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PAX Technology Limited SP30RF PIN PAD V5PSP30RF V5PSP30RF sp30rf

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FCC RF Test Report

Report No. : FR611519

FCC RF Test Report

APPLICANT EQUIPMENT BRAND NAME MODEL NAME MARKETING NAME FCC ID STANDARD CLASSIFICATION

: PAX Technology Limited : PIN PAD : PAX : SP30 : SP30 : V5PSP30RF : FCC Part 15 Subpart C §15.225 : (DXX) Low Power Communication Device Transmitter

The product was received on Jan. 15, 2016 and testing was completed on Jan. 23, 2016. We, SPORTON INTERNATIONAL (SHENZHEN) 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 (SHENZHEN) INC., the test report shall not be reproduced except in full.

Prepared by: Andy Yeh / Manager

Approved by: Jones Tsai / Manager

SPORTON INTERNATIONAL (SHENZHEN) INC.
1F & 2F, Building A, Morning Business Center, No. 4003 ShiGu Rd., Xili Town, Nanshan District, Shenzhen, Guangdong, P. R. China

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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: 1 of 17

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Table of Contents
REVISION HISTORY.................................................................................................................................................... 3
SUMMARY OF THE TEST RESULT ........................................................................................................................... 4
1. GENERAL INFORMATION...................................................................................................................................... 5
1.1 Applicant .......................................................................................................................................................................... 5 1.2 Manufacturer..................................................................................................................................................................... 5 1.3 Product Details.................................................................................................................................................................. 5 1.4 Modification of EUT............................................................................................................................................................ 6 1.5 Testing Location ................................................................................................................................................................ 6 1.6 Applicable Standards ......................................................................................................................................................... 7 1.7 Test Modes....................................................................................................................................................................... 7 1.8 Test Configurations............................................................................................................................................................ 8 1.9 Table for Supporting Units .................................................................................................................................................. 8
2. CONDUCTED EMISSION TEST.............................................................................................................................. 9
2.1 Measuring Instruments ....................................................................................................................................................... 9 2.2 Test setup ........................................................................................................................................................................ 9 2.3 Test Result of Conducted Emission Test............................................................................................................................... 9 2.4 AC Power Line Conducted Emissions Measurement ............................................................................................................ 10
3. CONDUCTED TEST ITEMS .................................................................................................................................. 11
3.1 Measuring Instruments ..................................................................................................................................................... 11 3.2 Test Setup ...................................................................................................................................................................... 11 3.3 Test Result of Conducted Test Items.................................................................................................................................. 11 3.4 20dB and 99% OBW Spectrum Bandwidth Measurement...................................................................................................... 12 3.5 Frequency Stability Measurement ...................................................................................................................................... 12
4. RADIATED TEST ITEMS....................................................................................................................................... 13
4.1 Measuring Instruments ..................................................................................................................................................... 13 4.2 Test Setup ...................................................................................................................................................................... 13 4.3 Test Result of Radiated Test Items .................................................................................................................................... 13 4.4 Field Strength of Fundamental Emissions and Mask Measurement ........................................................................................ 14 4.5 Radiated Emissions Measurement ..................................................................................................................................... 15
5. LIST OF MEASURING EQUIPMENT .................................................................................................................... 17
APPENDIX A. TEST RESULTS OF CONDUCTED EMISSION TEST
APPENDIX B. TEST RESULTS OF CONDUCTED TEST ITEMS
B.1.Test Result of 20dB Spectrum Bandwidth B.2 Test Result of Frequency Stability
APPENDIX C. TEST RESULTS OF RADIATED TEST ITEMS
C.1 Test Result of Field Strength of Fundamental Emissions C.2 Results of Radiated Emissions (9 kHz~30MHz) C.3 Results of Radiated Emissions (30MHz~1GHz)
APPENDIX D. SETUP PHOTOGRAPHS OF EUT

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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FCC RF Test Report

REVISION HISTORY

REPORT NO. FR611519

VERSION

DESCRIPTION

Rev. 01 Initial issue of report

Report No. : FR611519
ISSUED DATE Mar. 18, 2016

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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SUMMARY OF THE TEST RESULT

Applied Standard: 47 CFR FCC Part 15 Subpart C

Part

FCC Rule

Description of Test

Result

Under Limit

3.1

15.207

AC Power Line Conducted Emissions

Complies

10.62 dB at 0.560MHz

3.2

15.225(a)(b)(c)

Field Strength of Fundamental Emissions

Complies

59.870 dB at 13.560 MHz

3.3

2.1049

20dB Spectrum Bandwidth Complies

-

99% OBW Spectrum

3.3

-

Complies

-

Bandwidth

15.225(d) 3.4
15.209

Radiated Emissions

Complies

6.7 dB at 149.310 MHz

3.5

15.225(e)

Frequency Stability

Complies

-

3.6

15.203

Antenna Requirements

Complies

-

Test Items AC Power Line Conducted Emissions Radiated Emissions (30MHz~1000MHz)

Uncertainty ±2.3 dB ±4.8 dB

Remark Confidence levels of 95% Confidence levels of 95%

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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1. GENERAL INFORMATION
1.1 Applicant
PAX Technology Limited Room 2416, 24/F., Sun Hung Kai Centre, 30 Harbour Road, Wanchai, Hong Kong

1.2 Manufacturer
PAX Computer Technology (Shenzhen) Co., Ltd. 4/F, No.3 Building, Software Park, Second Central Science-Tech Road, High-Tech industrial Park, Shenzhen, Guangdong, P.R.C.

1.3 Product Details

Items

Description

Tx/Rx Frequency Range

13.553 ~ 13.567MHz

Channel Number

1

20dBW

2.64 KHz

99%OBW

2.24 KHz

Antenna Type

PCB 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 (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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1.4 Modification of EUT
No modifications are made to the EUT during all test items.

Report No. : FR611519

1.5 Testing Location

Test Site

SPORTON INTERNATIONAL (SHENZHEN) INC.

Test Site Location

1F & 2F, Building A, Morning Business Center, No. 4003 ShiGu Rd., Xili Town, Nanshan District, Shenzhen, Guangdong, P. R. China TEL: +86-755-8637-9589

FAX: +86-755-8637-9595

Test Site No.
Test Engineer Temperature Relative Humidity

TH01-SZ Mygai Mo 24~26 50~53

Sporton Site No.

CO01-SZ Jacky Yang
21~23 41~43

Test Site

SPORTON INTERNATIONAL (SHENZHEN) INC.

No. 3 Building, the third floor of south, Shahe River west, Fengzeyuan

Test Site Location warehouse, Nanshan District, Shenzhen, Guangdong, P. R. China

TEL: +86-755- 3320-2398

Test Site No.

Sporton Site No. 03CH01-SZ

FCC Registration No.

Test Engineer Temperature Relative Humidity

Leo Liao 24~25 48~49

831040

Note: The test site complies with ANSI C63.4 2009 requirement.

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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1.6 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

1.7 Test Modes

Investigation has been done on all the possible configurations for searching the worst cases. 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

Note: 1. The EUT was programmed to be in continuously transmitting mode.

2. 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 (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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FCC RF Test Report
1.8 Test Configurations
<AC Conducted Emissions>

Report No. : FR611519

< For Fundamental Emissions and Mask and Radiated Emissions Measurement >

1.9 Table for Supporting Units

Support Unit NFC Card Notebook RJ45

Manufacturer N/A Lenovo N/A

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

N/A E540 N/A

Model

FCC ID N/A FCC DoC N/A

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2. CONDUCTED EMISSION TEST
2.1 Measuring Instruments
See list of measuring instruments of this test report.
2.2 Test setup

Report No. : FR611519

2.3 Test Result of Conducted Emission Test
Please refer to Appendix A.

SPORTON INTERNATIONAL (SHENZHEN) INC. TEL : 86-755-8637-9589 FAX : 86-755-8637-9595 FCC ID : V5PSP30RF

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2.4 AC Power Line Conducted Emissions Measurement

2.4.1 Limit

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.

Frequency of Emission (MHz)

Conducted Limit (dBV)

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.

2.4.2 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.

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FCC RF Test Report
3. CONDUCTED TEST ITEMS
3.1 Measuring Instruments
See list of measuring instruments of this test report.
3.2 Test Setup 3.2.1 20dB and 99% OBW Spectrum Bandwidth
3.2.2 Frequency Stability

Report No. : FR611519

3.3 Test Result of Conducted Test Items
Please refer to Appendix B.

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3.4 20dB and 99% OBW Spectrum Bandwidth Measurement 3.4.1 Limit
Intentional radiators must be designed to ensure that the 20dB and 99% emission bandwidth in the specific band 13.553~13.567MHz

3.4.2 Test Procedures
1. The transmitter output (antenna port) was connected to the spectrum analyzer 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.

3.5 Frequency Stability Measurement 3.5.1 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.
3.5.2 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 × 106
ppm and the limit is less than ±100ppm. 6. Extreme temperature rule is -20°C~50°C.

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FCC RF Test Report
4. RADIATED TEST ITEMS
4.1 Measuring Instruments
See list of measuring instruments of this test report.
4.2 Test Setup 4.2.1 For radiated emissions below 30MHz

Report No. : FR611519

4.2.2 For radiated emissions above 30MHz

4.3 Test Result of Radiated Test Items
Please refer to Appendix C.

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4.4 Field Strength of Fundamental Emissions and Mask Measurement

4.4.1 Limit

Rules and specifications Description
Freq. of Emission (MHz)
1.705~13.110 13.110~13.410 13.410~13.553 13.553~13.567 13.567~13.710 13.710~14.010 14.010~30.000

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

(V/m) at 30m (dBV/m) at 30m (dBV/m) at 10m (dBV/m) at 3m

30

29.5

48.58

69.5

106

40.5

59.58

80.5

334

50.5

69.58

90.5

15848

84.0

103.08

124.0

334

50.5

69.58

90.5

106

40.5

59.58

80.5

30

29.5

48.58

69.5

4.4.2 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 (dBV/m) = 20 log Emission level (V/m).

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4.5 Radiated Emissions Measurement

4.5.1 Limit

The field strength of any emissions which appear outside of 13.553~13.567MHz band shall not

exceed the general radiated emissions limits.

Frequencies (MHz)

Field Strength (V/m)

Measurement Distance (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

3

88~216

150

3

216~960

200

3

Above 960

500

3

4.5.2 Measuring Instrument Setting

The following table is the setting of receiver.

Receiver Parameter Attenuation Frequency Range: 9kHz~150kHz Frequency Range: 150kHz~30MHz Frequency Range: 30MHz~1000MHz

Setting Auto RBW 200Hz for QP RBW 9kHz for QP 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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4.5.3 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 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
4.5.4 Limit
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.
4.5.5 Antenna Anti-Replacement Construction
An embedded-in antenna design is used.

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5. LIST OF MEASURING EQUIPMENT

Instrument Manufacturer Model No.

Spectrum Analyzer

R&S

Ten Billion

Thermal Chamber Hongzhangrou

p

FSP30 LP-150U

AC Power Source Chroma

61602

EMI Test Receiver&SA

Agilent Technologies

N9038A

Loop Antenna

R&S

HFH2-Z2

Bilog Antenna

TeseQ

CBL6112D

Amplifier

ADVANTEST BB525C

AC Power Source Chroma

61601

Turn Table

EM

EM1000

Antenna Mast

EM

EM1000

EMI Receiver

R&S

ESCI7

AC LISN

EMCO

3816/2SH

AC LISN (for auxiliary equipment)

MessTec

3816/2SH

AC Power Source Chroma

61602

LIT-153 Pulse Limiter COM-POWER Transient
Limiter
NCR: No Calibration Required

Serial No. Characteristics

Calibration Date

Test Date

Due Date

101400 9kHz~30GHz Jan. 12, 2016 Jan. 22, 2016 Jan. 11, 2017

H2014081 803

-40~+150°C

Aug. 07, 2015 Jan. 22, 2016 Aug. 06, 2016

616020000 891

100Vac~250Vac

Aug. 07, 2015

MY522601 85

20Hz~26.5GHz

May 26, 2015

Jan. 22, 2016 Jan. 23, 2016

Aug. 06, 2016 May 25, 2016

100354 9kHz~30MHz May 06, 2015 Jan. 23, 2016 May 05, 2016

23188 30MHz-2GHz Oct. 17, 2015 Jan. 23, 2016 Oct. 16, 2016

E9007003

9kHz ~3000MHz / 30 dB

Jan. 28, 2015

616010001 985

N/A

NCR

Jan. 23, 2016 Jan. 23, 2016

Jan. 27, 2016 NCR

N/A

0~360 degree

NCR

Jan. 23, 2016

NCR

N/A

1 m~4 m

NCR

Jan. 23, 2016

NCR

100724 00103892

9kHz~3GHz; 9kHz~30MHz

Nov. 23, 2015

Jan. 20, 2016~ Jan. 21, 2016

Nov. 22, 2016

Jan. 12, 2016

Jan. 20, 2016~ Jan. 21, 2016

Jan. 11, 2017

00103912

9kHz~30MHz

Jan. 12, 2016

Jan. 20, 2016~ Jan. 21, 2016

Jan. 11, 2017

616020000 891

100Vac~250Vac

Aug. 07, 2015

Jan. 20, 2016~ Jan. 21, 2016

Aug. 06, 2016

53139

150kHz~30MHz

Oct. 20, 2015

Jan. 20, 2016~ Jan. 21, 2016

Oct. 19, 2016

Remark
Conducted (TH01-SZ)
Conducted (TH01-SZ)
Conducted (TH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Radiation (03CH01-SZ) Conduction (CO01-SZ) Conduction (CO01-SZ)
Conduction (CO01-SZ)
Conduction (CO01-SZ)
Conduction (CO01-SZ)

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Appendix A. Test Results of Conducted Emission Test

Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

120Vac / 60Hz

(1) The EUT is with NFC antenna during testing. Remark: 13.56MHz is the NFC RF fundamental signal.

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Report No. : FR611519

Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

120Vac / 60Hz

(1) The EUT is with NFC antenna during testing. Remark: 13.56MHz is the NFC RF fundamental signal.

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Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

120Vac / 60Hz

(1) The EUT is with NFC antenna during testing. Remark: 13.56MHz is the NFC RF fundamental signal.

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FCC RF Test Report

Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

Report No. : FR611519 120Vac / 60Hz

(1) The EUT is with NFC antenna during testing. Remark: 13.56MHz is the NFC RF fundamental signal.

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Report No. : FR611519

Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

120Vac / 60Hz

(2) The NFC antenna is replaced by a dummy load during test.

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FCC RF Test Report

Test Mode :

NFC Tx

Test Voltage :

Function Type : LAN Link + Adapter + NFC Tx

Report No. : FR611519 120Vac / 60Hz

(2) The NFC antenna is replaced by a dummy load during test.

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FCC RF Test Report

Report No. : FR611519

Appendix B. Test Results of Conducted Test Items

B.1 Test Result of 20dB Spectrum Bandwidth

Test mode

NFC Tx

Ref 20 dBm 20 10
1 PK MAXH
0
-10
-20
-30
-40
-50
-60
-70 -80 Center 13.56 MHz

* Att 40 dB T1

* RBW 1 kHz * VBW 3 kHz * SWT 20 ms
1
T2

Marker 1 [T1 ] 3.68 dBm
13.560220000 MHz

ndB [T1] 20.00 dB

BW 2.640000000 kHz

Temp 1 [T1 ndB]

A

-16.11 dBm SGL

13.558880000 MHz

Temp 2 [T1 ndB]

-16.58 dBm

13.561520000 MHz

3DB

1 kHz/

Span 10 kHz

Test Frequency (MHz) 13.56

Ref 20 dBm 20 10
1 PK MAXH
0
-10
-20
-30
-40
-50
-60
-70 -80 Center 13.56 MHz

* Att 40 dB T1

* RBW 1 kHz * VBW 3 kHz * SWT 20 ms
1
T2

Marker 1 [T1 ] 3.78 dBm
13.560220000 MHz
OBW 2.240000000 kHz Temp 1 [T1 OBW]
-10.74 dBm A 13.559080000 MHz SGL Temp 2 [T1 OBW]
-10.60 dBm 13.561320000 MHz

3DB

1 kHz/

Span 10 kHz

Date: 22.JAN.2016 20:38:40
20dB Bandwidth (kHz) Frequency range (MHz)

2.64 fL13.553 fH13.567

Date: 22.JAN.2016 20:37:25
99% Occupied BW (kHz) 13.55888 13.56152

2.24 Test Result Complies

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FCC RF Test Report

B.2 Test Result of Frequency Stability

Voltage vs. Frequency Stability

Voltage (Vac)

Measurement Frequency (MHz)

120

13.560200

102

13.560200

138

13.560200

-

-

-

-

-

-

-

-

-

-

Max.Deviation (MHz)

0.000200

Max.Deviation (ppm)

14.7493

Limit

FS < ±100 ppm

Test Result

PASS

Report No. : FR611519

Temperature vs. Frequency Stability

Temperature ()

Measurement Frequency (MHz)

-20

13.560170

-10

13.560180

0

13.560180

10

13.560180

20

13.560200

30

13.560180

40

13.560180

50

13.560180

Max.Deviation (MHz)

0.000200

Max.Deviation (ppm)

14.7493

Limit

FS < ±100 ppm

Test Result

PASS

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FCC RF Test Report

Report No. : FR611519

Appendix C. Test Results of Radiated Test Items

C.1 Test Result of Field Strength of Fundamental Emissions

Test Mode :

NFC Tx

Test Frequency (MHz) 13.56

Note: All NFC's spurious emissions are below 20dB of limits.

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FCC RF Test Report

Report No. : FR611519

C.2 Results of Radiated Emissions (9 kHz~30MHz)

Test Mode :

NFC Tx

Polarization :

Horizontal

Frequency Level

( MHz ) ( dBV/m )

0.00997

60.97

Over Limit ( dB )
-66.66

Limit Line ( dBV/m )
127.63

Read Level (dBV)
32.52

Antenna Factor ( dB )
28.3

Cable Loss ( dB )
0.15

0.06852

62.44 -48.45 110.89 39.39 22.9

0.15

0.10239

41.79 -65.61 107.4

18.74 22.9

0.15

0.13809

50.46 -54.34 104.8

27.54 22.77 0.15

1.608

39.31 -24.17 63.48

17.39 21.72

0.2

2.06

38.92 -31.08

70

17.12 21.59 0.21

10.696

38.34 -31.66

70

16.75 21.22 0.37

24.226

37.78 -32.22

70

15.03 22.19 0.56

28.005

38.7

-31.3

70

15.44 22.66

0.6

Ant Pos ( cm )
-

Table Pos ( deg )
-

Remark Average

-

-

Average

-

-

QP

-

-

Average

-

-

QP

-

-

QP

-

-

QP

-

-

QP

-

-

QP

Test Mode :

NFC Tx

Polarization :

Vertical

Frequency Level

( MHz ) ( dBV/m )

0.02012

54.88

Over Limit ( dB )
-66.65

Limit Line ( dBV/m )
121.53

Read Level (dBV)
26.43

Antenna Factor ( dB )
28.3

Cable Loss ( dB )
0.15

Ant Pos ( cm )
-

Table Pos ( deg )
-

Remark Average

0.06528

54.74 -56.57 111.31 31.69 22.9

0.15

-

-

Average

0.11889

39.19 -66.91 106.1

16.27 22.77 0.15

-

-

Average

0.13809

47.91 -56.89 104.8

24.99 22.77 0.15

-

-

Average

1.684

39.2

-23.88 63.08

17.31 21.69

0.2

-

-

QP

2.144

39.19 -30.81

70

17.39 21.59 0.21

-

-

QP

8.44

39.79 -30.21

70

18.07 21.39 0.33

-

-

QP

22.66

37.97 -32.03

70

15.46 21.97 0.54

-

-

QP

29.615

39.49 -30.51

70

16.01 22.85 0.63

-

-

QP

Note: 1. 13.56 MHz is fundamental signal which can be ignored.

2. The amplitude of spurious emissions which are attenuated by more than 20dB below the

permissible value has no need to be reported.

3. Distance extrapolation factor = 40 log (specific distance / test distance) (dB);

4. Limit line = specific limits (dBV) + distance extrapolation factor.

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FCC RF Test Report

Report No. : FR611519

C.3 Results of Radiated Emissions (30MHz~1GHz)

Test Mode :

NFC Tx

Polarization :

Horizontal

Frequency Level Over Limit

Read

Limit Line

Level

( MHz ) ( dBV/m ) ( dB ) ( dBV/m ) (dBV)

94.99

31.58 -11.92 43.5

44.86

Antenna Factor ( dB )
11.1

Cable Loss ( dB )
1.42

Preamp Ant Table Remark Factor Pos Pos ( dB ) ( cm ) ( deg )

25.8

-

-

Peak

149.31

36.8

-6.7

43.5

47.4 13.09 1.83 25.52 125 90 Peak

250.19

35.14 -10.86

46

45.48 12.4

2.4 25.14 -

-

Peak

285.11

35.81 -10.19

46

44.7

13.6

2.58 25.07 -

-

Peak

500.45

37.85 -8.15

46

41.14

19.4

3.65 26.34

-

-

Peak

901.06

35.68 -10.32

46

34.55

21.6

5.39 25.86

-

-

Peak

Test Mode :

NFC Tx

Polarization :

Vertical

Frequency Level Over Limit

Read

Limit Line

Level

( MHz ) ( dBV/m ) ( dB ) ( dBV/m ) (dBV)

38.73

31.67 -8.33

40

40.82

Antenna Factor ( dB )
16.01

Cable Loss ( dB )
0.86

Preamp Ant Table Remark Factor Pos Pos ( dB ) ( cm ) ( deg )
26.02 100 80 Peak

94.99

31.69 -11.81 43.5

44.97

11.1

1.42 25.8

-

-

Peak

250.19

27.68 -18.32

46

38.02 12.4

2.4 25.14 -

-

Peak

500.45

34.89 -11.11

46

38.18

19.4

3.65 26.34

-

-

Peak

624.61

31.84 -14.16

46

34.09 19.85 4.32 26.42 -

-

Peak

870.99

31.01 -14.99

46

29.81 21.86

5.3 25.96

-

-

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 (dBV/m) = 20 log Emission level (V/m). 3. Corrected Reading: Antenna Factor + Cable Loss + Read Level - Preamp Factor= Level.

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