GO182 Mobile Phone Test Report HD 271 S1 NEXUS TELECOM SERVICES (HK) LIMITED

NEXUS TELECOM SERVICES (HK) LIMITED Mobile Phone

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Shenzhen Zhongjian Nanfang Testing Co., Ltd.
Report No:CCISE160600401
1. Cover Page
FCC REPORT
(GSM)
Applicant:
NEXUS TELECOM SERVICES (HK) LIMITED
Address of Applicant:
R112, 11/F Hollywood Plaza, Mangkok, Kowloon, Hong Kong
Equipment Under Test (EUT)
Product Name:
Mobile Phone
Model No.:
GO182
Trade mark:
GOMOBILE
FCC ID:
2AHDFGO182
Applicable standards:
FCC CFR Title 47 Part 2
FCC CFR Title 47 Part 22 Subpart H
FCC CFR Title 47 Part 24 Subpart E
Date of sample receipt:
01 Jun., 2016
Date of Test:
01 Jun., to 12 Jun., 2016
Date of report issued:
17 Jun., 2016
Test Result:
PASS*
In the configuration tested, the EUT complied with the standards specified above.
Authorized Signature:
Bruce Zhang
Laboratory Manager
This report details the results of the testing carried out on one sample. The results contained in this test report do not relate to other
samples of the same product and does not permit the use of the CCIS product certification mark. The manufacturer should ensure that all
products in series production are in conformity with the product sample detailed in this report.
This report may only be reproduced and distributed in full. If the product in this report is used in any configuration other than that detailed in
the report, the manufacturer must ensure the new system complies with all relevant standards.
This document cannot be reproduced except in full, without prior written approval of the Company. Any unauthorized alteration, forgery or
falsification of the content or appearance of this document is unlawful and offenders may be prosecuted to the fullest extent of the law.
Unless otherwise stated the results shown in this test report refer only to the sample(s) tested and such sample(s) are retained for 90 days
only.
Report No: CCISE160600401
2. Version
Version No.
Date
Description
00
13 Jun., 2016
Original
01
17 Jun., 2016
Revised Average power
Tested by:
Date:
17 Jun., 2016
Date:
17 Jun., 2016
Test Engineer
Reviewed by:
Project Engineer
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 2 of 44
Report No: CCISE160600401
3. Contents
Page
1.
COVER PAGE .............................................................................................................................................................. 1
2.
VERSION ....................................................................................................................................................................... 2
3.
CONTENTS................................................................................................................................................................... 3
4.
TEST SUMMARY ......................................................................................................................................................... 4
5.
GENERAL INFORMATION ........................................................................................................................................ 5
5.1
5.2
5.3
5.4
5.5
5.6
5.7
5.8
5.9
6.
CLIENT INFORMATION ............................................................................................................................................ 5
GENERAL DESCRIPTION OF E.U.T........................................................................................................................ 5
TEST MODES .......................................................................................................................................................... 7
MEASUREMENT UNCERTAINTY.............................................................................................................................. 7
RELATED SUBMITTAL(S) / GRANT (S).................................................................................................................... 7
TEST METHODOLOGY ............................................................................................................................................ 7
LABORATORY FACILITY.......................................................................................................................................... 7
LABORATORY LOCATION ....................................................................................................................................... 7
TEST INSTRUMENTS LIST ....................................................................................................................................... 8
SYSTEM TEST CONFIGURATION .......................................................................................................................... 9
6.1
6.2
6.3
6.4
6.5
6.6
6.7
6.8
6.9
6.10
6.11
6.12
6.13
EUT CONFIGURATION ........................................................................................................................................... 9
EUT EXERCISE...................................................................................................................................................... 9
CONFIGURATION OF TESTED SYSTEM .................................................................................................................. 9
DESCRIPTION OF TEST MODES ............................................................................................................................. 9
CONDUCTED OUTPUT POWER ............................................................................................................................ 10
OCCUPY BANDWIDTH .......................................................................................................................................... 12
PEAK-TO-AVERAGE POWER RATIO .................................................................................................................... 18
MODULATION CHARACTERISTIC .......................................................................................................................... 20
OUT OF BAND EMISSION AT ANTENNA TERMINALS .............................................................................................. 20
ERP, EIRP MEASUREMENT ............................................................................................................................... 25
FIELD STRENGTH OF SPURIOUS RADIATION MEASUREMENT............................................................................... 28
FREQUENCY STABILITY V.S. TEMPERATURE MEASUREMENT............................................................................. 31
FREQUENCY STABILITY V.S. VOLTAGE MEASUREMENT ..................................................................................... 33
TEST SETUP PHOTO ............................................................................................................................................... 35
EUT CONSTRUCTIONAL DETAILS ...................................................................................................................... 36
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 3 of 44
Report No: CCISE160600401
4. Test Summary
Test Item
Section in CFR 47
Result
RF Exposure (SAR)
Part 1.1307
Part 2.1093
Pass
(Please refer to
SAR Report)
RF Output Power
Part 2.1046
Part 22.913 (a)(2)
Part 24.232 (c)
Pass
Peak-to-Average Power Ratio
Part 24.232 (d)
Pass
Modulation Characteristics
Part 2.1047
Pass
99% & -26 dB Occupied Bandwidth
Part 2.1049
Part 22.917(b)
Part 24.238(b)
Pass
Spurious Emissions at Antenna Terminal
Part 2.1051
Part 22.917 (a)
Part 24.238 (a)
Pass
Field Strength of Spurious Radiation
Part 2.1053
Part 22.917 (a)
Part 24.238 (a)
Pass
Out of band emission, Band Edge
Part 22.917 (a)
Part 24.238 (a)
Pass
Frequency stability vs. temperature
Part 2.1055(a)(1)(b)
Pass
Frequency stability vs. voltage
Part 2.1055(d)(1)(2)
Pass
Pass: The EUT complies with the essential requirements in the standard.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 4 of 44
Report No: CCISE160600401
5. General Information
5.1 Client Information
Applicant:
NEXUS TELECOM SERVICES (HK) LIMITED
Address of Applicant:
R112, 11/F Hollywood Plaza, Mangkok, Kowloon, Hong Kong
Manufacturer
UTIME TECHNOLOGY (HK) COMPANY LIMITED
Address of Manufacturer:
RM 604 KAI WONG COMM BLDG 222 QUEEN'S RD CENTRAL HONG
KONG
5.2 General Description of E.U.T.
Product Name:
Mobile Phone
Model No.:
GO182
Operation Frequency range:
GSM 850: 824.20MHz-848.80MHz
PCS1900: 1850.20MHz-1909.80MHz
Modulation type:
GSM/GPRS:GMSK
Antenna type:
Internal Antenna
Antenna gain:
GSM850:-1.79dBi
PCS1900:1.48dBi
Power supply:
Rechargeable Li-ion Battery DC3.7V-600mAh
AC adapter:
Input: AC100-240V 50/60Hz 0.1A
Output: DC 5.0V, 0.5A
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 5 of 44
Report No: CCISE160600401
Operation Frequency List:
GSM 850
PCS1900
Channel:
Frequency (MHz)
Channel:
Frequency (MHz)
128
824.20
512
1850.20
129
824.40
513
1850.40
….
….
….
….
189
836.40
660
1879.80
190
836.60
661
1880.00
191
836.80
662
1880.20
…
…
…
…
250
848.60
809
1909.60
251
848.80
810
1909.80
Regards to the operating frequency range over 10 MHz, the Lowest frequency, the middle frequency, and the
highest frequency of channel were selected to perform the test, and the selected channel see below:
GSM850
Channel
PCS1900
Frequency(MHz)
Channel
Frequency(MHz)
Lowest channel
128
824.20
Lowest channel
512
1850.20
Middle channel
190
836.60
Middle channel
661
1880.00
Highest channel
251
848.80
Highest channel
810
1909.80
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 6 of 44
Report No: CCISE160600401
5.3 Test modes
Voice mode
Data mode (GPRS)
Remark:
Keep the EUT in voice mode on GSM850 and PCS 1900 respectively.
Keep the EUT in GPRS mode on GSM850 and PCS 1900 respectively.
Just the worst case mode shown in report.
5.4 Measurement Uncertainty
Items
Conducted Emission (9kHz ~ 30MHz)
Radiated Emission (9kHz ~ 30MHz)
Radiated Emission (30MHz ~ 1000MHz)
Radiated Emission (1GHz ~ 18GHz)
Radiated Emission (18GHz ~ 26.5GHz)
Expanded Uncertainty (Confidence of 95%)
2.14 dB (k=2)
4.24 dB (k=2)
4.35 dB (k=2)
4.44 dB (k=2)
4.56 dB (k=2)
5.5 Related Submittal(s) / Grant (s)
This submittal(s) (test report) is filing to comply with Section Part 22 subpart H and Part 24 subpart E of the
FCC CFR 47 Rules.
5.6 Test Methodology
Both conducted and radiated testing were performed according to the procedures document on TIA/EIA 603
and FCC CFR 47.1046, 2.1047, 2.1049, 2.1051, 2.1053, 2.1055 and 2.1057
5.7 Laboratory Facility
The test facility is recognized, certified, or accredited by the following organizations:
● FCC - Registration No.: 817957
Shenzhen Zhongjian Nanfang Testing Co., Ltd. EMC Laboratory has been registered and fully described in
a report filed with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is
maintained in out files. Registration 817957, February 27, 2012.
● IC - Registration No.: 10106A-1
The 3m Semi-anechoic chamber of Shenzhen Zhongjian Nanfang Testing Co., Ltd. has been Registered by
Certification and Engineering Bureau of Industry Canada for radio equipment testing with Registration No.:
10106A-1.
● CNAS - Registration No.: CNAS L6048
Shenzhen Zhongjian Nanfang Testing Co., Ltd. is accredited to ISO/IEC 17025:2005 General Requirements
for the Competence of Testing and Calibration laboratories for the competence of testing. The Registration
No. is CNAS L6048.
5.8 Laboratory Location
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
Address: No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Tel: +86-755-23118282
Fax: +86-755-23116366
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 7 of 44
Report No: CCISE160600401
5.9 Test Instruments list
Test Equipment
3m Semi- Anechoic
Chamber
BiConiLog Antenna
Manufacturer
SAEMC
SCHWARZBECK
MESS-ELEKTRONIK
Model No.
Inventory
Cal. Date
Cal. Due date
No.
(mm-dd-yy)
(mm-dd-yy)
9(L)*6(W)* 6(H)
CCIS0001
08-23-2014
08-22-2017
VULB9163
CCIS0005
03-25-2016
03-25-2017
BBHA9120D
CCIS0006
03-25-2016
03-25-2017
Double -ridged
SCHWARZBECK
waveguide horn
MESS-ELEKTRONIK
EMI Test Software
AUDIX
E3
N/A
N/A
N/A
HP
8447D
CCIS0003
04-01-2016
03-31-2017
PAP-1G18
CCIS0011
04-01-2016
03-31-2017
GTS218
04-01-2016
03-31-2017
Amplifier
(10kHz-1.3GHz)
Amplifier
Compliance Direction
(1GHz-18GHz)
Systems Inc.
Pre-amplifier
(18-26GHz)
Rohde & Schwarz
AFS33-18002
650-30-8P-44
Horn Antenna
ETS-LINDGREN
3160
GTS217
04-01-2016
03-31-2017
Printer
HP
HP LaserJet P1007
N/A
N/A
N/A
Positioning Controller
UC
UC3000
CCIS0015
N/A
N/A
FSP 30
CCIS0023
03-28-2016
03-28-2017
Spectrum analyzer
9k-30GHz
Rohde & Schwarz
EMI Test Receiver
Rohde & Schwarz
ESPI
CCIS0022
03-28-2016
03-28-2017
EMI Test Receiver
Rohde & Schwarz
ESRP7
CCIS0167
03-24-2016
03-24-2017
Loop antenna
Laplace instrument
RF300
EMC0701
04-01-2016
03-31-2017
Rhode&Schwarz
CMU200
CCIS0069
03-28-2016
03-28-2017
Rohde & Schwarz
FSIQ3
CCIS0088
04-08-2016
04-08-2017
WYK-10020K
CCIS0201
10-31-2015
10-30-2016
HPGDS-500
CCIS0240
11-18-2015
11-27-2016
Universal radio
communication tester
Signal Analyzer
DC Power Supply
Shenzhen XinNuoEr
Technologies Co., Ltd.
Temperature Humidity
Fo Shan HengPu
Chamber
Electronics Co., Ltd.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 8 of 44
Report No: CCISE160600401
6. System test configuration
6.1 EUT Configuration
The EUT configuration for testing is installed on RF field strength measurement to meet the
commission’s requirement and operating in a manner which intends to maximize its emission
characteristics in a continuous normal application.
6.2 EUT Exercise
The EUT (Transmitter) was operated in the engineering mode to fix the Tx frequency which was for the
purpose of the measurements.
6.3 Configuration of Tested System
6.4 Description of Test Modes
The EUT has been tested under operating condition.
EUT staying in continuous transmitting mode. Channel Low, Mid and High for each type band with rated
data rate were chosen for full testing.
The field strength of spurious radiation emission was measured as EUT stand-up position (H mode) and
lie down position (E1, E2 mode) for three modes (GSM850, PCS1900) with power adaptor, earphone and
Data cable. The worst-case H mode for GSM850, PCS1900.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 9 of 44
Report No: CCISE160600401
6.5 Conducted Output Power
Test Requirement:
FCC part 22.913(a), FCC part 24.232(b)
Test Method:
FCC part 2.1046
Limit:
GSM850: 7W
PCS1900: 2W
Test setup:
Test Procedure:
The transmitter output was connected to a calibrated attenuator, the other
end of which was connected to the simulated station. Transmitter output
power was read off in dBm.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 10 of 44
Report No: CCISE160600401
Measurement Data:
Burst Average power (dBm)
EUT Mode
Limit(dBm)
128
190
251
824.20MHz
836.60MHz
848.80MHz
GSM 850
32.10
32.04
32.20
GPRS 850 (1 Uplink slot)
31.94
32.01
32.01
GPRS 850 (2 Uplink slot)
GPRS 850 (3 Uplink slot)
GPRS 850 (4 Uplink slot)
31.04
28.87
27.51
31.09
28.91
27.53
31.03
28.82
27.48
38.45
Limit(dBm)
Burst Average power (dBm)
EUT Mode
512
661
810
1850.20MHz
1880.00MHz
1909.80MHz
PCS 1900
29.28
29.22
29.28
GPRS 1900 (1 Uplink slot)
29.35
29.36
29.09
GPRS 1900 (2 Uplink slot)
28.21
28.11
27.95
GPRS 1900 (3 Uplink slot)
25.60
25.63
25.57
GPRS 1900 (4 Uplink slot)
24.03
24.09
23.99
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
33.00
Project No.:CCISE1606004
Page 11 of 44
Report No: CCISE160600401
6.6 Occupy Bandwidth
Test Requirement:
FCC part 22.913(a), FCC part 24.232(b)
Test Method:
FCC part 2.1049
Test setup:
Test Procedure:
1.
2.
3.
The EUT’s output RF connector was connected with a short cable to
the spectrum analyzer
RBW was set to about 1% of emission BW, VBW= 3 times RBW.
-26dBc display line was placed on the screen (or 99% bandwidth),
the occupied bandwidth is the delta frequency between the two
points where the display line intersects the signal trace.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 12 of 44
Report No: CCISE160600401
Measurement Data:
EUT Mode
GSM 850
PCS 1900
Channel
Frequency (MHz)
128
190
251
512
661
810
824.2
836.6
848.8
1850.2
1880.0
1909.8
99% Occupy bandwidth
(kHz)
244
246
244
248
248
244
-26dB bandwidth (kHz)
316
320
310
322
310
322
Note: GSM & GPRS use the same modulation technical (GMSK), and with the same channels, so the 99%
OBW and the -26dB of GPRS not performed.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 13 of 44
Report No: CCISE160600401
Test plot as follows:
99% Occupy bandwidth
GSM850
Ref
36 dBm
Offset
* Att
40 dB
10 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
30.31 dBm
SWT 10 ms
824.192000000 MHz
OBW244.000000000 kHz
30
Temp 1 [T1 OBW]
16.10 dBm
824.080000000 MHz
1 PK
20
T1
T2
MAXH
Temp 2 [T1 OBW]
14.99 dBm LVL
824.324000000 MHz
10
-10
-20
3DB
-30
-40
-50
-60
Center 824.2 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:33:35
Lowest channel
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
29.22 dBm
SWT 10 ms
10 dB
836.606000000 MHz
OBW246.000000000 kHz
30
Temp 1 [T1 OBW]
15.03 dBm
836.480000000 MHz
1 PK
20
T1
MAXH
T2
Temp 2 [T1 OBW]
14.86 dBm LVL
836.726000000 MHz
10
-10
-20
3DB
-30
-40
-50
-60
Center 836.6 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:34:41
Middle channel
Ref
36 dBm
Offset
* Att
40 dB
10 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
29.25 dBm
SWT 10 ms
848.792000000 MHz
OBW244.000000000 kHz
30
Temp 1 [T1 OBW]
17.04 dBm
848.680000000 MHz
1 PK
20
T1
T2
MAXH
Temp 2 [T1 OBW]
15.58 dBm LVL
848.924000000 MHz
10
-10
-20
3DB
-30
-40
-50
-60
Center 848.8 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:35:24
Highest channel
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 14 of 44
Report No: CCISE160600401
26dB Emission Bandwidth
GSM850
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
29.12 dBm
SWT 10 ms
10 dB
824.272000000 MHz
ndB [T1]
30
26.00 dB
BW 316.000000000 kHz
Temp 1 [T1 ndB]
3.35 dBm
1 PK
20
824.044000000 MHz
MAXH
Temp 2 [T1 ndB]
LVL
3.78 dBm
10
824.360000000 MHz
T2
T1
-10
-20
3DB
-30
-40
-50
-60
Center 824.2 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:33:57
Lowest channel
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
28.71 dBm
SWT 10 ms
10 dB
836.642000000 MHz
ndB [T1]
30
26.00 dB
BW 320.000000000 kHz
Temp 1 [T1 ndB]
2.45 dBm
1 PK
20
836.442000000 MHz
MAXH
Temp 2 [T1 ndB]
LVL
2.92 dBm
10
836.762000000 MHz
T2
T1
-10
-20
3DB
-30
-40
-50
-60
Center 836.6 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:34:23
Middle channel
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
28.60 dBm
848.798000000 MHz
10 dB
ndB [T1]
30
Marker 1 [T1 ]
SWT 10 ms
26.00 dB
BW 318.000000000 kHz
Temp 1 [T1 ndB]
2.76 dBm
1 PK
20
848.646000000 MHz
MAXH
Temp 2 [T1 ndB]
LVL
2.99 dBm
10
T2
T1
848.964000000 MHz
-10
-20
3DB
-30
-40
-50
-60
Center 848.8 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:35:39
Highest channel
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 15 of 44
Report No: CCISE160600401
99% Occupy bandwidth
PCS 1900
Ref
36 dBm
Offset
* Att
* RBW
10 kHz
* VBW
30 kHz
40 dB
Marker 1 [T1 ]
27.63 dBm
SWT 10 ms
10 dB
1.850192000 GHz
OBW248.000000000 kHz
30
Temp 1 [T1 OBW]
11.74 dBm
1.850078000 GHz
1 PK
20
Temp 2 [T1 OBW]
MAXH
T1
11.69 dBm LVL
T2
1.850326000 GHz
10
-10
-20
3DB
-30
-40
-50
-60
Center 1.8502 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:27:30
Lowest channel
Ref
36 dBm
Offset
* Att
* RBW
10 kHz
* VBW
30 kHz
40 dB
Marker 1 [T1 ]
26.15 dBm
SWT 10 ms
10 dB
1.880010000 GHz
OBW248.000000000 kHz
30
Temp 1 [T1 OBW]
11.35 dBm
1.879880000 GHz
1 PK
20
Temp 2 [T1 OBW]
MAXH
11.86 dBm LVL
1.880128000 GHz
T2
T1
10
-10
-20
3DB
-30
-40
-50
-60
Center 1.88 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:29:25
Middle channel
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
25.19 dBm
SWT 10 ms
10 dB
1.909824000 GHz
OBW244.000000000 kHz
30
Temp 1 [T1 OBW]
10.66 dBm
1.909682000 GHz
1 PK
20
Temp 2 [T1 OBW]
MAXH
T2
T1
11.30 dBm LVL
1.909926000 GHz
10
-10
-20
3DB
-30
-40
-50
-60
Center 1.9098 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:30:05
Highest channel
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 16 of 44
Report No: CCISE160600401
26dB Emission Bandwidth
PCS 1900
Ref
36 dBm
Offset
* Att
* RBW
10 kHz
* VBW
30 kHz
40 dB
Marker 1 [T1 ]
25.76 dBm
SWT 10 ms
1.850208000 GHz
10 dB
ndB [T1]
30
26.00 dB
BW 322.000000000 kHz
Temp 1 [T1 ndB]
0.17 dBm
1 PK
20
1.850044000 GHz
MAXH
Temp 2 [T1 ndB]
LVL
-0.37 dBm
10
1.850366000 GHz
T1
T2
-10
-20
3DB
-30
-40
-50
-60
Center 1.8502 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:28:14
Lowest channel
Ref
36 dBm
Offset
* Att
* RBW
10 kHz
* VBW
30 kHz
40 dB
Marker 1 [T1 ]
26.12 dBm
SWT 10 ms
1.880020000 GHz
10 dB
ndB [T1]
30
26.00 dB
BW 318.000000000 kHz
Temp 1 [T1 ndB]
0.13 dBm
1 PK
20
1.879844000 GHz
MAXH
Temp 2 [T1 ndB]
LVL
-0.71 dBm
10
1.880162000 GHz
T1
T2
-10
-20
3DB
-30
-40
-50
-60
Center 1.88 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:28:53
Middle channel
Ref
36 dBm
Offset
* Att
40 dB
* RBW
10 kHz
* VBW
30 kHz
Marker 1 [T1 ]
26.11 dBm
SWT 10 ms
1.909792000 GHz
10 dB
ndB [T1]
30
26.00 dB
BW 322.000000000 kHz
Temp 1 [T1 ndB]
0.28 dBm
1 PK
20
1.909642000 GHz
MAXH
Temp 2 [T1 ndB]
LVL
0.59 dBm
10
1.909964000 GHz
T2
T1
-10
-20
3DB
-30
-40
-50
-60
Center 1.9098 GHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
10:31:23
Highest channel
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 17 of 44
Report No: CCISE160600401
6.7 Peak-to-Average Power Ratio
Test Requirement:
FCC part 24.232(d)
Limit:
The peak-to-average ratio (PAR) of the transmission may not exceed 13
dB.
Test setup:
Test Procedure:
The RF output of the transceiver was connected to a spectrum
analyzer through appropriate attenuation.
Set the CCDF option in spectrum analyzer, RBW ≥ OBW,
Set the EUT working in highest power level, measured and recorded
the 0.1% as PAPR level.
Repeat step 1~3 at other frequency and modulations.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed
Measurement Data (worst case):
Modulation
Test channel
PAPR
GSM 850
190
0.01
PCS 1900
661
0.08
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 18 of 44
Report No: CCISE160600401
Test plots as below:
Middle channel
Modulation: GSM 850
Ref
40
40 dBm
Offset
* Att
* RBW
1 MHz
* VBW
3 MHz
40 dB
Delta 2 [T1 ]
0.01 dB
SWT 2.5 ms
10 dB
-30.000000000 kHz
Marker 1 [T1 ]
21
32.34 dBm
836.650000000 MHz
30
1 PK
MAXH
20
LVL
10
3 AV *
MAXH
-10
3DB
-20
-30
-40
-50
-60
Center 836.6 MHz
Date: 2.JUN.2016
500 kHz/
Span 5 MHz
09:53:12
Middle channel
Modulation:PCS 1900
Ref
40
40 dBm
Offset
* Att
* RBW
1 MHz
* VBW
3 MHz
40 dB
SWT 2.5 ms
10 dB
Delta 2 [T3 ]
-0.08 dB
70.000000000 kHz
Marker 1 [T1 ]
12
30
29.12 dBm
1.879970000 GHz
1 PK
MAXH
20
LVL
10
3 AV *
MAXH
-10
3DB
-20
-30
-40
-50
-60
Center 1.88 GHz
Date: 2.JUN.2016
500 kHz/
Span 5 MHz
10:11:55
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 19 of 44
Report No: CCISE160600401
6.8 Modulation Characteristic
According to FCC § 2.1047(d), Part 22H & 24Ethere is no specific requirement for digital modulation,
therefore modulation characteristic is not presented.
6.9 Out of band emission at antenna terminals
Test Requirement:
FCC part 22.917(a), FCC part 24.238(a)
Test Method:
FCC part 2.1051
Limit:
-13dBm
Test setup:
Test Procedure:
The RF output of the transceiver was connected to a spectrum
analyzer through appropriate attenuation.
The resolution bandwidth of the spectrum analyzer was set at 100
kHz when below 1GHz, 1MHz when above 1 GHz; sufficient scans
were taken to show the out of band Emissions if any up to 10th
harmonic.
For the out of band: Set the RBW=100 kHz, VBW=300 kHz when
below 1 GHz, RBW =1 MHz, VBW=3 MHz when above 1 GHz,
Start=30MHz, Stop= 10th harmonic.
Band Edge Requirements: In the 1 MHz bands immediately outside
and adjacent to the frequency block, a resolution bandwidth of at
least 1 percent of the emission bandwidth of the fundamental
emission of the transmitter may be employed to measure the out of
band Emissions.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 20 of 44
Report No: CCISE160600401
Test plots as follows:
Spurious emission:
GSM 850
Lowest Channel
Ref
30
33 dBm
Offset
* Att
40 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-34.55 dBm
798.240000000 MHz
Ref
10 dB
20
24 dBm
Offset
* Att
30 dB
* RBW
1 MHz
* VBW
3 MHz
SWT 160 ms
10 dB
-26.89 dBm
1.640000000 GHz
20
1 PK
MAXH
-28.18 dBm
2.472000000 GHz
Marker 1 [T1 ]
1 PK
Marker 2 [T1 ]
10
MAXH
LVL
10
LVL
-10
-10
-20
D1 -13 dBm
D1 -13 dBm
-20
-30
3DB
-30
3DB
-40
-40
-50
-50
-60
-60
-70
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
Stop 1 GHz
Start 1 GHz
09:30:08
800 MHz/
Date: 2.JUN.2016
Stop 9 GHz
09:37:10
30MHz~1GHz
1GHz~9GHz
Middle channel
Ref
30
33 dBm
Offset
* Att
40 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-35.15 dBm
Ref
817.640000000 MHz
20
10 dB
24 dBm
Offset
* Att
30 dB
* RBW
1 MHz
* VBW
3 MHz
SWT 160 ms
10 dB
Marker 2 [T1 ]
-28.87 dBm
2.504000000 GHz
Marker 1 [T1 ]
-25.78 dBm
1.672000000 GHz
1 PK
20
10
MAXH
1 PK
LVL
MAXH
LVL
10
-10
D1 -13 dBm
-20
-10
D1 -13 dBm
-30
-20
3DB
3DB
-40
-30
-50
-40
-60
-50
-70
-60
Start 1 GHz
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
Date: 2.JUN.2016
09:30:41
800 MHz/
Stop 9 GHz
Stop 1 GHz
30MHz~1GHz
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
09:39:51
1GHz~9GHz
Project No.:CCISE1606004
Page 21 of 44
Report No: CCISE160600401
Highest Channel
Ref
30
33 dBm
Offset
* Att
40 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-35.21 dBm
590.660000000 MHz
Ref
10 dB
20
24 dBm
Offset
* Att
30 dB
* RBW
1 MHz
* VBW
3 MHz
Marker 2 [T1 ]
-27.76 dBm
SWT 160 ms
10 dB
2.536000000 GHz
Marker 1 [T1 ]
-25.38 dBm
1.688000000 GHz
20
1 PK
1 PK
MAXH
10
MAXH
LVL
10
LVL
-10
D1 -13 dBm
-10
-20
D1 -13 dBm
-20
-30
3DB
-30
3DB
-40
-40
-50
-50
-60
-60
-70
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
Stop 1 GHz
Start 1 GHz
09:31:13
800 MHz/
Date: 2.JUN.2016
Stop 9 GHz
09:46:04
30MHz~1GHz
1GHz~9GHz
PCS 1900
Lowest Channel
Ref
30
30 dBm
Offset
* Att
30 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-24.78 dBm
111.480000000 MHz
Ref
10 dB
30
20
1 PK
MAXH
30 dBm
Offset
* Att
30 dB
* RBW
1 MHz
* VBW
3 MHz
Marker 1 [T1 ]
-21.35 dBm
SWT 380 ms
13.692000000 GHz
10 dB
20
1 PK
MAXH
10
LVL
10
-10
-10
D1 -13 dBm
-20
LVL
D1 -13 dBm
-20
3DB
3DB
-30
-30
-40
-40
-50
-50
-60
-60
-70
-70
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
10:02:27
Stop 1 GHz
Start 1 GHz
Date: 2.JUN.2016
30MHz~1GHz
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
1.9 GHz/
Stop 20 GHz
10:00:54
1GHz~20GHz
Project No.:CCISE1606004
Page 22 of 44
Report No: CCISE160600401
Middle Channel
Ref
30
30 dBm
Offset
* Att
30 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-26.55 dBm
140.580000000 MHz
Ref
10 dB
30
20
Offset
* Att
30 dB
* RBW
1 MHz
* VBW
3 MHz
Marker 1 [T1 ]
-20.03 dBm
SWT 380 ms
13.692000000 GHz
10 dB
20
1 PK
1 PK
MAXH
MAXH
10
30 dBm
LVL
10
LVL
-10
-10
D1 -13 dBm
D1 -13 dBm
-20
-20
3DB
3DB
-30
-30
-40
-40
-50
-50
-60
-60
-70
-70
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
Stop 1 GHz
Start 1 GHz
10:18:01
1.9 GHz/
Date: 2.JUN.2016
Stop 20 GHz
10:16:33
30MHz~1GHz
1GHz~20GHz
Highest Channel
Ref
30
30 dBm
Offset
* Att
30 dB
* RBW
100 kHz
* VBW
300 kHz
SWT 100 ms
Marker 1 [T1 ]
-25.36 dBm
171.620000000 MHz
Ref
10 dB
30
20
1 PK
MAXH
MAXH
LVL
Offset
30 dB
* RBW
1 MHz
* VBW
3 MHz
Marker 1 [T1 ]
-21.27 dBm
SWT 380 ms
13.692000000 GHz
10 dB
10
LVL
-10
-10
D1 -13 dBm
-20
* Att
20
1 PK
10
30 dBm
D1 -13 dBm
-20
3DB
3DB
-30
-30
-40
-40
-50
-50
-60
-60
-70
-70
Start 30 MHz
Date: 2.JUN.2016
97 MHz/
10:03:07
Stop 1 GHz
Start 1 GHz
Date: 2.JUN.2016
30MHz~1GHz
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
1.9 GHz/
Stop 20 GHz
10:01:22
1GHz~20GHz
Project No.:CCISE1606004
Page 23 of 44
Report No: CCISE160600401
Band edge emission:
GSM850
Ref
40
40 dBm
Offset
* Att
40 dB
* RBW
3 kHz
Marker 1 [T1 ]
* VBW
10 kHz
-15.17 dBm
* SWT
200 ms
823.982000000 MHz
Ref
10 dB
40
30
1 RM *
MAXH
MAXH
10
* RBW
3 kHz
* VBW
10 kHz
-14.57 dBm
* SWT
200 ms
Marker 1 [T1 ]
849.018000000 MHz
10 dB
LVL
-10
D1 -13 dBm
40 dB
20
LVL
10
-10
Offset
* Att
30
1 RM *
20
40 dBm
D1 -13 dBm
3DB
3DB
-20
-20
-30
-30
-40
-40
-50
-50
-60
-60
Center 824 MHz
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
Center 849 MHz
09:15:03
Date: 2.JUN.2016
100 kHz/
Span 1 MHz
09:19:04
Lowest channel
Highest channel
PCS1900
Ref
30
30 dBm
Offset
* Att
30 dB
* RBW
3 kHz
Marker 1 [T1 ]
* VBW
10 kHz
-15.21 dBm
SWT 115 ms
1.849998000 GHz
Ref
10 dB
30
20
1 RM *
MAXH
30 dBm
Offset
* Att
* RBW
3 kHz
* VBW
10 kHz
-16.08 dBm
SWT 115 ms
1.910020000 GHz
30 dB
Marker 1 [T1 ]
10 dB
20
1 RM *
MAXH
10
LVL
10
LVL
-10
D1 -13 dBm
-10
D1 -13 dBm
-20
-20
3DB
3DB
-30
-30
-40
-40
-50
-50
-60
-60
-70
-70
Center 1.85 GHz
Date: 2.JUN.2016
100 kHz/
10:06:22
Span 1 MHz
Center 1.91 GHz
Date: 2.JUN.2016
Lowest channel
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
100 kHz/
Span 1 MHz
10:07:29
Highest channel
Project No.:CCISE1606004
Page 24 of 44
Report No: CCISE160600401
6.10
ERP, EIRP Measurement
Test Requirement:
FCC part 22.913(a), FCC part 24.232(b)
Test Method:
FCC part 2.1046
Limit:
GSM850 7W: ERP
PCS1900 2W: EIRP
Test setup:
Below 1GHz
Above 1GHz
Substituted method:
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 25 of 44
Report No: CCISE160600401
Test Procedure:
1.
2.
3.
4.
5.
The EUT was placed on an non-conductive turntable using a nonconductive support. The radiated emission at the fundamental
frequency was measured at 3 m with a test antenna and EMI
spectrum analyzer.
During the measurement, the EUT was communication with the
station. The highest emission was recorded with the rotation of the
turntable and the lowering of the test antenna from 4m to 1m. The
reading was recorded and the field strength (E in dBuV/m) was
calculated.
ERP in frequency band 824.2 –848.80.8MHz were measured using a
substitution method. The EUT was replaced by dipole antenna
connected, the S.G. output was recorded and ERP was calculated
asfollows:
ERP = S.G. output (dBm) + Antenna Gain (dBd) – Cable Loss (dB)
EIRP in frequency band 1850.2 –1909.8MHz were measured using a
substitution method. The EUT was replaced by or horn antenna
connected, the S.G. output was recorded and EIRP was calculated
as follows:
EIRP = S.G. output (dBm) + Antenna Gain (dBi) – Cable Loss (dB)
The worse case was relating to the conducted output power.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed (All three channels were tested, and just the worst case data
were shown in the report.)
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 26 of 44
Report No: CCISE160600401
Measurement Data (worst case):
EUT mode
Channel
EUT Pol.
Antenna Pol.
ERP(dBm)
Limit (dBm)
Result
GSM850
251
29.79
26.58
38.45
Pass
EUT mode
Channel
EUT Pol.
Antenna Pol.
EIRP(dBm)
Limit (dBm)
Result
PCS1900
810
16.17
15.34
33
Pass
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 27 of 44
Report No: CCISE160600401
6.11
Field strength of spurious radiation measurement
Test Requirement:
Test Method:
Limit:
Test setup:
FCC part 22.917(a), FCC part 24.238(a)
FCC part 2.1053
-13dBm
Below 1GHz:
Above 1GHz:
Substituted method:
Test Procedure:
Test Uncertainty:
Test Instruments:
Test mode:
Test results:
1.
The EUT was placed on an non-conductive turntable using a nonconductive support. The radiated emission at the fundamental
frequency was measured at 3 m with a test antenna and EMI
spectrum analyzer.
2. During the tests, the antenna height and the EUT azimuth were
varied in order to identify the maximum level of emissions from the
EUT. This maximization process was repeated with the EUT
positioned in each of its three orthogonal orientations.
3. The frequency range up to tenth harmonic was investigated for each
of three fundamental frequency (low, middle and high channels).
Once spurious emission was identified, the power of the emission
was determined using the substitution method.
4. The spurious emissions attenuation was calculated as the difference
between radiated power at the fundamental frequency and the
spurious emissions frequency.
ERP / EIRP = S.G. output (dBm) + Antenna Gain(dB/dBi) –
Cable Loss (dB)
± 4.88 dB
Refer to section 5.9 for details
Refer to section 5.3 for details.
Passed
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 28 of 44
Report No: CCISE160600401
Measurement Data (worst case):
Test mode:
Frequency (MHz)
GSM850
Spurious Emission
Polarization
Level (dBm)
1648.40
Vertical
-35.48
2472.60
-47.63
3296.80
-45.19
1648.40
Horizontal
-41.98
2472.60
-40.01
3296.80
-45.75
Test mode:
Frequency (MHz)
GSM850
Lowest
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Test channel:
Middle
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Test channel:
Highest
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Spurious Emission
Polarization
Level (dBm)
1673.20
Vertical
-41.89
2509.80
-44.55
3346.40
-43.62
1673.20
Horizontal
-42.77
2509.80
-44.83
3346.40
-44.81
Test mode:
Frequency (MHz)
Test channel:
GSM850
Spurious Emission
Polarization
Level (dBm)
1697.60
Vertical
-40.55
2546.40
-25.44
3395.20
-45.97
1697.60
Horizontal
-43.54
2546.40
-50.55
3395.20
-45.31
Remark:
1. The emission levels of below 1 GHz are very lower than the limit and not show in test report.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 29 of 44
Report No: CCISE160600401
Test mode:
Frequency (MHz)
PCS1900
Spurious Emission
Polarization
Level (dBm)
3700.40
Vertical
-41.59
5550.60
-40.56
3700.40
Horizontal
-43.03
5550.60
-39.90
Test mode:
Frequency (MHz)
PCS1900
Spurious Emission
Polarization
Level (dBm)
3760.00
Vertical
-41.25
5640.00
-43.67
3760.00
Horizontal
-39.65
5640.00
-40.43
Test mode:
Frequency (MHz)
PCS1900
Spurious Emission
Polarization
Level (dBm)
3819.60
Vertical
-39.86
5729.40
-42.52
3819.60
Horizontal
-37.59
5729.40
-43.61
Test channel:
Lowest
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Test channel:
Middle
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Test channel:
Highest
Limit (dBm)
Result
-13.00
Pass
-13.00
Pass
Remark:
1. The emission levels of below 1 GHz are very lower than the limit and not show in test report.
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 30 of 44
Report No: CCISE160600401
6.12
Frequency stability V.S. Temperature measurement
Test Requirement:
FCC Part 2.1055(a)(1)(b)
Test Method:
FCC Part 2.1055(a)(1)(b)
Limit:
±2.5ppm
Test setup:
Test procedure:
1.
2.
3.
4.
5.
6.
The equipment under test was connected to an external DC power
supply and input rated voltage.
RF output was connected to a frequency counter or spectrum
analyzer via feed through attenuators.
The EUT was placed inside the temperature chamber.
Set the spectrum analyzer RBW low enough to obtain the desired
frequency resolution and measure EUT 25℃ operating frequency as
reference frequency.
Turn EUT off and set the chamber temperature to –30℃. After the
temperature stabilized for approximately 30 minutes recorded the
frequency.
Repeat step measure with 10℃ increased per stage until the highest
temperature of +50℃ reached
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details
Test results:
Passed
All three channels of all modulations have been tested, but only the worst
channel and the worst modulation show in this test item.
Remark:
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 31 of 44
Report No: CCISE160600401
Measurement Data (the worst channel):
Reference Frequency: GSM850 Middle channel=190 channel=836.6MHz
Power supplied
(Vdc)
3.70
Temperature (℃)
Frequency error
Hz
ppm
-30
198
0.236672
-20
156
0.186469
-10
114
0.136266
174
0.207985
10
184
0.219938
20
132
0.157781
30
122
0.145828
40
104
0.124313
50
116
0.138656
Limit (ppm)
Result
±2.5
Pass
Reference Frequency: PCS1900 Middle channel=661 channel=1880MHz
Power supplied
(Vdc)
3.70
Temperature (℃)
Frequency error
Hz
ppm
-30
187
0.099468
-20
145
0.077128
-10
165
0.087766
123
0.065426
10
128
0.068085
20
114
0.060638
30
174
0.092553
40
160
0.085106
50
138
0.073404
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Limit (ppm)
Result
±2.5
Pass
Project No.:CCISE1606004
Page 32 of 44
Report No: CCISE160600401
6.13
Frequency stability V.S. Voltage measurement
Test Requirement:
FCC Part 2.1055(d)(1)(2)
Test Method:
FCC Part 2.1055(d)(1)(2)
Limit:
±2.5ppm
Test setup:
Test procedure:
1.
2.
3.
Set chamber temperature to 25℃. Use a variable DC power source
to power the EUT and set the voltage to rated voltage.
Set the spectrum analyzer RBW low enough to obtain the desired
frequency resolution and recorded the frequency.
Reduce the input voltage to specify extreme voltage variation (+/15%) and endpoint, record the maximum frequency change.
Test Instruments:
Refer to section 5.9 for details
Test mode:
Refer to section 5.3 for details, and all channels have been tested, only
shows the worst channel data in this report.
Test results:
Passed
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Project No.:CCISE1606004
Page 33 of 44
Report No: CCISE160600401
Measurement Data (the worst channel):
Reference Frequency: GSM850 Middle channel=190 channel=836.6MHz
Temperature (℃)
25
Frequency error
ppm
Power supplied
(Vdc)
Hz
4.25
98
0.117141
3.70
74
0.088453
3.14
68
0.081281
Limit (ppm)
Result
±2.5
Pass
Reference Frequency: PCS1900 Middle channel=661 channel=1880MHz
Temperature (℃)
25
Frequency error
ppm
Power supplied
(Vdc)
Hz
4.25
82
0.043617
3.70
68
0.036170
3.14
77
0.040957
Shenzhen Zhongjian Nanfang Testing Co., Ltd.
No. B-C, 1/F., Building 2, Laodong No.2 Industrial Park, Xixiang Road,
Bao’an District, Shenzhen, Guangdong, China
Telephone: +86 (0) 755 23118282 Fax: +86 (0) 755 23116366
Limit (ppm)
Result
±2.5
Pass
Project No.:CCISE1606004
Page 34 of 44
Download: GO182 Mobile Phone Test Report HD 271 S1 NEXUS TELECOM SERVICES (HK) LIMITED
Mirror Download [FCC.gov]GO182 Mobile Phone Test Report HD 271 S1 NEXUS TELECOM SERVICES (HK) LIMITED
Document ID3033286
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Date Submitted2016-06-20 00:00:00
Date Available2016-06-20 00:00:00
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Document TitleHD 271 S1
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Document Author: LAB02

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