PD470 Mobile Computing Device RF Exposure Info SAR Report 1 Hong Kong AMobile Intelligent Corp. Limited Taiwan Branch

Hong Kong AMobile Intelligent Corp. Limited Taiwan Branch Mobile Computing Device

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SAR TEST REPORT
Reference No. ...................
WTS18S11129613-1W V1
FCC ID ................................
2AQ5W-PD470
Applicant ...........................
Hong Kong AMobile Intelligent Corp. Limited Taiwan Branch
Address .............................
8F.-1, No.700, Zhongzheng Rd., Zhonghe Dist., New Taipei City 235,
Taiwan
Manufacturer ....................
SHENZHEN SHENLAN ZHILIAN TECHNOLOGY.CO.,LTD.
Address .............................
1/F, building5, tanglang tongfu industrial city, xili street, nanshan
district, shenzhen city, China
Product ..............................
Mobile Computing Device
Model(s).. ...........................
PD470
Brand Name ......................
N/A
Standards ..........................
FCC 47 CFR Part2(2.1093)
ANSI/IEEE C95.1-2006
IEEE 1528-2013 & Published RF Exposure KDB Procedures
Date of Receipt sample ....
2018-11-24
Date of Test .......................
2018-11-26 to 2018-12-01
Date of Issue .....................
2018-12-21
Test Result ........................
Pass
Remarks:
The results shown in this test report refer only to the sample(s) tested, this test report cannot be
reproduced, except in full, without prior written permission of the company. The report would be invalid
without specific stamp of test institute and the signatures of compiler and approver.
Prepared By:
Waltek Services (Shenzhen) Co., Ltd.
Address: 1/F., Fukangtai Building, West Baima Road, Songgang Street, Baoan District, Shenzhen,
Guangdong, China
Tel :+86-755-83551033
Fax:+86-755-83552400
Compiled by:
Approved by:
Ford Wang / Project Engineer
Philo Zhong / Manager
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 1 of 186
Reference No.: WTS18S11129613-1W V1
Page 2 of 186
2 Laboratories Introduction
Waltek Services (Shenzhen) Co., Ltd is a professional third-party testing and certification laboratory with
multi-year product testing and certification experience, established strictly in accordance with ISO/IEC 17025
requirements, and accredited by ILAC (International Laboratory Accreditation Cooperation) member. A2LA
(American Association for Laboratory Accreditation, the certification number is 4243.01) of USA, CNAS
(China National Accreditation Service for Conformity Assessment, the registration number is L3110) of China.
Meanwhile, Waltek has got recognition as registration and accreditation laboratory from EMSD (Electrical
and Mechanical Services Department), and American Energy star, FCC (The Federal Communications
Commission), CEC (California energy efficiency), ISED (Innovation, Science and Economic Development
Canada). It’s the strategic partner and data recognition laboratory of international authoritative organizations,
such as Intertek (ETL-SEMKO), TÜV Rheinland, TÜV SÜD, etc.
Waltek Services (Shenzhen) Co., Ltd is one of the largest and the most comprehensive third party testing
laboratory in China. Our test capability covered four large fields: safety test. Electro Magnetic Compatibility
(EMC), and energy performance, wireless radio. As a professional, comprehensive, justice international test
organization, we still keep the scientific and rigorous work attitude to help each client satisfy the international
standards and assist their product enter into globe market smoothly.
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 3 of 186
2.1 Test Facility:
A. Accreditations for Conformity Assessment (International)
Country/Region
Scope
Note
USA
FCC ID \ DOC \ VOC
Canada
IC ID \ VOC
Japan
MIC-T \ MIC-R
Europe
EMCD \ RED
NCC
OFCA
Australia
RCM
India
WPC
Thailand
NTC
Singapore
Note:
IDA
Taiwan
Hong Kong
Scope Covered By
ISO/IEC 17025
1.
FCC Designation No.: CN1201. Test Firm Registration No.: 523476.
2.
ISED Canada Registration No.: 7760A
B.TCBs and Notify Bodies Recognized Testing Laboratory.
Recognized Testing Laboratory of …
Notify body number
TUV Rheinland
Intertek
TUV SUD
Optional.
SGS
Phoenix Testlab GmbH
0700
Element Materials Technology Warwick Ltd.
0891
Timco Engineering, Inc.
1177
Eurofins Product Service GmbH
0681
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 4 of 186
3 Contents
Page
COVER PAGE ........................................................................................................................................... 1
LABORATORIES INTRODUCTION ................................................................................................................. 2
2.1
TEST FACILITY: ................................................................................................................................................ 3
CONTENTS ............................................................................................................................................................ 4
REVISION HISTORY ........................................................................................................................................... 5
GENERAL INFORMATION ................................................................................................................................ 6
5.1
5.2
GENERAL DESCRIPTION OF E.U.T. ................................................................................................................... 6
DETAILS OF E.U.T. .......................................................................................................................................... 6
EQUIPMENT USED DURING TEST .................................................................................................................. 9
6.1
6.2
EQUIPMENT LIST .............................................................................................................................................. 9
TEST EQUIPMENT CALIBRATION ...................................................................................................................... 9
SAR INTRODUCTION........................................................................................................................................ 10
7.1
7.2
INTRODUCTION .............................................................................................................................................. 10
SAR DEFINITION ............................................................................................................................................ 10
SAR MEASUREMENT SETUP .......................................................................................................................... 11
EXPOSURE LIMIT ............................................................................................................................................. 21
10
SYSTEM AND LIQUID VALIDATION ............................................................................................................ 22
10.1
10.2
SYSTEM VALIDATION ................................................................................................................................ 22
LIQUID VALIDATION .................................................................................................................................. 24
11
TYPE A MEASUREMENT UNCERTAINTY .................................................................................................. 38
12
OUTPUT POWER VERIFICATION ................................................................................................................. 41
13
EXPOSURE CONDITIONS CONSIDERATION ............................................................................................. 76
14
SAR TEST RESULTS .......................................................................................................................................... 78
15
SAR MEASUREMENT REFERENCE ............................................................................................................. 95
MAXIMUM SAR MEASUREMENT PLOTS ................................................................................................................... 96
16
CALIBRATION REPORTS-PROBE AND DIPOLE ..................................................................................... 119
17
SAR SYSTEM PHOTOS ................................................................................................................................... 183
18
SETUP PHOTOS ................................................................................................................................................ 184
19
EUT PHOTOS .................................................................................................................................................... 186
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 5 of 186
4 Revision History
Test report No.
Date of
Receipt
sample
Date of Test
Date of
Issue
Purpose
Comment
Approved
WTS18S11129
613-1W
2018-11-24
2018-11-26
to 2018-1201
2018-12-13
original
Replaced
WTS18S11129
613-1W V1
2018-11-24
2018-11-26
to 2018-1201
2018-12-21
Version 1
Updated
Valid
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 6 of 186
5 General Information
5.1 General Description of E.U.T.
Product:
Mobile Computing Device
Model(s):
PD470
Model Description:
N/A
GSM Band(s):
GSM 850/900/1800/1900MHz
GPRS/EGPRS Class:
12
WCDMA Band(s):
FDD Band I/II/IV/V/VIII
LTE Band(s):
FDD Band 2/4/5/7/12/17
Wi-Fi Specification:
2.4G-802.11b/g/n HT20/n HT40
5G-802.11a/n HT20/n HT40/ac HT20/ac HT40/ac HT80
Bluetooth Version:
Bluetooth v4.1 with BLE
GPS:
Support
NFC:
Support
Hardware Version:
S6_MB_V1.2
Software Version:
PD470_V02_20181127
Note:
This EUT has two SIM card slots, and use same one RF module.
We found that RF parameters are the same, when we insert the
card 1 and card 2. So we usually performed the test under main
card slot 1.
5.2 Details of E.U.T.
Operation Frequency:
GSM/GPRS/EDGE 850: 824~849MHz
PCS/GPRS/EDGE 1900: 1850~1910MHz
WCDMA Band II: 1850~1910MHz
WCDMA Band V: 824~849MHz
WCDMA Band IV:1710~1755MHz
LTE Band 2: 1850~1910MHz
LTE Band 4: 1710~1755MHz
LTE Band 5: 842~849MHz
LTE Band 7: 2500-2570MHz
LTE Band 12: 699-716MHz
LTE Band 17: 704-716MHz
2.4G WiFi:
802.11b/g/n HT20: 2412~2462MHz
802.11n HT40: 2422~2452MHz
5G WiFi:
802.11a/ n(HT20/40)/ac(HT20/40/80): 5150MHz to 5250MHz
802.11a/ n(HT20/40)/ac(HT20/40/80): 5725MHz to 5850MHz
Bluetooth: 2402~2480MHz
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 7 of 186
BLE:2402-2480MHz
Max. RF output power:
GSM 850: 32.55dBm
PCS1900: 30.38dBm
WCDMA Band II: 22.78dBm
WCDMA Band V: 22.86dBm
WCDMA Band IV: 22.68dBm
LTE Band 2: 22.98dBm
LTE Band 4: 23.92dBm
LTE Band 5: 23.79dBm
LTE Band 7: 23.31dBm
LTE Band 12: 23.67dBm
LTE Band 17: 23.81dBm
WiFi(2.4G):8.41dBm
WiFi(5G):7.0dBm
Bluetooth: 8.11dBm
BLE:-4.93dBm
Max.SAR:
0.78 W/Kg 1g Head Tissue
0.79 W/Kg 1g Body Tissue
0.79 W/Kg 1g Hotspot
Max Simultaneous SAR
1.10 W/Kg
Type of Modulation:
GSM,GPRS: GMSK
EDGE: GMSK, 8PSK
WCDMA: BPSK
LTE: QPSK, 16QAM
WiFi: CCK, OFDM
Bluetooth: GFSK, Pi/4 DQPSK,8DPSK
Antenna installation
GSM/WCDMA/LTE: internal permanent antenna
WiFi/Bluetooth: internal permanent antenna
Antenna Gain:
GSM 850: -1.0dBi
PCS1900: -1.5dBi
WCDMA Band II: -1.5dBi
WCDMA Band V: -1.0dBi
WCDMA Band IV: -1.5dBi
LTE Band 2: -1.5dBi
LTE Band 4: -1.5dBi
LTE Band 5: -1.0dBi
LTE Band 7: -2.0dBi
LTE Band 12: -1.0dBi
LTE Band 17: -1.0dBi
WiFi(2.4G): -1.5dBi
WiFi(5G): -2.0dBi
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
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Bluetooth: -1.5dBi
BLE: -1.5dBi
Ratings:
Battery DC 3.8V, 4000mAh
DC 5V, 2.0A/9V,2.0A/12V,1.5A charging from adapter
(Adapter Input: 100-240V~50/60Hz 0.6A)
Adapter:
Manufacturer: ShenZhen HuaJin Electronics CO.,LTD
Model No.: HJ-FC010K7-US
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 9 of 186
Reference No.: WTS18S11129613-1W V1
6 Equipment Used during Test
6.1 Equipment List
Name of
Equipment
Manufacturer
6 AXIS ROBOT
KUKA
Serial Number
Calibration
Date
Calibration
Due
KR6 R900
SIXX
502635
N/A
N/A
MVG
OPENSAR
OPENSAR
V_4_02_27
N/A
N/A
MVG
N/A
SAR_1215_01
N/A
N/A
SAM PHANTOM
MVG
SAM118
MultiMeter
Data Acquisition
Electronics
S-Parameter
Network
Analyzer
Universal Radio
Communication
Tester
Wideband Radio
Communication
Tester
Keithley
SATIMO Test
Software
PHANTOM
TABLE
Type/Model
N/A
N/A
MiltiMeter 2000
SN 11/15
SAM118
4073942
2018-02-28
2019-02-27
MVG
DAE4
915
2018-02-28
2019-02-27
Agilent
8753E
JP38160684
2018-09-15
2019-09-14
ROHDE&SCHW
ARZ
CMU200
114798
2018-09-15
2019-09-14
ROHDE&SCHW
ARZ
CMW500
2018-09-15
2019-09-14
E-Field Probe
MVG
SSE5
2018-09-07
2019-09-06
DIPOLE 750
MVG
SID750
2018-02-28
2019-02-27
DIPOLE 835
MVG
SID835
DIPOLE 1800
MVG
SID1800
DIPOLE 1900
MVG
SID1900
DIPOLE 2600
MVG
SID2600
Limesar
Dielectric Probe
MVG
SCLMP
Power Amplifier
BONN
Signal Generator
SN 07/15
EP247
SN 09/15 DIP
0G750-357
SN 09/15 DIP
0G835-358
SN 09/15 DIP
1G800-360
SN 09/15 DIP
1G900-361
SN 16/15 DIP
2G600-376
SN 11/15
OCPG 69
2018-02-28
2019-02-27
2018-02-28
2019-02-27
2018-02-28
2019-02-27
2018-02-28
2019-02-27
2018-02-28
2019-02-27
BLWA 0830
-160/100/40D
128740
2018-09-15
2019-09-14
R&S
SMB100A
105942
2018-09-15
2019-09-14
Power Meter
R&S
NRP2
102031
2018-09-15
2019-09-14
Power Meter
R&S
NRVD
102284
2018-09-15
2019-09-14
USB Wideband
Power Sensor
USB Wideband
Power Sensor
Malaysia
Keysight
Malaysia
Keysight
U2021XA
MY54340009
2018-04-20
2019-04-19
U2021XA
MY54340010
2018-04-20
2019-04-19
6.2 Test Equipment Calibration
All the test equipments used are valid and calibrated by CEPREI Certification Body that
address is No.110 Dongguan Zhuang RD. Guangzhou, P.R.China.
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 10 of 186
7 SAR Introduction
7.1 Introduction
This measurement report shows compliance of the EUT with ANSI/IEEE C95.1-2006 and
FCC 47 CFR Part2 (2.1093)
The test procedures, as described in IEEE 1528-2013 Standard for IEEE Recommended
Practice for Determining the Peak Spatial-Average Specific Absorption Rate (SAR) in the
Human Head from Wireless Communications Devices: Measurement
Techniques(300MHz~6GHz) and Published RF Exposure KDB Procedures
7.2 SAR Definition
SAR : Specific Absorption Rate
The SAR characterize the absorption of energy by a quantity of tissue
This is related to a increase of the temperature of these tissues during a time period.
where:
σ = conductivity of the tissue (S/m)
ρ = mass density of the tissue (kg/m3)
E = rms electric field strength (V/m)
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8 SAR Measurement Setup
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The OPENSAR system for performing compliance tests consist of the following
items:
1. A standard high precision 6-axis robot (KUKA) with controller and software.
2. KUKA Control Panel (KCP).
3. A dosimetric probe, i.e., an isotropic E-field probe optimized and calibrated for
usage in tissue simulating liquid. The probe is equipped with an optical surface
detector system.
4. The functions of the PC plug-in card are to perform the time critical task such as
signal filtering, surveillance of the robot operation fast movement interrupts.
5. A computer operating Windows 7.
6. OPENSAR software.
7. Remote control with teaches pendant and additional circuitry for robot safety such
as warning lamps, etc.
8. The SAM phantom enabling testing left-hand right-hand and body usage.
9. The Position device for handheld EUT.
10. Tissue simulating liquid mixed according to the given recipes (see Application
Note).
11. System validation dipoles to validate the proper functioning of the system.
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Data Evaluation
The OPENSAR software automatically executes the following procedure to calculate the field units from the
microvolt readings at the probe connector. The parameters used in the valuation are stored in the
configuration modules of the software:
Probe
Parameters
Device
Parameter
Media
Parametrs
Sensitivity
Normi
Conversion factor
ConvFi
Diode compression point
Dcpi
Frequency
Crest factor
cf
Conductivity

Density

These parameters must be set correctly in the software. They can either be found in the component
documents or be imported into the software from the configuration files issued for the OPENSAR
components.
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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From the compensated input signals the primary field data for each channel can be evaluated:
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SAR Evaluation – Peak Spatial - Average
The procedure for assessing the peak spatial-average SAR value consists of the following steps
• Power Reference Measurement
The reference and drift jobs are useful jobs for monitoring the power drift of the device under
test in the batch process. Both jobs measure the field at a specified reference position, at a
selectable distance from the phantom surface. The reference position can be either the
selected section's grid reference point or a user point in this section. The reference job
projects the selected point onto the phantom surface, orients the probe perpendicularly to the
surface, and approaches the surface
using the selected detection method.
• Area Scan
The area scan is used as a fast scan in two dimensions to find the area of high field values,
before doing a finer measurement around the hot spot. The sophisticated
interpolation routines implemented in OPENSAR software can find the maximum
locations even in relatively coarse grids.
The scan area is defined by an editable grid.
This grid is anchored at the grid reference point of the selected section in the phantom.
When the area scan's property sheet is brought-up, grid was at to 15 mm by 15 mm and can
be edited by a user.
• Zoom Scan
Zoom scans are used to assess the peak spatial SAR values within a cubic averaging
volume containing 1 g and 10 g of simulated tissue. The default zoom scan measures 5 x 5
x 7 points within a cube whose base faces are centered around the maximum found in a
preceding area scan job within the same procedure. If the preceding Area Scan job indicates
more then one maximum, the number of Zoom Scans has to be enlarged accordingly (The
default number inserted is 1).
• Power Drift measurement
The drift job measures the field at the same location as the most recent reference job within
the same procedure, and with the same settings. The drift measurement gives the field
difference in dB from the reading conducted within the last reference measurement. Several
drift measurements are possible for one reference measurement. This allows a user to
monitor the power drift of the device under test within a batch process.
In the properties of
the Drift job, the user can specify a limit for the drift and have OPENSAR software stop the
measurements if this limit is exceeded.
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SAR Evaluation – Peak SAR
The procedure for spatial peak SAR evaluation has been implemented according to the IEEE1528 standard.
It can be conducted for 1 g and 10 g. The OPENSAR system allows evaluations that combine measured
data and robot positions, such
as:
• maximum search
• extrapolation
• boundary correction
• peak search for averaged SAR
During a maximum search, global and local maximum searches are automatically performed in 2-D after
each Area Scan measurement with at least 6 measurement points. It is based on the evaluation of the local
SAR gradient calculated by the Quadratic Shepard's method. The algorithm will find the global maximum
and all local maxima within -2 dB of the global maxima for all SAR distributions.
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Extrapolation
Extrapolation routines are used to obtain SAR values between the lowest measurement points and the inner
phantom surface. The extrapolation distance is determined by the surface detection distance and the probe
sensor offset. Several measurements at different distances are necessary for the extrapolation.
They are used in the Cube Scan to obtain SAR values between the lowest measurement points and the
inner phantom surface. The routine uses the fourth order least square polynomial method for extrapolation.
For a grid using 5x5x7 measurement points with 5mm resolution amounting to 343 measurement points, the
uncertainty of the extrapolation routines is less than 1% for 1 g and 10 g cubes.
Definition of Reference Points
Ear Reference Point
Figure 6.2 shows the front, back and side views of the SAM Phantom. The point “M” is the reference point for
the center of the mouth, “LE” is the left ear reference point (ERP), and “RE” is the right ERP. The ERPs are
15mm posterior to the entrance to the ear canal (EEC) along the B-M line (Back-Mouth), as shown in Figure
6.1. The plane passing through the two ear canals and M is defined as the Reference Plane. The line N-F
(Neck-Front) is perpendicular to the reference plane and passing through the RE (or LE) is called the
Reference Pivoting Line (see Figure 6.1). Line B-M is perpendicular to the N-F line. Both N-F and B-M lines
are marked on the external phantom shell to facilitate handset positioning [5].
Device Reference Points
Two imaginary lines on the device need to be established: the vertical centerline and the horizontal line. The
test device is placed in a normal operating position with the “test device reference point” located along the
“vertical centerline” on the front of the device aligned to the “ear reference point” (See Fig. 6.3). The “test
device reference point” is than located at the same level as the center of the ear reference point. The test
device is positioned so that the “vertical centerline” is bisecting the front surface of the device at it’s top and
bottom edges, positioning the “ear reference point” on the outer surface of both the left and right head
phantoms on the ear reference point [5].
Test Configuration – Positioning for Cheek / Touch
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1. Position the device close to the surface of the phantom such that point A is on the (virtual) extension
of the line passing through points RE and LE on the phantom (see Figure below), such that the plane
defined by the vertical center line and the horizontal line of the device is approximately parallel to the
sagittal plane of the phantom
2. Translate the device towards the phantom along the line passing through RE and LE until the device
touches the ear.
3. While maintaining the device in this plane, rotate it around the LE-RE line until the vertical centerline
is in the plane normal to MB-NF including the line MB (called the reference plane).
4. Rotate the device around the vertical centerline until the device (horizontal line) is symmetrical with
respect to the line NF.
5. While maintaining the vertical centerline in the reference plane, keeping point A on the line passing
through RE and LE and maintaining the device contact with the ear, rotate the device about the line
NF until any point on the device is in contact with a phantom point below the ear (cheek). See
Figure below.
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Test Configuration – Positioning for Ear / 15° Tilt
With the test device aligned in the Cheek/Touch Position”:
1. While maintaining the orientation of the device, retracted the device parallel to the reference plane far
enough to enable a rotation of the device by 15 degrees.
2. Rotate the device around the horizontal line by 15 degrees.
3. While maintaining the orientation of the device, move the device parallel to the reference plane until any
part of the device touches the head. (In this position, point A is located on the line RE-LE). The tilted
position is obtained when the contact is on the pinna. If the contact is at any location other than the pinna,
the angle of the device shall be reduced. The tilted position is obtained when any part of the device is in
contact with the ear as well as a second part of the device is in contact with the head (see Figure below).
Test Position – Body Configurations
Body Worn Position
(a) To position the device parallel to the phantom surface with either keypad up or down.
(b) To adjust the device parallel to the flat phantom.
(c) To adjust the distance between the device surface and the flat phantom to 1.0 cm or holster surface and
the flat phantom to 0 cm.
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9 Exposure limit
In order for users to be aware of the body-worn operating requirements for meeting RF exposure compliance,
operating instructions and cautions statements are included in the user’s manual.
Uncontrolled Environment
Uncontrolled Environments are defined as locations where there is the exposure of individuals who
have no knowledge or control of their exposure. The general population/uncontrolled exposure
limits are applicable to situations in which the general public may be exposed or in which persons
who are exposed as a consequence of their employment may not be made fully aware of the
potential for exposure or cannot exercise control over their exposure. Members of the general
public would come under this category when exposure is not employment-related; for example, in
the case of a wireless transmitter that exposes persons in its vicinity.
Controlled Environment
Controlled Environments are defined as locations where there is exposure that may be incurred by
persons who are aware of the potential for exposure, (i.e. as a result of employment or occupation).
In general, occupational/controlled exposure limits are applicable to situations in which persons are
exposed as a consequence of their employment, who have been made fully aware of the potential
for exposure and can exercise control over their exposure. This exposure category is also
applicable when the exposure is of a transient nature due to incidental passage through a location
where the exposure levels may be higher than the general population/uncontrolled limits, but the
exposed person is fully aware of the potential for exposure and can exercise control over his or her
exposure by leaving the area or by some other appropriate means.
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10 System and liquid validation
10.1 System validation
The system performance check verifies that the system operates within its specifications. System and
operator errors can be detected and corrected. It is recommended that the system performance check be
performed prior to any usage of the system in order to guarantee reproducible results. The system
performance check uses normal SAR measurements in a simplified setup with a well characterized source.
This setup was selected to give a high sensitivity to all parameters that might fail or vary over time. The
system check does not intend to replace the calibration of the components, but indicates situations where the
system uncertainty is exceeded due to drift or failure.
In the simplified setup for system evaluation, the DUT is replaced by a calibrated dipole and the power
source is replaced by a continuous wave that comes from a signal generator. The calibrated dipole must be
placed beneath the flat phantom section of the SAM twin phantom with the correct distance holder. The
distance holder should touch the phantom surface with a light pressure at the reference marking and be
oriented parallel to the long side of the phantom. The equipment setup is shown below:
1. Signal Generator
2. Amplifier
3. Directional Coupler
4. Power Meter
5. Calibrated Dipole
The output power on dipole port must be calibrated to 30 dBm (1000 mW) before dipole is connected.
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Reference No.: WTS18S11129613-1W V1
Numerical reference SAR values (W/kg) for reference dipole and
flat phantom
Frequency
(MHz)
1g SAR
300
450
750
835
900
1450
1800
1900
2000
2450
2600
3000
3.02
4.92
8.49
9.56
10.9
29.0
38.4
39.7
41.1
52.4
55.3
63.8
10g SAR
Local SAR at
surface(above
feed-point)
Local SAR at
surface(y = 2 cm
offset from
feedpoint)
2.04
3.28
5.55
6.22
6.99
16.0
20.1
20.5
21.1
24.0
24.6
25.7
4.40
7.20
12.6
14.1
16.4
50.2
69.5
72.1
74.6
104
113
140
2.10
3.20
4.59
4.90
5.40
6.50
6.80
6.60
6.50
7.70
8.29
9.50
Table 1: system validation (1g)
Measurement
Date
Frequency
(MHz)
Liquid Type
(head/body)
1W Target
SAR1g
(W/kg)
Measured
SAR1g
(W/kg)
2018-11-27
2018-11-27
2018-11-26
2018-11-26
2018-11-30
2018-11-30
2018-12-01
2018-12-01
2018-11-28
2018-11-28
750
750
835
835
1800
1800
1900
1900
2600
2600
head
body
head
body
head
body
head
body
head
body
8.78
8.59
9.58
9.78
38.76
38.90
39.49
40.01
56.32
55.20
0.0844
0.0828
0.0965
0.0925
0.3739
0.3963
0.3929
0.3878
0.5449
0.5568
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1W
Normalized
SAR1g
(W/kg)
8.44
8.28
9.65
9.25
37.39
39.63
39.29
38.78
54.49
55.68
Deviation
(%)
-3.9
-3.6
0.7
-5.4
-3.5
1.9
-0.5
-3.1
-3.2
0.9
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10.2 liquid validation
The dielectric parameters were checked prior to assessment using the HP85070C dielectric probe
kit. The dielectric parameters measured are reported in each correspondent section.
KDB 865664 recommended Tissue Dielectric Parameters
The head and body tissue parameters given in this below table should be used to measure the
SAR of transmitters operating in 100 MHz to 6 GHz frequency range. The tissue dielectric
parameters of the tissue medium at the test frequency should be within the tolerance required in
this document. The dielectric parameters should be linearly interpolated between the closest pair of
target frequencies to determine the applicable dielectric parameters corresponding to the device
test frequency.
The head tissue dielectric parameters recommended by IEEE Std 1528-2013 have been
incorporated in the following table. These head parameters are derived from planar layer models
simulating the highest expected SAR for the dielectric properties and tissue thickness variations in
a human head. Other head and body tissue parameters that have not been specified in 1528 are
derived from tissue dielectric parameters computed from the 4-Cole-Cole equations described
above and extrapolated according to the head parameters specified in 1528.
Target Frequency
Head Tissue
Body Tissue
MHz
εr
Ơ (S/m)
εr
Ơ (S/m)
150
52.3
0.76
61.9
0.80
300
45.3
0.87
58.2
0.92
450
43.5
0.87
56.7
0.94
835
41.5
0.90
55.2
0.97
900
41.5
0.97
55.0
1.05
915
41.5
0.98
55.0
1.06
1450
40.5
1.20
54.0
1.30
1610
40.3
1.29
53.8
1.40
1800-2000
40.0
1.40
53.3
1.52
2450
39.2
1.80
52.7
1.95
2600
39.0
1.96
52.5
2.16
3000
38.5
2.40
52.0
2.73
5800
35.3
5.27
48.2
6.00
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Tissue Dielectric Parameters for Head and Body Phantoms
The head tissue dielectric parameters recommended by the IEEE SCC-34/SC-2 in P1528 have
been incorporated in the following table. These head parameters are derived from planar layer
models simulating the highest expected SAR for the dielectric properties and tissue thickness
Power drifts in a human head. Other head and body tissue parameters that have not been
specified in P1528 are derived from the tissue dielectric parameters computed from the 4-ColeCole equations described in Reference [12] and extrapolated according to the head parameters
specified in P1528.
Table 2: Recommended Dielectric Performance of Tissue
Recommended Dielectric Performance of Tissue
Frequency (MHz)
Ingredients
(% by
weight )
750
835
1800
1900
2450
2600
Tissue Type
Head
Body
Head
Body
Head
Body
Head
Body
Head
Body
Head
Body
Water
40.52
51.83
41.45
52.4
55.2
70.2
54.9
40.4
62.7
73.2
54.8
68.1
Salt (Nacl)
1.61
1.52
1.45
1.4
0.3
0.4
0.18
0.5
0.5
0.04
0.1
0.01
Sugar
57.67
46.45
56.0
45.0
0.0
0.0
0.0
58.0
0.0
0.0
0.0
0.0
HEC
0.1
0.1
1.0
1.0
0.0
0.0
0.0
1.0
0.0
0.0
0.0
0.0
Bactericide
0.1
0.1
0.1
0.1
0.0
0.0
0.0
0.1
0.0
0.0
0.0
0.0
0.0
0.0
0.0
Triton x-100
0.0
0.0
0.0
0.0
0.0
0.0
0.0
0.0
36.8
DGBE
0.0
0.0
0.0
0.0
44.5
29.4
44.92
0.0
0.0
26.7
45.1
31.8
Dielectric
40.93
54.32
42.54
56.1
40.0
53.3
39.9
54.0
39.8
52.5
39.0
52.5
Conductivity
0.87
0.95
0.91
0.95
1.40
1.52
1.42
1.45
1.88
1.78
1.96
2.15
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Table 3: Dielectric Performance of Head Tissue Simulating Liquid
Temperature: 21.9°C , Relative humidity: 57%
Frequency(MHz)
700
750
835
1700
Measured Date
Description
2018-11-27
Target Value
±5% window
2018-11-27
2018-11-26
2018-11-30
1800
2018-11-30
1900
2018-12-01
2500
2018-11-28
2600
2018-11-28
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Dielectric Parameters
εr
σ(s/m)
41.50
0.90
39.43 — 43.58
0.855 — 0.945
Measurement Value
41.78
0.94
Target Value
±5% window
41.50
39.43 — 43.58
0.90
0.855 — 0.945
Measurement Value
41.52
0.94
Target Value
±5% window
41.50
39.43 — 43.58
0.90
0.855 — 0.945
Measurement Value
41.12
0.91
Target Value
±5% window
40.00
38.00 — 42.00
1.40
1.33 — 1.47
Measurement Value
41.59
1.37
Target Value
±5% window
Measurement Value
Target Value
±5% window
Measurement Value
Target Value
±5% window
Measurement Value
Target Value
±5% window
Measurement Value
40.00
38.00 — 42.00
40.79
40.00
38.00 — 42.00
40.94
39.0
37.05 — 40.95
39.42
39.0
37.05 — 40.95
39.77
1.40
1.33 — 1.47
1.37
1.40
1.33 — 1.47
1.44
1.96
1.87 — 2.05
1.97
1.96
1.87 — 2.05
1.98
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Table 4: Dielectric Performance of Body Tissue Simulating Liquid
Temperature: 22°C , Relative humidity: 56%
Frequency(MHz)
700
750
835
1700
1800
1900
2500
2600
Measured Date
Description
2018-11-27
Target Value
±5% window
2018-11-27
2018-11-26
2018-11-30
2018-11-30
2018-12-01
2018-11-28
2018-11-28
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Dielectric Parameters
εr
σ(s/m)
55.2
0.97
52.63 — 57.75
0.922 — 1.018
Measurement Value
53.45
0.94
Target Value
±5% window
55.2
52.63 — 57.75
0.97
0.922 — 1.018
Measurement Value
53.14
0.99
Target Value
±5% window
55.2
52.63 — 57.75
0.97
0.922 — 1.018
Measurement Value
55.14
0.96
Target Value
±5% window
53.30
50.64 — 55.97
1.52
1.44 — 1.60
Measurement Value
53.74
1.50
Target Value
±5% window
53.30
50.64 — 55.97
1.52
1.44 — 1.60
Measurement Value
53.02
1.50
Target Value
±5% window
53.30
50.64 — 55.97
1.52
1.44 — 1.60
Measurement Value
53.02
1.53
Target Value
±5% window
52.50
49.88 — 55.12
2.16
2.06 — 2.26
Measurement Value
52.82
2.15
Target Value
±5% window
52.50
49.88 — 55.12
2.16
2.06 — 2.26
Measurement Value
52.51
2.17
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System Verification Plots
Product Description: Dipole
Model: SID750
Test Date: 2018-11-27
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_750
750.000000
41.52
0.94
10mW
SN 07/15 EP247
1:1
6.99
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.45
0.055124
0.084359
SURFACE SAR
VOLUME SAR
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Product Description: Dipole
Model: SID750
Test Date: 2018-11-27
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_750
750.000000
53.14
0.94
10mW
SN 07/15 EP247
1:1
7.28
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.05
0.054597
0.082784
SURFACE SAR
VOLUME SAR
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Product Description: Dipole
Model: SID835
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_835
835.000000
41.12
0.91
10mW
SN 07/15 EP247
1:1
6.93
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.12
0.062456
0.096478
SURFACE SAR
VOLUME SAR
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Product Description: Dipole
Model: SID835
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_835
835.000000
55.14
0.96
10mW
SN 07/15 EP247
1:1
7.13
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.17
0.059005
0.092479
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 32 of 186
Product Description: Dipole
Model: SID1800
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1800
1800.000
40.79
1.37
10mW
SN 07/15 EP247
1:1
5.84
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.04
0.199451
0.373874
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 33 of 186
Product Description: Dipole
Model: SID1800
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1800
1800.000
53.02
1.50
10mW
SN 07/15 EP247
1:1
6.06
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.02
0.209845
0.396341
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 34 of 186
Product Description: Dipole
Model: SID1900
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1900
1900.000
40.94
1.44
10mW
SN 07/15 EP247
1:1
6.35
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.15
0.204945
0.392940
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 35 of 186
Product Description: Dipole
Model: SID1900
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1900
1900.000
53.02
1.53
10mW
SN 07/15 EP247
1:1
6.55
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.15
0.210510
0.387817
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 36 of 186
Product Description: Dipole
Model: SID2600
Test Date: 2018-11-28
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_2600
2600.000
39.77
1.98
10mW
SN 07/15 EP247
1:1
5.37
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.26
0.246815
0.544912
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 37 of 186
Product Description: Dipole
Model: SID2600
Test Date: 2018-11-28
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Input power
E-Field Probe
Duty cycle
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_2600
2600.000
52.51
2.17
10mW
SN 07/15 EP247
1:1
5.58
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.23
0.235661
0.556801
SURFACE SAR
VOLUME SAR
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Page 38 of 186
Reference No.: WTS18S11129613-1W V1
11 Type a Measurement Uncertainty
The component of uncertainly may generally be categorized according to the methods used to evaluate them.
The evaluation of uncertainly by the statistical analysis of a series of observations is termed a Type An
evaluation of uncertainty. The evaluation of uncertainty by means other than the statistical analysis of a
series of observation is termed a Type B evaluation of uncertainty. Each component of uncertainty, however
evaluated, is represented by an estimated standard deviation, termed standard uncertainty, which is
determined by the positive square root of the estimated variance
A Type A evaluation of standard uncertainty may be based on any valid statistical method for treating data.
This includes calculating the standard deviation of the mean of a series of independent observations; using
the method of least squares to fit a curve to the data in order to estimate the parameter of the curve and their
standard deviations; or carrying out an analysis of variance in order to identify and quantify random effects in
certain kinds of measurement.
A type B evaluation of standard uncertainty is typically based on scientific judgment using all of the relevant
information available. These may include previous measurement data, experience and specification, data
provided in calibration reports and uncertainties assigned to reference data taken from handbooks. Broadly
speaking, the uncertainty is either obtained from an outdoor source or obtained from an assumed distribution,
such as the normal distribution, rectangular or triangular distributions indicated in Table below :
Uncertainty
Distribution
Multi-plying
Factor(a)
Normal
Rectangle
Triangular
U Shape
1/k(b)
1 / √3
1 / √6
1 / √2
(a) standard uncertainty is determined as the product of the multiplying factor and the estimated range of
variations in the measured quantity
(b) κ is the coverage factor
Standard Uncertainty for Assumed Distribution
The combined standard uncertainty of the measurement result represents the estimated standard deviation
of the result. It is obtained by combining the individual standard uncertainties of both Type A and Type -sumby taking the positive square root of the estimated variances.
Expanded uncertainty is a measure of uncertainty that defines an interval about the measurement result
within which the measured value is confidently believed to lie. It is obtained by multiplying the combined
standard uncertainty by a coverage factor. Typically, the coverage factor ranges from 2 to 3. Using a
coverage factor allows the true value of a measured quantity to be specified with a defined probability within
the specified uncertainty range. For purpose of this document, a coverage factor two is used, which
corresponds to confidence interval of about 95 %.
The COMOSAR Uncertainty Budget is show in below table:
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Page 39 of 186
Reference No.: WTS18S11129613-1W V1
UNCERTAINTY FOR SYSTEM PERFORMANCE CHECK
Uncertainty Component
Measurement System
Probe Calibration
Axial Isotropy
Hemispherical Isotropy
Boundary Effect
Linearity
System Detection Limits
Readout Electronics
Response Time
Integration Time
RF Ambient Conditions
Probe Positioner Mechanical
Tolerance
Probe Positioning with respect to
Phantom Shell
Extrapolation, interpolation and
Integration Algorithms for Max.
SAR Evaluation
Dipole
Dipole Axis to Liquid Distance
Input Power and SAR drift
measurement
Phantom and Tissue Parameters
Phantom Uncertainty (shape and
thickness tolerances)
Liquid Conductivity - deviation from
target values
Liquid Conductivity - measurement
uncertainty
Liquid Permittivity - deviation from
target values
Liquid Permittivity - measurement
uncertainty
Combined Standard Uncertainty
Expanded Uncertainty
(95% CONFIDENCE INTERVAL)
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ci
(1 g)
ci
(10 g)
√3
(1cp)1/2
(1cp)1/2
√3
√3
√3
√3
√3
√3
√3
√Cp
√Cp
1,4
√3
1,4
√3
2,3
Tol.
(± %)
Prob.
Dist.
Div.
5,8
5,9
4,7
0,5
1,4
3,5
1g
ui
(± %)
10 g
ui
(± %)
vi
5,8
5,8
∞
1,42887 1,42887
∞
2,40866
0,57735
2,71355
0,57735
0,5
0,80829
1,73205
2,40866
0,57735
2,71355
0,57735
0,5
0,80829
1,73205
∞
∞
∞
∞
∞
∞
∞
∞
0,80829 0,80829
∞
0,80829 0,80829
∞
√3
1,32791 1,32791
∞
√3
1,1547
√3
2,88675 2,88675
∞
√3
2,3094
2,3094
∞
√3
0,64
0,43
1,84752 1,2413
∞
0,64
0,43
√3
0,6
0,49
0,6
0,49
RSS
2,56
1,1547
1,72
1,73205 1,41451
2,45
9.6671
9.1646
19.3342 18.3292
N-1
∞
Page 40 of 186
Reference No.: WTS18S11129613-1W V1
UNCERTAINTY EVALUATION FOR HANDSET SAR TEST
Uncertainty Component
Measurement System
Probe Calibration
Axial Isotropy
Hemispherical Isotropy
Boundary Effect
Linearity
System Detection Limits
Readout Electronics
Response Time
Integration Time
RF Ambient Conditions
Probe Positioner Mechanical
Tolerance
Probe Positioning with respect to
Phantom Shell
Extrapolation, interpolation and
Integration Algorithms for Max.
SAR Evaluation
Test sample Related
Test Sample Positioning
Device Holder Uncertainty
Output Power Variation - SAR drift
measurement
Phantom and Tissue Parameters
Phantom Uncertainty (shape and
thickness tolerances)
Liquid Conductivity - deviation from
target values
Liquid Conductivity - measurement
uncertainty
Liquid Permittivity - deviation from
target values
Liquid Permittivity - measurement
uncertainty
Combined Standard Uncertainty
Expanded Uncertainty
(95% CONFIDENCE INTERVAL)
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1g
ui
(± %)
10 g
ui
(± %)
vi
5,8
1,43
5,8
1,43
∞
∞
√Cp
2,41
0,58
2,71
0,58
0,50
0,00
0,81
1,73
2,41
0,58
2,71
0,58
0,50
0,00
0,81
1,73
∞
∞
∞
∞
∞
∞
∞
∞
0,81
0,81
∞
√3
0,81
0,81
∞
√3
1,33
1,33
∞
2,6
2,60
3,00
2,60
3,00
N-1
N-1
√3
2,89
2,89
∞
√3
2,31
2,31
∞
√3
0,64
0,43
1,85
1,24
∞
0,64
0,43
2,56
1,72
√3
0,6
0,49
1,73
1,41
∞
0,6
0,49
3,00
2,45
RSS
10.39
9.92
20.78
19.84
ci
(1 g)
Tol.
(± %)
Prob.
Dist.
Div.
5,8
3,5
√3
5,9
4,7
0,5
1,4
√3
√3
√3
√3
√3
√3
√3
√Cp
1,4
√3
1,4
2,3
ci
(10 g)
1/2
(1-cp)
(1-cp)1/2
Page 41 of 186
Reference No.: WTS18S11129613-1W V1
12 Output Power Verification
Test Condition:
1.
Conducted Measurement
EUT was set for low, mid, high channel with modulated mode and highest RF output power.
The base station simulator was connected to the antenna terminal.
Conducted Emissions Measurement Uncertainty
All test measurements carried out are traceable to national standards. The uncertainty of the
measurement at a confidence level of approximately 95% (in the case where distributions are
normal), with a coverage factor of 2, in the range 30MHz – 40GHz is ±1.5dB.
Environmental Conditions
Temperature
23oC
Relative Humidity
53%
Atmospheric Pressure
1019mbar
Test Date : 2018-11-26
Tested By : Andy Feng
Test Procedures:
Smart phone radio output power measurement
1. The transmitter output port was connected to base station emulator.
2. Establish communication link between emulator and EUT and set EUT to operate at
maximum output power all the time.
3. Select lowest, middle, and highest channels for each band and different possible test
mode.
4. Measure the conducted peak burst power and conducted average burst power from EUT
antenna port.
Other radio output power measurement:
The output power was measured using power meter at low, mid, and hi channels.
Source-based Time Averaged Burst Power Calculation:
For TDMA, the following duty cycle factor was used to calculate the source-based time
average power
Number of Time slot
Duty Cycle
Duty cycle factor
Crest Factor
1:8
-9.03 dB
1:4
-6.02 dB
1:2.66
-4.26 dB
2.66
1:2
-3.01 dB
Remark: Time slot duty cycle factor = 10 * log (Time Slot Duty Cycle)
Source based time averaged power = Maximum burst averaged power (1 Uplink) – 9.03 dB
Source based time averaged power = Maximum burst averaged power (2 Uplink) – 6.02 dB
Source based time averaged power = Maximum burst averaged power (3 Uplink) – 4.26 dB
Source based time averaged power = Maximum burst averaged power (4 Uplink) – 3.01 dB
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Page 42 of 186
Reference No.: WTS18S11129613-1W V1
Test Result:
Burst Average Power (dBm);
GSM850
Band
PCS1900
512
661
810
Tune
up
Power
tolerant
Channel
128
190
251
Tune up
Power
tolerant
Frequency (MHz)
824.2
836.6
848.8
1850.2
1880
1909.8
GSM Voice
32.53
32.54
32.55
32±1
30.36
30.32
30.30
30±1
GPRS 1 slots
32.47
32.52
32.51
32±1
30.25
30.38
30.34
30±1
GPRS 2 slots
31.68
31.67
31.65
31±1
29.45
29.49
29.51
29±1
GPRS 3 slots
30.75
30.75
30.78
30±1
28.56
28.58
28.69
28±1
GPRS 4 slots
29.88
29.84
29.88
29±1
27.62
27.69
27.77
27±1
EGPRS 1 slots
26.24
26.19
26.19
26±1
25.53
25.28
25.30
25±1
EGPRS 2 slots
25.36
25.39
25.39
25±1
24.74
24.39
24.49
24±1
EGPRS 3 slots
24.54
24.51
24.56
24±1
23.84
23.46
23.56
23±1
EGPRS 4 slots
23.69
23.67
23.75
23±1
22.89
22.59
22.74
22±1
Remark :
GPRS, CS1 coding scheme.
EGPRS, MCS5 coding scheme.
Multi 1 Slot , Support Max 4 downlink, 1 uplink , 5 working link
Multi 2 Slots , Support Max 4 downlink, 2 uplink , 5 working link
Multi 3 Slots , Support Max 4 downlink, 3 uplink , 5 working link
Multi 4 Slots , Support Max 4 downlink, 4 uplink , 5 working link
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Page 43 of 186
Reference No.: WTS18S11129613-1W V1
Source Based time Average Power (dBm)
GSM850
Band
PCS1900
Channel
128
190
251
Frequency (MHz)
824.2
836.6
848.8
Time
Average
factor
512
661
810
Time
Average
factor
1850.2
1880
1909.8
GSM Voice
23.50
23.51
23.52
-9.03
21.33
21.29
21.27
-9.03
GPRS 1 slots
23.44
23.49
23.48
-9.03
21.22
21.35
21.31
-9.03
GPRS 2 slots
25.66
25.65
25.63
-6.02
23.43
23.47
23.49
-6.02
GPRS 3 slots
26.49
26.49
26.52
-4.26
24.30
24.32
24.43
-4.26
GPRS 4 slots
26.87
26.83
26.87
-3.01
24.61
24.68
24.76
-3.01
EGPRS 1 slots
17.21
17.16
17.16
-9.03
16.50
16.25
16.27
-9.03
EGPRS 2 slots
19.34
19.37
19.37
-6.02
18.72
18.37
18.47
-6.02
EGPRS 3 slots
20.28
20.25
20.30
-4.26
19.58
19.20
19.30
-4.26
EGPRS 4 slots
20.68
20.66
20.74
-3.01
19.88
19.58
19.73
-3.01
Remark :
Time average factor = 1 uplink , 10*log(1/8)=-9.03dB , 2 uplink , 10*log(2/8)=-6.02dB , 3 uplink , 10*log(3/8)=4.26dB ,4 uplink , 10*log(4/8)=-3.01dB
Source based time average power = Burst Average power + Time Average factor
Note: DUT was set in GPRS(4Tx slots) due to the Maximum source-base time average
output power for body SAR.
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Page 44 of 186
Reference No.: WTS18S11129613-1W V1
WCDMA - Average Power (dBm)
WCDMA Band II
Band
WCDMA Band V
Channel
9262
9400
9538
Tune
up
Power
tolerant
Frequency
(MHz)
1852.4
1880
1907.6
826.4
836.6
846.6
RMC
12.2k
22.66
22.74
22.78
22±1
22.81
22.86
22.81
22±1
HSDPA
Subtest-1
21.59
21.61
21.67
21±1
22.37
22.38
22.50
22±1
HSDPA
Subtest-2
21.55
21.56
21.65
21±1
22.35
22.35
22.51
22±1
HSDPA
Subtest-3
21.52
21.52
21.62
21±1
22.33
22.31
22.45
22±1
HSDPA
Subtest-4
21.51
21.55
21.59
21±1
22.36
22.29
22.43
22±1
HSUPA
Subtest-1
21.65
21.80
21.80
21±1
21.95
22.01
22.09
22±1
HSUPA
Subtest-2
21.64
21.78
21.78
21±1
21.92
21.95
22.05
22±1
HSUPA
Subtest-3
21.66
21.77
21.74
21±1
21.95
21.96
22.06
22±1
HSUPA
Subtest-4
21.63
21.74
21.72
21±1
21.93
21.99
22.03
22±1
HSUPA
Subtest-5
21.61
21.71
21.70
21±1
21.91
21.93
22.04
22±1
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4132
4183
4233
Tune
up
Power
tolerant
Page 45 of 186
Reference No.: WTS18S11129613-1W V1
WCDMA - Average Power (dBm)
WCDMA BandⅣ
Band
Channel
1312
1413
1513
Tune up
Power
tolerant
Frequency (MHz)
1712.4
1732.6
1752.6
RMC 12.2k
22.68
22.60
22.53
22±1
HSDPA Subtest-1
21.82
21.74
21.68
21±1
HSDPA Subtest-2
21.78
21.71
21.66
21±1
HSDPA Subtest-3
21.74
21.73
21.65
21±1
HSDPA Subtest-4
21.71
21.70
21.63
21±1
HSUPA Subtest-1
21.36
21.36
21.30
21±1
HSUPA Subtest-2
21.35
21.35
21.28
21±1
HSUPA Subtest-3
21.33
21.33
21.25
21±1
HSUPA Subtest-4
21.34
21.30
21.22
21±1
HSUPA Subtest-5
21.30
21.28
21.21
21±1
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Reference No.: WTS18S11129613-1W V1
Page 46 of 186
LTE Power Reduction
The following tests were conducted according to the test requirements outlined in section 6.2 of the
3GPP TS36.101 specification.
The allowed Maximum Power Reduction (MPR) for the maximum output power due to higher order
modulation and transmit bandwidth configuration (resource blocks) is specified in Table 6.2.3-1 of the 3GPP
TS36.101.
The allowed A-MPR values specified below in Table 6.2.4.-1 of 3GPP TS36.101 are in addition to the
allowed MPR requirements. All the measurements below were performed with A-MPR disabled, by using
Network Signalling Value of “NS_01”.
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Reference No.: WTS18S11129613-1W V1
Page 47 of 186
LTE Band 2:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18607
1850.7
16QAM
QPSK
1.4MHz
18900
1880
16QAM
QPSK
19193
1909.3
16QAM
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UL RB
Allocation
UL RB
Offset
Average
Power (dbm)
22.68
22.9
22.68
22.8
22.76
22.78
21.74
21.72
21.89
21.72
21.78
21.77
21.78
20.87
22.43
22.62
22.51
22.61
22.56
22.57
21.53
21.77
21.92
21.76
21.71
21.7
21.73
20.38
22.55
22.76
22.52
22.56
22.61
22.57
21.58
21.43
21.6
21.43
21.67
21.67
21.63
20.68
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18615
1851.5
16QAM
QPSK
3MHz
18900
1880
16QAM
QPSK
19185
1908.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 48 of 186
UL RB
Allocation
15
15
15
15
15
15
UL RB
Offset
14
14
14
14
14
14
Average
Power (dbm)
22.72
22.74
22.65
21.76
21.83
21.73
21.71
21.59
21.55
21.55
20.88
20.88
20.79
20.75
22.47
22.45
22.44
21.49
21.55
21.51
21.45
21.81
21.81
21.79
20.61
20.64
20.52
20.51
22.54
22.6
22.58
21.52
21.61
21.54
21.52
21.46
21.46
21.38
20.54
20.61
20.52
20.48
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18625
1852.5
16QAM
QPSK
5MHz
18900
1880
16QAM
QPSK
19175
1907.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 49 of 186
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
12
24
11
12
24
11
12
24
11
12
24
11
12
24
11
12
24
11
Average
Power (dbm)
22.61
22.73
22.57
21.71
21.75
21.69
21.65
21.79
21.91
21.74
20.78
20.83
20.75
20.7
22.37
22.52
22.34
21.44
21.5
21.42
21.4
21.8
21.95
21.78
20.55
20.64
20.58
20.5
22.36
22.5
22.41
21.51
21.55
21.44
21.42
21.44
21.56
21.42
20.54
20.6
20.46
20.42
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18650
1855
16QAM
QPSK
10MHz
18900
1880
16QAM
QPSK
19150
1905
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 50 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
24
49
12
24
24
49
12
24
24
49
12
24
24
49
12
24
24
49
12
24
24
49
12
24
Average
Power (dbm)
22.72
22.81
22.64
21.73
21.7
21.67
21.68
21.59
21.69
21.51
20.8
20.73
20.7
20.69
22.43
22.54
22.44
21.5
21.47
21.44
21.51
21.76
21.89
21.76
20.54
20.54
20.5
20.48
22.5
22.62
22.54
21.53
21.44
21.42
21.46
21.38
21.63
21.44
20.61
20.56
20.49
20.47
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18675
1857.5
16QAM
QPSK
15MHz
18900
1880
16QAM
QPSK
19125
1902.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 51 of 186
UL RB
Allocation
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
UL RB
Offset
37
74
16
35
37
74
16
35
37
74
16
35
37
74
16
35
37
74
16
35
37
74
16
35
Average
Power (dbm)
22.63
22.63
22.42
21.74
21.76
21.64
21.7
21.52
21.5
21.34
20.71
20.69
20.64
20.69
22.38
22.45
22.37
21.55
21.55
21.53
21.55
21.74
21.77
21.68
20.54
20.53
20.54
20.47
22.42
22.46
22.43
21.6
21.57
21.5
21.51
21.64
21.74
21.72
20.42
20.42
20.35
20.43
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
18700
1860
16QAM
QPSK
20MHz
18900
1880
16QAM
QPSK
19100
1900
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 52 of 186
UL RB
Allocation
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
22.63
22.77
22.35
21.59
21.61
21.43
21.59
21.86
21.87
21.85
20.67
20.67
20.48
20.59
22.91
22.98
22.35
21.87
21.92
21.77
21.45
21.75
21.93
21.66
20.47
20.45
20.41
20.44
22.27
22.51
22.34
21.44
21.4
21.22
21.33
21.59
21.88
21.66
20.37
20.35
20.2
20.34
Tune up
limited(dBm)
MPR
(dB)
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
22.0±1
22.0±1
22.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
21.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Page 53 of 186
Reference No.: WTS18S11129613-1W V1
LTE Band 4:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
19957
1710.7
16QAM
QPSK
1.4MHz
20175
1732.5
16QAM
QPSK
20393
1754.3
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
UL RB
Allocation
UL RB
Offset
Average
Power (dbm)
Tune up
limited(dBm)
MPR
(dB)
23.44
23.0±1
23.62
23.42
23.45
23.47
23.43
22.48
22.39
22.59
22.37
22.42
22.44
22.41
21.57
23.31
23.5
23.33
23.31
23.35
23.34
22.4
22.57
22.7
22.56
22.49
22.47
22.45
21.21
23.29
23.5
23.28
23.4
23.4
23.4
22.39
22.31
22.45
22.31
22.58
22.48
22.55
21.51
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
19965
1711.5
16QAM
QPSK
3MHz
20175
1732.5
16QAM
QPSK
20385
1753.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 54 of 186
UL RB
Allocation
15
15
15
15
15
15
UL RB
Offset
14
14
14
14
14
14
Average
Power (dbm)
23.46
23.42
23.38
22.45
22.5
22.43
22.39
22.27
22.21
22.22
21.5
21.54
21.47
21.39
23.31
23.28
23.3
22.3
22.38
22.32
22.25
22.6
22.6
22.62
21.38
21.35
21.36
21.27
23.36
23.35
23.34
22.36
22.39
22.35
22.37
22.39
22.33
22.34
21.39
21.44
21.4
21.34
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
19975
1712.5
16QAM
QPSK
5MHz
20175
1732.5
16QAM
QPSK
20375
1752.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 55 of 186
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.33
23.45
23.29
22.29
22.44
22.35
22.31
22.43
22.52
22.41
21.42
21.45
21.37
21.36
23.23
23.35
23.21
22.22
22.3
22.24
22.23
22.66
22.76
22.61
21.39
21.44
21.36
21.29
23.2
23.34
23.24
22.32
22.39
22.3
22.28
22.36
22.44
22.32
21.44
21.41
21.4
21.29
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20000
1715
16QAM
QPSK
10MHz
20175
1732.5
16QAM
QPSK
20350
1750
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 56 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.48
23.57
23.31
22.38
22.36
22.39
22.38
22.25
22.38
22.27
21.39
21.42
21.4
21.34
23.31
23.42
23.31
22.3
22.3
22.3
22.26
22.65
22.72
22.56
21.35
21.29
21.36
21.3
23.28
23.46
23.34
22.4
22.34
22.27
22.38
22.24
22.43
22.33
21.52
21.43
21.4
21.42
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20025
1717.5
16QAM
QPSK
15MHz
20175
1732.5
16QAM
QPSK
20325
1747.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 57 of 186
UL RB
Allocation
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.43
23.37
23.24
22.49
22.52
22.42
22.46
22.21
22.3
22.18
21.39
21.42
21.34
21.44
23.3
23.33
23.23
22.42
22.47
22.48
22.47
22.68
22.61
22.5
21.38
21.39
21.38
21.41
23.24
23.27
23.31
22.39
22.39
22.38
22.42
22.48
22.71
22.66
21.34
21.35
21.29
21.37
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20050
1720
16QAM
QPSK
20MHz
20175
1732.5
16QAM
QPSK
20300
1745
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 58 of 186
UL RB
Allocation
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.36
23.54
23.26
22.36
22.34
22.28
22.32
22.76
22.90
22.66
21.38
21.42
21.32
21.36
23.79
23.92
23.83
22.75
22.83
22.77
22.3
22.64
22.8
22.54
21.3
21.31
21.32
21.27
23.17
23.4
23.25
22.23
22.28
22.13
22.23
22.39
22.76
22.65
21.23
21.23
21.1
21.22
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Page 59 of 186
Reference No.: WTS18S11129613-1W V1
LTE Band 5:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20407
824.7
16QAM
QPSK
1.4MHz
20525
836.5
16QAM
QPSK
20634
848.3
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
UL RB
Allocation
UL RB
Offset
Average
Power (dbm)
Tune up
limited(dBm)
MPR
(dB)
23.12
23.0±1
23.17
23.1
23.26
23.3
23.25
22.16
22.3
22.44
22.25
22.29
22.31
22.36
21.36
23.1
23.3
23.04
23.16
23.2
23.2
22.05
22.48
22.62
22.47
22.39
22.39
22.41
21.02
23.06
23.28
23.06
23.25
23.29
23.25
22.13
22.13
22.36
22.2
22.42
22.44
22.38
21.36
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20415
825.5
16QAM
QPSK
3MHz
20525
836.5
16QAM
QPSK
20635
847.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 60 of 186
UL RB
Allocation
15
15
15
15
15
15
UL RB
Offset
14
14
14
14
14
14
Average
Power (dbm)
23.15
23.07
23.04
22.14
22.19
22.12
22.12
22.08
22.05
22.03
21.3
21.34
21.27
21.22
23.04
23.04
23.04
22.09
22.08
22.05
22.06
22.48
22.48
22.45
21.24
21.23
21.15
21.12
23.06
23.11
23.11
22.05
22.15
22.09
22.14
22.16
22.14
22.11
21.17
21.24
21.17
21.13
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20425
826.5
16QAM
QPSK
5MHz
20525
836.5
16QAM
QPSK
20625
846.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 61 of 186
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.04
23.13
22.96
22.08
22.15
22.14
22.08
22.25
22.31
22.24
21.21
21.28
21.19
21.22
23.06
23.1
22.95
22.09
22.09
22
22.05
22.51
22.61
22.44
21.28
21.29
21.19
21.18
22.98
23.08
23
22.08
22.13
21.98
22.03
22.12
22.21
22.12
21.2
21.24
21.09
21.05
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20450
829
16QAM
QPSK
10MHz
20525
836.5
16QAM
QPSK
20600
844
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 62 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.11
23.13
22.98
22.16
22.13
21.98
22.06
22.06
22.2
22.05
21.22
21.22
21.1
21.15
23.61
23.79
23.74
22.31
22.91
22.89
22.23
22.52
22.65
22.42
21.4
21.23
21.3
21.3
23.03
23.16
23.13
21.96
22.09
22.08
22.02
22.05
22.18
22.15
21.1
21.27
21.17
21.06
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
Page 63 of 186
LTE Band 7:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20775
2502.5
16QAM
QPSK
5MHz
21100
2535
16QAM
QPSK
21425
2567.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.04
23.08
23.1
22.28
22.3
22.27
22.25
22.31
22.38
22.22
21.28
21.35
21.28
21.2
22.78
22.95
22.76
21.91
21.98
21.9
21.89
21.98
22.13
21.97
21
21.02
21.01
21.94
22.78
22.94
22.86
21.92
21.95
21.87
21.9
22.21
22.37
22.29
21.01
21.04
21.05
21.03
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20800
2505
16QAM
QPSK
10MHz
21100
2535
16QAM
QPSK
21400
2565
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 64 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.05
23.01
23.05
22.26
22.3
22.28
22.27
22.23
22.23
21.99
21.29
21.28
21.3
21.25
22.9
23.11
22.85
22
22
21.97
22
22.26
22.42
22.24
21.02
21.02
21.99
21.97
22.86
23.09
22.93
21.99
21.91
21.88
21.9
21.82
21.95
21.89
21.05
21.99
21
21.94
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20825
2507.5
16QAM
QPSK
15MHz
21100
2535
16QAM
QPSK
21375
2562.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 65 of 186
UL RB
Allocation
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
36
36
36
75
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.23
23.17
22.95
22.37
22.33
22.25
22.28
22.19
22.12
21.9
21.29
21.27
21.14
21.24
22.87
22.93
22.79
22.04
22.05
22.06
22.02
22.19
22.28
22.11
21.03
21.02
21.02
21.01
22.82
22.92
22.87
22.05
22.01
21.99
22
22.15
22.2
22.12
21.94
21.93
21.86
21.92
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
20850
2510
16QAM
QPSK
20MHz
21100
2535
16QAM
QPSK
21350
2560
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 66 of 186
UL RB
Allocation
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
50
50
50
100
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.06
23.03
22.89
22.13
22.16
22.1
22.14
22.74
22.73
22.42
21.15
21.23
21.1
21.11
22.82
23.31
22.78
22.92
22.96
22.92
21.94
22.2
22.45
22.2
21.92
21.02
21.95
21.96
22.69
23.06
22.72
21.9
21.92
21.74
21.83
22.07
22.33
22.13
21.1
21.11
21.06
21.13
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Page 67 of 186
Reference No.: WTS18S11129613-1W V1
LTE Band 12:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23017
699.7
16QAM
QPSK
1.4MHz
23095
707.5
16QAM
QPSK
23173
715.3
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
UL RB
Allocation
UL RB
Offset
Average
Power (dbm)
Tune up
limited(dBm)
MPR
(dB)
23.01
23.0±1
23.15
22.95
23.22
23.15
23.13
22.06
22.11
22.26
22.14
22.2
22.18
22.24
21.24
23.04
23.19
23.04
23.17
23.19
23.17
22.1
22.49
22.58
22.46
22.42
22.37
22.47
21.02
23.04
23.22
23.07
23.18
23.21
23.18
22.08
22.12
22.23
22.08
22.36
22.4
22.32
21.28
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23025
700.5
16QAM
QPSK
3MHz
23095
707.5
16QAM
QPSK
23165
714.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 68 of 186
UL RB
Allocation
15
15
15
15
15
15
UL RB
Offset
14
14
14
14
14
14
Average
Power (dbm)
23.14
23.11
23.08
22.16
22.17
22.12
22.14
22.03
22
22.04
21.27
21.3
21.28
21.22
23.19
23.1
23.17
22.17
22.2
22.16
22.18
22.61
22.53
22.52
21.3
21.32
21.28
21.27
23.12
23.13
23.13
22.21
22.22
22.19
22.2
22.21
22.16
22.06
21.28
21.29
21.23
21.21
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23035
701.5
16QAM
QPSK
5MHz
23095
707.5
16QAM
QPSK
23155
713.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 69 of 186
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.04
23.2
23.14
22.11
22.21
22.18
22.15
22.2
22.32
22.32
21.24
21.33
21.31
21.21
23.13
23.18
23.08
22.14
22.18
22.19
22.12
22.65
22.7
22.59
21.29
21.37
21.4
21.26
23.05
23.14
23.02
22.22
22.2
22.2
22.2
22.16
22.23
22.14
21.32
21.34
21.27
21.2
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23060
704
16QAM
QPSK
10MHz
23095
707.5
16QAM
QPSK
23130
711
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 70 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.12
23.33
23.1
22.27
22.27
22.35
22.28
22.01
22.35
22.03
21.32
21.33
21.4
21.3
23.12
23.67
23.14
22.88
22.92
22.22
22.21
22.55
22.66
22.53
21.28
21.3
21.34
21.27
23.16
23.28
23.14
22.16
22.2
22.1
22.12
22.2
22.33
22.11
21.34
21.35
21.26
21.25
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
Page 71 of 186
LTE Band 17:
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23755
706.5
16QAM
QPSK
5MHz
23790
710
16QAM
QPSK
23825
713.5
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
UL RB
Allocation
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
12
12
12
25
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.23
23.36
23.18
22.27
22.37
22.35
22.32
22.31
22.52
22.28
21.35
21.49
21.39
21.32
23.16
23.29
23.17
22.27
22.33
22.22
22.25
22.4
22.47
22.34
21.36
21.43
21.34
21.32
23.18
23.33
23.19
22.32
22.36
22.35
22.35
22.65
22.89
22.71
21.54
21.54
21.45
21.43
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
BW(MHz)
Ch
Freq(MHz)
Mode
QPSK
23780
709
16QAM
QPSK
10MHz
23790
710
16QAM
QPSK
23800
711
16QAM
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Page 72 of 186
UL RB
Allocation
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
25
25
25
50
UL RB
Offset
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
49
99
24
49
Average
Power (dbm)
23.23
23.47
23.22
22.31
22.36
22.3
22.31
22.24
22.36
22.2
21.36
21.42
21.37
21.34
23.29
23.81
23.76
22.78
22.96
22.24
22.26
22.68
22.78
22.64
21.37
21.41
21.3
21.32
23.31
23.45
23.28
22.34
22.37
22.26
22.28
22.35
22.42
22.32
21.46
21.47
21.42
21.35
Tune up
limited(dBm)
MPR
(dB)
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
23.0±1
23.0±1
23.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
22.0±1
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
1.0
Reference No.: WTS18S11129613-1W V1
Page 73 of 186
WIFI Mode (2.4G)
Mode
Channel
number
Frequency
(MHz)
Data
rate(Mbps)
Average
Output
Power(dBm)
Average
Tune up
limited(dBm)
2412
8.01
7.5±1
2437
8.40
7.5±1
11
2462
8.38
7.5±1
2412
8.41
7.5±1
2437
8.24
7.5±1
11
2462
8.11
7.5±1
2412
MCS0
8.18
7.5±1
2437
MCS0
8.25
7.5±1
11
2462
MCS0
8.37
7.5±1
2422
MCS0
8.37
7.5±1
2437
MCS0
8.02
7.5±1
2452
MCS0
8.08
7.5±1
802.11b
802.11g
802.11n(HT20)
802.11n(HT40)
Remark:11n(HT40) channel:3/4/5/6/7/8/9
Bluetooth Measurement Result
Mode
Frequency (MHz)
Average Output
Power(dBm)
Tune up
limited(dBm)
2402
7.64
2441
6.24
7.0±1
7.0±1
2480
6.42
2402
7.18
2441
5.46
2480
5.80
2402
7.21
2441
5.77
7.0±1
5.0±1
2480
5.79
5.0±1
Frequency (MHz)
Average Output
Power(dBm)
Tune up
limited(dBm)
GFSK
π/4DQPSK
8DPSK
7.0±1
7.0±1
5.0±1
5.0±1
BLE Measurement Result
Channel number
2402
-5.90
-6.0±1
19
2440
-6.11
-6.0±1
39
2480
-6.50
-6.0±1
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Reference No.: WTS18S11129613-1W V1
Page 74 of 186
WIFI Mode (5G Band I)
Mode
802.11a
802.11n
(20MHz)
802.11n
(40MHz)
802.11ac
(20MHz)
802.11ac
(40MHz)
802.11ac
(80MHz)
Channel
number
Frequency
(MHz)
Data
rate(Mbps)
Average
Output
Power(dBm)
Average
Tune up
limited(dBm)
36
5180
6.71
6.0±1
40
5200
6.51
6.0±1
48
5240
6.97
6.0±1
36
5180
MCS0
6.67
6.0±1
40
5200
MCS0
6.75
6.0±1
48
5240
MCS0
6.75
6.0±1
38
5190
MCS0
6.78
6.0±1
46
5230
MCS0
6.79
6.0±1
36
5180
MCS0
6.57
6.0±1
40
5200
MCS0
6.82
6.0±1
48
5240
MCS0
6.90
6.0±1
38
5190
MCS0
6.77
6.0±1
46
5230
MCS0
6.80
6.0±1
42
5210
MCS0
6.75
6.0±1
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Reference No.: WTS18S11129613-1W V1
Page 75 of 186
WIFI Mode (5G Band IV)
Mode
802.11a
802.11n
(20MHz)
802.11n
(40MHz)
802.11ac
(20MHz)
802.11ac
(40MHz)
802.11ac
(80MHz)
Channel
number
Frequency
(MHz)
Data
rate(Mbps)
Average
Output
Power(dBm)
Average
Tune up
limited(dBm)
149
5745
6.67
6.0±1
157
5785
6.66
6.0±1
165
5825
7.00
6.0±1
149
5745
MCS0
6.44
6.0±1
157
5785
MCS0
6.87
6.0±1
165
5825
MCS0
6.77
6.0±1
151
5755
MCS0
6.75
6.0±1
159
5795
MCS0
6.87
6.0±1
149
5745
MCS0
6.69
6.0±1
157
5785
MCS0
6.69
6.0±1
165
5825
MCS0
6.99
6.0±1
151
5755
MCS0
6.80
6.0±1
159
5795
MCS0
6.98
6.0±1
155
5775
MCS0
6.54
6.0±1
Waltek Services (Shenzhen) Co.,Ltd.
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Page 76 of 186
Reference No.: WTS18S11129613-1W V1
13 Exposure Conditions Consideration
WiFi/BT
Antenna
EUT antenna location:
Top Edge
76mm
53mm
Front side
of Device
Left
Right
160mm
144mm
WWAN
Antenna
5.2cm
30mm
Bottom Edge
Test position consideration:
Antennas
WWAN
WLAN
Bluetooth
Distance of EUT antenna-to-edge/surface(mm),
Test distance:10mm
Back side
Front side
Left Edge
Right Edge
Top Edge
11
11
11
Antennas
Back side
WWAN
WLAN
Bluetooth
YES
NO
NO
11
11
11
53
53
30
10
10
Test distance:10mm
Front side
Left Edge
Right Edge
YES
NO
NO
YES
NO
NO
NO
NO
NO
Bottom Edge
144
146
146
Top Edge
Bottom Edge
NO
NO
NO
YES
NO
NO
Note:
1. Head/Body SAR/Hotspot mode assessments are required.
2. Referring to KDB 941225 D06v02r01, when the overall device length and width are ≥ 9cm * 5cm, the test
distance is 10mm. SAR must be measured for all sides and surfaces with a transmitting antenna located
within 25mm from that surface or edge.
3. Per KDB 447498 D01v06, for handsets the test separation distance is determined by the smallest distance
between the outer surface of the device and the user, which is 0 mm for head SAR, 10 mm for body SAR.
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Reference No.: WTS18S11129613-1W V1
Page 77 of 186
RF Exposure
Smart phone-PD470, FCC ID: 2AQ5W-PD470
Standard Requirement:
According to §15.247 (i) and §1.1307(b)(1), systems operating under the provisions of this section shall be
operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of
the Commission’s guidelines.
Routine SAR evaluation refers to that specifically required by § 2.1093, using measurements or computer
simulation. When routine SAR evaluation is not required, portable transmitters with output power greater
than the applicable low threshold require SAR evaluation to qualify for TCB approval.
Exclusion Thresholds = P F / D
P= Maximum turn-up power in mW
F= Channel frequency in GHz
D= Minimum test separation distance in mm
Test Distance (5mm)
Mode
MAX
Power
(dBm)
Tune Up
Power
(dBm)
Max Tune Up
Power (dBm)
Max Tune
Up Power
(mW)
Exclusion
Thresholds
Limit
2.4G WIFI
5G WIFI
Bluetooth
BLE
8.41
7.00
7.64
-5.90
7.5±1
6.0±1
7.0±1
-6.0±1
8.5
7.0
8.0
-5.0
7.08
5.01
6.31
0.32
2.199
2.418
1.956
0.099
Mode
MAX
Power
(dBm)
Tune Up
Power
(dBm)
Max Tune Up
Power (dBm)
Max Tune
Up Power
(mW)
Exclusion
Thresholds
Limit
2.4G WIFI
5G WIFI
Bluetooth
BLE
8.41
7.00
7.64
-5.90
7.5±1
6.0±1
7.0±1
-6.0±1
8.5
7.0
8.0
-5.0
7.08
5.01
6.31
0.32
1.100
1.209
0.978
0.050
Test Distance (10mm)
Result: Compliance
No SAR measurement is required.
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 78 of 186
14 SAR Test Results
Test Condition:
1.
SAR Measurement
The distance between the EUT and the antenna of the emulator is more than 50 cm and the output
power radiated from the emulator antenna is at least 30 dB less than the output power of EUT.
Environmental Conditions
Temperature
Relative Humidity
Atmospheric Pressure
Test Date : 2018-11-26~2018-12-01
Tested By : Andy Feng
23oC
57%
1019mbar
Generally Test Procedures:
1. Establish communication link between EUT and base station emulation by air link.
2. Place the EUT in the selected test position. (Cheek, tilt or flat)
3. Perform SAR testing at middle or highest output power channel under the selected test mode. If the
measured 1-g SAR is ≤ 0.8 W/kg, then testing for the other channel will not be performed.
4. When SAR is<0.8W/kg, no repeated SAR measurement is required
For WCDMA test:
1. KDB941225 D01-Body SAR is not required for HSDPA when the average output of each RF channel with
HSDPA active is less than 0.25dB higher than measured without HSDPA using 12.2kbps RMC or the
maximum SAR for 12.2kbps RMC<75% of the SAR limit.
2. KDB941225 D01-Body SAR is not required for handset with HSPA capabilities when the maximum
average output of each RF channel with HSUPA/HSDPA active is less than 0.25dB higher than that
measure without HSUPA/HSDPA using 12.2kbps RMC AND THE maximum SAR for 12.2kbps RMC
is<75% of the SAR limit
For LTE test:
1. According to FCC KDB 941225 D05v02r05:
a. Per Section 5.2.1, SAR is required for QPSK 1 RB Allocation for the largest bandwidth
i. The required channel and offset combination with the highest maximum output power is required for
SAR.
ii. When the reported SAR is ≤ 0.8 W/kg, testing of the remaining RB offset configurations and required
test channels is not required. Otherwise, SAR is required for the remaining required test channels using
the RB offset configuration with highest output power for that channel.
iii. When the reported SAR for a required test channel is > 1.45 W/kg, SAR is required for all RB offset
configurations for that channel.
b. Per Section 5.2.2, SAR is required for 50% RB allocation using the largest bandwidth following the same
procedures outlined in Section 5.2.1.
c. Per Section 5.2.3, QPSK SAR is not required for the 100% allocation when the highest maximum output
power for the 100% allocation is less than the highest maximum output power of the 1 RB and 50% RB
allocations and the reported SAR for the 1 RB and 50% RB allocations is < 0.8 W/kg.
d. Per Section 5.2.4 and 5.3, SAR tests for higher order modulations and lower bandwidths configurations
are not required when the conducted power of the required test configurations determined by Sections
5.2.1 through 5.2.3 is less than or equal to ½ dB higher than the equivalent configuration using QPSK
modulation and when the QPSK SAR for those configurations is <1.45 W/kg.
e. A-MPR was disabled for all SAR tests by setting NS=01 on the base station simulator. SAR tests were
performed with the same number of RB and RB offsets transmitting on all TTI frames (maximum TTI).
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 79 of 186
SAR Summary Test Result:
Table 5: SAR Values of GSM 850MHz Band
Channel
Test Positions
CH.
MHz
Cheek
190
836.6
Tilt
190
836.6
Cheek
190
836.6
Tilt
190
836.6
190
836.6
190
836.6
190
836.6
190
836.6
190
836.6
190
836.6
Right Head
Left Head
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Test
Mode
Voice
call
Voice
call
Voice
call
Voice
call
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
Plot
No.
Maximum
Turn-up
Power(dBm)
Measured
output
power(dBm)
33
32.54
0.648
0.72
33
32.54
0.457
0.51
--
33
32.54
0.512
0.57
--
33
32.54
0.482
0.54
--
30
29.84
0.339
0.35
--
30
29.84
0.411
0.43
30
29.84
0.339
0.35
--
30
29.84
0.411
0.43
30
29.84
0.224
0.23
--
30
29.84
0.090
0.09
--
Reference No.: WTS18S11129613-1W V1
Page 80 of 186
Table 6: SAR Values of GSM 1900MHz Band
Channel
Test Positions
CH.
MHz
Cheek
661
1880
Tilt
661
1880
Cheek
661
1880
Tilt
661
1880
661
1880
661
1880
661
1880
661
1880
661
1880
661
1880
Right Head
Left Head
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Test
Mode
Voice
call
Voice
call
Voice
call
Voice
call
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
GPRS
4 slots
Waltek Services (Shenzhen) Co.,Ltd.
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SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
Plot
No.
Maximum
Turn-up
Power(dBm)
Measured
output
power(dBm)
31
30.32
0.534
0.62
31
30.32
0.428
0.50
--
31
30.32
0.398
0.47
--
31
30.32
0.150
0.18
--
28
27.69
0.694
0.75
28
27.69
0.537
0.58
--
28
27.69
0.694
0.75
28
27.69
0.537
0.58
--
28
27.69
0.061
0.07
--
28
27.69
0.515
0.55
--
Reference No.: WTS18S11129613-1W V1
Page 81 of 186
Table 7: SAR Values of WCDMA BAND V
Channel
Test Positions
CH.
MHz
Cheek
4183
836.6
Tilt
4183
836.6
Cheek
4183
836.6
Tilt
4183
836.6
4183
836.6
4183
836.6
4183
836.6
4183
836.6
4183
836.6
4183
836.6
Right Head
Left Head
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Test
Mode
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
Waltek Services (Shenzhen) Co.,Ltd.
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SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
Plot
No.
Maximum
Turn-up
Power(dBm)
Measured
output
power(dBm)
23
22.86
0.432
0.45
23
22.86
0.343
0.35
--
23
22.86
0.356
0.37
--
23
22.86
0.355
0.37
--
23
22.86
0.324
0.33
--
23
22.86
0.409
0.42
23
22.86
0.324
0.33
--
23
22.86
0.409
0.42
23
22.86
0.218
0.23
--
23
22.86
0.087
0.09
--
Reference No.: WTS18S11129613-1W V1
Page 82 of 186
Table 8: SAR Values of WCDMA BANDⅡ
Channel
Test Positions
CH.
MHz
Cheek
9400
1880
Tilt
9400
1880
Cheek
9400
1880
Tilt
9400
1880
9400
1880
9400
1880
9400
1880
9400
1880
9400
1880
9400
1880
Right Head
Left Head
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Test
Mode
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
Waltek Services (Shenzhen) Co.,Ltd.
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SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
Plot
No.
Maximum
Turn-up
Power(dBm)
Measured
output
power(dBm)
23
22.74
0.735
0.78
23
22.74
0.387
0.41
--
23
22.74
0.706
0.75
--
23
22.74
0.208
0.22
--
23
22.74
0.670
0.71
23
22.74
0.524
0.56
--
23
22.74
0.670
0.71
23
22.74
0.524
0.56
--
23
22.74
0.073
0.08
23
22.74
0.483
0.51
--
Reference No.: WTS18S11129613-1W V1
Page 83 of 186
Table 9: SAR Values of WCDMA BAND IV
Channel
Test Positions
CH.
MHz
Cheek
1413
1732.6
Tilt
1413
1732.6
Cheek
1413
1732.6
Tilt
1413
1732.6
1413
1732.6
1413
1732.6
1413
1732.6
1413
1732.6
1413
1732.6
1413
1732.6
Right Head
Left Head
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Test
Mode
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
RMC
12.2kbps
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SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
Plot
No.
Maximum
Turn-up
Power(dBm)
Measured
output
power(dBm)
23
22.60
0.671
0.74
10
23
22.60
0.406
0.45
--
23
22.60
0.562
0.62
--
23
22.60
0.207
0.23
--
23
22.60
0.717
0.79
11
23
22.60
0.619
0.68
--
23
22.60
0.717
0.79
11
23
22.60
0.619
0.68
--
23
22.60
0.096
0.11
--
23
22.60
0.655
0.72
--
Page 84 of 186
Reference No.: WTS18S11129613-1W V1
Table 10: SAR Values of LTE BAND 2 , 20MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
50%RB
#24
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
MPR
(dB)
Plot
No.
CH.
MHz
18900
18900
18900
18900
1880
1880
1880
1880
Maximum
Turn-up
Power(dBm)
23
23
23
23
18900
1880
23
22.98
0.667
0.67
--
18900
1880
23
22.98
0.434
0.44
--
18900
1880
23
22.98
0.667
0.67
--
18900
1880
23
22.98
0.434
0.44
--
18900
1880
23
22.98
0.411
0.42
--
18900
1880
23
22.98
0.495
0.50
--
18900
18900
18900
18900
1880
1880
1880
1880
22
22
22
22
21.92
21.92
21.92
21.92
0.432
0.272
0.664
0.182
0.44
0.28
0.68
0.19
-----
18900
1880
22
21.92
0.668
0.68
13
18900
1880
22
21.92
0.426
0.43
--
18900
1880
22
21.92
0.668
0.68
13
18900
1880
22
21.92
0.426
0.43
--
18900
1880
22
21.92
0.407
0.41
--
18900
1880
22
21.92
0.496
0.51
--
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Measured
output
power(dBm)
22.98
22.98
22.98
22.98
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
0.431
0.44
0.269
0.27
0.692
0.70
0.186
0.19
--12
--
Page 85 of 186
Reference No.: WTS18S11129613-1W V1
Table 11: SAR Values of LTE BAND 4, 20MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
50%RB
#24
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
MPR
(dB)
Plot
No.
CH.
MHz
20175
20175
20175
20175
1732.5
1732.5
1732.5
1732.5
Maximum
Turn-up
Power(dBm)
24
24
24
24
20175
1732.5
24
23.92
0.687
0.70
14
20175
1732.5
24
23.92
0.430
0.44
--
20175
1732.5
24
23.92
0.687
0.70
14
20175
1732.5
24
23.92
0.430
0.44
--
20175
1732.5
24
23.92
0.390
0.40
--
20175
1732.5
24
23.92
0.524
0.53
--
20175
20175
20175
20175
1732.5
1732.5
1732.5
1732.5
23
23
23
23
22.83
22.83
22.83
22.83
0.370
0.224
0.609
0.263
0.38
0.23
0.63
0.27
--15
--
20175
1732.5
23
22.83
0.672
0.70
--
20175
1732.5
23
22.83
0.420
0.44
--
20175
1732.5
23
22.83
0.672
0.70
--
20175
1732.5
23
22.83
0.420
0.44
--
20175
1732.5
23
22.83
0.397
0.41
--
20175
1732.5
23
22.83
0.511
0.53
--
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Measured
output
power(dBm)
23.92
23.92
23.92
23.92
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
0.371
0.38
0.227
0.23
0.571
0.58
0.262
0.27
-----
Page 86 of 186
Reference No.: WTS18S11129613-1W V1
Table 12: SAR Values of LTE BAND 5 , 20MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
25%RB
#24
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
MPR
(dB)
Plot
No.
CH.
MHz
20450
20450
20450
20450
829
829
829
829
Maximum
Turn-up
Power(dBm)
24
24
24
24
20450
829
24
23.79
0.203
0.21
--
20450
829
24
23.79
0.254
0.27
17
20450
829
24
23.79
0.203
0.21
--
20450
829
24
23.79
0.254
0.27
17
20450
829
24
23.79
0.220
0.23
--
20450
829
24
23.79
0.061
0.07
--
20450
20450
20450
20450
829
829
829
829
23
23
23
23
22.91
22.91
22.91
22.91
0.279
0.242
0.246
0.247
0.28
0.25
0.25
0.25
-----
20450
829
23
22.91
0.203
0.21
--
20450
829
23
22.91
0.255
0.26
--
20450
829
23
22.91
0.203
0.21
--
20450
829
23
22.91
0.255
0.26
--
20450
829
23
22.91
0.226
0.23
--
20450
829
23
22.91
0.061
0.07
--
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Measured
output
power(dBm)
23.79
23.79
23.79
23.79
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg)
1g(W/kg)
0.275
0.29
0.241
0.25
0.251
0.26
0.247
0.26
16
----
Page 87 of 186
Reference No.: WTS18S11129613-1W V1
Table 13: SAR Values of LTE BAND 7 , 20MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
50%RB
#24
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
MPR
(dB)
Plot
No.
CH.
MHz
21100
21100
21100
21100
2535
2535
2535
2535
Maximum
Turn-up
Power(dBm)
24
24
24
24
21100
2535
24
23.31
0.369
0.43
--
21100
2535
24
23.31
0.433
0.51
19
21100
2535
24
23.31
0.369
0.43
--
21100
2535
24
23.31
0.433
0.51
--
21100
2535
24
23.31
0.091
0.11
--
21100
2535
24
23.31
0.471
0.55
20
21100
21100
21100
21100
2535
2535
2535
2535
23
23
23
23
22.96
22.96
22.96
22.96
0.300
0.235
0.171
0.094
0.30
0.24
0.17
0.09
-----
21100
2535
23
22.96
0.361
0.36
--
21100
2535
23
22.96
0.433
0.44
--
21100
2535
23
22.96
0.361
0.36
--
21100
2535
23
22.96
0.433
0.44
--
21100
2535
23
22.96
0.091
0.09
--
21100
2535
23
22.96
0.466
0.47
--
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Measured
output
power(dBm)
23.31
23.31
23.31
23.31
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
0.312
0.37
0.247
0.29
0.177
0.21
0.096
0.11
18
----
Page 88 of 186
Reference No.: WTS18S11129613-1W V1
Table 14: SAR Values of LTE BAND 12 , 10MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
25%RB
#24
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
MPR
(dB)
Plot
No.
CH.
MHz
23095
23095
23095
23095
707.5
707.5
707.5
707.5
Maximum
Turn-up
Power(dBm)
24
24
24
24
23095
707.5
24
23.67
0.224
0.24
--
23095
707.5
24
23.67
0.229
0.25
22
23095
707.5
24
23.67
0.224
0.24
--
23095
707.5
24
23.67
0.229
0.25
22
23095
707.5
24
23.67
0.230
0.25
--
23095
707.5
24
23.67
0.029
0.03
--
23095
23095
23095
23095
707.5
707.5
707.5
707.5
23
23
23
23
22.92
22.92
22.92
22.92
0.215
0.222
0.212
0.198
0.22
0.23
0.22
0.20
-----
23095
707.5
23
22.92
0.219
0.22
--
23095
707.5
23
22.92
0.217
0.22
--
23095
707.5
23
22.92
0.219
0.22
--
23095
707.5
23
22.92
0.217
0.22
--
23095
707.5
23
22.92
0.216
0.22
--
23095
707.5
23
22.92
0.027
0.03
--
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Measured
output
power(dBm)
23.67
23.67
23.67
23.67
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
0.228
0.25
0.230
0.25
0.201
0.22
0.203
0.22
-21
---
Page 89 of 186
Reference No.: WTS18S11129613-1W V1
Table 15: SAR Values of LTE BAND 17, 20MHz ,QPSK
Channel
Test
Mode
Test Positions
Right Head
Left Head
1RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Right Head
Left Head
25%RB
#49
Body-worn
(10mm
Separation)
Hotspot
(10mm
Separation)
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Cheek
Tilt
Cheek
Tilt
Front
side
Back
side
Front
side
Back
side
Left
EDGE
Bottom
EDGE
Power(dBm)
Measured
output
power(dBm)
23.81
23.81
23.81
23.81
MPR
(dB)
SAR 1g(W/Kg),
Limit(1.6W/kg)
Measured
Scaled
SAR
SAR
1g(W/kg) 1g(W/kg)
0.218
0.23
0.221
0.23
0.203
0.21
0.193
0.20
Plot
No.
CH.
MHz
23790
23790
23790
23790
710
710
710
710
Maximum
Turn-up
Power(dBm)
24
24
24
24
23790
710
24
23.81
0.212
0.22
--
23790
710
24
23.81
0.254
0.27
23
23790
710
24
23.81
0.212
0.22
--
23790
710
24
23.81
0.254
0.27
23
23790
710
24
23.81
0.229
0.24
--
23790
710
24
23.81
0.030
0.03
--
23790
23790
23790
23790
710
710
710
710
23
23
23
23
22.96
22.96
22.96
22.96
0.220
0.224
0.202
0.194
0.22
0.23
0.20
0.20
-24
---
23790
710
23
22.96
0.211
0.21
--
23790
710
23
22.96
0.245
0.25
--
23790
710
23
22.96
0.211
0.21
--
23790
710
23
22.96
0.245
0.25
--
23790
710
23
22.96
0.235
0.24
--
23790
710
23
22.96
0.031
0.03
--
-----
Note:1. KDB941225 D01-Body SAR is not required for HSDPA when the average output of each RF
channel with HSDPA active is less than 0.25dB higher than measured without HSDPA using
12.2kbps RMC or the maximum SAR for 12.2kbps RMC<75% of the SAR limit.
2. KDB941225 D01-Body SAR is not required for handset with HSUPA/HSDPA capabilities when the
maximum average output of each RF channel with HSUPA/HSDPA active is less than 0.25dB
higher than that measure without HSUPA/HSDPA using 12.2kbps RMC and The maximum SAR
for 12.2kbps RMC is<75% of the SAR limit
3. According to the KDB Publication 648474 D04, Section 1.5, When hotspot mode applies, 10-g
extremity SAR is required only for the surfaces and edges with hotspot mode 1-g reported SAR >
1.2 W/kg,because the 1-g reported SAR of Hotspot mode is 0.79 W/Kg<1.2 W/Kg,so the extremity
SAR is not required.
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 90 of 186
Measurement variability consideration
According to KDB 865664 D01v01r04 section 2.8.1, repeated measurements are required
following the procedures as below:
1. Repeated measurement is not required when the original highest measured SAR is <
0.80W/kg; steps 2) through 4) do not apply.
2. When the original highest measured SAR is ≥ 0.80 W/kg, repeat that measurement once.
3. Perform a second repeated measurement only if the ratio of largest to smallest SAR for the
original and first repeated measurements is > 1.20 or when the original or repeated
measurement is ≥ 1.45 W/kg (~ 10% from the 1-g SAR limit).
4. Perform a third repeated measurement only if the original, first or second repeated
measurement is ≥ 1.5 W/kg and the ratio of largest to smallest SAR for the original, first and
second repeated measurements is > 1.20.
No Repeated SAR:
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 91 of 186
Simultaneous Transmission SAR Analysis.
List of Mode for Simultaneous Multi-band Transmission:
No.
Configurations
Head SAR
Body-worn SAR
Hotspot SAR
GSM(Voice) + WLAN 2.4GHz(Data)
GPRS (Data) + WLAN 2.4GHz(Data)
GSM(Voice) + Bluetooth(Data)
GPRS (Data) + Bluetooth(Data)
Yes
Yes
Yes
Yes
Yes
Yes
WCDMA (Voice) + WLAN 2.4GHz(Data)
Yes
WCDMA (Data) + WLAN 2.4GHz(Data)
Yes
Yes
WCDMA (Voice) + Bluetooth(Data)
Yes
WCDMA (Data) + Bluetooth(Data)
Yes
Yes
LTE (Date) + WLAN 2.4GHz(Data)
Yes
Yes
Yes
10
LTE (Date) + Bluetooth(Data)
Yes
Yes
Yes
Remark:
1. GSM/ WCDMA/LTE share the same antenna, and cannot transmit simultaneously.
2. VOIP is not supported at 2G/ 3G data mode.
3. WLAN and Bluetooth share the same antenna, and cannot transmit simultaneously.
4. According to the KDB 447498 D01 v06, when standalone SAR test exclusion applies to an
antenna that transmits simultaneously with other antennas, the standalone SAR must be estimated
according to following to determine simultaneous transmission SAR test exclusion:
(max. power of channel, including tune-up tolerance, mW)/(min. test separation distance,
mm)]·[√f(GHz)/x] W/kg for test separation distances ≤50 mm;
where x = 7.5 for 1-g SAR, and x = 18.75 for 10-g SAR.
For simultaneous transmission analysis, Bluetooth SAR is estimated per KDB 447498 D01 v06 as
below:
WIFI(2.4G):
Tune-Up
Max. Power
Distance
Frequency
SAR(1g)
SAR(1g)
Power
(mW)
(mm)
(GHz)
5mm
10mm
(dBm)
8.5
7.08
5/10
2.412
7.5
0.29
0.15
WIFI(5G):
Tune-Up
Max. Power
Distance
Frequency
SAR(1g)
SAR(1g)
Power
(mW)
(mm)
(GHz)
5mm
10mm
(dBm)
7.0
5.01
5/10
5.825
7.5
0.32
0.16
Bluetooth:
Tune-Up
Max. Power
Distance
Frequency
SAR(1g)
SAR(1g)
Power
(mW)
(mm)
(GHz)
5mm
10mm
(dBm)
8.0
6.31
5/10
2.402
7.5
0.26
0.13
5. The maximum SAR summation is calculated based onthe same configuration and test position
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 92 of 186
Head SAR Simultaneous
WWAN and WIFI
Position
Right Cheek
Right Cheek
Right Cheek
Right Cheek
Right Cheek
Left Cheek
Left Cheek
Right Cheek
Right Cheek
Right Tilt
Right Tilt
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850
0.72
GSM1900
0.62
WCDMA Band V
0.45
WCDMA Band II
0.78
WCDMA Band IV
0.74
LTE BAND 2(1RB)
0.70
LTE BAND 4(1RB)
0.63
LTE BAND 5(1RB)
0.29
LTE BAND 7(1RB)
0.37
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.23
WIFI(5mm)
Scaled SAR
(W/kg)
0.32
0.32
0.32
0.32
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850
0.72
GSM1900
0.62
WCDMA Band V
0.45
WCDMA Band II
0.78
WCDMA Band IV
0.74
LTE BAND 2(1RB)
0.70
LTE BAND 4(1RB)
0.63
LTE BAND 5(1RB)
0.29
LTE BAND 7(1RB)
0.37
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.23
BT(5mm)
Scaled SAR
(W/kg)
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.26
0.32
0.32
0.32
0.32
0.32
0.32
0.32
Summed SAR
(W/kg)
1.04
0.94
0.77
1.10
1.06
1.02
0.95
0.61
0.69
0.57
0.55
WWAN and BT
Position
Right Cheek
Right Cheek
Right Cheek
Right Cheek
Right Cheek
Left Cheek
Left Cheek
Right Cheek
Right Cheek
Right Tilt
Right Tilt
Summed SAR
(W/kg)
0.98
0.88
0.71
1.04
1.00
0.96
0.89
0.55
0.63
0.51
0.49
Remark: WIFI/BT the 1g SAR value is not being captured by the measurement system,
the 1g-SAR value is conservatively used for simultaneous transmission analysis.
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 93 of 186
Body-worn SAR Simultaneous
WWAN and WIFI
Position
Back
Front
Back
Front
Front
Front
Front
Back
Back
Back
Back
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850(data)
0.43
GSM1900(data)
0.75
WCDMA Band V
0.42
WCDMA Band II
0.71
WCDMA Band IV
0.79
LTE BAND 2(1RB)
0.68
LTE BAND 4(1RB)
0.70
LTE BAND 5(1RB)
0.27
LTE BAND 7(1RB)
0.51
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.27
WIFI(10mm)
Scaled SAR
(W/kg)
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
Summed SAR
(W/kg)
0.59
0.91
0.58
0.87
0.95
0.84
0.86
0.43
0.67
0.41
0.43
WWAN and BT
Position
Back
Front
Back
Front
Front
Front
Front
Back
Back
Back
Back
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850(data)
0.43
GSM1900(data)
0.75
WCDMA Band V
0.42
WCDMA Band II
0.71
WCDMA Band IV
0.79
LTE BAND 2(1RB)
0.68
LTE BAND 4(1RB)
0.70
LTE BAND 5(1RB)
0.27
LTE BAND 7(1RB)
0.51
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.27
BT(10mm)
Scaled SAR
(W/kg)
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
Summed SAR
(W/kg)
0.56
0.88
0.55
0.84
0.92
0.81
0.83
0.40
0.64
0.38
0.40
Remark: WIFI/BT the 1g SAR value is not being captured by the measurement system,
the 1g-SAR value is conservatively used for simultaneous transmission analysis.
Waltek Services (Shenzhen) Co.,Ltd.
http://www.waltek.com.cn
Reference No.: WTS18S11129613-1W V1
Page 94 of 186
Hotspot SAR Simultaneous
WWAN and WIFI
Position
Back
Front
Back
Front
Front
Front
Front
Back
Back
Back
Back
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850
0.43
GSM1900
0.75
WCDMA Band V
0.42
WCDMA Band II
0.71
WCDMA Band IV
0.79
LTE BAND 2(1RB)
0.68
LTE BAND 4(1RB)
0.70
LTE BAND 5(1RB)
0.27
LTE BAND 7(1RB)
0.55
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.27
WIFI(10mm)
Scaled SAR
(W/kg)
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
0.16
Summed SAR
(W/kg)
0.59
0.91
0.58
0.87
0.95
0.84
0.86
0.43
0.71
0.41
0.43
WWAN and BT
Position
Back
Front
Back
Front
Front
Front
Front
Back
Bottom
Back
Back
WWAN(maximum)
Scaled SAR
Band
(W/kg)
GSM850
0.43
GSM1900
0.75
WCDMA Band V
0.42
WCDMA Band II
0.71
WCDMA Band IV
0.79
LTE BAND 2(1RB)
0.68
LTE BAND 4(1RB)
0.70
LTE BAND 5(1RB)
0.27
LTE BAND 7(1RB)
0.55
LTE BAND 12(1RB)
0.25
LTE BAND 17(1RB)
0.27
BT(10mm)
Scaled SAR
(W/kg)
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
0.13
Summed SAR
(W/kg)
0.56
0.88
0.55
0.84
0.92
0.81
0.83
0.40
0.68
0.38
0.40
Remark: WIFI/BT the 1g SAR value is not being captured by the measurement system,
the 1g-SAR value is conservatively used for simultaneous transmission analysis.
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 95 of 186
15 SAR Measurement Reference
References
1. FCC 47 CFR Part 2 “Frequency Allocations and Radio Treaty Matters; General
Rules and Regulations”
2. IEEE Std. C95.1-2005, “IEEE Standard for Safety Levels with Respect to Human
Exposure to Radio Frequency Electromagnetic Fields, 3kHz to 300GHz”, 2005
3. IEEE Std. 1528-2013, “IEEE Recommended Practice for Determining the Peak
Spatial-Average Specific Absorption Rate (SAR) in the Human Head from
Wireless Communications Devices:Measurement Techniques”, June 2013
4. IEC 62209-2, “Human exposure to radio frequency fields from hand-held and
body-mounted wireless communication devices—Human models,
instrumentation, and procedures – Part 2: Procedure to determine the specific
absorption rate(SAR) for wireless communication devices used in close
proximity to the human body(frequency range of 30MHz to 6GHz)”, April 2010
5. FCC KDB 447498 D01 v06, “Mobile and Portable Device RF Exposure Procedures
and Equipment Authorization Policies”, Oct 23th, 2015
6. FCC KDB 941225 D01 v03r01, “3G SAR Measurement Procedures”, Oct 23th, 2015
7. FCC KDB 941225 D05 v02r05, “SAR Evaluation Considerations for LTE Devices”,
Dec 16th, 2015
8. FCC KDB 941225 D06 v02r01, “SAR Evaluation Procedures for Portable Devices
with Wireless Router Capabilities”, Oct 23th, 2015
9. FCC KDB865664 D01 v01r04, “SAR Measurement Requirements 100MHz to
6GHz”, Aug 7th, 2015
10. FCC KDB865664 D02 v01r02, “RF Exposure Compliance Reporting and
Documentation Considerations ”, Oct 23th", 2015
11. FCC KDB648474 D04 v01r03, “SAR Evaluation Considerations for Wireless
Handsets”, Oct 23th", 2015
12. FCC KDB 248227 D01 v01r02, SAR Guidance for IEEE 802.11 (Wi-Fi) Transmitters,
Oct 23th, 2015.
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Reference No.: WTS18S11129613-1W V1
Page 96 of 186
Maximum SAR measurement Plots
Plot 1: GSM850MHz, Mid channel (Right Head , Cheek)
Product Description:Mobile Computing Device
Test Date:2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_850
836.60000
41.12
0.91
GSM (Duty cycle: 1:8)
SN 07/15 EP247
6.93
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.40
0.416050
0.647502
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 97 of 186
Plot 2: GPRS850MHz, Mid channel (Body-worn/Hotspot, Back Surface)
Product Description:Mobile Computing Device
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_850
836.60000
55.14
0.96
GPRS (Duty cycle: 1:2)
SN 07/15 EP247
7.13
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.41
0.297641
0.411243
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 98 of 186
Plot 3: GSM1900, Mid channel (Right Head Cheek)
Product Description: Mobile Computing Device
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
SURFACE SAR
Waltek Services (Shenzhen) Co.,Ltd.
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HSL_1900
1880.0000
40.94
1.44
GSM (Duty cycle: 1:8)
SN 07/15 EP247
6.35
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-2.11
0.330775
0.534266
VOLUME SAR
Reference No.: WTS18S11129613-1W V1
Page 99 of 186
Plot 4: GPRS1900, Middle channel (Body-worn/Hotspot, Front Surface)
Product Description: Mobile Computing Device
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1900
1880.0000
53.02
1.53
GPRS (Duty cycle: 1:2)
SN 07/15 EP247
6.55
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.92
0.420080
0.694300
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 100 of 186
Plot 5: WCDMA BAND V, Mid channel (Right Head Cheek)
Product Description: Mobile Computing Device
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_850
836.6000
41.12
0.91
WCDMA (Duty cycle: 1:1)
SN 07/15 EP247
6.93
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.29
0.295731
0.431859
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 101 of 186
Plot 6: WCDMA BAND V, Mid channel (Body-worn/Hotspot, Back Surface)
Product Description: Mobile Computing Device
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_850
836.6000
55.14
0.94
WCDMA (Duty cycle: 1:1)
SN 07/15 EP247
7.13
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.48
0.298117
0.408785
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 102 of 186
Plot 7: WCDMA BANDⅡ, Middle channel (Right Head Cheek)
Product Description: Mobile Computing Device
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1900
1880.0000
40.94
1.44
WCDMA(Duty cycle: 1:1)
SN 07/15 EP247
6.35
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-1.04
0.454333
0.735500
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 103 of 186
Plot 8: WCDMA BANDⅡ, Middle channel (Body-worn, Front Surface)
Product Description: Mobile Computing Device
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1900
1880.0000
53.02
1.53
WCDMA(Duty cycle: 1:1)
SN 07/15 EP247
6.55
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.49
0.408421
0.670479
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
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Plot 9: WCDMA BAND IV, Mid channel (Right Head Cheek)
Product Description: Mobile Computing Device
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1700
1732.6000
41.59
1.37
WCDMA(Duty cycle: 1:1)
SN 07/15 EP247
5.84
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
1.52
0.427665
0.670967
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 105 of 186
Plot 10: WCDMA BAND IV, Mid channel (Body-worn/Hotspot, Front Surface)
Product Description: Mobile Computing Device
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1700
1732.6000
53.74
1.50
WCDMA(Duty cycle: 1:1)
SN 07/15 EP247
6.06
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-1.21
0.446421
0.717182
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
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Plot 11:LTE BAND 2, Middle channel (Left Head Cheek)
Product Description:Smart phone
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1900
1880.0000
40.94
1.44
Duty cycle: 1:1
SN 07/15 EP247
6.35
20
25
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.63
0.414959
0.691723
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 107 of 186
Plot 12:LTE BAND 2, Middle channel (Body-worn/Hotspot, Front Surface)
Product Description:Smart phone
Test Date: 2018-12-01
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1900
1880.0000
53.02
1.53
Duty cycle: 1:1
SN 07/15 EP247
6.55
20
50
25
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.72
0.399228
0.667846
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 108 of 186
Plot 13:LTE BAND 4, Middle channel (Body-worn/Hotspot, Front Surface)
Product Description:Smart phone
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_1800
1720.0000
53.74
1.50
Duty cycle: 1:1
SN 07/15 EP247
6.06
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.27
0.420054
0.686549
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 109 of 186
Plot 14:LTE BAND 4, Middle channel (Left Head Cheek)
Product Description:Smart phone
Test Date: 2018-11-30
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_1800
1720.0000
41.59
1.37
Duty cycle: 1:1
SN 07/15 EP247
5.84
20
50
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-1.51
0.379246
0.608816
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 110 of 186
Plot 15: LTE BAND 5, Middle channel (Right Head Cheek)
Product Description: Mobile Computing Device
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_850
829.0000
41.12
0.91
Duty cycle: 1:1
SN 07/15 EP247
6.93
10
49
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.52
0.195027
0.274818
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 111 of 186
Plot 16: LTE BAND 5, Middle channel (Body-worn/Hotspot, Back Surface)
Product Description: Mobile Computing Device
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Sensor-Surface
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_850
829.0000
55.14
0.96
Duty cycle: 1:1
SN 07/15 EP247
7.13
10
49
4mm
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.27
0.175361
0.254435
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 112 of 186
Plot 17:LTE BAND 7, Middle channel (Right Head Cheek)
Product Description:Smart phone
Test Date: 2018-11-28
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_2600
2535.0000
39.77
1.98
Duty cycle: 1:1
SN 07/15 EP247
5.37
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.06
0.160895
0.312295
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 113 of 186
Plot 18:LTE BAND 7, Middle channel (Body-worn, Back Surface)
Product Description:Smart phone
Test Date: 2018-11-28
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_2600
2535.0000
52.51
2.17
Duty cycle: 1:1
SN 07/15 EP247
5.58
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.87
0.221397
0.433410
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
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Plot 19:LTE BAND 7, Middle channel (Hotspot, Bottom edge)
Product Description:Smart phone
Test Date: 2018-11-28
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_2600
2535.0000
52.51
2.17
Duty cycle: 1:1
SN 07/15 EP247
5.58
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
-0.90
0.218970
0.470805
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 115 of 186
Plot 20:LTE BAND 12, Middle channel (Right Head Tilt)
Product Description:Smart phone
Test Date: 2018-11-27
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_2600
707.5000
41.52
0.94
Duty cycle: 1:1
SN 07/15 EP247
6.99
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.45
0.178508
0.229724
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 116 of 186
Plot 21:LTE BAND 12, Middle channel (Body-worn/Hotspot, Back Surface)
Product Description:Smart phone
Test Date: 2018-11-26
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_2600
707.5000
53.14
0.94
Duty cycle: 1:1
SN 07/15 EP247
7.28
20
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.83
0.164492
0.229291
SURFACE SAR
VOLUME SAR
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Reference No.: WTS18S11129613-1W V1
Page 117 of 186
Plot 22:LTE BAND 17, Middle channel (Body-worn/Hotspot, Back Surface)
Product Description:Smart phone
Test Date: 2018-11-27
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
MSL_750
710.0000
53.45
0.94
Duty cycle: 1:1
SN 07/15 EP247
7.28
10
49
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.96
0.180286
0.254252
SURFACE SAR
VOLUME SAR
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 118 of 186
Plot 23:LTE BAND 17, Middle channel (Right Head Tilt)
Product Description:Smart phone
Test Date: 2018-11-27
Medium(liquid type)
Frequency (MHz)
Relative permittivity (real part)
Conductivity (S/m)
Signal
E-Field Probe
Conversion Factor
Bandwidth(MHz)
RB Allocation
RB Offset
Area Scan
Zoom Scan
Variation (%)
SAR 10g (W/Kg)
SAR 1g (W/Kg)
HSL_750
710.0000
41.78
0.94
Duty cycle: 1:1
SN 07/15 EP247
6.99
10
25
24
dx=8mm dy=8mm
5x5x7,dx=8mm dy=8mm dz=5mm
0.38
0.173668
0.223982
SURFACE SAR
VOLUME SAR
Waltek Services (Shenzhen) Co.,Ltd.
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Reference No.: WTS18S11129613-1W V1
Page 119 of 186
16 Calibration Reports-Probe and Dipole
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Reference No.: WTS18S11129613-1W V1
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Page 121 of 186
Reference No.: WTS18S11129613-1W V1
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Page 122 of 186
Download: PD470 Mobile Computing Device RF Exposure Info SAR Report 1 Hong Kong AMobile Intelligent Corp. Limited Taiwan Branch
Mirror Download [FCC.gov]PD470 Mobile Computing Device RF Exposure Info SAR Report 1 Hong Kong AMobile Intelligent Corp. Limited Taiwan Branch
Document ID4119308
Application IDFdLJ7h2GR8gK5FJef9LJEQ==
Document DescriptionSAR Report 1
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeRF Exposure Info
Display FormatAdobe Acrobat PDF - pdf
Filesize442.56kB (5532056 bits)
Date Submitted2018-12-27 00:00:00
Date Available2018-12-27 00:00:00
Creation Date2018-12-21 14:59:49
Producing SoftwareAcrobat Distiller 11.0 (Windows)
Document Lastmod2018-12-21 15:00:19
Document TitleSAR Report 1
Document CreatorPScript5.dll Version 5.2.2
Document Author: Administrator

Source Exif Data [exif.tools]:
File Type                       : PDF
File Type Extension             : pdf
MIME Type                       : application/pdf
PDF Version                     : 1.6
Linearized                      : No
Author                          : Administrator
Create Date                     : 2018:12:21 14:59:49+08:00
Modify Date                     : 2018:12:21 15:00:19+08:00
XMP Toolkit                     : Adobe XMP Core 5.4-c005 78.147326, 2012/08/23-13:03:03
Metadata Date                   : 2018:12:21 15:00:19+08:00
Creator Tool                    : PScript5.dll Version 5.2.2
Format                          : application/pdf
Title                           : Microsoft Word - WTS18S11129613-1W FCC SAR Test Report V1.doc
Creator                         : Administrator
Document ID                     : uuid:dfaf0865-a794-455f-962d-02ebbe406133
Instance ID                     : uuid:ded71df1-a8d6-462e-98b8-ec3bade9e352
Producer                        : Acrobat Distiller 11.0 (Windows)
Page Count                      : 122