Touch computer Test Report Zebra Technologies Corporation

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SPORTON INTERNATIONAL INC.
Page Number
:
1 of 19
TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
FCC RF Test Report
APPLICANT
:
Zebra Technologies Corporation
EQUIPMENT
:
Touch computer
BRAND NAME
:
Zebra
MODEL NAME
:
TC700K
FCC ID
:
UZ7TC700K
STANDARD
:
FCC Part 15 Subpart C §15.247
CLASSIFICATION
:
(DTS) Digital Transmission System
The product was received on Aug. 12, 2016 and testing was completed on Dec. 19, 2016. We,
SPORTON INTERNATIONAL 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 INC., the test report shall not be reproduced except
in full.
Reviewed by: Joseph Lin / Supervisor
Approved by: Jones Tsai / Manager
SPORTON INTERNATIONAL INC.
No. 52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C.
SPORTON INTERNATIONAL INC.
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:
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TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
TABLE OF CONTENTS
REVISION HISTORY .......................................................................................................................................... 3
SUMMARY OF TEST RESULT ......................................................................................................................... 4
1 GENERAL DESCRIPTION .......................................................................................................................... 5
1.1 Applicant ............................................................................................................................................ 5
1.2 Manufacturer ...................................................................................................................................... 5
1.3 Product Feature of Equipment Under Test ........................................................................................ 5
1.4 Re-use of Measured Data ................................................................................................................. 6
1.5 Modification of EUT ........................................................................................................................... 6
1.6 Testing Location ................................................................................................................................ 7
1.7 Applicable Standards ......................................................................................................................... 7
2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................................................................ 8
2.1 Carrier Frequency and Channel ........................................................................................................ 8
2.2 Test Mode .......................................................................................................................................... 8
2.3 Measurement Results Explanation Example ..................................................................................... 9
3 TEST RESULT ........................................................................................................................................... 10
3.1 Output Power Measurement ............................................................................................................ 10
3.2 Power Spectral Density Measurement ............................................................................................ 12
3.3 Antenna Requirements .................................................................................................................... 17
4 LIST OF MEASURING EQUIPMENT ........................................................................................................ 19
APPENDIX A. CONDUCTED TEST RESULTS
APPENDIX B. PRODUCT EQUALITY DECLARATION.
APPENDIX C. ORIGINAL REPORT
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
REVISION HISTORY
REPORT NO.
VERSION
DESCRIPTION
ISSUED DATE
FR672834-04C
Rev. 01
Initial issue of report
Jan. 05, 2017
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
SUMMARY OF TEST RESULT
Report
Section
FCC Rule
Description
Limit
Result
Remark
3.1
15.247(b)
Power Output Measurement
30dBm
Pass
-
3.2
15.247(e)
Power Spectral Density
8dBm/3kHz
Pass
-
3.3
15.203 &
15.247(b)
Antenna Requirement
N/A
Pass
-
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
1 General Description
1.1 Applicant
Zebra Technologies Corporation
1 Zebra Plaza Holtsville, NY 11742
1.2 Manufacturer
Wistron Corporation
21F, No. 88, Sec. 1, Hsin Tai Wu Rd., Hsichih Dist, New Taipei City 221,Taiwan R.O.C.
1.3 Product Feature of Equipment Under Test
Product Feature
Equipment
Touch computer
Brand Name
Zebra
Model Name
TC700K
FCC ID
UZ7TC700K
EUT supports Radios application
NFC
WLAN 11a/b/g/n HT20/HT40
WLAN 11ac VHT20/VHT40/VHT80
Bluetooth BR/EDR/LE
HW Version
DV
SW Version
Android version 6.0.1
FW Version
91-12.04.4-MG-00
MFD
08NOV16
EUT Stage
Engineering sample
Specification of Accessories
AC Adapter
Brand Name
Zebra
Part Number
PWR-BUA5V16W0WW
Snap-On USB/Charge Cable
Brand Name
Symbol
Part Number
CBL-TC7X-USB1-01
Snap-On Charging Cable Cup
Brand Name
Symbol
Part Number
CHG-TC7X-CBL1-01
Battery
Brand Name
Zebra
Part Number
BT-000318-01
Earphone 1
Brand Name
Zebra
Part Number
HDST-35MM-PTVP-01
Earphone 2
Brand Name
Zebra
Part Number
HS2100-OTH
Earphone 3
Brand Name
Zebra
Part Number
HS3100-OTH
Snap-on 3.5MM Audio Jack Adapter
Brand Name
Symbol
Part Number
ADP-TC7X-AUD35-01
3.5mm Jack 43"(1.1m) Standard
Cable
Brand Name
Zebra
Part Number
CBL-HS2100-3MS1-01
Soft Holster
Brand Name
Zebra
Part Number
SG-TC7X-HLSTR1-01
Rigid Holster
Brand Name
Zebra
Part Number
SG-TC7X-RHLSTR1-01
Power Cord
Brand Name
LOROM
Part Number
50-16000-182R
Cable line
Brand Name
Zebra
Part Number
CBL-DC-383A1-01
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
1.4 Re-use of Measured Data
1.4.1 Introduction Section
The part 15C test data for 2.4G WLAN (equipment class: DTS) of UZ7TC700K (model: TC700K) is
referenced from UZ7TC75EK (model: TC75EK).
The applicant takes full responsibility that the test data as referenced in section 1.4.4 below represent
compliance for UZ7TC700K (model: TC700K).
1.4.2 Difference Section
UZ7TC700K is a variant version of UZ7TC75EK by changing hardware in UZ7TC75GK.
Detailed information is available in the appendix B - Product Equality Declaration.
1.4.3 Spot Check Verification Data Section
In order to confirm hardware similarity of the subject device with the reference device, WLAN conducted
power and PSD spot check has been performed on FCC ID: UZ7TC700K (model: TC700K) for certain
parameters. The test results are significantly consistent with its parent model FCC ID: UZ7TC75EK
(model: TC75EK).
1.4.4 Reference detail Section:
Equipment Class
Reference FCC ID
Folder Test/RF Exposure
Report Title/Section
DTS
UZ7TC75EK
Part15C (FR672834C)
All sections applicable
1.5 Modification of EUT
No modifications are made to the EUT during all test items.
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Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
1.6 Testing Location
Sporton Lab is accredited to ISO 17025 by Taiwan Accreditation Foundation (TAF code : 1190) and the
FCC designation No. TW1022 under the FCC 2.948(e) by Mutual Recognition Agreement (MRA) in
FCC Test.
Test Site
SPORTON INTERNATIONAL INC.
Test Site Location
No. 52, Hwa Ya 1st Rd., Hwa Ya Technology Park,
Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C.
TEL: +886-3-327-3456
FAX: +886-3-328-4978
Test Site No.
Sporton Site No.
TH05-HY
Note: The test site complies with ANSI C63.4 2014 requirement.
1.7 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 §15.247
FCC KDB Publication No. 558074 D01 DTS Meas. Guidance v03r05
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
FCC KDB 644545 D03 Guidance for IEEE 802 11ac New Rules v01
ANSI C63.10-2013
Remark:
1. All test items were verified and recorded according to the standards and without any deviation
during the test.
2. This EUT has also been tested and complied with the requirements of FCC Part 15, Subpart B,
recorded in a separate test report.
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
2 Test Configuration of Equipment Under Test
2.1 Carrier Frequency and Channel
Frequency Band
Channel
Freq.
(MHz)
Channel
Freq.
(MHz)
2400-2483.5 MHz
1
2412
7
2442
2
2417
8
2447
3
2422
9
2452
4
2427
10
2457
5
2432
11
2462
6
2437
2.2 Test Mode
Final test mode of conducted test items is considering the modulation and worse data rates as
below table.
Single Antenna
Modulation
Data Rate
802.11b
1 Mbps
802.11g
6 Mbps
MIMO Antenna
Modulation
Data Rate
802.11n HT20
MCS0
802.11n HT40
MCS0
802.11ac VHT20
MCS0
802.11ac VHT40
MCS0
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
2.3 Measurement Results Explanation Example
For all conducted test items:
The offset level is set in the spectrum analyzer to compensate the RF cable loss and attenuator factor
between EUT conducted output port and spectrum analyzer. With the offset compensation, the
spectrum analyzer reading level is exactly the EUT RF output level.
Example :
The spectrum analyzer offset is derived from RF cable loss and attenuator factor.
Offset = RF cable loss + attenuator factor.
Following shows an offset computation example with cable loss 4.2 dB and 10dB attenuator.
Offset(dB) = RF cable loss(dB) + attenuator factor(dB).
= 4.2 + 10 = 14.2 (dB)
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Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
3 Test Result
3.1 Output Power Measurement
3.1.1 Limit of Output Power
For systems using digital modulation in the 2400-2483.5MHz, the limit for output power is 30dBm. If
transmitting antenna with directional gain greater than 6dBi is used, the output power from the
intentional radiator shall be reduced below the above stated value by the amount in dB that the
directional gain of the antenna exceeds 6 dBi. In case of point-to-point operation, the limit has to be
reduced by 1dB for every 3dB that the directional gain of the antenna exceeds 6dBi.
3.1.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
3.1.3 Test Procedures
CDD Modes
1. The testing follows the Measurement Procedure of FCC KDB No. 558074 DTS D01 Meas.
Guidance v03r05 section 9.2.3.2 Method AVGPM-G.
2. The RF output of EUT was connected to the power meter by RF cable and attenuator. The path
loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Measure the conducted output power and record the results in the test report.
5. For MIMO mode, calculation method follows FCC KDB 662911 D01 Multiple Transmitter Output
v02r01.
TXBF Modes
1. The testing follows the Measurement Procedure of FCC KDB No. 558074 DTS D01 Meas.
Guidance v03r05 section 9.2.3.2 Method AVGPM-G.
2. The RF output of EUT was connected to the power meter by RF cable and attenuator. The path
loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Measure the conducted output power and record the results in the test report.
5. For MIMO mode, calculation method follows FCC KDB 662911 D01 Multiple Transmitter Output
v02r01.
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3.1.4 Test Setup
3.1.5 Test Result of Peak Output Power (Reporting Only)
Please refer to Appendix A.
3.1.6 Test Result of Average output Power
Please refer to Appendix A.
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FCC RF Test Report
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3.2 Power Spectral Density Measurement
3.2.1 Limit of Power Spectral Density
The peak power spectral density shall not be greater than 8dBm in any 3kHz band at any time interval
of continuous transmission.
3.2.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
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FCC RF Test Report
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3.2.3 Test Procedures
CDD Modes
Method AVGPSD-2
1. The testing follows Measurement Procedure 10.5 Method AVGPSD-2 of FCC KDB Publication
No. 558074 D01 DTS Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 10 kHz.
Video bandwidth VBW = 30 kHz In order to make an accurate measurement, set the span to 1.5
times DTS Channel Bandwidth. (6dB BW).
5. Number of points in sweep 2 Span / RBW. (This ensures that bin-to-bin spacing is RBW/2,
so that narrowband signals are not lost between frequency bins).
6. Detector = RMS, Sweep time = auto couple.
7. Trace average at least 100 traces in power averaging mode.
8. Add 10 log(1/x), where x is the duty cycle, to the measured power in order to compute the
average power during the actual transmission times. For example, add 10 log(1/0.25) = 6 dB if
the duty cycle is 25 percent.
9. Measure and record the results in the test report.For MIMO mode, calculation method follows
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
Method (c): Measure and add 10 log(NANT) dB.
With this technique, spectrum measurements are performed at each output of the device, but
rather than summing the spectra or the spectral peaks across the outputs, the quantity 10
log(NANT) dB is added to each spectrum value before comparing to the emission limit. The
addition of 10 log(NANT) dB serves to apportion the emission limit among the NANT outputs so
that each output is permitted to contribute no more than 1/NANT th of the PSD limit .
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Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
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TXBF Modes
Method AVGPSD-3
1. The testing follows Measurement Procedure 10.7 Method AVGPSD-3 of FCC KDB Publication
No. 558074 D01 DTS Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 10 kHz.
Video bandwidth VBW = 30 kHz In order to make an accurate measurement, set the span to 1.5
times DTS Channel Bandwidth. (6dB BW).
5. Number of points in sweep 2 Span / RBW. (This ensures that bin-to-bin spacing is RBW/2,
so that narrowband signals are not lost between frequency bins).
6. Detector = RMS, Sweep time = auto couple.
7. Trace mode = max hold.
8. Allow max hold to run for at least 60 seconds, or longer as needed to allow the trace to stabilize.
9. Measure and record the results in the test report.For MIMO mode, calculation method follows
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
Method (c): Measure and add 10 log(NANT) dB.
With this technique, spectrum measurements are performed at each output of the device, but
rather than summing the spectra or the spectral peaks across the outputs, the quantity 10
log(NANT) dB is added to each spectrum value before comparing to the emission limit. The
addition of 10 log(NANT) dB serves to apportion the emission limit among the NANT outputs so
that each output is permitted to contribute no more than 1/NANT th of the PSD limit .
3.2.4 Test Setup
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3.2.5 Test Result of Power Spectral Density
Please refer to Appendix A.
<CDD Modes>
Worst Case Power Density (dBm/3kHz)
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FCC RF Test Report
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<TXBF Modes>
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 1
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 2
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FCC RF Test Report
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3.3 Antenna Requirements
3.3.1 Standard Applicable
If directional gain of transmitting Antennas is greater than 6dBi, the power shall be reduced by the
same level in dB comparing to gain minus 6dBi. For the fixed point-to-point operation, the power shall
be reduced by one dB for every 3 dB that the directional gain of the Antenna exceeds 6 dBi. 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 FCC rule.
3.3.2 Antenna Anti-Replacement Construction
An embedded-in antenna design is used.
3.3.3 Antenna Gain
CDD modes
FCC KDB 662911 D01 Multiple Transmitter Output v02r01
For CDD transmissions, directional gain is calculated as
Directional gain = GANT + Array Gain, where Array Gain is as follows.
For power spectral density (PSD) measurements on all devices,
Array Gain = 10 log(NANT/NSS=1) dB.
For power measurements on IEEE 802.11 devices,
Array Gain = 0 dB (i.e., no array gain) for NANT ≤ 4.
Directional gain may be calculated by using the formulas applicable to equal gain antennas with GANT
set equal to the gain of the antenna having the highest gain;
The EUT supports CDD mode.
For power, the directional gain GANT is set equal to the antenna having the highest gain, i.e., F)2)f)i).
For PSD, the directional gain calculation is following F)2)f)ii) of KDB 662911 D01 v02r01.
The power and PSD limit should be modified if the directional gain of EUT is over 6 dBi,
The directional gain DG” is calculated as following table.
DG
DG
Power
PSD
for
for
Limit
Limit
Ant 1
Ant 2
Power
PSD
Reduction
Reduction
(dBi)
(dBi)
(dBi)
(dBi)
(dB)
(dB)
2.4GHz
2.50
1.70
2.50
5.12
0.00
0.00
Power Limit Reduction = DG(Power) 6dBi, ( min = 0 )
PSD Limit Reduction = DG(PSD) 6dBi, ( min = 0 )
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
TXBF modes
FCC KDB 662911 D01 Multiple Transmitter Output v02r01
For CDD transmissions, directional gain is calculated as
The EUT supports beamforming for 802.11ac modes.
The directional gain calculation is following F)2)e)ii) of KDB 662911 D01 v02r01.
The power and PSD limit should be modified if the directional gain of EUT is over 6 dBi,
The directional gain DG” is calculated as following table.
for
for
Limit
Limit
Ant 1
Ant 2
Power
PSD
Reduction
Reduction
(dBi)
(dBi)
(dBi)
(dBi)
(dB)
(dB)
2.4GHz
2.50
1.70
5.12
5.12
0.00
0.00
Power Limit Reduction = DG(Power) 6dBi, ( min = 0 )
PSD Limit Reduction = DG(PSD) 6dBi, ( min = 0 )
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FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
4 List of Measuring Equipment
Instrument
Manufacturer
Model No.
Serial No.
Characteristics
Calibration
Date
Test Date
Due Date
Remark
Power Meter
Anritsu
ML2495A
1132003
300MHz~40GHz
Aug. 04, 2016
Dec. 12, 2016 ~
Dec. 19, 2016
Aug. 03, 2017
Conducted
(TH05-HY)
Power Sensor
DARE
RPR3006W
13I00030S
NO31
9kHz~6GHz
Sep. 21, 2016
Dec. 12, 2016 ~
Dec. 19, 2016
Sep. 20, 2017
Conducted
(TH05-HY)
Power Sensor
DARE
RPR3006W
13I00030S
NO32
9kHz~6GHz
Sep. 21, 2016
Dec. 12, 2016 ~
Dec. 19, 2016
Sep. 20, 2017
Conducted
(TH05-HY)
Power Sensor
Anritsu
MA2411B
1126017
300MHz~40GHz
Aug. 04, 2016
Dec. 12, 2016 ~
Dec. 19, 2016
Aug. 03, 2017
Conducted
(TH05-HY)
Spectrum
Analyzer
Rohde &
Schwarz
FSP40
100057
9kHz-40GHz
Nov. 25, 2016
Dec. 12, 2016 ~
Dec. 19, 2016
Nov. 24, 2017
Conducted
(TH05-HY)
SPORTON INTERNATIONAL INC.
Page Number
:
A1-1 of 1
TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
Appendix A. Conducted Test Results
<CDD Modes>
Report Number :
Test Date: 2016/12/12 ~ 2016/12/19 Relative Humidity: 51~54 %
FR672834-04C
Test Engineer: Kia Liao Temperature: 21~25 °C
A1-1 of 4
Report Number :
1
1
1
1
1
1
Note: Measured power (dBm) has offset with cable loss.
Ant 1 Ant 2
Conducted
Power
Limit
(dBm)
30.00 30.00 2.50 1.70 23.65 23.65
2.50
2.4GHz Band
FR672834-04C
TEST RESULTS DATA
Peak Output Power
Ant 1 Ant 2 Ant 2
Pass
/Fail
20.78 21.27 30.00 30.00
Ant 1 Ant 2 Ant 1
EIRP
Power
(dBm)
Pass
Peak
Conducted
Power
(dBm)
Ant 1 Ant 2 SUM
EIRP
Power
Limit
(dBm)
DG
(dBi)
36.00 36.00
Mod. Data
Rate N
TX
CH. Freq.
(MHz)
11g 6Mbps 11 2462
11g 6Mbps 6 2437
2462
11g 6Mbps 1 2412
11b 1Mbps
11b 1Mbps 11
11b 1Mbps 1 2412
62437
Pass36.00 36.0025.56 25.14
36.00 36.00 Pass22.04 22.22
23.06 23.44
21.15 21.95
22.04 22.24
20.98 21.55
24.54 23.94 36.00 36.00 Pass30.00 30.00 2.50 1.70
30.00 30.00 2.50 23.92
Pass
22.971.70 23.28
36.00 Pass36.001.70 23.48 23.25
36.00 36.00
30.00
2.50 1.7030.00 30.00
30.00 2.50
1.70 24.54
A1-2 of 4
Report Number :
1
1
1
1
1
1
Note: Measured power (dBm) has offset with cable loss.
FR672834-04C
TEST RESULTS DATA
Average Output Power
Ant 1 Ant 2 SUM
Mod. Data
Rate N
TX
CH. Freq.
(MHz)
Average
Conducted
Power
(dBm)
Duty
Factor
(dB)
Ant 1 Ant 2
2.4GHz Band
18.03 18.7711b 1Mbps 6 2437 0.06 0.04
17.58 17.9211b 1Mbps 1 2412 0.06 0.04
15.69 16.2211g 6Mbps 1 2412 0.32 0.32
17.80 18.3911b 1Mbps 11 2462 0.06 0.04
15.54 16.0111g 6Mbps 11 2462 0.32 0.32
16.64 17.4211g 6Mbps 6 2437 0.32 0.32
A1-3 of 4
Report Number :
1
1
1
1
1
1
Measured power density (dBm) has offset with cable loss.
-
FR672834-04C
TEST RESULTS DATA
Average Power Spectral Density
11b 1Mbps 6 2437
DG
(dBi)
Ant 1 Ant 2
2.4GHz Band
11b 1Mbps 1 2412
Average PSD
(dBm/3kHz)
Worse +
3.01
Mod. Data
Rate N
TX
CH. Freq.
(MHz)
-8.62 -8.58
8.00
11g 6Mbps 6 2437
11g 6Mbps 1 2412
11b 1Mbps 11 2462
11g 6Mbps 11 2462
Ant 1 Ant 2
-7.78
-7.88 -8.19
-11.63 -11.63
-10.82 -9.83
-12.53 -11.09
-8.41
2.50 1.70 8.00
8.00 Pass
2.50 1.70 8.00
8.00 Pass
2.50 1.70 8.00 8.00 Pass
Pass/Fail
2.50 1.70 8.00
Average PSD
Limit
(dBm/3kHz)
Ant 1 Ant 2
8.00 Pass
2.50 1.70 8.00
Pass
2.50 1.70 8.00
8.00 Pass
A1-4 of 4
SPORTON INTERNATIONAL INC.
Page Number
:
A2-1 of 1
TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
<TXBF Modes>
Report Number :
Test Date: 2016/12/12~ 2016/12/19 Relative Humidity: 51~54 %
FR672834-04C
Test Engineer: Kai Liao Temperature: 21~25 °C
A2-1 of 3
Report Number :
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
2
Note: Measured power (dBm) has offset with cable loss.
21.09 36.00 Pass
VHT40 MCS0 8 2447 13.50 14.00 16.77 30.00 5.12 21.89 36.00 Pass
VHT40 MCS0 4 2427 12.60 13.30 15.97
16.90 17.60 20.27 30.00 5.12
18.00 20.50
14.40 15.00 17.72
12.30 12.40 15.36
30.00 5.12
25.39 36.00 Pass
VHT20 MCS0 10 2457 16.70 17.10 19.91 30.00 5.12 25.03 36.00 Pass
VHT20 MCS0 6 2437 16.90
5.12 20.99 36.00 Pass
HT40 MCS0 8 2447 13.60 14.00 16.81 30.00 5.12 21.93 36.00 Pass
HT40 MCS0 4 2427 12.60 13.10 15.87
HT20 MCS0 10 2457 16.70 17.40 20.07
HT40 MCS0 3 2422
14.30 14.80 17.57HT20 MCS0 11
HT20 MCS0 2 2417 17.10 17.50 20.31
5.12 22.57 36.00 Pass
Pass
5.12 22.39 36.00 Pass
5.12 25.69 36.00 Pass
5.12 22.69 36.00 Pass
5.12
5.12 21.19 36.00 Pass
2.4GHz Band
5.12 25.61 36.00 Pass
5.12 22.84 36.00 Pass
5.12 20.48 36.00 Pass
5.12 22.51 36.00 Pass
5.12 21.29 36.00
20.64 36.00 Pass
5.12 22.44 36.00 Pass
5.12 25.43 36.00 Pass
5.12 25.19 36.00 Pass
30.00
30.00
30.00
30.00
30.00
30.00
FR672834-04C
DG
(dBi)
EIRP
Power
(dBm)
EIRP
Power
Limit
(dBm)
Pass
/Fail
Ant 1 Ant 2 Ant 1 Ant 2 Ant 1 Ant 2
30.00
30.00
30.00
30.00
30.00
30.00
30.00
30.00
30.00
TEST RESULTS DATA
Average Output Power
Ant 1 Ant 2 SUM
Mod. Data
Rate N
TX
CH. Freq.
(MHz)
Average
Conducted
Power
(dBm)
Conducted
Power
Limit
(dBm)
Ant 1 Ant 2
14.00 14.60 17.32HT20 MCS0 1 2412
17.20 17.90 20.57HT20 MCS0 6 2437
2462
12.20 12.80 15.52
HT40 MCS0 9 2452
13.80 14.90 17.40HT40 MCS0 6 2437
12.80 13.50 16.17
13.90 14.60 17.27VHT20 MCS0 1 2412
VHT20 MCS0 2 2417
VHT40 MCS0 3 2422
VHT20 MCS0 11 2462
12.80 13.30 16.07VHT40 MCS0 9 2452
13.80 15.00 17.45VHT40 MCS0 6 2437
A2-2 of 3
Report Number :
2
2
2
2
2
2
2
2
2
2
2
2
Measured power density (dBm) has offset with cable loss.
FR672834-04C
TEST RESULTS DATA
Average Power Spectral Density
DG
(dBi)
Ant 1 Ant 2
2.4GHz Band
Average PSD
(dBm/3kHz)
Worse +
3.01
Mod. Data
Rate N
TX
CH. Freq.
(MHz)
HT20 MCS0 6 2437
HT20 MCS0 1 2412
HT40 MCS0 6 2437
HT40 MCS0 3 2422
HT20 MCS0 11 2462
VHT20 MCS0 6 2437
VHT20 MCS0 1 2412
HT40 MCS0 9 2452
VHT40 MCS0 6 2437
VHT40 MCS0 3 2422
VHT20 MCS0 11 2462
2452VHT40 MCS0 9
Ant 1 Ant 2
-24.63
-21.43
-14.50 -14.33 -11.32
-13.72 -10.71
-17.79 -17.50 -14.49
-25.02 -25.34 -22.01
-22.78 -18.42
-22.09
-15.48
-25.01 -19.08
-18.37 -18.64 -15.36
-18.55 -17.91 -14.90
Pass/Fail
Average PSD
Limit
(dBm/3kHz)
Ant 1 Ant 2
5.12
5.12
5.12
5.12
5.12
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
Pass
-24.81 -21.62
-22.15 -22.15 -19.14
-23.68 -23.28 -20.27
8.00
8.00
8.00
8.00
8.00
8.00
5.12
5.12
5.12
5.12
5.12
5.12
5.12
-18.19 -17.21 -14.20
8.00
8.00
8.00
8.00
8.00
8.00
A2-3 of 3
SPORTON INTERNATIONAL INC.
Page Number
:
B1 of B1
TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
Appendix B. Product Equality Declaration
1. CPU change, pin to pin capability see attached power point
2. Remove below components
(1) WWAN Multi-band PA
(2) LTE B2/4/5/12/13/17/25/26 TRX components
(3) WCDMA B1/2/4/5/8 TRX components
(4) GSM 850/900/1800/1900 TRX components
(5) CDMA BC0/1/10 TRX components
(6) WWAN Primary Antenna switch
(7) Antenna tuner
(8) DC/DC converter for WWAN PA
(9) GPS RX components
(10) WWAN Diversity Antenna switch
(11) LTE B2/4/5/12/13/17/25/26 DRX components
(12) WCDMA B1/2/4/5/8 DRX components
(13) CDMA BC0/1/10 DRX components
(14) RF Transceiver components
3. Remove WAN/GPS components (bottom of device).
4. Keep DIV/GPS/ Main antenna (top of device).
5. No layout change.
SPORTON INTERNATIONAL INC.
Page Number
:
C1 of C1
TEL : 886-3-327-3456
Report Issued Date
:
Jan. 05, 2017
FAX : 886-3-328-4978
Report Version
:
Rev. 01
FCC ID : UZ7TC700K
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834-04C
Appendix C. Original Report
Please refer to Sporton report number FR672834C as below.
SPORTON INTERNATIONAL INC.
Page Number
:
1 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
FCC RF Test Report
APPLICANT
:
Zebra Technologies Corporation
EQUIPMENT
:
Touch computer
BRAND NAME
:
Zebra
MODEL NAME
:
TC75EK
FCC ID
:
UZ7TC75EK
STANDARD
:
FCC Part 15 Subpart C §15.247
CLASSIFICATION
:
(DTS) Digital Transmission System
The product was received on Jul. 28, 2016 and testing was completed on Sep. 22, 2016. We,
SPORTON INTERNATIONAL 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 INC., the test report shall not be reproduced except
in full.
Reviewed by: Joseph Lin / Supervisor
Approved by: Jones Tsai / Manager
SPORTON INTERNATIONAL INC.
No. 52, Hwa Ya 1st Rd., Hwa Ya Technology Park, Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C.
SPORTON INTERNATIONAL INC.
Page Number
:
2 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
TABLE OF CONTENTS
REVISION HISTORY .......................................................................................................................................... 3
SUMMARY OF TEST RESULT ......................................................................................................................... 4
1 GENERAL DESCRIPTION .......................................................................................................................... 5
1.1 Applicant ............................................................................................................................................ 5
1.2 Manufacturer ...................................................................................................................................... 5
1.3 Product Feature of Equipment Under Test ........................................................................................ 5
1.4 Product Specification of Equipment Under Test ................................................................................ 6
1.5 Modification of EUT ........................................................................................................................... 7
1.6 Testing Location ................................................................................................................................ 8
1.7 Applicable Standards ......................................................................................................................... 8
2 TEST CONFIGURATION OF EQUIPMENT UNDER TEST ........................................................................ 9
2.1 Carrier Frequency and Channel ........................................................................................................ 9
2.2 Pre-Scanned RF Power ................................................................................................................... 10
2.3 Test Mode ........................................................................................................................................ 19
2.4 Connection Diagram of Test System ............................................................................................... 20
2.5 Support Unit used in test configuration and system ........................................................................ 21
2.6 EUT Operation Test Setup .............................................................................................................. 22
2.7 Measurement Results Explanation Example ................................................................................... 22
3 TEST RESULT ........................................................................................................................................... 23
3.1 6dB and 99% Bandwidth Measurement .......................................................................................... 23
3.2 Output Power Measurement ............................................................................................................ 25
3.3 Power Spectral Density Measurement ............................................................................................ 27
3.4 Conducted Band Edges and Spurious Emission Measurement ..................................................... 32
3.5 Radiated Band Edges and Spurious Emission Measurement ........................................................ 81
3.6 AC Conducted Emission Measurement........................................................................................... 86
3.7 Antenna Requirements .................................................................................................................. 104
4 LIST OF MEASURING EQUIPMENT ...................................................................................................... 106
5 UNCERTAINTY OF EVALUATION ......................................................................................................... 107
APPENDIX A. CONDUCTED TEST RESULTS
APPENDIX B. RADIATED SPURIOUS EMISSION
APPENDIX C. RADIATED SPURIOUS EMISSION PLOTS
APPENDIX D. DUTY CYCLE PLOTS
APPENDIX E. SETUP PHOTOGRAPHS
SPORTON INTERNATIONAL INC.
Page Number
:
3 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
REVISION HISTORY
REPORT NO.
VERSION
DESCRIPTION
ISSUED DATE
FR672834C
Rev. 01
Initial issue of report
Sep. 30, 2016
FR672834C
Rev. 02
Revising the specification of accessories.
Oct. 04, 2016
FR672834C
Rev. 03
Revising the Adapter information in specification of
accessories.
Oct. 07, 2016
SPORTON INTERNATIONAL INC.
Page Number
:
4 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
SUMMARY OF TEST RESULT
Report
Section
FCC Rule
Description
Limit
Result
Remark
3.1
15.247(a)(2)
6dB Bandwidth
0.5MHz
Pass
-
3.1
-
99% Bandwidth
-
Pass
-
3.2
15.247(b)
Power Output Measurement
30dBm
Pass
-
3.3
15.247(e)
Power Spectral Density
8dBm/3kHz
Pass
-
3.4
15.247(d)
Conducted Band Edges
30dBc
Pass
-
Conducted Spurious Emission
Pass
-
3.5
15.247(d)
Radiated Band Edges and
Radiated Spurious Emission
15.209(a) &
15.247(d)
Pass
Under limit
1.03 dB at
2483.520 MHz
3.6
15.207
AC Conducted Emission
15.207(a)
Pass
Under limit
3.10 dB at
0.758 MHz
3.7
15.203 &
15.247(b)
Antenna Requirement
N/A
Pass
-
SPORTON INTERNATIONAL INC.
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:
5 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
1 General Description
1.1 Applicant
Zebra Technologies Corporation
1 Zebra Plaza Holtsville, NY 11742
1.2 Manufacturer
Wistron Corporation
21F, No. 88, Sec. 1, Hsin Tai Wu Rd., Hsichih Dist, New Taipei City 221, Taiwan R.O.C.
1.3 Product Feature of Equipment Under Test
Product Feature
Equipment
Touch computer
Brand Name
Zebra
Model Name
TC75EK
FCC ID
UZ7TC75EK
EUT supports Radios application
CDMA/EV-DO/GSM/EGPRS/WCDMA/HSPA/LTE/NFC
WLAN 11a/b/g/n HT20/HT40
WLAN 11ac VHT20/VHT40/VHT80
Bluetooth BR/EDR/LE
HW Version
DV
SW Version
Android version 6.0.1
FW Version
91-10-01-MG-00
MFD
14JUL16
EUT Stage
Engineering sample
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 INC.
Page Number
:
6 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Specification of Accessories
AC Adapter
Brand Name
Zebra
Part Number
PWR-BUA5V16W0WW
Snap-On USB/Charge Cable
Brand Name
Symbol
Part Number
CBL-TC7X-USB1-01
Snap-On Charging Cable Cup
Brand Name
Symbol
Part Number
CHG-TC7X-CBL1-01
Battery
Brand Name
Zebra
Part Number
BT-000318-01
Earphone 1
Brand Name
Zebra
Part Number
HDST-35MM-PTVP-01
Earphone 2
Brand Name
Zebra
Part Number
HS2100-OTH
Earphone 3
Brand Name
Zebra
Part Number
HS3100-OTH
Snap-on 3.5MM Audio Nugget
Brand Name
Symbol
Part Number
ADP-TC7X-AUD35-01
3.5mm Jack 43"(1.1m)
Standard Cable
Brand Name
Zebra
Part Number
CBL-HS2100-3MS1-01
Soft Holster
Brand Name
Zebra
Part Number
SG-TC7X-HLSTR1-01
Rigid Holster
Brand Name
Zebra
Part Number
SG-TC7X-RHLSTR1-01
Power Cord
Brand Name
LOROM
Part Number
50-16000-182R
Cable line
Brand Name
Zebra
Part Number
CBL-DC-383A1-01
1.4 Product Specification of Equipment Under Test
Standards-related Product Specification
Tx/Rx Channel Frequency Range
2412 MHz ~ 2462 MHz
Maximum (Average) Output Power to
antenna <CDD Modes>
<Ant. 1>
802.11b : 18.13 dBm (0.0650 W)
802.11g : 17.10 dBm (0.0513 W)
802.11n HT20 : 16.99 dBm (0.0500 W)
802.11n HT40 : 14.52 dBm (0.0283 W)
802.11ac VHT20 : 17.19 dBm (0.0524 W)
802.11ac VHT40 : 14.57 dBm (0.0286 W)
<Ant. 2>
802.11b : 18.72 dBm (0.0745 W)
802.11g : 17.90 dBm (0.0617 W)
802.11n HT20 : 17.66 dBm (0.0583 W)
802.11n HT40 : 14.86 dBm (0.0306 W)
802.11ac VHT20 : 17.67 dBm (0.0585 W)
802.11ac VHT40 : 14.88 dBm (0.0308 W)
MIMO <Ant. 1 + 2>
802.11b : 21.46 dBm (0.1400 W)
802.11g : 20.64 dBm (0.1159 W)
802.11n HT20 : 20.63 dBm (0.1156 W)
802.11n HT40 : 17.90 dBm (0.0617 W)
802.11ac VHT20 : 20.68 dBm (0.1169 W)
802.11ac VHT40 : 17.93 dBm (0.0621 W)
Maximum (Average) Output Power to
antenna <TXBF Modes>
MIMO <Ant. 1 + 2>
802.11n HT20 : 20.61 dBm (0.1151 W)
802.11n HT40 : 17.80 dBm (0.0603 W)
802.11ac VHT20 : 20.66 dBm (0.1164 W)
802.11ac VHT40 : 17.90 dBm (0.0617 W)
SPORTON INTERNATIONAL INC.
Page Number
:
7 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Standards-related Product Specification
99% Occupied Bandwidth
<CDD Modes>
802.11b : 11.95MHz
802.11g : 18.60MHz
802.11ac VHT20 : 18.45MHz
802.11ac VHT40 : 36.70MHz
99% Occupied Bandwidth
<TXBF Modes>
802.11ac VHT20 : 19.55MHz
802.11ac VHT40 : 36.70MHz
Antenna Type / Gain
<Ant 1>
IFA Antenna type with gain 2.60 dBi
<Ant 2>
IFA Antenna type with gain 1.80 dBi
Type of Modulation
802.11b : DSSS (DBPSK / DQPSK / CCK)
802.11g/n : OFDM (BPSK / QPSK / 16QAM / 64QAM)
802.11ac : OFDM (BPSK / QPSK / 16QAM / 64QAM /
256QAM)
Antenna Function for Transmitter
Ant. 1
Ant. 2
802.11 b/g/n/ac
V
V
802.11 b/g/n/ac
MIMO
V
V
Note: MIMO Ant. 1+2 is a calculated result from sum of the power MIMO Ant. 1 and MIMO Ant. 2.
1.5 Modification of EUT
No modifications are made to the EUT during all test items.
SPORTON INTERNATIONAL INC.
Page Number
:
8 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
1.6 Testing Location
Sporton Lab is accredited to ISO 17025 by Taiwan Accreditation Foundation (TAF code : 1190) and
the FCC designation No. TW1022 under the FCC 2.948(e) by Mutual Recognition Agreement (MRA)
in FCC Test.
Test Site
SPORTON INTERNATIONAL INC.
Test Site Location
No. 52, Hwa Ya 1st Rd., Hwa Ya Technology Park,
Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C.
TEL: +886-3-327-3456
FAX: +886-3-328-4978
Test Site No.
Sporton Site No.
TH02-HY
CO05-HY
03CH07-HY
Note: The test site complies with ANSI C63.4 2014 requirement.
1.7 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 §15.247
FCC KDB Publication No. 558074 D01 DTS Meas. Guidance v03r05
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
FCC KDB 644545 D03 Guidance for IEEE 802 11ac New Rules v01
ANSI C63.10-2013
Remark:
1. All test items were verified and recorded according to the standards and without any deviation
during the test.
2. This EUT has also been tested and complied with the requirements of FCC Part 15, Subpart B,
recorded in a separate test report.
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FCC RF Test Report
Report No. : FR672834C
2 Test Configuration of Equipment Under Test
The EUT has been associated with peripherals and configuration operated in a manner tended to
maximize its emission characteristics in a typical application. Frequency range investigated: conducted
emission (150 kHz to 30 MHz) and radiated emission (9 kHz to the 10th harmonic of the highest
fundamental frequency or to 40 GHz, whichever is lower). For radiated measurement, pre-scanned in
three orthogonal panels, X, Y, Z. The worst position for each mode was recorded in the appendix of this
test report.
2.1 Carrier Frequency and Channel
Frequency Band
Channel
Freq.
(MHz)
Channel
Freq.
(MHz)
2400-2483.5 MHz
1
2412
7
2442
2
2417
8
2447
3
2422
9
2452
4
2427
10
2457
5
2432
11
2462
6
2437
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FCC RF Test Report
Report No. : FR672834C
2.2 Pre-Scanned RF Power
Preliminary tests were performed in different data rate and data rate associated with the highest power
were chosen for full test shown in the following tables.
<CDD Modes>
<Ant. 1>
802.11b RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
1M
2M
5.5M
11M
Duty Cycle (%)
98.62
97.73
94.44
89.58
CH 01
2412
17.60
CH 06
18.06
18.05
18.10
CH 02
2417
17.65
CH 06
2437
18.04
CH 10
2457
18.09
CH 11
2462
18.13
802.11g RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
6M
9M
12M
18M
24M
36M
48M
54M
Duty Cycle (%)
92.21
89.72
86.75
82.83
77.97
71.11
64.65
63.12
CH 01
2412
16.17
CH 06
17.09
17.07
17.05
17.04
17.06
17.09
17.08
CH 02
2417
16.90
CH 06
2437
17.10
CH 10
2457
16.89
CH 11
2462
15.83
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802.11n HT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
Duty Cycle (%)
93.06
91.67
82.58
77.66
70.79
65.01
64.56
62.22
CH 01
2412
14.10
CH 06
16.65
16.79
16.87
16.94
16.98
16.91
16.98
CH 02
2417
17.01
CH 06
2437
16.99
CH 10
2457
16.47
CH 11
2462
14.65
802.11n HT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
Duty Cycle (%)
97.52
95.31
93.41
92.96
89.86
87.21
86.25
85.14
CH 03
2422
12.59
CH 06
14.41
14.34
14.43
14.46
14.49
14.45
14.50
CH 04
2427
12.55
CH 06
2437
14.52
CH 08
2447
13.01
CH 09
2452
12.86
802.11ac VHT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
Duty Cycle (%)
92.21
86.25
82.29
77.97
70.33
66.23
64.71
61.77
59.52
CH 01
2412
14.15
CH 06
17.04
16.96
17.04
17.14
17.15
17.11
17.15
17.16
CH 02
2417
17.22
CH 06
2437
17.19
CH 10
2457
17.15
CH 11
2462
14.72
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802.11ac VHT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
MCS9
Duty Cycle (%)
96.69
95.35
93.41
97.71
90.00
87.64
86.75
85.53
83.82
82.09
CH 03
2422
12.68
CH 06
14.40
14.36
14.22
14.50
14.52
14.54
14.55
14.49
14.54
CH 04
2427
12.66
CH 06
2437
14.57
CH 08
2447
13.25
CH 09
2452
12.99
<Ant. 2>
802.11b RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
1M
2M
5.5M
11M
Duty Cycle (%)
98.62
97.73
94.22
89.58
CH 01
2412
17.94
CH 06
18.65
18.64
18.60
CH 02
2417
18.33
CH 06
2437
18.72
CH 10
2457
18.44
CH 11
2462
18.23
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FCC RF Test Report
Report No. : FR672834C
802.11g RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
6M
9M
12M
18M
24M
36M
48M
54M
Duty Cycle (%)
92.21
89.72
86.75
81.82
77.22
71.91
65.66
63.83
CH 01
2412
16.71
CH 06
17.80
17.79
17.76
17.89
17.89
17.80
17.79
CH 02
2417
17.89
CH 06
2437
17.90
CH 10
2457
17.88
CH 11
2462
16.50
802.11n HT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
Duty Cycle (%)
93.06
91.78
82.29
77.78
71.43
66.00
64.56
62.22
CH 01
2412
14.61
CH 06
17.35
17.52
17.64
17.56
17.61
17.54
17.60
CH 02
2417
17.89
CH 06
2437
17.66
CH 10
2457
17.84
CH 11
2462
14.93
802.11n HT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
Duty Cycle (%)
97.52
96.09
92.98
91.58
89.42
88.37
86.42
85.14
CH 03
2422
12.89
CH 06
14.67
14.81
14.79
14.78
14.72
14.77
14.84
CH 04
2427
14.79
CH 06
2437
14.86
CH 08
2447
14.98
CH 09
2452
13.11
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802.11ac VHT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
Duty Cycle (%)
93.42
86.25
82.29
78.63
71.07
66.34
64.58
62.50
59.06
CH 01
2412
14.65
CH 06
17.66
17.57
17.65
17.66
17.65
17.65
17.65
17.62
CH 02
2417
17.88
CH 06
2437
17.67
CH 10
2457
17.95
CH 11
2462
14.94
802.11ac VHT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
MCS9
Duty Cycle (%)
97.52
95.35
93.41
91.75
89.62
87.50
86.59
85.62
82.61
82.09
CH 03
2422
12.96
CH 06
14.75
14.82
14.78
14.80
14.80
14.82
14.84
14.84
14.86
CH 04
2427
14.79
CH 06
2437
14.88
CH 08
2447
14.83
CH 09
2452
13.13
MIMO <Ant. 1+2>
802.11b RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
1M
2M
5.5M
11M
CH 01
2412
20.88
CH 06
21.39
21.43
21.42
CH 02
2417
20.89
CH 06
2437
21.46
CH 10
2457
21.27
CH 11
2462
21.26
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802.11g RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
Data Rate
(bps)
Channel
Data Rate (bps)
6M
9M
12M
18M
24M
36M
48M
54M
CH 01
2412
18.97
CH 06
20.55
20.54
20.50
20.55
20.63
20.63
20.55
CH 02
2417
20.60
CH 06
2437
20.64
CH 10
2457
20.68
CH 11
2462
18.46
802.11n HT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
CH 01
2412
17.54
CH 06
20.40
20.23
19.98
19.90
19.87
19.98
19.93
CH 02
2417
20.63
CH 06
2437
20.63
CH 10
2457
20.17
CH 11
2462
17.90
802.11n HT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
CH 03
2422
15.97
CH 06
17.69
17.64
17.63
17.65
17.70
17.69
17.80
CH 04
2427
15.96
CH 06
2437
17.90
CH 08
2447
16.38
CH 09
2452
16.15
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FCC RF Test Report
Report No. : FR672834C
802.11ac VHT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
CH 01
2412
17.71
CH 06
20.46
20.23
20.02
20.00
19.90
19.98
19.98
19.89
CH 02
2417
20.54
CH 06
2437
20.68
CH 10
2457
20.20
CH 11
2462
17.97
802.11ac VHT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
MCS9
CH 03
2422
16.00
CH 06
17.70
17.55
17.62
17.59
17.66
17.64
17.71
17.61
17.59
CH 04
2427
16.01
CH 06
2437
17.93
CH 08
2447
16.46
CH 09
2452
16.17
Note: MIMO Ant. 1+2 is a calculated result from sum of the power MIMO Ant. 1 and MIMO Ant. 2.
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FCC RF Test Report
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<TXBF Modes>
MIMO <Ant. 1+2>
802.11n HT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
CH 01
2412
17.57
CH 06
20.56
20.56
20.46
20.56
20.46
20.51
20.51
CH 02
2417
20.63
CH 06
2437
20.61
CH 10
2457
20.17
CH 11
2462
17.91
802.11n HT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
CH 03
2422
15.97
CH 06
17.74
17.78
17.74
17.68
17.74
17.70
17.74
CH 04
2427
15.96
CH 06
2437
17.80
CH 08
2447
16.38
CH 09
2452
16.11
802.11ac VHT20 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
CH 01
2412
17.67
CH 06
20.61
20.61
20.56
20.61
20.51
20.56
20.56
20.51
CH 02
2417
20.54
CH 06
2437
20.66
CH 10
2457
20.20
CH 11
2462
17.96
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FCC RF Test Report
Report No. : FR672834C
802.11ac VHT40 RF Average Output Power (dBm)
Power vs. Channel
Power vs. Data Rate
Channel
Frequency
(MHz)
MCS Index
Channel
MCS Index
MCS0
MCS1
MCS2
MCS3
MCS4
MCS5
MCS6
MCS7
MCS8
MCS9
CH 03
2422
16.03
CH 06
17.84
17.85
17.85
17.84
17.78
17.78
17.80
17.84
17.80
CH 04
2427
16.01
CH 06
2437
17.90
CH 08
2447
16.46
CH 09
2452
16.16
Note: MIMO Ant. 1+2 is a calculated result from sum of the power MIMO Ant. 1 and MIMO Ant. 2.
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FCC RF Test Report
Report No. : FR672834C
2.3 Test Mode
Final test mode of conducted test items and radiated spurious emissions are considering the
modulation and worse data rates from the power table described in section 2.2.
Single Antenna
Modulation
Data Rate
802.11b
1 Mbps
802.11g
6 Mbps
802.11n HT20
MCS0
802.11n HT40
MCS0
802.11ac VHT20
MCS0
802.11ac VHT40
MCS0
802.11ac VHT80
MCS0
MIMO Antenna
Modulation
Data Rate
802.11b
1 Mbps
802.11g
6 Mbps
802.11n HT20
MCS0
802.11n HT40
MCS0
802.11ac VHT20
MCS0
802.11ac VHT40
MCS0
802.11ac VHT80
MCS0
Test Cases
AC
Conducted
Emission
Mode 1 :NFC Link + WLAN (2.4GHz) Link + Bluetooth Link + Earphone 1 with Audio Adapter
connect to EUT + Charging Only Cable + AC Adapter
Mode 2 :NFC Link + WLAN (5GHz) Link + Bluetooth Link with Earphone 3 + Snap on USB
Cable Data Link with Notebook + Copy Data from Notebook to EDA (SD Card) + AC
Adapter
Mode 3 :NFC Link + WLAN (2.4GHz) Link + Bluetooth Link + Earphone 2 with Audio Adapter
connect to EUT + Charging Only Cable + AC Adapter
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FCC RF Test Report
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2.4 Connection Diagram of Test System
<WLAN Tx Mode>
<AC Conducted Emission for charging mode>
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<AC Conducted Emission for data link mode>
2.5 Support Unit used in test configuration and system
Item
Equipment
Trade Name
Model Name
FCC ID
Data Cable
Power Cord
1.
WLAN AP
D-Link
DIR-628
KA2DIR628A2
N/A
Unshielded, 1.8 m
2.
Bluetooth
Earphone
Sony Ericsson
MW600
PY7DDA-2029
N/A
N/A
3.
Notebook
DELL
P20G
FCC DoC/
Contains FCC ID:
QDS-BRCM1051
N/A
AC I/P:
Unshielded, 1.2 m
DC O/P:
Shielded, 1.8 m
4.
Notebook
DELL
Latitude
E6320
FCC DoC/
Contains FCC ID:
QDS-BRCM1054
N/A
AC I/P:
Unshielded, 1.2 m
DC O/P:
Shielded, 1.8 m
5.
Notebook
Lenovo
M490S(E330)
QDS-BRCM1063
N/A
Unshielded, 1.8 m
6.
SD Card
SanDisk
MicroSD HC
FCC DoC
N/A
N/A
7.
NFC Card
Metro Taipei
Easy Card
N/A
N/A
N/A
8.
iPod
Apple
A1285
FCC DoC
Shielded, 1.0 m
N/A
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2.6 EUT Operation Test Setup
For WLAN function, programmed RF utility, AT Command installed in the notebook make the EUT
provide functions like channel selection and power level for continuous transmitting and receiving
signals.
For WLAN MIMO TXBF modes, the EUT was tested under normal operation and link to another device
with power, modulation modes and data rates controlled by engineer mode command lines. The CMD
software tool was used to make EUT continuous transmitting signals.
2.7 Measurement Results Explanation Example
For all conducted test items:
The offset level is set in the spectrum analyzer to compensate the RF cable loss and attenuator factor
between EUT conducted output port and spectrum analyzer. With the offset compensation, the
spectrum analyzer reading level is exactly the EUT RF output level.
Example:
The spectrum analyzer offset is derived from RF cable loss and attenuator factor.
Offset = RF cable loss + attenuator factor.
Following shows an offset computation example with cable loss 4.2 dB and 10dB attenuator.
Offset(dB) = RF cable loss(dB) + attenuator factor(dB).
= 4.2 + 10 = 14.2 (dB)
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FCC RF Test Report
Report No. : FR672834C
3 Test Result
3.1 6dB and 99% Bandwidth Measurement
3.1.1 Limit of 6dB and 99% Bandwidth
The minimum 6 dB bandwidth shall be at least 500 kHz.
3.1.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
3.1.3 Test Procedures
1. The testing follows FCC KDB Publication No. 558074 DTS D01 Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 100 kHz.
Set the Video bandwidth (VBW) = 300 kHz. In order to make an accurate measurement. The 6
dB bandwidth must be greater than 500 kHz.
5. For 99% Bandwidth Measurement, the spectrum analyzer's resolution bandwidth (RBW) =
1MHz and set the Video bandwidth (VBW) = 3MHz.
6. Measure and record the results in the test report.
3.1.4 Test Setup
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3.1.5 Test Result of 6dB and 99% Occupied Bandwidth
Please refer to Appendix A.
<CDD Modes>
Minimum 6dB Bandwidth
Maximum 99% Occupied Bandwidth
Note : The occupied channel bandwidth is maintained within the band of operation for all of the modulations.
<TXBF Modes>
Minimum 6dB Bandwidth
Maximum 99% Occupied Bandwidth
Note : The occupied channel bandwidth is maintained within the band of operation for all of the modulations.
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
30 dBm
Att
20 dB
*
SWT
5 ms
Center
2.437 GHz
Span
20 MHz
2 MHz/
1 PK
MAXH
-70
-60
-50
-40
-30
-20
-10
0
10
20
30
1
Marker 1 [T1 ]
3.89 dBm
2.432480000 GHz
2
Delta 2 [T1 ]
1.06 dB
8.520000000 MHz
D1 9.86 dBm
D2 3.86 dBm
Date: 3.SEP.2016 10:11:57
A
Offset
23.8 dB
LVL
Ref
30 dBm
Att
20 dB
*
10 MHz/
Center
2.422 GHz
Span
100 MHz
*
*
3DB
RBW
1 MHz
VBW
3 MHz
SWT
5 ms
*
1 SA
MAXH
-70
-60
-50
-40
-30
-20
-10
0
10
20
30
1
Marker 1 [T1 ]
8.01 dBm
2.426000000 GHz
OBW 36.700000000 MHz
T1
Temp 1 [T1 OBW]
0.15 dBm
2.403600000 GHz
T2
Temp 2 [T1 OBW]
-0.80 dBm
2.440300000 GHz
Date: 3.SEP.2016 13:57:38
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
27.3 dB
LVL
Ref
30 dBm
Att
20 dB
*
SWT
5 ms
Center
2.437 GHz
Span
20 MHz
2 MHz/
1 PK
MAXH
-70
-60
-50
-40
-30
-20
-10
0
10
20
30
1
Marker 1 [T1 ]
3.22 dBm
2.429440000 GHz
2
Delta 2 [T1 ]
-1.44 dB
15.440000000 MHz
D1 7.61 dBm
D2 1.61 dBm
Date: 11.SEP.2016 11:08:19
A
Offset
27.3 dB
LVL
Ref
30 dBm
Att
20 dB
*
10 MHz/
Center
2.437 GHz
Span
100 MHz
*
*
3DB
RBW
1 MHz
VBW
3 MHz
SWT
5 ms
*
1 SA
MAXH
-70
-60
-50
-40
-30
-20
-10
0
10
20
30
1
Marker 1 [T1 ]
9.43 dBm
2.424800000 GHz
OBW 36.700000000 MHz
T1
Temp 1 [T1 OBW]
1.86 dBm
2.418700000 GHz
T2
Temp 2 [T1 OBW]
1.04 dBm
2.455400000 GHz
Date: 11.SEP.2016 13:33:54
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Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
3.2 Output Power Measurement
3.2.1 Limit of Output Power
For systems using digital modulation in the 2400-2483.5MHz, the limit for output power is 30dBm. If
transmitting antenna with directional gain greater than 6dBi is used, the output power from the
intentional radiator shall be reduced below the above stated value by the amount in dB that the
directional gain of the antenna exceeds 6 dBi. In case of point-to-point operation, the limit has to be
reduced by 1dB for every 3dB that the directional gain of the antenna exceeds 6dBi.
3.2.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
3.2.3 Test Procedures
CDD Modes
1. The testing follows the Measurement Procedure of FCC KDB No. 558074 DTS D01 Meas.
Guidance v03r05 section 9.2.3.1 Method AVGPM.
2. The RF output of EUT was connected to the power meter by RF cable and attenuator. The path
loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Measure the conducted output power and record the results in the test report.
5. For MIMO mode, calculation method follows FCC KDB 662911 D01 Multiple Transmitter Output
v02r01.
TXBF Modes
1. The testing follows the Measurement Procedure of FCC KDB No. 558074 DTS D01 Meas.
Guidance v03r05 section 9.2.3.2 Method AVGPM-G.
2. The RF output of EUT was connected to the power meter by RF cable and attenuator. The path
loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Measure the conducted output power and record the results in the test report.
5. For MIMO mode, calculation method follows FCC KDB 662911 D01 Multiple Transmitter Output
v02r01.
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FCC RF Test Report
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3.2.4 Test Setup
3.2.5 Test Result of Peak Output Power (Reporting Only)
Please refer to Appendix A.
3.2.6 Test Result of Average output Power
Please refer to Appendix A.
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3.3 Power Spectral Density Measurement
3.3.1 Limit of Power Spectral Density
The peak power spectral density shall not be greater than 8dBm in any 3kHz band at any time interval
of continuous transmission.
3.3.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
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FCC RF Test Report
Report No. : FR672834C
3.3.3 Test Procedures
CDD Modes
Method AVGPSD-2
1. The testing follows Measurement Procedure 10.5 Method AVGPSD-2 of FCC KDB Publication
No. 558074 D01 DTS Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 10 kHz.
Video bandwidth VBW = 30 kHz In order to make an accurate measurement, set the span to 1.5
times DTS Channel Bandwidth. (6dB BW).
5. Number of points in sweep 2 Span / RBW. (This ensures that bin-to-bin spacing is RBW/2,
so that narrowband signals are not lost between frequency bins).
6. Detector = RMS, Sweep time = auto couple.
7. Trace average at least 100 traces in power averaging mode.
8. Add 10 log(1/x), where x is the duty cycle, to the measured power in order to compute the
average power during the actual transmission times. For example, add 10 log(1/0.25) = 6 dB if
the duty cycle is 25 percent.
9. Measure and record the results in the test report.For MIMO mode, calculation method follows
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
Method (c): Measure and add 10 log(NANT) dB.
With this technique, spectrum measurements are performed at each output of the device, but
rather than summing the spectra or the spectral peaks across the outputs, the quantity 10
log(NANT) dB is added to each spectrum value before comparing to the emission limit. The
addition of 10 log(NANT) dB serves to apportion the emission limit among the NANT outputs so
that each output is permitted to contribute no more than 1/NANT th of the PSD limit .
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FCC RF Test Report
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TXBF Modes
Method AVGPSD-3
1. The testing follows Measurement Procedure 10.7 Method AVGPSD-3 of FCC KDB Publication
No. 558074 D01 DTS Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 10 kHz.
Video bandwidth VBW = 30 kHz In order to make an accurate measurement, set the span to 1.5
times DTS Channel Bandwidth. (6dB BW).
5. Number of points in sweep 2 Span / RBW. (This ensures that bin-to-bin spacing is RBW/2,
so that narrowband signals are not lost between frequency bins).
6. Detector = RMS, Sweep time = auto couple.
7. Trace mode = max hold.
8. Allow max hold to run for at least 60 seconds, or longer as needed to allow the trace to stabilize.
9. Measure and record the results in the test report.For MIMO mode, calculation method follows
FCC KDB 662911 D01 Multiple Transmitter Output v02r01.
Method (c): Measure and add 10 log(NANT) dB.
With this technique, spectrum measurements are performed at each output of the device, but
rather than summing the spectra or the spectral peaks across the outputs, the quantity 10
log(NANT) dB is added to each spectrum value before comparing to the emission limit. The
addition of 10 log(NANT) dB serves to apportion the emission limit among the NANT outputs so
that each output is permitted to contribute no more than 1/NANT th of the PSD limit .
3.3.4 Test Setup
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3.3.5 Test Result of Power Spectral Density
Please refer to Appendix A.
<CDD Modes>
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 1
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 2
A
3DB
RBW
10 kHz
SWT
140 ms
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
Center
2.437 GHz
Span
13.56 MHz
1.356 MHz/
*
VBW
30 kHz
*
1 RM
AVG
SGL
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
SWP 100 of 100
1
Marker 1 [T1 ]
-7.69 dBm
2.436229792 GHz
Date: 3.SEP.2016 14:48:31
A
3DB
RBW
10 kHz
SWT
140 ms
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
Center
2.437 GHz
Span
13.56 MHz
1.356 MHz/
*
VBW
30 kHz
*
1 RM
AVG
SGL
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
SWP 100 of 100
1
Marker 1 [T1 ]
-7.21 dBm
2.436301208 GHz
Date: 3.SEP.2016 14:58:19
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FCC RF Test Report
Report No. : FR672834C
<TXBF Modes>
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 1
Worst Case Power Density (dBm/3kHz) for MIMO Ant. 2
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3.4 Conducted Band Edges and Spurious Emission Measurement
3.4.1 Limit of Conducted Band Edges and Spurious Emission Measurement
In any 100 kHz bandwidth outside of the authorized frequency band, the emissions which fall in the
non-restricted bands shall be attenuated at least 20 dB / 30dB relative to the maximum PSD level in
100 kHz by RF conducted measurement and radiated emissions which fall in the restricted bands, as
defined in Section 15.205(a), must also comply with the radiated emission limits specified in Section
15.209(a).
3.4.2 Measuring Instruments
The measuring equipment is listed in the section 4 of this test report.
3.4.3 Test Procedures
1. The testing follows FCC KDB Publication No. 558074 D01 DTS Meas. Guidance v03r05.
2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The
path loss was compensated to the results for each measurement.
3. Set to the maximum power setting and enable the EUT transmit continuously.
4. Set RBW = 100 kHz, VBW=300 kHz, Peak Detector. Unwanted Emissions measured in any 100
kHz bandwidth outside of the authorized frequency band shall be attenuated by at least 20 dB
relative to the maximum in-band peak PSD level in 100 kHz when maximum peak conducted
output power procedure is used. If the transmitter complies with the conducted power limits
based on the use of RMS averaging over a time interval, the attenuation required under this
paragraph shall be 30 dB instead of 20 dB per 15.247(d).
5. Measure and record the results in the test report.
6. The RF fundamental frequency should be excluded against the limit line in the operating
frequency band.
3.4.4 Test Setup
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3.4.5 Test Result of Conducted Band Edges and Spurious Emission
<CDD Modes>
Number of TX = 1, Ant. 1 (Measured)
Number of TX
1
Ant. :
1
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz Low
Relative Humidity :
51~54%
Test Channel :
01
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 01
100kHz PSD reference Level
Low Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.412 GHz
Span
13.5 MHz
1.35 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
8.96 dBm
2.412486000 GHz
Date: 3.SEP.2016 10:21:26
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.31 GHz
Stop
2.445 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-36.35 dBm
2.399100000 GHz
D1 -21.04 dBm
F1
Date: 3.SEP.2016 10:22:28
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-46.09 dBm
2.991090000 GHz
D1 -21.04 dBm
Date: 3.SEP.2016 10:22:40
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-30.73 dBm
22.125000000 GHz
D1 -21.04 dBm
Date: 3.SEP.2016 10:22:49
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Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
1
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz Mid
Relative Humidity :
51~54%
Test Channel :
06
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 06
100kHz PSD reference Level
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.437 GHz
Span
12.78 MHz
1.278 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
9.88 dBm
2.435491960 GHz
Date: 3.SEP.2016 10:12:23
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-44.84 dBm
422.040000000 MHz
D1 -20.12 dBm
Date: 3.SEP.2016 10:13:38
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-31.01 dBm
24.747000000 GHz
D1 -20.12 dBm
Date: 3.SEP.2016 10:13:47
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FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
1
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz High
Relative Humidity :
51~54%
Test Channel :
11
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 11
100kHz PSD reference Level
High Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.462 GHz
Span
12.78 MHz
1.278 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
9.48 dBm
2.462498420 GHz
Date: 3.SEP.2016 10:16:03
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.43 GHz
Stop
2.565 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-44.99 dBm
2.486565000 GHz
D1 -20.52 dBm
F1
Date: 3.SEP.2016 10:16:46
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.61 dBm
1.957530000 GHz
D1 -20.52 dBm
Date: 3.SEP.2016 10:16:59
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-31.52 dBm
21.918000000 GHz
D1 -20.52 dBm
Date: 3.SEP.2016 10:17:07
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:
36 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
1
Test Mode :
802.11g
Temperature :
21~25
Test Band :
2.4GHz Low
Relative Humidity :
51~54%
Test Channel :
01
Test Engineer :
AnAn Wu
WLAN 802.11g Channel 01
100kHz PSD reference Level
Low Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.412 GHz
Span
24.48 MHz
2.448 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
4.66 dBm
2.405733120 GHz
Date: 3.SEP.2016 11:16:56
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.31 GHz
Stop
2.445 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-33.52 dBm
2.399505000 GHz
D1 -25.34 dBm
F1
Date: 3.SEP.2016 11:18:00
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.81 dBm
2.266410000 GHz
D1 -25.34 dBm
Date: 3.SEP.2016 11:18:13
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-30.72 dBm
21.688000000 GHz
D1 -25.34 dBm
Date: 3.SEP.2016 11:18:21
SPORTON INTERNATIONAL INC.
Page Number
:
37 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
1
Test Mode :
802.11g
Temperature :
21~25
Test Band :
2.4GHz Mid
Relative Humidity :
51~54%
Test Channel :
06
Test Engineer :
AnAn Wu
WLAN 802.11g Channel 06
100kHz PSD reference Level
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.437 GHz
Span
24.48 MHz
2.448 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
5.84 dBm
2.430733120 GHz
Date: 3.SEP.2016 11:34:00
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.09 dBm
2.916840000 GHz
D1 -24.16 dBm
Date: 3.SEP.2016 11:34:49
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-30.97 dBm
24.747000000 GHz
D1 -24.16 dBm
Date: 3.SEP.2016 11:34:58
SPORTON INTERNATIONAL INC.
Page Number
:
38 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
1
Test Mode :
802.11g
Temperature :
21~25
Test Band :
2.4GHz High
Relative Humidity :
51~54%
Test Channel :
11
Test Engineer :
AnAn Wu
WLAN 802.11g Channel 11
100kHz PSD reference Level
High Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.462 GHz
Span
24.12 MHz
2.412 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
4.38 dBm
2.456983040 GHz
Date: 3.SEP.2016 11:38:24
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.43 GHz
Stop
2.565 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-44.37 dBm
2.483730000 GHz
D1 -25.62 dBm
F1
Date: 3.SEP.2016 11:39:00
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.71 dBm
2.625780000 GHz
D1 -25.62 dBm
Date: 3.SEP.2016 11:39:17
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-31.18 dBm
21.734000000 GHz
D1 -25.62 dBm
Date: 3.SEP.2016 11:39:26
SPORTON INTERNATIONAL INC.
Page Number
:
39 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX = 1, Ant. 2 (Measured)
Number of TX
1
Ant. :
2
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz Low
Relative Humidity :
51~54%
Test Channel :
01
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 01
100kHz PSD reference Level
Low Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.412 GHz
Span
13.56 MHz
1.356 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
8.63 dBm
2.410494840 GHz
Date: 3.SEP.2016 10:27:42
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.31 GHz
Stop
2.445 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-32.57 dBm
2.398965000 GHz
D1 -21.37 dBm
F1
Date: 3.SEP.2016 10:28:30
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.74 dBm
2.899020000 GHz
D1 -21.37 dBm
Date: 3.SEP.2016 10:28:42
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-30.19 dBm
24.816000000 GHz
D1 -21.37 dBm
Date: 3.SEP.2016 10:28:50
SPORTON INTERNATIONAL INC.
Page Number
:
40 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
2
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz Mid
Relative Humidity :
51~54%
Test Channel :
06
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 06
100kHz PSD reference Level
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.437 GHz
Span
13.53 MHz
1.353 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
9.37 dBm
2.436499390 GHz
Date: 3.SEP.2016 10:32:45
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.50 dBm
2.275320000 GHz
D1 -20.63 dBm
Date: 3.SEP.2016 10:33:17
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-31.18 dBm
24.609000000 GHz
D1 -20.63 dBm
Date: 3.SEP.2016 10:33:26
SPORTON INTERNATIONAL INC.
Page Number
:
41 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
2
Test Mode :
802.11b
Temperature :
21~25
Test Band :
2.4GHz High
Relative Humidity :
51~54%
Test Channel :
11
Test Engineer :
AnAn Wu
WLAN 802.11b Channel 11
100kHz PSD reference Level
High Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.462 GHz
Span
12.78 MHz
1.278 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
9.44 dBm
2.460491960 GHz
Date: 3.SEP.2016 10:36:48
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
13.5 MHz/
Start
2.43 GHz
Stop
2.565 GHz
*
3DB
RBW
100 kHz
SWT
15 ms
*
VBW
300 kHz
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.94 dBm
2.499390000 GHz
D1 -20.56 dBm
F1
Date: 3.SEP.2016 10:37:45
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
297 MHz/
Start
30 MHz
Stop
3 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
300 ms
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-45.20 dBm
2.934660000 GHz
D1 -20.56 dBm
Date: 3.SEP.2016 10:37:58
A
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
2.3 GHz/
Start
2 GHz
Stop
25 GHz
*
*
3DB
RBW
100 kHz
VBW
300 kHz
SWT
2.3 s
1 PK
VIEW
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
-31.38 dBm
24.655000000 GHz
D1 -20.56 dBm
Date: 3.SEP.2016 10:38:07
SPORTON INTERNATIONAL INC.
Page Number
:
42 of 107
TEL : 886-3-327-3456
Report Issued Date
:
Oct. 07, 2016
FAX : 886-3-328-4978
Report Version
:
Rev. 03
FCC ID : UZ7TC75EK
Report Template No.: BU5-FR15CWL AC MA Version 1.3
FCC RF Test Report
Report No. : FR672834C
Number of TX :
1
Ant. :
2
Test Mode :
802.11g
Temperature :
21~25
Test Band :
2.4GHz Low
Relative Humidity :
51~54%
Test Channel :
01
Test Engineer :
AnAn Wu
WLAN 802.11g Channel 01
100kHz PSD reference Level
Low Channel Plot
Spurious Emission 30MHz~3GHz
Spurious Emission 2GHz~25GHz
A
3DB
RBW
100 kHz
*
VBW
300 kHz
*
Offset
23.8 dB
LVL
Ref
20 dBm
Att
20 dB
*
SWT
5 ms
Center
2.412 GHz
Span
24.48 MHz
2.448 MHz/
1 PK
MAXH
-80
-70
-60
-50
-40
-30
-20
-10
0
10
20
1
Marker 1 [T1 ]
5.14 dBm
2.419490880 GHz
Date: 3.SEP.2016 11:44:54