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NEOMBF23072317MBF2006A Dual Band Optical Repeater

PBE Europe Ltd. trading as Axell Wireless
MBF2006A Dual Band Optical Repeater - FCC ID NEOMBF23072317 - PBE Europe Ltd. trading as Axell Wireless
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Application Details

Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Date of Grant
Jun 19, 2014
Application Purpose
Original Equipment
Date of Application
Jun 09, 2014
Equipment Note
MBF2006A Dual Band Optical Repeater
Frequency Range
698.00000000 - 716.00000000
Company
PBE Europe Ltd. trading as Axell Wireless
Country
United Kingdom

Documents & Files

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Users Manual

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Attestation Statements

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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RF Exposure Info

Test Report

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Test Setup Photos

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Document Text

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

Users Manual

MBF-20 AMERICAS REMOTE PRODUCT DESCRIPTION AND USER’S MANUAL MBF-20 Americas Multiband Fibre-Fed Remote Product Description and User’s Manual Document P/N 00068UM Rev. 2.4 This document is valid for the following remote models Product Part Number IC ID FCC ID MBF-2308-2319-M-1510 MBF-2308-2319-M-1530 MBF-2308-2319-M-1550 MBF-2308-2319-M-1570 MBF-2308-2319-M-1590 MBF2001 MBF2002 MBF2003 MBF2004 MBF2005 8749A-MBF23082319 NEOMBF23082319 MBF-2307-2317-M 1510 MBF-2307-2317-M-1530 MBF-2307-2317-M-1550 MBF-2307-2317-M-1570 MBF2006 MBF2007 MBF2008 MBF2009 8749A-MBF23072317 NEOMBF23072317 MBF-20 AMERICAS REMOTE PRODUCT DESCRIPTION AND USER’S MANUAL II User Manual Doc No. 00068UM Rev. 2.4 © Axell Wireless Ltd Copyright © 2014 Axell Wireless Ltd All rights reserved. No part of this document may be copied, distributed, transmitted, transcribed, stored in a retrieval system, or translated into any human or computer language without the prior written permission of Axell Wireless Ltd. The manufacturer has made every effort to ensure that the instructions contained in this document are adequate and free of errors and omissions. The manufacturer will, if necessary, explain issues which may not be covered by this document. The manufacturer's liability for any errors in the document is limited to the correction of errors and the aforementioned advisory services. This document has been prepared to be used by professional and properly trained personnel, and the customer assumes full responsibility when using them. The manufacturer welcomes customer comments as part of the process of continual development and improvement of the documentation in the best way possible from the user's viewpoint. Please submit your comments to the nearest Axell Wireless sales representative. Contact Information Headquarters Axell Wireless Aerial House, Asheridge Road, Chesham, Buckinghamshire HP5 2QD United Kingdom Tel: +44 1494 777000 Fax: +44 1494 777002 Commercial inquiries [email protected] Web site www.axellwireless.com Support issues [email protected] Technical Support Line, English speaking +44 1494 777 747 Contact information for Axell Wireless offices in other countries can be found on our web site, www.axellwireless.com MBF-20 AMERICAS REMOTE PRODUCT DESCRIPTION AND USER’S MANUAL © Axell Wireless Ltd User Manual Doc No. 00068UM Rev. 2.4 III About This Manual This Product Manual provides the following information: • Description of the MBF-20 Remote • Procedures for setup, configuration and checking the proper operation of the MBF-20 • Maintenance and troubleshooting procedures Intended Audience This Product Manual is intended for experienced technicians and engineers. It is assumed that the customers installing, operating, and maintaining Axell Wireless Mini- Remotes are familiar with the basic functionality of Remotes. Notice Confidential - Authorized Customer Use This document may be used in its complete form only and is solely for the use of Axell Wireless employees and authorized Axell Wireless channels or customers. The material herein is proprietary to Axell Wireless. Any unauthorized reproduction, use or disclosure of any part thereof is strictly prohibited. All trademarks and registered trademarks are the property of their respective owners. Disclaimer of Liability Contents herein are current as of the date of publication. Axell Wireless reserves the right to change the contents without prior notice. The information furnished by Axell Wireless in this document is believed to be accurate and reliable. However, Axell Wireless assumes no responsibility for its use. In no event shall Axell Wireless be liable for any damage resulting from loss of data, loss of use, or loss of profits and Axell Wireless further disclaims any and all liability for indirect, incidental, special, consequential or other similes damages. This disclaimer of liability applies to all products, publications and services during and after the warranty period. Guarantees • All antennas must be installed with lightning protection. Damage to power modules, as a result of lightning are not covered by the warranty. • Antennas must be connected before switching on AC or DC power. Switching power on prior to the connection of antenna cables is regarded as faulty installation procedure and therefore not covered by the Axell Wireless warranty. Exclusive Remedies The remedies provided herein are the Buyer’s sole and exclusive remedies. Axell Wireless shall not be viable for any direct, incidental, or consequential damages, whether based on contract, tort, or any legal theory. MBF-20 AMERICAS REMOTE PRODUCT DESCRIPTION AND USER’S MANUAL IV User Manual Doc No. 00068UM Rev. 2.4 © Axell Wireless Ltd FCC Part 20 Warning Statement WARNING: This is NOT a CONSUMER device. It is designed for installation by FCC LICENCEES and QUALIFIED INSTALLERS. You must have an FCC LICENCE or express consent of an FCC Licensee to operate this device. Unauthorized use may result in significant forfeiture penalties, including penalties in excess of $100,000 for each continuing violation. FCC Part 15 This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: 1. This device may not cause harmful interference, and 2. This device must accept any interference received, including interference that may cause undesired operation. If not installed and used in accordance with the instructions, this equipment generates, uses and can radiate radio frequency energy. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to RF reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: • Increase the separation between the equipment and receiver. • Connect the equipment into an outlet on a circuit different from that to which the receiver …

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Users Manual

Product Specification Sheet ©Axell Wireless | www.axellwireless.com | [email protected] | Version: 3.5 | E & O.E. All specifications are subject to change without prior notice. 1 OMU II Optical Master Unit Key features:  Supports Cellular 2G, 3G, 4G services up to 2700MHz & public safety services FM/VHF/UHF/LMR on the same enclosure  Single enclosure to support high power (MBF-40) and low power (MBF-20) remote units  MIMO support  Web based remote management via wireless modem  Flexible configuration to support up to 8 sectors via single chassis  Simple integration to AEM or any other 3rd party NOC via SNMP traps The OMU II is used to convert signals from RF to light when fibre-fed repeaters are used at the remote end of the optical link. The OMU II is a headend system that can be connected directly to a base station or off-air device such as a digital repeater or bi-directional amplifier. For larger venues with multiple services and multiple bands, a Point Of Interface (POI) unit may be required to condition Uplink and Downlink RF signals between the BTS/Off-air Repeater and the OMU. In the downlink direction, the OMU picks up the signal from the BTS, converts it into an optical signal and transfers it over a fibre optical cable to the repeater. In the uplink direction, the OMU receives the signal from the remote repeater via the fibre optical cable, converts it to a RF signal and sends it back to the base station. Architecture Each OMU II has a dedicated control card, alarm and battery backup card, rack communication board (RCB), optional modem card and 2 AC/DC power supplies on the back of the chassis. It has 12 slots in the front to support the Opto Module cards and Signal Conditioning Card- Optical Splitter Module (OSM). The OSM cards include a 1:4 optical splitter hence it can support up to 4 MBF-20 units from a single OSM. The OMU II can support up to 8 of our standard high powered MBF-40 or 24 low powered MBF-20 remotes. For the maximum number on MBF-20 remote units, 6 Opto Modules and 6 OSM are used which may be configured according to the number of sectors used in the project – up to 6 sectors in this configuration. If only MBF-40 units are required, up to 8 Opto Module cards are used (no OSM cards) which may be configured according to the number of sectors used in the project – up to 8 sectors in this configuration. You can mix and match between the MBF-40 and MBF 20 remote units. Please refer to the 2nd page for all the available options. Automatic Optical Gain Setting The fibre optic system Axell Wireless has designed puts a clear focus on user friendliness and ease of installation and commissioning. Through an automatic optical gain setting, the commissioning is easily performed, thus reducing the time it takes to put the equipment in service. This also means that the training is significantly simplified and the need for installation effort is decreased. Remote Supervision Only one modem is needed to communicate with an OMU II and its fibre fed repeaters. The modem types available are GSM, UMTS, CDMA 1x, PSTN, and TCP/IP. The modem is found inside the OMU II and communication with the fibre- fed remote units is transparently handled via the fibre that connects them. The system can be monitored and controlled via the Axell Wireless’ network management software tool called AEM. AEM communicates with each fibre remote unit via the OMU over the same single mode fibre strand that carries the RF signals. Both data communications and the RF signals are managed over the same fibre link which results in a very reliable supervision of the radio link. The OMU Mark II supports: public safety services (VHF, UHF, TETRA, SMR 700/800/900), cellular bands for EMEA and APAC (800 / 900 / 1800 / 2100 / 2600) and LTE700, 850, PCS and AWS for Americas and is always used in combination with one or several fibre fed repeaters. ©Axell Wireless | www.axellwireless.com | [email protected] | Version: 3.5| E & O.E. All specifications are subject to change without prior notice. 2 Technical specifications RF Parameters Frequency bands 68-500 / 380-2200 / 700-2700 MHz Gain flatness typical 2 dB (p-p) Nominal RF input power +10 dBm composite power Absolute maximum RF input power +23 dBm composite power Number of optical modules 1-24 (depends on low/high power configuration) MBF-40 (high power) MBF-20 (low power) The table to the left lists the various high (MBF-40) and low (MBF-20) power remote unit configurations and how it affects the total number of links supported. For example: if the OMU II supports two high power fibre remotes, then the available low power links = 20 8 0 7 4 6 8 5 12 4 16 3 16 2 20 1 20 0 24 Laser class Class 1 Optical module electrical specification Optical wavelength Downlink (± 10 nm) 1310 Optical wavelength Uplink (± 3 nm) 1510 or 1530 or 1550 or 1570 or 1590 Maximum optical input power +5 dBm Output power (Tx) max +7 dBm Automatic fibre optic loss compensation Yes Optical Splitter Module (OSM) electrical specification Optical splitter (OSM) input power +5 ± 1 dBm Insertion loss 7dBo Power requirements Power requirements 230/115 VAC, 50/60 Hz,-48 VDC Power consumption Typical 50 W (fully equipped) External electrical interfaces Local maintenance terminal Ethernet, USB, RS232 RF ports N-type Connector Female for 1-2 sectors. SMA connectors for 8 sectors Optical ports SC/APC AC/DC mains input AC: IEC Connector with main lead supplied according to the region. DC: flying leads for connection to terminal block External alarms Via Front panel Modem connector RJ45 for wireless modem , RJ11 for PSTN modem Modem antenna connector (Wireless modem) SMA Ethernet connector RJ45 Mechanical specifications Dimensions (W x H x D) 17.5 x 5.2 x 11.4 in (444 x 132.5 x 291 mm) 19” rack Weight 33 lbs (15 kg) (fully equipped) IP rating IP20 Environmental Operating temperature +41 to 113° F (+5 to +45°C) About Axell Wireless Axell Wireless is one of the top global providers of wireless c…

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Block Diagram

MBF2006-9 MBF2307-2317 Repeater Block Diagram Aerial House Asheridge Road Chesham Buckinghamshire HP5 2QD United Kingdom Date: Thursday, 13 March 2014 Telephone: +44 (0) 1494 777000 Facsimile: +44 (0) 1494 777002 E-Mail: [email protected] www.axellwireless.com Page 1 of 1 A3 Issue: 1 Drawn by:Iqbal Not to Scale Ant1 Ant2 PIC ALC LEVEL DL2 Σ PIC PWR MEAS DL2 PIC STEP GAIN ADJ DL2 PIC FINE GAIN ADJ DL2 PIC STEP GAIN ADJ UL2 PIC PWR MEAS UL2 PIC ALC LEVEL UL2 Σ PIC FINE GAIN ADJ UL2 Low High Low High Low High PIC ALC LEVEL DL1 Σ PIC PWR MEAS DL1 PIC STEP GAIN ADJ DL1 PIC FINE GAIN ADJ DL1 PIC STEP GAIN ADJ UL1 Σ 1310nm 1510-1590nm PILOT TX 1045 MHz FSK 26.9 MHz FSK 29.9 MHz PILOT RSSI 1045 MHz RX LASER MONITOR DIODE PWR CONTROL PIC OPTO PWR SET PIC UL FSK Data PIC DL FSK Data PIC OPTO GAIN ADJ PIC DL OPTO PWR MON Expansion + Test Access UL Expansion +Test Access DL Expansion + Test Access PIC PILOT RSSI PIC PILOT ENABLE LASER DC+RF PIC PWR MEAS UL1 PIC ALC LEVEL UL1 PIC FINE GAIN ADJ UL1 OPTO TEST DL OPTO TEST UL 12V BAND1 12V BAND2 5.7V BAND1 5.7V BAND2 5.0V BAND1 5.0V BAND2 6.45V -5V LASER TX 5V LASER OPTO RF 5V DIGITAL 3V3 TCXO 15V @3A NOMINAL SWITCHING REGULATOR ANALOGUE REGULATOR PIC BAND1 ENABLE PIC BAND2 ENABLE FILTER PIC REF 10MHz REF PILOT TX 10MHz REF DAC ADC TEMP 50 OHMS 50 OHMS 50 OHMS 50 OHMS 9/125 SM FIBRE TO OMU SC/APC N TYPE ENG DATA COMMS TO EXPANSION UNITCOMMS TO FSK MODEMS ANALOGUE OUT ANALOGUE IN DIGITAL I/O RF BAND 1 RF BAND 2 OPTICAL TX/RX PIC CONTROL PSU PART NUMBER DENOTES LASER OPTICAL WAVELENGTH ONE OF MBF20061510nm MBF20071530nm MBF20081550nm MBF20091570nm 698-716MHz 728-756MHz 1513001088 1513001088 1710-1755MHz 2110-2155MHz 93-420481 777-787MHz

Cover Letter(s)

Axell Wireless UK Asheridge Road Chesham Bucks HP5 2QD 01 April 2014 Part 20 Industrial booster advisory letter For the attention of Brian Barton, Peter Bradfield As a TCB we are required to advise you of all of the criteria outlined in Part 20 relating to booster operations. The following pages contain the §20.21 CMRS signal booster guidance and requirements around licensing/expressed consent, labelling requirements and marketing rules. For Industrial boosters, please refer to sections (c) for operational requirements specifying licensing or expressed consent of the licensee whose frequencies are being retransmitted by the device on a regular basis. Section (f) provides the labelling requirements. Yours sincerely Peter Green EMC and Radio Specialist §20.21 Signal boosters. (a) Operation of Consumer Signal Boosters. A subscriber in good standing of a commercial mobile radio service system may operate a Consumer Signal Booster for personal use under the authorization held by the licensee providing service to the subscriber provided that the subscriber complies with paragraphs (a)(1) through (6). Failure to comply with all applicable rules in this section and all applicable technical rules for the frequency band(s) of operation voids the authority to operate the Consumer Signal Booster. (1) Prior to operation, the subscriber obtains the consent of the licensee providing service to the subscriber; (2) Prior to operation, the subscriber registers the Consumer Signal Booster with the licensee providing service to the subscriber; (3) The subscriber only operates the Consumer Signal Booster with approved antennas, cables, and/or coupling devices as specified by the manufacturer of the Consumer Signal Booster; (4) The subscriber operates the Consumer Signal Booster on frequencies used for the provision of subscriber-based services under parts 22 (Cellular), 24 (Broadband PCS), 27 (AWS-1, 700 MHz Lower A-E Blocks, and 700 MHz Upper C Block), and 90 (Specialized Mobile Radio) of this chapter. Operation on part 90 (Specialized Mobile Radio) frequencies is permitted upon the Commission's release of a public notice announcing the date Consumer Signal Boosters may be used in the band; (5) The Consumer Signal Booster complies with paragraphs (e), (f), (g), and (h) of this section and §2.907 of this chapter; and (6) The subscriber may not deactivate any features of the Consumer Signal Booster which are designed to prevent harmful interference to wireless networks. These features must be enabled and operating at all times the signal booster is in use. (b) De minimis operation of Consumer Signal Boosters. A third party's incidental use of a subscriber's Consumer Signal Booster operated under this paragraph is de minimis and shall be authorized under the authorization held by the licensee providing service to the third party. (c) Operation of Industrial Signal Boosters. An individual or non-individual, other than a representative of a foreign government, may operate an Industrial Signal Booster provided that the individual or non-individual: (1) Has an FCC license or obtains the express consent of the licensee(s) whose frequencies are being retransmitted by the device on a regular basis, and (2) Uses an Industrial Signal Booster which complies with paragraph (f) of this section. (d) Operation on a secondary, non-interference basis. Operation of signal boosters under this section is on a secondary, non-interference basis to primary services licensed for the frequency bands on which they transmit, and to primary services licensed for the adjacent frequency bands that might be affected by their transmissions. (1) The operation of signal boosters must not cause harmful interference to the communications of any primary licensed service. (2) Upon request of an FCC representative or a licensee experiencing harmful interference, a signal booster operator must: (i) Cooperate in determining the source of the interference, and (ii) If necessary, deactivate the signal booster immediately, or as soon as practicable, if immediate deactivation is not possible. (e) Consumer Signal Booster Network Protection Standard. (1) All Consumer Signal Boosters must incorporate features to prevent harmful interference to wireless networks including but not limited to those enumerated in this section. (2) Certification requirements. (i) A Consumer Signal Booster can only be certificated and operated if it complies with all applicable rules in this subpart and all applicable technical rules for the frequency band(s) of operation including, but not limited to: §22.355 of this chapter, Public Mobile Services, frequency tolerance; §22.913 of this chapter, Cellular Radiotelephone Service effective radiated power limits; §22.917 of this chapter, Cellular Radiotelephone Service, emission limitations for cellular equipment; §24.232 of this chapter, Broadband Personal Communications Service, power and antenna height limits; §24.238 of this chapter, Broadband Personal Communications Service, emission limitations for Broadband PCS equipment; §27.50 of this chapter, Miscellaneous Wireless Communications Services, power and antenna height limits; §27.53 of this chapter, Miscellaneous Wireless Communications Services, emission limits; §90.205 of this chapter, Private Land Mobile Radio Services, power and antenna height limits; §90.210 of this chapter, Private Land Mobile Radio Services, emission masks; and §90.247 of this chapter, Private Land Mobile Radio Services, mobile repeater stations. (ii) In case of any conflict between the rules set forth in this section and the rules set forth in parts 22, 24, 27, and 90 of title 47, chapter I of the Code of Federal Regulations, the rules in this section shall govern. (iii) The application for certification must satisfy the Commission that the Consumer Signal Boosters' features designed to prevent harmful interference and protect wireless networks cannot be easily defeated and must be enabled at all times…

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ID Label/Location Info

Product labelling for MBF20 Series Aerial HouseAsheridge RoadCheshamBuckinghamshireHP5 2QD United KingdomDate: Wednesday, 12 March 2014 Telephone: +44 (0) 1494 777000Facsimile: +44 (0) 1494 777002E-Mail: [email protected] Page 1 of 2 A4 MBF200LB Issue: 1 Drawn by: JRD Not to Scale © Axell Wireless 2013 MBF20 Series Repeater Produ ct labels are generated us ing the Axell Serial Info rmation System (ASIS) Serial Numbers are assi gned according to Part Number and stored in an Electronic database Label templates are designe d and attached to each Part Number record in the database. Templates contain Frequency Band Inform ation and FCC Identifi cation. This information is locked to the Part Number by the database. Production Operators have re ad only access to the database. Part Number s, Label Templates and their contents are controlled by Axell Engineer ing and Configur ation management. To generate a new serial number login to ASIS (password required) and select Serial Numb ers tab. Select the New Button. Enter Operator ID, Part Number and Qt y of Labels to generate. Press OK button. Seri al Numbers will be generated and added to database. Select Print Button, enter Op erator ID, select Serial Nu mber Range and press Next. Label s to be printe d will appear on the screen which follows. Co nfirm the Part Number and Se rial range to be printed are correct. Press Print button or Cancel. Printed Labels will be output fr om the defined Printer for the Label template media. Attach the Product ID Label (yellow) to the right hand side of MBF20. Position l abel centrally bet ween the M4 CSK screws, 3mm below the ca sework edge, with text upright as shown. 1)2)3)4)5)6) 7) Attach the Standard Serial Number Label (white) immediately to the left of t he Product ID Label . Align the bottom edges of both labels leaving a 5mm gap between them. Product labelling for MBF20 Series Aerial HouseAsheridge RoadCheshamBuckinghamshireHP5 2QD United KingdomDate: Wednesday, 12 March 2014 Telephone: +44 (0) 1494 777000Facsimile: +44 (0) 1494 777002E-Mail: [email protected] Page 2 of 2 A4 MBF200LB Issue: 1 Drawn by: JRD Not to Scale © Axell Wireless 2013 8) Attach the FCC LICENSE WARN ING Label to the left hand side of MBF20. Position label centrally between the lid castellations, 3mm bel ow the casework edge, with text upright as shown. NOTE: This step is only appl icable for US Varian ts currently MBF2000 to MBF2009 only

Operational Description

MBF2006 to MBF2009 MBF-2307-2317-XXXX Multi Band Fibre Repeater Operational Description The Axell Wireless MBF2006 to 2009 repeaters are dual band mini fibre fed repeaters intended for use with the Axell Wireless OMU2 Optical Master Unit. The purpose of the system is to provide distributed in building radio coverage for popular cellular syst em frequencies. The MBF2006 to 2009 repeaters are bidirectional amplifiers for three different frequency bands. There are two Low bands (LTE band 12, 698-716MHz UL, 728-746MHz DL and LTE Band 13, 777- 787MHz UL, 746-756MHZ DL) and One High Band (1710-1755 MHz UL, 2110-2155MHz DL) integrated with all necessary duplex filters and a Fibre Optic transceiver. The Fibre Optic Transceiver section of the unit is a modulator demodulator between RF signals and Infra Red Light which is carried over single mode fibre. It operates at wavelengths between 1300- 1600nm with bidirectional transmission using Wavelength Division Multiplex. Light around 1310 nm is use d for Downlink between OMU2 and MBF2006-9 while a wavelength around 1550nm is use d to return Uplink signals to OMU2. (NB. The last digit of the part number MBF200x denote the Uplink Laser wavelength in nm 6=1510nm 7=1530nm 8=1550nm 9=1570nm). Since low back reflection is a prerequisite for good performance of Single Mode Fibre Links the connectors employed are type SC/APC – APC denoting Angle Polis hed Connector and alwa ys having a body coloured Green. Modulated Light arriving in the Downlink from OMU2 and the Cellular Base Station equipment is demodulated in a PIN Diode Optical Detector (with optical power monitoring and a low frequency supervisory modem circuit using FSK transmission) The DL RF signals are amplified in a 3 stage amplifier having adju stable gain controlled by software pr ogrammable attenuators. A pilot tone receiver can detect a carrier sent at 1050 MHz from the OMU, at a known injection level, the detector allows receiver gain to be preset in compensation for different optical link loss es / distances. The DL RF signal is divided in a wideband hybrid coupler, one port of which is terminated by a 50 Ohm load in a dual band unit, but which may be used for adding extra frequency bands using an MBF2000 Expansion Unit. The RF path is divided into the high and low bands above & below 1GHz where it passes to Downlink amplifiers that are prese t for the frequency ranges of interest by multi pole ceramic filters. The gains of the Downlink amplifier chains (approximately 55dB) are adju st ed by software programmable attenuators. In each band the final output stages are pairs of 2W devices operated in parallel for increased power output. A detector is implemented at the output of the power amplifier for measurement and for automatic level control. The UL path is a chain of amplifiers and attenuators having similar overall gain but in this case a 0.5W device is sufficient at the output to drive the Uplink Optical Transceiver. Operating frequency pass bands are also prese t by ceramic filters. Software gain control, power output measurement and ALC are implemented in a similar way to Downlink direction. The first st age LNA is chose n for Low Noise Figure and the gain distribution is carefully controlled to preserve that at all gain settings. The outputs of the two Uplink paths, high band & low band, are combined by a ceramic diplexer and routed to a wideband hybrid coupler. In dual band units the spare hybrid port is terminated by a 50 Ohm load. The function of the coupler is to combine additional UL frequency inputs from the MBF2000 Expansion Unit. The Uplink Inputs and the Downlink Outputs of each frequency band (Low and High) are combined together by multi-pole Ceramic duplexers to provide isolation and protect against desensi tisation. The duplexer antenna (common) ports of the High and Low Bands are combined/split depending on direction, in a third ceramic diplexer. The common port of the diplexer (carrying all frequencies in both directions) feeds a wideband hybrid coupler that allows the connection of two antennas at the N type connectors Ant1 and Ant2. The fourth port of the hybrid coupler is provided with a 50 Ohm termination in dual band units but it allows bidirectional access to the Antenna ports for the MBF2000 Expansion Unit. A PIC microcontroller supervises the operation of all circuitry and collects the levels measured by temperature se nsors, RF detectors, optical TX and RX power monitors etc. The PIC controller has a data communication circuit using a pair of 26/29MHz FSK modems which allows it to communicate with the Optical Master Unit (OMU) over the fibre. The 29MHz FSK circuit passes data from OMU to MBF (downlink) while the 26MHz circuit acts in the reverse direction. The data rate is 57600 Baud. Each MBF repeater has a unique se rial number for communication so that commands can be issued and data polled by the Master controller in the OMU. The GUI provided at the OMU controller enables use rs to view se ttings and levels and enable or disable freq bands/paths. Settings for calibration variables (Laser power, detector s, Prese t RF gain, ALC levels) are held in the PIC EEPROM and are retained at power off. They cannot be changed other than by the Automatic Test Station which calibrates them during production or with the Engineering level software too l which is not available to any but Axell Wireless se rvice personnel. The MBF2000 Series Repeaters are powered by 15V DC Negative Ground. Power Consumption is 45Watts when all Amplifiers and Optical Section are on. The units are supplied with a matching 115V/230V AC PSU and power cable to suit the Market Area. (UK/EU/USA). The unit is supplied with a wall mounting cradle fixed by M6x10 Bolts. The cradle includes a side pocket to hold the AC PSU.

Test Report

A RADIO TEST REPORT FOR AXELL WIRELESS ON MBF2307-2317-15XX DOCUMENT NO. TRA-015162-47-00-B Total number of pages: 94 TRaC Wireless Test Report : TRA-015162-47-03-B Applicant : Axell Wireless Apparatus : MBF2307-2317-15XX Specification(s) : CFR47 Part 27 Purpose of Test : Certification FCCID : NEOMBF23072317 Authorised by : : Radio Product Manager Issue Date : 29 th May 2014 Authorised Copy Number : PDF TRaC Global Test Report: TRA-015162-47-03-B 3 Contents Section 1: Introduction 4 1.1 General 4 1.2 Tests Requested By 5 1.3 Manufacturer 5 1.4 Apparatus Assessed 6 1.5 Test Result Summary 7 1.6 Equipment Test Conditions 8 1.7 Standard References 9 1.8 Notes Relating To Assesment 10 1.9 Deviations from Test Standards 10 Section 2: Measurement Uncertainty 11 2.1 Measurement Uncertainty Values 11 Section 3: Modifications 13 3.1 Modifications Performed During Assessment 13 Appendix A: Uplink Formal Emission Test Results 14 A1 RF Gain and Output Power 15 A2 Amplifier Intermodulation Spurious Emissions 16 A3 Amplifier Modulated Channel Test 23 A4 Spurious Emissions at Antenna Terminals Less than 1MHz 28 A5 Spurious Emissions at Antenna Terminals Greater than 1 MHz 29 A6 Radiated Electric Field Emissions 39 A7 Passband Gain & Bandwidth 50 Appendix B: Downlink Formal Emission Test Results 52 B1 RF Gain and Output Power 53 B2 Amplifier Intermodulation Spurious Emissions 54 B3 Amplifier Modulated Channel Test 59 B4 Spurious Emissions at Antenna Terminals Less than 1MHz 63 B5 Spurious Emissions at Antenna Terminals Greater than 1MHz 67 B6 Radiated Electric Field Emissions 74 B7 Passband Gain & Bandwidth 82 Appendix C: Additional Test and Sample Details 84 Appendix D: Additional Information 90 Appendix F: Photographs and Figures 91 TRaC Global Test Report: TRA-015162-47-03-B 4 Section 1: Introduction 1.1 General This report contains an assessment of an apparatus against Electromagnetic Compatibility Standards based upon tests carried out on samples submitted to the Labor…

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Contact Information

Applicant

Michael Adam Godsey(VP of Design Engineering)
[email protected]2769881029Fax: 2769885892

Test Firm

Element Materials Technology Warwick LtdMax Leach
[email protected]4401482801801Fax: 44 (0) 1482 801 806

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1827698 MHz - 716 MHz1.10 µWG7WAmp
Confidentiality
Long Term
Grant Notes
Booster, Power Output is maximum single channel conducted. The antenna used for this transmitter is to be fixed-mounted on indoor / outdoor permanent structures. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of §1.1307(b)(3). This booster is authorised for use with an indoor distributed antenna system (DAS) only. This booster is to be controlled by an Axell Optical Master Unit (OMUII) detailed in this filing.

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Equipment Class

B9B - Part 90 Class B Industrial Booster (non-SMR)
Class B Booster - FCC ID NEODMBR37073708PS - PBE Europe Ltd. trading as Axell Wireless
NEODMBR37073708PS

Class B Booster

Jan 04, 2016

Equipment Class

B9B - Part 90 Class B Industrial Booster (non-SMR)
Class A Booster - FCC ID NEODMBA30073008PS - PBE Europe Ltd. trading as Axell Wireless
NEODMBA30073008PS

Class A Booster

Aug 30, 2015

Equipment Class

B9A - Part 90 Class A Industrial Booster (non-SMR)