UCKG2P UniFi CLOUD KEY GEN2+ Test Report Ubiquiti Networks, Inc.

Ubiquiti Networks, Inc. UniFi CLOUD KEY GEN2+

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Report No. : FR592427-03AL
FCC Test Report
Table of Contents
HISTORY OF THIS TEST REPORT ..................................................................................................................3
SUMMARY OF TEST RESULT .........................................................................................................................4
GENERAL DESCRIPTION ....................................................................................................................5
1.1
1.2
1.3
1.4
Information..............................................................................................................................................5
Testing Applied Standards .....................................................................................................................6
Testing Location Information ..................................................................................................................6
Measurement Uncertainty ......................................................................................................................6
TEST CONFIGURATION OF EUT.........................................................................................................7
2.1
2.2
2.3
2.4
2.5
Test Condition ........................................................................................................................................7
Test Channel Mode ................................................................................................................................7
The Worst Case Measurement Configuration ........................................................................................8
Support Equipment.................................................................................................................................9
Test Setup Diagram .............................................................................................................................10
TRANSMITTER TEST RESULT ..........................................................................................................12
3.1
3.2
3.3
3.4
3.5
3.6
AC Power-line Conducted Emissions ..................................................................................................12
DTS Bandwidth ....................................................................................................................................14
Maximum Conducted Output Power ....................................................................................................15
Power Spectral Density ........................................................................................................................17
Emissions in Non-restricted Frequency Bands ....................................................................................18
Emissions in Restricted Frequency Bands...........................................................................................19
TEST EQUIPMENT AND CALIBRATION DATA ................................................................................23
APPENDIX A. TEST RESULTS OF AC POWER-LINE CONDUCTED EMISSIONS
APPENDIX B. TEST RESULTS OF DTS BANDWIDTH
APPENDIX C. TEST RESULTS OF MAXIMUM CONDUCTED OUTPUT POWER
APPENDIX D. TEST RESULTS OF POWER SPECTRAL DENSITY
APPENDIX E. TEST RESULTS OF EMISSIONS IN NON-RESTRICTED FREQUENCY BANDS
APPENDIX F. TEST RESULTS OF EMISSIONS IN RESTRICTED FREQUENCY BANDS
APPENDIX G. TEST PHOTOS
PHOTOGRAPHS OF EUT V01
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History of this test report
Report No.
Version
Description
Issued Date
FR592427-03AL
01
Initial issue of report
Apr. 19, 2018
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Summary of Test Result
Report
Clause
Ref. Std.
Clause
1.1.2
15.203
Antenna Requirement
PASS
FCC 15.203
3.1
15.207
AC Power-line Conducted Emissions
PASS
FCC 15.207
Test Items
Result
(PASS/FAIL)
Remark
3.2
15.247(a) DTS Bandwidth
PASS
≥500kHz
3.3
15.247(b) Maximum Conducted Output Power
PASS
Power [dBm]:30
3.4
15.247(e) Power Spectral Density
PASS
PSD [dBm/3kHz]:8
3.5
15.247(d) Emissions in Non-restricted Frequency Bands
PASS
Non-Restricted
Bands:
>30 dBc
PASS
Restricted Bands:
FCC 15.209
3.6
15.247(d) Emissions in Restricted Frequency Bands
Reviewed by: Jeremy Lin
Report Producer: Jenny Yang
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General Description
1.1
Information
1.1.1
RF General Information
Frequency Range (MHz)
Bluetooth Mode
Ch. Frequency (MHz)
Channel Number
2400-2483.5
LE
2402-2480
0-39 [40]
Band
Mode
BWch (MHz)
Nant
2.4-2.4835GHz
BT-LE(1Mbps)
1.0
1TX
Note:

Bluetooth LE uses a GFSK (1Mbps) modulation for DSSS.

BWch is the nominal channel bandwidth.
1.1.2
Antenna Information
Ant.
Port
Brand
Model Name
Antenna Type
Connector
Gain (dBi)
internal Antenna
I-PEX
1.1.3
EUT Information
Operational Condition
EUT Power Type
From PoE / From host system
Type of EUT
Stand-alone
Combined (EUT where the radio part is fully integrated within another device)
Combined Equipment - Brand Name / Model No.:
…
Plug-in radio (EUT intended for a variety of host systems)
Host System - Brand Name / Model No.:
…
Other:
1.1.4
Mode Test Duty Cycle
Mode
DC
DCF(dB)
T(s)
VBW(Hz) ≥ 1/T
BT-LE(1Mbps)
0.631
396.875u
3k
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1.2
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

KDB 558074 D01 v04
1.3
Testing Location Information
Testing Location
HWA YA
ADD
No. 52, Huaya 1st Rd., Guishan Dist., Taoyuan City, Taiwan (R.O.C.)
TEL
886-3-327-3456
FAX
886-3-327-0973
Test site Designation No. TW1190 with FCC.
JHUBEI
ADD
No.8, Ln. 724, Bo'ai St., Zhubei City, Hsinchu County, Taiwan (R.O.C.)
TEL
886-3-656-9065
FAX
886-3-656-9085
Test site Designation No. TW0006 with FCC.
1.4
Test Condition
Test Site No.
Test Engineer
Test Environment
Test Date
AC Conduction
CO04-HY
Kevin
23.5°C / 56%
02/Apr/2018
RF Conducted
TH07-HY
Ryan
23.3°C / 65%
17/Jan/2018
Radiated
03CH02-HY
Andy
22.5°C / 58%
03/Apr/2018
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
Conducted Emission (150kHz ~ 30MHz)
3.6 dB
Confidence levels of 95%
Radiated Emission (9kHz ~ 30MHz)
3.0 dB
Confidence levels of 95%
Radiated Emission (30MHz ~ 1,000MHz)
4.3 dB
Confidence levels of 95%
Radiated Emission (1GHz ~ 18GHz)
3.9 dB
Confidence levels of 95%
Radiated Emission (18GHz ~ 40GHz)
3.5 dB
Confidence levels of 95%
Conducted Emission
1.3 dB
Confidence levels of 95%
Temperature
0.7 °C
Confidence levels of 95%
Humidity
4%
Confidence levels of 95%
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Test Configuration of EUT
2.1
Test Condition
2.2
RF Conducted
Abbreviation
Remark
TnomVnom
Tnom
20°C
Vnom
3.8V
Test Channel Mode
Test Software Version
QRCT v3.0.265.0
Mode
Power Setting
BT-LE(1Mbps)
2402MHz
default
2440MHz
default
2480MHz
default
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2.3
The Worst Case Measurement Configuration
The Worst Case Mode for Following Conformance Tests
Tests Item
AC power-line conducted emissions
Condition
AC power-line conducted measurement for line and neutral
CTX
Operating Mode
PoE mode
USB mode
The Worst Case Mode for Following Conformance Tests
DTS Bandwidth
Maximum Conducted Output Power
Power Spectral Density
Emissions in Non-restricted Frequency Bands
Tests Item
Conducted measurement at transmit chains
Test Condition
The Worst Case Mode for Following Conformance Tests
Tests Item
Test Condition
Emissions in Restricted Frequency Bands
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.
Operating Mode < 1GHz CTX
PoE mode
USB mode
Operating Mode > 1GHz CTX
X Plane
Y Plane
Z Plane
Orthogonal Planes of
EUT
Worst Planes of EUT
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2.4
Support Equipment
Support Equipment – AC Conduction
No.
Equipment
Brand Name
Model Name
FCC ID
Notebook
DELL
E4300
DoC
AC adapter for NB
DELL
LA65NS2-01
PoE
UBIQUITI
GP-H480-050G
Support Equipment – RF Conducted
No.
Equipment
Brand Name
Model Name
FCC ID
Notebook
DELL
E4300
DoC
Adapter for NB
DELL
HA65NM130
DoC
Support Equipment – Radiated Emission
No.
Equipment
Brand Name
Model Name
FCC ID
Notebook
DELL
E4300
DoC
AC adapter for NB
DELL
LA65NS2-01
PoE
UBIQUITI
GP-H480-050G
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2.5
Test Setup Diagram
Test Setup Diagram – AC Line Conducted Emission Test – PoE mode
Item
Connection
Shielded
Length(m) Remark
AC Power line
No
1.5m
RJ45 Cable
No
10m
Test Setup Diagram – AC Line Conducted Emission Test – USB mode
Item
Connection
Shielded
Length(m) Remark
AC Power line
No
1.5m
DC Power line
No
1.5m
USB Cable
No
1.0m
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Test Setup Diagram - Radiated Test – PoE mode
Item
Connection
Shielded
Length(m) Remark
AC Power line
No
1.5m
RJ45 Cable
No
10m
Test Setup Diagram - Radiated Test – USB mode
Item
Connection
Shielded
Length(m) Remark
USB Cable
No
1.0m
DC Power line
No
1.5m
AC Power line
No
1.8m
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Transmitter Test Result
3.1
AC Power-line Conducted Emissions
3.1.1
AC Power-line Conducted Emissions Limit
AC Power-line Conducted Emissions Limit
Frequency Emission (MHz)
Quasi-Peak
Average
0.15-0.5
66 - 56 *
56 - 46 *
0.5-5
56
46
5-30
60
50
Note 1: * Decreases with the logarithm of the frequency.
3.1.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.1.3
Test Procedures
Test Method

3.1.4
Refer as ANSI C63.10-2013, clause 6.2 foray power-line conducted emissions.
Test Setup
AC Power-line Conducted Emissions
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3.1.5
Report No. : FR592427-03AL
Test Result of AC Power-line Conducted Emissions
Refer as Appendix A
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3.2
DTS Bandwidth
3.2.1
6dB Bandwidth Limit
6dB Bandwidth Limit
Systems using digital modulation techniques:

3.2.2
6 dB bandwidth ≥ 500 kHz.
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.2.3
Test Procedures
Test Method

For the emission bandwidth shall be measured using one of the options below:
Refer as KDB 558074, clause 8.1 Option 1 for 6 dB bandwidth measurement.
Refer as KDB 558074, clause 8.2 Option 2 for 6 dB bandwidth measurement.
Refer as ANSI C63.10, clause 6.9.3 for occupied bandwidth testing.
Refer as RSS-Gen, clause 6.6 for occupied bandwidth testing.
3.2.4
Test Setup
Emission Bandwidth
3.2.5
Test Result of Emission Bandwidth
Refer as Appendix B
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3.3
Maximum Conducted Output Power
3.3.1
Maximum Conducted Output Power Limit
Report No. : FR592427-03AL
Maximum Conducted Output Power Limit

If GTX ≤ 6 dBi, then POut ≤ 30 dBm (1 W)

Point-to-multipoint systems (P2M): If GTX > 6 dBi, then POut = 30 – (GTX – 6) dBm

Point-to-point systems (P2P): If GTX > 6 dBi, then POut = 30 – (GTX – 6)/3 dBm

Smart antenna system (SAS):
Single beam: If GTX > 6 dBi, then POut = 30 – (GTX – 6)/3 dBm
Overlap beam: If GTX > 6 dBi, then POut = 30 – (GTX – 6)/3 dBm
Aggregate power on all beams: If GTX > 6 dBi, then POut = 30 – (GTX – 6)/3 + 8dB dBm
e.i.r.p. Power Limit:

2400-2483.5 MHz Band

Point-to-multipoint systems (P2M): Peirp ≤ 36 dBm (4 W)

Point-to-point systems (P2P): Peirp ≤ MAX(36, [POut + GTX]) dBm

Smart antenna system (SAS)
Single beam: Peirp ≤ MAX(36, POut + GTX) dBm
Overlap beam: Peirp ≤ MAX(36, POut + GTX) dBm
Aggregate power on all beams: Peirp ≤ MAX(36, [POut + GTX + 8]) dBm
POut = maximum peak conducted output power or maximum conducted output power in dBm,
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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3.3.3
Test Procedures
Test Method

Maximum Peak Conducted Output Power
Refer as KDB 558074, clause 9.1.1 Option 1 (RBW ≥ EBW method).
Refer as KDB 558074, clause 9.1.2 Option 2 (integrated band power method)
Refer as KDB 558074, clause 9.1.3 Option 3 (peak power meter for VBW ≥ DTS BW)

Maximum Average Conducted Output Power
Duty cycle ≥ 98%
Refer as KDB 558074, clause 9.2.2.4 Method AVGSA-2 (spectral trace averaging).
Duty cycle < 98%
Refer as KDB 558074, clause 9.2.2.5 Method AVGSA-2 Alt. (slow sweep speed)
RF power meter and average over on/off periods with duty factor or gated trigger
Refer as KDB 558074, clause 9.2.3.1 Method AVGPM (using an RF average power meter).

3.3.4
For conducted measurement.

If the EUT supports multiple transmit chains using options given below:
Refer as 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
Maximum Conducted Output Power (Power Meter)
3.3.5
Test Result of Maximum Conducted Output Power
Refer as Appendix C
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3.4
Power Spectral Density
3.4.1
Power Spectral Density Limit
Power Spectral Density Limit

3.4.2
Power Spectral Density (PSD)≤8 dBm/3kHz
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.4.3
Test Procedures
Test Method

Peak power spectral density procedures that the same method as used to determine the conducted
output power. If maximum peak conducted output power was measured to demonstrate compliance to
the output power limit, then the peak PSD procedure below (Method PKPSD) shall be used. If maximum
conducted output power was measured to demonstrate compliance to the output power limit, then one
of the average PSD procedures shall be used, as applicable based on the following criteria (the peak
PSD procedure is also an acceptable option).
Refer as KDB 558074, clause 10.2 Method PKPSD (RBW=3-100kHz; Detector=peak).

For conducted measurement.

If The EUT supports multiple transmit chains using options given below:

3.4.4
Measure and sum the spectra across the outputs. Refer as 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.
Test Setup
Power Spectral Density
3.4.5
Test Result of Power Spectral Density
Refer as Appendix D
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FCC Test Report
3.5
Emissions in Non-restricted Frequency Bands
3.5.1
Emissions in Non-restricted Frequency Bands Limit
Un-restricted Band Emissions Limit
RF output power procedure
Limit (dB)
Peak output power procedure
20
Average output power procedure
30
Note 1: If the peak output power procedure is used to measure the fundamental emission power to
demonstrate compliance to requirements, then the peak conducted output power measured within
any 100 kHz outside the authorized frequency band shall be attenuated by at least 20 dB relative to
the maximum measured in-band peak PSD level.
Note 2: If the average output power procedure is used to measure the fundamental emission power to
demonstrate compliance to requirements, then the power in any 100 kHz outside of the authorized
frequency band shall be attenuated by at least 30 dB relative to the maximum measured in-band
average PSD level.
3.5.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
3.5.3
Test Procedures
Test Method

3.5.4
Refer as KDB 558074, clause 11 for unwanted emissions into non-restricted bands.
Test Setup
Emissions in Non-restricted Frequency Bands
3.5.5
Test Result of Emissions in Non-restricted Frequency Bands
Refer as Appendix E
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3.6
Emissions in Restricted Frequency Bands
3.6.1
Emissions in Restricted Frequency Bands Limit
Restricted Band Emissions 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 below30 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.
Note 3: Using the distance of 1m during the test for above 18 GHz, and the test value to correct for the
distance factor at 3m.
3.6.2
Measuring Instruments
Refer a test equipment and calibration data table in this test report.
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3.6.3
Test Procedures
Test Method

The average emission levels shall be measured in [duty cycle ≥ 98 or duty factor].

Refer as ANSI C63.10, clause 6.10.3 band-edge testing shall be performed at the lowest frequency
channel and highest frequency channel within the allowed operating band.

For the transmitter unwanted emissions shall be measured using following options below:

Refer as KDB 558074, clause 12 for unwanted emissions into restricted bands.
Refer as KDB 558074, clause 12.2.5.3 (ANSI C63.10, clause 4.1.4.2.3), Reduced VBW≥1/T.
Refer as KDB 558074, clause 12.2.4 measurement procedure peak limit.


For the transmitter band-edge emissions shall be measured using following options below:

Refer as KDB 558074 clause 13.1, When the performing peak or average radiated measurements,
emissions within 2 MHz of the authorized band edge may be measured using the marker-delta
method described below.

Refer as KDB 558074, clause 13.2 (ANSI C63.10, clause 6.10.6) for marker-delta method for
band-edge measurements.

Refer as KDB 558074, clause 13.3 for narrower resolution bandwidth (100kHz) using the band
power and summing the spectral levels (i.e., 1 MHz).
For conducted and cabinet radiation measurement, refer as KDB 558074, clause 12.2.2.

For conducted unwanted emissions into restricted bands (absolute emission limits).
Devices with multiple transmit chains using options given below:
(1) Measure and sum the spectra across the outputs or
(2) Measure and add 10 log(N) dB

For KDB 662911 The methodology described here may overestimate array gain, thereby resulting
in apparent failures to satisfy the out-of-band limits even if the device is actually compliant. In such
cases, compliance may be demonstrated by performing radiated tests around the frequencies at
which the apparent failures occurred.
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3.6.4
Test Setup
Emissions in Restricted Frequency Bands
9kHz ~30MHz
30MHz~1GHz
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Above 1GHz
3.6.5
Test Result of Emissions in Restricted Frequency Bands (Below 30MHz)
The amplitude of spurious emissions which are attenuated by more than 20dB below the permissible value has no
need to be reported.
3.6.6
Test Result of Emissions in Restricted Frequency Bands
Refer as Appendix F
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Test Equipment and Calibration Data
Instrument for AC Conduction
Instrument
Manufacturer
Model No.
Serial No.
Spec.
Calibration
Date
Calibration Due
Date
EMC Receiver
R&S
ESR3
102052
9KHz ~ 3.6GHz
29/Apr/2017
28/Apr/2018
LISN
R&S
ENV216
101295
9kHz ~ 30MHz
17/Nov/2017
16/Nov/2018
RF Cable-CON
HUBER+SUHNER
RG213/U
07611832020001
9kHz ~ 30MHz
06/Oct/2017
05/Oct/2018
AC POWER
APC
AFC-11005G
F310050055
47Hz~63Hz
5~300V
NCR
NCR
Impuls
Begrenzer
Pulse Limiter
SCHWARZBECK
VTSD 9561-F
9561-F041
9 kHz ~ 30 MHz
12/Oct/2017
11/Oct/2018
Manufacturer
Model No.
Serial No.
Spec.
Calibration
Date
Calibration Due
Date
R&S
FSV 40
101515
9kHz~40GHz
08/Dec/2017
07/Dec/2018
Power Sensor
Anritsu
MA2411B
1339407
300MHz ~ 40GHz
10/May/2017
09/May/2018
Power Meter
Anritsu
ML2495A
1517010
300MHz ~ 40GHz
06/Nov/2017
05/Nov/2018
RF Cable-0.2m
HUBER+SUHNER
SUCOFLEX_104
MY10709/4
30MHz ~ 26.5GHz
25/Aug/2017
24/Aug/2018
RF Cable-0.2m
HUBER+SUHNER
SUCOFLEX_104
MY10712/4
30MHz ~ 26.5GHz
25/Aug/2017
24/Aug/2018
RF Cable-0.5m
HUBER+SUHNER
SUCOFLEX_104
MY10713/4
30MHz ~ 26.5GHz
25/Aug/2017
24/Aug/2018
R&S
SMR40
100116
10MHz ~ 40GHz
27/Jul/2017
26/Jul/2018
NCR : Non-Calibration Require
Instrument for Conducted Test
Instrument
Spectrum
Analyzer
Signal
Generator
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Instrument for Radiated Test
Instrument
Manufacturer
Model No.
Serial No.
Spec.
Calibration
Date
Calibration Due
Date
Spectrum
Analyzer
R&S
FSP40
100305
9KHz - 40GHz
12/Dec/2017
11/Dec/2018
3m Semi
Anechoic
SIDT
FRANKONIA
SAC-3M
03CH02-HY
30MHz-1GHz
20/Oct/2017
19/Oct/2018
3m Semi
Anechoic
SIDT
FRANKONIA
SAC-3M
03CH02-HY
1GHz ~ 18GHz
27/Oct/2017
26/Oct/2018
Amplifier
Agilent
8447D
2944A11149
100KHz-1.3GHz
29/Jun/2017
28/Jun/2018
Amplifier
Ketsight
8449B
3008A02602
1GHz-26.5GHz
19/Sep/2017
18/Sep/2018
Horn Antenna
SCHWARZBECK
BBHA9120D
BBHA9120D
01531
1GHz-18GHz
11/May/2017
10/May/2018
Horn Antenna
SCHWARZBECK
BBHA9170
BBHA9170154
18GHz-40GHz
06/Feb/2018
05/Feb/2019
Bilog Antenna
SCHAFFNER
CBL6112B
2723
30MHz-1GHz
09/Sep/2017
08/Sep/2018
Loop Antenna
TESEQ
HLA 6120
31244
9KHz-30MHz
02/Mar/2017
01/Mar/2018
RF Cable-high
SUHNER
SUCOFLEX104
MY34918/4
1GHz ~ 40GHz
19/Jan/2018
18/Jan/2019
RF Cable-R03m
Jye Bao
RG142
CB017
9kHz ~ 1GHz
19/Jan/2018
18/Jan/2019
Receiver
R&S
ESU3
102052
9kHz ~ 3.6GHz
29/Apr/2017
28/Apr/2018
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Appendix A
AC Power-line Conducted Emissions
AC Power-line Conducted Emissions Result
Operating Mode
Operating Function
PoE mode
Power Phase
Neutral
Note 1: “>20dB” means emission levels that exceed the level of 20 dB below the applicable limit.
Note 2: “N/F” means Nothing Found emissions (No emissions were detected.)
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Appendix A
AC Power-line Conducted Emissions
AC Power-line Conducted Emissions Result
Operating Mode
Operating Function
PoE mode
Power Phase
Line
Note 1: “>20dB” means emission levels that exceed the level of 20 dB below the applicable limit.
Note 2: “N/F” means Nothing Found emissions (No emissions were detected.)
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Appendix A
AC Power-line Conducted Emissions
AC Power-line Conducted Emissions Result
Operating Mode
Operating Function
USB mode
Power Phase
Neutral
Note 1: “>20dB” means emission levels that exceed the level of 20 dB below the applicable limit.
Note 2: “N/F” means Nothing Found emissions (No emissions were detected.)
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Appendix A
AC Power-line Conducted Emissions
AC Power-line Conducted Emissions Result
Operating Mode
Operating Function
USB mode
Power Phase
Line
Note 1: “>20dB” means emission levels that exceed the level of 20 dB below the applicable limit.
Note 2: “N/F” means Nothing Found emissions (No emissions were detected.)
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Appendix B
EBW-DTS Result
Summary
Mode
Max-N dB
Max-OBW
(Hz)
(Hz)
2.4-2.4835GHz
BT-LE(1Mbps)
680k
1.061M
ITU-Code
Min-N dB
Min-OBW
(Hz)
(Hz)
1M06F1D
676.25k
1.056M
Max-N dB = Maximum 6dB down bandwidth; Max-OBW = Maximum 99% occupied bandwidth;
Min-N dB = Minimum 6dB down bandwidth; Min-OBW = Minimum 99% occupied bandwidth;
Result
Mode
Result
Limit
Port 1-N dB
Port 1-OBW
(Hz)
(Hz)
(Hz)
BT-LE(1Mbps)
2402MHz
Pass
500k
678.75k
1.058M
2440MHz
Pass
500k
676.25k
1.061M
2480MHz
Pass
500k
680k
1.056M
Port X-N dB = Port X 6dB down bandwidth; Port X-OBW = Port X 99% occupied bandwidth;
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Appendix B
EBW-DTS Result
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Appendix C
AV Power-DTS Result
Summary
Mode
Power
Power
(dBm)
(W)
2.4-2.4835GHz
BT-LE(1Mbps)
1.04
0.00127
Result
Mode
Result
Gain
Power
Power Limit
(dBi)
(dBm)
(dBm)
BT-LE(1Mbps)
2402MHz
Pass
0.00
-0.97
30.00
2440MHz
Pass
0.00
-2.37
30.00
2480MHz
Pass
0.00
1.04
30.00
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Appendix D
PSD-DTS Result
Summary
Mode
PD
(dBm/RBW)
2.4-2.4835GHz
BT-LE(1Mbps)
-16.29
RBW=3kHz.
Result
Mode
Result
Gain
PD
PD Limit
(dBi)
(dBm/RBW)
(dBm/RBW)
BT-LE(1Mbps)
2402MHz
Pass
0.00
-17.96
8.00
2440MHz
Pass
0.00
-17.88
8.00
2480MHz
Pass
0.00
-16.29
8.00
RBW=3kHz.
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Appendix D
PSD-DTS Result
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Appendix E
CSE Non-restricted Band-DTS Result
Summary
Mode
Result
Ref
Ref
Limit
Freq
Level
Freq
Level
Freq
Level
Freq
Level
(Hz)
(dBm)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
Port
2.4-2.4835GHz
BT-LE(1Mbps)
Pass
2.480327G
-0.32
-30.32
147.216M
-62.26
2.399976G
-58.00
2.483724G
-62.98
15.104877G
-53.14
Mode
Result
Port
Result
Ref
Ref
Limit
Freq
Level
Freq
Level
Freq
Level
Freq
Level
(Hz)
(dBm)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
(Hz)
(dBm)
BT-LE(1Mbps)
2402MHz
Pass
2.480327G
-0.32
-30.32
147.216M
-62.26
2.399976G
-58.00
2.483724G
-62.98
15.104877G
-53.14
2440MHz
Pass
2.480327G
-0.32
-30.32
147.216M
-62.08
2.398732G
-64.55
2.485188G
-63.60
15.349722G
-55.04
2480MHz
Pass
2.480327G
-0.32
-30.32
147.216M
-60.69
2.398808G
-64.11
2.4836G
-62.31
15.062663G
-54.24
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Appendix E
CSE Non-restricted Band-DTS Result
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Appendix F.1
RSE TX below 1GHz Result
Summary
Mode
Result
Type
Freq
Level
Limit
Margin
Factor
Dist
(Hz)
(dBuV/m)
(dBuV/m)
(dB)
(dB)
(m)
Condition
Azimuth
Height
(°)
(m)
Comments
2.4-2.4835GHz
BT-LE(1Mbps)
Pass
QP
30M
38.08
40.00
-1.92
-8.21
Vertical
207
1.34
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Appendix F.1
RSE TX below 1GHz Result
Result
Mode
Result
Type
Freq
Level
Limit
Margin
Factor
Dist
(Hz)
(dBuV/m)
(dBuV/m)
(dB)
(dB)
(m)
Condition
Azimuth
Height
(°)
(m)
Comments
BT-LE(1Mbps)
2440MHz
Pass
PK
123.12M
31.22
43.50
-12.28
-14.17
Horizontal
307
2.35
2440MHz
Pass
PK
231.76M
33.90
46.00
-12.10
-15.06
Horizontal
307
2.35
2440MHz
Pass
PK
276.38M
43.25
46.00
-2.75
-12.35
Horizontal
307
2.35
2440MHz
Pass
PK
315.18M
38.51
46.00
-7.49
-11.47
Horizontal
307
2.35
2440MHz
Pass
PK
418M
31.51
46.00
-14.49
-7.78
Horizontal
307
2.35
2440MHz
Pass
PK
710.94M
31.06
46.00
-14.94
-4.23
Horizontal
307
2.35
2440MHz
Pass
PK
43.58M
29.47
40.00
-10.53
-15.40
Vertical
247
1.98
2440MHz
Pass
PK
282.2M
37.15
46.00
-8.85
-12.31
Vertical
247
1.98
2440MHz
Pass
PK
315.18M
33.87
46.00
-12.13
-11.47
Vertical
247
1.98
2440MHz
Pass
PK
418M
30.06
46.00
-15.94
-7.78
Vertical
247
1.98
2440MHz
Pass
PK
557.68M
30.03
46.00
-15.97
-4.89
Vertical
247
1.98
2440MHz
Pass
QP
30M
38.08
40.00
-1.92
-8.21
Vertical
207
1.34
2440MHz
Pass
PK
56.710145M
34.14
40.00
-5.86
-14.87
Horizontal
1.00
2440MHz
Pass
PK
149.492754M
30.74
43.50
-12.76
-10.27
Horizontal
1.00
2440MHz
Pass
PK
274.608696M
38.31
46.00
-7.69
-6.33
Horizontal
1.00
2440MHz
Pass
PK
349.115942M
32.81
46.00
-13.19
-4.87
Horizontal
1.00
2440MHz
Pass
PK
450.333333M
31.86
46.00
-14.14
-2.94
Horizontal
1.00
2440MHz
Pass
PK
869.26087M
32.15
46.00
-13.85
2.21
Horizontal
1.00
2440MHz
Pass
PK
58.115942M
33.33
40.00
-6.67
-14.98
Vertical
360
1.00
2440MHz
Pass
PK
148.086957M
24.64
43.50
-18.86
-10.17
Vertical
360
1.00
2440MHz
Pass
PK
274.608696M
30.75
46.00
-15.25
-6.33
Vertical
360
1.00
2440MHz
Pass
PK
446.115942M
29.67
46.00
-16.33
-3.00
Vertical
360
1.00
2440MHz
Pass
PK
533.275362M
36.11
46.00
-9.89
-1.83
Vertical
360
1.00
2440MHz
Pass
PK
921.275362M
33.07
46.00
-12.93
2.95
Vertical
360
1.00
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Appendix F.1
RSE TX below 1GHz Result
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Appendix F.1
RSE TX below 1GHz Result
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Appendix F.1
RSE TX below 1GHz Result
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Appendix F.1
RSE TX below 1GHz Result
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Appendix F.2
RSE TX above 1GHz Result
Summary
Mode
Result
Type
Freq
Level
Limit
Margin
Factor
Dist
(Hz)
(dBuV/m)
(dBuV/m)
(dB)
(dB)
(m)
Condition
Azimuth
Height
(°)
(m)
Comments
2.4-2.4835GHz
BT-LE(1Mbps)
Pass
AV
2.495G
47.60
54.00
-6.40
32.58
Horizontal
313
2.67
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Appendix F.2
RSE TX above 1GHz Result
Result
Mode
Result
Type
Freq
Level
Limit
Margin
Factor
Dist
(Hz)
(dBuV/m)
(dBuV/m)
(dB)
(dB)
(m)
Condition
Azimuth
Height
(°)
(m)
Comments
BT-LE(1Mbps)
2402MHz
Pass
AV
2.3772G
47.04
54.00
-6.96
32.19
Horizontal
310
1.73
2402MHz
Pass
AV
2.402G
78.21
Inf
-Inf
32.28
Horizontal
310
1.73
2402MHz
Pass
PK
2.3738G
59.21
74.00
-14.79
32.17
Horizontal
310
1.73
2402MHz
Pass
PK
2.4022G
79.65
Inf
-Inf
32.28
Horizontal
310
1.73
2402MHz
Pass
AV
2.3726G
46.89
54.00
-7.11
32.17
Vertical
164
3.06
2402MHz
Pass
AV
2.402G
74.15
Inf
-Inf
32.28
Vertical
164
3.06
2402MHz
Pass
PK
2.3834G
59.15
74.00
-14.85
32.21
Vertical
164
3.06
2402MHz
Pass
PK
2.4022G
75.84
Inf
-Inf
32.28
Vertical
164
3.06
2402MHz
Pass
AV
4.811106G
33.50
54.00
-20.50
3.69
Horizontal
315
1.56
2402MHz
Pass
PK
4.807433G
45.86
74.00
-28.14
3.68
Horizontal
315
1.56
2402MHz
Pass
AV
4.812463G
31.95
54.00
-22.05
3.69
Vertical
319
1.04
2402MHz
Pass
PK
4.797772G
45.73
74.00
-28.27
3.65
Vertical
319
1.04
2440MHz
Pass
AV
2.3864G
46.89
54.00
-7.11
32.22
Horizontal
168
1.76
2440MHz
Pass
AV
2.44G
74.76
Inf
-Inf
32.40
Horizontal
168
1.76
2440MHz
Pass
AV
2.4896G
47.45
54.00
-6.55
32.56
Horizontal
168
1.76
2440MHz
Pass
PK
2.346G
59.83
74.00
-14.17
32.07
Horizontal
168
1.76
2440MHz
Pass
PK
2.44G
76.57
Inf
-Inf
32.40
Horizontal
168
1.76
2440MHz
Pass
PK
2.499998G
59.95
74.00
-14.05
32.59
Horizontal
168
1.76
2440MHz
Pass
AV
2.3456G
46.75
54.00
-7.25
32.06
Vertical
163
2.69
2440MHz
Pass
AV
2.44G
71.08
Inf
-Inf
32.40
Vertical
163
2.69
2440MHz
Pass
AV
2.4992G
47.41
54.00
-6.59
32.59
Vertical
163
2.69
2440MHz
Pass
PK
2.3864G
59.19
74.00
-14.81
32.22
Vertical
163
2.69
2440MHz
Pass
PK
2.4396G
73.15
Inf
-Inf
32.40
Vertical
163
2.69
2440MHz
Pass
PK
2.4916G
60.46
74.00
-13.54
32.56
Vertical
163
2.69
2440MHz
Pass
AV
4.87976G
35.45
54.00
-18.55
3.88
Horizontal
89
1.76
2440MHz
Pass
PK
4.877565G
46.10
74.00
-27.90
3.88
Horizontal
89
1.76
2440MHz
Pass
AV
4.879691G
33.14
54.00
-20.86
3.88
Vertical
57
1.00
2440MHz
Pass
PK
4.878583G
46.85
74.00
-27.15
3.88
Vertical
57
1.00
2480MHz
Pass
AV
2.48G
83.60
Inf
-Inf
32.53
Horizontal
313
2.67
2480MHz
Pass
AV
2.495G
47.60
54.00
-6.40
32.58
Horizontal
313
2.67
2480MHz
Pass
PK
2.4798G
84.84
Inf
-Inf
32.53
Horizontal
313
2.67
2480MHz
Pass
PK
2.4914G
59.63
74.00
-14.37
32.56
Horizontal
313
2.67
2480MHz
Pass
AV
2.48G
75.27
Inf
-Inf
32.53
Vertical
61
3.19
2480MHz
Pass
AV
2.497G
47.41
54.00
-6.59
32.58
Vertical
61
3.19
2480MHz
Pass
PK
2.4798G
76.91
Inf
-Inf
32.53
Vertical
61
3.19
2480MHz
Pass
PK
2.4892G
59.40
74.00
-14.60
32.56
Vertical
61
3.19
2480MHz
Pass
AV
4.960519G
34.41
54.00
-19.59
4.14
Horizontal
351
1.58
2480MHz
Pass
PK
4.960519G
46.25
74.00
-27.75
4.14
Horizontal
351
1.58
2480MHz
Pass
AV
4.962635G
33.77
54.00
-20.23
4.15
Vertical
232
1.72
2480MHz
Pass
PK
4.955768G
46.49
74.00
-27.51
4.12
Vertical
232
1.72
SPORTON INTERNATIONAL INC.
Page No.
: F2 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F3 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F4 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F5 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F6 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F7 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F8 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F9 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F10 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F11 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F12 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F13 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Appendix F.2
RSE TX above 1GHz Result
SPORTON INTERNATIONAL INC.
Page No.
: F14 of F14
TEL : 886-3-327-3456
FAX : 886-3-327-0973
592427-03
Download: UCKG2P UniFi CLOUD KEY GEN2+ Test Report  Ubiquiti Networks, Inc.
Mirror Download [FCC.gov]UCKG2P UniFi CLOUD KEY GEN2+ Test Report  Ubiquiti Networks, Inc.
Document ID3822360
Application IDm8kPNU61klUi9F7dXCBQZQ==
Document DescriptionTest Report
Short Term ConfidentialNo
Permanent ConfidentialNo
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Document TypeTest Report
Display FormatAdobe Acrobat PDF - pdf
Filesize109.69kB (1371121 bits)
Date Submitted2018-04-19 00:00:00
Date Available2018-04-20 00:00:00
Creation Date2018-04-19 09:27:56
Producing SoftwareAcrobat Distiller 15.0 (Windows)
Document Lastmod2018-04-19 15:38:24
Document TitleTest Report
Document CreatorPScript5.dll Version 5.2.2
Document Author: JennyYang

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