18
23.97
25
23.44
23.80
23.51
49
23.93
24.03
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
23.69
25
22.77
22.96
22.72
25
12
22.76
22.92
22.67
25
25
22.67
22.85
22.55
50
22.70
22.91
22.65
22.90
23.10
22.93
25
22.40
22.75
22.43
64QAM
Low Channel
26740
(819.0 MHz)
16QAM
RB Offset
LTE Band 26 (Cell)
10 MHz Bandwidth
Mid Channel
26865
(831.5 MHz)
Conducted Power [dBm]
49
22.88
23.01
0-2
0-2
22.73
25
21.75
21.94
21.69
25
12
21.74
21.93
21.67
25
25
21.64
21.83
21.58
50
21.72
21.91
21.65
19.85
20.12
19.90
25
19.32
19.69
19.35
0-3
49
19.84
19.92
19.63
25
19.76
19.94
19.72
25
12
19.71
20.01
19.71
25
25
19.63
19.84
19.58
50
19.72
19.91
19.63
0-5
Table 8-20
LTE Band 26 (831.5MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 26 (Cell)
5 MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
Mid Channel
High Channel
26715
(816.5 MHz)
26865
(831.5 MHz)
27015
(846.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
24.51
24.76
24.55
12
24.61
24.86
24.54
24
24.62
24.73
24.26
12
23.70
23.92
23.65
12
23.79
23.95
23.67
12
13
23.76
23.92
23.59
25
23.74
23.88
23.63
23.87
24.09
23.87
12
23.97
24.20
23.91
24
23.90
24.12
23.62
12
22.75
22.89
22.68
12
22.84
22.95
22.70
12
13
22.81
22.97
22.64
25
64QAM
256QAM
22.72
22.85
0-1
0-1
22.77
23.04
22.85
12
22.89
23.13
22.85
0-2
22.61
0-2
24
22.78
22.99
22.64
12
21.74
21.95
21.69
12
21.80
21.98
21.72
12
13
21.79
21.92
21.61
25
21.75
21.90
21.62
19.65
19.98
19.78
12
19.83
20.08
19.76
24
19.74
19.91
19.63
12
19.64
19.77
19.66
12
19.77
19.92
19.71
12
13
19.69
19.93
19.60
25
19.75
19.83
19.65
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Table 8-21
LTE Band 26 (831.5MHz) Conducted Powers – 3MHz Bandwidth
LTE Band 26 (Cell)
3 MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
Mid Channel
High Channel
26705
(815.5 MHz)
26865
(831.5 MHz)
27025
(847.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
24.57
24.88
24.53
24.59
24.92
24.44
14
24.60
24.92
24.22
23.62
23.96
23.60
23.73
24.03
23.57
23.71
24.01
23.56
15
23.74
24.02
23.63
23.84
24.25
23.97
23.89
24.32
23.86
14
23.90
24.21
23.79
22.73
23.01
22.77
22.82
23.11
22.86
22.79
23.12
22.74
15
22.69
23.05
22.75
64QAM
256QAM
22.99
23.21
0-1
0-1
0-2
22.95
0-2
22.88
23.25
22.83
14
22.83
23.19
22.77
21.71
22.00
21.73
21.77
22.05
21.72
21.73
22.08
21.71
15
21.76
22.03
21.72
19.67
20.15
19.91
19.74
20.24
19.82
14
19.80
20.12
19.80
19.65
19.93
19.66
19.76
20.03
19.78
19.70
20.11
19.67
15
19.62
19.95
19.76
0-3
0-5
Table 8-22
LTE Band 26 (831.5MHz) Conducted Powers – 1.4MHz Bandwidth
LTE Band 26 (Cell)
1.4 MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
Low Channel
26697
(814.7 MHz)
Mid Channel
26865
(831.5 MHz)
Conducted Power [dBm]
High Channel
27033
(848.3 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
RB Size
RB Offset
24.59
24.76
24.40
24.68
24.92
24.38
24.61
24.83
24.21
24.62
24.79
24.34
24.67
24.86
24.30
24.63
24.87
24.23
23.76
23.92
23.68
23.92
24.15
23.76
23.97
24.24
23.67
23.96
24.21
23.54
23.79
24.00
23.55
23.84
24.08
23.51
23.83
24.05
23.43
22.79
22.97
22.69
22.83
23.14
22.78
23.02
23.24
22.73
22.84
23.17
22.58
22.83
23.04
22.65
22.88
23.14
22.60
22.82
23.08
22.51
21.74
21.85
21.62
19.73
20.08
19.78
19.85
20.24
19.83
19.81
20.13
19.75
19.79
20.05
19.80
19.90
20.17
19.79
19.86
20.15
19.73
19.74
19.87
19.63
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g. LTE Band 66
Table 8-23
LTE Band 66 (1745.0MHz) Conducted Powers – 20MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
LTE Band 66 (AWS)
20 MHz Bandwidth
Mid Channel
High Channel
132072
(1720.0 MHz)
132322
(1745.0 MHz)
132572
(1770.0 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
23.80
24.03
24.06
50
23.70
23.88
23.71
99
23.75
23.89
23.98
50
22.97
23.10
23.23
50
25
22.92
23.05
23.21
50
50
22.92
23.02
23.19
100
22.91
23.01
23.19
23.12
23.17
23.41
50
23.08
22.95
22.98
99
23.16
23.03
23.34
50
21.91
22.08
22.21
50
25
21.92
22.05
22.19
50
50
21.89
22.01
22.20
100
21.93
22.01
22.17
22.15
22.39
22.34
50
22.01
22.17
21.90
0-1
0-1
0-2
0-2
99
22.09
22.13
22.22
50
20.94
21.06
21.26
50
25
20.91
20.97
21.20
50
50
20.93
20.93
21.17
100
20.89
21.03
21.19
19.25
19.20
19.23
50
18.90
19.05
18.89
0-3
99
18.85
18.95
19.21
50
18.88
19.02
19.20
50
25
18.85
19.01
19.19
50
50
18.86
18.92
19.09
100
18.85
18.98
19.16
0-5
Table 8-24
LTE Band 66 (1745.0MHz) Conducted Powers – 15MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
LTE Band 66 (AWS)
15 MHz Bandwidth
Mid Channel
High Channel
132047
(1717.5 MHz)
132322
(1745.0 MHz)
132597
(1772.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
23.94
23.85
23.84
36
23.68
23.73
23.84
74
23.68
23.80
23.76
36
22.88
22.94
22.99
36
18
22.82
22.90
23.01
36
37
22.79
22.87
22.98
75
22.84
22.91
23.03
23.14
23.25
23.27
36
23.02
23.05
23.16
74
23.03
23.02
23.12
36
21.87
21.94
22.04
36
18
21.82
21.93
22.05
36
37
21.79
21.90
22.00
75
21.83
21.91
22.02
22.11
22.18
22.17
36
21.92
22.01
22.11
0-1
0-1
0-2
0-2
74
21.98
22.03
22.06
36
20.90
20.96
21.07
36
18
20.83
20.94
21.06
36
37
20.75
20.87
20.98
75
20.84
20.89
21.03
19.15
19.14
19.17
36
18.82
18.92
19.02
0-3
74
18.88
18.88
19.04
36
18.85
18.96
19.02
36
18
18.77
18.93
18.99
36
37
18.69
18.86
18.90
75
18.78
18.92
19.01
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Table 8-25
LTE Band 66 (1745.0MHz) Conducted Powers – 10MHz Bandwidth
Low Channel
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
132022
(1715.0 MHz)
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
49
12
25
25
49
12
25
25
49
12
25
25
49
12
25
23.80
23.76
23.63
22.87
22.89
22.81
22.86
23.11
23.07
22.98
21.88
21.84
21.80
21.94
22.10
21.98
21.92
20.87
20.83
20.78
20.85
18.99
18.89
18.71
18.90
18.79
18.76
18.83
LTE Band 66 (AWS)
10 MHz Bandwidth
Mid Channel
High Channel
132322
(1745.0 MHz)
Conducted Power [dBm]
23.87
23.90
23.76
23.02
23.03
22.99
22.98
23.24
23.14
23.14
22.04
22.03
21.96
21.99
22.24
22.06
22.08
20.99
21.01
20.96
21.00
19.18
19.06
18.91
18.97
18.95
18.91
18.93
132622
(1775.0 MHz)
23.80
23.89
23.93
23.06
23.04
23.04
23.05
23.32
23.27
23.34
22.15
22.05
22.04
22.09
22.24
22.25
22.14
21.09
21.08
21.01
21.05
19.25
19.13
19.08
19.03
19.00
18.98
18.97
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
0-3
0-5
Table 8-26
LTE Band 66 (1745.0MHz) Conducted Powers – 5MHz Bandwidth
Modulation
QPSK
RB Size
132322
(1745.0 MHz)
132647
(1777.5 MHz)
23.81
23.79
12
23.88
23.90
23.91
24
23.80
23.86
23.85
12
23.00
23.02
23.02
12
23.03
23.01
23.07
12
13
22.96
23.04
23.01
23.00
22.98
23.03
23.16
23.15
23.03
12
23.21
23.25
23.20
24
23.10
23.21
23.17
12
22.06
22.07
22.05
12
22.08
22.08
22.17
12
13
22.04
22.10
22.07
21.98
21.98
22.05
22.08
22.10
22.09
12
22.17
22.16
22.18
24
22.10
22.08
22.12
12
21.02
21.01
21.00
12
21.04
21.05
21.07
12
13
20.98
21.02
21.03
20.95
20.98
21.04
25
256QAM
High Channel
131997
(1712.5 MHz)
25
64QAM
LTE Band 66 (AWS)
5 MHz Bandwidth
Mid Channel
Conducted Power [dBm]
23.83
25
16QAM
RB Offset
Low Channel
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
0-3
19.03
18.98
18.99
12
19.06
19.02
19.11
24
18.95
19.01
19.00
12
18.96
18.95
18.94
12
18.98
18.93
19.01
12
13
18.88
18.94
18.96
25
18.95
18.96
18.99
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Table 8-27
LTE Band 66 (1745.0MHz) Conducted Powers – 3MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
LTE Band 66 (AWS)
3 MHz Bandwidth
Mid Channel
High Channel
131987
(1711.5 MHz)
132322
(1745.0 MHz)
132657
(1778.5 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
23.85
23.77
23.85
23.87
23.83
23.91
14
23.85
23.83
23.90
22.96
22.86
23.00
22.99
22.95
23.04
22.98
22.96
23.04
15
23.07
22.94
23.06
23.18
23.10
23.19
23.24
23.15
23.20
14
23.18
23.16
23.24
22.09
22.01
22.04
22.10
22.09
22.15
22.07
22.05
22.12
15
22.05
21.96
22.06
22.12
22.06
22.15
22.16
22.13
22.15
14
22.14
22.10
22.17
20.97
20.93
21.01
21.04
21.04
21.10
21.01
20.97
21.07
15
21.05
20.93
21.06
19.06
18.98
18.99
19.11
18.99
19.02
14
19.00
19.01
19.06
19.03
18.87
18.95
18.96
18.92
19.02
18.99
18.98
19.00
15
19.03
18.88
19.02
0-1
0-1
0-2
0-2
0-3
0-5
Table 8-28
LTE Band 66 (1745.0MHz) Conducted Powers – 1.4MHz Bandwidth
Modulation
RB Size
RB Offset
Low Channel
LTE Band 66 (AWS)
1.4 MHz Bandwidth
Mid Channel
High Channel
131979
(1710.7 MHz)
132322
(1745.0 MHz)
132665
(1779.3 MHz)
MPR Allowed per
3GPP [dB]
MPR [dB]
Conducted Power [dBm]
QPSK
16QAM
64QAM
256QAM
23.77
23.69
23.75
23.87
23.77
23.87
23.83
23.70
23.81
23.86
23.71
23.73
23.85
23.78
23.87
23.81
23.73
23.77
22.91
22.88
22.93
23.05
23.06
23.06
23.15
23.13
23.15
23.13
23.01
23.17
22.99
22.87
22.94
23.03
22.96
23.05
22.96
22.81
23.01
22.01
21.92
21.96
22.06
21.98
22.04
22.12
22.07
22.15
22.10
21.99
22.09
21.96
21.92
21.95
22.05
21.94
22.03
22.02
21.89
21.98
20.93
20.86
20.92
18.92
18.90
18.96
19.07
18.96
19.07
18.95
18.91
19.01
19.02
18.90
18.97
19.09
18.97
19.06
19.05
18.89
19.02
18.87
18.82
18.78
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h. LTE Band 25
Table 8-29
LTE Band 25 (1882.5MHz) Conducted Powers – 20MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
Low Channel
26140
(1860.0 MHz)
LTE Band 25 (PCS)
20 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
High Channel
26590
(1905.0 MHz)
23.70
23.88
23.80
50
23.41
23.46
23.42
99
23.57
23.81
23.75
50
22.83
22.95
22.94
50
25
22.77
22.94
22.89
50
50
22.74
22.91
22.90
100
22.76
22.94
22.94
22.89
23.05
22.93
50
22.45
22.81
22.55
99
22.76
22.95
22.89
50
21.78
21.98
21.94
50
25
21.73
21.95
21.87
50
50
21.68
21.91
21.88
100
21.74
21.91
21.89
22.05
22.09
22.03
50
21.60
21.82
21.51
99
21.80
22.04
22.05
50
20.81
21.01
20.96
50
25
20.75
20.85
20.91
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
0-3
50
50
20.73
20.80
20.85
100
20.78
20.86
20.88
18.95
18.92
18.96
50
18.59
18.62
18.62
99
18.74
18.99
18.99
50
18.78
18.88
18.82
50
25
18.76
18.87
18.81
50
50
18.69
18.86
18.80
100
18.75
18.88
18.85
0-5
Table 8-30
LTE Band 25 (1882.5MHz) Conducted Powers – 15MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
Low Channel
26115
(1857.5 MHz)
LTE Band 25 (PCS)
15 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
High Channel
26615
(1907.5 MHz)
23.89
23.86
23.79
36
23.66
23.58
23.73
74
23.69
23.49
23.58
36
22.92
22.96
22.92
36
18
22.90
22.98
22.84
36
37
22.88
23.01
22.83
75
22.86
22.93
22.90
23.13
23.14
23.14
36
23.05
22.89
23.01
74
23.09
22.80
22.89
36
21.92
22.07
21.98
36
18
21.94
22.06
21.90
36
37
21.89
22.01
21.95
75
21.91
21.96
21.97
22.23
22.17
22.09
36
22.08
21.87
22.12
74
22.07
21.90
21.98
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
36
20.96
21.03
21.04
36
18
20.93
20.98
20.95
36
37
20.91
20.90
20.99
75
20.90
21.04
20.92
19.14
19.08
19.20
36
19.04
18.99
18.99
74
18.99
19.03
19.17
0-3
36
18.85
19.00
18.87
36
18
18.88
18.94
18.84
36
37
18.81
19.00
18.76
75
18.83
18.97
18.87
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Table 8-31
LTE Band 25 (1882.5MHz) Conducted Powers – 10MHz Bandwidth
Modulation
QPSK
RB Size
23.72
23.71
23.63
25
23.60
23.50
23.33
49
23.46
23.34
23.58
25
22.68
22.71
22.77
25
12
22.67
22.69
22.80
25
25
22.65
22.65
22.77
50
22.65
22.68
22.81
22.90
22.97
22.94
25
22.75
22.84
22.66
49
22.81
22.68
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
22.81
25
21.67
21.78
21.85
25
12
21.67
21.73
21.79
25
25
21.63
21.68
21.77
50
21.66
21.69
21.76
21.98
22.02
21.93
25
21.86
21.89
21.61
49
21.83
21.70
0-2
0-2
21.79
25
20.68
20.76
20.78
25
12
20.66
20.69
20.80
25
25
20.60
20.67
20.68
50
20.67
20.70
20.76
19.01
18.91
18.74
25
18.92
18.99
18.70
256QAM
High Channel
26640
(1910.0 MHz)
64QAM
Low Channel
26090
(1855.0 MHz)
16QAM
RB Offset
LTE Band 25 (PCS)
10 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
49
18.79
18.84
0-3
18.92
25
18.68
18.74
18.72
25
12
18.67
18.81
18.78
0-5
25
25
18.69
18.77
18.74
50
18.70
18.75
18.77
Table 8-32
LTE Band 25 (1882.5MHz) Conducted Powers – 5MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
Low Channel
26065
(1852.5 MHz)
LTE Band 25 (PCS)
5 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
High Channel
26665
(1912.5 MHz)
23.60
23.65
23.69
12
23.36
23.45
23.54
24
23.48
23.54
23.71
12
23.00
22.93
23.10
12
22.99
22.95
23.07
12
13
23.00
22.96
23.24
25
22.96
22.83
22.90
22.77
23.04
22.59
12
23.00
22.98
22.61
24
23.08
22.74
22.79
12
21.90
22.00
22.01
12
22.03
22.12
21.87
12
13
21.88
21.99
21.71
25
22.11
21.98
21.74
22.04
22.13
22.14
12
22.03
21.95
21.86
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
24
21.99
21.63
22.02
12
20.87
20.91
20.90
12
20.79
20.92
20.94
12
13
20.80
20.92
20.89
25
20.76
20.87
20.86
18.89
18.99
19.04
12
18.77
18.68
18.82
0-3
24
18.83
18.82
19.10
12
18.78
18.86
18.89
12
18.71
18.77
18.95
12
13
18.71
18.78
18.78
25
18.83
18.83
18.91
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Table 8-33
LTE Band 25 (1882.5MHz) Conducted Powers – 3MHz Bandwidth
Modulation
RB Size
QPSK
16QAM
64QAM
256QAM
RB Offset
Low Channel
26055
(1851.5 MHz)
23.63
LTE Band 25 (PCS)
3 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
High Channel
26675
(1913.5 MHz)
23.88
MPR Allowed per
3GPP [dB]
MPR [dB]
23.64
23.54
23.27
23.45
14
23.34
23.59
23.61
22.62
22.89
22.75
22.61
22.91
22.78
22.55
22.83
22.62
15
22.74
22.81
22.82
23.04
22.87
22.73
22.67
22.56
22.77
14
22.46
22.92
22.90
21.72
22.01
21.84
21.70
21.98
21.84
21.63
21.90
21.81
15
21.67
21.88
21.79
21.96
21.85
21.73
21.72
21.60
21.49
14
21.68
22.01
21.96
20.71
20.96
20.86
20.76
20.93
20.85
20.62
20.81
20.71
15
20.78
20.94
20.78
18.99
19.05
18.79
18.92
18.84
18.69
14
18.71
18.69
18.60
18.67
18.74
18.66
18.70
18.81
18.66
18.59
18.79
18.58
15
18.74
18.77
18.78
0-1
0-1
0-2
0-2
0-3
0-5
Table 8-34
LTE Band 25 (1882.5MHz) Conducted Powers – 1.4MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
Low Channel
26047
(1850.7 MHz)
LTE Band 25 (PCS)
1.4 MHz Bandwidth
Mid Channel
26365
(1882.5 MHz)
Conducted Power [dBm]
High Channel
26683
(1914.3 MHz)
MPR Allowed per
3GPP [dB]
RB Size
RB Offset
23.70
23.92
23.51
23.56
23.73
23.58
23.69
23.81
23.52
23.61
23.59
23.51
23.72
23.74
23.61
23.68
23.68
23.49
22.83
22.89
22.66
23.01
22.82
22.76
22.98
22.85
22.92
22.79
22.76
22.89
22.61
22.80
22.60
22.93
22.92
22.72
22.89
22.89
22.67
21.88
21.82
21.70
21.65
21.75
21.64
21.86
21.81
21.77
21.71
21.78
21.82
21.59
21.63
21.51
21.76
21.73
21.64
21.88
21.91
21.73
20.82
20.86
20.52
18.81
19.01
19.06
18.94
18.93
18.96
19.09
18.85
18.93
18.62
18.67
18.81
18.67
18.74
18.81
18.58
18.71
18.78
18.55
18.61
18.70
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i. LTE Band 30
Table 8-35
LTE Band 30 (2310.0MHz) Conducted Powers – 10MHz Bandwidth
Modulation
LTE Band 30
10 MHz Bandwidth
Mid Channel
27710
(2310.0 MHz)
Conducted Power
[dBm]
22.54
25
22.36
RB Size
QPSK
16QAM
64QAM
256QAM
RB Offset
49
MPR Allowed per
3GPP [dB]
MPR [dB]
22.60
25
21.79
25
12
21.75
25
25
21.74
50
21.70
21.84
25
21.40
49
21.78
25
20.73
25
12
20.73
25
25
20.76
50
20.70
20.79
25
20.47
49
20.68
0-1
0-1
0-2
0-2
25
19.72
25
12
19.68
25
25
19.66
50
19.67
17.72
25
17.49
0-3
49
17.57
25
17.63
25
12
17.61
25
25
17.55
50
17.62
0-5
Table 8-36
LTE Band 30 (2310.0MHz) Conducted Powers – 5MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
LTE Band 30
5 MHz Bandwidth
Mid Channel
27710
(2310.0 MHz)
Conducted Power
[dBm]
22.59
12
22.69
RB Size
RB Offset
24
22.54
12
21.75
12
21.82
12
13
21.73
25
21.72
21.97
12
21.98
24
21.86
12
20.78
12
20.84
12
13
20.72
25
20.69
20.88
12
20.90
24
20.74
12
19.73
12
19.81
12
13
19.69
25
256QAM
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
0-3
19.68
17.76
12
17.85
24
17.69
12
17.53
12
17.68
12
13
17.62
25
17.67
0-5
Note: Since LTE Band 30 at 5MHz bandwidth does not support 3 non-overlapping channels, conducted
power measurements were made only on the middle channel.
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j. LTE Band 7
Table 8-37
LTE Band 7 (2535.0MHz) Conducted Powers – 20MHz Bandwidth
Modulation
RB Size
16QAM
64QAM
256QAM
LTE Band 7
20 MHz Bandwidth
Mid Channel
21100
(2535.0 MHz)
Conducted Power [dBm]
High Channel
21350
(2560.0 MHz)
23.75
23.75
23.65
50
23.54
23.39
23.30
QPSK
RB Offset
Low Channel
20850
(2510.0 MHz)
99
23.82
23.64
MPR Allowed per
3GPP [dB]
MPR [dB]
23.76
50
22.97
22.94
22.85
50
25
22.95
22.87
22.75
50
50
22.92
22.76
22.81
100
22.96
22.85
22.79
23.05
23.08
22.98
50
22.81
22.77
22.69
99
23.08
22.95
23.00
50
21.96
21.94
21.84
50
25
21.91
21.83
21.73
50
50
21.87
21.75
21.70
100
21.92
21.84
21.72
22.08
22.06
21.99
50
21.89
21.74
21.63
99
22.01
21.83
21.90
50
20.90
20.87
20.73
50
25
20.87
20.84
20.69
0-1
0-1
0-2
0-2
0-3
50
50
20.88
20.77
20.71
100
20.88
20.75
20.72
18.86
18.90
18.76
50
18.61
18.63
18.49
99
18.85
18.74
18.76
50
18.82
18.84
18.74
50
25
18.83
18.73
18.65
50
50
18.81
18.67
18.61
100
18.85
18.75
18.65
0-5
Table 8-38
LTE Band 7 (2535.0MHz) Conducted Powers – 15MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
Low Channel
20825
(2507.5 MHz)
LTE Band 7
15 MHz Bandwidth
Mid Channel
21100
(2535.0 MHz)
Conducted Power [dBm]
High Channel
21375
(2562.5 MHz)
23.56
23.70
23.63
36
23.57
23.62
23.60
74
23.62
23.57
23.73
36
22.75
22.82
22.80
36
18
22.73
22.77
22.76
36
37
22.73
22.70
22.73
75
22.75
22.74
22.78
22.90
23.00
23.02
36
22.93
22.90
22.98
74
22.92
22.78
23.03
36
21.72
21.80
21.75
36
18
21.70
21.73
21.73
36
37
21.66
21.60
21.74
75
21.67
21.63
21.72
21.80
22.00
21.94
36
21.83
21.83
21.86
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
74
21.83
21.64
21.90
36
20.69
20.70
20.71
36
18
20.69
20.62
20.71
36
37
20.70
20.58
20.69
75
20.65
20.60
20.69
18.67
18.80
18.73
36
18.65
18.66
18.67
0-3
74
18.66
18.54
18.70
36
18.56
18.60
18.62
36
18
18.59
18.58
18.58
36
37
18.56
18.50
18.60
75
18.58
18.52
18.59
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enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
Table 8-39
LTE Band 7 (2535.0MHz) Conducted Powers – 10MHz Bandwidth
Modulation
QPSK
16QAM
RB Size
High Channel
21400
(2565.0 MHz)
23.82
23.80
23.60
25
23.44
23.42
23.26
49
23.80
23.74
23.80
25
22.91
22.94
22.92
25
12
22.93
22.90
22.90
25
25
22.95
22.84
22.84
50
22.96
22.90
22.89
23.25
23.19
23.13
25
22.71
22.71
22.74
49
23.20
23.11
23.13
25
21.97
21.87
21.87
25
12
21.95
21.90
21.88
25
25
21.93
21.83
21.83
50
21.89
21.83
21.84
22.13
22.12
22.09
25
21.72
21.66
21.77
49
22.14
22.03
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
22.07
25
20.95
20.87
20.84
25
12
20.92
20.87
20.81
25
25
20.92
20.78
20.80
50
20.89
20.83
20.73
18.92
18.97
18.95
25
18.61
18.53
18.52
256QAM
Low Channel
20800
(2505.0 MHz)
64QAM
RB Offset
LTE Band 7
10 MHz Bandwidth
Mid Channel
21100
(2535.0 MHz)
Conducted Power [dBm]
49
18.94
18.80
0-3
18.82
0-5
25
18.86
18.83
18.73
25
12
18.88
18.80
18.75
25
25
18.87
18.75
18.71
50
18.88
18.78
18.75
Table 8-40
LTE Band 7 (2535.0MHz) Conducted Powers – 5MHz Bandwidth
Modulation
QPSK
16QAM
64QAM
256QAM
RB Size
RB Offset
Low Channel
20775
(2502.5 MHz)
LTE Band 7
5 MHz Bandwidth
Mid Channel
21100
(2535.0 MHz)
Conducted Power [dBm]
High Channel
21425
(2567.5 MHz)
23.90
23.81
23.78
12
23.88
23.81
23.85
24
23.90
23.77
23.91
12
22.92
22.95
22.91
12
23.00
22.93
22.93
12
13
22.95
22.85
22.90
25
22.94
22.93
22.94
23.17
23.15
23.17
12
23.14
23.12
23.15
24
23.14
23.05
23.17
12
21.92
22.05
21.92
12
21.96
22.00
21.92
12
13
21.91
21.89
21.90
25
21.90
21.90
21.86
22.08
22.06
22.07
12
22.04
22.05
22.06
24
22.07
22.00
22.02
12
20.93
20.91
20.89
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
12
20.94
20.91
20.87
12
13
20.89
20.85
20.83
25
20.94
20.82
20.81
18.95
18.90
18.92
12
18.91
18.91
18.87
0-3
24
18.92
18.83
18.88
12
18.80
18.78
18.73
12
18.83
18.82
18.77
12
13
18.77
18.77
18.71
25
18.80
18.80
18.74
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
0-5
Approved by:
Quality Manager
Page 49 of 119
REV 3.2.M
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© 2018 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.
k. LTE Band 41 – Power Class 3
Table 8-41
LTE Band 41 (2593.0MHz) Conducted Powers – 20MHz Bandwidth
LTE Band 41
20 MHz Bandwidth
Modulation
RB Size
16QAM
256QAM
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
24.18
23.97
23.89
23.70
23.90
24.12
50
23.76
23.81
23.77
99
23.99
24.02
23.75
23.86
MPR Allowed per
3GPP [dB]
MPR [dB]
23.67
50
23.36
23.37
23.11
23.38
23.09
50
25
23.31
23.28
23.04
23.16
23.00
50
50
23.28
23.23
22.95
23.06
22.92
100
23.32
23.28
23.02
23.16
22.99
23.25
23.16
23.06
23.24
23.05
50
22.88
22.87
22.79
22.93
22.74
99
23.13
23.00
22.74
22.86
22.71
50
22.35
22.33
22.07
22.21
22.10
50
25
22.30
22.27
22.00
22.14
21.98
50
50
22.27
22.22
21.94
22.06
21.93
100
22.32
22.29
22.02
22.15
22.00
21.97
21.87
21.80
21.91
21.76
50
21.60
21.55
21.54
21.64
21.42
64QAM
Low Channel
Conducted Power [dBm]
23.98
QPSK
RB Offset
99
21.82
21.69
21.42
21.53
0-1
0-1
0-2
0-2
21.43
50
21.38
21.35
21.13
21.23
21.11
50
25
21.32
21.29
21.02
21.16
21.00
50
50
21.29
21.24
20.97
21.07
20.93
100
21.30
21.25
21.02
21.16
20.97
19.11
19.07
18.93
19.13
18.93
50
18.74
18.76
18.67
18.80
18.60
99
18.96
18.90
18.59
18.72
18.56
0-3
50
19.35
19.34
19.09
19.25
19.09
50
25
19.32
19.30
19.04
19.19
19.01
0-5
50
50
19.27
19.23
18.95
19.08
18.85
100
19.26
19.22
18.99
19.14
18.92
Table 8-42
LTE Band 41 (2593.0MHz) Conducted Powers – 15MHz Bandwidth
LTE Band 41
15 MHz Bandwidth
Modulation
QPSK
RB Size
Mid Channel
Mid-High Channel
High Channel
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
24.11
24.19
Conducted Power [dBm]
23.93
24.16
24.03
36
24.01
24.12
23.67
23.96
23.77
74
23.92
24.14
23.63
23.89
23.74
36
23.11
23.37
22.92
23.20
23.09
36
18
23.15
23.34
22.88
23.14
23.02
36
37
23.11
23.28
22.79
23.09
22.95
75
23.15
23.30
22.87
23.15
23.02
23.16
23.39
22.95
23.23
23.07
36
23.07
23.16
22.76
22.98
22.80
74
23.06
23.18
22.71
22.99
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
22.81
36
22.11
22.31
21.89
22.12
22.01
36
18
22.08
22.23
21.87
22.05
21.93
36
37
22.04
22.17
21.80
21.97
21.87
22.13
22.29
21.87
22.10
0-2
22.06
21.78
22.06
21.69
21.94
21.76
36
21.65
21.89
21.45
21.72
21.57
74
21.67
21.86
21.44
21.66
21.50
0-2
36
21.12
21.34
20.90
21.19
21.02
36
18
21.08
21.30
20.83
21.11
20.98
36
37
21.03
21.23
20.78
21.03
20.93
75
21.12
21.33
20.89
21.15
21.03
19.11
19.18
18.92
18.99
18.74
36
19.06
19.14
18.81
18.90
18.48
256QAM
Low-Mid Channel
39750
(2506.0 MHz)
75
64QAM
Low Channel
16QAM
RB Offset
74
19.09
19.04
18.74
18.71
0-3
18.49
0-5
36
19.33
19.31
19.04
19.12
18.87
36
18
19.35
19.30
19.06
19.07
18.81
36
37
19.31
19.26
19.01
19.01
18.74
75
19.35
19.31
19.04
19.11
18.82
FCC ID: A3LSMG973U
Filename:
Test Dates:
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HAC (RF EMISSIONS) TEST REPORT
DUT Type:
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Approved by:
Quality Manager
Page 50 of 119
REV 3.2.M
04/17/2018
© 2018 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.
Table 8-43
LTE Band 41 (2593.0MHz) Conducted Powers – 10MHz Bandwidth
LTE Band 41
10 MHz Bandwidth
Modulation
QPSK
16QAM
Low Channel
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
RB Size
RB Offset
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
24.12
24.19
Conducted Power [dBm]
23.78
23.83
23.78
25
23.96
24.08
23.77
23.92
23.65
49
24.11
24.01
23.61
23.70
23.50
25
23.37
23.19
22.89
23.05
22.80
25
12
23.33
23.15
22.85
23.03
22.78
25
25
23.31
23.11
22.79
23.00
22.73
50
23.36
23.19
22.88
23.08
22.80
23.27
23.11
22.72
23.04
22.79
25
22.97
23.12
22.57
23.01
22.73
49
23.16
23.04
22.53
22.88
22.62
25
22.39
22.18
21.70
22.04
21.82
25
12
22.34
22.16
21.68
22.03
21.77
25
25
22.24
22.13
21.64
21.99
21.74
50
22.34
22.17
21.70
22.08
21.80
21.97
21.86
21.58
21.75
21.50
25
21.69
21.75
21.66
21.62
21.42
64QAM
256QAM
49
21.90
21.74
21.49
21.58
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
21.36
25
21.32
21.16
20.75
21.10
20.81
25
12
21.29
21.10
20.73
21.08
20.80
25
25
21.27
21.07
20.69
21.00
20.75
50
21.40
21.22
20.82
21.04
20.77
0-3
19.08
19.11
18.92
18.93
18.64
25
18.74
19.03
18.85
18.83
18.52
49
19.04
19.01
18.78
18.79
18.48
0-5
25
19.32
19.26
19.07
19.10
18.81
25
12
19.28
19.22
19.04
19.04
18.76
25
25
19.26
19.22
18.98
18.99
18.69
50
19.34
19.31
19.10
19.11
18.80
Table 8-44
LTE Band 41 (2593.0MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 41
5 MHz Bandwidth
Modulation
QPSK
16QAM
RB Size
256QAM
Low Channel
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
24.16
24.11
Conducted Power [dBm]
23.70
23.83
23.70
12
24.15
24.15
23.81
23.92
23.73
24
24.13
24.02
23.71
23.84
23.64
12
23.39
23.22
22.87
23.01
22.84
12
23.41
23.25
22.92
23.03
22.86
12
13
23.36
23.12
22.86
23.01
22.82
25
23.39
23.10
22.91
23.08
22.80
23.40
23.15
22.87
22.97
22.78
12
23.31
23.18
22.97
22.89
22.81
24
23.33
23.04
22.91
22.88
22.74
12
22.33
22.16
21.74
21.89
21.73
12
22.31
22.09
21.80
21.90
21.74
12
13
22.27
22.01
21.71
21.87
21.79
25
64QAM
RB Offset
22.38
22.13
21.80
22.05
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
22.06
21.86
21.48
21.54
21.43
12
21.97
21.86
21.55
21.60
21.53
24
22.01
21.73
21.59
21.58
21.41
12
21.33
21.12
20.75
20.90
20.75
0-2
21.84
0-2
12
21.36
21.11
20.81
20.92
20.76
12
13
21.28
21.02
20.76
20.92
20.79
25
21.33
21.09
20.82
20.97
20.71
18.58
18.99
18.72
18.73
18.46
12
19.05
18.98
18.75
18.81
18.50
0-3
24
19.05
18.82
18.72
18.68
18.41
12
19.34
19.22
18.98
19.02
18.73
12
19.34
19.25
19.05
19.02
18.72
12
13
19.28
19.16
19.00
19.02
18.72
25
19.28
19.09
18.96
18.99
18.64
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
0-5
Approved by:
Quality Manager
Page 51 of 119
REV 3.2.M
04/17/2018
© 2018 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.
l. LTE Band 41 – Power Class 2
Table 8-45
LTE Band 41 (2593.0MHz) Conducted Powers – 20MHz Bandwidth
LTE Band 41
20 MHz Bandwidth
Modulation
RB Size
16QAM
256QAM
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
27.43
27.22
27.30
27.06
27.53
27.55
50
27.21
27.18
27.17
99
27.49
27.47
27.18
27.24
MPR Allowed per
3GPP [dB]
MPR [dB]
27.01
50
26.72
26.77
26.39
26.52
26.32
50
25
26.73
26.71
26.37
26.48
26.26
50
50
26.68
26.66
26.36
26.43
26.19
100
26.69
26.69
26.38
26.46
26.25
26.78
26.72
26.40
26.77
26.58
50
26.37
26.32
26.33
26.51
26.32
99
26.66
26.52
26.24
26.42
26.25
50
25.66
25.63
25.37
25.54
25.37
50
25
25.62
25.54
25.27
25.46
25.26
50
50
25.55
25.48
25.17
25.35
25.17
100
25.64
25.55
25.26
25.46
25.27
25.64
25.49
25.28
25.58
25.37
50
25.30
25.09
25.12
25.31
25.12
64QAM
Low Channel
Conducted Power [dBm]
27.26
QPSK
RB Offset
99
25.43
25.30
25.02
25.22
0-1
0-1
0-2
0-2
25.02
50
24.68
24.65
24.36
24.56
24.39
50
25
24.64
24.58
24.28
24.48
24.30
50
50
24.61
24.54
24.21
24.40
24.20
100
24.58
24.55
24.25
24.43
24.25
22.57
22.46
22.15
22.55
22.36
50
22.30
22.04
22.04
22.24
22.05
99
22.38
22.35
21.99
22.11
21.99
0-3
0-5
50
22.59
22.60
22.33
22.51
22.33
50
25
22.58
22.54
22.25
22.44
22.24
50
50
22.56
22.48
22.22
22.35
22.15
100
22.52
22.49
22.23
22.40
22.18
Table 8-46
LTE Band 41 (2593.0MHz) Conducted Powers – 15MHz Bandwidth
LTE Band 41
15 MHz Bandwidth
Modulation
QPSK
RB Size
Mid Channel
Mid-High Channel
High Channel
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
27.03
27.07
Conducted Power [dBm]
26.76
26.88
26.73
36
27.06
26.94
26.68
26.76
26.61
74
27.09
26.94
26.70
26.76
26.64
36
26.31
26.11
25.87
25.94
25.82
36
18
26.44
26.10
25.87
25.92
25.81
36
37
26.26
26.06
25.82
25.85
25.75
75
26.27
26.07
25.93
25.92
25.80
26.26
26.25
25.97
26.05
25.92
36
26.29
26.09
25.84
25.92
25.79
74
26.30
26.09
25.88
25.90
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
25.80
36
25.22
25.04
24.79
24.87
24.74
36
18
25.21
25.02
24.79
24.83
24.72
36
37
25.16
24.97
24.74
24.78
24.70
25.24
25.05
24.83
24.86
0-2
24.78
25.26
25.16
24.92
25.02
24.86
36
25.21
25.03
24.82
24.86
24.73
74
25.23
25.02
24.85
24.87
24.74
0-2
36
24.26
24.09
23.84
23.93
23.77
36
18
24.26
24.07
23.83
23.90
23.75
36
37
24.22
24.02
23.88
23.86
23.72
75
24.22
24.04
23.82
23.96
23.76
22.20
22.23
22.11
22.13
21.85
36
22.16
22.09
21.90
21.94
21.62
256QAM
Low-Mid Channel
39750
(2506.0 MHz)
75
64QAM
Low Channel
16QAM
RB Offset
74
22.14
22.08
21.85
21.85
0-3
21.62
0-5
36
22.29
22.23
22.07
22.11
21.82
36
18
22.29
22.23
22.03
22.07
21.76
36
37
22.24
22.18
21.94
22.00
21.70
75
22.27
22.22
22.00
22.07
21.76
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
Portable Handset
Approved by:
Quality Manager
Page 52 of 119
REV 3.2.M
04/17/2018
© 2018 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.
Table 8-47
LTE Band 41 (2593.0MHz) Conducted Powers – 10MHz Bandwidth
LTE Band 41
10 MHz Bandwidth
Modulation
QPSK
16QAM
Low Channel
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
RB Size
RB Offset
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
26.88
26.77
Conducted Power [dBm]
26.59
26.62
26.50
25
26.72
26.79
26.62
26.63
26.48
49
26.88
26.71
26.55
26.52
26.66
25
26.04
25.91
25.70
25.77
25.63
25
12
26.04
25.89
25.70
25.76
25.61
25
25
25.99
25.87
25.68
25.72
25.59
50
26.06
25.93
25.79
25.78
25.62
26.10
26.00
25.79
25.84
25.70
25
25.87
26.00
25.78
25.84
25.68
49
26.09
25.94
25.77
25.73
25.62
25
25.10
24.93
24.75
24.78
24.65
25
12
25.08
24.90
24.73
24.77
24.64
25
25
25.07
24.87
24.71
24.73
24.62
50
25.05
24.87
24.71
24.74
24.61
25.02
24.97
24.71
24.79
24.63
25
24.80
24.96
24.71
24.95
24.61
64QAM
256QAM
49
25.02
24.86
24.68
24.69
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
0-1
0-2
0-2
24.58
25
23.99
23.85
23.64
23.71
23.55
25
12
23.98
23.81
23.65
23.68
23.52
25
25
23.99
23.81
23.64
23.66
23.51
50
24.08
23.97
23.73
23.79
23.62
0-3
22.02
22.03
21.86
21.88
21.61
25
21.78
21.98
21.78
21.81
21.52
49
21.95
21.90
21.69
21.70
21.44
0-5
25
22.12
22.07
21.88
21.93
21.66
25
12
22.09
22.05
21.86
21.89
21.62
25
25
22.07
22.02
21.80
21.85
21.58
50
22.16
22.10
21.90
21.97
21.67
Table 8-48
LTE Band 41 (2593.0MHz) Conducted Powers – 5MHz Bandwidth
LTE Band 41
5 MHz Bandwidth
Modulation
QPSK
RB Size
64QAM
256QAM
Low-Mid Channel
Mid Channel
Mid-High Channel
High Channel
39750
(2506.0 MHz)
40185
(2549.5 MHz)
40620
(2593.0 MHz)
41055
(2636.5 MHz)
41490
(2680.0 MHz)
27.00
26.84
Conducted Power [dBm]
26.58
26.75
26.51
12
27.01
26.88
26.69
26.71
26.60
24
27.01
26.77
26.66
26.64
26.50
12
26.11
25.95
25.69
25.71
25.63
12
26.15
25.97
25.76
25.74
25.63
12
13
26.09
25.84
25.73
25.78
25.66
25
16QAM
RB Offset
Low Channel
26.11
25.88
25.74
25.76
MPR Allowed per
3GPP [dB]
MPR [dB]
0-1
25.61
26.19
26.08
25.75
25.86
25.66
12
26.22
26.04
25.83
25.91
25.74
24
26.20
25.94
25.81
25.84
25.70
12
25.06
24.89
24.62
24.69
24.58
12
25.08
24.93
24.74
24.72
24.59
12
13
25.04
24.82
24.71
24.72
24.62
25
25.19
24.95
24.81
24.83
24.68
25.18
24.94
24.70
24.74
24.62
12
25.15
25.00
24.78
24.84
24.72
0-1
0-2
0-2
24
25.16
24.87
24.77
24.74
24.66
12
24.09
23.90
23.65
23.70
23.55
12
24.10
23.93
23.71
23.72
23.55
12
13
24.04
23.84
23.69
23.74
23.59
25
24.07
23.84
23.69
23.75
23.57
22.13
22.05
21.70
21.81
21.53
12
22.06
22.04
21.81
21.85
21.58
24
22.12
21.91
21.72
21.79
21.53
12
22.23
22.17
21.89
21.97
21.66
12
22.26
22.20
22.01
21.97
21.67
12
13
22.18
22.07
21.92
21.96
21.67
25
22.14
22.04
21.87
21.92
21.57
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m. LTE Uplink Carrier Aggregation
Table 8-49
LTE FDD Uplink Two Component Carrier Aggregation Conducted Powers
PCC
Combination
CA_5B
CA_66B
CA_66C
PCC Band
PCC
Bandwidth
[MHz]
PCC (UL)
Channel
LTE B5
LTE B66
LTE B66
10
10
20
20525
132322
132322
SCC
PCC (UL)
Frequency Modulation PCC UL# RB
[MHz]
836.5
1745.0
1745.0
16QAM
16QAM
16QAM
PCC UL RB
Offset
SCC Band
SCC
Bandwidth
[MHz]
SCC (UL)
Channel
LTE B5
LTE B66
LTE B66
10
20
20453
132223
132124
SCC (UL)
Frequency Modulation SCC UL# RB
[MHz]
829.3
1735.1
1725.2
16QAM
16QAM
16QAM
SCC UL RB
Offset
24
49
99
Power
LTE
Tx.Power
with UL CA
Enabled
24.59
23.47
23.44
Table 8-50
LTE TDD Uplink Two Component Carrier Aggregation Conducted Powers
Combination
CA_41C (PC2)
CA_41C (PC3)
PCC Band
PCC
SCC
PCC
PCC (UL/DL)
PCC (UL/DL)
Bandwidth
Frequency Modulation PCC UL# RB
Channel
[MHz]
[MHz]
SCC
SCC (UL/DL)
SCC (UL/DL)
Bandwidth
Frequency Modulation SCC UL# RB
Channel
[MHz]
[MHz]
LTE B41
LTE B41
20
20
40620
40620
2593.0
2593.0
16QAM
16QAM
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PCC UL RB
Offset
SCC Band
LTE B41
LTE B41
20
20
40422
40422
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
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2573.2
2573.2
16QAM
16QAM
SCC UL RB
Offset
99
99
Power
LTE
Tx.Power
with UL CA
Enabled
26.75
23.27
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VIII.
WIFI Conducted Powers (SISO/MIMO)
Table 8-51
IEEE 802.11b/g/n/ax (2.4GHz, SISO) Reduced Average RF Power1
2.4GHz Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11b
802.11g
802.11n
802.11ax
2412
16.82
16.80
16.40
15.94
2437
16.50
16.78
16.42
15.20
2462
11
16.64
16.70
16.32
16.62
Table 8-52
IEEE 802.11g/n/ax (2.4GHz, MIMO) Reduced Average RF Power1
2.4GHz Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11g
802.11n
802.11ax
2412
19.86
19.38
18.86
2437
19.65
19.48
18.27
2462
11
19.56
19.28
19.73
Table 8-53
IEEE 802.11a/n/ac/ax (5GHz, 20MHz BW, SISO) Reduced Average RF Power1
5GHz (20MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11ax
802.11a
802.11n
802.11ac
5180
36
12.44
12.01
12.35
12.23
5200
40
13.09
13.07
13.19
13.41
5220
44
12.93
13.08
13.03
13.28
5240
48
13.02
12.99
13.10
13.31
5260
52
12.84
12.91
12.87
13.35
5280
56
12.96
12.95
12.77
13.28
5300
60
12.85
12.97
12.83
13.37
5320
64
12.68
13.10
12.85
13.30
5500
100
12.34
12.73
12.84
12.76
5600
120
12.80
12.84
12.59
12.88
5620
124
12.72
12.87
12.74
12.96
5720
144
12.63
12.78
12.91
12.97
5745
149
12.36
12.48
12.68
12.74
5785
157
12.29
12.53
12.63
12.81
5825
165
12.31
12.33
12.44
12.49
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
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Table 8-54
IEEE 802.11a/n/ac/ax (5GHz, 20MHz BW, MIMO) Reduced Average RF Power1
5GHz (20MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11a
802.11n
802.11ac
802.11ax
5180
36
15.33
15.25
15.36
15.19
5200
40
16.19
15.96
15.97
16.25
5220
44
16.23
16.02
15.91
16.22
5240
48
16.25
15.95
15.96
16.22
5260
52
16.34
16.02
15.87
16.34
5280
56
16.41
16.10
15.83
16.25
5300
60
16.03
16.18
15.80
16.34
5320
64
16.03
16.24
15.84
16.38
5500
100
15.66
15.83
15.87
15.99
5600
120
15.91
15.95
15.76
16.00
5620
124
15.87
15.95
15.77
16.09
5720
144
15.84
15.88
15.86
16.05
5745
149
15.77
15.78
15.94
16.14
5785
157
15.75
15.84
15.88
16.14
5825
165
15.71
15.63
15.69
15.77
Table 8-55
IEEE 802.11n/ac/ax (5GHz, 40MHz BW, SISO) Reduced Average RF Power1
5GHz (40MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11n
802.11ac
802.11ax
5190
38
13.47
13.36
12.99
5230
46
13.19
13.54
13.12
5270
54
12.66
13.02
13.35
5310
62
13.06
13.17
13.22
5510
102
13.16
13.23
12.12
5590
118
13.12
13.01
13.44
5630
126
13.24
13.06
13.28
5710
142
13.22
13.11
13.57
5755
151
13.25
13.04
13.51
5795
159
12.99
12.81
12.95
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
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Table 8-56
IEEE 802.11n/ac/ax (5GHz, 40MHz BW, MIMO) Reduced Average RF Power1
5GHz (40MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11n
802.11ac
802.11ax
5190
38
16.32
16.09
16.07
5230
46
15.86
16.31
15.80
5270
54
15.67
16.16
16.30
5310
62
16.09
16.09
16.17
5510
102
16.31
16.23
15.13
5590
118
15.91
15.84
15.79
5630
126
15.94
15.87
15.74
5710
142
15.98
15.89
15.94
5755
151
16.20
16.02
16.10
5795
159
15.94
15.90
15.66
Table 8-57
IEEE 802.11ac/ax (5GHz, 80MHz BW, SISO) Reduced Average RF Power1
5GHz (80MHz) Conducted Power [dBm]
IE E E T ra ns m is s io n M o de
Freq [MHz]
Channel
802.11ac
802.11ax
5210
42
12.76
12.47
5290
58
12.56
12.42
5530
106
12.56
12.44
5610
122
12.70
12.02
5690
138
12.68
12.48
5775
155
12.81
12.25
Table 8-58
IEEE 802.11ac/ax (5GHz, 80MHz BW, MIMO) Reduced Average RF Power1
5GHz (80MHz) Conducted Power [dBm]
Freq [MHz]
Channel
IE E E T ra ns m is s io n M o de
5210
42
802.11ac
15.88
802.11ax
15.30
5290
58
15.71
15.25
5530
106
15.66
15.38
5610
122
15.53
15.08
5690
138
15.78
15.70
5775
155
15.91
15.51
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
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IX. WIFI Conducted Powers for IEEE 802.11ax RU (SISO/MIMO)
Table 8-59
IEEE 802.11ax (2.4GHz, RU, SISO) Maximum Average RF Power1
RU Index
Tones
Ch. 1
Ch. 6
Ch. 11
26
26
13.43
13.98
13.76
13.86
13.41
13.55
37
38
26
52
52
13.82
15.55
15.98
13.94
15.68
15.88
13.73
15.78
15.57
40
53
52
106
15.97
17.64
15.91
17.96
15.84
17.47
54
106
17.59
17.79
17.51
61
242
15.64
17.71
16.87
Table 8-60
IEEE 802.11ax (2.4GHz, RU, MIMO) Maximum Average RF Power1
RU Index
Tones
Ch. 1
Ch. 6
Ch. 11
26
13.80
13.76
13.98
26
13.39
13.70
13.23
26
13.39
13.11
13.49
37
52
15.67
15.63
15.75
38
52
15.52
14.91
15.71
40
52
15.33
15.47
15.25
53
106
17.83
17.81
17.07
54
106
17.78
17.49
17.42
61
242
15.56
17.63
16.40
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
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Table 8-61
IEEE 802.11ax (5GHz, 20MHz BW, RU, SISO) Maximum Average RF Power1
RU Index
UNII 1
Tones
RU Index
Ch. 36
Ch. 40
Ch. 48
UNII 2A
Tones
Ch. 56
Ch. 64
26
10.71
10.79
10.96
26
10.90
10.91
10.97
26
10.80
10.65
10.48
26
10.96
10.64
10.76
26
10.97
10.93
10.72
26
10.64
10.98
10.88
37
52
12.96
12.96
12.97
37
52
12.96
12.58
12.74
38
52
12.79
12.95
12.65
38
52
12.69
12.74
12.88
40
52
12.77
12.94
12.94
40
52
13.92
12.59
12.70
53
106
14.75
14.92
14.57
53
106
14.82
14.96
14.64
54
106
14.82
14.96
14.61
54
106
14.77
14.99
14.56
61
242
15.93
17.62
17.80
61
242
17.82
17.92
16.06
RU Index
UNII 2C
Tones
RU Index
Ch. 52
UNII 3
Tones
Ch. 149
Ch. 157
Ch. 165
26
10.97
10.91
10.78
26
10.97
10.92
10.59
26
10.73
10.96
10.94
26
10.69
10.75
10.92
26
10.95
10.55
10.99
26
10.71
10.82
10.99
37
52
12.84
12.97
12.97
37
52
12.69
12.97
12.89
38
52
12.93
12.95
12.99
38
52
12.77
12.79
12.97
40
52
12.98
12.71
12.76
40
52
12.92
12.91
12.73
53
106
14.97
14.97
14.72
53
106
14.98
14.91
14.68
54
106
14.91
14.68
14.67
54
106
14.75
14.86
14.99
61
242
17.24
17.96
17.94
61
242
17.62
17.76
17.96
Ch. 100
Ch. 120
Ch. 144
Table 8-62
IEEE 802.11ax (5GHz, 20MHz BW, RU, MIMO) Maximum Average RF Power1
UNII 1
RU Index Tones
UNII 2A
RU Index Tones
Ch. 36
Ch. 40
Ch. 48
Ch. 52
Ch. 56
Ch. 64
26
26
10.84
10.63
10.52
10.65
10.56
10.65
26
26
10.95
10.89
10.95
10.99
10.81
10.83
37
38
26
52
52
10.84
12.55
12.60
10.85
12.84
12.90
10.94
12.85
12.93
37
38
26
52
52
10.68
12.76
12.86
10.80
12.42
12.51
10.61
12.80
12.83
40
53
52
106
12.58
14.67
12.81
14.92
12.86
14.86
40
53
52
106
12.79
14.71
12.87
14.70
12.64
14.82
54
106
14.65
14.88
14.84
54
106
14.76
14.63
14.65
61
242
15.52
17.55
17.64
61
242
17.57
17.91
16.49
UNII 2C
RU Index Tones
UNII 3
RU Index Tones
Ch. 100
Ch. 120
Ch. 144
Ch. 149
Ch. 157
Ch. 165
26
26
10.83
10.85
10.84
10.68
10.71
10.66
26
26
10.86
10.70
10.71
10.79
10.47
10.60
37
38
26
52
52
10.65
12.94
12.92
10.89
12.64
12.69
10.81
12.72
12.65
37
38
26
52
52
10.82
12.73
12.58
10.80
12.98
12.97
10.58
12.79
12.90
40
53
52
106
12.83
14.89
12.86
14.94
12.90
14.96
40
53
52
106
12.82
14.92
12.82
14.77
12.64
14.70
54
106
14.73
14.84
14.84
54
106
14.67
14.71
14.59
61
242
17.44
17.92
17.91
61
242
17.90
17.86
17.77
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
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Table 8-63
IEEE 802.11ax (5GHz, 40MHz BW, RU, SISO) Maximum Average RF Power1
RU Index
UNII 1
Tones
RU Index
UNII 2A
Tones
Ch. 38
Ch. 46
Ch. 54
Ch. 62
26
10.84
10.96
26
10.72
10.79
26
10.97
10.93
26
10.65
10.69
17
26
10.81
10.76
17
26
10.67
10.64
37
52
12.77
12.87
37
52
12.96
12.82
40
52
12.61
12.97
40
52
12.88
12.97
44
52
12.67
12.74
44
52
12.97
12.68
53
106
14.86
14.83
53
106
14.97
14.79
54
106
14.97
14.94
54
106
14.66
14.83
56
106
14.77
14.78
56
106
14.99
14.63
61
242
13.24
17.96
61
242
17.82
13.16
62
242
13.27
17.90
62
242
17.89
13.12
65
484
13.47
16.86
65
484
16.68
13.39
RU Index
UNII 2C
Tones
RU Index
UNII 3
Tones
Ch. 102
Ch. 118
Ch. 142
Ch. 151
Ch. 159
26
10.92
10.65
10.73
26
10.73
10.96
26
10.76
10.73
10.91
26
10.89
10.82
17
26
10.89
10.84
10.97
17
26
10.76
10.71
37
52
12.66
12.82
12.91
37
52
12.84
12.93
40
52
12.93
12.96
12.63
40
52
12.98
12.98
44
52
12.75
12.67
12.72
44
52
12.73
12.72
53
106
14.93
14.96
14.96
53
106
14.95
14.77
54
106
14.81
14.92
14.93
54
106
14.82
14.69
56
106
14.97
14.84
14.92
56
106
14.80
14.92
61
242
12.31
17.91
17.97
61
242
17.74
17.98
62
242
12.39
17.96
17.98
62
242
17.82
17.97
65
484
12.33
16.94
16.96
65
484
16.95
16.69
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
FCC ID: A3LSMG973U
Filename:
Test Dates:
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HAC (RF EMISSIONS) TEST REPORT
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enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
Table 8-64
IEEE 802.11ax (5GHz, 40MHz BW, RU, MIMO) Maximum Average RF Power1
RU Index
UNII 1
Tones
RU Index
Ch. 38
Ch. 46
26
10.66
10.76
26
10.86
10.71
17
26
10.87
10.87
37
52
12.82
12.87
40
52
12.67
44
52
12.44
53
106
54
106
56
61
UNII 2A
Tones
Ch. 54
Ch. 62
26
10.96
10.54
26
10.77
10.84
17
26
10.83
10.74
37
52
12.94
12.98
12.69
40
52
12.73
12.73
12.44
44
52
12.89
12.77
14.80
14.83
53
106
14.74
14.84
14.75
14.87
54
106
14.77
14.76
106
14.78
14.58
56
106
14.60
14.93
242
13.32
17.81
61
242
17.93
13.23
62
242
13.42
17.98
62
242
17.95
13.09
65
484
13.20
16.58
65
484
16.54
13.26
RU Index
UNII 2C
Tones
RU Index
Tones
UNII 3
Ch. 102
Ch. 118
Ch. 142
Ch. 151
Ch. 159
26
10.93
10.60
10.64
26
10.78
10.98
26
10.82
10.75
10.81
26
10.58
10.85
17
26
10.85
10.76
10.78
17
26
10.59
10.81
37
52
12.91
12.81
12.95
37
52
12.73
12.87
40
52
12.66
12.96
12.65
40
52
12.79
12.69
44
52
12.90
12.81
12.88
44
52
12.78
12.68
53
106
14.97
14.97
14.93
53
106
14.80
14.74
54
106
14.97
14.87
14.92
54
106
14.93
14.75
56
106
14.83
14.78
14.76
56
106
14.69
14.91
242
17.92
17.89
61
242
12.45
17.78
17.97
61
62
242
12.47
17.71
17.91
62
242
17.97
17.96
65
484
12.04
16.71
16.66
65
484
16.80
16.59
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
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HAC (RF EMISSIONS) TEST REPORT
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Table 8-65
IEEE 802.11ax (5GHz, 80MHz BW, RU, SISO) Maximum Average RF Power1
RU Index
17
36
37
44
52
53
56
60
61
62
64
65
66
67
Tones
26
26
26
52
52
52
106
106
106
242
242
242
484
484
996
Ch. 106
26
10.65
26
10.59
26
10.81
52
12.96
52
12.75
52
12.92
106
14.72
106
14.86
106
14.98
242
12.23
242
12.05
242
12.44
484
12.13
484
12.41
996
12.21
UNII 1
Tones
RU Index
Ch. 42
10.83
10.67
10.53
12.97
12.95
12.89
14.91
14.88
14.90
12.13
12.23
12.14
12.24
12.28
12.48
UNII 2C
Ch. 122
Ch. 138
10.93
10.62
10.73
10.72
10.70
10.99
12.68
12.87
12.81
12.81
12.97
12.84
14.73
14.79
14.81
14.82
14.94
14.81
17.78
17.91
17.94
17.74
17.81
17.83
16.78
16.90
16.97
16.92
15.86
15.83
UNII 2A
Tones
17
36
37
44
52
53
56
60
61
62
64
65
66
67
Ch. 58
10.97
10.69
10.79
12.74
12.80
12.57
14.69
14.75
14.71
12.41
12.44
12.38
12.44
12.49
12.48
26
26
26
52
52
52
106
106
106
242
242
242
484
484
996
RU Index
Tones
UNII 3
Ch. 155
26
10.64
17
26
10.95
36
26
10.69
37
52
12.61
44
52
12.53
52
52
12.74
53
106
14.62
56
106
14.97
60
106
14.75
61
242
17.94
62
242
17.76
64
242
17.84
65
484
16.77
66
484
16.82
67
996
15.78
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
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HAC (RF EMISSIONS) TEST REPORT
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Table 8-66
IEEE 802.11ax (5GHz, 80MHz BW, RU, MIMO) Maximum Average RF Power1
RU Index
Tones
UNII 1
RU Index
Tones
Ch. 42
RU Index
UNII 2A
Ch. 58
26
10.90
26
10.85
18
26
10.78
18
26
10.94
36
26
10.94
36
26
10.57
37
52
12.90
37
52
12.88
44
52
12.86
44
52
12.87
52
52
12.89
52
52
12.72
53
106
14.79
53
106
14.82
56
106
14.95
56
106
14.96
60
106
14.92
60
106
14.87
61
242
12.46
61
242
12.48
62
242
12.50
62
242
12.42
64
242
12.45
64
242
12.27
65
484
12.47
65
484
12.26
66
484
12.34
66
484
12.39
67
996
12.39
67
996
12.25
RU Index
Tones
UNII 2C
Tones
Ch. 106
Ch. 122
Ch. 138
26
10.97
10.79
10.96
18
26
10.58
10.98
10.44
36
26
10.49
10.83
10.76
37
52
12.89
12.83
12.92
44
52
12.80
12.68
12.63
52
52
12.58
12.56
12.95
53
106
14.79
14.69
14.73
56
106
14.73
14.68
60
106
14.72
61
242
12.38
UNII 3
Ch. 155
26
10.95
18
26
10.70
36
26
10.88
37
52
12.87
44
52
12.64
52
52
12.93
53
106
14.99
14.59
56
106
14.97
14.69
14.60
60
106
14.97
17.98
17.95
61
242
17.86
242
17.89
62
242
12.23
17.91
17.85
62
64
242
12.38
17.91
17.87
64
242
17.84
65
484
12.40
16.49
16.69
65
484
16.57
66
484
12.47
16.70
16.64
66
484
16.56
67
996
12.39
15.86
15.83
67
996
15.93
Note: While this device utilizes independent power reduction mechanisms for the WIFI transmitter in all
WIFI modes for held-to-ear scenarios, maximum conducted powers were used as a conservative
measure in Section 8.IX.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
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HAC (RF EMISSIONS) TEST REPORT
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X. WIFI Conducted Powers for Operations with Simultaneous 2.4GHz and 5GHz
Table 8-67
IEEE 802.11b/g/n/ax (2.4GHz, Ant1) Reduced Average RF Power1
2.4GHz Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11b
802.11g
802.11n
802.11ax
2412
13.73
12.57
12.35
12.10
2437
13.29
12.14
12.01
12.36
2462
11
13.56
12.43
12.38
13.17
Table 8-68
IEEE 802.11b/g/n/ax (2.4GHz, Ant2) Reduced Average RF Power1
2.4GHz Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11b
802.11g
802.11n
802.11ax
2412
12.72
12.02
12.01
12.69
2437
13.49
12.38
12.32
12.76
2462
11
13.67
12.67
12.54
12.42
Table 8-69
IEEE 802.11a/n/ac/ax (5GHz, 20MHz BW, Ant1) Reduced Average RF Power1
5GHz (20MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11ax
802.11a
802.11n
802.11ac
5180
36
12.44
12.01
12.35
12.23
5200
40
13.09
13.07
13.19
13.41
5220
44
12.93
13.08
13.03
13.28
5240
48
13.02
12.99
13.10
13.31
5260
52
12.84
12.91
12.87
13.35
5280
56
12.96
12.95
12.77
13.28
5300
60
12.85
12.97
12.83
13.37
5320
64
12.68
13.10
12.85
13.30
5500
100
12.34
12.73
12.84
12.76
5600
120
12.80
12.84
12.59
12.88
5620
124
12.72
12.87
12.74
12.96
5720
144
12.63
12.78
12.91
12.97
5745
149
12.36
12.48
12.68
12.74
5785
157
12.29
12.53
12.63
12.81
5825
165
12.31
12.33
12.44
12.49
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
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HAC (RF EMISSIONS) TEST REPORT
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Table 8-70
IEEE 802.11a/n/ac/ax (5GHz, 20MHz BW, Ant2) Reduced Average RF Power1
5GHz (20MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11ax
802.11a
802.11n
802.11ac
5180
36
12.20
12.45
12.34
12.12
5200
40
13.27
12.82
12.72
13.07
5220
44
13.49
12.94
12.76
13.14
5240
48
13.44
12.88
12.79
13.10
5260
52
13.77
13.11
12.84
13.30
5280
56
13.80
13.22
12.86
13.19
5300
60
13.18
13.36
12.74
13.29
5320
64
13.34
13.35
12.80
13.44
5500
100
12.93
12.90
12.88
13.18
5600
120
13.00
13.04
12.91
13.10
5620
124
12.99
13.01
12.77
13.20
5720
144
13.03
12.96
12.79
13.11
5745
149
13.13
13.05
13.16
13.49
5785
157
13.15
13.11
13.10
13.42
5825
165
13.06
12.89
12.91
13.02
Table 8-71
IEEE 802.11n/ac/ax (5GHz, 40MHz BW, Ant1) Reduced Average RF Power1
5GHz (40MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11ax
802.11n
802.11ac
5190
38
13.47
13.36
12.99
5230
46
13.19
13.54
13.12
5270
54
12.66
13.02
13.35
5310
62
13.06
13.17
13.22
5510
102
13.16
13.23
12.12
5590
118
13.12
13.01
13.44
5630
126
13.24
13.06
13.28
5710
142
13.22
13.11
13.57
5755
151
13.25
13.04
13.51
5795
159
12.99
12.81
12.95
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
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HAC (RF EMISSIONS) TEST REPORT
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enquiry about obtaining additional rights to this report or assembly of contents thereof, please contact INFO@PCTEST.COM.
Table 8-72
IEEE 802.11n/ac/ax (5GHz, 40MHz BW, Ant2) Reduced Average RF Power1
5GHz (40MHz) Conducted Power [dBm]
IEEE Transmission Mode
Freq [MHz]
Channel
802.11n
802.11ac
802.11ax
5190
38
13.15
12.78
13.12
5230
46
12.48
13.04
12.43
5270
54
12.66
13.28
13.22
5310
62
13.09
12.98
13.10
5510
102
13.44
13.20
12.11
5590
118
12.66
12.65
12.01
5630
126
12.60
12.64
12.11
5710
142
12.71
12.64
12.19
5755
151
13.12
12.97
12.63
5795
159
12.87
12.96
12.32
Table 8-73
IEEE 802.11ac/ax (5GHz, 80MHz BW, Ant1) Reduced Average RF Power1
5GHz (80MHz) Conducted Power [dBm]
Freq [MHz]
Channel
IE E E T ra ns m is s io n M o de
802.11ac
802.11ax
5210
42
12.76
12.47
5290
58
12.56
12.42
5530
106
12.56
12.44
5610
122
12.70
12.02
5690
138
12.68
12.48
5775
155
12.81
12.25
Table 8-74
IEEE 802.11ac/ax (5GHz, 80MHz BW, Ant2) Reduced Average RF Power1
5GHz (80MHz) Conducted Power [dBm]
Freq [MHz]
Channel
IE E E T ra ns m is s io n M o de
802.11ac
802.11ax
5210
42
12.97
12.11
5290
58
12.83
12.06
5530
106
12.73
12.30
5610
122
12.34
12.12
5690
138
12.86
12.89
5775
155
12.99
12.74
Note: This device utilizes independent power reduction mechanisms for the WIFI transmitter in all WIFI
modes for held-to-ear scenarios.
FCC ID: A3LSMG973U
Filename:
Test Dates:
1M1810250195-13-R3.A3L
11/12/2018 - 11/27/2018
© 2018 PCTEST Engineering Laboratory, Inc.
HAC (RF EMISSIONS) TEST REPORT
DUT Type:
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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.
9.
JUSTIFICATION OF HELD TO EAR MODES TESTED
I. Analysis of RF Air Interface Technologies
An analysis was performed, following the guidance of §4.3 and §4.4 of the ANSI standard, of the RF
air interface technologies being evaluated. The factors that will affect the RF interference potential
were evaluated, and the worst-case operating modes were identified and used in the evaluation. A
WD’s interference potential is a function both of the WD’s average near-field field strength and of the
signal’s audio-frequency amplitude modulation characteristics. Per §4.4, RF air interface technologies
that have low power have been found to produce sufficiently low RF interference potential, so it is
possible to exempt them from the product testing specified in Clause 5 of the ANSI standard. An RF
air interface technology of a device is exempt from testing when its average antenna input power plus
its MIF is ≤17dBm for all of its operating modes. RF air interface technologies exempted from testing
in this manner are automatically assigned an M4 rating to be used in determining the overall rating for
the WD.
The worst-case MIF plus the worst-case average antenna input power for all modes are investigated
below to determine the testing requirements for this device.
II. Individual Mode Evaluations
Table 9-1
Max Power + MIF calculations for Low Power Exemptions
Air Interface
Maximum
Average Power
(dBm)
Worst Case
MIF
(dB)
Total
(Power +
MIF, dB)
C63.19
Testing
Required
CDMA - Full Frame Rate
24.97
-18.84
6.13
No
CDMA - 1/8th Frame Rate
15.88*
3.08
18.96
Yes
CDMA - EvDO
24.93
-18.03
6.90
No
GSM850
23.31*
3.55
26.86
Yes
GSM1900
20.41*
3.55
23.96
Yes
EDGE850
17.30*
3.76
21.06
Yes**
EDGE1900
16.47*
3.69
20.16
Yes**
UMTS - RMC
24.31
-22.47
1.84
No
UMTS - AMR
24.32
-13.74
10.58
No
No
HSPA
23.22
-22.16
1.06
LTE - FDD
25.02
-9.00
16.02
No
LTE FDD - Uplink Carrier Aggregation
24.59
-10.46
14.13
No
LTE - TDD (PC3)
17.50*
1.64
19.14
Yes
LTE - TDD (PC2)
20.86*
1.82
22.68
Yes
LTE TDD - Uplink Carrier Aggregation
20.06*
1.48
21.54
Yes****
2.4GHz WIFI
19.86
-4.62
15.24
No
5GHz WIFI
17.98
-4.22
13.76
No
Simultaneous 2.4GHz and 5GHz WIFI Operations
19.71***
-4.71
15.00
No
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HAC (RF EMISSIONS) TEST REPORT
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* Note: ANSI C63.19-2011 Sec. 4.4 Footnote 20 indicates the use of a long averaging time for measuring
the antenna input power when using this method of exclusion. Therefore, the frame averaged power was
calculated for these modes in this investigation.
** Note: EDGE data modes were considered but not tested as GSM voice modes were found to be the
worst-case modes for the GSM air interface.
*** Note: This value is calculated as the linear sum of the worst-case power for each band and antenna
combination while in simultaneous 2.4GHz and 5GHz operation. This calculation is conservative and for
use in this investigation only.
**** Note: LTE TDD Uplink Carrier Aggregation was considered but not tested as LTE TDD standalone
data modes were found to be the worst-case modes for the LTE TDD air interface.
III. Low-Power Exemption Conclusions
Per ANSI C63.19-2011, RF Emissions testing for this device is required only for GSM/CDMA 1/8th Frame
Rate voice modes as well as LTE TDD (Power Class 3 and Power Class 2) data modes. All other air
interfaces are exempt.
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10.
LTE TDD UPLINK-DOWNLINK CONFIGURATION
I. Uplink-Downlink Configuration Additional Testing
Additional testing was performed on each supported power class for LTE TDD to determine the
worst-case Uplink-Downlink configuration for RFE testing.
Per 3GPP TS 36.211, the total frame length for each TDD radio frame of length Tf = 307200 · Ts = 10
ms, where Ts is a number of time units equal to 1/(15000 x 2048) seconds. Additionally, each radio
frame consists of 10 subframes, each of length 30720 · Ts = 1 ms, and subframes can be designated
as uplink (U), downlink (D), or special subframe (S), depending on the Uplink-Downlink configuration
as indicated in Table 4.2-2 of 3GPP TS 36.211. In the transmission duty factor calculation, the special
subframe configuration with the shortest UpPTS duration within the special subframe is used and will
be applied for measurement. From 3GPP TS 36.211 Table 4.2-1, the shortest UpPTS is 2192 · Ts
which occurs in the normal cyclic prefix and special subframe configuration 4.
See table below outlining the calculated transmission duty cycles for each Uplink-Downlink
configuration:
Table 10-1
Uplink-Downlink Configurations for Type 2 Frame Structures
Uplink-downlink
configuration
Downlink-to-Uplink
Switch-point periodicity
5 ms
5 ms
5 ms
10 ms
10 ms
10 ms
5 ms
Subframe number
Calculated
Transmission
Duty Cycle (%)
61.4%
41.4%
21.4%
30.7%
20.7%
10.7%
51.4%
II. Power Class 3 Uplink-Downlink Configuration Additional Testing
LTE TDD was evaluated with the following radio configuration: channel 40620, 20MHz BW, 16QAM,
1RB, 0RB Offset. For Power Class 3, all configurations (0-6) are supported. The configuration which
resulted in the worst-case emission was used for full testing. See Table 10-2 below for results. The
configuration determined in the results below was used to measure the MIF values in Table 7-6.
Table 10-2
LTE TDD Power Class 3 UL-DL Configuration Results
Mode / Band
Bandwidth
Channel
UL-DL
Config.
Mod.
RB Size
RB
Offset
Scan Center
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
E-Field Emissions
LTE TDD /
Band 41
20
40620
16QAM
Acoustic
15.85
24.00
-3.09
20.91
35.00
-14.09
M4
none
20
40620
16QAM
Acoustic
13.15
22.38
-1.51
20.87
35.00
-14.13
M4
none
20
40620
16QAM
Acoustic
9.40
19.46
1.68
21.14
35.00
-13.86
M4
none
20
40620
16QAM
Acoustic
11.33
21.08
-1.07
20.01
35.00
-14.99
M4
none
20
40620
16QAM
Acoustic
9.60
19.65
0.72
20.37
35.00
-14.63
M4
none
20
40620
16QAM
Acoustic
6.91
16.79
3.59
20.38
35.00
-14.62
M4
none
20
40620
16QAM
Acoustic
14.34
23.13
-2.50
20.63
35.00
-14.37
M4
none
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III. Power Class 2 Uplink-Downlink Configuration Additional Testing
LTE TDD was evaluated with the following radio configuration: channel 40620, 20MHz BW, 16QAM,
1RB, 0RB Offset. For Power Class 2, only configurations 1-5 are supported. The configuration which
resulted in the worst-case emission was used for full testing. See Table 10-3 below for results. The
configuration determined in the results below was used to measure the MIF values in Table 7-7.
Table 10-3
LTE TDD Power Class 2 UL-DL Configuration Results
Mode / Band
Bandwidth
Channel
UL-DL
Config.
Mod.
RB Size
RB
Offset
Scan Center
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
E-Field Emissions
LTE TDD /
Band 41
20
40620
16QAM
Acoustic
19.32
25.72
-1.49
24.23
35.00
-10.77
M4
none
20
40620
16QAM
Acoustic
13.76
22.77
1.74
24.51
35.00
-10.49
M4
none
20
40620
16QAM
Acoustic
17.16
24.69
-1.04
23.65
35.00
-11.35
M4
none
20
40620
16QAM
Acoustic
13.93
22.88
0.78
23.66
35.00
-11.34
M4
none
20
40620
16QAM
Acoustic
9.69
19.73
3.70
23.43
35.00
-11.57
M4
none
IV. Conclusion
Per the results above, UL-DL Configuration 2 was used for both LTE TDD Power Class 3 and LTE
TDD Power Class 2 testing.
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11.
OVERALL MEASUREMENT SUMMARY
FCC ID:
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I. E-FIELD EMISSIONS:
Table 11-1
HAC Data Summary for CDMA E-field
Mode
Channel
RC/SO
Conducted
Scan Center Power at BS
(dBm)
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
E-Field Emissions
Cellular
CDMA
564*
RC1/SO3
Acoustic
24.84
16.00
24.08
3.03
27.11
45.00
-17.89
M4
none
1013
RC1/SO3
Acoustic
24.81
14.85
23.43
3.04
26.47
45.00
-18.53
M4
none
384
RC1/SO3
Acoustic
24.91
15.49
23.80
3.04
26.84
45.00
-18.16
M4
none
777
RC1/SO3
Acoustic
24.85
13.71
22.74
3.04
25.78
45.00
-19.22
M4
none
25
RC1/SO3
Acoustic
23.24
7.87
17.92
3.03
20.95
35.00
-14.05
M4
none
600
RC1/SO3
Acoustic
23.20
7.88
17.93
3.05
20.98
35.00
-14.02
M4
none
1175
RC1/SO3
Acoustic
23.17
7.10
17.02
3.08
20.10
35.00
-14.90
M4
none
PCS
CDMA
*Note: Cell. CDMA Ch. 564 is the Part 90S test channel.
Table 11-2
HAC Data Summary for GSM E-field
Mode
Conducted
Scan Center Power at BS
(dBm)
Channel
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
E-Field Emissions
GSM850
GSM1900
128
Acoustic
32.30
43.43
32.76
3.55
36.30
45.00
-8.70
M4
none
190
Acoustic
32.34
38.46
31.70
3.55
35.25
45.00
-9.75
M4
none
251
Acoustic
32.19
42.93
32.66
3.55
36.21
45.00
-8.79
M4
none
512
Acoustic
29.44
17.21
24.72
3.55
28.27
35.00
-6.73
M4
none
661
Acoustic
29.21
14.85
23.43
3.55
26.98
35.00
-8.02
M4
none
810
Acoustic
29.00
13.48
22.59
3.55
26.14
35.00
-8.86
M4
none
512
T-Coil
29.44
12.08
21.64
3.55
25.19
35.00
-9.81
M4
1,2,3
Table 11-3
HAC Data Summary for LTE TDD Power Class 3 E-field
Mode / Band
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
21.82
5.92
15.44
1.61
17.05
35.00
-17.95
M4
none
21.69
6.44
16.18
1.61
17.79
35.00
-17.21
M4
none
Acoustic
21.42
5.90
15.42
1.64
17.06
35.00
-17.94
M4
none
99
Acoustic
21.53
6.53
16.30
1.60
17.90
35.00
-17.10
M4
none
99
Acoustic
21.43
6.85
16.71
1.62
18.33
35.00
-16.67
M4
none
Conducted
Scan Center Power at BS
(dBm)
Channel
UL-DL
Config.
Mod.
RB Size
RB
Offset
20 MHz
39750
64QAM
99
Acoustic
20 MHz
40185
64QAM
99
Acoustic
20 MHz
40620
64QAM
99
20 MHz
41055
64QAM
20 MHz
41490
64QAM
Bandwidth
E-Field Emissions
LTE TDD /
Band 41
Table 11-4
HAC Data Summary for LTE TDD Power Class 2 E-field
Mode / Band
Channel
UL-DL
Config.
Mod.
RB Size
RB
Offset
Scan Center
Conducted
Power at BS
(dBm)
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
5 MHz
39750
64QAM
24
Acoustic
25.16
8.24
18.32
1.66
19.98
35.00
-15.02
M4
none
5 MHz
40185
64QAM
24
Acoustic
24.87
8.66
18.75
1.67
20.42
35.00
-14.58
M4
none
5 MHz
40620
64QAM
24
Acoustic
24.77
8.81
18.90
1.82
20.72
35.00
-14.28
M4
none
5 MHz
41055
64QAM
24
Acoustic
24.74
9.39
19.45
1.74
21.19
35.00
-13.81
M4
none
5 MHz
41490
64QAM
24
Acoustic
24.66
8.55
18.64
1.67
20.31
35.00
-14.69
M4
none
Bandwidth
E-Field Emissions
LTE TDD /
Band 41
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Figure 11-1
Sample E-field Scan Overlay
(See Test Setup Photographs for actual WD overlay)
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FCC ID:
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II. Worst-case Configuration Evaluation
Table 11-5
Peak Reading 360o Probe Rotation at Azimuth axis
Mode
Channel
Scan Center
Time Avg.
Field
(V/m)
Time Avg.
Field
[dB(V/m)]
MIF
(dB)
Audio
Interference
Level
[dB(V/m)]
FCC Limit
(dBV/m)
FCC Margin
(dB)
Result
Excl Blocks
per 5.5
17.59
24.91
3.55
28.46
35.00
-6.54
M4
none
Probe Rotation at Worst-Case
GSM1900
512
Acoustic
Figure 11-2
Worst-Case Probe Rotation about Azimuth axis
* Note: Locations of probe rotation (with and without exclusions) are shown in Figure 11-1 denoted by the green square markers.
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12.
EQUIPMENT LIST
Table 12-1
Equipment List
Manufacturer
Model
Description
Cal Date
Cal Interval
Agilent
Agilent
Amplifier Research
Anritsu
Anritsu
Anritsu
Anritsu
Anritsu
Anritsu
Control Company
Mini-Circuits
Mini-Circuits
Mini-Circuits
Pasternack
Rohde & Schwarz
Rohde & Schwarz
Rohde & Schwarz
Seekonk
SPEAG
SPEAG
SPEAG
SPEAG
SPEAG
SPEAG
E4438C
E4432B
15S1G6
MT8820C
ML2496A
MA24106A
MA24106A
MA2411B
MA2411B
4040
NLP-1200+
NLP-2950+
BW-N20W5
PE2237-20
CMW500
CMW500
CMW500
NC-100
AIA
DAE4
CD2600V3
CD1880V3
CD835V3
ER3DV6
ESG Vector Signal Generator
ESG-D Series Signal Generator
Amplifier
Radio Communication Analyzer
Power Meter
USB Power Sensor
USB Power Sensor
Pulse Power Sensor
Pulse Power Sensor
Temperature / Humidity Monitor
Low Pass Filter DC to 1000 MHz
Low Pass Filter DC to 2700 MHz
Power Attenuator
Bidirectional Coupler
Radio Communication tester
Radio Communication tester
Radio Communication tester
Torque Wrench (8" lb)
Audio Interference Analzyer
Dasy Data Acquisition Electronics
Freespace 2600 MHz Dipole
Freespace 1880 MHz Dipole
Freespace 835 MHz Dipole
Freespace E-field Probe
4/19/2018
4/19/2018
N/A
3/20/2018
10/21/2018
10/19/2018
10/19/2018
10/30/2018
10/30/2018
2/28/2018
N/A
N/A
N/A
N/A
8/3/2018
10/12/2018
1/19/2018
5/10/2018
N/A
3/7/2018
6/14/2017
2/8/2017
2/9/2017
1/11/2018
Annual
Annual
CBT*
Annual
Annual
Annual
Annual
Annual
Annual
Biennial
CBT*
CBT*
CBT*
CBT*
Annual
Annual
Annual
Biennial
CBT*
Annual
Biennial
Biennial
Biennial
Annual
Cal Due
Serial Number
4/19/2019 MY47270002
4/19/2019 US40053896
N/A
433978
3/20/2019 6201144419
10/21/2019
1138001
10/19/2019
1349503
10/19/2019
1344554
10/30/2019
1126066
10/30/2019
1207470
2/28/2020
150761911
N/A
N/A
N/A
N/A
N/A
1226
N/A
N/A
8/3/2019
140144
10/12/2019
166462
1/19/2019
162125
5/10/2020
21053
N/A
1010
3/7/2019
1415
6/14/2019
1013
2/8/2019
1137
2/9/2019
1003
1/11/2019
2353
Calibration traceable to the National Institute of Standards and Technology (NIST).
*Note: CBT (Calibrated Before Testing). Prior to testing, the measurement paths containing a cable, attenuator, coupler or filter
were connected to a calibrated source (i.e. a signal generator) to determine the losses of the measurement path. The power meter
offset was then adjusted to compensate for the measurement system losses. This level offset is stored within the power meter
before measurements are made. This calibration verification procedure applies to the system verification and output power
measurements. The calibrated reading is then taken directly from the power meter after compensation of the losses for all final
power measurements.
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HAC (RF EMISSIONS) TEST REPORT
DUT Type:
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13.
MEASUREMENT UNCERTAINTY
Table 13-1
Uncertainty Estimation Table
Notes:
1.
Test equipments are calibrated according to techniques outlined in NIS81, NIS3003 and NIST Tech Note 1297. 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.
2.
* Uncertainty specifications from Schmidt & Partner Engineering AG (not site specific)
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 immunity
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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14.
TEST DATA
See following Attached Pages for Test Data.
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15.
CALIBRATION CERTIFICATES
The following pages include the probe calibration used to evaluate HAC for the DUT.
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16.
CONCLUSION
The measurements, taken in accordance with the procedures provided in the CTIA Test Plan for Hearing
Aid Compatibility Rev 3.1.1, May 2017, indicate that the wireless communications device complies with
the HAC limits specified in 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.
Please note that the M-rating for this equipment only represents the field interference possible against a
hypothetical and typical hearing aid. 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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17.
REFERENCES
1. ANSI/IEEE 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. CTIA Certification Program, “Test Plan for Hearing Aid Compatibility Rev 3.1.1”, Washington, DC,
CTIA, May 2017
3. FCC Office of Engineering and Technology KDB, “285076 D01 HAC Guidance v05,” September
13, 2017
4. FCC Office of Engineering and Technology KDB, “285076 D02 T-Coil Testing for CMRS IP v03,”
September 13, 2017
5. FCC Public Notice DA 06-1215, Wireless Telecommunications Bureau and Office of Engineering
and Technology Clarify Use of Revised Wireless Phone Hearing Aid Compatibility Standard, June
6, 2006
6. FCC 3G Review Guidance, Laboratory Division OET FCC, May/June 2006
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15. EHIMA GSM Project, Development phase, Project Report (1st part) Revision A. TechnicalAudiological Laboratory and Telecom Denmark, October 1993.
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16. EHIMA GSM Project, Development phase, Part II Project Report. Technical-Audiological
Laboratory and Telecom Denmark, June 1994.
17. EHIMA GSM Project Final Report, Hearing Aids and GSM Mobile Telephones: Interference
Problems, Methods of Measurement and Levels of Immunity. Technical-Audiological Laboratory
and Telecom Denmark, 1995.
18. HAMPIS Report, Comparison of Mobile phone electromagnetic near field with an upscaled
electromagnetic far field, using hearing aid as reference, 21 October 1999.
19. Hearing Aids/GSM, Report from OTWIDAM, Technical-Audiological Laboratory and Telecom
Denmark, April 1993.
20. IEEE 100, The Authoritative Dictionary of IEEE Standards Terms, Seventh Edition.
21. Joyner, K. H, et. al., Interference to Hearing Aids by the New Digital Mobile Telephone System,
Global System for Mobile (GSM) Communication Standard, National Acoustic Laboratory,
Australian Hearing Series, Sydney 1993.
22. Joyner, K. H., et. al., Interference to Hearing Aids by the Digital Mobile Telephone System, Global
System for Mobile Communications (GSM), NAL Report #131, National Acoustic Laboratory,
Australian Hearing Series, Sydney, 1995.
23. Konigstein, D., and Hansen, D., “A New Family of TEM Cells with enlarged bandwidth and
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Zurich, Switzerland, March 1987; 50:9, pp. 127-132.
24. Kuk, F., and Hjorstgaard, N. K., “Factors affecting interference from digital cellular telephones,”
Hearing Journal, 1997; 50:9, pp 32-34.
25. Ma, M. A., and Kanda, M., ”Electromagnetic Compatibility and Interference Metrology,” U.S.
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17-43.
26. Ma, M. A., Sreenivashiah, I. , and Chang, D. C., “A Method of Determining the Emission and
Susceptibility Levels of Electrically Small Objects Using a TEM Cell,” U.S. Department of
Commerce, National Bureau of Standards, Technial Note 1040, July 1981.
27. McCandless, G. A., and Lyregaard, P. E., Prescription of Gain/Output (POGO) for Hearing Aids,
Hearing Instruments 1:16-21, 1983
28. Skopec, M., “Hearing Aid Electromagnetic Interference from Digital Wireless Telephones, “IEEE
Transactions on Rehabilitation Engineering, vol. 6, no. 2, pp. 235-239, June 1998.
29. Technical Report, GSM 05.90, GSM EMC Considerations, European Telecommunications
Standards Institute, January 1993.
30. Victorian, T. A., “Digital Cellular Telephone Interference and Hearing Aid Compatibility—an
Update,” Hearing Journal 1998; 51:10, pp. 53-60
31. Wong, G. S. K., and Embleton, T. F. W., eds., AIP Handbook of Condenser Microphones: Theory,
Calibration and Measurements, AIP Press.
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Download: SMG973U Multi-band GSM/EDGE/CDMA/UMTS/LTE Phone with Bluetooth, WLAN, RFID and ANT+ Test Report HAC RFE Samsung Electronics Co Ltd
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