T56XK2 Mobile Cellular Phone Test Report Motorola Mobility LLC

Motorola Mobility LLC Mobile Cellular Phone

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FCC RF Test Report
Report No. : FR860402D
FCC RF Test Report
APPLICANT
EQUIPMENT
BRAND NAME
MODEL NAME
Motorola Mobility LLC
Mobile Cellular Phone
Motorola
XT1941-5, XT1941-3
FCC ID
: IHDT56XK1
STANDARD
: FCC Part 15 Subpart C §15.225
CLASSIFICATION : (DXX) Low Power Communication Device Transmitter
The product was received on Jun. 04, 2018 and testing was completed on Jun. 28, 2018. We,
Sporton International (Kunshan) Inc., would like to declare that the tested sample has been
evaluated in accordance with the test procedures and has been in compliance with the
applicable technical standards.
The test results in this report apply exclusively to the tested model / sample. Without written
approval of Sporton International (Kunshan) Inc., the test report shall not be reproduced
except in full.
Approved by: James Huang / Manager
Sporton International (Kunshan) Inc.
No.3-2 Ping-Xiang Rd, Kunshan Development Zone Kunshan City Jiangsu Province 215335 China
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
Page Number
: 1 of 23
Report Issued Date : Jul. 12, 2018
Report Version
: Rev. 01
Report Template No.: BU5-FR15CNFC Version 2.0
FCC RF Test Report
Report No. : FR860402D
TABLE OF CONTENTS
TABLE OF CONTENTS ...............................................................................................................................................2
REVISION HISTORY....................................................................................................................................................3
SUMMARY OF THE TEST RESULT ...........................................................................................................................4
1. GENERAL DESCRIPTION ......................................................................................................................................5
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
Applicant......................................................................................................................................................................... 5
Manufacturer .................................................................................................................................................................. 5
Product Feature of Equipment Under Test ..................................................................................................................... 5
Product Specification of Equipment Under Test ............................................................................................................. 6
Specification of Accessory.............................................................................................................................................. 7
Modification of EUT ........................................................................................................................................................ 8
Testing Location ............................................................................................................................................................. 9
Applicable Standards...................................................................................................................................................... 9
2. TEST CONFIGURATION OF EQUIPMENT UNDER TEST ..................................................................................10
2.1
2.2
2.3
2.4
Descriptions of Test Mode ............................................................................................................................................ 10
Connection Diagram of Test System ............................................................................................................................ 11
Table for Supporting Units ............................................................................................................................................ 11
EUT Operation Test Setup ........................................................................................................................................... 11
3. TEST RESULTS .....................................................................................................................................................12
3.1
3.2
3.3
3.4
3.5
3.6
AC Power Line Conducted Emissions Measurement ................................................................................................... 12
20dB and 99% OBW Spectrum Bandwidth Measurement............................................................................................ 14
Frequency Stability Measurement ................................................................................................................................ 15
Field Strength of Fundamental Emissions and Mask Measurement ............................................................................. 16
Radiated Emissions Measurement ............................................................................................................................... 18
Antenna Requirements ................................................................................................................................................. 21
4. LIST OF MEASURING EQUIPMENT ....................................................................................................................22
5. UNCERTAINTY OF EVALUATION .......................................................................................................................23
APPENDIX A. TEST RESULTS OF CONDUCTED EMISSION TEST
APPENDIX B. TEST RESULTS OF CONDUCTED TEST ITEMS
B1. Test Result of 20dB Spectrum Bandwidth
B2. Test Result of Frequency Stability
APPENDIX C. TEST RESULTS OF RADIATED TEST ITEMS
C1. Test Result of Field Strength of Fundamental Emissions
C2. Results of Radiated Emissions (9 kHz~30MHz)
C3. Results of Radiated Emissions (30MHz~1GHz)
APPEDNIX D. SETUP PHOTOGRAPHS
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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: 2 of 23
Report Issued Date : Jul. 12, 2018
Report Version
: Rev. 01
Report Template No.: BU5-FR15CNFC Version 2.0
FCC RF Test Report
Report No. : FR860402D
REVISION HISTORY
REPORT NO.
VERSION
FR860402D
Rev. 01
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
DESCRIPTION
Initial issue of report
ISSUED DATE
Jul. 12, 2018
Page Number
: 3 of 23
Report Issued Date : Jul. 12, 2018
Report Version
: Rev. 01
Report Template No.: BU5-FR15CNFC Version 2.0
FCC RF Test Report
Report No. : FR860402D
SUMMARY OF THE TEST RESULT
Report
Section
3.1
FCC Rule
15.207
Description of Test
AC Power Line Conducted
Emissions
Result
Remark
Under limit
Complies
4.40 dB at
0.169MHz
15.215(c)
20dB Spectrum Bandwidth
Complies
99% OBW Spectrum Bandwidth
Complies
15.225(e)
Frequency Stability
Complies
3.2
3.3
3.4
15.225(a)(b)(c)
Field Strength of Fundamental
Emissions
Max level
Complies
57.55 dBμV/m at
13.56 MHz
Under limit
3.5
15.225(d) & 15.209
Radiated Spurious Emissions
Complies
6.80 dB at
40.670MHz
3.6
15.203
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
Antenna Requirements
Complies
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: 4 of 23
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Report No. : FR860402D
1. General Description
1.1 Applicant
Motorola Mobility LLC
222 W, Merchandise Mart Plaza, Chicago IL 60654 USA
1.2 Manufacturer
Motorola Mobility LLC
222 W, Merchandise Mart Plaza, Chicago IL 60654 USA
1.3 Product Feature of Equipment Under Test
Product Feature
Equipment
Brand Name
Model Name
FCC ID
EUT supports Radios application
IMEI Code
HW Version
SW Version
EUT Stage
Mobile Cellular Phone
Motorola
XT1941-5, XT1941-3
IHDT56XK1
GSM/GPRS/EGPRS/WCDMA/HSPA/DC-HSDPA/
HSPA+(16QAM is not supported)/LTE/NFC
WLAN 2.4GHz 802.11b/g/n HT20
WLAN 5GHz 802.11a/n HT20/HT40
Bluetooth BR/EDR/LE
Conducted: 355542090027733/355542090027741
Conduction: 355542090025752/355542090025760
Radiation: 355542090025091/355542090025109
DVT1B
fastboot_deen_oem_userdebug_8.1.0_OPK28.26_f325
_intcfg-test-keys_oem
Identical Prototype
Remark:
1. The above EUT's information was declared by manufacturer. Please refer to the
specifications or user's manual for more detailed description.
2. There are two types of EUT sample 1 and sample 2, the differences between two samples
are only for SIM slot, the sample 1(XT1941-3) is dual SIM slot, the sample 2(XT1941-5) is
single SIM slot. We only choose dual SIM sample to perform full tests.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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Report No. : FR860402D
1.4 Product Specification of Equipment Under Test
Standards-related Product Specification
Tx/Rx Frequency Range
13.553 ~ 13.567MHz
Channel Number
20dBW
2.49 KHz
99%OBW
2.10 KHz
Antenna Type
Loop Antenna
Type of Modulation
ASK
Remark: The above EUT's information was declared by manufacturer. Please refer to the specifications
or user's manual for more detailed description.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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Report No. : FR860402D
1.5 Specification of Accessory
Specification of Accessory
AC Adapter 1(US)
AC Adapter 1(EU)
AC Adapter 1(UK)
AC Adapter 1(India)
AC Adapter 1(AU)
AC Adapter 1(AR)
AC Adapter 1(BR)
AC Adapter 1(PRC)
AC Adapter 1(Chile)
AC Adapter 2(US)
AC Adapter 2(EU)
AC Adapter 2(UK)
AC Adapter 2(AU)
AC Adapter 2(AR)
AC Adapter 2(PRC)
AC Adapter 3(BR)
AC Adapter 4(BR)
Battery
Earphone 1
Earphone 2
Brand Name
Motorola(Salom)
Model Name
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(chenyang)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola(Salom/Flex)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola
(Tenpao/Cliptech)
Power Rating
I/P: 100-240 Vac, 600mA, O/P: 5/9/12 Vdc, 3000/2000/1500 mA
Brand Name
Motorola
Model Name
JE40
Power Rating
3.8Vdc,2820mAh
Type
Li-ion
Brand Name
Motorola (New Leader)
Model Name
NLD-EM307E-09SF
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
Model Name
SC-51
SC-52
SC-53
SC-54
SC-55
SC-56
SC-57
SC-58
SC-52
SC-51
SC-52
SC-53
SC-55
SC-56
SC-58
SC-57
SC-57
Signal Line Type 1.2 meter, non-shielded cable, without ferrite core
Brand Name
Motorola
Model Name
SH38C16618 (L20)
Signal Line Type 1.2 meter, non-shielded cable, without ferrite core
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
Page Number
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: Rev. 01
Report Template No.: BU5-FR15CNFC Version 2.0
FCC RF Test Report
USB Cable 1
USB Cable 2
USB Cable 3
Brand Name
Report No. : FR860402D
Motorola (Liqi)
Model Name
LQ-03500079
Signal Line Type 1.0 meter, shielded cable, without ferrite core
Brand Name
Motorola (Saibao)
Model Name
SLQ-A1111A
Signal Line Type 1.0 meter, shielded cable, without ferrite core
Brand Name
Motorola (I SHENG)
Model Name
SC18C28955
Signal Line Type 1.0 meter, shielded cable, without ferrite core
1.6 Modification of EUT
No modifications are made to the EUT during all test items.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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Report No. : FR860402D
1.7 Testing Location
Sporton International (Kunshan) Inc. is accredited to ISO 17025 by National Voluntary Laboratory
Accreditation Program (NVLAP code: 600155-0) and the FCC designation No is CN5013.
Test Site
Sporton International (Kunshan) Inc.
No.3-2 Ping-Xiang Rd, Kunshan Development Zone Kunshan City Jiangsu
Province 215335 China
Test Site Location
TEL : +86-512-57900158
FAX : +86-512-57900958
Sporton Site No.
Test Site No.
FCC Registration No.
TH01-KS
03CH02-KS
CO01-KS
Test Engineer
Silent Hai
Rock Shi
Amos Zhang
Temperature
21~25℃
21~22℃
24.7~25.1℃
Relative Humidity
51~55%
41~42%
46~47%
630927
Note: The test site complies with ANSI C63.4 2014 requirement.
1.8 Applicable Standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of the
following standards:
 FCC Part 15 Subpart C §15.225
 ANSI C63.10-2013
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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Report No. : FR860402D
2. Test Configuration of Equipment Under Test
2.1 Descriptions of Test Mode
Investigation has been done on all the possible configurations.
The following table is a list of the test modes shown in this test report.
Test Items
AC Power Line Conducted Emissions
Field Strength of Fundamental Emissions
20dB Spectrum Bandwidth
Frequency Stability
Radiated Emissions 9kHz~30MHz
Radiated Emissions 30MHz~1GHz
The EUT pre-scanned in four NFC type, A, B, F, V. The worst type (type F) was recorded in this report.
Pre-scanned tests, X, Y, Z in three orthogonal panels to determine the final configuration (Y plane as
worst plane) from all possible combinations.
Test Cases
AC
Conducted
Mode 1 : GSM850 Idle + Bluetooth Link + WLAN Link(2.4G) + USB Cable 1(Charging
Emission
Remark:
from Adapter 4) + Earphone
For Radiated Test Cases, The tests were performed with Adapter 1, USB Cable 1,
Earphone 1 and Sample 1.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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2.2 Connection Diagram of Test System
2.3 Table for Supporting Units
Item Equipment
Trade Name
1.
System Simulator R&S
2.
WLAN AP
D-Link
Model Name FCC ID
Data Cable
Power Cord
CMU 200
N/A
N/A
Unshielded, 1.8 m
DIR-855
KA2DIR855A2
N/A
Unshielded,1.8m
3.
Notebook
Lenovo
G480
PRC4
N/A
AC I/P:
Unshielded, 1.2 m
DC O/P:
Shielded, 1.8 m
4.
SD Card
Kingston
8GB
N/A
N/A
N/A
5.
NFC Card
N/A
N/A
N/A
N/A
N/A
2.4 EUT Operation Test Setup
The EUT was programmed to be in continuously transmitting mode.
The ancillary equipment, NFC card, is used to make the EUT (NFC) continuously transmit at 13.56MHz
and is placed around 3 cm gap to the EUT.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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3. Test Results
3.1 AC Power Line Conducted Emissions Measurement
3.1.1 Limit of AC Conducted Emission
For equipment that is designed to be connected to the public utility (AC) power line, the radio
frequency voltage that is conducted back onto the AC power line on any frequency or frequencies
within the band 150 kHz to 30 MHz shall not exceed the limits in the following table.
Conducted Limit (dBμV)
Frequency of Emission
(MHz)
Quasi-Peak
Average
0.15-0.5
66 to 56*
56 to 46*
0.5-5
56
46
5-30
60
50
*Decreases with the logarithm of the frequency.
3.1.2 Measuring Instruments
See list of measuring instruments of this test report.
3.1.3 Test Procedures
1. The EUT was placed 0.4 meter from the conducting wall of the shielding room, and it was kept at
least 80 centimeters from any other grounded conducting surface.
2. Connect EUT to the power mains through a line impedance stabilization network (LISN).
3. All the support units are connecting to the other LISN.
4. The LISN provides 50 ohm coupling impedance for the measuring instrument.
5. The FCC states that a 50 ohm, 50 microhenry LISN should be used.
6. Both sides of AC line were checked for maximum conducted interference.
7. The frequency range from 150 kHz to 30 MHz was searched.
8. Set the test-receiver system to Peak Detect Function and specified bandwidth (IF Bandwidth =
9kHz) with Maximum Hold Mode. Then measurement is also conducted by Average Detector
and Quasi-Peak Detector Function respectively.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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3.1.4 Test setup
3.1.5 Test Result of AC Conducted Emission
Please refer to Appendix A.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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3.2 20dB and 99% OBW Spectrum Bandwidth Measurement
3.2.1 Limit
Intentional radiators must be designed to ensure that the 20dB and 99% emission bandwidth in the
specific band 13.553~13.567MHz.
3.2.2 Measuring Instruments
See list of measuring instruments of this test report.
3.2.3 Test Procedures
1.
The spectrum analyzer connected via a receive antenna placed near the EUT in peak Max hold
mode.
2.
The resolution bandwidth of 1 kHz and the video bandwidth of 3 kHz were used.
3.
Measured the spectrum width with power higher than 20dB below carrier.
4.
Measured the 99% OBW.
3.2.4 Test Setup
3.2.5 Test Result of Conducted Test Items
Please refer to Appendix B.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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3.3 Frequency Stability Measurement
3.3.1 Limit
The frequency tolerance of the carrier signal shall be maintained within +/- 0.01% (100ppm) of the
operating frequency over a temperature variation of -20 degrees to +50 degrees C at normal supply
voltage, and for a variation in the primary supply voltage from 85% to 115% of the rated supply
voltage at a temperature of 20 degrees C. For battery operated equipment, the equipment tests shall
be performed using a new battery.
3.3.2 Measuring Instruments
See list of measuring instruments of this test report.
3.3.3 Test Procedures
1.
The spectrum analyzer connected via a receive antenna placed near the EUT.
2.
EUT have transmitted signal and fixed channelize.
3.
Set the spectrum analyzer span to view the entire emissions bandwidth.
4.
Set RBW = 1 kHz, VBW = 3 kHz with peak detector and maxhold settings.
5.
The fc is declaring of channel frequency. Then the frequency error formula is (fc-f)/fc × 10 ppm
and the limit is less than ±100ppm.
6.
Extreme temperature rule is -20°C~50°C.
3.3.4 Test Setup
3.3.5 Test Result of Conducted Test Items
Please refer to Appendix B.
Sporton International (Kunshan) Inc.
TEL : +86-512-57900158
FAX : +86-512-57900958
FCC ID: IHDT56XK1
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3.4 Field Strength of Fundamental Emissions and Mask Measurement
3.4.1 Limit
Rules and specifications
Description
FCC CFR 47 Part 15 section 15.225
Compliance with the spectrum mask is tested with RBW set to 9kHz.
Field Strength
Field Strength
Field Strength
Field Strength
(μV/m) at 30m
(dBμV/m) at 30m
(dBμV/m) at 10m
(dBμV/m) at 3m
1.705~13.110
30
29.5
48.58
69.5
13.110~13.410
106
40.5
59.58
80.5
13.410~13.553
334
50.5
69.58
90.5
13.553~13.567
15848
84.0
103.08
124.0
13.567~13.710
334
50.5
69.58
90.5
13.710~14.010
106
40.5
59.58
80.5
14.010~30.000
30
29.5
48.58
69.5
Freq. of Emission (MHz)
3.4.2 Measuring Instruments
See list of measuring instruments of this test report.
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3.4.3 Test Procedures
1.
Configure the EUT according to ANSI C63.10. The EUT was placed on the top of the turntable
0.8 meter above ground. The phase center of the loop receiving antenna mounted antenna tower
was placed 3 meters far away from the turntable.
2.
Power on the EUT and all the supporting units. The turntable was rotated by 360 degrees to
determine the position of the highest radiation.
3.
The height of the receiving antenna was fixed at one meter above ground to find the maximum
emissions field strength.
4.
For Fundamental emissions, use the receiver to measure QP reading.
5.
When the radiated emissions limits are expressed in terms of the average value of the emissions,
and pulsed operation is employed, the measurement field strength shall be determined by
averaging over one complete pulse train, including blanking intervals, as long as the pulse train
does not exceed 0.1 seconds. As an alternative (provided the transmitter operates for longer
than 0.1 seconds) or in cases where the pulse train exceeds 0.1 seconds, the measured field
strength shall be determined from the average absolute voltage during a 0.1 second interval
during which the field strength is at its maximum value.
6.
Compliance with the spectrum mask is tested with RBW set to 9kHz.
Note: Emission level (dBμV/m) = 20 log Emission level (μV/m).
3.4.4 Test Setup
For radiated emissions below 30MHz
3.4.5 Test Result of Field Strength of Fundamental Emissions and Mask
Please refer to Appendix C.
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3.5 Radiated Emissions Measurement
3.5.1 Limit
The field strength of any emissions which appear outside of 13.110 ~14.010MHz band shall not
exceed the general radiated emissions limits.
Frequencies
Field Strength
Measurement Distance
(MHz)
(μV/m)
(meters)
0.009~0.490
2400/F(kHz)
300
0.490~1.705
24000/F(kHz)
30
1.705~30.0
30
30
30~88
100
88~216
150
216~960
200
Above 960
500
3.5.2 Measuring Instruments
See list of measuring instruments of this test report.
3.5.3 Measuring Instrument Setting
The following table is the setting of receiver.
Receiver Parameter
Setting
Attenuation
Auto
Frequency Range: 9kHz~150kHz
RBW 200Hz for QP
Frequency Range: 150kHz~30MHz
RBW 9kHz for QP
Frequency Range: 30MHz~1000MHz
RBW 120kHz for Peak
Note: The emission limits shown in the above table are based on measurements employing a CISPR
quasi-peak detector except for the frequency bands 9-90 kHz, 110-490 kHz. Radiated emission limits
in these two bands are based on measurements employing an average detector.
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3.5.4 Test Procedures
1.
Configure the EUT according to ANSI C63.10. The EUT was placed on the top of the turntable
0.8 meter above ground. The phase center of the receiving antenna mounted on the top of a
height-variable antenna tower was placed 3 meters far away from the turntable.
2.
Power on the EUT and all the supporting units. The turntable was rotated by 360 degrees to
determine the position of the highest radiation.
3.
The height of the broadband receiving antenna was varied between one meter and four meters
above ground to find the maximum emissions field strength of both horizontal and vertical
polarization.
4.
For each suspected emissions, the antenna tower was scan (from 1 M to 4 M) and then the
turntable was rotated (from 0 degree to 360 degrees) to find the maximum reading.
5.
Set the test-receiver system to Peak or CISPR quasi-peak Detect Function with specified
bandwidth under Maximum Hold Mode.
6.
When the radiated emissions limits are expressed in terms of the average value of the emissions,
and pulsed operation is employed, the measurement field strength shall be determined by
averaging over one complete pulse train, including blanking intervals, as long as the pulse train
does not exceed 0.1 seconds. As an alternative (provided the transmitter operates for longer
than 0.1 seconds) or in cases where the pulse train exceeds 0.1 seconds, the measured field
strength shall be determined from the average absolute voltage during a 0.1 second interval
during which the field strength is at its maximum value.
7.
In case the emission is lower than 30MHz, loop antenna has to be used for measurement and
the recorded data should be QP measured by receiver. Antenna Requirements
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3.5.5 Test Setup
For radiated emissions below 30MHz
For radiated emissions above 30MHz
3.5.6 Test Result of Radiated Emissions Measurement
Please refer to Appendix C.
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3.6 Antenna Requirements
3.6.1 Standard Applicable
Except for special regulations, the Low-power Radio-frequency Devices must not be equipped with
any jacket for installing an antenna with extension cable. An intentional radiator shall be designed to
ensure that no antenna other than that furnished by the responsible party shall be used with the
device. The use of a permanently attached antenna or of an antenna that uses a unique coupling to
the intentional radiator shall be considered sufficient to comply with the provisions of this Section. The
manufacturer may design the unit so that the user can replace a broken antenna, but the use of a
standard antenna jack or electrical connector is prohibited.
The use of a permanently attached antenna or of an antenna that uses a unique coupling to the
intentional radiator shall be considered sufficient to comply with the rule.
3.6.2 Antenna Anti-Replacement Construction
An embedded-in antenna design is used.
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4. List of Measuring Equipment
Serial No. Characteristics
Calibration
Date
Instrument
Manufacturer
Model No.
Spectrum
Analyzer
R&S
FSV40
101040
Pulse Power
Senor
Anritsu
MA2411B
1339163
Power Meter
Anritsu
ML2495A
EMI Test Receiver
R&S
ESR7
EXA Spectrum
Analyzer
Keysight
N9010A
Bilog Antenna
TeseQ
CBL6112D
23182
30MHz-2GHz
Jan. 29, 2018
Double Ridge
Horn Antenna
ETS-Lindgren
3117
75957
1GHz~18GHz
Oct. 21, 2017
Amplifier
SONOMA
310N
187289
9KHz-1GHz
Aug. 07, 2017
10Hz~40GHz
Test Date
Due Date
Aug. 08, 2017 Jun. 26, 2018 Aug. 07, 2018
300MHz~40GH
Jan. 18, 2018
50MHz
Jan. 18, 2018
Bandwidth
9kHz~7GHz;Ma
101403
Aug. 08, 2017
x 30dBm
MY551502 10Hz-44G,MAX
Apr. 17, 2018
08
30dB
1435004
3008A023
1GHz~26.5GHz Oct. 12, 2017
84
616010002
N/A
NCR
473
Jun. 26, 2018
Jan. 17, 2019
Jun. 26, 2018
Jan. 17, 2019
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Jun. 24, 2018~
Jun. 27, 2018
Aug. 07, 2018
Apr. 16, 2019
Jan. 28, 2019
Oct. 20, 2018
Aug. 06, 2018
Oct. 11, 2018
Remark
Conducted
(TH01-KS)
Conducted
(TH01-KS)
Conducted
(TH01-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Radiation
(03CH02-KS)
Conduction
(CO01-KS)
Conduction
(CO01-KS)
Amplifier
Agilent
8449B
AC Power Source
Chroma
61601
Turn Table
MF
MF7802
N/A
0~360 degree
NCR
Antenna Mast
MF
MF7802
N/A
1 m~4 m
NCR
EMI Receiver
R&S
ESCI7
100768
9kHz~7GHz;
Apr. 19, 2018
Jun. 28, 2018
Apr. 18, 2019
AC LISN
MessTec
AN3016
060103
9kHz~30MHz
Oct. 13, 2017
Jun. 28, 2018
Oct. 12, 2018
AC LISN
(for auxiliary
equipment)
MessTec
AN3016
060105
9kHz~30MHz
Oct. 13, 2017
Jun. 28, 2018
Oct. 12, 2018
Conduction
(CO01-KS)
AC Power Source
Chroma
61602
ABP00000 AC 0V~300V,
0811
45Hz~1000Hz
Oct. 12, 2017
Jun. 28, 2018
Oct. 11, 2018
Conduction
(CO01-KS)
NCR
NCR
NCR
NCR: No Calibration Required
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5. Uncertainty of Evaluation
Uncertainty of Conducted Emission Measurement (150 kHz ~ 30 MHz)
Measuring Uncertainty for a Level of Confidence
of 95% (U = 2Uc(y))
2.9dB
Uncertainty of Radiated Emission Measurement (30 MHz ~ 1000 MHz)
Measuring Uncertainty for a Level of Confidence
of 95% (U = 2Uc(y))
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4.2 dB
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Appendix A. Test Results of Conducted Emission Test
Test Engineer : Amos Zhang
Test Voltage :
120Vac / 60Hz
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Temperature :
24.7~25.1℃
Relative Humidity : 46~47%
Phase :
Line
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Temperature :
Test Engineer : Amos Zhang
Test Voltage :
24.7~25.1℃
Relative Humidity : 46~47%
120Vac / 60Hz
Phase :
Line
(1) with antenna
Remark: 13.560MHz is the NFC RF fundamental signal.
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Test Engineer : Amos Zhang
Test Voltage :
120Vac / 60Hz
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Temperature :
24.7~25.1℃
Relative Humidity : 46~47%
Phase :
Neutral
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Report No. : FR860402D
Temperature :
Test Engineer : Amos Zhang
Test Voltage :
24.7~25.1℃
Relative Humidity : 46~47%
120Vac / 60Hz
Phase :
Neutral
(1) with antenna
Remark: 13.560MHz is the NFC RF fundamental signal.
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Test Engineer : Amos Zhang
Test Voltage :
120Vac / 60Hz
Report No. : FR860402D
Temperature :
24.7~25.1℃
Relative Humidity : 46~47%
Phase :
Line
(2) With dummy load
Remark: Only the fundamental NFC signal needs to be retested per KDB 174176 D01.
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Test Engineer : Amos Zhang
Test Voltage :
120Vac / 60Hz
Report No. : FR860402D
Temperature :
24.7~25.1℃
Relative Humidity : 46~47%
Phase :
Neutral
(2) With dummy load
Remark: Only the fundamental NFC signal needs to be retested per KDB 174176 D01.
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Appendix B. Test Results of Conducted Test Items
B1. Test Result of 20dB Spectrum Bandwidth
Test mode
NFC Tx
20dB Bandwidth (kHz)
Frequency range (MHz)
Test Frequency (MHz)
13.56
2.49
99% OccupiedBW(kHz)
2.10
fL>13.553
13.558495
Test Result
fH<13.567
13.560984
Complies
Remark: Because the measured signal is CW adjusting the RBW per C63.10 would not be practical since
measured bandwidth will always follow the RBW and the result will be approximately twice the RBW.
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B2. Test Result of Frequency Stability
Voltage vs. Frequency Stability
Voltage (Vac)
Measurement
Temperature vs. Frequency Stability
Temperature (℃)
Frequency (MHz)
Measurement
Frequency (MHz)
120
13.559747
-20
13.559747
102
13.559747
-10
13.559747
138
13.559747
13.559747
10
13.559747
20
13.559747
30
13.559747
40
13.559747
50
13.559747
Max.Deviation (MHz)
-0.000254
Max.Deviation (MHz)
-0.000254
Max.Deviation (ppm)
-18.6947
Max.Deviation (ppm)
-18.6947
Limit
FS < ±100 ppm
Limit
FS < ±100 ppm
Test Result
PASS
Test Result
PASS
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Appendix C. Test Results of Radiated Test Items
C1. Test Result of Field Strength of Fundamental Emissions
Test Mode :
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NFC Tx
Test Frequency (MHz) 13.56
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C2. Results of Radiated Spurious Emissions (9 kHz~30MHz)
Test Mode :
NFC Tx
Horizontal
Polarization :
Frequency
Level
( MHz )
( dBμV/m )
Over
Limit
( dB )
Antenna
Factor
( dB )
Cable
Loss
( dB )
Ant
Pos
( cm )
Table
Pos
( deg )
Remark
0.01915
45.52
-76.44
121.96
25.41
20.1
0.01
Average
0.06554
35.14
-76.12
111.26
15.33
19.8
0.01
Average
1.258
50.46
-15.14
65.6
29.69
20.75
0.02
QP
1.321
52.61
-12.56
65.17
31.89
20.7
0.02
QP
6.548
35.24
-34.3
69.54
14.71
20.45
0.08
QP
24.676
35.15
-34.39
69.54
13.51
21.36
0.28
QP
Test Mode :
Limit
Read
Line
Level
( dBμV/m ) (dBμV)
NFC Tx
Vertical
Polarization :
Frequency
Level
( MHz )
( dBμV/m )
Over
Limit
( dB )
Limit
Read
Line
Level
( dBμV/m ) (dBμV)
Antenna
Factor
( dB )
Cable
Loss
( dB )
Ant
Pos
( cm )
Table
Pos
( deg )
Remark
0.01915
47.03
-74.93
121.96
26.92
20.1
0.01
Average
0.03339
37.91
-79.21
117.12
18.5
19.4
0.01
Average
1.258
44.4
-21.2
65.6
23.63
20.75
0.02
QP
1.321
46.12
-19.05
65.17
25.4
20.7
0.02
QP
6.242
35.25
-34.29
69.54
14.69
20.48
0.08
QP
25.798
36.04
-33.5
69.54
14.5
21.25
0.29
QP
Note:
1. The amplitude of spurious emissions which are attenuated by more than 20dB below the
permissible value has no need to be reported.
2. Distance extrapolation factor = 40 log (specific distance / test distance) (dB);
3. Limit line = specific limits (dBμV) + distance extrapolation factor.
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C3. Results of Radiated Spurious Emissions (30MHz~1GHz)
Test Mode :
Frequency
( MHz )
NFC Tx
Horizontal
Polarization :
Level
Over
Limit
Read
Limit
Line
Level
( dBμV/m ) ( dB ) ( dBμV/m ) (dBμV)
Antenna
Factor
( dB )
Cable
Loss
( dB )
Preamp Ant Table Remark
Factor Pos
Pos
( dB ) ( cm ) ( deg )
30
20.59
-19.41
40
27.55
24.5
0.57
32.03
Peak
40.67
19.47
-20.53
40
32.53
18.35
0.64
32.05
Peak
67.83
13.99
-26.01
40
32.63
12.56
0.85
32.05
Peak
129.91
15.66
-27.84
43.5
28.73
17.65
1.16
31.88
Peak
454.86
22.25
-23.75
46
28.09
22.48
2.2
30.52
Peak
854.5
29.76
-16.24
46
28.45
26.13
3.06
27.88
100
Peak
Test Mode :
Frequency
( MHz )
NFC Tx
Vertical
Polarization :
Level
Over
Limit
Read
Limit
Line
Level
( dBμV/m ) ( dB ) ( dBμV/m ) (dBμV)
Antenna
Factor
( dB )
Cable
Loss
( dB )
Preamp Ant Table Remark
Factor Pos
Pos
( dB ) ( cm ) ( deg )
40.67
33.2
-6.8
40
46.26
18.35
0.64
32.05
100
Peak
67.83
23.85
-16.15
40
42.49
12.56
0.85
32.05
Peak
94.99
19.5
-24
43.5
34.47
16.05
0.98
32
Peak
447.1
23.9
-22.1
46
29.93
22.35
2.17
30.55
Peak
664.38
27.03
-18.97
46
29.02
24.49
2.71
29.19
Peak
963.14
29.74
-24.26
54
26.5
27.09
3.22
27.07
Peak
Note:
1. The amplitude of spurious emissions which are attenuated by more than 20dB below the
permissible value has no need to be reported.
2. Emission level (dBμV/m) = 20 log Emission level (μV/m).
3. Corrected Reading: Antenna Factor + Cable Loss + Read Level - Preamp Factor= Level.
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Page Number
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: Rev. 01
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