AU545ENB25 LTE Mobile Digital Station Test Report Airspan Networks Inc

Airspan Networks Inc LTE Mobile Digital Station

FCC ID Filing: PIDAU545ENB25

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2360
Radio Test Report
Airspan Communications Ltd
AU546
47 CFR Part 27 Effective Date 1st October 2016
 47CFR part 2J Effective Date 1st October 2016
TNB: Licensed Non-Broadcast station transmitter
Test Date: 5th October 2017
Report Number: 10-10044-1-17 Issue 01
R.N. Electronics Ltd.
Arnolds Court
Arnolds Farm Lane
Mountnessing
Essex
CM13 1UT
U.K.
www.RNelectronics.com
Telephone: +44 (0) 1277 352219
Email: sales@RNelectronics.com
This report is not to be reproduced by any means except in full and in any case not without the written
approval of R.N. Electronics Ltd.
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©2017 RN ELECTRONICS LIMITED
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REPORT NUMBER: 10-10044-1-17 Issue 01
Arnolds Court, Arnolds Farm Lane, Mountnessing, Brentwood Essex, CM13 1UT
Certificate of Test 10044-1
The equipment noted below has been partially tested by R.N. Electronics Limited and, where appropriate, conforms to the
relevant subpart of 47CFR part 27. This is a certificate of test only and should not be confused with an equipment
authorisation. Other standards may also apply.
Equipment:
AU546
Model Number:
AU546
Unique Serial Number:
D61A173F470A
Applicant:
Airspan Communications Ltd
Capital Point, 33 Bath Road
Slough, Berkshire, UK
SL1 3UF
Proposed FCC ID
Full measurement results are
detailed in Report Number:
PIDAU545ENB25
Test Standards:
47 CFR Part 27 Effective Date 1st October 2016
 47CFR part 2J Effective Date 1st October 2016
TNB: Licensed Non-Broadcast station transmitter
10-10044-1-17 Issue 01
NOTE:
The above list is incomplete as only partial tests conducted at request of the manufacturer. For details refer to section 3 of
this report.
DEVIATIONS:
The following tests have not been performed at the request of Airspan Communications Ltd:- Spurious emissions at
antenna terminals, RF Power Output, Frequency stability, Modulation characteristics, Occupied bandwidth.
This certificate relates only to the unit tested as identified by a unique serial number and in the condition at the time it was tested. It does
not relate to any other similar equipment and performance of the product before or after the test cannot be guaranteed. Whilst every effort
is made to assure quality of testing, type tests are not exhaustive and although no non-conformances may be found, this doesn't exclude
the possibility of unit not meeting the intentions of the standard or the requirements of the Federal Regulations, particularly under different
conditions to those during testing. Any compliance statements are made reliant on (a) the application of the product and use of the
assigned band being acceptable to the FCC and (b) the modes of operation as instructed to us by the Customer based on their specific
knowledge of the application and functionality of the EUT. Statements of compliance, where measurements were made, do not include the
measurement uncertainty. The measurement uncertainty, where stated, is the expanded uncertainty based on a standard uncertainty
multiplied by a coverage factor of k=2, providing a level of confidence of approximately 95%.
Date Of Test:
5th October 2017
Digitally signed by: Daniel Sims
DN: CN = Daniel Sims C = GB O = RN Electronics Ltd
Date: 2017.12.12 14:29:37 Z
Test Engineer:
Approved By:
Technical Manager
Steve Hull
Digitally signed by: Steve Hull
DN: CN = Steve Hull email = steve@rnelectronics.com
C = GB O = RN Electronics
Date: 2017.12.12 14:50:07 Z
2360
Customer
Representative:
File Name: Airspan Communications Ltd.10044-1 Issue 01
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
Contents
Contents .......................................................................................................................................................... 3
Equipment under test (EUT) ........................................................................................................................... 4
2.1
Equipment specification ......................................................................................................................... 4
2.2
Configurations for testing ....................................................................................................................... 5
2.3
Functional description ............................................................................................................................ 6
2.4
Modes of operation ................................................................................................................................ 6
2.5
Emissions configuration ......................................................................................................................... 7
Summary of test results .................................................................................................................................. 8
Specifications .................................................................................................................................................. 9
4.1
Relevant standards .................................................................................................................................. 9
4.2
Deviations ................................................................................................................................................ 9
Tests, methods and results ...........................................................................................................................10
5.1
Spurious emissions at antenna terminals ............................................................................................10
5.2
RF Power Output .................................................................................................................................10
5.3
Frequency stability ...............................................................................................................................10
5.4
Occupied bandwidth ............................................................................................................................10
5.5
Field strength of spurious radiations ....................................................................................................11
5.6
Band edge antenna port emissions .....................................................................................................13
5.7
Modulation characteristics ...................................................................................................................13
Plots/Graphical results ..................................................................................................................................14
6.1 Pre-scan plots .............................................................................................................................................14
Explanatory Notes.........................................................................................................................................31
Photographs..................................................................................................................................................32
8.1
Radiated emission diagram ...................................................................................................................32
Test equipment calibration list .....................................................................................................................33
10
Auxiliary and peripheral equipment............................................................................................................34
10.1
Customer supplied equipment .............................................................................................................34
10.2
RN Electronics supplied equipment .....................................................................................................34
11
Condition of the equipment tested ..............................................................................................................35
11.1
Modifications before test ....................................................................................................................35
11.2
Modifications during test ....................................................................................................................35
12
Description of test sites ...............................................................................................................................36
13
Abbreviations and units...............................................................................................................................37
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REPORT NUMBER: 10-10044-1-17 Issue 01
Equipment under test (EUT)
2.1
Equipment specification
Applicant
Airspan Communications Ltd
Capital Point
33 Bath Road
Slough
Berkshire, UK
SL1 3UF
Manufacturer of EUT
Full Name of EUT
Model Number of EUT
Serial Number of EUT
Date Received
Date of Test:
Airspan Communications Ltd
AU546
AU546
D61A173F470A
5th October 2017
5th October 2017
To demonstrate design compliance to the relevant rules of Chapter 47 of the Code
of Federal Regulations.
th
12 October 2017
Purpose of Test
Date Report Created
Main Function
Indoor LTE / Wi-Fi Access point.
Information Specification Height
Width
Depth
Weight
Voltage
Current
EUT Supplied PSU
Manufacturer
Model number
Serial number
Input voltage
Input current
Output
250mm
350mm
150mm
<10kg
110-230 V AC 50/60 Hz
Not specified
Delta Electronics
ADP-66CR B
100-240V AC, 50/60 Hz
2A
DC 12V, 5.5A
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2.2
REPORT NUMBER: 10-10044-1-17 Issue 01
Configurations for testing
General Parameters
EUT Normal use position
Choice of model(s) for type tests
Antenna details
Antenna port
Baseband Data port (yes/no)?
Highest Signal generated in EUT
Lowest Signal generated in EUT
Hardware Version
Software Version
Firmware Version
Type of Equipment
Technology Type
Geo-location (yes/no)
TX Parameters
Alignment range – transmitter
EUT Declared Modulation Parameters
EUT Declared Power level
EUT Declared Signal Bandwidths
EUT Declared Channel Spacing’s
EUT Declared Duty Cycle
Declared frequency stability
RX Parameters
Alignment range – receiver
EUT Declared RX Signal Bandwidth
Table top / shelf top
Production prototype
Each of the 4 transmitters has an integral antenna,
eNodeB = 10dBi
Sercom = 6 dBi
2.4 GHz Wi-Fi = 3 dBi
5 GHz Wi-Fi = Not specified
No
No
5800 MHz
Not specified
Rev D0
6.1.5.9
Incorporated in software build
Fixed small cell Digital station
LTE and Wi-Fi
Not specified
The EUT has 4 transmitters: eNodeB, UE Relay, 2.4GHz Wi-Fi
and 5GHz Wi-Fi.
eNodeB = 2506 – 2680 MHz
UE Relay = 2506 – 2680 MHz
Wi-Fi = 2.4 – 2.483.5 GHz
Wi-Fi = 5.18 – 5.7 GHz
LTE 64QAM & 802.11.g/n
eNodeB = 4400mW EIRP
Sercom = 800mW EIRP
2.4G Wi-Fi = <100mW EIRP
5G Wi-Fi = 600mW EIRP
eNodeB = 20 MHz
Sercom = 20 MHz
2.4G Wi-Fi = 20MHz
5G Wi-Fi = 20/40/80MHz
eNodeB = 20 MHz
Sercom = 20 MHz
2.4G Wi-Fi = 20MHz
5G Wi-Fi = 20MHz
Not specified
Not specified
Not specified
Not specified
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2.3
REPORT NUMBER: 10-10044-1-17 Issue 01
Functional description
AirUnity: A best-in-class end user installed indoor LTE small cell with integrated LTE relay backhaul,
designed specifically to solve the indoor mobile hotspot problem and dramatically improve network
efficiency. Placing the small cell indoors right at the hotspots in enterprises and public access areas
improves cellular signal quality and covering an area of around 30,000 square feet, and thus enables
greater experience for indoor users. In addition AirUnity provides extended outdoor coverage of 100 metres.
A free-standing unit with wireless backhaul which can be placed on window sills, tables and shelfs. It
supports LTE-A (FDD or TDD) and an optional WiFi AP (802.11n concurrent with 802.11ac). AirUnity is
composed of an eNB for access, and a standard high-performance UE relay for wireless backhaul.
2.4
Modes of operation
Mode Reference
Description
Used for
testing
Mode 1
EUT eNodeB transmitting at 2550MHz, UE Relay transmitting on 2620 Yes
MHz, 2.4G Wi-Fi transmitting on 2412 MHz, and 5G Wi-Fi transmitting
on 5200MHz
Note: No other modes / channels / Bandwidths or modulation schemes were assessed, at the client’s request.
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2.5
REPORT NUMBER: 10-10044-1-17 Issue 01
Emissions configuration
Test Area
EUT
AC/DC adapter
110V AC 60Hz
The unit was powered from the supplied AC/DC adapter. The unit was configured by the client to transmit on
the channels listed below to allow intermodulation radiated emissions to be assessed. Please refer to section
2.4 of this report for the test mode. The eNodeB, UE Relay, 2.4G and 5G Wi-Fi were configured to transmit
using engineering programming commands. Pre scans were performed using a field strength method to
determine any intermodulation emissions between the 4 transmitters, where signals were observed a
substitution method was used for final results.
eNodeB Channel (2620 MHz)
UE Relay Channel (2550 MHz)
2.4G Wi-Fi Channel (2412 MHz)
5G Wi-Fi Channel (5200 MHz)
2.5.1
Signal leads
Port Name
Mains
Cable Type
AC/DC adapter to 2 core DC
Connected
Yes
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REPORT NUMBER: 10-10044-1-17 Issue 01
Summary of test results
The AU546, was tested for compliance to the following standard(s) :
47 CFR Part 27 Effective Date 1st October 2016
 47CFR part 2J Effective Date 1st October 2016
Any compliance statements are made reliant on (a) the application of the product and use of the assigned band being
acceptable to the FCC and (b) the modes of operation as instructed to us by the Customer based on their specific
knowledge of the application and functionality of the EUT. Whilst every effort is made to assure quality of testing, type tests
are not exhaustive and although no non-conformances may be found, this doesn't exclude the possibility of equipment not
meeting the intentions of the standard or the essential requirements of the directive, particularly under different conditions
to those during testing. Statements of compliance, where measurements were made, do not include the measurement
uncertainty. The measurement uncertainty, where stated, is the expanded uncertainty based on a standard uncertainty
multiplied by a coverage factor of k=2, providing a level of confidence of approximately 95%.
Title
Transmitter Tests
1. Spurious emissions at antenna terminals
2. RF Power Output
3. Frequency stability
4. Occupied bandwidth
5. Field strength of spurious radiations
6. Band edge at antenna terminals
7. Modulation characteristics
References
47CFR part 2J Part 2.1051,
47CFR part 27 Part 27.53
47CFR part 2J Part 2.1046,
47CFR part 27 Part 27.50
47CFR part 2J Part 2.1055,
47CFR part 27 Part 27.54
47CFR part 2J Part 2.1049,
47CFR part 27 Part 27.53
47CFR part 2J Part 2.1053,
47CFR part 27 Part 27.53(m)(2)
47CFR part 2J Part 2.1051,
47CFR part 27 Part 27.53(m)(4)
47CFR part 2J Part 2.1047,
Results
NOT TESTED
NOT TESTED
NOT TESTED
NOT TESTED
PASSED
NOT TESTED
NOT TESTED
Not tested at the request of applicant.
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REPORT NUMBER: 10-10044-1-17 Issue 01
Specifications
The tests were performed and operated in accordance with R.N. Electronics Ltd procedures and the relevant
standards listed below.
4.1
Relevant standards
Ref.
4.1.1
Standard Number
47CFR part 27
Version
2016
Description
Part 27 – Miscellaneous Wireless Communications Services
4.1.2
47CFR part 2J
2016
Part 2 – Frequency Allocations and radio treaty matters; General
rules and regulations
4.1.3
KDB 971168 D01
v02r02
2014
Measurement Guidance for Certification of Licensed Digital
Transmitters
4.1.4
ITU-R SM.329-12
2012
Unwanted emissions in the spurious domain
4.1.5
TIA-603-E
2016
Land Mobile FM or PM Communications Equipment
Measurement and Performance Standards, Telecommunications
Industry Association, June 2010
4.2
Deviations
The following tests have not been performed at the request of Airspan Communications Ltd:Spurious emissions at antenna terminals, RF Power Output, Frequency stability, Modulation characteristics,
Occupied bandwidth.
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REPORT NUMBER: 10-10044-1-17 Issue 01
Tests, methods and results
5.1
Spurious emissions at antenna terminals
NOT TESTED: Not tested at the request of applicant.
5.2
RF Power Output
NOT TESTED: Not tested at the request of applicant.
5.3
Frequency stability
NOT TESTED: Not tested at the request of applicant.
5.4
Occupied bandwidth
NOT TESTED: Not tested at the request of applicant
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5.5
REPORT NUMBER: 10-10044-1-17 Issue 01
Field strength of spurious radiations
5.5.1
Test methods
Test Requirements:
Test Method:
Limits:
47CFR part 2J Part 2.1053 [Reference 4.1.2 of this report],
47CFR part 27 part 27.53(m)(2) [Reference 4.1.1 of this report]
KDB 971168 D01 v02r02 [Reference 4.1.3 of this report],
TIA-603-D [Reference 4.1.5 of this report]
47CFR part 27 part 27.53(m)(2) [Reference 4.1.1 of this report]
5.5.2
Configuration of EUT
The EUT was tested in an ALSE and ambient conditions were monitored. The EUT was examined in its
declared normal use position. The EUT was operated in Mode 1 for this test at the request of the client.
5.5.3
Test procedure
Tests were made in accordance with the Test Method noted above, using the measuring equipment listed in
the ‘Test Equipment’ Section. Peak field strength from the EUT was maximised by rotating it 360 degrees.
Appropriate band-pass filters were used to ensure the fundamentals did not distort the results. A peak
detector and field strength measurement pre-scans were used to determine any signals for final
measurements. Final measurements where required, were performed using an RMS detector using a
substitution method of measurement.
30MHz - 1GHz.
The measuring antenna was scanned 1 - 4m in both Horizontal and Vertical polarisations. Substitution
method was performed using tuned dipoles / a calibrated bi-conical antenna. Measurement distance of
3metres was used.
1GHz – 60 GHz.
The measuring antenna was used in both Horizontal and Vertical polarisations. Substitution method was
performed using standard gain horn antennas. Measurement distances used were: 1 – 12 GHz at 3metres,
12 – 26.5 GHz at 1.2metres and 26.5 – 60 GHz at 0.3metres.
The EUT was tested in Site M.
5.5.4
Test equipment
E136, E296-2, E296-4, E331, E410, E411, E412, E429, E547, E716, TMS78, TMS79, TMS82, LPE364
See Section 9 for more details
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5.5.5
Test results
Temperature of test environment
Humidity of test environment
Pressure of test environment
REPORT NUMBER: 10-10044-1-17 Issue 01
22°C
63%
102kPa
Setup Table
Band
Power Level
Channel Spacing
Mod Scheme
Test channels
2.495 - 2.690 GHz (LTE)
2.4 – 2.4835 GHz (Wi-Fi)
5.18 – 5.7 GHz (Wi-Fi)
4400 mW
20
LTE & Wi-Fi
EUT transmitters set to:
eNodeB Channel (2620 MHz)
UE Relay Channel (2550 MHz)
2.4G Wi-Fi Channel (2412 MHz)
5G Wi-Fi Channel (5200 MHz)
Spurious Frequency
Difference to
Antenna
Measured Spurious Level (dBm)
(MHz)
Limit (dB)
Polarisation
No spurious signals observed associated with the 4 transmitters within 20dB of limits.
EUT Polarisation
Note: Pre-scan field strength plots are shown for information in section 6 of this report. (Limit line is shown as a
field strength limit at 3m, which is equivalent to -13dBm)
LIMITS:
Part 27.53(m)(2), -13dBm
These results show that the EUT has
PASSED this test.
The uncertainty gives a 95% confidence interval in the measurement. Expanded
uncertainty (K=2) is as follows:
30MHz - 1GHz ± 3.9 dB, 1 – 18 GHz ±3.5dB, 18 – 60 GHz ±3.9dB
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5.6
REPORT NUMBER: 10-10044-1-17 Issue 01
Band edge antenna port emissions
NOT TESTED: Not tested at the request of applicant.
5.7
Modulation characteristics
NOT TESTED: Not tested at the request of applicant.
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REPORT NUMBER: 10-10044-1-17 Issue 01
Plots/Graphical results
6.1 Pre-scan plots
Horizontal plots 30 MHz – 26.5 GHz
dB
(uV/m)
RN Electronics - J10044-1 30 - 400 MHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 30.0000 MHz
Res BW: 120 kHz
05/10/2017 09:41:09
Vid BW: 360 kHz
Stop: 400.0000 MHz
Sweep: 212.97 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1 400 - 800 MHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 400.0000 MHz
Res BW: 120 kHz
05/10/2017 09:39:37
Vid BW: 360 kHz
Stop: 800.0000 MHz
Sweep: 229.35 ms
E4440A
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REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1 800 - 1000 MHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 800.0000 MHz
Res BW: 120 kHz
05/10/2017 09:38:12
Vid BW: 360 kHz
Stop: 1000.0000 MHz
Sweep: 114.67 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 1 - 5 GHz Horizontal
110
100
90
80
70
60
50
40
30
20
10
Start: 1000.0000 MHz
Res BW: 1 MHz
05/10/2017 11:59:58
Vid BW: 3 MHz
Stop: 5000.0000 MHz
Sweep: 8.19 ms
E4440A
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REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 5 - 7.8 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 5000.0000 MHz
Res BW: 1 MHz
05/10/2017 12:06:33
Vid BW: 3 MHz
Stop: 7800.0000 MHz
Sweep: 6.01 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 7.8 - 11 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 7800.0000 MHz
Res BW: 1 MHz
05/10/2017 12:24:46
Vid BW: 3 MHz
Stop: 11000.0000 MHz
Sweep: 6.55 ms
E4440A
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REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 11 - 12 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 11000.0000 MHz
Res BW: 1 MHz
05/10/2017 12:22:55
Vid BW: 3 MHz
Stop: 12000.0000 MHz
Sweep: 2.18 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 12 - 15 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 12000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:32:54 PM
Vid BW: 3 MHz
Stop: 15000.0000 MHz
Sweep: 6.55 ms
E4440A
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REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 15 - 18 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 15000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:30:48 PM
Vid BW: 3 MHz
Stop: 18000.0000 MHz
Sweep: 6.55 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 18 - 21 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 18000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:43:27 PM
Vid BW: 3 MHz
Stop: 21000.0000 MHz
Sweep: 7.64 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 21 - 24 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 21000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:46:47 PM
Vid BW: 3 MHz
Stop: 24000.0000 MHz
Sweep: 7.64 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 24 - 26.5 GHz Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 24000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:51:03 PM
Vid BW: 3 MHz
Stop: 26500.0000 MHz
Sweep: 6.55 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
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REPORT NUMBER: 10-10044-1-17 Issue 01
Vertical plots 30 MHz – 26.5 GHz
dB
(uV/m)
RN Electronics - J10044-1 30 - 400 MHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 30.0000 MHz
Res BW: 120 kHz
05/10/2017 09:30:03
Vid BW: 360 kHz
Stop: 400.0000 MHz
Sweep: 212.97 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1 400 - 800 MHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 400.0000 MHz
Res BW: 120 kHz
05/10/2017 09:33:45
Vid BW: 360 kHz
Stop: 800.0000 MHz
Sweep: 229.35 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1 800 - 1000 MHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 800.0000 MHz
Res BW: 120 kHz
05/10/2017 09:36:26
Vid BW: 360 kHz
Stop: 1000.0000 MHz
Sweep: 114.67 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 1 - 5 GHz Vertical
110
100
90
80
70
60
50
40
30
20
10
Start: 1000.0000 MHz
Res BW: 1 MHz
05/10/2017 11:46:47
Vid BW: 3 MHz
Stop: 5000.0000 MHz
Sweep: 8.19 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 5 - 7.8 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 5000.0000 MHz
Res BW: 1 MHz
05/10/2017 12:10:38
Vid BW: 3 MHz
Stop: 7800.0000 MHz
Sweep: 6.01 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 7.8 - 11 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 7800.0000 MHz
Res BW: 1 MHz
05/10/2017 12:15:36
Vid BW: 3 MHz
Stop: 11000.0000 MHz
Sweep: 6.55 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 11 - 12 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 11000.0000 MHz
Res BW: 1 MHz
05/10/2017 12:17:26
Vid BW: 3 MHz
Stop: 12000.0000 MHz
Sweep: 2.18 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 12 - 15 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 12000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:22:46 PM
Vid BW: 3 MHz
Stop: 15000.0000 MHz
Sweep: 6.55 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 15 - 18 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 15000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:28:23 PM
Vid BW: 3 MHz
Stop: 18000.0000 MHz
Sweep: 6.55 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 18 - 21 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 18000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:57:24 PM
Vid BW: 3 MHz
Stop: 21000.0000 MHz
Sweep: 7.64 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 21 - 24 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 21000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:56:09 PM
Vid BW: 3 MHz
Stop: 24000.0000 MHz
Sweep: 7.64 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 24 - 26.5 GHz Vertical
90
80
70
60
50
40
30
20
10
-10
Start: 24000.0000 MHz
Res BW: 1 MHz
10/5/2017 1:54:29 PM
Vid BW: 3 MHz
Stop: 26500.0000 MHz
Sweep: 6.55 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
Combined Horizontal and Vertical Plots 26.5 – 60 GHz.
dB
(uV/m)
RN Electronics - J10044-1, 26.5 - 30 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 26500.0000 MHz
Res BW: 1 MHz
10/5/2017 3:11:41 PM
Vid BW: 3 MHz
Stop: 30000.0000 MHz
Sweep: 100.48 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 30 - 34 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 30000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:15:59 PM
Vid BW: 3 MHz
Stop: 34000.0000 MHz
Sweep: 100.48 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 34 - 38 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 34000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:21:02 PM
Vid BW: 3 MHz
Stop: 38000.0000 MHz
Sweep: 100.48 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 38 - 40 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 38000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:25:15 PM
Vid BW: 3 MHz
Stop: 40000.0000 MHz
Sweep: 100.48 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 40 - 44 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 40000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:35:32 PM
Vid BW: 3 MHz
Stop: 44000.0000 MHz
Sweep: 100.48 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 44 - 48 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 44000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:37:11 PM
Vid BW: 3 MHz
Stop: 48000.0000 MHz
Sweep: 100.48 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 48 - 52 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 48000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:38:24 PM
Vid BW: 3 MHz
Stop: 52000.0000 MHz
Sweep: 100.48 ms
E4440A
dB
(uV/m)
RN Electronics - J10044-1, 52 - 56 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 52000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:39:27 PM
Vid BW: 3 MHz
Stop: 56000.0000 MHz
Sweep: 100.48 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
dB
(uV/m)
RN Electronics - J10044-1, 56 - 60 GHz Vertical & Horizontal
90
80
70
60
50
40
30
20
10
-10
Start: 56000.0000 MHz
Res BW: 1 MHz
10/5/2017 3:41:10 PM
Vid BW: 3 MHz
Stop: 60000.0000 MHz
Sweep: 100.48 ms
E4440A
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
Explanatory Notes
Not required.
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
Photographs
No photographs have been included in this test report at the request of Airspan Communications Ltd.
8.1
Radiated emission diagram
Diagram of the radiated emissions test setup 30 - 1000 MHz
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
REPORT NUMBER: 10-10044-1-17 Issue 01
Test equipment calibration list
The following is a list of the test equipment used by R.N. Electronics Ltd to test the unit detailed within this
report. In line with our procedures, the equipment was within calibration for the period during which testing
was carried out.
RN No. Model No.
Description
E136 3105
Horn Antenna 12.5GHz
E296-2 11970A
Harmonic Mixer 26.5-40 GHz
E296-4 11970U
Harmonic Mixer 40-60 GHz
E331 22093-KF20Flann Horn 26.5-40 GHz
E410 N5181A
Signal Generator 3 GHz MXG
E411 N9039A
9 kHz - 1 GHz RF Filter Section
E412 E4440A
PSA 3 Hz - 26.5 GHz
E429 5 Switch Filter Box 0.91 GHz - 16.3 GHz
E547 8493A
Attenuator 20dB 12.4GHz
E716
Horn Std gain 40-60GHz
LPE364CBL6112A Antenna Bilog 30MHz - 2GHz
TMS78 3160-08
Std Gain Horn Antenna 12.4-18 GHz
TMS79 3160-09
Std Gain Horn Antenna 18-26.5 GHz
TMS82 8449B
Pre Amplifier 1 - 26 GHz
Manufacturer
Calibration date
EMCO
Hewlett Packard
Hewlett Packard
FMI
Agilent Technologies
Agilent Technologies
Agilent Technologies
RN Electronics
Hewlett Packard
03-Apr-2017
06-Sep-2017
*04-Dec-2017
25-Apr-2017
30-Apr-2015
11-Jul-2017
10-Jul-2017
29-Aug-2017
02-Dec-2016
25-Jul-2017
Chase Electronics Ltd22-Jan-2016
ETS Systems
25-Jul-2017
ETS Systems
25-Jul-2017
Agilent Technologies 19-Dec-2016
Cal period
12 months
12 months
24 months
12 months
36 months
12 months
24 months
12 months
12 months
12 months
24 months
12 months
12 months
12 months
* Equipment was in calibration dates for tests or has since been re-calibrated to maintain calibration.
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
10
Auxiliary and peripheral equipment
10.1
Customer supplied equipment
REPORT NUMBER: 10-10044-1-17 Issue 01
No Customer supplied equipment was used.
10.2
RN Electronics supplied equipment
No RN Electronics Ltd supplied equipment was used.
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
11
REPORT NUMBER: 10-10044-1-17 Issue 01
Condition of the equipment tested
In order for the EUT to produce the results shown within this report the following modifications, if any, were
implemented.
11.1
Modifications before test
No modifications were made before test by RN Electronics Ltd.
11.2
Modifications during test
No modifications were made during test by RN Electronics Ltd.
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
12
REPORT NUMBER: 10-10044-1-17 Issue 01
Description of test sites
Site A
Radio / Calibration Laboratory and anechoic chamber
Site B
Semi-anechoic chamber
FCC Registration No. 293246
IC Registration No. 5612A-4
Site B1
Control Room for Site B
Site C
Transient Laboratory
Site D
Screened Room (Conducted Immunity)
Site E
Screened Room (Control Room for Site D)
Site F
Screened Room (Conducted Emissions)
Site G
Screened Room (Control Room for Site H)
Site H
3m Semi-anechoic chamber (indoor OATS)
FCC Registration No. 293246
IC Registration No. 5612A-2
Site J
Screened Room
Site K
Screened Room (Control Room for Site M)
Site M
3m Semi-anechoic chamber (indoor OATS)
FCC Registration No. 293246
IC Registration No. 5612A-3
Site Q
Fully-anechoic chamber
Site OATS 3m and 10m Open Area Test Site
FCC Registration No. 293246
IC Registration No. 5612A-1
Site R
Screened Room (Conducted Immunity)
Site S
Safety Laboratory
Site T
Transient Laboratory
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©2017 RN ELECTRONICS LIMITED
ALL RIGHTS RESERVED
13
REPORT NUMBER: 10-10044-1-17 Issue 01
Abbreviations and units
µA/m
µV
Percent
microAmps per metre
microVolts
LBT
LO
mA
Listen Before Talk
Local Oscillator
milliAmps
µW
microWatts
max
maximum
AC
Alternating Current
Absorber Lined Screened
Enclosure
Amplitude Modulation
kPa
Kilopascal
Mbit/s
MegaBits per second
MHz
MegaHertz
mic
Microphone
min
minimum
BER
Ambient
Automatic Transmit Power
Control
Bit Error Rate
mm
milliMetres
ºC
Degrees Celsius
ms
milliSeconds
C/I
mW
milliWatts
NA
Not Applicable
COFDM
Carrier / Interferer
European Conference of Postal
and Telecommunications
Administrations
Coherent OFDM
nom
Nominal
CS
Channel Spacing
nW
nanoWatt
CW
Continuous Wave
OATS
dB
deciBels
OFDM
dBµA/m
deciBels relative to 1µA/m
ppm
Open Area Test Site
Orthogonal Frequency Division
Multiplexing
Parts per million
dBµV
deciBels relative to 1µV
PRBS
Pseudo Random Bit Sequence
dBc
deciBels relative to Carrier
QAM
Quadrature Amplitude Modulation
dBm
deciBels relative to 1mW
QPSK
DC
Direct Current
R&TTE
DTA
Ref
RF
Radio Frequency
ERP
Digital Transmission Analyser
Equivalent Isotropic Radiated
Power
Effective Radiated Power
Quadrature Phase Shift Keying
Radio and Telecommunication Terminal
Equipment
Reference
RFC
Remote Frequency Control
EU
European Union
RSL
Received Signal Level
EUT
Equipment Under Test
RTP
Room Temperature and Pressure
FM
Frequency Modulation
RTPC
Remote Transmit Power Control
FSK
Frequency Shift Keying
Rx
Receiver
Grams
Seconds
GHz
Hz
IF
GigaHertz
Hertz
Intermediate Frequency
SINAD
Tx
Signal to Noise And Distortion
Transmitter
Volts
kHz
kiloHertz
ALSE
AM
Amb
ATPC
CEPT
EIRP
File Name: Airspan Communications Ltd.10044-1 Issue 01
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