FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. Airspan Communications Limited/
  3. O2J-365AS

O2J-365ASAirsynergy WiMAX Basestation

Airspan Communications Limited
Airsynergy WiMAX Basestation - FCC ID O2J-365AS - Airspan Communications Limited
Click to zoom

Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Sep 13, 2011
Application Purpose
Original Equipment
Date of Application
Sep 09, 2011
Equipment Note
Airsynergy WiMAX Basestation
Frequency Range
3655.00000000 - 3670.00000000
Company
Airspan Communications Limited
Country
United Kingdom

Documents & Files

Select a file to view

Users Manual

↗

Cover Letter(s)

↗
↗

External Photos

ID Label/Location Info

↗

Internal Photos

↗

Operational Description

↗
↗
↗
↗
↗

Parts List/Tune Up Info

↗
↗
↗

RF Exposure Info

↗

Test Report

↗
↗
↗

Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

SYN-UG-007 Rev 1 AirSynergy Equipment Installation Guide AirSynergy Equipment Installation Guide Page 2 Commercial in Confidence SYN-UG-007 Rev 1 Copyright © Copyright by Airspan Networks Inc., 2011. All rights reserved worldwide. The information contained within this document is proprietary and is subject to all relevant copyright, patent and other laws protecting intellectual property, as well as any specific agreements protecting Airspan Networks Inc. rights in the aforesaid information. Neither this document nor the information contained herein may be published, reproduced or disclosed to third parties, in whole or in part, without the express, prior, written permission of Airspan Networks Inc. In addition, any use of this document or the information contained herein for the purposes other than those for which it is disclosed is strictly forbidden. Airspan Networks Inc. reserves the right, without prior notice or liability, to make changes in equipment design or specifications. Information supplied by Airspan Networks Inc. is believed to be accurate and reliable. However, no responsibility is assumed by Airspan Networks Inc. for the use thereof nor for the rights of third parties which may be effected in any way by the use of thereof. Any representation(s) in this document concerning performance of Airspan Networks Inc. product(s) are for informational purposes only and are not warranties of future performance, either expressed or implied. Airspan Networks Inc. standard limited warranty, stated in its sales contract or order confirmation form, is the only warranty offered by Airspan Networks Inc. in relation thereto. This document may contain flaws, omissions or typesetting errors; no warranty is granted nor liability assumed in relation thereto unless specifically undertaken in Airspan Networks Inc. sales contract or order confirmation. Information contained herein is periodically updated and changes will be incorporated into subsequent editions. If you have encountered an error, please notify Airspan Networks Inc. All specifications are subject to change without prior notice. Product performance figures quoted within this document are indicative and for information purposes only. UK WEE Registration number: WEE/AB0207WZ AirSynergy Equipment Installation Guide Page 3 Commercial in Confidence SYN-UG-007 Rev 1 Table of Contents Copyright ................................................................................................................................................. 2 Table of Contents .................................................................................................................................... 3 Summary of Figures ................................................................................................................................ 5 Summary of Tables ................................................................................................................................. 6 1 About This Guide ............................................................................................................................ 7 1.1 Purpose ................................................................................................................................... 7 1.2 Intended Audience .................................................................................................................. 7 1.3 Conventions ............................................................................................................................ 7 1.4 Organisation of this Guide ....................................................................................................... 8 2 Introduction ...................................................................................................................................... 9 2.1 General Overview ................................................................................................................... 9 2.1.1 Sector Antenna arrangement .......................................................................................... 9 3 Get Started .................................................................................................................................... 10 3.1 Workflow of Installation ......................................................................................................... 10 3.2 Installation Checklist ............................................................................................................. 11 4 Verify Prerequisites ....................................................................................................................... 12 4.1 Verify Site Requirements ...................................................................................................... 12 4.2 Verify Safety Requirements .................................................................................................. 12 4.2.1 Warn of Hazardous Voltages ........................................................................................ 12 4.2.2 Adhere to European Directive 1999/519/EC ................................................................. 12 4.3 Verify Installation Requirements ........................................................................................... 13 4.3.1 Verify the Tools ............................................................................................................. 13 4.3.2 Verify the Parts and Kits ................................................................................................ 13 4.3.3 .............................................................................................................................................. 14 4.3.4 Verify Components ........................................................................................................ 15 5 Install the AirSynergy mounting plate .................................................................................…

Text truncated - open the document above for the full version.

Cover Letter(s)

Sulis Consultants Limited Mead House, Longwater Road, Eversley, Hampshire, RG27 0NW, UK Registered in England & Wales, number 05466247 http://www.sulisconsultants.com 16 th August 2011 Federal Communications Commission Office of Engineering and Technology Equipment Authorization Division 7345 Oakland Mills Road Columbia, Maryland 21046 Subject: Permanent Confidentiality request for FCCID: O2J-365AS To whom it may concern Pursuant to sections 0.457 and 0.459 and CFR 47, the applicant requests permanent confidential treatment of the following information accompanying this application: Schematics: 900-02-006-b2_3.6GHz-variant-baseband.pdf 900-06-092_B0_3.6GHz_RF_front-end_module.pdf Parts List: 900_02_006_B2_PCA_Baseband_3.3_3.8GHz_BoM.pdf 900_06_092_B0_PCA_FEM_3.6_3.8GHz_BoM.pdf The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the applicant and provide unjustified benefits to its competitors Yours Sincerely Charlie Blackham Director

ID Label/Location Info

FCC ID:O2J-365AS Label FCC ID:O2J-365AS

Internal Photos

Internal Photo Baseband board (top) Baseband board (underside) RF FEM without cans

Operational Description

Air-Synergy 4G Pico Base Station with Integrated Wireless Backhaul The world’s most compact and versatile 4G Pico Base Station Wireless Broadband Operators are currently experiencing an unprecedented growth in data traffic, which today’s networks are struggling to satisfy. As part of a heterogeneous network, Pico Base Stations address this problem by being located closer to the end user, providing much higher aggregate data rates. The issue with today’s Pico Base Stations has been the difficulty in connecting them with the rest of the network. Air-Synergy solves this problem by combining a 4G Pico Base Station with an integrated, high capacity, self-connecting wireless backhaul. Air-Synergy is Airspan’s latest generation of Software Defined Radio (SDR) Base Stations, which supports multiple radio interfaces to allow both access and wireless backhaul to be provided from the same unit. Air-Synergy is an all-in-one compact Pico Base Station, which supports a wide range of radio interfaces using Airspan’s field proven SDR technology, including WiMAX and LTE 4G technologies. The integration of both backhaul and access technologies is an industry first, and redefines the way in which networks can be constructed. This technique enables Air-Synergy to be deployed on street furniture (e.g. lamp posts), with connections automatically established through neighbouring nodes to establish a backhaul connection with the network. A key feature of the Air-Synergy technology is the ability to self-configure, self- connect, self-heal and self-optimise when deployed as a network of elements. At the same time Air-Synergy provides guaranteed levels of service with Quality of Service (QoS) characteristics in line with the requirements of the access interface 4G ACCESS Air-Synergy supports either LTE or 802.16e WiMAX access technologies in addition to Airspan’s Intelligent Wireless Backhaul technology, iBridge. WiMAX provides anytime, anywhere mobile access to broadband services at much higher capacity than is possible with 3G networks. Airspan’s LTE solution is compliant with the 3GPP standards and interoperable with commercial UE devices. Air-Synergy is based on Airspan’s Software Defined Radio (SDR) technology, and as a result supports a range of air interfaces through remote software updates. INTEGRATED WIRELESS BACKHAUL Air-Synergy uniquely provides an integrated wireless backhaul solution using Airspan’s iBridge technology. iBridge is a self-configuring, self-connecting point- to-multipoint backhaul solution, which automatically extends the reach of the network from existing Points of Interconnect (POI). iBridge supports multi-hop relay connections, providing either LTE or WiMAX coverage from each node in addition to the iBridge backhaul functionality. SUSTAINABLE Air-Synergy Pico Cells can be installed on existing street poles (lamp posts or utility poles) which are either OPEX free, or have a nominal on-going OPEX, thus avoiding the recurring costs associated with a traditional Macro Base Station. Air-Synergy also requires a fraction of the power of a Macro Base Station, which further reduces the OPEX, and also allows renewable energy sources, such as solar panels, to be used. ALL-IN-ONE SOLUTION Air-Synergy consists of a single self- contained unit, removing the need for an equipment rack or any indoor equipment. Units are powered from a compact power supply unit based on commercial Power Over Ethernet technology. PLUG AND PLAY Air-Synergy supports automated configuration from the management system, simplifying the installation of each base station. This automation, coupled with the self-connecting iBridge backhaul results in a true plug and play solution, allowing service to be rapidly deployed. REDUCED CAPEX / OPEX Air-Synergy is a compact all-outdoor 4G Pico Base Station, which can be installed without conventional indoor infrastructure and associated power and air- conditioning systems. The integration of wireless backhaul reduces the equipment installed per site, as separate backhaul infrastructure is not required. This in turn reduces spares holding and inventories. The iBridge backhaul supports self healing, allowing the network to automatically recover in the event of failure. This increases overall service availability and customer satisfaction. FLEXIBLE ARCHITECTURE The iBridge network can support different topologies as new elements are added to the network, enabling a highly flexible and versatile deployment. Each Air- Synergy node can adopt both access and backhaul functionality, automatically changing backhaul role from termination to relay to ensure a dynamic self- adapting architecture. Through the use of Airspan’s real-time iBridge SON Server, iBridge supports self- continuous optimisation of backhaul links, ensuring interference between iBridge nodes is minimised and delivering end-to-end QOS across the network with minimal spectrum consumption. RADIO PLANNING Air-Synergy is designed to integrate with standardised WiMAX and LTE SON solutions. When coupled with the iBridge SON Server, this allows a broadband wireless network to be deployed without the need for extensive, formal planning. Nodes are incrementally added in the target service area until the desired coverage is achieved. The products self-configure, self-connect, and self- optimise. In addition, unlike conventional mobile network planning and design, expansion of the coverage area can be optimised and adapted depending on the local need. The “Pico Cell” technology solution is designed for deployment onto standard utility poles, for example telephone poles, street lamps or power poles. Coverage is created by deploying multiple cells in chains or clusters, depending on the desired wireless service footprint. RADIO INTERFACE Version: Release 8/9 (10 in future) Operational Frequency Bands: 2.3GHz 2.6GHz 3.5GHz 800MHz 700MHz Duplex: FDD & TDD Max Channel BW: 10MHz (20MHz in future) Max Transmit Power: 2 x +27dBm & 2x +30dBm opti…

Text truncated - open the document above for the full version.

Operational Description

Sulis Consultants Limited Mead House, Longwater Road, Eversley, Hampshire, RG27 0NW, UK Registered in England & Wales, number 05466247 http://www.sulisconsultants.com Contention Based Protocol– revisedRestricted Band only Answers to FCC Technical questions in KDB 552295for devices operating in the 3650-3700MHz Band under Part 90Z Restricted Certification under Part 90Z (3650-3675 Band) The FCC state in Memorandum Opinion and Order FCC07-99: 34. Under the Commission’s rules, contention-based protocols can be broadly categorized aseither “unrestricted” or “restricted....restricted contention protocols can prevent interference onlywith other devices incorporating the same protocol. WiMAX, with its scheduling protocol, currentlystands as the main example of a restricted contention technology. In its present format, WiMAXtechnology effectively prevents interference among multiple transmitters on a single WiMAXsystem.Different WiMAXsystems can be coordinated to avoid interfering with each other, thus providing eachWiMAXdevice a “reasonable opportunity to operate.” WiMAX Protocol Brief WiMAX MAC protocol is a centralised protocol in which the basestation controls access to the air interface. In the downlink, all decisions related to the allocation of bandwidth to various MSs are made by the BS, which does not require the involvement of the MS. As packets arrive for each terminal, the BS schedules them for the PHY resources, based on their QoS requirements. Once dedicated PHY resources have been allocated for the transmission of the MAC PDU, the BS indicates this allocation to the MS using the specific MAC messages. In general, WiMAX MS is a slave to the BS. In the uplink, the MS requests resources by using a contention based protocol. WiMAX uses a truncated binary exponential back-off algorithm for the contention-resolution during polling of user terminals. When it needs to send a bandwidth request the MS first enters a contention resolution phase, if selectinga uniformly distributed random number between 0 and BACKOFF WINDOW. This random value indicates the number of transmission opportunities, allocated resources for multicast/broadcast poll, the MS will wait before sending its bandwidth request. BACKOFF WINDOWis the maximum number of transmission opportunities an MS can wait before sending the pending bandwidth request. If it does not receive a bandwidth allocation based on the UL MAP message within a time window specified by a timer, the MS assumes that its bandwidth request message was lost owing to collision with another MS, in whichcase MS increases its BACKOFF WINDOW and repeats process. If bandwidth is still not allocated after a maximum number of retries, the MAC PDU is discarded.

Operational Description

FCC ID:O2J-365ASOperational Description V2 A Base station radio, Airsynergy, is part of a WiMAX broadband fixed cellularwireless access system. The system provides a radio link between an end-user (a subscriber)and a network to give high-speed data access. The Airsynergytransceiver/receiver (Up to64 QAM modulation) uses OFDMA and operating in TDD duplexingmode, equipped with an external antenna. The maximum RFoutput power is 30dBm and it can be reduced by software. The Airsynergy transmitter has two TX channels for MIMO operation mode. The unitis installed outdoors and typically is mounted on a pole andprovides subscribers with "always-on" Internet, high speed data only, or data and voice(VoIP) services and is configured with a unique base station reference number, preventing theSubscriber from relocating to another subscriber premises without authorization.

Operational Description

Additional Airsynergy User Manual Statements Airsynergy basestation,FCC ID: O2J-365AS, operating in the 3650-3675MHz Band. Federal Communications Rules for operation in USA To ensure compliance FCC rules and regulations, the following should be observed: The 3650-3675MHz frequency range is a licensed band in the USA and operators must have a valid spectrum license to operate Airsynergyequipment using this band. The Airsynergybase station requires operation using an Airspan FCC-specific version of Netspan. This managementsoftware only permits operation in the 3650-3675MHz band. The unit and must be professionallyinstalled. Any attempt to alter these parameters outside those permitted by the Netspan software or the operator license could be a violation of that license The correct setting of the following Base Station parameters in Netspan, are critical to the correct operation of equipment in compliance with the rules detailed in 47CFR90 subpart Z (Wireless Broadband Services in the 3650–3700 MHz Band): oTransmit Power oTransmit Frequency oChannel Bandwidth Transmit Power Transmit power is set using the Netspan management software during install /commissioning. For 5MHz channel operation, the maximum permitted EIRP is 5 W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 36.5 For 10 MHz channel operation, the maximum permitted EIRP is 10 W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 39.5 Additional Airsynergy User Manual Statements RF Exposure FCC Maximum Permissible Exposure (MPE) limits for equipment operating in the frequency range 1500 – 100,000 MHz is 1.0 mW/cm 2 . Following installationand commissioning, the safe distance from the antenna is the greater of: 20cm Or r cm, where r = √ (PG/4∏S) P: power input to antenna(s)in mW G: numeric gain of antenna relative to isotropic radiator S: power density in mW/cm2 = 1 mW/cm2 The device has two antenna ports, so safe distance from the antenna shall be the greater of: 20 cm or √ (2*PG/4∏S) Which gives 20 cm or √ (0.16*P*G) cm.

Operational Description

TCB Question: The brochure says Software Defined Radio. Is this just a marketing term or is it SDR as defined by the FCC in Part 2.944? Applicant Answer: No, it is not a Software Defined Radio. TCB Question: The brochure lists many bands and many technology types. Please confirm that this device does not support any bands other than the 3.6 GHz band and only WiMAX technology. Applicant Answer: It does not support LTE or any technology other than WiMAX. It only operates in the 3.6 GHz band. TCB Question: The Operation Description states an output power of 30 dBm. The test report shows a measurement of 27 dBm per port with a composite of 30 dBm. Please confirm that the 30 dBm listed in the Operation Description is the composite power. Applicant Answer: It was set to maximum (30 dBm) during the testing. It is 30 dBm composite. TCB Question: Please confirm that the device does not support other ‘types’ of modulation. Applicant Answer: It does not support other types of modulation. Only OFDMA.

Parts List/Tune Up Info

AW3089 Data Sheet © Alpha Wireless Limited 2010-11. 21/3/11. 1 Email: [email protected] Web: www.alphaantennas.com 3300-3800MHz Omni Antenna (Dual Port, Omni, +/-45⁰Polarisation, Fixed Tilt) Electrical Specifications: Frequency Range: 3300MHz – 3800MHz Gain: 9.5 dBi Return Loss: > 14dB Polarisation: Isolation: Dual Slant +/-45° >30dB Vertical 3dB BW: Electrical Downtilt: Upper Sidelobes: Impedance Power Rating: 9° 0° or 4° Fixed >18dB 50Ω 300W Mechanical Specifications: Connector Type: 2 x N Type Female Connector Location: Bottom Dimensions (L x dia) : 600 x 168 mm Weight: Radome 7 kg Fibreglass tube Mounting: Pole Mount Environmental Ratings: Rated Wind Velocity: 200 km/h (125mph) Lightening Protection: DC Grounded Temperature: -40ºC to +70ºC Typical Patterns: Azimuth Pattern Elevation Pattern

Parts List/Tune Up Info

FCC ID: O2J-365AS Tune-up procedure Each Airsynergy is subject to an automated RF Calibration” as part of system test during manufacture. As part of the test, the RF output power level is measured at a number of nominal power level settings. At each level thegain setting is altered as required so that actual transmitted power is the same as the set power level. The gain settings required to do this are unique to each unit and recorded and loaded on the unit as part of the automated system test.

Parts List/Tune Up Info

Additional Airsynergy User Manual Statements Airsynergybasestation, FCC ID: O2J-365AS, operating in the 3650-3675MHz Band. Federal Communications Rules for operation in USA The correct setting of the following Base Station parameters in Netspan, are critical to the correct operation of equipment in compliance with the rules detailed in 47CFR90 subpart Z (Wireless Broadband Services in the 3650–3700 MHz Band): Transmit Power Transmit Frequency Channel Bandwidth Any attempt to alter these parameters outside those permitted by the Netspan software or the operator license could be a violation of that license Transmit Power/ Tune-up Transmit power is set using the Netspan management software during install /commissioning. For 5MHz channel operation, the maximum permitted EIRP is 5 W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 36.5 For 10 MHz channel operation,the maximum permitted EIRP is 10W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 39.5 RF Exposure FCC Maximum Permissible Exposure (MPE) limits for equipment operating in the frequency range 1500 – 100,000 MHz is 1.0 mW/cm 2 . Following installation and commissioning, the safe distance from the antenna is the greater of: 20cm Or r cm, where r = √ (PG/4∏S) P: power input to antenna(s)in mW G: numeric gain of antenna relative to isotropic radiator S: power density in mW/cm2 = 1 mW/cm2 The device has two antenna ports, so safe distance from the antenna shall be the greater of: 20cm or √ (2*PG/4∏S) Which gives 20cm or √ (0.16*P*G) cm.

RF Exposure Info

Additional Airsynergy User Manual Statements Airsynergy basestation,FCC ID: O2J-365AS, operating in the 3650-3675MHz Band. Federal Communications Rules for operation in USA To ensure compliance FCC rules and regulations, the following should be observed: The 3650-3675MHz frequency range is a licensed band in the USA and operators must have a valid spectrum license to operate Airsynergyequipment using this band. The Airsynergybase station requires operation using an Airspan FCC-specific version of Netspan. This managementsoftware only permits operation in the 3650-3675MHz band. The unit and must be professionallyinstalled. Any attempt to alter these parameters outside those permitted by the Netspan software or the operator license could be a violation of that license The correct setting of the following Base Station parameters in Netspan, are critical to the correct operation of equipment in compliance with the rules detailed in 47CFR90 subpart Z (Wireless Broadband Services in the 3650–3700 MHz Band): oTransmit Power oTransmit Frequency oChannel Bandwidth Transmit Power Transmit power is set using the Netspan management software during install /commissioning. For 5MHz channel operation, the maximum permitted EIRP is 5 W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 36.5 For 10 MHz channel operation, the maximum permitted EIRP is 10 W. Due to the additive effect of the MIMO antenna, the power setting in Netspan must be set such that: TX power (dBm) + Antenna gain (dBi) ≤ 39.5 Additional Airsynergy User Manual Statements RF Exposure FCC Maximum Permissible Exposure (MPE) limits for equipment operating in the frequency range 1500 – 100,000 MHz is 1.0 mW/cm 2 . Following installationand commissioning, the safe distance from the antenna is the greater of: 20cm Or r cm, where r = √ (PG/4∏S) P: power input to antenna(s)in mW G: numeric gain of antenna relative to isotropic radiator S: power density in mW/cm2 = 1 mW/cm2 The device has two antenna ports, so safe distance from the antenna shall be the greater of: 20 cm or √ (2*PG/4∏S) Which gives 20 cm or √ (0.16*P*G) cm.

Test Report

TEST REPORT FROM RFI GLOBAL SERVICES LTD Test of: Airsynergy SYN2-CN-00-A36-000 FCC ID: O2J-365AS To: FCC Parts 15.207; 90.209; 90.210; 90.1321 & 90.1323 Test Report Serial No: RFI-RPT-RP82269JD01A This Test Report Is Issued Under The Authority Of Chris Guy, Head of Global Approvals: Checked By: Ian Watch Signature: Date of Issue: 17 August 2011 This report is issued in Adobe Acrobat portable document format (PDF). It is only a valid copy of the report if it is being viewed in PDF format with the following security options not allowed: Changing the document, Selecting text and graphics, Adding or changing notes and form fields. This report may not be reproduced other than in full, except with the prior written approval of RFI Global Services Ltd. The results in this report apply only to the sample(s) tested. TEST REPORT SERIAL NO: RFI-RPT-RP82269JD01A VERSION NO. 1.0 ISSUE DATE: 17 AUGUST 2011 Page 2 of 67 RFI Global Services Ltd This page has been left intentionally blank. TEST REPORT SERIAL NO: RFI-RPT-RP82269JD01A VERSION NO. 1.0 ISSUE DATE: 17 AUGUST 2011 RFI Global Services Ltd Page 3 of 67 Table of Contents 1. Customer Information .................................................................................................................. 4 2. Summary of Testing ..................................................................................................................... 5 2.1. General Information 5 2.2. Summary of Test Results 5 2.3. Methods and Procedures 5 2.4. Deviations from the Test Specification 5 3. Equipment Under Test (EUT) ....................................................................................................... 6 3.1. Identification of Equipment Under Test (EUT) 6 3.2. Description of EUT 6 3.3. Modifications Incorporated in the EUT 6 3.4. Additional Information Related to Testing 7 3.5. Support Equipment 8 4. Operation and Monitoring of the EUT during Testing ............................................................... 9 4.1. Operating Modes 9 4.2. Configuration and Peripherals 9 5. Measurements, Examinations and Derived Results ................................................................ 10 5.1. General Comments 10 5.2. Test Results 11 5.2.1. Transmitter AC Conducted Spurious Emissions 11 5.2.2. Transmitter Carrier Output Power (EIRP) 15 5.2.3. Transmitter Peak EIRP Power Density 20 5.2.4. Transmitter Occupied Bandwidth 25 5.2.5. Transmitter Conducted Emissions Mask 34 5.2.6. Transmitter Conducted Emissions (Out of Band) 39 5.2.7. Transmitter Band Edge Conducted Emissions 46 5.2.8. Transmitter Radiated Emissions (Out of Band) 58 5.2.9. Transmitter Band Edge Radiated Emissions 62 6. Measurement Uncertainty .......................................................................................................... 66 Appendix 1. Test Equipment Used ................................................................................................ 67 TEST REPORT SERIAL NO: RFI-RPT-RP82269JD01A VERSION NO. 1.0 ISSUE DATE: 17 AUGUST 2011 Page 4 of 67 RFI Global Services Ltd 1. Customer Information Company Name: Airspan Communications Ltd. Address: Capital Point 33 Bath Road Slough Berkshire SL1 3UF United Kingdom TEST REPORT SERIAL NO: RFI-RPT-RP82269JD01A VERSION NO. 1.0 ISSUE DATE: 17 AUGUST 2011 RFI Global Services Ltd Page 5 of 67 2. Summary of Testing 2.1. General Information Specification Reference: 47CFR15.207 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2010: Part 15 Subpart C (Intentional Radiators) – Section 15.207 Specification Reference: 47CFR90 Specification Title: Code of Federal Regulations Volume 47 (Telecommunications) 2010: Part 90 Subpart Z (Wireless Broadband Services in the 3650-3700 MHz Band) Specification Reference: Customer Test Plan Specification Title: SC_AIR_TP03_A Date: 04 July 2011 Site Registration: 209735 Location of Testing: RFI Global Services Ltd, Wade Road, Basingstoke, Hampshire, RG24 8AH. Test Dates: 01 July 2011 to 10 August 2011 2.2. Summary of Test Results FCC Reference (47CFR) Measurement Result Part 15.207 Transmitter AC Conducted Emissions Part 90.1321(a) / 2.1046 Transmitter Carrier Output Power (EIRP) Part 90.1321(a) / 2.1046 Transmitter Peak EIRP Power Density Part 90.209 / 2.1049 Transmitter Occupied Bandwidth Part 90.210(b)(n) / 2.1051 Transmitter Conducted Emissions Mask Part 90.1323 / 2.1051 Transmitter Conducted Emissions (Out of Band) Part 90.1323 / 2.1053 Transmitter Radiated Emissions (Out of Band) Key to Results = Complied = Did not comply 2.3. Methods and Procedures Reference: ANSI/TIA-603-C-2004 Title: Land Mobile FM or PM – Communications Equipment – Measurement and Performance Standards Reference: ANSI C63.4 (2009) Title: American National Standard for Methods of Measurement of Radio-Nois…

Text truncated - open the document above for the full version.

Contact Information

Applicant

Mike Livingstone(VP Engineering)
[email protected]+44 1895 467100Fax: +44 1895 467101

Technical Contact

Sulis Consultants LtdCharlie Blackham
[email protected]

United Kingdom

Test Firm

UL VS LtdDarren Rust
[email protected]+44 1256 31 2119Fax: +44 1256 31 2001

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
293.65 GHz - 3.67 GHz10 W10M0D1D8 ppm
Confidentiality
Long Term
Grant Notes
Output power is EIRP. The listed power is the manufacturer rated EIRP. The highest measured EIRP was 4.4 Watts in the 5 MHz channels and 8.3 Watts in the 10 MHz channels. The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of �1.1307(b)(3).

Other Applications from Airspan Communications Limited

4G/5G Small Cell Transportable Base Station used for testing ATG network installations. - FCC ID O2J-CBATG - Airspan Communications Limited
O2J-CBATG

4G/5G Small Cell Transportable Base Station used for testing ATG network installations.

Sep 03, 2026

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Airsynergy Compact Outdoor Pico Base Station - FCC ID O2J-375AS - Airspan Communications Limited
O2J-375AS

Airsynergy Compact Outdoor Pico Base Station

Sep 16, 2013

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
Airsynergy WiMAX Basestation - FCC ID O2J-235AS - Airspan Communications Limited
O2J-235AS

Airsynergy WiMAX Basestation

Sep 29, 2011

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
700 MHz SCRT - FCC ID O2J-070T - Airspan Communications Limited
O2J-070T

700 MHz SCRT

May 05, 2010

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter
SCRT - FCC ID O2J-365T - Airspan Communications Limited
O2J-365T

SCRT

Dec 19, 2007

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter