RAC2V1K DBDC ROUTER Test Report 5GHz band 2,3 TXBF Askey Computer Corp

Askey Computer Corp DBDC ROUTER

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FCC Test Report
Report No. : FR711935-02AB
Table of Contents
GENERAL DESCRIPTION ....................................................................................................................5
1.1
1.2
1.3
1.4
Information..............................................................................................................................................5
Testing Applied Standards .....................................................................................................................8
Testing Location Information ..................................................................................................................8
Measurement Uncertainty ......................................................................................................................9
TEST CONFIGURATION OF EUT ......................................................................................................10
2.1
2.2
2.3
2.4
2.5
2.6
Test Channel Mode ..............................................................................................................................10
The Worst Case Measurement Configuration......................................................................................11
EUT Operation during Test ..................................................................................................................12
Accessories ..........................................................................................................................................12
Support Equipment...............................................................................................................................12
Test Setup Diagram .............................................................................................................................13
TRANSMITTER TEST RESULT ..........................................................................................................14
3.1
3.2
3.3
3.4
3.5
Emission Bandwidth .............................................................................................................................14
Maximum Conducted Output Power ....................................................................................................15
Peak Power Spectral Density...............................................................................................................17
Unwanted Emissions............................................................................................................................20
Frequency Stability...............................................................................................................................23
TEST EQUIPMENT AND CALIBRATION DATA ................................................................................24
APPENDIX A. TEST RESULTS OF EMISSION BANDWIDTH
APPENDIX B. TEST RESULTS OF MAXIMUM CONDUCTED OUTPUT POWER
APPENDIX C. TEST RESULTS OF PEAK POWER SPECTRAL DENSITY
APPENDIX D. TEST RESULTS OF UNWANTED EMISSIONS
APPENDIX E. TEST RESULTS OF FREQUENCY STABILITY
APPENDIX F. TEST PHOTOS
PHOTOGRAPHS OF EUT V01
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FCC Test Report
Report No. : FR711935-02AB
Summary of Test Result
Conformance Test Specifications
Report
Clause
Ref. Std.
Clause
1.1.2
15.203
3.1
Description
Result
Antenna Requirement
Complied
15.407(a)
Emission Bandwidth
Complied
3.2
15.407(a)
Maximum Conducted Output Power
Complied
3.3
15.407(a)
Peak Power Spectral Density
Complied
3.4
15.407(b)
Unwanted Emissions
Complied
3.5
15.407(g)
Frequency Stability
Complied
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FCC Test Report
Report No. : FR711935-02AB
Revision History
Report No.
Version
Description
Issued Date
FR711935-02AB
Rev. 01
Initial issue of report
Mar. 21, 2017
FR711935-02AB
Rev. 02
Remove 80+80 mode
Apr. 11, 2017
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FCC Test Report
Report No. : FR711935-02AB
General Description
1.1
Information
1.1.1
RF General Information
Frequency Range (MHz)
IEEE Std. 802.11
Ch. Frequency (MHz)
Channel Number
5250-5350
a, n (HT20), ac (VHT20)
5260-5320
52-64 [4]
5500-5720
100-144 [12]
5270-5310
54-62 [2]
5510-5710
102-144 [6]
5290
58 [1]
5530-5690
106-138 [3]
5470-5725
5250-5350
n (HT40), ac (VHT40)
5470-5725
5250-5350
ac (VHT80)
5470-5725
Band
Mode
BWch (MHz)
Nant
5.25-5.35GHz
802.11a
20
4TX
5.25-5.35GHz
802.11n HT20
20
4TX
5.25-5.35GHz
802.11ac VHT20
20
4TX
5.25-5.35GHz
802.11n HT40
40
4TX
5.25-5.35GHz
802.11ac VHT40
40
4TX
5.25-5.35GHz
802.11ac VHT80
80
4TX
5.47-5.725GHz
802.11a
20
4TX
5.47-5.725GHz
802.11n HT20
20
4TX
5.47-5.725GHz
802.11ac VHT20
20
4TX
5.47-5.725GHz
802.11n HT40
40
4TX
5.47-5.725GHz
802.11ac VHT40
40
4TX
5.47-5.725GHz
802.11ac VHT80
80
4TX
Note:
 11a, HT20 and HT40 use a combination of OFDM-BPSK, QPSK, 16QAM, 64QAM modulation.
 VHT20, VHT40 and VHT80 use a combination of OFDM-BPSK, QPSK, 16QAM, 64QAM, 256QAM
modulation.
 BWch is the nominal channel bandwidth.
 Nss-Min is the minimum number of spatial streams.
 Nant is the number of outputs. e.g., 2(2,3) means have 2 outputs for port 2 and port 3. 2 means have 2
outputs for port 1 and port 2.
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FCC Test Report
1.1.2
Report No. : FR711935-02AB
Antenna Information
Ant.
Brand
Part Number
Antenna Type
Connector
Gain (dBi)
Remark
Airgain
N2420GS
PCB Antenna
I-PEX
4.30
2.4GHz TX/RX
Airgain
N2420GS
PCB Antenna
I-PEX
3.40
2.4GHz TX/RX
Airgain
N2420GS
PCB Antenna
I-PEX
3.50
2.4GHz TX/RX
Airgain
N2420GS
PCB Antenna
I-PEX
4.20
2.4GHz TX/RX
Airgain
M5x05C (Longer)
PCB Antenna
I-PEX
5.00
5GHz TX/RX
Airgain
M5x05C
PCB Antenna
I-PEX
5.60
5GHz TX/RX
Airgain
M5x05C
PCB Antenna
I-PEX
4.50
5GHz TX/RX
Airgain
M5x05C (Longer)
PCB Antenna
I-PEX
4.10
5GHz TX/RX
Note: The EUT has eight antennas.
For 2.4GHz function (4TX/4RX):
Ant. 1 (P1), Ant. 2 (P2), Ant. 3 (P3) and Ant. 4 (P4) could transmit/receive simultaneously.
For 5GHz function (4TX/4RX):
Ant. 5 (P1), Ant. 6 (P2), Ant. 7 (P3) and Ant. 8 (P4) could transmit/receive simultaneously.
1.1.3
1.1.4
Mode Test Duty Cycle
Mode
DC
DCF(dB)
T(s)
VBW(Hz) ≥ 1/T
802.11ac VHT20,TXBF
0.931
0.311
1.823m
1k
802.11ac VHT40,TXBF
0.924
0.343
1.76m
1k
802.11ac VHT80,TXBF
0.94
0.269
2.015m
1k
EUT Operational Condition
EUT Power Type
Beamforming Function
From power adapter
With beamforming
Without beamforming
The product has beamforming function for 802.11n/ac.
Note: There are two functions of EUT, one is beamforming function, and the other is non-beamforming
function for 802.11n/ac. The beamforming function was tested and recorded in this report, and the
non-beamforming function was tested and recorded in Report No. : FR711935-02AA.
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FCC Test Report
1.1.5
Report No. : FR711935-02AB
Table for Class II Change
This product is an extension of original one reported under Sporton project number: FR711935-01AD
Below is the table for the change of the product with respect to the original one.
Modifications
Performance Checking
1. Emission Bandwidth.
Adding 5GHz band 2 and band 3 (5250~5350 MHz,
5470~5725 MHz) for this device
2. Maximum Conducted Output Power.
3. Peak Power Spectral Density.
4. Frequency Stability.
5. Unwanted Emissions above 1GHz.
Note: There are two functions of EUT, one is beamforming function, and the other is non-beamforming
function for 802.11n/ac. The beamforming function was tested and recorded in this report, and the
non-beamforming function was tested and recorded in Report No. : FR711935-02AA.
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FCC Test Report
1.2
Report No. : FR711935-02AB
Testing Applied Standards
According to the specifications of the manufacturer, the EUT must comply with the requirements of the
following standards:
 47 CFR FCC Part 15
 ANSI C63.10-2013
 FCC KDB 789033 D02 v01r03
 FCC KDB 644545 D03 v01
 FCC KDB 662911 D01 v02r01
1.3
Testing Location Information
Testing Location
HWA YA
JHUBEI
ADD
No. 52, Hwa Ya 1st Rd., Kwei-Shan Hsiang, Tao Yuan Hsien, Taiwan, R.O.C.
TEL
886-3-327-3456
ADD
No.8, Lane 724, Bo-ai St., Jhubei City, HsinChu County 302, Taiwan, R.O.C.
TEL
886-3-656-9065
FAX
FAX
886-3-318-0055
886-3-656-9085
Test Condition
Test Site No.
Test Engineer
Test Environment
Test Date
RF Conducted
TH01-CB
Serway Li
22°C / 55%
Feb. 20, 2017~Feb. 27, 2017
Radiated
03CH01-CB
Jay Luo
22°C / 54%
Feb. 15, 2017~Feb. 24, 2017
Test site Designation No. TW0006 with FCC
Test site registered number IC 4086D with Industry Canada.
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FCC Test Report
1.4
Report No. : FR711935-02AB
Measurement Uncertainty
ISO/IEC 17025 requires that an estimate of the measurement uncertainties associated with the emissions test
results be included in the report. The measurement uncertainties given below are based on a 95% confidence
level (based on a coverage factor (k=2)
Test Items
Uncertainty
Remark
Radiated Emission (1GHz ~ 18GHz)
3.7 dB
Confidence levels of 95%
Radiated Emission (18GHz ~ 40GHz)
3.5 dB
Confidence levels of 95%
Conducted Emission
1.7 dB
Confidence levels of 95%
Output Power Measurement
1.33 dB
Confidence levels of 95%
Power Density Measurement
1.27 dB
Bandwidth Measurement
Frequency Stability
Confidence levels of 95%
9.74 x10
-8
Confidence levels of 95%
6.06 x10
-8
Confidence levels of 95%
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FCC Test Report
Test Configuration of EUT
2.1
Test Channel Mode
Mode
Report No. : FR711935-02AB
Power Setting
VHT20,TXBF_Nss1,(MCS0)_4TX
5260MHz
17
5300MHz
17
5320MHz
17
5500MHz
18
5580MHz
18
5700MHz
18
5720MHz Straddle 5.47-5.725GHz
19
VHT40,TXBF_Nss1,(MCS0)_4TX
5270MHz
17
5310MHz
17
5510MHz
18
5550MHz
18
5670MHz
18
5710MHz Straddle 5.47-5.725GHz
19
VHT80,TXBF_Nss1,(MCS0)_4TX
5290MHz
17
5530MHz
18
5610MHz
19
5690MHz Straddle 5.47-5.725GHz
19
Note:
 VHT20/VHT40 covers HT20/HT40, due to same modulation. The power setting for 802.11n HT20 and
HT40 are the same or lower than 802.11ac VHT20 and VHT40.
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FCC Test Report
2.2
Report No. : FR711935-02AB
The Worst Case Measurement Configuration
The Worst Case Mode for Following Conformance Tests
Emission Bandwidth
Maximum Conducted Output Power
Peak Power Spectral Density
Frequency Stability
Tests Item
Conducted measurement at transmit chains
Test Condition
The Worst Case Mode for Following Conformance Tests
Unwanted Emissions
Tests Item
Radiated measurement
If EUT consist of multiple antenna assembly (multiple antenna are used in EUT
regardless of spatial multiplexing MIMO configuration), the radiated test should
be performed with highest antenna gain of each antenna type.
Test Condition
Operating Mode > 1GHz CTX
The Worst Case Mode for Following Conformance Tests
Tests Item
Simultaneous Transmission Analysis
Operating Mode
WLAN 2.4GHz+WLAN 5GHz
Refer to Sporton Test Report No.: FA711935-02 for Co-location RF Exposure Evaluation.
Note: The EUT can only be used at Y axis position.
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FCC Test Report
2.3
Report No. : FR711935-02AB
EUT Operation during Test
For Conducted Mode:
The EUT was programmed to be in continuously transmitting mode.
For Radiated Mode:
During the test, the following programs under WIN 7 were executed.
The program was executed as follows:
1. During the test, the EUT operation to normal function.
2. Executed command fixed test channel under Telnet.
3. Executed "Lantest.exe" to link with the remote workstation to transmit and receive packet by RX Device
and transmit duty cycle no less 98%.
2.4
Accessories
Accessories
No. Equipment Name Brand Name
Model No.
Rating
INPUT: 100-240Vac, 50-60Hz, 1.0A MAX.
OUTPUT: 12Vdc, 2.5A
Adapter 1
Sunny
SYS1564-3012-W2
Adapter 2
Ktec
KSA-36W-120250HU
2.5
INPUT: 100-240Vac, 50/60Hz, 1.0A
OUTPUT: 12Vdc, 2.5A
Support Equipment
For Test Site No: 03CH01-CB
Support Equipment
No.
Equipment
Brand Name
Model Name
FCC ID
NB*2
DELL
E4300
DoC
RX Device
(DBDC ROUTER)
Charter
RAC2V1K
H8NRAC2V1K
For Test Site No: TH01-CB
Support Equipment
No.
Equipment
Brand Name
Model Name
FCC ID
NB
DELL
E4300
DoC
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FCC Test Report
2.6
Report No. : FR711935-02AB
Test Setup Diagram
Test Setup Diagram - Radiated Test > 1GHz
Item
Connection
Shielded
Length
RJ-45 cable
No
10m
Power cable
No
1.5m
RJ-45 cable
No
10m
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FCC Test Report
Report No. : FR711935-02AB
Transmitter Test Result
3.1
Emission Bandwidth
3.1.1
Emission Bandwidth Limit
Emission Bandwidth Limit
UNII Devices
For the 5.15-5.25 GHz band, N/A
For the 5.25-5.35 GHz band, the maximum conducted output power shall not exceed the lesser of 250
mW or 11 dBm + 10 log B, where B is the 26 dB emission bandwidth in MHz.
For the 5.47-5.725 GHz band, the maximum conducted output power shall not exceed the lesser of 250
mW or 11 dBm + 10 log B, where B is the 26 dB emission bandwidth in MHz.
For the 5.725-5.85 GHz band, 6 dB emission bandwidth ≥ 500kHz.
LE-LAN Devices
For the band 5.15-5.25 GHz, the maximum e.i.r.p. shall not exceed 200 mW or 10 + 10 log B, dBm,
whichever power is less. B is the 99% emission bandwidth in MHz.
For the 5.25-5.35 GHz band, the maximum e.i.r.p. shall not exceed 1.0 W or 17 + 10 log B, dBm,
whichever power is less. B is the 99% emission bandwidth in MHz
For the 5.47-5.6 GHz band and 5.65-5.725 GHz band, the maximum e.i.r.p. shall not exceed 1.0 W or
17 + 10 log B, dBm, whichever power is less. B is the 99% emission bandwidth in MHz
For the 5.725-5.85 GHz band, 6 dB emission bandwidth ≥ 500kHz.
3.1.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.1.3
Test Procedures
Test Method

For the emission bandwidth shall be measured using one of the options below:
Refer as FCC KDB 789033, clause C for EBW and clause D for OBW measurement.
Refer as ANSI C63.10, clause 6.9.1 for occupied bandwidth testing.
Refer as IC RSS-Gen, clause 4.6 for bandwidth testing.
3.1.4
Test Setup
Emission Bandwidth
3.1.5
Test Result of Emission Bandwidth
Refer as Appendix A
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FCC Test Report
3.2
Maximum Conducted Output Power
3.2.1
Maximum Conducted Output Power Limit
Report No. : FR711935-02AB
Maximum Conducted Output Power Limit
UNII Devices
For the 5.15-5.25 GHz band:

Outdoor AP: the maximum conducted output power (POut) shall not exceed the lesser of 1 W. If GTX
> 6 dBi, then POut = 30 – (GTX – 6). e.i.r.p. at any elevation angle above 30 degrees ≤ 125mW
[21dBm]

Indoor AP: the maximum conducted output power (POut) shall not exceed the lesser of 1 W. If GTX >
6 dBi, then POut = 30 – (GTX – 6)

Point-to-point AP: the maximum conducted output power (POut) shall not exceed the lesser of 1 W
If GTX > 23 dBi, then POut = 30 – (GTX – 23).

Mobile or Portable Client: the maximum conducted output power (POut) shall not exceed the lesser
of 250 mW. If GTX > 6 dBi, then POut = 24 – (GTX – 6).
For the 5.25-5.35 GHz band, the maximum conducted output power (POut) 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 GTX > 6 dBi, then
POut = 24 – (GTX – 6).
For the 5.47-5.725 GHz band, the maximum conducted output power (POut) 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 GTX > 6 dBi, then
POut = 24 – (GTX – 6).
For the 5.725-5.85 GHz band:

Point-to-multipoint systems (P2M): the maximum conducted output power (POut) shall not exceed
the lesser of 1 W. If GTX > 6 dBi, then POut = 30 – (GTX – 6).

Point-to-point systems (P2P): the maximum conducted output power (POut) shall not exceed the
lesser of 1 W.
LE-LAN Devices
For the 5.15-5.25 GHz band, the maximum e.i.r.p. shall not exceed 200 mW or 10 + 10 log B, dBm,
whichever power is less. B is the 99% emission bandwidth in MHz.
For the 5.25-5.35 GHz band, the maximum e.i.r.p. shall not exceed 1.0 W or 17 + 10 log B, dBm,
whichever power is less. B is the 99% emission bandwidth in MHz
For the 5.47-5.6 GHz band and 5.65-5.725 GHz band, the maximum e.i.r.p. shall not exceed 1.0 W or
17 + 10 log B, dBm, whichever power is less. B is the 99% emission bandwidth in MHz
For the 5.725-5.85 GHz band:

Point-to-multipoint systems (P2M): the maximum conducted output power (POut) shall not exceed
the lesser of 1 W. If GTX > 6 dBi, then POut = 30 – (GTX – 6).

Point-to-point systems (P2P): the maximum conducted output power (POut) shall not exceed the
lesser of 1 W.
POut = maximum conducted output power in dBm,
GTX = the maximum transmitting antenna directional gain in dBi.
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FCC Test Report
3.2.2
Report No. : FR711935-02AB
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.2.3
Test Procedures
Test Method

Maximum Conducted Output Power
Average over on/off periods with duty factor
For straddle channel:
Refer as FCC KDB 789033, clause E Method SA-2 (spectral trace averaging).
Refer as FCC KDB 789033, clause E Method SA-2 Alt. (RMS detection with slow sweep speed)
Wideband RF power meter and average over on/off periods with duty factor
For other channel:
Refer as FCC KDB 789033, clause E Method PM-G (using an RF average power meter).

For conducted measurement.
3.2.4

If the EUT supports multiple transmit chains using options given below:
Refer as FCC KDB 662911, In-band power measurements. Using the measure-and-sum
approach, measured all transmit ports individually. Sum the power (in linear power units e.g., mW)
of all ports for each individual sample and save them.

If multiple transmit chains, EIRP calculation could be following as methods:
Ptotal = P1 + P2 +… + Pn
(calculated in linear unit [mW] and transfer to log unit [dBm])
EIRPtotal = Ptotal + DG
Test Setup
For straddle channel:
RF Output Power (Spectrum Analyzer)
For other channel:
RF Output Power (Power Meter)
3.2.5
Test Result of Maximum Conducted Output Power
Refer as Appendix B
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FCC Test Report
Report No. : FR711935-02AB
3.3
Peak Power Spectral Density
3.3.1
Peak Power Spectral Density Limit
Peak Power Spectral Density Limit
UNII Devices
For the 5.15-5.25 GHz band:

Outdoor AP: the peak power spectral density (PPSD) shall not exceed the lesser of 17dBm/MHz. If
GTX > 6 dBi, then POut = 17 – (GTX – 6).

Indoor AP: the peak power spectral density (PPSD) shall not exceed the lesser of 17dBm/MHz. If
GTX > 6 dBi, then POut = 17 – (GTX – 6).

Point-to-point AP: the peak power spectral density (PPSD) shall not exceed the lesser of
17dBm/MHz. If GTX > 23 dBi, then POut = 17 – (GTX – 23).

Mobile or Portable Client: the peak power spectral density (PPSD) ≤ 11 dBm/MHz. If GTX > 6 dBi,
then PPSD= 11 – (GTX – 6)..
For the 5.25-5.35 GHz band, the peak power spectral density (PPSD) ≤ 11 dBm/MHz. If GTX > 6 dBi,
then PPSD= 11 – (GTX – 6).
For the 5.47-5.725 GHz band, the peak power spectral density (PPSD) ≤ 11 dBm/MHz. If GTX > 6 dBi,
then PPSD= 11 – (GTX – 6).
For the 5.725-5.85 GHz band:

Point-to-multipoint systems (P2M): the peak power spectral density (PPSD) ≤ 30 dBm/500kHz. If
GTX > 6 dBi, then PPSD= 30 – (GTX – 6).

Point-to-point systems (P2P): the peak power spectral density (PPSD) ≤ 30 dBm/500kHz.
LE-LAN Devices
For the 5.15-5.25 GHz band, the peak power spectral density (PPSD) ≤ 4 dBm/MHz and the e.i.r.p.
peak power spectral density (PPSD) ≤ 10 dBm/MHz.
For the 5.25-5.35 GHz band, the peak power spectral density (PPSD) ≤ 11 dBm/MHz and the e.i.r.p.
peak power spectral density (PPSD) ≤ 17 dBm/MHz.

e.i.r.p. greater than 200 mW shall comply with the following e.i.r.p. at different elevations, where θ
is the angle above the local horizontal plane (of the Earth) as shown below:
-13 dBW/MHz for 0° ≤ θ < 8° ; -13 − 0.716 (θ-8) dBW/MHz for 8° ≤ θ < 40°
-35.9 − 1.22 (θ-40) dBW/MHz for 40° ≤ θ ≤ 45° ; -42 dBW/MHz for θ > 45°
For the 5.47-5.6 GHz band and 5.65-5.725 GHz band, the peak power spectral density (PPSD) ≤ 11
dBm/MHz and the e.i.r.p. peak power spectral density (PPSD) ≤ 17 dBm/MHz.
For the 5.725-5.85 GHz band:

Point-to-multipoint systems (P2M): the peak power spectral density (PPSD) ≤ 30 dBm/500kHz. If
GTX > 6 dBi, then PPSD= 30 – (GTX – 6).

Point-to-point systems (P2P): the peak power spectral density (PPSD) ≤ 30 dBm/500kHz.
PPSD = peak power spectral density that he same method as used to determine the conducted output
power shall be used to determine the power spectral density. And power spectral density in dBm/MHz
GTX = the maximum transmitting antenna directional gain in dBi.
3.3.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
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FCC Test Report
3.3.3
Report No. : FR711935-02AB
Test Procedures
Test Method

Peak power spectral density procedures that the same method as used to determine the conducted
output power shall be used to determine the peak power spectral density and use the peak search
function on the spectrum analyzer to find the peak of the spectrum. For the peak power spectral density
shall be measured using below options:
Refer as FCC KDB 789033, F)5) power spectral density can be measured using resolution
bandwidths < 1 MHz provided that the results are integrated over 1 MHz bandwidth
[duty cycle ≥ 98% or external video / power trigger]
Refer as FCC KDB 789033, clause E Method SA-1 (spectral trace averaging).
Refer as FCC KDB 789033, clause E Method SA-1 Alt. (RMS detection with slow sweep speed)
duty cycle < 98% and average over on/off periods with duty factor
Refer as FCC KDB 789033, clause E Method SA-2 (spectral trace averaging).
Refer as FCC KDB 789033, clause E Method SA-2 Alt. (RMS detection with slow sweep speed)

For conducted measurement.

If the EUT supports multiple transmit chains using options given below:
Option 1: Measure and sum the spectra across the outputs. Refer as FCC KDB 662911,
In-band power spectral density (PSD). Sample all transmit ports simultaneously using a
spectrum analyzer for each transmit port. Where the trace bin-by-bin of each transmit port
summing can be performed. (i.e., in the first spectral bin of output 1 is summed with that in the
first spectral bin of output 2 and that from the first spectral bin of output 3, and so on up to the
NTX output to obtain the value for the first frequency bin of the summed spectrum.). Add up
the amplitude (power) values for the different transmit chains and use this as the new data
trace.
Option 2: Measure and sum spectral maxima across the outputs. With this technique, spectra
are measured at each output of the device at the required resolution bandwidth. The
maximum value (peak) of each spectrum is determined. These maximum values are then
summed mathematically in linear power units across the outputs. These operations shall be
performed separately over frequency spans that have different out-of-band or spurious
emission limits,
Option 3: Measure and add 10 log(N) dB, where N is the number of transmit chains. Refer as
FCC KDB 662911, In-band power spectral density (PSD). Performed at each transmit chains
and each transmit chains shall be compared with the limit have been reduced with 10 log(N).
Or each transmit chains shall be add 10 log(N) to compared with the limit.

3.3.4
If multiple transmit chains, EIRP PPSD calculation could be following as methods:
PPSDtotal = PPSD1 + PPSD2 +… + PPSDn
(calculated in linear unit [mW] and transfer to log unit [dBm])
EIRPtotal = PPSDtotal + DG
Test Setup
Power Spectral Density
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FCC Test Report
3.3.5
Report No. : FR711935-02AB
Test Result of Peak Power Spectral Density
Refer as Appendix C
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FCC Test Report
Report No. : FR711935-02AB
3.4
Unwanted Emissions
3.4.1
Transmitter Radiated Unwanted Emissions Limit
Unwanted emissions below 1 GHz and restricted band emissions above 1GHz limit
Frequency Range (MHz)
Field Strength (uV/m)
Field Strength (dBuV/m)
Measure Distance (m)
0.009~0.490
2400/F(kHz)
48.5 - 13.8
300
0.490~1.705
24000/F(kHz)
33.8 - 23
30
1.705~30.0
30
29
30
30~88
100
40
88~216
150
43.5
216~960
200
46
Above 960
500
54
Note 1: Test distance for frequencies at or above 30 MHz, measurements may be performed at a distance
other than the limit distance provided they are not performed in the near field and the emissions to
be measured can be detected by the measurement equipment. When performing measurements at
a distance other than that specified, the results shall be extrapolated to the specified distance using
an extrapolation factor of 20 dB/decade (inverse of linear distance for field-strength measurements,
inverse of linear distance-squared for power-density measurements).
Note 2: Test distance for frequencies at below 30 MHz, measurements may be performed at a distance
closer than the EUT limit distance; however, an attempt should be made to avoid making
measurements in the near field. When performing measurements below 30 MHz at a closer distance
than the limit distance, the results shall be extrapolated to the specified distance by either making
measurements at a minimum of two or more distances on at least one radial to determine the proper
extrapolation factor or by using the square of an inverse linear distance extrapolation factor (40
dB/decade). The test report shall specify the extrapolation method used to determine compliance of
the EUT.
Un-restricted band emissions above 1GHz Limit
Operating Band
Limit
5.15 - 5.25 GHz
e.i.r.p. -27 dBm [68.2 dBuV/m@3m]
5.25 - 5.35 GHz
e.i.r.p. -27 dBm [68.2 dBuV/m@3m]
5.47 - 5.725 GHz
e.i.r.p. -27 dBm [68.2 dBuV/m@3m]
5.725 - 5.85 GHz
all emissions shall be limited to a level of -27 dBm/MHz at 75 MHz or more above
or below the band edge increasing linearly to 10 dBm/MHz at 25 MHz above or
below the band edge, and from 25 MHz above or below the band edge
increasing linearly to a level of 15.6 dBm/MHz at 5 MHz above or below the band
edge, and from 5 MHz above or below the band edge increasing linearly to a
level of 27 dBm/MHz at the band edge.
Note 1: Measurements may be performed at a distance other than the limit distance provided they are not
performed in the near field and the emissions to be measured can be detected by the measurement
equipment. When performing measurements at a distance other than that specified, the results shall
be extrapolated to the specified distance using an extrapolation factor of 20 dB/decade (inverse of
linear distance for field-strength measurements, inverse of linear distance-squared for power-density
measurements).
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FCC Test Report
3.4.2
Report No. : FR711935-02AB
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.4.3
Test Procedures
Test Method

Measurements may be performed at a distance other than the limit distance provided they are not
performed in the near field and the emissions to be measured can be detected by the measurement
equipment. Measurements shall not be performed at a distance greater than 30 m for frequencies
above 30 MHz, unless it can be further demonstrated that measurements at a distance of 30 m or less
are impractical. When performing measurements at a distance other than that specified, the results shall
be extrapolated to the specified distance using an extrapolation factor of 20 dB/decade (inverse of linear
distance for field-strength measurements, inverse of linear distance-squared for power-density
measurements).

The average emission levels shall be measured in [duty cycle ≥ 98 or duty factor].

For the transmitter unwanted emissions shall be measured using following options below:

Refer as FCC KDB 789033, clause H)2) for unwanted emissions into non-restricted bands.

Refer as FCC KDB 789033, clause H)1) for unwanted emissions into restricted bands.
Refer as FCC KDB 789033, H)6) Method AD (Trace Averaging).
Refer as FCC KDB 789033, H)6) Method VB (Reduced VBW).
Refer as ANSI C63.10, clause 4.2.3.2.3 (Reduced VBW). VBW ≥ 1/T, where T is pulse time.
Refer as ANSI C63.10, clause 4.2.3.2.4 average value of pulsed emissions.
Refer as FCC KDB 789033, clause H)5) measurement procedure peak limit.
Refer as ANSI C63.10, clause 4.2.3.2.2 measurement procedure peak limit.

For radiated measurement.

Refer as ANSI C63.10, clause 6.4 for radiated emissions below 30 MHz and test distance is 3m.

Refer as ANSI C63.10, clause 6.5 for radiated emissions 30 MHz to 1 GHz and test distance is 3m.

Refer as ANSI C63.10, clause 6.6 for radiated emissions above 1GHz.

The any unwanted emissions level shall not exceed the fundamental emission level.

All amplitude of spurious emissions that are attenuated by more than 20 dB below the permissible value
has no need to be reported.
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FCC Test Report
3.4.4
Report No. : FR711935-02AB
Test Setup
Transmitter Radiated Unwanted Emissions
Above 1GHz
3.4.5
Test Result of Transmitter Unwanted Emissions
Refer as Appendix D
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FCC Test Report
Report No. : FR711935-02AB
3.5
Frequency Stability
3.5.1
Frequency Stability Limit
Frequency Stability Limit
UNII Devices

In-band emission is maintained within the band of operation under all conditions of normal operation as
specified in the user’s manual.
LE-LAN Devices

N/A
IEEE Std. 802.11

The transmitter center frequency tolerance shall be ± 20 ppm maximum for the 5 GHz band and ± 25
ppm maximum for the 2.4 GHz band.
3.5.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.5.3
Test Procedures
Test Method

Refer as ANSI C63.10, clause 6.8 for frequency stability tests
3.5.4

Frequency stability with respect to ambient temperature

Frequency stability when varying supply voltage

Extreme temperature is 0°C~40°C.
Test Setup
Frequency Stability
3.5.5
Test Result of Frequency Stability
Refer as Appendix E
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FCC Test Report
Report No. : FR711935-02AB
Test Equipment and Calibration Data
Instrument
Manufacturer
Model No.
Serial No.
Characteristics
Calibration Date
Remark
Horn Antenna
EMCO
3115
00075790
750MHz ~ 18GHz
Nov. 10, 2016
Radiation
(03CH01-CB)
Horn Antenna
Schwarzbeck
BBHA 9170
BBHA9170252
15GHz ~ 40GHz
Jul. 25, 2016
Radiation
(03CH01-CB)
Pre-Amplifier
Agilent
8449B
3008A02310
1GHz ~ 26.5GHz
Jan. 18, 2016
Radiation
(03CH01-CB)
Pre-Amplifier
Agilent
8449B
3008A02310
1GHz ~ 26.5GHz
Jan. 16, 2017
Radiation
(03CH01-CB)
Pre-Amplifier
MITEQ
TTA1840-35-HG
1864479
18GHz ~ 40GHz
Jun. 28, 2016
Radiation
(03CH01-CB)
Spectrum Analyzer
R&S
FSP40
100056
9kHz ~ 40GHz
Nov. 21, 2016
Radiation
(03CH01-CB)
RF Cable-high
Woken
High Cable-16
N/A
1 GHz ~ 18 GHz
Oct. 24, 2016
Radiation
(03CH01-CB)
RF Cable-high
Woken
High Cable-16+17
N/A
1 GHz ~ 18 GHz
Oct. 24, 2016
Radiation
(03CH01-CB)
RF Cable-high
Woken
High Cable-40G#1
N/A
18GHz ~ 40 GHz
Oct. 24, 2016
Radiation
(03CH01-CB)
RF Cable-high
Woken
High Cable-40G#2
N/A
18GHz ~ 40 GHz
Oct. 24, 2016
Radiation
(03CH01-CB)
Test Software
Audix
E3
6.2009-l0-7
N/A
N/A
Radiation
(03CH01-CB)
Spectrum analyzer
R&S
FSV40
100979
9kHz~40GHz
Dec. 26, 2016
Conducted
(TH01-CB)
Temp. and
Humidity Chamber
Ten Billion
TTH-D3SP
TBN-931011
-30~100 degree
Jun. 03, 2016
Conducted
(TH01-CB)
RF Cable-high
Woken
RG402
High Cable-6
1 GHz – 26.5 GHz
Oct. 24, 2016
Conducted
(TH01-CB)
RF Cable-high
Woken
RG402
High Cable-7
1 GHz –26.5 GHz
Oct. 24, 2016
Conducted
(TH01-CB)
RF Cable-high
Woken
RG402
High Cable-8
1 GHz –26.5 GHz
Oct. 24, 2016
Conducted
(TH01-CB)
RF Cable-high
Woken
RG402
High Cable-9
1 GHz –26.5 GHz
Oct. 24, 2016
Conducted
(TH01-CB)
RF Cable-high
Woken
RG402
High Cable-10
1 GHz –26.5 GHz
Oct. 24, 2016
Conducted
(TH01-CB)
Power Sensor
Agilent
U2021XA
MY53410001
50MHz~18GHz
Nov. 22, 2016
Conducted
(TH01-CB)
Note: Calibration Interval of instruments listed above is one year.
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Appendix A
EBW Result
11a, VHT20, VHT40 and VHT80
Summary
Mode
Max-N dB
Max-OBW
ITU-Code
Min-N dB
Min-OBW
(Hz)
(Hz)
(Hz)
(Hz)
VHT20,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
20.725M
17.641M
17M6D1D
20.425M
17.591M
5.47-5.725GHz
20.75M
17.641M
17M6D1D
15.09M
13.793M
5.725-5.85GHz
3.76M
4.058M
4M06D1D
3.72M
3.918M
VHT40,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
39.85M
36.032M
36M0D1D
39.1M
35.882M
5.47-5.725GHz
40.05M
36.032M
36M0D1D
34.475M
32.569M
5.725-5.85GHz
3.22M
3.958M
3M96D1D
3.12M
3.638M
VHT80,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
83.4M
75.762M
75M8D1D
82.8M
75.562M
5.47-5.725GHz
83.7M
75.962M
76M0D1D
74.475M
71.439M
5.725-5.85GHz
3.22M
7.576M
7M58D1D
3.02M
4.458M
Max-N dB = Maximum 6dB down bandwidth for 5.725-5.85GHz band / Maximum 26dB down bandwidth for other band;
Max-OBW = Maximum 99% occupied bandwidth;
Min-N dB = Minimum 6dB down bandwidth for 5.725-5.85GHz band / Maximum 26dB down bandwidth for other band;
Min-OBW = Minimum 99% occupied bandwidth;
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Appendix A
EBW Result
Result
Mode
Result
VHT20,TXBF_Nss1,(MCS0)_4TX
Limit
Port 1-N
dB
Port
1-OBW
Port 2-N
dB
Port
2-OBW
Port 3-N
dB
Port
3-OBW
Port 4-N
dB
Port
4-OBW
(Hz)
(Hz)
(Hz)
(Hz)
(Hz)
(Hz)
(Hz)
(Hz)
(Hz)
5260MHz
Pass
Inf
20.55M
17.616M
20.45M
17.641M
20.725M
17.616M
20.475M
17.591M
5300MHz
Pass
Inf
20.55M
17.641M
20.575M
17.616M
20.625M
17.616M
20.425M
17.591M
5320MHz
Pass
Inf
20.625M
17.616M
20.625M
17.616M
20.55M
17.616M
20.625M
17.591M
5500MHz
Pass
Inf
20.625M
17.616M
20.575M
17.641M
20.4M
17.641M
20.35M
17.641M
5580MHz
Pass
Inf
20.625M
17.616M
20.45M
17.616M
20.475M
17.591M
20.35M
17.616M
5700MHz
Pass
Inf
20.5M
17.616M
20.75M
17.641M
20.525M
17.616M
20.25M
17.641M
5720MHz Straddle 5.47-5.725GHz
Pass
Inf
15.285M
13.823M
15.09M
13.793M
15.345M
13.868M
15.33M
13.853M
5720MHz Straddle 5.725-5.85GHz
Pass
500k
3.76M
4.038M
3.76M
3.918M
3.72M
4.038M
3.74M
4.058M
VHT40,TXBF_Nss1,(MCS0)_4TX
5270MHz
Pass
Inf
39.65M
35.982M
39.85M
35.932M
39.55M
35.982M
39.1M
35.982M
5310MHz
Pass
Inf
39.7M
35.882M
39.8M
36.032M
39.65M
35.932M
39.2M
35.932M
5510MHz
Pass
Inf
39.8M
35.982M
40.05M
36.032M
39.65M
35.932M
39.15M
36.032M
5550MHz
Pass
Inf
39.65M
35.982M
39.9M
36.032M
39.3M
35.932M
39.2M
36.032M
5670MHz
Pass
Inf
39.9M
36.032M
40.05M
35.982M
39.6M
35.982M
39.35M
35.982M
5710MHz Straddle 5.47-5.725GHz
Pass
Inf
34.93M
33.058M
34.58M
32.884M
34.545M
32.569M
34.475M
32.814M
5710MHz Straddle 5.725-5.85GHz
Pass
500k
3.12M
3.958M
3.22M
3.638M
3.18M
3.938M
3.18M
3.698M
VHT80,TXBF_Nss1,(MCS0)_4TX
5290MHz
Pass
Inf
83.2M
75.662M
83.4M
75.562M
83.3M
75.762M
82.8M
75.762M
5530MHz
Pass
Inf
83.4M
75.762M
83.6M
75.662M
83.5M
75.562M
83M
75.662M
5610MHz
Pass
Inf
83.7M
75.762M
83.3M
75.762M
83.7M
75.962M
82.9M
75.762M
5690MHz Straddle 5.47-5.725GHz
Pass
Inf
76.425M
72.039M
75.75M
71.589M
75.15M
72.639M
74.475M
71.439M
5690MHz Straddle 5.725-5.85GHz
Pass
500k
3.22M
5.697M
3.06M
4.458M
3.02M
5.117M
3.18M
7.576M
Port X-N dB = Port X 6dB down bandwidth for 5.725-5.85GHz band / 26dB down bandwidth for other band
Port X-OBW = Port X 99% occupied bandwidth;
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix A
EBW Result
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Appendix B
Power Result
11a, VHT20, VHT40 and VHT80
Summary
Mode
Total Power
Total Power
EIRP
EIRP
(dBm)
(W)
(dBm)
(W)
VHT20,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
18.61
0.07261
29.45
0.88105
5.47-5.725GHz
18.66
0.07345
29.50
0.89125
5.725-5.85GHz
11.52
0.01419
22.36
0.17219
VHT40,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
18.84
0.07656
29.68
0.92897
5.47-5.725GHz
18.75
0.07499
29.58
0.90782
5.725-5.85GHz
6.12
0.00409
16.96
0.04966
VHT80,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
18.66
0.07345
29.50
0.89125
5.47-5.725GHz
19.12
0.08166
29.96
0.99083
5.725-5.85GHz
3.71
0.00235
14.55
0.02851
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Appendix B
Power Result
Result
DG
Port 1
Port 2
Port 3
Port 4
Total
Power
Power
Limit
EIRP
EIRP Limit
(dBi)
(dBm)
(dBm)
(dBm)
(dBm)
(dBm)
(dBm)
(dBm)
(dBm)
Pass
10.84
12.64
12.55
12.74
12.41
18.61
19.14
29.45
30.00
5300MHz
Pass
10.84
12.56
12.37
12.89
12.26
18.55
19.14
29.39
30.00
5320MHz
Pass
10.84
12.38
12.62
12.77
12.43
18.57
19.14
29.41
30.00
5500MHz
Pass
10.84
12.65
12.96
12.68
12.25
18.66
19.14
29.50
30.00
5580MHz
Pass
10.84
12.34
12.98
12.65
12.19
18.57
19.14
29.41
30.00
Mode
Result
VHT20,TXBF_Nss1,(MCS0)_4TX
5260MHz
5700MHz
Pass
10.84
12.17
12.41
12.91
12.06
18.42
19.14
29.26
30.00
5720MHz Straddle 5.47-5.725GHz
Pass
10.84
11.32
11.79
12.72
11.47
17.88
17.95
28.72
28.79
5720MHz Straddle 5.725-5.85GHz
Pass
10.84
4.65
6.44
4.69
5.93
11.52
25.16
22.36
36.00
VHT40,TXBF_Nss1,(MCS0)_4TX
5270MHz
Pass
10.84
12.77
12.58
13.03
12.45
18.73
19.14
29.57
30.00
5310MHz
Pass
10.84
13.09
12.72
12.85
12.59
18.84
19.14
29.68
30.00
5510MHz
Pass
10.84
12.58
12.67
12.35
12.27
18.49
19.14
29.33
30.00
5550MHz
Pass
10.84
12.61
12.25
12.84
12.42
18.56
19.14
29.39
30.00
5670MHz
Pass
10.84
12.46
13.06
12.71
12.65
18.75
19.14
29.58
30.00
5710MHz Straddle 5.47-5.725GHz
Pass
10.84
12.53
11.78
13.67
12.60
18.72
19.14
29.56
30.00
5710MHz Straddle 5.725-5.85GHz
Pass
10.84
-2.00
2.27
-1.75
0.45
6.12
25.16
16.96
36.00
VHT80,TXBF_Nss1,(MCS0)_4TX
5290MHz
Pass
10.84
12.31
12.94
12.85
12.43
18.66
19.14
29.50
30.00
5530MHz
Pass
10.84
12.12
12.89
12.47
12.09
18.43
19.14
29.26
30.00
5610MHz
Pass
10.84
12.77
13.33
13.59
12.65
19.12
19.14
29.96
30.00
5690MHz Straddle 5.47-5.725GHz
Pass
10.84
12.15
12.93
13.02
12.58
18.70
19.14
29.54
30.00
5690MHz Straddle 5.725-5.85GHz
Pass
10.84
-2.02
-0.95
-3.23
-3.55
3.71
25.16
14.55
36.00
Page No.
: 2 of 4
DG = Directional Gain; Port X = Port X output power
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Appendix B
Power Result
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Appendix B
Power Result
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Appendix C
PSD Result
11a, VHT20, VHT40 and VHT80
Summary
Mode
PD
EIRP PD
(dBm/RBW)
(dBm/RBW)
VHT20,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
5.32
16.16
5.47-5.725GHz
5.81
16.64
5.725-5.85GHz
3.30
14.14
VHT40,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
2.84
13.68
5.47-5.725GHz
3.49
14.33
5.725-5.85GHz
-1.08
9.76
VHT80,TXBF_Nss1,(MCS0)_4TX
5.25-5.35GHz
0.06
10.90
5.47-5.725GHz
-0.40
10.44
5.725-5.85GHz
-4.01
6.83
RBW = 500kHz for 5.725-5.85GHz band / 1MHz for other band;
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Appendix C
PSD Result
Result
Mode
Result
DG
Port 1
Port 2
Port 3
Port 4
PD
PD Limit
VHT20,TXBF_Nss1,(MCS0)_4TX
(dBi)
(dBm/RBW)
(dBm/RBW)
(dBm/RBW)
(dBm/RBW)
(dBm/RBW)
(dBm/RBW)
5260MHz
5300MHz
Pass
10.84
-0.82
-0.61
-1.01
-0.62
5.17
6.16
Pass
10.84
-0.76
-0.51
-0.68
-0.63
5.32
6.16
5320MHz
Pass
10.84
-0.91
-0.86
-0.76
-0.34
5.21
6.16
5500MHz
Pass
10.84
-1.12
-0.70
-1.12
-1.11
4.89
6.16
5580MHz
Pass
10.84
-0.73
-0.20
-0.89
-0.62
5.33
6.16
5700MHz
Pass
10.84
-0.16
0.33
-0.30
0.02
5.81
6.16
5720MHz Straddle 5.47-5.725GHz
Pass
10.84
-0.37
-0.04
1.78
-0.55
5.76
6.16
5720MHz Straddle 5.725-5.85GHz
Pass
10.84
-3.23
-1.73
-2.43
-2.26
3.30
25.16
VHT40,TXBF_Nss1,(MCS0)_4TX
5270MHz
Pass
10.84
-3.03
-3.11
-3.22
-3.36
2.75
6.16
5310MHz
Pass
10.84
-2.93
-3.10
-3.26
-3.29
2.84
6.16
5510MHz
Pass
10.84
-3.87
-3.46
-3.99
-3.92
2.08
6.16
5550MHz
Pass
10.84
-3.58
-3.13
-3.92
-3.56
2.33
6.16
5670MHz
Pass
10.84
-3.09
-2.39
-3.27
-2.59
3.02
6.16
5710MHz Straddle 5.47-5.725GHz
Pass
10.84
-1.51
-2.78
-0.23
-2.07
3.49
6.16
5710MHz Straddle 5.725-5.85GHz
Pass
10.84
-8.72
-5.15
-8.27
-6.79
-1.08
25.16
VHT80,TXBF_Nss1,(MCS0)_4TX
5290MHz
Pass
10.84
-5.81
-5.66
-5.72
-5.77
0.06
6.16
5530MHz
Pass
10.84
-6.61
-6.00
-6.46
-6.59
-0.60
6.16
5610MHz
Pass
10.84
-6.61
-5.74
-6.31
-6.40
-0.46
6.16
5690MHz Straddle 5.47-5.725GHz
Pass
10.84
-5.25
-4.44
-3.84
-5.00
-0.40
6.16
5690MHz Straddle 5.725-5.85GHz
Pass
10.84
-9.42
-8.55
-10.61
-10.99
-4.01
25.16
DG = Directional Gain; RBW = 500kHz for 5.725-5.85GHz band / 1MHz for other band;
PD = trace bin-by-bin of each transmits port summing can be performed maximum power density; Port X = Port X power density;
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix C
PSD Result
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Appendix D
RSE TX above 1GHz Result
11a, VHT20, VHT40 and VHT80
Summary
Mode
Result
Type
Freq
Level
Limit
Margin
Factor
Dist
Pol.
Azimuth
Height
(Hz)
(dBuV/m)
(dBuV/m)
(dB)
(dB)
(m)
(H/V)
(°)
(m)
Comments
VHT80,TXBF_Nss1,(MCS0)_4TX
5.47-5.725GHz
Pass
AV
5.469G
53.58
54.00
-0.42
5.01
188
1.50
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix D
RSE TX above 1GHz Result
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Appendix E
FS Result
Mode: 20 MHz / Ant. 6
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5299.9797
5299.9791
5299.9783
0.0217
4.09
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5299.9821
5299.9810
5299.9791
5299.9787
5299.9782
0.0218
4.11
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5579.9800
5579.9791
5579.9790
0.0210
3.76
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
SPORTON INTERNATIONAL INC.
TEL : 886-3-327-3456
FAX : 886-3-327-0973
0 Minute
5579.9813
5579.9797
5579.9791
5579.9787
5579.9769
0.0231
4.14
Measurement Frequency (MHz)
5300 MHz
2 Minute
5 Minute
5299.9792
5299.9784
5299.9781
5299.9777
5299.9779
5299.9771
0.0221
0.0229
4.17
4.32
Pass
Measurement Frequency (MHz)
5300 MHz
2 Minute
5 Minute
5299.9814
5299.9808
5299.9805
5299.9795
5299.9781
5299.9778
5299.9780
5299.9772
5299.9773
5299.9764
0.0227
0.0236
4.28
4.45
Pass
Measurement Frequency (MHz)
5580 MHz
2 Minute
5 Minute
5579.9792
5579.9788
5579.9781
5579.9779
5579.9781
5579.9771
0.0219
0.0229
3.92
4.10
Pass
Measurement Frequency (MHz)
5580 MHz
2 Minute
5 Minute
5579.9805
5579.9799
5579.9795
5579.9791
5579.9785
5579.9782
5579.9777
5579.9775
5579.9759
5579.9750
0.0241
0.0250
4.32
4.48
Pass
Page No.
10 Minute
5299.9777
5299.9774
5299.9766
0.0234
4.42
10 Minute
5299.9801
5299.9787
5299.9777
5299.9766
5299.9757
0.0243
4.58
10 Minute
5579.9783
5579.9771
5579.9764
0.0236
4.23
10 Minute
5579.9790
5579.9789
5579.9777
5579.9770
5579.9742
0.0258
4.62
: 1 of 3
Appendix E
FS Result
Mode: 40 MHz / Ant. 6
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5309.9797
5309.9791
5309.9788
0.0212
3.99
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5309.9813
5309.9806
5309.9791
5309.9787
5309.9776
0.0224
4.22
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5549.9794
5549.9791
5549.9781
0.0219
3.95
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
SPORTON INTERNATIONAL INC.
TEL : 886-3-327-3456
FAX : 886-3-327-0973
0 Minute
5549.9799
5549.9793
5549.9791
5549.9787
5549.9783
0.0217
3.91
Measurement Frequency (MHz)
5310 MHz
2 Minute
5 Minute
5309.9792
5309.9785
5309.9786
5309.9777
5309.9778
5309.9773
0.0222
0.0227
4.18
4.27
Pass
Measurement Frequency (MHz)
5310 MHz
2 Minute
5 Minute
5309.9807
5309.9802
5309.9805
5309.9796
5309.9781
5309.9773
5309.9777
5309.9769
5309.9770
5309.9762
0.0230
0.0238
4.33
4.48
Pass
Measurement Frequency (MHz)
5550 MHz
2 Minute
5 Minute
5549.9786
5549.9780
5549.9789
5549.9782
5549.9777
5549.9767
0.0223
0.0233
4.02
4.20
Pass
Measurement Frequency (MHz)
5550 MHz
2 Minute
5 Minute
5549.9796
5549.9795
5549.9786
5549.9778
5549.9788
5549.9785
5549.9782
5549.9772
5549.9780
5549.9774
0.0220
0.0228
3.96
4.11
Pass
Page No.
10 Minute
5309.9779
5309.9774
5309.9772
0.0228
4.29
10 Minute
5309.9795
5309.9793
5309.9771
5309.9760
5309.9752
0.0248
4.67
10 Minute
5549.9772
5549.9776
5549.9761
0.0239
4.31
10 Minute
5549.9792
5549.9768
5549.9778
5549.9769
5549.9771
0.0232
4.18
: 2 of 3
Appendix E
FS Result
Mode: 80 MHz / Ant. 6
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5289.9797
5289.9791
5289.9790
0.0210
3.97
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5289.9819
5289.9802
5289.9791
5289.9787
5289.9769
0.0231
4.37
Voltage vs. Frequency Stability
Voltage
(V)
126.50
110.00
93.50
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
0 Minute
5529.9798
5529.9791
5529.9787
0.0213
3.85
Temperature vs. Frequency Stability
Temperature
(℃)
10
20
30
40
Max. Deviation (MHz)
Max. Deviation (ppm)
Result
SPORTON INTERNATIONAL INC.
TEL : 886-3-327-3456
FAX : 886-3-327-0973
0 Minute
5529.9817
5529.9806
5529.9791
5529.9787
5529.9775
0.0225
4.07
Measurement Frequency (MHz)
5290 MHz
2 Minute
5 Minute
5289.9792
5289.9784
5289.9785
5289.9782
5289.9783
5289.9778
0.0217
0.0222
4.10
4.20
Pass
Measurement Frequency (MHz)
5290 MHz
2 Minute
5 Minute
5289.9812
5289.9807
5289.9796
5289.9792
5289.9782
5289.9778
5289.9784
5289.9774
5289.9764
5289.9761
0.0236
0.0239
4.46
4.52
Pass
Measurement Frequency (MHz)
5530 MHz
2 Minute
5 Minute
5529.9794
5529.9791
5529.9782
5529.9781
5529.9777
5529.9769
0.0223
0.0231
4.03
4.18
Pass
Measurement Frequency (MHz)
5530 MHz
2 Minute
5 Minute
5529.9815
5529.9811
5529.9805
5529.9798
5529.9784
5529.9783
5529.9782
5529.9780
5529.9767
5529.9760
0.0233
0.0240
4.21
4.34
Pass
Page No.
10 Minute
5289.9776
5289.9779
5289.9772
0.0228
4.31
10 Minute
5289.9806
5289.9783
5289.9777
5289.9771
5289.9752
0.0248
4.69
10 Minute
5529.9786
5529.9779
5529.9767
0.0233
4.21
10 Minute
5529.9805
5529.9790
5529.9780
5529.9777
5529.9759
0.0241
4.36
: 3 of 3
Download: RAC2V1K DBDC ROUTER Test Report 5GHz band 2,3 TXBF Askey Computer Corp
Mirror Download [FCC.gov]RAC2V1K DBDC ROUTER Test Report 5GHz band 2,3 TXBF Askey Computer Corp
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