N016 GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile phone Test Report EMC2001239 TCL Communication Ltd.

TCL Communication Ltd. GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile phone

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FCC PART 15C
TEST REPORT
No. I16Z42454-SRD03
for
TCL Communication Ltd.
GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile phone
Model Name: BBB100-1
FCC ID: 2ACCJN016
with
Hardware Version: 05
Software Version: AAJ048
Issued Date: 2017-2-22
Note:
The test results in this test report relate only to the devices specified in this report. This report shall not be
reproduced except in full without the written approval of CTTL.
Test Laboratory:
CTTL, Telecommunication Technology Labs, Academy of Telecommunication Research, MIIT
No.52, HuayuanNorth Road, Haidian District, Beijing, P. R. China 100191.
Tel:+86(0)10-62304633-2512,Fax:+86(0)10-62304633-2504
Email:cttl_terminals@catr.cn, website:www.chinattl.com
©Copyright. All rights reserved by CTTL.
No. I16Z42454-SRD03
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REPORT HISTORY
Report Number
Revision
Description
Issue Date
I16Z42454-SRD03
Rev.0
1st edition
2017-2-22
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CONTENTS
1.
TEST LABORATORY ......................................................................................................................... 5
1.1.
TESTING LOCATION .................................................................................................................... 5
1.2.
TESTING ENVIRONMENT ........................................................................................................... 5
1.3.
PROJECT DATA .............................................................................................................................. 5
1.4.
SIGNATURE ..................................................................................................................................... 5
2.
CLIENT INFORMATION ................................................................................................................... 6
2.1.
APPLICANT INFORMATION ....................................................................................................... 6
2.2.
MANUFACTURER INFORMATION ............................................................................................ 6
3.
EQUIPMENT UNDERTEST (EUT) AND ANCILLARY EQUIPMENT (AE) .............................. 7
3.1.
ABOUT EUT ..................................................................................................................................... 7
3.2.
INTERNAL IDENTIFICATION OF EUT ..................................................................................... 7
3.3.
INTERNAL IDENTIFICATION OF AE ........................................................................................ 7
3.4.
3.5.
4.
NORMAL ACCESSORY SETTING ........................................................................................................ 8
GENERAL DESCRIPTION ................................................................................................................... 8
REFERENCE DOCUMENTS ............................................................................................................. 9
4.1.
DOCUMENTS SUPPLIED BY APPLICANT ............................................................................... 9
4.2.
REFERENCE DOCUMENTS FOR TESTING ............................................................................. 9
5.
TEST RESULTS ................................................................................................................................. 10
5.1.
5.2.
6.
SUMMARY OF TEST RESULTS ......................................................................................................... 10
STATEMENTS .................................................................................................................................. 10
TEST FACILITIES UTILIZED ......................................................................................................... 11
TEST SOFTWARE UTILIZED ................................................................................................................. 11
7.
MEASUREMENT UNCERTAINTY ................................................................................................ 12
7.1.
7.2.
7.3.
7.4.
7.5.
7.6.
7.7.
7.8.
PEAK OUTPUT POWER - CONDUCTED ............................................................................................ 12
FREQUENCY BAND EDGES ............................................................................................................. 12
CONDUCTED EMISSION.................................................................................................................. 12
RADIATED EMISSION ..................................................................................................................... 12
TIME OF OCCUPANCY (DWELL TIME) ............................................................................................ 12
20DB BANDWIDTH ........................................................................................................................ 12
CARRIER FREQUENCY SEPARATION ............................................................................................... 13
AC POWERLINE CONDUCTED EMISSION ....................................................................................... 13
ANNEX A: DETAILED TEST RESULTS ................................................................................................ 14
A.1. MEASUREMENT METHOD .................................................................................................................. 14
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A.2. PEAK OUTPUT POWER – CONDUCTED ............................................................................................... 15
A.3. FREQUENCY BAND EDGES – CONDUCTED ......................................................................................... 16
A.4. CONDUCTED EMISSION ...................................................................................................................... 23
A.5. RADIATED EMISSION.......................................................................................................................... 48
A.6. TIME OF OCCUPANCY (DWELL TIME) ................................................................................................ 69
A.7. 20DB BANDWIDTH............................................................................................................................. 79
A.8. CARRIER FREQUENCY SEPARATION ................................................................................................... 85
A.9. NUMBER OF HOPPING CHANNELS...................................................................................................... 88
A.10. AC POWERLINE CONDUCTED EMISSION .............................................................................................. 92
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1. Test Laboratory
1.1. Testing Location
Conducted testing Location: CTTL(huayuan North Road)
Address:
No. 52, Huayuan North Road, Haidian District, Beijing,
P. R. China100191
Radiated testing Location: CTTL(Shouxiang)
Address:
No. 51 Shouxiang Science Building, Xueyuan Road,
Haidian District, Beijing, P. R. China100191
1.2. Testing Environment
Normal Temperature:
Relative Humidity:
15-35℃
20-75%
1.3. Project data
Testing Start Date:
Testing End Date:
2016-12-28
2017-2-22
1.4. Signature
Wu Le
(Prepared this test report)
Sun Zhenyu
(Reviewed this test report)
Li Zhuofang
(Approved this test report)
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2. Client Information
2.1. Applicant Information
Company Name:
Address /Post:
City:
Postal Code:
Country:
Telephone:
Fax:
TCL Communication Ltd.
5F, C building, No. 232, Liang Jing Road ZhangJiang High-Tech Park,
Pudong Area Shanghai, P.R. China. 201203
Shanghai
201203
China
0086-21-31363544
0086-21-61460602
2.2. Manufacturer Information
Company Name:
Address /Post:
City:
Postal Code:
Country:
Telephone:
Fax:
TCL Communication Ltd.
5F, C building, No. 232, Liang Jing Road ZhangJiang High-Tech Park,
Pudong Area Shanghai, P.R. China. 201203
Shanghai
201203
China
0086-21-31363544
0086-21-61460602
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3. Equipment UnderTest (EUT) and Ancillary Equipment (AE)
3.1. About EUT
Description
Model Name
FCC ID
Frequency Band
Type of Modulation
Number of Channels
Power Supply
GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile
phone
BBB100-1
2ACCJN016
ISM 2400MHz~2483.5MHz
GFSK/π/4 DQPSK/8DPSK
79
3.8V DC by Battery
3.2. Internal Identification of EUT
EUT ID*
SN or IMEI
HW Version
SW Version
EUT1
EUT2
004402243183856
004402243180860
05
05
AAJ048
AAJ048
*EUT ID: is used to identify the test sample in the lab internally.
3.3. Internal Identification of AE
AE ID*
Description
AE1
battery
AE2
battery
AE3
Travel charger
AE4
Travel charger
AE5
Travel charger
AE6
Travel charger
AE7
Travel charger
AE8
USB Cable
AE9
USB Cable
AE1
Model
SN
Manufacturer
Capacitance
Nominal voltage
AE2
Model
SN
Manufacturer
Capacitance
16TCT-CH-1886
16TCT-CH-1872
16TCT-CH-0005
BAT-63108-003
CAC3440001C3
ATL
3440 mAh
3.85V
TLp034E1
CAC3440003C1
BYD
3440 mAh
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Nominal voltage
3.85V
AE3
Name
CBA0060AGHC1
Model
QC10US
Manufacturer
BYD
Length of cable
AE4
Name
CBA0060ACHC1
Model
QC10AU
Manufacturer
BYD
Length of cable
AE5
Name
CBA0060AJHC1
Model
QC10IN
Manufacturer
BYD
Length of cable
AE6
Name
CBA0060AAHC1
Model
QC10EU
Manufacturer
BYD
Length of cable
AE7
Name
CBA0060ABHC1
Model
QC10UK
Manufacturer
BYD
Length of cable
AE8
Model
CDA0000105CF
Manufacturer
LUXSHARE
Length of cable
99cm
AE9
Model
CDA0000108C2
Manufacturer
SHENGHUA
Length of cable
99cm
*AE ID: is used to identify the test sample in the lab internally.
3.4. Normal Accessory setting
Fully charged battery should be used during the test.
3.5. General Description
The Equipment Under Test (EUT) is a model of GSM Quad-band/HSPA-UMTS Six-band/LTE 19
band mobile phone with integrated antenna. It consists of normal options: lithium battery, charger.
Manual and specifications of the EUT were provided to fulfil the test.
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4. Reference Documents
4.1. Documents supplied by applicant
EUT feature information is supplied by the applicant or manufacturer, which is the basis of testing.
4.2. Reference Documents for testing
The following documents listed in this section are referred for testing.
Reference
Title
FCC CFR 47, Part 15, Subpart C:
15.205 Restricted bands of operation;
FCC Part15
15.209 Radiated emission limits, general requirements;
15.247 Operation within the bands 902–928MHz,
2400–2483.5 MHz, and 5725–5850 MHz.
American National Standard of Procedures for
ANSI C63.10
Compliance Testing of Unlicensed Wireless Devices
Version
2015
June,2013
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5. Test Results
5.1. Summary of Test Results
Abbreviations used in this clause:
P Pass, The EUT complies with the essential requirements in the standard.
F Fail, The EUT does not comply with the essential requirements in the standard
NA Not Applicable, The test was not applicable
NP Not Performed, The test was not performed by CTTL
SUMMARY OF MEASUREMENT RESULTS
Sub-clause
Verdict
Peak Output Power - Conducted
15.247 (b)(1)
Frequency Band Edges
15.247 (d)
Conducted Emission
15.247 (d)
Radiated Emission
15.247, 15.205, 15.209
Time of Occupancy (Dwell Time)
15.247 (a) (1)(iii)
20dB Bandwidth
15.247 (a)(1)
NA
Carrier Frequency Separation
15.247 (a)(1)
Number of hopping channels
15.247 (a)(b)(iii)
AC Powerline Conducted Emission
15.107, 15.207
Please refer to ANNEX A for detail.
The measurement is made according to ANSI C63.10.
5.2. Statements
CTTL has evaluated the test cases requested by the applicant /manufacturer as listed in section
5.1 of this report for the EUT specified in section 3 according to the standards or reference
documents listed in section 4.2
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6. Test Facilities Utilized
Conducted test system
No.
Equipment
Model
Serial
Number
Manufacturer
Calibratio
n Period
Calibration
Due date
Vector Signal
Analyzer
FSQ26
200136
Rohde & Schwarz
1 year
2017-10-25
Bluetooth Tester
CBT32
100649
Rohde & Schwarz
1 year
2017-10-26
LISN
ENV216
101200
Rohde & Schwarz
1 year
2017-07-10
Test Receiver
ESCI
100948
Rohde & Schwarz
1 year
2017-07-05
Shielding Room
S81
ETS-Lindgren
Radiated emission test system
No.
Equipment
Model
Serial
Number
Manufacturer
Calibration
Period
Calibration
Due date
Test Receiver
ESU26
100235
Rohde & Schwarz
1 year
2017-03-02
Loop antenna
HFH2-Z2
829324/00
Rohde & Schwarz
3 years
2017-12-16
BiLog Antenna
VULB9163
301
Schwarzbeck
3 years
2017-12-16
Dual-Ridge
Waveguide Horn
Antenna
3115
6914
EMCO
3 years
2017-12-15
Dual-Ridge
Waveguide Horn
Antenna
3116
2661
ETS-Lindgren
3 years
2017-06-17
Semi-anechoic
chamber
CT000332
-1074
Frankonia
German
Vector Signal
Analyzer
FSV40
101047
Rohde & Schwarz
1 year
2017-06-28
Bluetooth Tester
CBT
101042
Rohde & Schwarz
1 year
2017-03-02
Test Software Utilized
Test Item
Test Software and Version
Software Vendor
Radiated Continuous Emission
EMC32 V8.40.0
R&S
Conducted Continuous Emission
EMC32 V8.52.0
R&S
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7. Measurement Uncertainty
7.1. Peak Output Power - Conducted
Measurement Uncertainty:
Measurement Uncertainty (k=2)
0.66dB
7.2. Frequency Band Edges
Measurement Uncertainty:
Measurement Uncertainty (k=2)
0.66dB
7.3. Conducted Emission
Measurement Uncertainty:
Frequency Range
Uncertainty (k=2)
30 MHz ~ 8 GHz
1.22dB
8 GHz ~ 12.75 GHz
1.51dB
12.7GHz ~ 26 GHz
1.51dB
7.4. Radiated Emission
Measurement Uncertainty:
Frequency Range
Uncertainty (k=2)
< 1 GHz
4.86dB
> 1 GHz
5.26dB
7.5. Time of Occupancy (Dwell Time)
Measurement Uncertainty:
Measurement Uncertainty (k=2)
0.88ms
7.6. 20dB Bandwidth
Measurement Uncertainty:
Measurement Uncertainty (k=2)
61.936Hz
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7.7. Carrier Frequency Separation
Measurement Uncertainty:
Measurement Uncertainty (k=2)
61.936Hz
7.8. AC Powerline Conducted Emission
Measurement Uncertainty:
Measurement Uncertainty (k=2)
3.38dB
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ANNEX A: Detailed Test Results
A.1. Measurement Method
A.1.1. Conducted Measurements
The measurement is made according to ANSI C63.10.
1). Connect the EUT to the test system correctly.
2). Set the EUT to the required work mode (Transmitter, receiver or transmitter & receiver).
3). Set the EUT to the required channel.
4). Set the EUT hopping mode (hopping or hopping off).
5). Set the spectrum analyzer to start measurement.
6). Record the values. Vector Signal Analyzer
EUT
Power
Splitter
Vector Signal
Analyzer
CBT32
A.1.2. Radiated Emission Measurements
The measurement is made according to ANSI C63.10
The radiated emission test is performed in semi-anechoic chamber. The distance from the EUT to
the reference point of measurement antenna is 3m. The test is carried out on both vertical and
horizontal polarization and only maximization result of both polarizations is kept. During the test,
the turntable is rotated 360° and the measurement antenna is moved from 1m to 4m to get the
maximization result.
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 = 1MHz;
Receiver
Signalling
Tester
Amp
Tower/Table
Controller
Filter
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A.2. Peak Output Power – Conducted
Method of Measurement: See ANSI C63.10-clause 7.8.5
a) Use the following spectrum analyzer settings:
 Span: 6MHz
 RBW: 3MHz
 VBW: 3MHz
 Sweep time: 2.5ms
 Detector function: peak
 Trace: max hold
b) Allow trace to stabilize.
c) Use the marker-to-peak function to set the marker to the peak of the emission.
d) The indicated level is the peak output power.
Measurement Limit:
Standard
Limit (dBm)
FCC Part 15.247(b)(1)
< 30
Measurement Results:
For GFSK
Channel
Ch 0
2402 MHz
Ch 39
2441 MHz
Ch 78
2480 MHz
Conclusion
Peak Conducted
Output Power
(dBm)
8.41
8.87
8.30
Channel
Ch 0
2402 MHz
Ch 39
2441 MHz
Ch 78
2480 MHz
Conclusion
Peak Conducted
Output Power
(dBm)
8.34
8.84
8.30
Channel
Ch 0
2402 MHz
Ch 39
2441 MHz
Ch 78
2480 MHz
Conclusion
Peak Conducted
Output Power
(dBm)
8.60
9.15
8.58
Forπ/4 DQPSK
For 8DPSK
Conclusion: PASS
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A.3. Frequency Band Edges – Conducted
Method of Measurement: See ANSI C63.10-clause 7.8.6
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 (be sure to enter all losses
between the unlicensed wireless device output and the spectrum analyzer).
⎯ Span: 10 MHz
⎯ Resolution Bandwidth: 100 kHz
⎯ Video Bandwidth: 300 kHz
⎯ Sweep Time: 5ms
⎯ Detector: Peak
⎯ Trace: max hold
Place a marker at the end of the restricted band closest to the transmit frequency to show
compliance. Also measure any emissions in the restricted bands. Save the spectrum analyzer plot.
Repeat for each power and modulation for lowest and highest channel.
Observe the stored trace and measure the amplitude delta between the peak of the fundamental
and the peak of the band-edge emission. This is not an absolute field strength measurement; it is
only a relative measurement to determine the amount by which the emission drops at the band
edge relative to the highest fundamental emission level.
Measurement Limit:
Standard
Limit (dBc)
FCC 47 CFR Part 15.247 (d)
< -20
Measurement Result:
For GFSK
Channel
78
Hopping
Band Edge Power ( dBc)
Conclusion
Hopping OFF
Fig.1
-56.01
Hopping ON
Fig.2
-67.66
Hopping OFF
Fig.3
-68.38
Hopping ON
Fig.4
-69.59
Forπ/4 DQPSK
Channel
78
Hopping
Band Edge Power ( dBc)
Conclusion
Hopping OFF
Fig.5
-57.34
Hopping ON
Fig.6
-63.27
Hopping OFF
Fig.7
-65.69
Hopping ON
Fig.8
-67.04
For 8DPSK
Channel
Hopping
Band Edge Power ( dBc)
Conclusion
Hopping OFF
Fig.9
-56.74
Hopping ON
Fig.10
-65.73
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78
Hopping OFF
Fig.11
-66.55
Hopping ON
Fig.12
-67.34
Conclusion: PASS
Test graphs as below
Fig.1.
Frequency Band Edges: GFSK, Channel 0, Hopping Off
Fig.2.
Frequency Band Edges: GFSK, Channel 0, Hopping On
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Fig.3.
Frequency Band Edges: GFSK, Channel 78, Hopping Off
Fig.4.
Frequency Band Edges: GFSK, Channel 78, Hopping On
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Fig.5.
Frequency Band Edges: π/4 DQPSK, Channel 0, Hopping Off
Fig.6.
Frequency Band Edges: π/4 DQPSK, Channel 0, Hopping On
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Fig.7.
Frequency Band Edges: π/4 DQPSK, Channel 78, Hopping Off
Fig.8.
Frequency Band Edges: π/4 DQPSK, Channel 78, Hopping On
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Fig.9.
Frequency Band Edges: 8DPSK, Channel 0, Hopping Off
Fig.10. Frequency Band Edges: 8DPSK, Channel 0, Hopping On
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Fig.11. Frequency Band Edges: 8DPSK, Channel 78, Hopping Off
Fig.12. Frequency Band Edges: 8DPSK, Channel 78, Hopping On
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A.4. Conducted Emission
Method of Measurement: See ANSI C63.10-clause 7.8.8
Measurement Procedure – Reference Level
1. Set the RBW = 100 kHz.
2. Set the VBW = 300 kHz.
3. Set the span to 5-30 % greater than the EBW.
4. Detector = peak.
5. Sweep time = auto couple.
6. Trace mode = max hold.
7. Allow trace to fully stabilize.
8. Use the peak marker function to determine the maximum power level in any 100 kHz band
segment within the fundamental EBW. Next, determine the power in 100 kHz band segments
outside of the authorized frequency band using the following measurement:
Measurement Procedure - Unwanted Emissions
1. Set RBW = 100 kHz.
2. Set VBW = 300 kHz.
3. Set span to encompass the spectrum to be examined.
4. Detector = peak.
5. Trace Mode = max hold.
6. Sweep = auto couple.
7. Allow the trace to stabilize (this may take some time, depending on the extent of the span).
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 above.
Measurement Limit:
Standard
Limit
FCC 47 CFR Part 15.247 (d)
20dB below peak output power in 100 kHz
bandwidth
Measurement Results:
For GFSK
Channel
Frequency Range
Ch 0
Center Frequency
Test Results
Fig.13
Conclusion
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No. I16Z42454-SRD03
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2402 MHz
Ch 39
2441 MHz
Ch 78
2480 MHz
30 MHz ~ 1 GHz
Fig.14
1 GHz ~ 3 GHz
Fig.15
3 GHz ~ 10 GHz
Fig.16
10 GHz ~ 26 GHz
Fig.17
Center Frequency
Fig.18
30 MHz ~ 1 GHz
Fig.19
1 GHz ~ 3 GHz
Fig.20
3 GHz ~ 10 GHz
Fig.21
10 GHz ~ 26 GHz
Fig.22
Center Frequency
Fig.23
30 MHz ~ 1 GHz
Fig.24
1 GHz ~ 3 GHz
Fig.25
3 GHz ~ 10 GHz
Fig.26
10 GHz ~ 26 GHz
Fig.27
For π/4 DQPSK
Channel
Ch 0
2402 MHz
Ch 39
2441 MHz
Ch 78
2480 MHz
Frequency Range
Test Results
Conclusion
Center Frequency
Fig.28
30 MHz ~ 1 GHz
Fig.29
1 GHz ~ 3 GHz
Fig.30
3 GHz ~ 10 GHz
Fig.31
10 GHz ~ 26 GHz
Fig.32
Center Frequency
Fig.33
30 MHz ~ 1 GHz
Fig.34
1 GHz ~ 3 GHz
Fig.35
3 GHz ~ 10 GHz
Fig.36
10 GHz ~ 26 GHz
Fig.37
Center Frequency
Fig.38
30 MHz ~ 1 GHz
Fig.39
1 GHz ~ 3 GHz
Fig.40
3 GHz ~ 10 GHz
Fig.41
10 GHz ~ 26 GHz
Fig.42
For 8DPSK
Channel
Ch 0
2402 MHz
Frequency Range
Test Results
Conclusion
Center Frequency
Fig.43
30 MHz ~ 1 GHz
Fig.44
1 GHz ~ 3 GHz
Fig.45
3 GHz ~ 10 GHz
Fig.46
10 GHz ~ 26 GHz
Fig.47
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Center Frequency
Fig.48
30 MHz ~ 1 GHz
Fig.49
1 GHz ~ 3 GHz
Fig.50
3 GHz ~ 10 GHz
Fig.51
10 GHz ~ 26 GHz
Fig.52
Center Frequency
Fig.53
30 MHz ~ 1 GHz
Fig.54
1 GHz ~ 3 GHz
Fig.55
3 GHz ~ 10 GHz
Fig.56
10 GHz ~ 26 GHz
Fig.57
Ch 39
2441 MHz
Ch 78
2480 MHz
Conclusion: PASS
Test graphs as below
Fig.13. Conducted spurious emission: GFSK, Channel 0,2402MHz
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Fig.14. Conducted spurious emission: GFSK, Channel 0, 30MHz - 1GHz
Fig.15. Conducted spurious emission: GFSK, Channel 0, 1GHz - 3GHz
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No. I16Z42454-SRD03
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Fig.16. Conducted spurious emission: GFSK, Channel 0, 3GHz - 10GHz
Fig.17. Conducted spurious emission: GFSK, Channel 0,10GHz - 26GHz
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Fig.18. Conducted spurious emission: GFSK, Channel 39, 2441MHz
Fig.19. Conducted spurious emission: GFSK, Channel 39, 30MHz - 1GHz
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Fig.20. Conducted spurious emission: GFSK, Channel 39, 1GHz – 3GHz
Fig.21. Conducted spurious emission: GFSK, Channel 39, 3GHz – 10GHz
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Fig.22. Conducted spurious emission: GFSK, Channel 39, 10GHz – 26GHz
Fig.23. Conducted spurious emission: GFSK, Channel 78, 2480MHz
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Fig.24. Conducted spurious emission: GFSK, Channel 78, 30MHz - 1GHz
Fig.25. Conducted spurious emission: GFSK, Channel 78, 1GHz - 3GHz
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Fig.26. Conducted spurious emission: GFSK, Channel 78, 3GHz - 10GHz
Fig.27. Conducted spurious emission: GFSK, Channel 78, 10GHz - 26GHz
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No. I16Z42454-SRD03
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Fig.28. Conducted spurious emission: π/4 DQPSK, Channel 0,2402MHz
Fig.29. Conducted spurious emission: π/4 DQPSK, Channel 0, 30MHz - 1GHz
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Fig.30. Conducted spurious emission: π/4 DQPSK, Channel 0, 1GHz - 3GHz
Fig.31. Conducted spurious emission: π/4 DQPSK, Channel 0, 3GHz - 10GHz
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Fig.32. Conducted spurious emission: π/4 DQPSK, Channel 0,10GHz - 26GHz
Fig.33. Conducted spurious emission: π/4 DQPSK, Channel 39, 2441MHz
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No. I16Z42454-SRD03
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Fig.34. Conducted spurious emission: π/4 DQPSK, Channel 39, 30MHz - 1GHz
Fig.35. Conducted spurious emission: π/4 DQPSK, Channel 39, 1GHz - 3GHz
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No. I16Z42454-SRD03
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Fig.36. Conducted spurious emission: π/4 DQPSK, Channel 39, 3GHz - 10GHz
Fig.37. Conducted spurious emission: π/4 DQPSK, Channel 39, 10GHz – 26GHz
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No. I16Z42454-SRD03
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Fig.38. Conducted spurious emission: π/4 DQPSK, Channel 78, 2480MHz
Fig.39. Conducted spurious emission: π/4 DQPSK, Channel 78, 30MHz - 1GHz
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No. I16Z42454-SRD03
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Fig.40. Conducted spurious emission: π/4 DQPSK, Channel 78, 1GHz - 3GHz
Fig.41. Conducted spurious emission: π/4 DQPSK, Channel 78, 3GHz - 10GHz
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Fig.42. Fig.30 Conducted spurious emission: π/4 DQPSK, Channel 78, 10GHz - 26GHz
Fig.43. Conducted spurious emission: 8DPSK, Channel 0,2402MHz
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Fig.44. Conducted spurious emission: 8DPSK, Channel 0, 30MHz - 1GHz
Fig.45. Conducted spurious emission: 8DPSK, Channel 0, 1GHz - 3GHz
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No. I16Z42454-SRD03
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Fig.46. Conducted spurious emission: 8DPSK, Channel 0, 3GHz - 10GHz
Fig.47. Conducted spurious emission: 8DPSK, Channel 0,10GHz - 26GHz
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Download: N016 GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile phone Test Report EMC2001239 TCL Communication Ltd.
Mirror Download [FCC.gov]N016 GSM Quad-band/HSPA-UMTS Six-band/LTE 19 band mobile phone Test Report EMC2001239 TCL Communication Ltd.
Document ID3323764
Application IDOPhOALlwakKYTCJKANtZYw==
Document DescriptionI16Z42454_SRD03_FCC_Report_Part15C_EDR_Rev1_1-42
Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeTest Report
Display FormatAdobe Acrobat PDF - pdf
Filesize408.5kB (5106305 bits)
Date Submitted2017-03-20 00:00:00
Date Available2017-03-22 00:00:00
Creation Date2017-03-16 09:25:59
Producing SoftwareMicrosoft® Word 2010
Document Lastmod2017-03-16 09:26:00
Document TitleEMC2001239
Document CreatorMicrosoft® Word 2010
Document Author: wule

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Create Date                     : 2017:03:16 09:25:59+08:00
Metadata Date                   : 2017:03:16 09:26+08:00
Creator Tool                    : Microsoft® Word 2010
Format                          : application/pdf
Title                           : EMC2001239
Description                     : Test Report of Base Station Controller(ZTE)
Creator                         : wule
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Instance ID                     : uuid:202a3358-386d-4f35-aca5-820f6615b73e
Producer                        : Microsoft® Word 2010
Page Count                      : 42
Author                          : wule
Subject                         : Test Report of Base Station Controller(ZTE)