LHGG60AD RouterBOARD LHG G-60ad Test Report FCC RF _FR760928 Mikrotikls SIA

Mikrotikls SIA RouterBOARD LHG G-60ad

FCC ID Filing: TV7LHGG60AD

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FCC Radio Test Report
Report No. : FR760928
Table of Contents
GENERAL DESCRIPTION ....................................................................................................................5
1.1
1.2
1.3
1.4
1.5
1.6
1.7
1.8
Information..............................................................................................................................................5
Additional Information Provided by the Submitter ..................................................................................6
Accessories ............................................................................................................................................7
Support Equipment,................................................................................................................................7
EUT Operation during Test ....................................................................................................................7
Test Setup Diagram ...............................................................................................................................8
Testing Applied Standards ...................................................................................................................10
Testing Location ...................................................................................................................................10
TEST CONFIGURATION OF EQUIPMENT UNDER TEST ................................................................11
2.1
2.2
2.3
Test Channel Frequencies ...................................................................................................................11
Conformance Tests and Related Test Frequencies ............................................................................11
Far Field Boundary Calculations ..........................................................................................................12
TRANSMITTER TEST RESULT ..........................................................................................................13
3.1
3.2
3.3
3.4
3.5
3.6
3.7
AC Power Conducted Emissions .........................................................................................................13
Occupied Bandwidth ............................................................................................................................18
EIRP Power ..........................................................................................................................................23
Peak Conducted Power........................................................................................................................26
Transmitter Spurious Emissions...........................................................................................................28
Frequency Stability...............................................................................................................................38
Operation Restriction and Group Installation .......................................................................................41
TEST EQUIPMENT AND CALIBRATION DATA ................................................................................42
MEASUREMENT UNCERTAINTY ......................................................................................................45
APPENDIX A. TEST PHOTOS…………………………………………………………………………...……A1 ~ A5
PHOTOGRAPHS OF EUT V01
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FCC Radio Test Report
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Summary of Test Result
Standard Requirements and Conformance Test Specifications
Report
Ref. Std.
Clause
Clause
Description
Result
Remark
3.1
FCC 15.207
AC Power Conducted Emissions
Complied
3.2
FCC 15.255(d)
Occupied Bandwidth
Complied
3.3
FCC 15.255(b)(1)
EIRP Power
Complied
3.4
FCC 15.255(d)
Peak Conducted Power
Complied
3.5
FCC 15.255(c)
Transmitter Spurious Emissions
Complied
3.6
FCC 15.255(e)
Frequency Stability
Complied
3.7
FCC 15.255(a),(g)
Operation Restriction and Group Installation
Complied
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FCC Radio Test Report
Report No. : FR760928
Revision History
REPORT NO.
VERSION
DESCRIPTION
ISSUED DATE
FR760928
Rev. 01
Initial issue of report
Feb. 12, 2018
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FCC Radio Test Report
General Description
1.1
Information
1.1.1
RF General Information
Report No. : FR760928
RF General Information
Frequency Range
57-71 GHz
The Channel Plan(s)
Channel 1: 58.32 GHz
Channel 2: 60.48 GHz
Channel 3: 62.64 GHz
1.1.2
Antenna Information
Ant.
Brand
Model Name
Antenna Type
Connector
Gain (dBi)
Mikrotik
60G-phased-array
Parabolic Dish Antenna
Soldered
42
1.1.3
EUT Power Type
EUT Power Type
1.1.4
From PoE
Equipment Use Condition
Equipment Use Condition
Fixed field disturbance sensors at 61-61.5GHz
Except fixed field disturbance sensors at 61-61.5GHz
Except fixed field disturbance sensors
1.1.5
User Condition
Intended Operation
Indoor
Outdoor
1.1.6
Duty Cycle
Duty Cycle
The transmitter is intended for
Low Channel
Duty Cycle Factor
100.00 %
0.00
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1.2
Additional Information Provided by the Submitter
1.2.1
Product Details
IEEE 802.11ad Modulation Scheme
MCS Index
Modulation
Code rate
Data rate (Mbit/s)
/-2BPSK
1/2
27.5
/-2BPSK
1/2
385
/-2BPSK
1/2
770
/-2BPSK
5/8
962.5
/-2BPSK
3/4
1155
/-2BPSK
13/16
1251.25
/-2QPSK
1/2
1540
/-2QPSK
5/8
1925
/-2QPSK
3/4
2310
/-2QPSK
13/16
2502.5
10
/2-16QAM
1/2
3080
11
/2-16QAM
5/8
3850
12
/2-16QAM
3/4
4620
The Channel Bandwidth is 2.16GHz
Can the transmitter operate un-modulated:
Yes
No
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FCC Radio Test Report
1.3
Report No. : FR760928
Accessories
Accessories
No.
Equipment
Name
Brand
Name
Model Name
Adapter
MLF
MLF-A00122400380U0141
PoE
MikroTik
RBGPOE
Rating
Input: 100-240V ~ 50/60Hz, 0.4Amax
Output: 24V, 0.38A
Input: 9-48V
Others
Standing dock (Round type)*1
Standing dock (Long type)*2
1.4
Support Equipment,
For AC Power Conducted Emissions test:
Support Equipment
No.
Equipment
Brand Name
Model Name
FCC ID
NB
DELL
E6430
DoC
For other tests:
Support Equipment
No.
Equipment
Brand Name
Model Name
FCC ID
NB
ACER
TravelMate P645
DoC
1.5
EUT Operation during Test
During the test, executed the test program to control the EUT continuously transmit RF signal.
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FCC Radio Test Report
1.6
Report No. : FR760928
Test Setup Diagram
Test Setup Diagram - AC Power Conducted Emissions
Item
Connection
Shielded
Length
Power cable
No
1.5m
RJ-45 cable
No
1.5m
RJ-45 cable
No
1.5m
Ground cable
No
1.5m
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Report No. : FR760928
Test Setup Diagram - Transmitter Spurious Emissions
Item
Connection
Shielded
Length
RJ-45 cable
No
10m
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FCC Radio Test Report
1.7
Report No. : FR760928
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 15.255
 ANSI C63.10-2013 Section 9. “Procedures for testing millimeter-wave systems”
1.8
Testing Location
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
886-3-327-0973
886-3-656-9085
Test Site No.
CO01-CB
03CH01-CB
TH01-CB
Test site Designation No. TW0006 with FCC.
Test site registered number IC 4086D with Industry Canada.
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Report No. : FR760928
Test Configuration of Equipment under Test
2.1
Test Channel Frequencies
Test Channel Frequencies Configuration
2.2
Low Channel (GHz)
58.32
Middle Channel (GHz)
60.48
High Channel (GHz)
62.64
Conformance Tests and Related Test Frequencies
Test Item
AC Power Conducted Emissions
Test Frequencies (GHz)
CTX
Occupied Bandwidth
58.32, 60.48, 62.64
EIRP Power
58.32, 60.48, 62.64
Peak Conducted Power
58.32, 60.48, 62.64
Transmitter Spurious Emissions (below 1 GHz)
CTX
Transmitter Spurious Emissions (1 GHz-40 GHz)
58.32, 60.48, 62.64
Transmitter Spurious Emissions (above 40 GHz)
58.32, 60.48, 62.64
Frequency Stability
Un-Modulation
Note: The EUT can only be used at standing position.
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2.3
Report No. : FR760928
Far Field Boundary Calculations
The far-field boundary is given as:
far field = (2 * L^2) /λ
where:
L = Largest Antenna Dimension, including the reflector, in meters
λ= wavelength in meters
Far Field (m)
Frequency (GHz)
L (m)
Lambda (m)
d(Far Field) (m)
d(Far Field) (cm)
58.32
0.35
0.0051440
47.628
4762.80
60.48
0.35
0.0049603
49.392
4939.20
62.64
0.35
0.0047893
51.156
5115.60
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Report No. : FR760928
Transmitter Test Result
3.1
AC Power Conducted Emissions
3.1.1
Limit of AC Power Conducted Emissions
AC Power 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: * Decreases with the logarithm of the frequency.
3.1.2
Measuring Instruments
Refer a measuring instruments list in this test report.
3.1.3
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013, clause 6.2.
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FCC Radio Test Report
3.1.4
Report No. : FR760928
Test Setup
AC Power Conducted Emissions
1—Interconnecting cables that hang closer than 40 cm to the ground plane shall be folded back and forth in
the center forming a bundle 30 cm to 40 cm long.
2—The I/O cables that are not connected to an accessory shall be bundled in the center. The end of the
cable may be terminated, if required, using the correct terminating impedance. The overall length shall not
exceed 1 m.
3—EUT connected to one LISN. Unused LISN measuring port connectors shall be terminated in 50 Ω loads.
LISN may be placed on top of, or immediately beneath, reference ground plane.
3.1—All other equipment powered from additional LISN(s).
3.2—A multiple-outlet strip may be used for multiple power cords of non-EUT equipment.
3.3—LISN at least 80 cm from nearest part of EUT chassis.
4—Non-EUT components of EUT system being tested.
5—Rear of EUT, including peripherals, shall all be aligned and flush with edge of tabletop.
6—Edge of tabletop shall be 40 cm removed from a vertical conducting plane that is bonded to the ground
plane.
7—Antenna can be integral or detachable. If detachable, then the antenna shall be attached for this test.
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FCC Radio Test Report
3.1.5
Report No. : FR760928
Test Result of AC Power Conducted Emissions
Test Conditions
see ANSI C63.10, clause 5.11
Test Setup
see ANSI C63.10, clause 6.2.3
NOTE 1: If equipment having different channel plan and nominal channel bandwidth modes (see test report
clause 1.1.1), the measurements are uninfluenced by different channel plan and nominal channel
bandwidth modes, may not need to be repeated for all modes. If equipment having different
transmit operating modes (see test report clause 1.1.2), the measurements are uninfluenced by
different transmit operating modes, may not need to be repeated for all the operating modes.
Similar, if the equipment supports different modulations and/or data rates, the measurements
described in ANSI C63.10, clause 5.12 may not need to be repeated for all these modulations and
data rates. Simple comparison of engineering test across all operating modes, modulations and
data rates may need to be performed to define the worse case combination to be used for the
conformance testing.
NOTE 2: “>20dB” means the tables in this clause should only list values of spurious emissions that exceed
the level of 20 dB below the applicable limit, see ANSI C63.4, clause 10.1.8.1.
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FCC Radio Test Report
Report No. : FR760928
Temp
21°C
Humidity
60%
Test Engineer
Rick Yeh
Phase
Line
Configuration
CTX
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Temp
21°C
Humidity
60%
Test Engineer
Rick Yeh
Phase
Neutral
Configuration
CTX
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FCC Radio Test Report
3.2
Occupied Bandwidth
3.2.1
Limit of Occupied Bandwidth
Report No. : FR760928
6dBc Bandwidth (see Note 1)
None
26dBc Bandwidth
None
99% Occupied Bandwidth (see Note 2)
None
NOTE 1: The 6dBc bandwidth is the frequency bandwidth of the signal power at the -6 dBc points when
measured with a 100 kHz resolution bandwidth. These measurements shall also be performed at
normal test conditions.
NOTE 2: The 99% occupied bandwidth is the frequency bandwidth of the signal power at the 99% channel
power of occupied bandwidth when resolution bandwidth should be approximately 1 % to 5 % of
the occupied bandwidth (OBW). These measurements shall also be performed at normal test
conditions.
3.2.2
Measuring Instruments
Refer a measuring instruments list in this test report.
3.2.3
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013, clauses 6.9.2.
3.2.4
Test Setup
Occupied Channel Bandwidth
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FCC Radio Test Report
3.2.5
Report No. : FR760928
Test Result of Occupied Bandwidth
Test Conditions
see ANSI C63.10, clause 5.11
Test Setup
see ANSI C63.10, clause 6.9.2
NOTE: If equipment having different transmit operating modes (see test report clause 1.1.2), the
measurements are uninfluenced by different transmit operating modes, may not need to be
repeated for all the operating modes. Similar, if the equipment supports different modulations
and/or data rates, the measurements described in ANSI C63.10, clause 5.11 may not need to be
repeated for all these modulations and data rates. Simple comparison of engineering test across
all operating modes, modulations and data rates may need to be performed to define the worse
case combination to be used for the conformance testing. Refer as ANSI C63.10, clause 15,
observe and record with plotted graphs or photographs the worst-case (i.e., widest) occupied
bandwidth produced by these different modulation sources.
Temp
22℃
Test Engineer
Cloa Fan
Humidity
54%
Test Results
6 dBc
Occupied
26 dBc
Bandwidth
Bandwidth
Bandwidth
(MHz)
(MHz)
(MHz)
58.32
1099.90
1823.44
1997.10
N/A
60.48
1316.90
1910.27
2076.70
N/A
62.64
513.70
2083.94
2286.50
N/A
Test Freq.
(GHz)
Limit
(MHz)
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FCC Radio Test Report
Report No. : FR760928
3.2.5.1 Bandwidth Plots
Test Frequency: 58.32 GHz
6 dBc Bandwidth
Occupied Bandwidth&26 dBc Bandwidth
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FCC Radio Test Report
Report No. : FR760928
Test Frequency: 60.48 GHz
6 dBc Bandwidth
Occupied Bandwidth&26 dBc Bandwidth
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FCC Radio Test Report
Report No. : FR760928
Test Frequency: 62.64 GHz
6 dBc Bandwidth
Occupied Bandwidth&26 dBc Bandwidth
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FCC Radio Test Report
3.3
EIRP Power
3.3.1
Limit of EIRP Power
Report No. : FR760928
EIRP Power Limit
Use Condition
EIRP Average Power
EIRP Peak Power
40 dBm
43 dBm
10 dBm
13 dBm
N/A
10 dBm
40 dBm
43 dBm
82 dBm
85 dBm
Fixed field disturbance sensors at
within the frequency band
61-61.5GHz
Fixed field disturbance sensors at
outside of the band 61-61.5GHz
Except fixed field disturbance
sensors at 61-61.5GHz
Except fixed field disturbance
sensors(indoor)
Except fixed field disturbance
sensors(outdoor)
NOTE: For the applicable limit, see FCC 15.255 (b)
3.3.2
Measuring Instruments
Refer a measuring instruments list in this test report.
3.3.3
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013 clause 9.3 & 9.5.
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3.3.4
Report No. : FR760928
Test Setup
EIPR Power
3.3.5
Test Result of EIRP Power
Test Conditions
see ANSI C63.10, clause 5.11 & clause 9
Test Setup
see ANSI C63.10, clause 9.11
NOTE: If the equipment supports different modulations and/or data rates, the measurements described in
ANSI C63.10, clause 5.11 may not need to be repeated for all these modulations and data rates.
Simple comparison of engineering test across all operating modes, modulations and data rates may
need to be performed to define the worst case combination to be used for the conformance testing.
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3.3.5.1 Test Result of EIRP Power
Temp
22℃
Humidity
54%
Test Engineer
Cola Fan
Test Distance
55.00m
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Results
Test
Rx
DSO
Power Measured
EMeas
EIRP
EIRP Limit
Freq.
Gain
(mV)
(dBm)
(dBuV/m)
(dBm)
(dBm) (note 1)
(GHz)
(dBi)
Peak
AV
Peak
AV
58.32
23
2.7
0.62
-27.66
-36.24
60.48
23
4.5
0.77
-25.69
62.64
23
3.3
0.53
-26.75
Peak
AV
Peak
AV
Peak
AV
121.91 113.33
52.02
43.44
67
64
-35.48
124.20 114.41
54.31
44.52
67
64
-36.93
123.44 113.26
53.55
43.37
67
64
The measured power level is converted to EIRP using the Friis equation:
For radiated emissions, calculate the field strength (E) in dBµV/meter.
E = 126.8 – 20log(λ) + P - G
where:
E : is the field strength of the emission at the measurement distance, in dB V/m
P : is the power measured at the output of the test antenna, in dBm
λ: is the wavelength of the emission under investigation [300/fMHz], in m
G : is the gain of the test antenna, in dBi For radiated emissions, calculate the EIRP (dBm). If the
measurement was performed in the far field, calculate the EIRP.
EIRP = E-meas +20log(d-meas)-104.7
where:
EIRP : is the equivalent isotopically radiated power, in dBm
E-meas. : is the field strength of the emission at the measurement distance, in dB V/m
d-meas. : is the measurement distance, in m
NOTE 1: For the applicable limit, see FCC 15.255 (b)
NOTE 2: The comparison method which replaces EUT with a signal generator is used to find the correct
conversion factor between “DSO(mV)” & “Power Measured(dBm)”.
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FCC Radio Test Report
3.4
Peak Conducted Power
3.4.1
Limit of Peak Conducted Power
Report No. : FR760928
Peak Conducted Power Limit
6dBc Bandwidth
Peak Conducted Power (note 1)
> 100MHz
500mW
≤ 100MHz
500mW x (BW/100) (see note 2)
NOTE 1: For the applicable limit, see FCC 15.255(e)
NOTE 2: BW= 6dB bandwidth (measured at RBW 100kHz)
3.4.2
Measuring Instruments
Refer a measuring instruments list in this test report.
3.4.3
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013, clause 9.5
3.4.4
Test Result of Peak Conducted Power
Test Conditions see ANSI C63.10, clause 5.11 & clause 9
Test Setup
see ANSI C63.10, clause 9.11
NOTE: If the equipment supports different modulations and/or data rates, the measurements described in
ANSI C63.10, clause 5.11 may not need to be repeated for all these modulations and data rates.
Simple comparison of engineering test across all operating modes, modulations and data rates may
need to be performed to define the worst case combination to be used for the conformance testing.
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3.4.4.1 Peak Conducted Power
Temp
22℃
Test Engineer
Cola Fan
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Humidity
54%
Test Results
Max.
Peak Power
Peak
6dBc BW
Peak Power
Ant. Gain
(dBm)
Power
(MHz)
Limit (mW)
(dBi)
(note1)
(mW)
(note2)
(note3)
52.02
42
10.02
10.049
1099.90
500.00
60.48
54.31
42
12.31
17.010
1316.90
500.00
62.64
53.55
42
11.55
14.295
513.70
500.00
Test Freq.
EIRP
(GHz)
(dBm)
58.32
NOTE 1: Because EUT used for the integral antenna without temporary RF connector provided. Therefore
peak conducted power is equal to EIRP power subtract the antenna gain.
NOTE 2: For the 6dBc bandwidth, see test report clause 3.2.5.
NOTE 3: For the applicable limit, see FCC 15.255(e)
NOTE 4: For radiated emission measurements, calculate conducted transmitter output power P(cond)(dBm)
P(cond) = EIRP - G(dBi)
where:
G(dBi) is gain of EUT antenna.
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3.5
Transmitter Spurious Emissions
3.5.1
Limit of Transmitter Spurious Emissions
Frequency Range
Limit
Radiated emissions below 40 GHz
FCC 15.209
Radiated emissions above 40 GHz – 200GHz
90 pW/cm @ 3 m (Equivalent EIRP 102 W, -9.91dBm)
NOTE 1: For the applicable limit, see FCC 15.255(c)
NOTE 2: Spurious emissions shall not exceed the level of the fundamental emission.
3.5.2
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013, clause 9.12
3.5.3
Test Setup
Transmitter Spurious Emissions
9kHz ~30MHz
30MHz~1GHz
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1GHz~40GHz
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Above 40GHz
A measuring distance of at 3 m shall be used for measurements at frequencies up to 15 GHz. For
frequencies above 15 GHz, any suitable measuring distance may be used. The measurement distance is
chosen up to far field distance, depending on the test system noise floor for detecting spurious emission
signals. Then above 15 GHz shall be extrapolated to the specified distance using an extrapolation factor of
20 dB/decade from spec. distance (3 m) to measurement distance. Distance extrapolation factor = 20 log
(spec. distance [3 m] / measurement distance [N m]) (dB) .The measurements described in ANSI C63.10,
clause 7.8.6. If the emission cannot be detected at 1 m, reduce the RBW to increase system sensitivity.
Note the value. If the emission still cannot be detected, move the horn closer to the EUT, noting the distance
at which a measurement is made.
3.5.4
Test Result of Transmitter Spurious Emissions
Test Conditions
see ANSI C63.10, clause 5.11 & clause 9
Test Setup
see ANSI C63.10, clause 9.12
9.13
NOTE: If equipment having different channel plan and nominal channel bandwidth modes (see test report
clause 1.1.1), the measurements are uninfluenced by different channel plan and nominal channel
bandwidth modes, may not need to be repeated for all modes.
3.5.4.1 Test Result of Transmitter Spurious Emissions (Below 30MHz)
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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3.5.4.2 Test Result of Transmitter Spurious Emissions
Temp
22°C
Humidity
54%
Test Engineer
Cola Fan
Test Range
30 MHz – 1000 MHz
Test Configuration
CTX
Vertical
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Horizontal
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Temp
22°C
Humidity
54%
Test Engineer
Cola Fan
Test Range
1 GHz – 40 GHz
Test Configuration
CTX
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Freq. (MHz)
58.32
Vertical
Horizontal
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Temp
22°C
Humidity
54%
Test Engineer
Cola Fan
Test Range
1 GHz – 40 GHz
Test Configuration
CTX
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Freq. (MHz)
60.48
Vertical
Horizontal
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Temp
22°C
Humidity
54%
Test Engineer
Cola Fan
Test Range
1 GHz – 40 GHz
Test Configuration
CTX
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Freq. (MHz)
62.64
Vertical
Horizontal
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Temp
24°C
Humidity
64%
Test Engineer
Cola Fan
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Range
40GHz – 200GHz
Test Frequency
Rx Antenna Gain
(GHz)
(dBi)
58.32
23
EIRP
Specification
Distance
(dBm)
(m)
-17.15
Test Frequency
Rx Antenna Gain
(GHz)
(dBi)
60.48
23
EIRP
Specification
Distance
(dBm)
(m)
-25.59
Test Frequency
Rx Antenna Gain
(GHz)
(dBi)
62.64
23
EIRP
Specification
(dBm)
-20.76
Distance
(m)
Measurement
Read Worse
Distance
Frequency
(m)
(GHz)
1.00
40.50
Power Density
Limit
(pW/cm^2)
(pW/cm^2)
17.0465
90.00
Measurement
Read Worse
Distance
Frequency
(m)
(GHz)
1.00
56.57
Power Density
Limit
(pW/cm^2)
(pW/cm^2)
2.4428
90.00
Measurement
Read Worse
Distance
Frequency
(m)
(GHz)
1.00
41.76
Power Density
Limit
(pW/cm^2)
(pW/cm^2)
7.4169
90.00
Read Level
(dBm)
-58.74
Test Result
Complied
Read Level
(dBm)
-70.08
Test Result
Complied
Read Level
(dBm)
-62.62
Test Result
Complied
Note:
EIRP = Prx – Grx + Free Space Path Loss = Prx – Grx + 20Log(4πd/ )2
Which
Prx = Read Level.
Grx = Rx Antenna Gain.
A distance factor is offset and the formula is 20LOG(D1/D2)
Which
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D1 = Specification Distance
D2 = Measurement Distance
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FCC Radio Test Report
3.6
Frequency Stability
3.6.1
Limit of Frequency Stability
Report No. : FR760928
Frequency Stability
Limit
Refer as FCC 15.255(e) and
ANSI C63.10-2013, clause 9.14
within the frequency bands
Note: These measurements shall also be performed at normal and extreme test conditions.
3.6.2
Measuring Instruments
Refer a measuring instruments list in this test report.
3.6.3
Test Procedures
Method of measurement: Refer as ANSI C63.10-2013, clauses 9.14.
3.6.4
Test Setup
Frequency Stability
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3.6.5
Report No. : FR760928
Test Result of Frequency Stability
Test Conditions
see ANSI C63.10, clause 5.11 & clause 9
Test Setup
see ANSI C63.10, clause 9.14
NOTE: If equipment having different channel plan and nominal channel bandwidth modes (see test report
clause 1.1.1), the measurements are uninfluenced by different channel plan and nominal channel
bandwidth modes, may not need to be repeated for all modes.
3.6.5.1 Frequency Stability with Respect to Ambient Temperature
Frequency Stability with Respect to Ambient Temperature
Temp
24°C
Humidity
64%
Test Engineer
Cola Fan
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Results
Measured Frequency
Delta Frequency
Limit
(MHz)
(kHz)
(±kHz)
-40
60461.9612
11.200
Within band
-30
60461.9614
11.400
Within band
-20
60461.9614
11.400
Within band
-10
60461.9619
11.900
Within band
60461.9674
17.400
Within band
10
60461.9656
15.600
Within band
20
60461.9500
Reference
Within band
30
60461.9574
7.400
Within band
40
60461.9574
7.400
Within band
50
60461.9566
6.600
Within band
60
60461.9567
6.700
Within band
70
60461.9568
6.800
Within band
Test Temperature (°C)
NOTE: The manufacturer’s specified temperature range of -40 to 70°C.
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3.6.5.2 Frequency Stability When Varying Supply Voltage
Frequency Stability When Varying Supply Voltage
Temp
24°C
Humidity
64%
Test Engineer
Cola Fan
Test Date
Nov. 16, 2017 ~ Jan. 10, 2018
Test Results
Measured Frequency
Delta Frequency
Limit
(MHz)
(kHz)
(±kHz)
40.8
60461.9501
0.100
Within band
48
60461.9500
Reference
Within band
55.2
60461.9500
0.000
Within band
Test Voltage: (Vdc)
NOTE: For the applicable limit, see FCC 15.255(e).
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3.7
Operation Restriction and Group Installation
3.7.1
Limit of Operation Restriction and Group Installation
Item
Limit
Operation is not permitted for the following products:
 Equipment used on aircraft or satellites. (Refer as FCC 15.255 (a))
Operation Restriction
 Field disturbance sensors, including vehicle radar systems, unless the field
disturbance sensors are employed for fixed operation. (Refer as FCC
15.255 (a))
Group Installation
3.7.2
Operation is not permitted for the following products:
 External phase-locking (Refer as FCC 15.255 (g))
Result of Operation Restriction
Manufacturer declares that EUT will not been used on aircraft or satellites. Then user manual will include a
statement to caution EUT is not permitted for used on aircraft or satellites. EUT is a wireless video area
network (WVAN) for the connection of consumer electronic (CE) audio and video devices.
3.7.3
Result of Group Installation
The frequency, amplitude and phase of the transmit signal are set within the EUT. There are no external
phase-locking inputs or any other means of combining two or more units together to realize a beam-forming
array.
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FCC Radio Test Report
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Test Equipment and Calibration Data
Instrument
Manufacturer
Model No.
Serial No.
Characteristics
EMI Receiver
Agilent
N9038A
My52260123
9kHz ~ 8.45GHz
LISN
F.C.C.
Calibration
Calibration
Date
Due Date
Jan. 23, 2017
Jan. 22, 2018
Conduction
(CO01-CB)
Dec. 14, 2016
Dec. 13, 2017
Conduction
(CO01-CB)
150kHz ~
FCC-LISN-5004083
100MHz
16-2
Remark
LISN
Schwarzbeck
NSLK 8127
8127647
9kHz ~ 30MHz
Dec. 21, 2016
Dec. 20, 2017
Conduction
(CO01-CB)
COND Cable
Woken
Cable
01
150kHz ~ 30MHz
May 23, 2017
May 22, 2018
Conduction
(CO01-CB)
Software
Audix
E3
6.120210n
N.C.R.
N.C.R.
Conduction
(CO01-CB)
TESEQ &
CBL6112D &
37880 &
20MHz ~ 2GHz
Aug. 30, 2017
Aug. 29, 2018
EMCI
N-6-06
AT-N0609
Radiation
(03CH01-CB)
Loop Antenna
Teseq
HLA 6120
24155
9kHz - 30 MHz
Mar. 16, 2016*
Mar. 15, 2018*
Radiation
(03CH01-CB)
Horn Antenna
EMCO
3115
00075790
Nov. 10, 2016
Nov. 09, 2017
BILOG
ANTENNA with
6dB Attenuator
750MHz ~
18GHz
750MHz ~
Horn Antenna
EMCO
3115
00075790
Nov. 20, 2017
Nov. 19, 2018
Radiation
(03CH01-CB)
Jul. 05, 2017
Jul. 04, 2018
Radiation
(03CH01-CB)
18GHz
BBHA9170252 15GHz ~ 40GHz
Radiation
(03CH01-CB)
Horn Antenna
Schwarzbeck
BBHA 9170
Pre-Amplifier
EMCI
EMC330N
980332
20MHz ~ 3GHz
May 02, 2017
May 01, 2018
Radiation
(03CH01-CB)
Pre-Amplifier
Agilent
8449B
3008A02310
1GHz ~ 26.5GHz
Jan. 16, 2017
Jan. 15, 2018
Radiation
(03CH01-CB)
Pre-Amplifier
MITEQ
1864479
18GHz ~ 40GHz
Jul. 10, 2017
Jul. 09, 2018
Radiation
(03CH01-CB)
TTA1840-35-H
Spectrum
Analyzer
R&S
FSP40
100056
9kHz ~ 40GHz
Nov. 22, 2016
Nov. 21, 2017
Radiation
(03CH01-CB)
Spectrum
Analyzer
R&S
FSP40
100056
9kHz ~ 40GHz
Nov. 23, 2017
Nov. 22, 2018
Radiation
(03CH01-CB)
EMI Test
R&S
ESCS
100355
9kHz ~ 2.75GHz
May 06, 2017
May 05, 2018
Radiation
(03CH01-CB)
RF Cable-low
Woken
N/A
30 MHz ~ 1 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
N/A
1 GHz ~ 18 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
N/A
1 GHz ~ 18 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
Low
Cable-16+17
RF Cable-high
Woken
RF Cable-high
Woken
High Cable-16
High
Cable-16+17
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Calibration
Calibration
Date
Due Date
18GHz ~ 40 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
N/A
18GHz ~ 40 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
RG402
High Cable-06
1 GHz – 26.5 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
Woken
RG402
High Cable-07
1 GHz –26.5 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
RF Cable-high
Woken
RG402
High Cable-08
1 GHz –26.5 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
RF Cable-high
Woken
RG402
High Cable-09
1 GHz –26.5 GHz
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
RF Cable-high
Woken
RG402
High Cable-10
Oct. 11, 2017
Oct. 10, 2018
Radiation
(03CH01-CB)
Power Sensor
Agilent
U2021XA
MY53410001
50MHz~18GHz
Nov. 22, 2016
Nov. 21, 2017
Radiation
(03CH01-CB)
Power Sensor
Agilent
U2021XA
MY53410001
50MHz~18GHz
Nov. 20, 2017
Nov. 19, 2018
Radiation
(03CH01-CB)
Mixer
OML
M19HW/A
U91113-1
40 ~ 60 GHz
Oct. 12, 2017
Oct. 11, 2018
Radiation
(03CH01-CB)
Mixer
OML
M15HW/A
V91113-1
50 ~ 75 GHz
Oct. 12, 2017
Oct. 11, 2018
Radiation
(03CH01-CB)
Mixer
OML
M12HW/A
E91113-1
60 ~ 90 GHz
Oct. 12, 2017
Oct. 11, 2018
Radiation
(03CH01-CB)
Mixer
OML
M08HW/A
F91113-1
90 ~ 140 GHz
Oct. 12, 2017
Oct. 11, 2018
Radiation
(03CH01-CB)
Mixer
OML
M05HW/A
G91113-1
140 ~ 220 GHz
Oct. 12, 2017
Oct. 11, 2018
Radiation
(03CH01-CB)
Detector
Millitech
#A16473(074)
50 ~ 75 GHz
Mar. 06, 2017
Mar. 05, 2018
Radiation
(03CH01-CB)
Pico Scope
Pico
CX372/002
N/A
Jul. 26, 2017
Jul. 25, 2018
Radiation
(03CH01-CB)
M19RH
U91113-A
40 ~ 60 GHz
N.C.R
N.C.R
Radiation
(03CH01-CB)
M15RH
V91113-A
50 ~ 75 GHz
N.C.R
N.C.R
Radiation
(03CH01-CB)
M12RH
E91113-A
60 ~ 90 GHz
N.C.R
N.C.R
Radiation
(03CH01-CB)
M08RH
F91113-A
90 ~ 140 GHz
N.C.R
N.C.R
Radiation
(03CH01-CB)
M05RH
G91113-A
140 ~ 220 GHz
N.C.R
N.C.R
Radiation
(03CH01-CB)
Instrument
Manufacturer
RF Cable-high
Woken
RF Cable-high
Woken
RF Cable-high
Woken
RF Cable-high
Standard Horn
Custom
Antenna
Microwave
Standard Horn
Custom
Antenna
Microwave
Standard Horn
Custom
Antenna
Microwave
Standard Horn
Custom
Antenna
Microwave
Standard Horn
Custom
Antenna
Microwave
Model No.
High
Cable-40G#1
High
Cable-40G#2
DET-15-RPFW
Pico Scope
6402C
Serial No.
Characteristics
N/A
1 GHz –26.5
GHz
Remark
SPORTON INTERNATIONAL INC.
Page No.
: 43 of 45
TEL : 886-3-327-3456
Report Version
: Rev. 01
FAX : 886-3-327-0973
Issued Date
: Feb. 12, 2018
FCC ID: TV7LHGG60AD
FCC Radio Test Report
Instrument
Manufacturer
Temp. and
Humidity
Gaint Force
Model No.
GTH-408-40-C
Chamber
P-AR
Report No. : FR760928
Serial No.
Characteristics
MAA1410-011
-40~100 degree
Calibration
Calibration
Date
Due Date
Sep. 15, 2017
Sep. 14, 2018
Remark
Conducted
(TH01-CB)
Note: Calibration Interval of instruments listed above is one year.
“*” Calibration Interval of instruments listed above is two years.
N.C.R. means Non-Calibration required.
SPORTON INTERNATIONAL INC.
Page No.
: 44 of 45
TEL : 886-3-327-3456
Report Version
: Rev. 01
FAX : 886-3-327-0973
Issued Date
: Feb. 12, 2018
FCC ID: TV7LHGG60AD
FCC Radio Test Report
Report No. : FR760928
Measurement Uncertainty
Test Items
Uncertainty
Remark
Conducted Emission (150kHz ~ 30MHz)
3.2 dB
Confidence levels of 95%
Radiated Emission (30MHz ~ 1,000MHz)
3.6 dB
Confidence levels of 95%
Radiated Emission (1GHz ~ 18GHz)
3.7 dB
Confidence levels of 95%
Radiated Emission (18GHz ~ 40GHz)
3.5 dB
Confidence levels of 95%
Radiated Emission (40GHz ~ 220GHz)
4.7 dB
Confidence levels of 95%
Temperature
0.7°C
Confidence levels of 95%
SPORTON INTERNATIONAL INC.
Page No.
: 45 of 45
TEL : 886-3-327-3456
Report Version
: Rev. 01
FAX : 886-3-327-0973
Issued Date
: Feb. 12, 2018
FCC ID: TV7LHGG60AD
Download: LHGG60AD RouterBOARD LHG G-60ad Test Report FCC RF _FR760928 Mikrotikls SIA
Mirror Download [FCC.gov]LHGG60AD RouterBOARD LHG G-60ad Test Report FCC RF _FR760928 Mikrotikls SIA
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Short Term ConfidentialNo
Permanent ConfidentialNo
SupercedeNo
Document TypeTest Report
Display FormatAdobe Acrobat PDF - pdf
Filesize50.54kB (631782 bits)
Date Submitted2018-03-02 00:00:00
Date Available2018-03-05 00:00:00
Creation Date2018-03-05 19:33:20
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Document Lastmod2018-03-05 19:33:20
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