A1430 802.11 a/b/g/n radio, Bluetooth Radio Function Test Report UNII Apple .

Apple . 802.11 a/b/g/n radio, Bluetooth Radio Function

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FCC CFR47 PART 15 SUBPART E
INDUSTRY CANADA RSS-210 ISSUE 8
CERTIFICATION TEST REPORT
FOR
802.11 a/b/g/n radio, Bluetooth Radio Function
MODEL NUMBER: A1403
FCC ID: BCGA1403
IC: 579C-A1403
REPORT NUMBER: 11U13938-2, Revision D
ISSUE DATE: FEBRUARY 03, 2012
Prepared for
APPLE, INC.
1 INFINITE LOOP
CUPERTINO, CA 95014, U.S.A.
Prepared by
COMPLIANCE CERTIFICATION SERVICES (UL CCS)
47173 BENICIA STREET
FREMONT, CA 94538, U.S.A.
TEL: (510) 771-1000
FAX: (510) 661-0888
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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This report shall not be reproduced except in full, without the written approval of CCS.
Revision History
Rev.
Issue
Date
Revisions
Revised By
-- 12/12/11 Initial Issue F. Ibrahim
A 12/13/11 Revised Antenna Gains A. Zaffar
B 02/02/12 Updated antenna port and radiated testing per KDB
789033 D01 dated 10/25/2011 F. Ibrahim
C
02/02/12
Revised
1. Model number
2. FCC and IC ID
A. Zaffar
D 02/03/12 Revised EUT description A. Zaffar
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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This report shall not be reproduced except in full, without the written approval of CCS.
TABLE OF CONTENTS
1.ATTESTATION OF TEST RESULTS .................................................................................... 6
2.TEST METHODOLOGY ........................................................................................................ 7
3.FACILITIES AND ACCREDITATION .................................................................................... 7
4.CALIBRATION AND UNCERTAINTY .................................................................................. 7
4.1.MEASURING INSTRUMENT CALIBRATION ............................................................... 7
4.2.SAMPLE CALCULATION .............................................................................................. 7
4.3.MEASUREMENT UNCERTAINTY ................................................................................ 7
5.EQUIPMENT UNDER TEST ................................................................................................. 8
5.1.DESCRIPTION OF EUT ................................................................................................ 8
5.2.MAXIMUM OUTPUT POWER ....................................................................................... 8
5.3.DESCRIPTION OF AVAILABLE ANTENNAS ............................................................... 8
5.4.SOFTWARE AND FIRMWARE ..................................................................................... 8
5.5.WORST-CASE CONFIGURATION AND MODE .......................................................... 9
5.6.DESCRIPTION OF TEST SETUP ............................................................................... 10
6.TEST AND MEASUREMENT EQUIPMENT ....................................................................... 13
7.ANTENNA PORT TEST RESULTS .................................................................................... 14
7.1.ON TIME, DUTY CYCLE AND MEASUREMENT METHODS .................................... 14
7.2.802.11a LEGACY MODE IN THE 5.2 GHz BAND ...................................................... 18
7.2.1.99% BANDWIDTH .............................................................................................. 18
7.2.2.26dB BANDWIDTH ............................................................................................. 21
7.2.3.OUTPUT POWER ............................................................................................... 24
7.2.4.AVERAGE POWER ............................................................................................ 27
7.2.5.PEAK POWER SPECTRAL DENSITY ................................................................ 28
7.2.6.PEAK EXCURSION ............................................................................................ 31
7.3.802.11n HT20 MODE IN THE 5.2 GHz BAND ............................................................ 34
7.3.1.99% BANDWIDTH .............................................................................................. 34
7.3.2.26 dB BANDWIDTH ............................................................................................ 37
7.3.3.OUTPUT POWER ............................................................................................... 40
7.3.4.AVERAGE POWER ............................................................................................ 43
7.3.5.PEAK POWER SPECTRAL DENSITY ................................................................ 44
7.3.6.PEAK EXCURSION ............................................................................................ 47
7.4.802.11a MODE IN THE 5.3 GHz BAND ...................................................................... 50
7.4.1.99% BANDWIDTH .............................................................................................. 50
7.4.2.26 dB BANDWIDTH ............................................................................................ 53
7.4.3.OUTPUT POWER ............................................................................................... 56
7.4.4.AVERAGE POWER ............................................................................................ 59
7.4.5.PEAK POWER SPECTRAL DENSITY ................................................................ 60
7.4.6.PEAK EXCURSION ............................................................................................ 63
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.5.802.11n HT20 MODE IN THE 5.3 GHz BAND ............................................................ 66
7.5.1.99% BANDWIDTH .............................................................................................. 66
7.5.2.26 dB BANDWIDTH ............................................................................................ 69
7.5.3.OUTPUT POWER ............................................................................................... 72
7.5.4.AVERAGE POWER ............................................................................................ 75
7.5.5.PEAK POWER SPECTRAL DENSITY ................................................................ 76
7.5.6.PEAK EXCURSION ............................................................................................ 79
7.6.802.11a MODE IN THE 5.6 GHz BAND ...................................................................... 82
7.6.1.99% BANDWIDTH .............................................................................................. 82
7.6.2.26 dB BANDWIDTH ............................................................................................ 85
7.6.3.OUTPUT POWER ............................................................................................... 88
7.6.4.AVERAGE POWER ............................................................................................ 91
7.6.5.PEAK POWER SPECTRAL DENSITY ................................................................ 92
7.6.6.PEAK EXCURSION ............................................................................................ 95
7.7.802.11n HT20 MODE IN THE 5.6 GHz BAND ............................................................ 98
7.7.1.99% BANDWIDTH .............................................................................................. 98
7.7.2.26 dB BANDWIDTH .......................................................................................... 101
7.7.3.OUTPUT POWER ............................................................................................. 104
7.7.4.AVERAGE POWER .......................................................................................... 107
7.7.5.PEAK POWER SPECTRAL DENSITY .............................................................. 108
7.7.6.PEAK EXCURSION .......................................................................................... 111
8.RADIATED TEST RESULTS ............................................................................................ 114
8.1.LIMITS AND PROCEDURE ...................................................................................... 114
8.2.TRANSMITTER ABOVE 1 GHz ................................................................................ 115
8.2.1.TX ABOVE 1 GHz FOR 802.11a MODE IN THE 5.2 GHz BAND ..................... 115
8.2.2.TX ABOVE 1 GHz FOR 802.11n HT20 MODE IN THE 5.2 GHz BAND ........... 119
8.2.3.TX ABOVE 1GHz FOR 802.11a MODE IN THE 5.3 GHz BAND ...................... 122
8.2.4.TX ABOVE 1GHz FOR 802.11n HT20 MODE IN THE 5.3GHz BAND ............. 125
8.2.5.TX ABOVE 1 GHz FOR 802.11a MODE IN THE 5.6 GHz BAND ..................... 128
8.2.6.TX ABOVE 1 GHz FOR 802.11n HT20 MODE IN THE 5.6 GHz BAND ........... 132
8.2.7.CO-LOCATION (WLAN+BT) TX ABOVE 1 GHz ............................................... 136
8.3.RECEIVER ABOVE 1 GHz ....................................................................................... 139
8.3.1.RX SPURIOUS ABOVE 1GHz IN THE 5.2 GHz BAND .................................... 139
8.3.2.RX SPURIOUS ABOVE 1GHz IN THE 5.3 GHz BAND .................................... 140
8.3.3.RX SPURIOUS ABOVE 1GHz IN THE 5.6 GHz BAND .................................... 141
8.4.RADIATED EMISSIONS BELOW 1 GHz .................................................................. 142
9.AC POWER LINE CONDUCTED EMISSIONS ................................................................. 145
10.DYNAMIC FREQUENCY SELECTION ........................................................................ 149
10.1.OVERVIEW ............................................................................................................... 149
10.1.1.LIMITS ............................................................................................................... 149
10.1.2.TEST AND MEASUREMENT SYSTEM ............................................................ 152
10.1.3.SETUP OF EUT ................................................................................................ 155
10.1.4.DESCRIPTION OF EUT .................................................................................... 156
10.2.RESULTS FOR 20 MHz BANDWIDTH ..................................................................... 157
10.2.1.TEST CHANNEL ............................................................................................... 157
10.2.2.RADAR WAVEFORM AND TRAFFIC ............................................................... 157
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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10.2.3.OVERLAPPING CHANNEL TESTS .................................................................. 159
10.2.4.MOVE AND CLOSING TIME............................................................................. 159
10.2.5.NON-OCCUPANCY PERIOD ............................................................................ 164
11.SETUP PHOTOS .......................................................................................................... 165
11.1.ANTENNA PORT CONDUCTED RF MEASUREMENT SETUP .............................. 165
11.2.RADIATED RF MEASUREMENT SETUP ................................................................ 165
11.3.POWERLINE CONDUCTED EMISSIONS MEASUREMENT SETUP ...................... 167
11.4.DYNAMIC FREQUENCY SELECTION MEASUREMENT SETUP ........................... 168
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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1. ATTESTATION OF TEST RESULTS
COMPANY NAME: APPLE, INC.
1 INFINITE LOOP
CUPERTINO, CA, 95014, U.S.A.
EUT DESCRIPTION: The Apple iPad, Model A1403 is a tablet device with iPod
functions (music, application support, and video), 802.11a/b/g/n
radio, Bluetooth radio functions, and cellular using the
CDMA/GSM 2G/3G/LTE data radio functions.
MODEL: A1403
SERIAL NUMBER: PT667496, PT654922
DATE TESTED: SEPTEMBER 20 to DECEMBER 10, 2011 AND JANUARY 30-
FEBUARY 02, 2012.
APPLICABLE STANDARDS
STANDARD TEST RESULTS
CFR 47 Part 15 Subpart E Pass
INDUSTRY CANADA RSS-210 Issue 8 Annex 8 Pass
INDUSTRY CANADA RSS-GEN Issue 3 Pass
Compliance Certification Services (UL CCS) tested the above equipment in accordance with the
requirements set forth in the above standards. All indications of Pass/Fail in this report are
opinions expressed by UL CCS based on interpretations and/or observations of test results.
Measurement Uncertainties were not taken into account and are published for informational
purposes only. The test results show that the equipment tested is capable of demonstrating
compliance with the requirements as documented in this report.
Note: The results documented in this report apply only to the tested sample, under the
conditions and modes of operation as described herein. This document may not be altered or
revised in any way unless done so by UL CCS and all revisions are duly noted in the revisions
section. Any alteration of this document not carried out by UL CCS will constitute fraud and
shall nullify the document. This report must not be used by the client to claim product
certification, approval, or endorsement by NVLAP, NIST, any agency of the Federal
Government, or any agency of any government.
Approved & Released For CCS By: Tested By:
FRANK IBRAHIM CHIN PANG
EMC SUPERVISOR EMC TECHNICIAN
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This report shall not be reproduced except in full, without the written approval of CCS.
2. TEST METHODOLOGY
The tests documented in this report were performed in accordance with ANSI C63.4-2003, FCC
CFR 47 Part 2, FCC CFR 47 Part 15, RSS-GEN Issue 2, ICES-003 ISSUE 4, and RSS-210
Issue 8.
3. FACILITIES AND ACCREDITATION
The test sites and measurement facilities used to collect data are located at 47173 Benicia
Street, Fremont, California, USA.
CCS is accredited by NVLAP, Laboratory Code 200065-0. The full scope of accreditation can be
viewed at http://www.ccsemc.com.
4. CALIBRATION AND UNCERTAINTY
4.1. MEASURING INSTRUMENT CALIBRATION
The measuring equipment utilized to perform the tests documented in this report has been
calibrated in accordance with the manufacturer's recommendations, and is traceable to
recognized national standards.
4.2. SAMPLE CALCULATION
Where relevant, the following sample calculation is provided:
Field Strength (dBuV/m) = Measured Voltage (dBuV) + Antenna Factor (dB/m) +
Cable Loss (dB) – Preamp Gain (dB)
36.5 dBuV + 18.7 dB/m + 0.6 dB – 26.9 dB = 28.9 dBuV/m
4.3. MEASUREMENT UNCERTAINTY
Where relevant, the following measurement uncertainty levels have been estimated for tests
performed on the apparatus:
PARAMETER UNCERTAINTY
Conducted Disturbance, 0.15 to 30 MHz 3.52 dB
Radiated Disturbance, 30 to 1000 MHz 4.94 dB
Uncertainty figures are valid to a confidence level of 95%.
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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This report shall not be reproduced except in full, without the written approval of CCS.
5. EQUIPMENT UNDER TEST
5.1. DESCRIPTION OF EUT
The Apple iPad, Model A1403 is a tablet device with iPod functions (music, application support,
and video), 802.11a/b/g/n radio, Bluetooth radio functions, and cellular using the CDMA/GSM
2G/3G/LTE data radio functions.
5.2. MAXIMUM OUTPUT POWER
The transmitter has a maximum peak conducted output power as follows:
Frequency Range
(MHz) Mode Output Power
(dBm) Output Power
(mW)
5180 – 5240 802.11a 13.81 24.04
5180 – 5240 802.11n HT20 13.87 24.38
5260 – 5320 802.11a 17.63 57.94
5260 – 5320 802.11n HT20 17.72 59.16
5500 – 5700 802.11a 16.69 46.67
5500 – 5700 802.11n HT20 16.90 48.98
5.3. DESCRIPTION OF AVAILABLE ANTENNAS
The radio utilizes a PiFA integrated antenna, with the following gain:
5.2 GHz band: 4.63 dBi
5.6 GHz band: 4.51 dBi
5.4. SOFTWARE AND FIRMWARE
The firmware installed in the EUT during testing was 9B87
The EUT driver software installed during testing was Broadcom_Rel_5_90_156_24
The test utility software used during testing was WL_tool.
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5.5. WORST-CASE CONFIGURATION AND MODE
For Radiated Emissions below 1 GHz and Power line Conducted Emissions, the channel with
the highest conducted output power was selected as worst-case scenario.
Worst-case data rates as provided by the manufacturer are:
For 11b mode: 1Mbps
For 11g mode: 6Mbps
For 11a mode: 6Mbps
For 11n HT20: MCS0
EUT is a portable device that has three orientations; therefore, X Y and Z orientations have
been investigated, and the worst case was found to be at Z position.
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5.6. DESCRIPTION OF TEST SETUP
SUPPORT EQUIPMENT
PERIPHERAL SUPPORT EQUIPMENT LIST
Description Manufacturer Model Serial Number
Earphone Apple NA NA
AC Adaptor Apple A1344 N/A
I/O CABLES (Conducted Setup)
I/O Cable List
Cable
No.
Port # of Identical
Ports
Connector
Type
Cable
Type
Cable
Length
Remarks
1 Antenna 1 SMA Shielded 0.1m To Spectrum Analyzer
I/O CABLES (Radiated Setup)
TEST SETUP
The EUT is a stand-alone device.
Cable Port # of Connector Cable Cable Remarks
No. Identical Type Type Length
Ports
1 AC 1 AC unshielded 2m N/A
2 DC 1 DC unshielded 1m N/A
3 Jack 1 Earphone unshielded 0.5m N/A
I/O CABLE LIST
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SETUP DIAGRAM FOR TESTS (CONDUCTED)
EUT Spectrum Analyzer
1
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SETUP DIAGRAM FOR TESTS (RADIATED)
EUT
AC MAIN
AC
Adapter
Earphone
1
2
3
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6. TEST AND MEASUREMENT EQUIPMENT
The following test and measurement equipment was utilized for the tests documented in this
report:
Description Manufacturer Model Asset Cal Date Cal Due
Spectrum Analyzer, 44 GHz Agilent / HP E4446A C01012 09-02-11 09-02- 12
Preamplifier, 26.5 GHz Agilent / HP 8449B C01063 07-12-11 07-12-12
Preamplifier, 1300 MHz Agilent / HP 8447D C00580 01-27-11 01-27-12
EMI Test Receiver, 9 kHz-7 GHz R & S ESCI 7 1000741 07-06-11 07-06-12
LISN, 30 MHz FCC LISN-50/250-25-2 N02625 11-10-11 11-10-12
Highpass Filter, 7.6 GHz Micro-Tronics HPM13195 N02682 CNR CNR
Antenna, Horn, 18 GHz EMCO 3115 C00783 06-29-11 06-29-12
Peak Power Meter Agilent / HP E4416A C00963 03-22-11 03-22- 13
Peak / Average Power Sensor Agilent / HP E9327A C00964 04-13-11 04-13- 12
Antenna, Horn, 26.5 GHz ARA MWH-1826/B C00589 07-28-11 07-28-12
Antenna, Horn, 40 GHz ARA MWH-2640/B C00981 06-14-11 06-14-12
Preamplifier, 40 GHz Miteq NSP4000-SP2 C00990 08-02-11 08-02- 12
TEST EQUIPMENT LIST
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7. ANTENNA PORT TEST RESULTS
7.1. ON TIME, DUTY CYCLE AND MEASUREMENT METHODS
LIMITS
None; for reporting purposes only.
PROCEDURE
KDB 789033 Zero-Span Spectrum Analyzer Method.
ON TIME AND DUTY CYCLE RESULTS
Mode ONTime Period DutyCycle Duty DutyCycle 1/B
B x Cycle CorrectionFactor MinimumVBW
(msec) (msec) (linear) (%) (dB) (kHz)
5.2GHz,802.11a 1.400 1.428 0.980 98.0% 0.09 0.714
5.2GHz802.11HT20 1.313 1.339 0.981 98.1% 0.09 0.762
5.3GHzm802.11a1.400 1.428 0.980 98.0% 0.09 0.714
5.3GHz802.11HT201.313 1.337 0.982 98.2% 0.08 0.762
5.6GHz,802.11a 1.400 1.428 0.980 98.0% 0.09 0.714
5.6GHz,802.11HT20 1.317 1.342 0.981 98.1% 0.08 0.759
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DUTY CYCLE PLOTS
5.2GHz BAND
DUTY CYCLE 802.11a MODE
DUTY CYCLE 802.11n HT20 MODE
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5.3GHz BAND
DUTY CYCLE 802.11a MODE
DUTY CYCLE 802.11n HT20 MODE
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5.6GHz BAND
DUTY CYCLE 802.11a MODE
DUTY CYCLE 802.11n HT20 MODE
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7.2. 802.11a LEGACY MODE IN THE 5.2 GHz BAND
7.2.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter outputs are connected to the spectrum analyzer via a combiner. The RBW is set
to 1% to 3% of the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time
is coupled. The spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5180 16.3346
Middle 5200 16.3345
High 5240 16.3458
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.2.2. 26dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth
(MHz) (MHz)
Low 5180 18.90
Middle 5200 19.08
High 5240 19.13
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26dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.2.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (1)
IC RSS-210 A9.2 (1)
For the 5.15-5.25 GHz band, the maximum conducted output power over the frequency band of
operation shall not exceed the lesser of 50 mW or 4 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 4 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5180 17 18.90 16.76 4.63 16.76
Mid 5200 17 19.08 16.81 4.63 16.81
High 5240 17 19.13 16.82 4.63 16.82
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5180 13.774 16.76 -2.991
Mid 5200 13.806 16.81 -3.000
High 5240 13.780 16.82 -3.037
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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7.2.4. AVERAGE POWER
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.3 dB (including 10 dB pad and 1.3 dB cable) was
entered as an offset in the power meter to allow for direct reading of power.
Channel Frequency Power
(MHz) (dBm)
Low 5180 13.68
Middle 5200 13.58
High 5240 13.62
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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7.2.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (1)
IC RSS-210 A9.2 (1)
For the 5.15-5.25 GHz band, the peak power spectral density shall not exceed 4 dBm in any 1
MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 4 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5180 3.710 4 -0.29
Middle 5200 3.550 4 -0.45
High 5240 3.500 4 -0.50
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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7.2.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5180 8.42 13 -4.58
Middle 5200 8.44 13 -4.56
High 5240 8.70 13 -4.30
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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PEAK EXCURSION HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.3. 802.11n HT20 MODE IN THE 5.2 GHz BAND
7.3.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter outputs are connected to the spectrum analyzer via a combiner. The RBW is set
to 1% to 3% of the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time
is coupled. The spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5180 17.5195
Middle 5200 17.5354
High 5240 17.5156
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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BANDWIDTH HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.3.2. 26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth
(MHz) (MHz)
Low 5180 19.31
Middle 5200 19.25
High 5240 19.25
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26 dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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BANDWIDTH HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.3.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (1)
IC RSS-210 A9.2 (1)
For the 5.15-5.25 GHz band, the maximum conducted output power over the frequency band of
operation shall not exceed the lesser of 50 mW or 4 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 4 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5180 17 19.31 16.86 4.63 16.86
Mid 5200 17 19.25 16.84 4.63 16.84
High 5240 17 19.25 16.84 4.63 16.84
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5180 13.741 16.86 -3.117
Mid 5200 13.738 16.84 -3.106
High 5240 13.874 16.84 -2.970
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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FCC ID: BCGA1403 IC: 579C-A1403
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7.3.4. AVERAGE POWER
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.3 dB (including 10 dB pad and 1.3 dB cable) was
entered as an offset in the power meter to allow for direct reading of power.
Channel Frequency Power
(MHz) (dBm)
Low 5180 13.57
Middle 5200 13.61
High 5240 13.59
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.3.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (1)
IC RSS-210 A9.2 (1)
For the 5.15-5.25 GHz band, the peak power spectral density shall not exceed 4 dBm in any 1
MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 4 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5180 3.340 4 -0.66
Middle 5200 3.360 4 -0.64
High 5240 3.320 4 -0.68
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FCC ID: BCGA1403 IC: 579C-A1403
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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7.3.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5180 8.35 13 -4.65
Middle 5200 8.34 13 -4.66
High 5240 8.06 13 -4.94
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
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PEAK EXCURSION HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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7.4. 802.11a MODE IN THE 5.3 GHz BAND
7.4.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to the spectrum analyzer. The RBW is set to 1% to 3% of
the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time is coupled. The
spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5260 16.3374
Middle 5300 16.3712
High 5320 16.3393
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.4.2. 26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth
(MHz) (MHz)
Low 5260 19.02
Middle 5300 19.02
High 5320 19.08
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26 dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
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BANDWIDTH HIGH CH
REPORT NO: 11U13938-2D DATE: FEBRUARY 03, 2012
FCC ID: BCGA1403 IC: 579C-A1403
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7.4.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.25-5.35 GHz band, the maximum conducted output power over the frequency band of
operation shall not exceed the lesser of 250 mW or 11 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 11 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5260 24 19.02 23.79 4.63 23.79
Mid 5300 24 19.02 23.79 4.63 23.79
Hi
g
h 5320 24 19.08 23.81 4.63 23.81
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5260 17.633 23.79 -6.159
Mid 5300 17.610 23.79 -6.182
Hi
g
h 5320 16.630 23.81 -7.17
6
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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7.4.4. AVERAGE POWER
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.3 dB (including 10 dB pad 1.3 dB cable) was entered as
an offset in the power meter to allow for direct reading of power.
Frequency Power
(MHz) (dBm)
5260 17.50
5300 17.50
5320 16.40
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7.4.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.25–5.35 GHz band, the peak power spectral density shall not exceed 11 dBm in any 1
MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 11 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5260 7.320 11 -3.68
Middle 5300 7.320 11 -3.68
High 5320 6.450 11 -4.55
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
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7.4.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5260 8.30 13 -4.70
Middle 5300 8.18 13 -4.82
High 5320 8.24 13 -4.76
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
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PEAK EXCURSION HIGH CH
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7.5. 802.11n HT20 MODE IN THE 5.3 GHz BAND
7.5.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to the spectrum analyzer. The RBW is set to 1% to 3% of
the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time is coupled. The
spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5260 17.5244
Middle 5300 17.5263
High 5320 17.5193
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.5.2. 26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth
(MHz) (MHz)
Low 5260 19.72
Middle 5300 19.54
High 5320 19.31
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26 dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.5.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.25-5.35 GHz band, the maximum conducted output power over the frequency band of
operation shall not exceed the lesser of 250 mW or 11 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 11 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5260 24 19.72 23.95 4.63 23.95
Mid 5300 24 19.54 23.91 4.63 23.91
High 5320 24 19.31 23.86 4.63 23.86
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5260 17.715 23.95 -6.234
Mid 5300 17.641 23.91 -6.268
High 5320 16.688 23.86 -7.168
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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7.5.4. AVERAGE POWER
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.3 dB (including 10 dB pad and 1.3 dB cable) was
entered as an offset in the power meter to allow for direct reading of power.
Frequency Power
(MHz) (dBm)
5260 17.40
5300 17.40
5320 16.40
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7.5.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.25–5.35 GHz band, the peak power spectral density shall not exceed 11 dBm in any 1
MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 11 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5260 7.260 11 -3.73
Middle 5300 7.100 11 -3.69
High 5320 6.430 11 -3.57
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
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7.5.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5260 7.92 13 -5.08
Middle 5300 8.57 13 -4.43
High 5320 8.28 13 -4.72
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
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PEAK EXCURSION HIGH CH
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7.6. 802.11a MODE IN THE 5.6 GHz BAND
7.6.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to the spectrum analyzer. The RBW is set to 1% to 3% of
the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time is coupled. The
spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5500 16.3676
Middle 5580 16.3667
High 5700 16.3352
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.6.2. 26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth
(MHz) (MHz)
Low 5500 18.90
Middle 5580 18.96
High 5700 18.96
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26 dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.6.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.47-5.725 GHz band, the maximum conducted output power over the frequency band
of operation shall not exceed the lesser of 250 mW or 11 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 11 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5500 24 18.90 23.76 4.51 23.76
Mid 5580 24 18.96 23.78 4.51 23.78
High 5700 24 18.96 23.78 4.51 23.78
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5500 16.693 23.76 -7.072
Mid 5580 16.535 23.78 -7.243
High 5700 16.517 23.78 -7.261
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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7.6.4. AVERAGE POWER
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.4 dB (including 10 dB pad and 1.4 dB cable) was
entered as an offset in the power meter to allow for direct reading of power.
Channel Frequency Power
(MHz) (dBm)
Low 5500 16.50
Middle 5580 16.45
High 5700 16.50
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7.6.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.47-5.725 GHz band, the peak power spectral density shall not exceed 11 dBm in any
1 MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 11 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5500 6.070 11 -4.93
Middle 5580 6.220 11 -4.78
High 5700 6.110 11 -4.89
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
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7.6.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5500 8.25 13 -4.75
Middle 5580 8.77 13 -4.23
High 5700 8.29 13 -4.71
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
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PEAK EXCURSION HIGH CH
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7.7. 802.11n HT20 MODE IN THE 5.6 GHz BAND
7.7.1. 99% BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to the spectrum analyzer. The RBW is set to 1% to 3% of
the measured bandwidth. The VBW is set to 3 times the RBW. The sweep time is coupled. The
spectrum analyzer internal bandwidth function is utilized.
RESULTS
Channel Frequency 99% Bandwidth
(MHz) (MHz)
Low 5500 17.5116
Middle 5580 17.5603
High 5700 17.5181
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99% BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.7.2. 26 dB BANDWIDTH
LIMITS
None; for reporting purposes only.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency 26 dB Bandwidth 99% Bandwidth
(MHz) (MHz) (MHz)
Low 5500 19.60 17.5116
Middle 5580 19.60 17.5264
High 5700 19.37 17.5181
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26 dB BANDWIDTH
BANDWIDTH LOW CH
BANDWIDTH MID CH
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BANDWIDTH HIGH CH
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7.7.3. OUTPUT POWER
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.47-5.725 GHz band, the maximum conducted output power over the frequency band
of operation shall not exceed the lesser of 250 mW or 11 dBm + 10 log B, where B is the 26-dB
emission bandwidth in MHz. If transmitting antennas of directional gain greater than 6 dBi are
used, both the peak transmit power and the peak power spectral density shall be reduced by the
amount in dB that the directional gain of the antenna exceeds 6 dBi.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Limit
Channel Frequency Fixed B 11 + 10 Log B Antenna Limit
Limit Limit Gain
(MHz) (dBm) (MHz) (dBm) (dBi) (dBm)
Low 5500 24 19.60 23.92 4.51 23.92
Mid 5580 24 19.60 23.92 4.51 23.92
High 5700 24 19.37 23.87 4.51 23.87
Results
Channel Frequency Power Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5500 16.904 23.92 -7.019
Mid 5580 16.749 23.92 -7.174
High 5700 16.843 23.87 -7.028
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OUTPUT POWER
OUTPUT POWER LOW CH
OUTPUT POWER MID CH
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OUTPUT POWER HIGH CH
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7.7.4. AVERAGE POWER
LIMIT
None; for reporting purposes only.
TEST PROCEDURE
The transmitter output is connected to a power meter.
RESULTS
The cable assembly insertion loss of 11.4 dB (including 10 dB pad and 1.4 dB cable) was
entered as an offset in the power meter to allow for direct reading of power.
Channel Frequency Power
(MHz) (dBm)
Low 5500 16.50
Middle 5580 16.50
High 5700 16.50
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7.7.5. PEAK POWER SPECTRAL DENSITY
LIMITS
FCC §15.407 (a) (2)
IC RSS-210 A9.2 (2)
For the 5.47-5.725 GHz band, the peak power spectral density shall not exceed 11 dBm in any
1 MHz band. If transmitting antennas of directional gain greater than 6 dBi are used, both the
peak transmit power and the peak power spectral density shall be reduced by the amount in dB
that the directional gain of the antenna exceeds 6 dBi.
The maximum antenna gain is less than or equal to 6 dBi, therefore the limit is 11 dBm.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency PPSD Limit Margin
(MHz) (dBm) (dBm) (dB)
Low 5500 6.410 11 -4.59
Middle 5580 6.260 11 -4.74
High 5700 6.460 11 -4.54
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POWER SPECTRAL DENSITY
PSD LOW CH
PSD MID CH
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PSD HIGH CH
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7.7.6. PEAK EXCURSION
LIMITS
FCC §15.407 (a) (6)
The ratio of the peak excursion of the modulation envelope (measured using a peak hold
function) to the peak transmit power (measured as specified above) shall not exceed 13 dB
across any 1 MHz bandwidth or the emission bandwidth whichever is less.
TEST PROCEDURE
KDB 789033 D01 dated 10/25/2011.
RESULTS
Channel Frequency Peak Excursion Limit Margin
(MHz) (dB) (dB) (dB)
Low 5500 8.02 13 -4.98
Middle 5580 7.84 13 -5.16
High 5700 8.11 13 -4.89
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PEAK EXCURSION
PEAK EXCURSION LOW CH
PEAK EXCURSION MID CH
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PEAK EXCURSION HIGH CH
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8. RADIATED TEST RESULTS
8.1. LIMITS AND PROCEDURE
LIMITS
FCC §15.205 and §15.209
IC RSS-210 Clause 2.6 (Transmitter)
IC RSS-GEN Clause 6 (Receiver)
Frequency Range Field Strength Limit Field Strength Limit
(MHz) (uV/m) at 3 m (dBuV/m) at 3 m
30 - 88 100 40
88 - 216 150 43.5
216 - 960 200 46
Above 960 500 54
TEST PROCEDURE
The EUT is placed on a non-conducting table 80 cm above the ground plane. The antenna to
EUT distance is 3 meters. The EUT is configured in accordance with ANSI C63.4. The EUT is set
to transmit in a continuous mode.
For measurements below 1 GHz the resolution bandwidth is set to 100 kHz for peak detection
measurements or 120 kHz for quasi-peak detection measurements. Peak detection is used
unless otherwise noted as quasi-peak.
For measurements above 1 GHz the resolution bandwidth is set to 1 MHz, then the video
bandwidth is set to 1 MHz for peak measurements and 10 Hz for average measurements.
The spectrum from 30 MHz to 40 GHz is investigated with the transmitter set to the lowest,
middle, and highest channels in each applicable band.
The frequency range of interest is monitored at a fixed antenna height and EUT azimuth. The
EUT is rotated through 360 degrees to maximize emissions received. The antenna is scanned
from 1 to 4 meters above the ground plane to further maximize the emission. Measurements are
made with the antenna polarized in both the vertical and the horizontal positions.
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8.2. TRANSMITTER ABOVE 1 GHz
8.2.1. TX ABOVE 1 GHz FOR 802.11a MODE IN THE
5.2 GHz BAND
RESTRICTED BANDEDGE (LOW CHANNEL, HORIZONTAL)
LOW CHANNEL RESTRICTED, PEAK, HORIZ
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LOW CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (LOW CHANNEL, VERTICAL)
LOW CHANNEL RESTRICTED, PEAK, VERT
LOW CHANNEL RESTRICTED, AVG, VERT
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HARMONICS AND SPURIOUS EMISSIONS
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8.2.2. TX ABOVE 1 GHz FOR 802.11n HT20 MODE
IN THE 5.2 GHz BAND
RESTRICTED BANDEDGE (LOW CHANNEL, HORIZONTAL)
LOW CHANNEL RESTRICTED, PEAK, HORIZ
LOW CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (LOW CHANNEL, VERTICAL)
LOW CHANNEL RESTRICTED, PEAK, VERT
LOW CHANNEL RESTRICTED, AVG, VERT
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8.2.3. TX ABOVE 1GHz FOR 802.11a MODE IN THE
5.3 GHz BAND
RESTRICTED BANDEDGE (HIGH CHANNEL, HORIZONTAL)
HIGH CHANNEL RESTRICTED, PEAK, HORIZ
HIGH CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (HIGH CHANNEL, VERTICAL)
HIGH CHANNEL RESTRICTED, PEAK, VERT
HIGH CHANNEL RESTRICTED, AVG, VERT
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8.2.4. TX ABOVE 1GHz FOR 802.11n HT20 MODE IN
THE 5.3GHz BAND
RESTRICTED BANDEDGE (HIGH CHANNEL, HORIZONTAL)
HIGH CHANNEL RESTRICTED, PEAK, HORIZ
HIGH CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (HIGH CHANNEL, VERTICAL)
HIGH CHANNEL RESTRICTED, PEAK, VERT
HIGH CHANNEL RESTRICTED, AVG, VERT
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HARMONICS AND SPURIOUS EMISSIONS
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8.2.5. TX ABOVE 1 GHz FOR 802.11a MODE IN THE
5.6 GHz BAND
RESTRICTED BANDEDGE (LOW CHANNEL, HORIZONTAL)
LOW CHANNEL RESTRICTED, PEAK, HORIZ
LOW CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (LOW CHANNEL, VERTICAL)
LOW CHANNEL RESTRICTED, PEAK, VERT
LOW CHANNEL RESTRICTED, AVG, VERT
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AUTHORIZED BANDEDGE (HIGH CHANNEL, HORIZONTAL)
AUTHORIZED BANDEDGE (HIGH CHANNEL, VERTICAL)
HIGH CHANNEL, PEAK, HORIZ
HIGH CHANNEL, PEAK, VERT
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HARMONICS AND SPURIOUS EMISSIONS
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8.2.6. TX ABOVE 1 GHz FOR 802.11n HT20 MODE
IN THE 5.6 GHz BAND
RESTRICTED BANDEDGE (LOW CHANNEL, HORIZONTAL)
LOW CHANNEL RESTRICTED, PEAK, HORIZ
LOW CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (LOW CHANNEL, VERTICAL)
LOW CHANNEL RESTRICTED, PEAK, VERT
LOW CHANNEL RESTRICTED, AVG, VERT
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AUTHORIZED BANDEDGE (HIGH CHANNEL, HORIZONTAL)
AUTHORIZED BANDEDGE (HIGH CHANNEL, VERTICAL)
HIGH CHANNEL, PEAK, HORIZ
HIGH CHANNEL, PEAK, VERT
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HARMONICS AND SPURIOUS EMISSIONS
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8.2.7. CO-LOCATION (WLAN+BT) TX ABOVE 1 GHz
RESTRICTED BANDEDGE (LOW CHANNEL, HORIZONTAL)
LOW CHANNEL RESTRICTED, PEAK, HORIZ
LOW CHANNEL RESTRICTED, AVG, HORIZ
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RESTRICTED BANDEDGE (LOW CHANNEL, VERTICAL)
LOW CHANNEL RESTRICTED, PEAK, VERT
LOW CHANNEL RESTRICTED, AVG, VERT
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HARMONICS AND SPURIOUS EMISSIONS
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8.3. RECEIVER ABOVE 1 GHz
8.3.1. RX SPURIOUS ABOVE 1GHz IN THE 5.2 GHz
BAND
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8.3.2. RX SPURIOUS ABOVE 1GHz IN THE 5.3 GHz
BAND
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8.3.3. RX SPURIOUS ABOVE 1GHz IN THE 5.6 GHz
BAND
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8.4. RADIATED EMISSIONS BELOW 1 GHz
SPURIOUS EMISSIONS 30 TO 1000 MHz
HORIZONTAL PLOT
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SPURIOUS EMISSIONS 30 TO 1000 MHz
VERTICAL PLOT
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DATA
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9. AC POWER LINE CONDUCTED EMISSIONS
LIMITS
FCC §15.207 (a)
RSS-Gen 7.2.2
TEST PROCEDURE
The EUT is placed on a non-conducting table 40 cm from the vertical ground plane and 80 cm
above the horizontal ground plane. The EUT is configured in accordance with ANSI C63.4.
The receiver is set to a resolution bandwidth of 9 kHz. Peak detection is used unless otherwise
noted as quasi-peak or average.
Line conducted data is recorded for both NEUTRAL and HOT lines.
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RESULTS
6 WORST EMISSIONS
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LINE 1 RESULTS
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LINE 2 RESULTS
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10. DYNAMIC FREQUENCY SELECTION
10.1. OVERVIEW
10.1.1. LIMITS
INDUSTRY CANADA
IC RSS-210 is closely harmonized with FCC Part 15 DFS rules. The deviations are as follows:
RSS-210 Issue 7 A9.4 (b) (ii) Channel Availability Check Time:
Additional requirements for the band 5600-5650 MHz: Until further notice, devices subject to
this Section shall not be capable of transmitting in the band 5600-5650 MHz, so that
Environment Canada weather radars operating in this band are protected.
RSS-210 Issue 7 A9.4 (b) (iv) Channel closing time: the maximum channel closing time is 260
ms.
FCC
§15.407 (h) and FCC 06-96 APPENDIX “COMPLIANCE MEASUREMENT PROCEDURES
FOR UNLICENSED-NATIONAL INFORMATION INFRASTRUCTURE DEVCIES OPERATING
IN THE 5250-5350 MHz AND 5470-5725 MHz BANDS INCORPORATING DYNAMIC
FREQUENCY SELECTION”.
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Table 1: Applicability of DFS requirements prior to use of a channel
Requirement Operational Mode
Master Client (without
radar detection)
Client (with
radar detection)
Non-Occupancy Period Yes Not required Yes
DFS Detection Threshold Yes Not required Yes
Channel Availability Check Time Yes Not required Not required
Uniform Spreading Yes Not required Not required
Table 2: Applicability of DFS requirements during normal operation
Requirement Operational Mode
Master Client
(without DFS)
Client
(with DFS)
DFS Detection Threshold Yes Not required Yes
Channel Closing Transmission Time Yes Yes Yes
Channel Move Time Yes Yes Yes
Table 3: Interference Threshold values, Master or Client incorporating In-Service
Monitoring
Maximum Transmit Power Value
(see note)
200 milliwatt -64 dBm
< 200 milliwatt -62 dBm
Note 1: This is the level at the input of the receiver assuming a 0 dBi receive antenna
Note 2: Throughout these test procedures an additional 1 dB has been added to the amplitude
of the test transmission waveforms to account for variations in measurement equipment. This
will ensure that the test signal is at or above the detection threshold level to trigger a DFS
response.
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Table 4: DFS Response requirement values
Parameter Value
Non-occupancy period 30 minutes
Channel Availability Check Time 60 seconds
Channel Move Time 10 seconds
Channel Closing Transmission Time 200 milliseconds +
approx. 60 milliseconds
over remaining 10 second
period
The instant that the Channel Move Time and the Channel Closing Transmission Time begins is
as follows:
For the Short pulse radar Test Signals this instant is the end of the Burst.
For the Frequency Hopping radar Test Signal, this instant is the end of the last radar burst
generated.
For the Long Pulse radar Test Signal this instant is the end of the 12 second period defining the
radar transmission.
The Channel Closing Transmission Time is comprised of 200 milliseconds starting at the
beginning of the Channel Move Time plus any additional intermittent control signals required
facilitating channel changes (an aggregate of approximately 60 milliseconds) during the
remainder of the 10 second period. The aggregate duration of control signals will not count quiet
periods in between transmissions.
Table 5 – Short Pulse Radar Test Waveforms
Radar
Type
Pulse Width
(Microseconds)
PRI
(Microseconds)
Pulses Minimum
Percentage of
Successful
Detection
Minimum
Trials
1 1 1428 18 60% 30
2 1-5 150-230 23-29 60% 30
3 6-10 200-500 16-18 60% 30
4 11-20 200-500 12-16 60% 30
Aggregate (Radar Types 1-4) 80% 120
Table 6 – Long Pulse Radar Test Signal
Radar
Waveform
Bursts Pulses
per
Burst
Pulse
Width
(µsec)
Chirp
Width
(MHz)
PRI
(µsec)
Minimum
Percentage
of Successful
Detection
Minimum
Trials
5 8-20 1-3 50-100 5-20 1000-
2000
80% 30
Table 7 – Frequency Hopping Radar Test Signal
Radar
Waveform
Pulse
Width
(µsec)
PRI
(µsec)
Burst
Length
(ms)
Pulses
per
Hop
Hopping
Rate
(kHz)
Minimum
Percentage of
Successful
Detection
Minimum
Trials
6 1 333 300 9 .333 70% 30
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10.1.2. TEST AND MEASUREMENT SYSTEM
RADIATED METHOD SYSTEM BLOCK DIAGRAM
Step Attenuator
Spectrum Analyzer
Combiner/Divider
Signal Generator
Combiner/Divider
Spectrum Analyzer
Signal Generator
Burst Generator
Common
Port 1 Port 2
10 MHz
Frequency
Reference
RF OUT RF IN Common
Port 1 Port 2
Step Attenuator
Radar
Antenna EUT
Antenna
Monitorin
g
Antenna
Isolator
3 meters
Isolator
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SYSTEM OVERVIEW
The short pulse and long pulse signal generating system utilizes the NTIA software. The Vector
Signal Generator has been validated by the NTIA. The hopping signal generating system
utilizes the CCS simulated hopping method and system, which has been validated by the DoD,
FCC and NTIA. The software selects waveform parameters from within the bounds of the signal
type on a random basis using uniform distribution.
The short pulse types 2, 3 and 4, and the long pulse type 5 parameters are randomized at run-
time.
The hopping type 6 pulse parameters are fixed while the hopping sequence is based on the
August 2005 NTIA Hopping Frequency List. The initial starting point randomized at run-time and
each subsequent starting point is incremented by 475. Each frequency in the 100-length
segment is compared to the boundaries of the EUT Detection Bandwidth and the software
creates a hopping burst pattern in accordance with Section 7.4.1.3 Method #2 Simulated
Frequency Hopping Radar Waveform Generating Subsystem of FCC 06-96 APPENDIX. The
frequency of the signal generator is incremented in 1 MHz steps from FL to FH for each
successive trial. This incremental sequence is repeated as required to generate a minimum of
30 total trials and to maintain a uniform frequency distribution over the entire Detection
Bandwidth.
The signal monitoring equipment consists of a spectrum analyzer. The aggregate ON time is
calculated by multiplying the number of bins above a threshold during a particular observation
period by the dwell time per bin, with the analyzer set to peak detection and max hold.
SYSTEM CALIBRATION
A 50-ohm load is connected in place of the spectrum analyzer, and the spectrum analyzer is
connected to a horn antenna via a coaxial cable, with the reference level offset set to (horn
antenna gain – coaxial cable loss). The signal generator is set to CW mode. The amplitude of
the signal generator is adjusted to yield a level of –64 dBm as measured on the spectrum
analyzer.
Without changing any of the instrument settings, the spectrum analyzer is reconnected to the
Common port of the Spectrum Analyzer Combiner/Divider. The Reference Level Offset of the
spectrum analyzer is adjusted so that the displayed amplitude of the signal is –64 dBm.
The spectrum analyzer displays the level of the signal generator as received at the antenna
ports of the Master Device. The interference detection threshold may be varied from the
calibrated value of –64 dBm and the spectrum analyzer will still indicate the level as received by
the Master Device.
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ADJUSTMENT OF DISPLAYED TRAFFIC LEVEL
A link is established between the Master and Slave and the distance between the units is
adjusted as needed to provide a suitable received level at the Master and Slave devices. The
video test file is streamed to generate WLAN traffic. The monitoring antenna is adjusted so that
the WLAN traffic level, as displayed on the spectrum analyzer, is at lower amplitude than the
radar detection threshold.
TEST AND MEASUREMENT EQUIPMENT
The following test and measurement equipment was utilized for the DFS tests documented in
this report:
Descri
p
tion Manufacturer Model
A
sset Number Cal Due
Spectrum Analyzer, 44 GHz Agilent / HP E4446A C00169 04/07/12
Arbitrary Waveform Generator Agilent / HP 33220A C01146 09/16/12
MXG MW Analog Sig. Gen. Agilent / HP N5183A N/A 04/26/12
TEST EQUIPMENT LIST
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10.1.3. SETUP OF EUT
RADIATED METHOD EUT TEST SETUP
SUPPORT EQUIPMENT
The following support equipment was utilized for the DFS tests documented in this report:
Descri
p
tion Manufacturer Model Serial Number FCC ID
Wireless Access Poin
t
Cisco AIR-AP1252AG-A-K9 FTX120690N2 LDK102061
AC Ada
p
ter
(
AP
)
Delta Electronics EADP-45BB B DTH112490BD DoC
Notebook PC (Console) Dell PP18L 10657517725 DoC
AC Adapter (Console PC) Dell LA65SN0-00 CN-ODF263-
71615-6AU-1019
DoC
Notebook PC (Server) Apple 17" MacBook Pro SW860401CV59 DoC
AC Adapter (Server PC) Lite On
Technologies
A1343 C061164078DDJ9
4AY
DoC
PERIPHERAL SUPPORT EQUIPMENT LIST
Console PC
Master Device Slave Device
With Media
Player
Host PC with MPEG file
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10.1.4. DESCRIPTION OF EUT
The EUT operates over the 5250-5350 MHz and 5470-5725 MHz ranges.
The EUT is a Slave Device with without Radar Detection.
The highest power level within these bands is 22.23 dBm EIRP in the 5250-5350 MHz band and
21.18 dBm EIRP in the 5470-5725 MHz band.
The only antenna assembly utilized with the EUT has a gain of 4.63 dBi in the 5250-5350 MHz
band and 4.51 dBi in the 5470-5725 MHz band.
The rated output power of the Master unit is > 23dBm (EIRP). Therefore the required
interference threshold level is –64 dBm. After correction for procedural adjustments, the
required radiated threshold at the antenna port is –64 + 1 = -63 dBm.
The calibrated radiated DFS Detection Threshold level is set to –64 dBm. The tested level is
lower than the required level hence it provides a margin to the limit.
The EUT uses one transmitter/receiver chain connected to an antenna to perform radiated tests.
WLAN traffic is generated by streaming the video file TestFile.mp2 “6 ½ Magic Hours” from the
Master to the Slave in full motion video mode using Quick Time media player.
TPC is not required since the maximum EIRP is less than 500 mW (27 dBm), however TPC is
implemented.
The EUT utilizes the 802.11a/n architecture. One nominal channel bandwidth, 20 MHz, is
implemented.
MANUFACTURER’S STATEMENT REGARDING UNIFORM CHANNEL SPREADING
This is not applicable to slave devices.
OVERVIEW OF MASTER DEVICE WITH RESPECT TO §15.407 (h) REQUIREMENTS
The Master Device is a Cisco Access Point, FCC ID: LDK102061. The minimum antenna gain
for the Master Device is 3.5 dBi.
The rated output power of the Master unit is > 23dBm (EIRP). Therefore the required
interference threshold level is –64 dBm. After correction for procedural adjustments, the
required radiated threshold at the antenna port is –64 + 1 = -63 dBm.
The calibrated radiated DFS Detection Threshold level is set to –64 dBm. The tested level is
lower than the required level hence it provides a margin to the limit.
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10.2. RESULTS FOR 20 MHz BANDWIDTH
10.2.1. TEST CHANNEL
All tests were performed at a channel center frequency of 5500 MHz.
10.2.2. RADAR WAVEFORM AND TRAFFIC
RADAR WAVEFORM
SHORT PULSE RADAR TYPE 1 AT MASTER
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TRAFFIC
SLAVE TRAFFIC
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10.2.3. OVERLAPPING CHANNEL TESTS
RESULTS
These tests are not applicable.
10.2.4. MOVE AND CLOSING TIME
REPORTING NOTES
The reference marker is set at the end of last radar pulse.
The delta marker is set at the end of the last WLAN transmission following the radar pulse. This
delta is the channel move time.
The aggregate channel closing transmission time is calculated as follows:
Aggregate Transmission Time =
(Number of analyzer bins showing transmission) * (dwell time per bin)
The observation period over which the FCC aggregate time is calculated begins at (Reference
Marker + 200 msec) and ends no earlier than (Reference Marker + 10 sec).
The observation period over which the IC aggregate time is calculated begins at (Reference
Marker) and ends no earlier than (Reference Marker + 10 sec).
RESULTS
Agency Channel Move Time Limit
(sec) (sec)
FCC / IC 0.070 10
Agency Aggregate Channel Closing Transmission Time Limit
(msec) (msec)
FCC 0.0 60
IC 2.0 260
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MOVE TIME
MOVE TIME
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CHANNEL CLOSING TIME
CLOSING TIME
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AGGREGATE CHANNEL CLOSING TRANSMISSION TIME
No transmissions are observed during the FCC aggregate monitoring period.
FCC AGGREGATE CLOSING TIME
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Only intermittent transmissions are observed during the IC aggregate monitoring period.
IC AGGREGATE CLOSING TIME
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10.2.5. NON-OCCUPANCY PERIOD
RESULTS
No EUT transmissions were observed on the test channel during the 30-minute observation
time.
NON-OCCUPANCY PERIOD
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