TA-1150 Multi-band GSM/WCDMA/LTE phone with Bluetooth, WLAN Test Report CTTL english report HMD global Oy

HMD global Oy Multi-band GSM/WCDMA/LTE phone with Bluetooth, WLAN

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No. I18Z62335-IOT08
Page11 of 88
6. Test Facilities Utilized
Conducted test system
No.
Equipment
Model
Serial
Number
Vector Signal
Analyzer
FSQ40
200089
LISN
ESH3-Z5
825562/028
Test Receiver
ESCI
100766
Shielding Room
S81
Manufacturer
Rohde &
Schwarz
Rohde &
Schwarz
Rohde &
Schwarz
ETS-Lindgren
Calibration
Period
Calibration
Due date
1 year
2019-05-17
1 year
2019-08-22
1 year
2019-04-06
Radiated emission test system
No.
Equipment
Model
Serial
Number
Manufacturer
Calibration
Period
Calibration
Due date
Test Receiver
ESU26
100376
Rohde &
Schwarz
1 year
2019-11-27
BiLog Antenna
VULB9163
9163-482
Schwarzbeck
1 year
2019-09-21
Dual-Ridge
Waveguide Horn
Antenna
3117
00139065
ETS-Lindgren
1 year
2019-11-15
Dual-Ridge
Waveguide Horn
Antenna
3116
2663
ETS-Lindgren
3 years
2020-05-31
Vector Signal
Analyzer
FSV40
101047
Rohde &
Schwarz
1 year
2019-07-27
No. I18Z62335-IOT08
Page12 of 88
7. Measurement Uncertainty
7.1. Maximum Output Power
Measurement Uncertainty: 0.387dB,k=1.96
7.2. Peak Power Spectral Density
Measurement Uncertainty: 0.705dB,k=1.96
7.3. DTS 6-dB Signal Bandwidth
Measurement Uncertainty: 60.80Hz,k=1.96
7.4. Band Edges Compliance
Measurement Uncertainty : 0.62dB,k=1.96
7.5. Transmitter Spurious Emission
Conducted
(k=1.96)
Frequency Range
Uncertainty(dB)
30MHz ≤ f ≤ 2GHz
1.22
2GHz ≤ f ≤3.6GHz
1.22
3.6GHz ≤ f ≤8GHz
1.22
8GHz ≤ f ≤12.75GHz
1.51
12.75GHz ≤ f ≤26GHz
1.51
26GHz ≤ f ≤40GHz
1.59
Radiated (k=2)
Frequency Range
Uncertainty(dB)
9kHz-30MHz
30MHz ≤ f ≤ 1GHz
5.40
1GHz ≤ f ≤18GHz
4.32
18GHz ≤ f ≤40GHz
5.26
7.6. AC Power-line Conducted Emission
Measurement Uncertainty : 3.08dB,k=2
No. I18Z62335-IOT08
Page13 of 88
ANNEX A: Detailed Test Results
A.1. Measurement Method
A.1.1. Conducted Measurements
Connect the EUT to the test system as Fig.A.1.1.1 shows.
Set the EUT to the required work mode.
Set the EUT to the required channel.
Set the Vector Signal Analyzer and start measurement.
Record the values. Vector Signal Analyzer
EUT
Vector
Signal
Analyzer
Attenuator
Shielding room
Fig.A.1.1.1: Test Setup Diagram for Conducted Measurements
A.1.2. Radiated Emission Measurements
In the case of radiated emission, the used settings are as follows,
Sweep frequency from 30 MHz to 1GHz, RBW = 100 kHz, VBW = 300 kHz;
Sweep frequency from 1 GHz to 26GHz, RBW = 1MHz, VBW = 10Hz;
Antenna
Antenna
Vector Signal
Analyzer (Test
Receiver)
EUT
Anechoic Chamber
Fig.A.1.2.1: Test Setup Diagram for Radiated Measurements
No. I18Z62335-IOT08
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A.2. Maximum Output Power
Method of Measurement: See ANSI C63.10-2013-clause 11.9.1.2
a) Set the RBW = 1 MHz.
b) Set the VBW = 3 MHz.
c) Set the span ≥ [1.5 × DTS bandwidth].
d) Detector = peak.
e) Sweep time = auto couple.
f) Trace mode = max hold.
g) Allow trace to fully stabilize.
h) Use the instrument’s band/channel power measurement function with the band limits set equal
to the DTS bandwidth edges (for some instruments, this may require a manual override to select
the peak detector).
Measurement Limit:
Standard
Limit (dBm)
FCC CRF Part 15.247(b)
< 30
EUT ID: EUT2
A.2.1. Peak Output Power-conducted
Measurement Results:
802.11b/g mode
Mode
802.11b
802.11g
Data Rate
(Mbps)
Test Result (dBm)
2412MHz
(Ch1)
2437MHz
(Ch6)
2462 MHz
(Ch11)
20.08
20.28
5.5
21.75
11
23.10
22.95
22.89
23.22
23.18
12
23.05
18
22.90
24
23.38
36
23.37
48
23.35
54
23.45
23.51
23.15
The data rate 11Mbps and 54Mbps are selected as worse condition, and the following cases are
performed with this condition.
No. I18Z62335-IOT08
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802.11n-HT20 mode
Mode
802.11n
(20MHz)
Data Rate
(Index)
Test Result (dBm)
2412MHz
(Ch1)
2437MHz
(Ch6)
2462 MHz
(Ch11)
MCS0
21.46
MCS1
21.23
MCS2
21.30
MCS3
21.82
MCS4
21.74
MCS5
21.86
21.73
21.38
MCS6
21.82
MCS7
21.85
The data rate MCS5 is selected as worse condition, and the following cases are performed with
this condition.
Conclusion: Pass
A.2.2. Average Output Power-conducted
Method of Measurement: See ANSI C63.10-2013-clause 11.9.2.2.2
The procedure for this method is as follows:
a) Set span = 1.5OBW.
b) Set RBW = 1MHz.
c) Set VBW = 3MHz
d) Number of points in sweep = 625
e) Sweep time = auto.
f) Detector = RMS.
g) If transmit duty cycle < 98%, use a sweep trigger with the level set to enable triggering only on
full power pulses. The transmitter shall operate at the maximum power control level for the entire
duration of every sweep. If the EUT transmits continuously (i.e., with no OFFintervals) or at duty
cycle ≥98%, and if each transmission is entirely at the maximum power control level, then the
trigger shall be set to “free run.”
h) Trace average 100 traces in power averaging (rms) mode.
i) Compute power by integrating the spectrum across the OBW of the signal using the instrument’s
band power measurement function, with band limits set equal to the OBW band edges. If the
instrument does not have a band power function, sum the spectrum levels (in power units) at
intervals equal to the RBW extending across the entire OBW of the spectrum.
No. I18Z62335-IOT08
Page16 of 88
802.11b/g mode
Mode
Test Result (dBm)
2412MHz (Ch1)
2437MHz (Ch6)
2462 MHz (Ch11)
802.11b
17.12
17.46
17.42
802.11g
15.25
15.45
15.28
802.11n-HT20 mode
Mode
802.11n (20MHz)
Conclusion: Pass
Test Result (dBm)
2412MHz (Ch1)
2437MHz (Ch6)
2462 MHz (Ch11)
13.06
13.47
13.20
No. I18Z62335-IOT08
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A.3. Peak Power Spectral Density
Method of Measurement: See ANSI C63.10-2013-clause 11.10.2
a) Set analyzer center frequency to DTS channel center frequency.
b) Set the span to 1.5 times the DTS bandwidth.
c) Set the RBW to RBW = 3 kHz.
d) Set the VBW = 10 kHz.
e) Detector = peak.
f) Sweep time = auto couple.
g) Trace mode = max hold.
h) Allow trace to fully stabilize.
i) Use the peak marker function to determine the maximum amplitude level within the RBW.
Measurement Limit:
Standard
Limit
FCC CRF Part 15.247(e)
< 8 dBm/3 kHz
Measurement Results:
802.11b/g mode
Mode
802.11b
802.11g
Channel
Power Spectral Density
( dBm/3 kHz )
Conclusion
Fig.A.3.1
-5.36
Fig.A.3.2
-6.82
11
Fig.A.3.3
-6.58
Fig.A.3.4
-10.80
Fig.A.3.5
-10.54
11
Fig.A.3.6
-10.52
802.11n-HT20 mode
Mode
802.11n
(HT20)
Conclusion: Pass
Test graphs as below:
Channel
Power Spectral Density
( dBm/3 kHz )
Conclusion
Fig.A.3.7
-11.74
Fig.A.3.8
-11.75
11
Fig.A.3.9
-12.94
No. I18Z62335-IOT08
Page18 of 88
Fig.A.3.1
Fig.A.3.2
Power Spectral Density(802.11b,Ch1)
Power Spectral Density (802.11b, Ch 6)
No. I18Z62335-IOT08
Page19 of 88
Fig.A.3.3
Power Spectral Density (802.11b, Ch 11)
Fig.A.3.4
Power Spectral Density (802.11g, Ch 1)
No. I18Z62335-IOT08
Page20 of 88
Fig.A.3.5
Power Spectral Density (802.11g, Ch 6)
Fig.A.3.6
Power Spectral Density (802.11g, Ch 11)
No. I18Z62335-IOT08
Page21 of 88
Fig.A.3.7
Power Spectral Density (802.11n-HT20, Ch 1)
Fig.A.3.8
Power Spectral Density (802.11n-HT20, Ch 6)
No. I18Z62335-IOT08
Page22 of 88
Fig.A.3.9
Power Spectral Density (802.11n-HT20, Ch 11)
No. I18Z62335-IOT08
Page23 of 88
A.4. DTS 6-dB Signal Bandwidth
Method of Measurement: See ANSI C63.10-2013 section 11.8.1.
a) Set RBW = 100 kHz.
b) Set the video bandwidth (VBW) = 300 kHz.
c) Detector = Peak.
d) Trace mode = max hold.
e) Sweep = auto couple.
f) Allow the trace to stabilize.
g) Measure the maximum width of the emission that is constrained by the frequencies associated
with the two outermost amplitude points (upper and lower frequencies) that are attenuated by 6
dB relative to the maximum level measured in the fundamental emission.
Measurement Limit:
Standard
Limit (kHz)
FCC 47 CFR Part 15.247 (a)
≥ 500
EUT ID: EUT2
Measurement Result:
802.11b/g mode
Mode
Channel
802.11b
802.11g
Occupied 6dB Bandwidth
( kHz)
Fig.A.4.1
conclusion
8650.00
Fig.A.4.2
8300.00
11
Fig.A.4.3
8350.00
Fig.A.4.4
16450.00
Fig.A.4.5
16500.00
11
Fig.A.4.6
16450.00
802.11n-HT20 mode
Mode
802.11n
(HT20)
Conclusion: Pass
Test graphs as below:
Channel
Occupied 6dB Bandwidth
( kHz)
conclusion
Fig.A.4.7
17700.00
Fig.A.4.8
17700.00
11
Fig.A.4.9
17650.00
No. I18Z62335-IOT08
Page24 of 88
Fig.A.4.1
Occupied 6dB Bandwidth(802.11b,Ch 1)
Fig.A.4.2
Occupied 6dB Bandwidth (802.11b, Ch 6)
No. I18Z62335-IOT08
Page25 of 88
Fig.A.4.3
Occupied 6dB Bandwidth (802.11b, Ch 11)
Fig.A.4.4
Occupied 6dB Bandwidth (802.11g, Ch 1)
No. I18Z62335-IOT08
Page26 of 88
Fig.A.4.5
Occupied 6dB Bandwidth (802.11g, Ch 6)
Fig.A.4.6
Occupied 6dB Bandwidth (802.11g, Ch 11)
No. I18Z62335-IOT08
Page27 of 88
Fig.A.4.7
Fig.A.4.8
Occupied 6dB Bandwidth (802.11n-20MHz, Ch 1)
Occupied 6dB Bandwidth (802.11n-HT20, Ch 6)
No. I18Z62335-IOT08
Page28 of 88
Fig.A.4.9
Occupied 6dB Bandwidth (802.11n-HT20, Ch 11)
No. I18Z62335-IOT08
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A.5. Band Edges Compliance
Method of Measurement: See ANSI C63.10-2013-clause 6.10.4
Connect the spectrum analyzer to the EUT using an appropriate RF cable connected to the EUT
output. Configure the spectrum analyzer settings as described below.
a) Set Span = 100MHz
b) Sweep Time: coupled
c) Set the RBW= 100 kHz
c) Set the VBW= 300 kHz
d) Detector: Peak
e) Trace: Max hold
Measurement Limit:
Standard
Limit (dBc)
FCC 47 CFR Part 15.247 (d)
> 20
EUT ID: EUT2
Measurement Result:
802.11b/g mode
Mode
802.11b
802.11g
Channel
Test Results
Fig.A.5.1
Conclusion
11
Fig.A.5.2
Fig.A.5.3
11
Fig.A.5.4
802.11n-HT20 mode
Mode
Channel
802.11n
(HT20)
Fig.A.5.5
11
Fig.A.5.6
Conclusion: Pass
Test graphs as below:
Test Results
Conclusion
No. I18Z62335-IOT08
Page30 of 88
Fig.A.5.1 Band Edges (802.11b, Ch 1)
Fig.A.5.2 Band Edges (802.11b, Ch 11)
No. I18Z62335-IOT08
Page31 of 88
Fig.A.5.3 Band Edges (802.11g, Ch 1)
Fig.A.5.4 Band Edges (802.11g, Ch 11)
No. I18Z62335-IOT08
Page32 of 88
Fig.A.5.5 Band Edges (802.11n-HT20, Ch 1)
Fig.A.5.6 Band Edges (802.11n-HT20, Ch 11)
No. I18Z62335-IOT08
Page33 of 88
A.6. Transmitter Spurious Emission
A.6.1 Transmitter Spurious Emission – Conducted
Method of Measurement: See ANSI C63.10-2013-clause 11.11.2
Establish a reference level by using the following procedure:
a) Set instrument center frequency to DTS channel center frequency
b) Set the span to ≥ 1.5 times the DTS bandwidth
c) Set the RBW= 100 kHz
d) Set the VBW= 300 kHz
e) Detector = Peak
f) Sweep time = auto couple
g) Trace mode = max hold
h) Allow trace to fully stabilize
i) Use the peak marker function to determine the maximum PSD level
Note that the channel found to contain the maximum PSD level can be used to establish the
reference level.
Establish an emission level by using the following procedure:
a) Set the center frequency and span to encompass frequency range to be measured.
b) Set the RBW = 100 kHz.
c) Set the VBW = 300 kHz.
d) Detector = peak.
e) Sweep time = auto couple.
f) Trace mode = max hold.
g) Allow trace to fully stabilize.
h) Use the peak marker function to determine the maximum amplitude level.
Ensure that the amplitude of all unwanted emissions outside of the authorized frequency band
(excluding restricted frequency bands) is attenuated by at least the minimum requirements
specified in 11.11. Report the three highest emissions relative to the limit.
Measurement Limit:
Standard
Limit
FCC 47 CFR Part 15.247 (d)
20dB below peak output power in 100 kHz
bandwidth
EUT ID: EUT2
Measurement Results:
No. I18Z62335-IOT08
Page34 of 88
802.11b mode
MODE
Channel
Frequency Range
2.412 GHz
802.11b
11
Test Results
Fig.A.6.1.1
Conclusion
30 MHz ~ 1 GHz
Fig.A.6.1.2
1 GHz ~ 2.5 GHz
Fig.A.6.1.3
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.4
7.5 GHz ~ 10 GHz
Fig.A.6.1.5
10 GHz ~ 15 GHz
Fig.A.6.1.6
15 GHz ~ 20 GHz
Fig.A.6.1.7
20 GHz ~ 26 GHz
Fig.A.6.1.8
2.437 GHz
Fig.A.6.1.9
30 MHz ~ 1 GHz
Fig.A.6.1.10
1 GHz ~ 2.5 GHz
Fig.A.6.1.11
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.12
7.5 GHz ~ 10 GHz
Fig.A.6.1.13
10 GHz ~ 15 GHz
Fig.A.6.1.14
15 GHz ~ 20 GHz
Fig.A.6.1.15
20 GHz ~ 26 GHz
Fig.A.6.1.16
2.462 GHz
Fig.A.6.1.17
30 MHz ~ 1 GHz
Fig.A.6.1.18
1 GHz ~ 2.5 GHz
Fig.A.6.1.19
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.20
7.5 GHz ~ 10 GHz
Fig.A.6.1.21
10 GHz ~ 15 GHz
Fig.A.6.1.22
15 GHz ~ 20 GHz
Fig.A.6.1.23
20 GHz ~ 26 GHz
Fig.A.6.1.24
No. I18Z62335-IOT08
Page35 of 88
802.11g mode
MODE
Channel
802.11g
11
Frequency Range
Test Results
Conclusion
2.412 GHz
Fig.A.6.1.25
30 MHz ~ 1 GHz
Fig.A.6.1.26
1 GHz ~ 2.5 GHz
Fig.A.6.1.27
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.28
7.5 GHz ~ 10 GHz
Fig.A.6.1.29
10 GHz ~ 15 GHz
Fig.A.6.1.30
15 GHz ~ 20 GHz
Fig.A.6.1.31
20 GHz ~ 26 GHz
Fig.A.6.1.32
2.437 GHz
Fig.A.6.1.33
30 MHz ~ 1 GHz
Fig.A.6.1.34
1 GHz ~ 2.5 GHz
Fig.A.6.1.35
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.36
7.5 GHz ~ 10 GHz
Fig.A.6.1.37
10 GHz ~ 15 GHz
Fig.A.6.1.38
15 GHz ~ 20 GHz
Fig.A.6.1.39
20 GHz ~ 26 GHz
Fig.A.6.1.40
2.462 GHz
Fig.A.6.1.41
30 MHz ~ 1 GHz
Fig.A.6.1.42
1 GHz ~ 2.5 GHz
Fig.A.6.1.43
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.44
7.5 GHz ~ 10 GHz
Fig.A.6.1.45
10 GHz ~ 15 GHz
Fig.A.6.1.46
15 GHz ~ 20 GHz
Fig.A.6.1.47
20 GHz ~ 26 GHz
Fig.A.6.1.48
No. I18Z62335-IOT08
Page36 of 88
802.11n-HT20 mode
MODE
Channel
802.11n
(HT20)
11
Conclusion: Pass
Test graphs as below:
Frequency Range
Test Results
Conclusion
2.412 GHz
Fig.A.6.1.49
30 MHz ~ 1 GHz
Fig.A.6.1.50
1 GHz ~ 2.5 GHz
Fig.A.6.1.51
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.52
7.5 GHz ~ 10 GHz
Fig.A.6.1.53
10 GHz ~ 15 GHz
Fig.A.6.1.54
15 GHz ~ 20 GHz
Fig.A.6.1.55
20 GHz ~ 26 GHz
Fig.A.6.1.56
2.437 GHz
Fig.A.6.1.57
30 MHz ~ 1 GHz
Fig.A.6.1.58
1 GHz ~ 2.5 GHz
Fig.A.6.1.59
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.60
7.5 GHz ~ 10 GHz
Fig.A.6.1.61
10 GHz ~ 15 GHz
Fig.A.6.1.62
15 GHz ~ 20 GHz
Fig.A.6.1.63
20 GHz ~ 26 GHz
Fig.A.6.1.64
2.462 GHz
Fig.A.6.1.65
30 MHz ~ 1 GHz
Fig.A.6.1.66
1 GHz ~ 2.5 GHz
Fig.A.6.1.67
2.5 GHz ~ 7.5 GHz
Fig.A.6.1.68
7.5 GHz ~ 10 GHz
Fig.A.6.1.69
10 GHz ~ 15 GHz
Fig.A.6.1.70
15 GHz ~ 20 GHz
Fig.A.6.1.71
20 GHz ~ 26 GHz
Fig.A.6.1.72
No. I18Z62335-IOT08
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Fig.A.6.1.1
Fig.A.6.1.2
Transmitter Spurious Emission - Conducted (802.11b, Ch1, Center
Frequency)
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 30 MHz-1 GHz)
No. I18Z62335-IOT08
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Fig.A.6.1.3
Fig.A.6.1.4
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 1 GHz-2.5 GHz)
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 2.5 GHz-7.5
GHz)
No. I18Z62335-IOT08
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Fig.A.6.1.5
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 7.5 GHz-10
GHz)
Fig.A.6.1.6
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 10 GHz-15
GHz)
No. I18Z62335-IOT08
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Fig.A.6.1.7
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 15 GHz-20
GHz)
Fig.A.6.1.8
Transmitter Spurious Emission - Conducted (802.11b, Ch1, 20 GHz-26
GHz)
No. I18Z62335-IOT08
Page41 of 88
Fig.A.6.1.9
Fig.A.6.1.10
Transmitter Spurious Emission - Conducted (802.11b, Ch6, Center
Frequency)
Transmitter Spurious Emission - Conducted (802.11b, Ch6, 30 MHz-1 GHz)
No. I18Z62335-IOT08
Page42 of 88
Fig.A.6.1.11
Fig.A.6.1.12
Transmitter Spurious Emission - Conducted (802.11b, Ch6, 1 GHz-2.5 GHz)
Transmitter Spurious Emission - Conducted (802.11b, Ch6, 2.5 GHz-7.5
GHz)
No. I18Z62335-IOT08
Page43 of 88
Fig.A.6.1.13
Transmitter Spurious Emission - Conducted (802.11b, Ch6, 7.5 GHz-10
GHz)
Fig.A.6.1.14
Transmitter Spurious Emission - Conducted (802.11b, Ch6, 10 GHz-15
GHz)
Download: TA-1150 Multi-band GSM/WCDMA/LTE phone with Bluetooth, WLAN Test Report CTTL english report HMD global Oy
Mirror Download [FCC.gov]TA-1150 Multi-band GSM/WCDMA/LTE phone with Bluetooth, WLAN Test Report CTTL english report HMD global Oy
Document ID4159266
Application IDsPGGT4gIFNXSGXcWnVR+vg==
Document DescriptionI18Z62335-IOT08-FCC_Report_WLAN_2.4G_Rev0_p1
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeTest Report
Display FormatAdobe Acrobat PDF - pdf
Filesize449.66kB (5620725 bits)
Date Submitted2019-02-01 00:00:00
Date Available2019-02-01 00:00:00
Creation Date2019-02-02 09:29:27
Producing SoftwareAdobe PDF Library 15.0
Document Lastmod2019-02-02 09:29:30
Document TitleCTTL english report
Document CreatorAcrobat PDFMaker 15 Word 版
Document Author: Xue Zhen

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Modify Date                     : 2019:02:02 09:29:30+08:00
Create Date                     : 2019:02:02 09:29:27+08:00
Metadata Date                   : 2019:02:02 09:29:30+08:00
Creator Tool                    : Acrobat PDFMaker 15 Word 版
Format                          : application/pdf
Title                           : CTTL english report
Description                     : GSM test report
Creator                         : Xue Zhen
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Page Count                      : 33
Author                          : Xue Zhen
Subject                         : GSM test report