PBE Europe as Axell Wireless 80-3014RSERIES 80-301401 Cell Enhancer User Manual 80 301401HBKM Handbook
Axell Wireless 80-301401 Cell Enhancer 80 301401HBKM Handbook
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L.A. M.T.A. BDA Line Amplifier User/Maintenance Handbook For GETS Global Signalling LLC AWL Works Order Q115342 Product Part Nos. In-Line BDA Wall Mount 80-301401 In-Line BDA Rack Mount 80-301406 AFL and Avitec have merged to form Axell Wireless AXELL WIRELESS UK Aerial House Asheridge Road Chesham, Buckinghamshire HP5 2QD, United Kingdom Tel: + 44 (0) 1494 777000 Fax: + 44 (0) 1494 777002 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM info@axellwireless.com www.axellwireless.com AXELL WIRELESS SWEDEN Box 7139 174 07 Sundbyberg Sweden Tel: + 46 (0) 8 475 4700 Fax: + 46 (0) 8 475 4799 L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 1 of 148 Table of Contents 1. INTRODUCTION.......................................................................................................................... 7 1.1. Scope and Purpose of Document ............................................................................................. 7 1.2. Limitation of Liability Notice ...................................................................................................... 7 2. SAFETY CONSIDERATIONS ...................................................................................................... 8 2.1. Earthing of Equipment .............................................................................................................. 8 2.2. Electric Shock Hazard............................................................................................................... 8 2.3. RF Radiation Hazard ................................................................................................................ 8 2.4. Lifting and other Health and Safety Recommendations............................................................ 8 2.5. Chemical Hazard ...................................................................................................................... 9 2.6. Laser safety .............................................................................................................................. 9 2.7. Emergency Contact Numbers................................................................................................... 9 3. IN-LINE BDA WALL MOUNT 80-301401 ................................................................................... 10 3.1. In-Line BDA Wall Mount 80-301401 Specification .................................................................. 11 3.1.1. In-Line BDA Wall Mount 80-301401 Overall system Diagram.......................................... 12 3.2. In-Line BDA Wall Mount 80-301401 List of Major Components ............................................. 13 3.3. Combiner 80-301402 .............................................................................................................. 13 3.3.1. Combiner 80-301402 System Diagram ............................................................................ 14 3.3.2. Combiner 80-301402 Outline Drawing ............................................................................. 15 3.3.3. Combiner 80-301402 Specification .................................................................................. 16 3.3.4. Combiner 80-301402 Photographs .................................................................................. 17 3.3.4.1. Front View.................................................................................................................. 17 3.3.4.2. Underside view showing RF connectors.................................................................... 18 3.3.4.3. Interior view ............................................................................................................... 19 3.3.5. Combiner 80-301402 Major Sub-Components................................................................. 20 3.3.5.1. Bandpass Filter 02-010701........................................................................................ 20 3.3.5.2. Bandpass Filter 02-010901........................................................................................ 20 3.3.5.3. Crossband Splitter/Coupler 550/800MHz (07-004815).............................................. 21 3.3.5.4. Crossband Splitter/Coupler VHF/UHF (07-005754)................................................... 21 3.3.5.5. 30dB Directional Coupler (07-018005) ...................................................................... 22 3.3.5.6. 30dB Bi-Directional Coupler (07-022005) .................................................................. 23 3.4. VHF/UHF BDA Unit (80-301403) ............................................................................................ 24 3.4.1. VHF/UHF BDA Unit (80-301403) System Diagram .......................................................... 25 3.4.2. VHF/UHF BDA Unit (80-301403) Outline Drawing ........................................................... 26 3.4.3. VHF/UHF BDA Unit(80-301403) Specification ................................................................. 27 3.4.4. VHF/UHF BDA Unit(80-301403) Photographs ................................................................. 28 3.4.4.1. Front View.................................................................................................................. 28 3.4.4.2. Underside view showing connectors ......................................................................... 29 3.4.4.3. Interior view ............................................................................................................... 30 3.4.5. VHF/UHF BDA Unit(80-301403) Major Sub-components ................................................ 31 3.4.5.1. Bandpass Filter (01-002503) ..................................................................................... 31 3.4.5.2. 30dB Directional Coupler (07-002908) ...................................................................... 32 3.4.5.3. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ............................................... 32 3.4.5.4. Low Noise Amplifier (11-005401) .............................................................................. 33 3.4.5.5. TETRA Power Amplifier 20W (12-016301) ................................................................ 34 3.4.5.6. TETRA Power Amplifier 5W (12-021601) .................................................................. 35 3.4.5.7. Low Power Amplifier (1Watt) (12-021801)................................................................. 36 3.4.5.8. VHF Power Amplifier 5W (12-025602)....................................................................... 37 3.4.5.9. Automatic Gain Control.............................................................................................. 38 3.4.5.10. 24V Relay Dual Assembly (20-001602) ................................................................... 38 3.4.5.11. 24V Relay Assembly (80-008902) ........................................................................... 39 3.4.5.12. Dual Diode Assembly (94-100004) .......................................................................... 39 3.4.5.13. DC/DC Converter, 24V in, 12V 5A out (96-200024) ................................................ 40 3.5. UHF BDA Unit (80-301404) .................................................................................................... 41 3.5.1. UHF BDA Unit (80-301404) System Diagram .................................................................. 42 3.5.2. UHF BDA Unit (80-301404) Outline Drawing ................................................................... 43 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 2 of 148 3.5.3. UHF BDA Unit (80-301404) Specification ........................................................................ 44 3.5.4. UHF BDA Unit (80-301404) Photographs ........................................................................ 45 3.5.4.1. Front View.................................................................................................................. 45 3.5.4.2. Underside view showing connectors ......................................................................... 46 3.5.4.3. Interior view ............................................................................................................... 47 3.5.5. UHF BDA Unit (80-301404) Major Sub-components ....................................................... 48 3.5.5.1. 30dB Directional Coupler (07-002908) ...................................................................... 48 3.5.5.2. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ............................................... 48 3.5.5.3. Low Noise Amplifier (11-005401) .............................................................................. 49 3.5.5.4. TETRA Power Amplifier 20W (12-016301) ................................................................ 50 3.5.5.5. TETRA Power Amplifier 5W (12-021601) .................................................................. 51 3.5.5.6. Low Power Amplifier (12-021801).............................................................................. 52 3.5.5.7. DC/DC Converter, 24V in, 12V 8A out (13-003011) .................................................. 53 3.5.5.8. Automatic Gain Control.............................................................................................. 53 3.5.5.9. 24V Relay Dual Assembly (20-001602)..................................................................... 54 3.5.5.10. 24V Relay Assembly (80-008909) ........................................................................... 54 3.5.5.11. Dual Diode Assembly (94-100004) .......................................................................... 55 3.6. 800MHz BDA UNIT (80-301405) ............................................................................................ 56 3.6.1. 800MHz BDA UNIT (80-301405) System Diagram .......................................................... 57 3.6.2. 800MHz BDA UNIT (80-301405) Outline Drawing ........................................................... 58 3.6.3. 800MHz BDA UNIT (80-301405) Specification ................................................................ 59 3.6.4. 800MHz BDA UNIT (80-301405) Photographs ................................................................ 60 3.6.4.1. Front View.................................................................................................................. 60 3.6.4.2. Underside view showing connectors ......................................................................... 60 3.6.4.3. Interior view ............................................................................................................... 61 3.6.5. 800MHz BDA UNIT (80-301405) Major Sub-components................................................ 62 3.6.5.1. Bandpass Filter (02-011601) ..................................................................................... 62 3.6.5.2. Splitter/Combiner (05-002602) .................................................................................. 63 3.6.5.3. 30dB Directional Coupler (07-002907) ...................................................................... 63 3.6.5.4. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ............................................... 64 3.6.5.5. Low Noise Amplifier (11-005902) .............................................................................. 64 3.6.5.6. 5W Power Amplifier (12-018601)............................................................................... 65 3.6.5.7. 20W Power Amplifier (12-020501)............................................................................. 66 3.6.5.8. Automatic Gain Control.............................................................................................. 67 3.6.5.9. 24V Relay Dual Assembly (20-001602)..................................................................... 67 3.6.5.10. Dual Diode Assembly (94-100004) .......................................................................... 68 3.6.5.11. DC/DC Converter, 24V in, 12V 5A out (96-200024) ................................................ 68 4. IN-LINE BDA RACK MOUNT 80-301406................................................................................... 69 4.1. In-Line BDA Rack Mount System Diagrams ........................................................................... 71 4.1.1. Overall System Diagram....................................................................................................... 71 4.1.2. Combiners System Diagram................................................................................................. 72 4.2. In-Line BDA Rack Mount 80-301406 Specification................................................................. 73 4.3. In-Line BDA Rack Mount 80-301406 Illustrations ................................................................... 74 4.3.1. Rack 1 Front View ................................................................................................................ 74 4.3.2. Rack 1 Rear View............................................................................................................. 75 4.3.3. Rack 2 Front View ............................................................................................................ 76 4.3.4. Rack 2 Rear View............................................................................................................. 77 4.3.5. Rack 1 Top View .............................................................................................................. 78 4.3.6. Rack 2 Top View .............................................................................................................. 79 4.4. In-Line BDA Rack Mount 80-301401 List of Major Components ............................................ 80 4.5. Downlink Input Shelf 80-301407 ............................................................................................. 81 4.5.1. Downlink Input Shelf 80-301407 System Schematic............................................................ 81 4.5.2. Downlink Input Shelf 80-301407 Outline Drawing ................................................................ 82 4.5.3. Downlink Input Shelf 80-301407 Specification ................................................................. 83 4.5.4. Downlink Input Shelf 80-301407 Illustrations ................................................................... 83 4.5.4.1. Rear View .................................................................................................................. 83 4.5.5. Downlink Input Shelf 80-301407 Major Sub Components.................................................... 84 4.5.5.1. Bandpass Filter (02-010701) ..................................................................................... 84 4.5.5.2. Bandpass Filter 02-010901........................................................................................ 84 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 3 of 148 4.5.5.3. Crossband Splitter/Coupler 550/800MHz (07-004815).............................................. 85 4.5.5.4. Crossband Splitter/Coupler VHF/UHF (07-005754)................................................... 85 4.5.5.5. 30dB Bi-Directional Coupler (07-022005) .................................................................. 86 4.6. Downlink Output Shelf 80-301408 .......................................................................................... 87 4.6.1. Downlink Output Shelf 80-301408 System Schematic ........................................................ 87 4.6.2. Downlink Output Shelf 80-301408 Outline Drawing ............................................................ 88 4.6.3. Downlink Output Shelf 80-301408 Specification .............................................................. 89 4.6.4. Downlink Output Shelf 80-301408 Illustrations ................................................................ 89 4.6.4.1. Rear View .................................................................................................................. 89 4.6.5. Downlink Output Shelf 80-301408 Major Sub Components ............................................. 90 4.6.5.1. 30dB Directional Coupler (07-018005) ...................................................................... 90 4.7. Uplink Input Shelf 80-301407.................................................................................................. 91 4.7.1. Uplink Input Shelf 80-301407 System Schematic ............................................................ 91 4.7.2. Uplink Input Shelf 80-301407 Outline Drawing ................................................................ 92 4.7.3. Uplink Input Shelf 80-301407 Specification...................................................................... 92 4.7.4. Uplink Input Shelf 80-301407 Illustrations........................................................................ 92 4.7.4.1. Rear View .................................................................................................................. 92 4.7.5. Uplink Input Shelf 80-301407 Major Sub Components .................................................... 93 4.8. Uplink Output Shelf 80-301407............................................................................................... 94 4.8.1. Uplink Output Shelf 80-301407 System Schematic ......................................................... 94 4.8.2. Uplink Output Shelf 80-301407 Outline Drawing.............................................................. 95 4.8.3. Uplink Output Shelf 80-301407 Specification................................................................... 95 4.8.4. Uplink Output Shelf 80-301407 Illustrations ..................................................................... 95 4.8.4.1. Rear View .................................................................................................................. 95 4.8.5. Uplink Output Shelf 80-301407 Major Sub Components ................................................. 96 4.9. VHF Amplifier Shelf 80-301409 .............................................................................................. 97 4.9.1. VHF Amplifier Shelf 80-301409 System Diagram ............................................................ 98 4.9.2. VHF Amplifier Shelf 80-301409 Outline Drawing ............................................................. 99 4.9.3. VHF Amplifier Shelf 80-301409 Specification ................................................................ 100 4.9.4. VHF Amplifier Shelf 80-301409 Illustrations................................................................... 100 4.9.4.1. Front View................................................................................................................ 100 4.9.4.2. Rear View ................................................................................................................ 101 4.9.5. VHF Amplifier Shelf 80-301409 Major Sub Components ............................................... 101 4.9.5.1. Bandpass Filter (01-002503) ................................................................................... 102 4.9.5.2. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ............................................. 102 4.9.5.3. VHF Power Amplifier 5W (12-025602)..................................................................... 103 4.9.5.4. Automatic Gain Control............................................................................................ 104 4.9.5.5. 24V Relay Dual Assembly (20-001602)................................................................... 105 4.9.5.6. Dual Diode Assembly (94-100004) .......................................................................... 105 4.10. UHF Lowband Amplifier Shelf 80-301410 ......................................................................... 106 4.10.1. UHF Lowband Amplifier Shelf 80-301410 System Diagram ....................................... 107 4.10.2. UHF Lowband Amplifier Shelf 80-301410 Outline Drawing ........................................ 108 4.10.3. UHF Lowband Amplifier Shelf 80-301410 Specification ............................................. 109 4.10.4. UHF Lowband Amplifier Shelf 80-301410 Illustrations................................................ 109 4.10.4.1. Front View .............................................................................................................. 109 4.10.4.2. Rear View............................................................................................................... 110 4.10.5. UHF Lowband Amplifier Shelf 80-301410 Major Sub Components ............................ 110 4.10.5.1. 30dB Directional Coupler (07-002908)................................................................... 111 4.10.5.2. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ........................................... 111 4.10.5.3. Low Noise Amplifier (11-005401)........................................................................... 112 4.10.5.4. TETRA Power Amplifier 20W (12-016301) ............................................................ 113 4.10.5.5. TETRA Power Amplifier 5W (12-021601) .............................................................. 114 3.10.5.6. Low Power Amplifier (1Watt) (12-021801) ............................................................. 115 4.10.5.7. Automatic Gain Control .......................................................................................... 116 4.10.5.8. 24V Relay Dual Assembly (20-001602) ................................................................. 117 4.10.5.9. 12V Relay Assembly 80-008909............................................................................ 117 4.10.5.10. Dual Diode Assembly (94-100004) ...................................................................... 118 4.10.5.11. DC/DC Converter, 24V in, 12V 5A out (96-200024) ............................................ 118 4.11. UHF Midband Amplifier Shelf 80-301410 .......................................................................... 119 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 4 of 148 4.11.1. UHF Lowband Amplifier Shelf 80-301410 System Diagram ....................................... 120 4.11.2. UHF Midband Amplifier Shelf 80-301410 Outline Drawing ......................................... 120 4.11.3. UHF Midband Amplifier Shelf 80-301410 Specification .............................................. 120 4.11.4. UHF Lowband Amplifier Shelf 80-301410 Illustrations................................................ 120 4.11.4.1. Front View .............................................................................................................. 120 4.11.4.2. Rear View............................................................................................................... 121 4.11.5. UHF Midband Amplifier Shelf 80-301410 Major Sub Components............................. 121 4.12. UHF Highband Amplifier Shelf 80-301410......................................................................... 122 4.12.1. UHF Highband Amplifier Shelf 80-301410 System Diagram ...................................... 123 4.12.2. UHF Highband Amplifier Shelf 80-301410 Outline Drawing ....................................... 123 4.12.3. UHF Highband Amplifier Shelf 80-301410 Specification............................................. 123 4.12.4. UHF Highband Amplifier Shelf 80-301410 Illustrations............................................... 123 4.12.4.1. Front View .............................................................................................................. 123 4.12.4.2. Rear View............................................................................................................... 124 4.12.5. UHF Highband Amplifier Shelf 80-301410 Major Sub Components ........................... 124 4.13. 800MHz Amplifier Shelf 80-301411 ................................................................................... 125 4.13.1. 800MHz Amplifier Shelf 80-301411 System Diagram................................................. 126 4.13.2. 800MHz Amplifier Shelf 80-301411 Outline Drawing.................................................. 127 4.13.3. 800MHz Amplifier Shelf 80-301411 Specification ....................................................... 128 4.13.4. 800MHz Amplifier Shelf 80-301411 Illustrations ......................................................... 128 4.13.4.1. Front View .............................................................................................................. 128 4.13.4.2. Rear View............................................................................................................... 129 4.13.5. 800MHz Amplifier Shelf 80-301411 Major Sub Components...................................... 129 4.13.5.1. Bandpass Filter (02-011601).................................................................................. 130 4.13.5.2. Splitter/Combiner (05-002602)............................................................................... 130 4.13.5.3. 30dB Directional Coupler (07-002907)................................................................... 131 4.13.5.4. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) ........................................... 131 4.13.5.5. Low Noise Amplifier (11-005902)........................................................................... 132 4.13.5.6. 5W Power Amplifier (12-018601) ........................................................................... 133 4.13.5.7. 20W Power Amplifier (12-020501) ......................................................................... 134 4.13.5.8. Automatic Gain Control .......................................................................................... 135 4.13.5.9. 24V Relay Dual Assembly (20-001602) ................................................................. 136 4.13.5.10. Dual Diode Assembly (94-100004) ...................................................................... 136 4.13.5.11. DC/DC Converter, 24V in, 12V 5A out (96-200024) ............................................ 136 4.14 PSU 96-300064 ................................................................................................................ 137 5. INSTALLATION........................................................................................................................ 138 5.1 Installation Record ................................................................................................................ 138 5.2 General Remarks.................................................................................................................. 138 5.3 Electrical Connections .......................................................................................................... 138 5.4 RF Connections .................................................................................................................... 138 5.5 Optical Connections.............................................................................................................. 138 5.6 Commissioning ..................................................................................................................... 139 6. MAINTENANCE ....................................................................................................................... 140 6.1 Fault Finding ......................................................................................................................... 140 6.1.1 Quick Fault Checklist...................................................................................................... 140 6.1.2 Fault Isolation ................................................................................................................. 140 6.1.3 Downlink......................................................................................................................... 140 6.1.4 Uplink ............................................................................................................................. 141 6.1.5 Checking service ............................................................................................................ 141 6.1.6 Fault repair ..................................................................................................................... 141 6.1.7 Service Support.............................................................................................................. 141 6.2 Tools & Test Equipment........................................................................................................ 142 6.3 Care of Modules.................................................................................................................... 142 6.3.1 General Comments ........................................................................................................ 142 6.3.2 Module Removal (LNAs, general procedure) ................................................................. 142 6.3.3 Module Replacement (general) ...................................................................................... 142 6.3.4 Power Amplifiers ............................................................................................................ 142 6.3.5 Low Power Amplifier Replacement ................................................................................ 143 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 5 of 148 6.3.6 Module Transportation ................................................................................................... 143 APPENDIX A ..................................................................................................................................... 144 A.1. Glossary of Terms used in this document ......................................................................... 144 A.2. Key to Drawing Symbols used in this document................................................................ 145 A.3. EC Declaration of Conformity ............................................................................................ 146 A.4. Amendment List Record Sheet.......................................................................................... 147 APPENDIX B ..................................................................................................................................... 148 B.1. INITIAL EQUIPMENT SET-UP CALCULATIONS ............................................................. 148 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 6 of 148 1. INTRODUCTION 1.1. Scope and Purpose of Document This handbook is for use solely with the equipment identified by the Axell Wireless Limited (AWL) Part Number shown on the front cover. It is not to be used with any other equipment unless specifically authorised by AWL. This is a controlled release document and, as such, becomes a part of the Axell Wireless Total Quality Management System. Alterations and modification may therefore only be performed by Axell Wireless. AWL recommends that the installer of this equipment familiarise themselves with the safety and installation procedures contained within this document before installation commences. The purpose of this handbook is to provide the user/maintainer with sufficient information to service and repair the equipment to the level agreed. Maintenance and adjustments to any deeper level must be performed by AWL, normally at the company’s repair facility in Chesham, England. This handbook has been prepared in accordance with BS 4884, and AWL’s Quality procedures, which maintain the company’s registration to BS EN ISO 9001:2000 and to the R&TTE Directive of the European Parliament. Copies of the relevant certificates and the company Quality Manual can be supplied on application to the Quality Manager. This document fulfils the relevant requirements of Article 6 of the R&TTE Directive. 1.2. Limitation of Liability Notice This manual is written for the use of technically competent operators/service persons. No liability is accepted by AWL for use or misuse of this manual, the information contained therein, or the consequences of any actions resulting from the use of the said information, including, but not limited to, descriptive, procedural, typographical, arithmetical, or listing errors. Furthermore, AWL does not warrant the absolute accuracy of the information contained within this manual, or its completeness, fitness for purpose, or scope. AWL has a policy of continuous product development and enhancement, and as such, reserves the right to amend, alter, update and generally change the contents, appearance and pertinence of this document without notice. All AWL products carry a twelve month warranty from date of shipment. The warranty is expressly on a return to base repair or exchange basis and the warranty cover does not extend to on-site repair or complete unit exchange. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 7 of 148 2. SAFETY CONSIDERATIONS 2.1. Earthing of Equipment Equipment supplied from the mains must be connected to grounded outlets and earthed in conformity with appropriate local, national and international electricity supply and safety regulations. 2.2. Electric Shock Hazard The risk of electrical shocks due to faulty mains driven power supplies whilst potentially ever present in any electrical equipment, would be minimised by adherence to good installation practice and thorough testing at the following stages: a) Original assembly. b) Commissioning.. c) Regular intervals, thereafter. All test equipment must be in good working order prior to its use. High current power supplies can be dangerous because of the possibility of substantial arcing. Always switch off during disconnection and reconnection. 2.3. RF Radiation Hazard RF radiation, (especially at UHF frequencies) arising from transmitter outputs connected to AWL’s equipment, must be considered a safety hazard. This condition might only occur in the event of cable disconnection, or because a ‘spare’ output has been left un-terminated. Either of these conditions would impair the system’s efficiency. No investigation should be carried out until all RF power sources have been removed. This would always be a wise precaution, despite the severe mismatch between the impedance of an N type connector at 50, and that of free space at 377, which would severely mitigate against the efficient radiation of RF power. Radio frequency burns could also be a hazard, if any RF power carrying components were to be carelessly touched! Antenna positions should be chosen to comply with requirements (both local & statutory) regarding exposure of personnel to RF radiation. When connected to an antenna, the unit is capable of producing RF field strengths, which may exceed guideline safe values especially if used with antennas having appreciable gain. In this regard the use of directional antennas with backscreens and a strict site rule that personnel must remain behind the screen while the RF power is on, is strongly recommended. Where the equipment is used near power lines or in association with temporary masts not having lightning protection, the use of a safety earth connected to the case-earthing bolt is strongly advised. 2.4. Lifting and other Health and Safety Recommendations Certain items of AWL equipment are heavy and care should be taken when lifting them by hand. Ensure that a suitable number of personnel, appropriate lifting apparatus and appropriate personal protective equipment is used especially when installing Cell Enhancers above ground e.g. on a mast or pole. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 8 of 148 2.5. Chemical Hazard Beryllium Oxide, also known as Beryllium Monoxide, or Thermalox™, is sometimes used in devices within equipment produced by Axell Wireless Ltd. Beryllium oxide dust can be toxic if inhaled, leading to chronic respiratory problems. It is harmless if ingested or by contact. Products that contain beryllium are load terminations (dummy loads) and some power amplifiers. These products can be identified by a yellow and black “skull and crossbones” danger symbol (shown above). They are marked as hazardous in line with international regulations, but pose no threat under normal circumstances. Only if a component containing beryllium oxide has suffered catastrophic failure, or exploded, will there be any danger of the formation of dust. Any dust that has been created will be contained within the equipment module as long as the module remains sealed. For this reason, any module carrying the yellow and black danger sign should not be opened. If the equipment is suspected of failure, or is at the end of its life-cycle, it must be returned to Axell Wireless Ltd. for disposal. To return such equipment, please contact the Quality Department, who will give you a Returned Materials Authorisation (RMA) number. Please quote this number on the packing documents, and on all correspondence relating to the shipment. PolyTetraFluoroEthylene, (P.T.F.E.) and P.T.F.E. Composite Materials Many modules/components in AWL equipment contain P.T.F.E. as part of the RF insulation barrier. This material should never be heated to the point where smoke or fumes are evolved. Any person feeling drowsy after coming into contact with P.T.F.E. especially dust or fumes should seek medical attention. 2.6. Laser safety General good working practices adapted from EN60825-2: 2004/ EC 60825-2:2004 Do not stare with unprotected eyes or with any unapproved optical device at the fibre ends or connector faces or point them at other people, Use only approved filtered or attenuating viewing aids. Any single or multiple fibre end or ends found not to be terminated (for example, matched, spliced) shall be individually or collectively covered when not being worked on. They shall not be readily visible and sharp ends shall not be exposed. When using test cords, the optical power source shall be the last connected and the first disconnected; use only approved methods for cleaning and preparing optical fibres and optical connectors. Always keep optical connectors covered to avoid physical damage and do not allow any dirt/foreign material ingress on the optical connector bulkheads. The optical fibre jumper cable maximum bend radius is 3cm; any smaller radii may result in optical cable breakage or excessive transmission losses. Caution: The FO units are NOT weather proof. 2.7. Emergency Contact Numbers The AWL Quality Department can be contacted on: Telephone +44 (0)1494 777000 Fax. +44 (0)1494 777002 e-mail qa@axellwireless.com Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 9 of 148 3. In-Line BDA Wall Mount 80-301401 The wall mount In Line BDA consists of 4 wall mount enclosures: 80-301402 the Combiner unit. 80-301403 which houses the VHF and UHF Low Band amplification modules. 80-301404 which houses the Mid and High band UHF amplification modules. 80-301405 which houses the 800MHz amplification modules. Downlink The downlink signal is received from the leaky feeder and enters the Combiner 80-301402 where by means of crossband splitter/couplers it is split into VHF, UHF and 800MHz paths, the UHF path is further split into Low, Middle and Highband paths. The VHF and UHF Lowband paths then leave Combiner 80-301402 and enters VHF/UHF BDA Unit 80-301403, The UHF Mid and Highband paths leaves Combiner 80-301402 and enters UHF BDA Unit 80-301404 The 800MHz path leaves Combiner 80-301402 and enters 800MHz BDA Unit 80-301405 After being amplified the Downlink signals from the three BDA units then re-enter Splitter/Combiner 80-301402 where they are combined into a single path and fed into the leaky feeder. Uplink The Uplink signal signal is received from the leaky feeder and enters the Splitter/Combiner 80-301402 where by means of crossband splitter/couplers it is split into VHF, UHF and 800MHz paths, the UHF path is further split into Low, Middle and Highband paths. The VHF and UHF Low band paths then leave Splitter/Combiner 80-301402 and enters VHF/UHF BDA Unit 80-301403, The UHF Mid and Highband paths leaves Splitter/Combiner 80-301402 and enters UHF BDA Unit 80301404 The 800MHz path leaves Splitter/Combiner 80-301402 and enters 800MHz BDA Unit 80-301405 After being amplified the Uplink signals from the three BDA units then re-enter Splitter/Combiner 80301402 where they are combined into a single path and fed into the leaky feeder. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 10 of 148 3.1. In-Line BDA Wall Mount 80-301401 Specification ELECTRICAL SPECIFICATION Downlink 154.0 to 161.5 MHz VHF Uplink 155.5 to 161.0 MHz Downlink 460.4 to 460.5 MHz UHF Low Uplink 465.4 to 465.5 MHz Frequency Downlink 482.5 to 483.8 MHz UHF Mid Range Uplink 485.7 to 486.8 MHz Downlink 507.0 to 507.3 MHz UHF High Uplink 510.0 to 510.3 MHz Downlink 856.0 to 861.0 MHz 800MHz Uplink 811.0 to 816.0 MHz Passband Ripple ± 1.5dB VHF 5 Watts UHF Low 20 Watts Downlink Power UHF Mid 20 Watts Amplifier UHF High 20 Watts 800MHz 40 Watts VHF 5 Watts UHF Low 5 Watts Uplink Power UHF Mid 5 Watts Amplifier UHF High 5 Watts 800MHz 5 Watts Gain 30dB Gain Adjust 0 - 30dB in 2dB Steps Sampling Ports 30dB VSWR 1.5:1 Impedance 50 Ohms Power Supply 24V DC Power Consumption < 800 Watts Environmental/Mechanical Specification Mechanical IP65 Wall Mount Qty. 4 off, Dimensions 620mm x 620mm x 250mm (excludes handles and connectors) (24” x 24” x 10” approx) RF Connectors N-Type Female Local Alarms to SCADA Alarm Interfaces Dry Contact with LED Indication per band path Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 11 of 148 3.1.1. In-Line BDA Wall Mount 80-301401 Overall system Diagram Drawing Number 80-301481 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 12 of 148 3.2. In-Line BDA Wall Mount 80-301401 List of Major Components Section 3.3. 3.4. 3.5. 3.6. 3.3. Component Part 80-301402 80-301403 80-301404 80-301405 Component Part Description Combiner VHF/UHF BDA Unit UHF BDA Unit 800MHz BDA Unit Qty Per Assembly Combiner 80-301402 Splitter/Combiner 80-301402 is the main Splitter/Combiner unit. Signals are received from the leaky feeder and are then split into their various separate paths before being amplified by external band specific amplifiers and then the signals are re-combined for onward transmission via the leaky feeder The unit is housed in a wall mount case 600x600x250mm (24” x 24” x 10” approx) Downlink signals are received at the port labelled “DOWNLINK INPUT” (Annotated AA in the picture in section 3.3.4.2.) and there is a 30dB test port labelled “DOWNLINK INPUT TEST PORT” (Z in section 3.3.4.2.). Ports labelled 1 to 5 (P to T in section 3.3.4.2.) are the Downlink outputs to the amplification stages and ports labelled A to E (A to E in section 3.3.4.2.) are the Downlink inputs from the amplification stages. These outputs and inputs are further described below. The Downlink signal leaves the Splitter/Combiner for the leaky feeder via the port labelled “DOWNLINK OUTPUT” (L in section 3.3.4.2.) and there is a 30dB test port labelled “DOWNLINK OUTPUT TEST PORT” (K in section 3.3.4.2.). Uplink signals are received at the port labelled “UPLINK INPUT” (N in section 3.3.4.2.) and there is a 30dB test port labelled “UPLINK INPUT TEST PORT” (M in section 3.3.4.2.). Ports labelled F to J (F to J in section 3.3.4.2.) are the Uplink outputs to the amplification stages and ports labelled 6 to 10 (U to Y in section 3.3.4.2.) are the Uplink inputs from the amplification stages. These outputs and inputs are further described below. The Uplink signal leaves the Splitter/Combiner for the leaky feeder via the port labelled “UPLINK OUTPUT” (CC in section 3.3.4.2.) and there is a 30dB test port labelled “UPLINK OUTPUT TEST PORT” (BB in section 3.3.4.2.). Splitter/Combiner 80-301402 also incorporates bandpass filtering for the three UHF bands, the filters are placed in the RF path before the outputs to and after the inputs from the external amplification stages Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 13 of 148 3.3.1. Combiner 80-301402 System Diagram Drawing Number 80-301482 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 14 of 148 3.3.2. Combiner 80-301402 Outline Drawing Drawing Number 80-301492 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 15 of 148 3.3.3. Combiner 80-301402 Specification Downlink PARAMETER SPECIFICATION Insertion Loss from Downlink Input port to port indicated VHF Band to port 1 < 1.0dB at 154.0 – 161.3MHz UHF Low Band to port 2 < 3.5dB at 460.4 – 460.5MHz UHF Mid Band to port 3 < 3.5dB at 482.5 -483.8MHz UHF High Band to port 4 < 4.0dB at 507.0 – 507.3MHz 800MHz Band to port 5 < 1.0dB at 856.0 – 861.0MHz Insertion Loss from port indicated to Downlink Input test port VHF Band 30dB at 154.0 – 161.3MHz UHF Low Band 30dB at 460.4 – 460.5MHz UHF Mid Band 30dB at 482.5 – 483.8MHz UHF High Band 30dB at 507.0 – 507.3MHz 800MHz Band 30dB at 856.0 – 861.0MHz Insertion Loss from port indicated to Downlink Output VHF Band from port A < 1.0dB at 154.0 – 161.3MHz UHF Low Band from port B < 3.5dB at 460.4 – 460.5MHz UHF Mid Band from port C < 3.5dB at 482.5 -483.8MHz UHF High Band from port D < 4.0dB at 507.0 – 507.3MHz 800MHz Band from port E < 1.0dB at 856.0 – 861.0MHz Insertion Loss from port indicated to Downlink Output Test port VHF Band from port A 31.0dB at 154.0 – 161.3MHz UHF Low Band from port B 33dB at 460.4 – 460.5MHz UHF Mid Band from port C 33dB at 482.5 – 483.8MHz UHF High Band from port D 33dB at 507.0 – 507.3MHz 800MHz Band from port E 31dB at 856.0 – 861.0MHz Uplink PARAMETER SPECIFICATION Insertion Loss from from Uplink Input port to port indicated VHF Band to port F < 1.0dB at 155.7 – 160.8MHz UHF Low Band to port G < 3.5dB at 465.4 – 465.5MHz UHF Mid Band to port H < 3.5dB at 485.7 -486.8MHz UHF High Band to port I < 4.0dB at 510.0 – 510.3MHz 800MHz Band to port J < 1.0dB at 811.0 – 816.0MHz Insertion Loss from port indicated to Uplink Input test port VHF Band 31dB at 155.7 – 160.8MHz UHF Low Band 33dB at 465.4 – 465.5MHz UHF Mid Band 33dB at 485.7 – 486.8MHz UHF High Band 33dB at 510.0 – 510.3MHz 800MHz Band 31dB at 811.0 – 816.0MHz Insertion Loss from port indicated to Uplink Output VHF Band from port 6 < 1.0dB at 155.7 – 160.8MHz UHF Low Band from port 7 < 3.5dB at 465.4 – 465.5MHz UHF Mid Band from port 8 < 3.5dB at 485.7 -486.8MHz UHF High Band from port 9 < 4.0dB at 510.0 – 510.3MHz 800MHz Band from port 10 < 1.0dB at 811.0 – 816.0MHz Insertion Loss from port indicated to Uplink Output Test port VHF Band from port 6 31dB at 155.7 – 160.8MHz UHF Low Band from port 7 33dB at 465.4 – 465.5MHz UHF Mid Band from port 8 33dB at 485.7 – 486.8MHz UHF High Band from port 9 33dB at 510.0 – 510.3MHz 800MHz Band from port 10 31dB at 811.0 – 816.0MHz Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 16 of 148 Environmental/Mechanical Specification PARAMETER Mechanical RF connectors Dimensions (excludes handles and connectors 3.3.4. 3.3.4.1. SPECIFICATION IP65 Wall Mount N type female 620mm x 620mm x 250mm (24” x 24” x 10” approx) Combiner 80-301402 Photographs Front View Note: All connectors are on the underside Lockable Door Handles Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 17 of 148 3.3.4.2. Underside view showing RF connectors AA BB CC DD Port A. Downlink VHF Input from VHF/UHF BDA Unit 80-301403 Port B. Downlink UHF Lowband Input from VHF/UHF BDA Unit 80-301403 Port C. Downlink UHF Midband Input from UHF BDA Unit 80-301404 Port D. Downlink UHF Highband Input from UHF BDA Unit 80-301404 Port E. Downlink 800MHz Input from 800MHz BDA Unit 80-301405 Port F. Uplink VHF Output to VHF/UHF BDA Unit 80-301403 Port G. Uplink UHF Lowband Output to VHF/UHF BDA Unit 80-301403 Port H. Uplink UHF Midband Output to UHF BDA Unit 80-301404 Port I. Uplink UHF Highband Output to UHF BDA Unit 80-301404 Port J. Uplink 800MHz Output to 800MHz BDA Unit 80-301405 Downlink Output Test Port (30dB Tap) Downlink Output to Radiating Cable Uplink Input Test Port (30dB Tap) Uplink Input from Radiating Cable Earth Connection Port 1. Downlink VHF Output to VHF/UHF BDA Unit 80-301403 Port 2. Downlink UHF Lowband Output to VHF/UHF BDA Unit 80-301403 Port 3. Downlink UHF Midband Output to UHF BDA Unit 80-301404 Port 4. Downlink UHF Highband Output to UHF BDA Unit 80-301404 Port 5. Downlink 800MHz Output to 800MHz BDA Unit 80-301405 Port 6. Uplink VHF Input from VHF/UHF BDA Unit 80-301403 Port 7. Uplink UHF Lowband Input from VHF/UHF BDA Unit 80-301403 Port 8. Uplink UHF Midband Input from UHF BDA Unit 80-301404 Port 9. Uplink UHF Highband Input from UHF BDA Unit 80-301404 Port 10. Uplink 800MHz Input from 800MHz BDA Unit 80-301405 Downlink Input Test Port (30dB Tap) Downlink Input from Radiating Cable Uplink Output Test Port (30dB Tap) Uplink Output to Radiating Cable Case feet Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 18 of 148 3.3.4.3. Interior view Downlink Input 30dB Bi-Directional Coupler 07-022005 Downlink Input Crossband Splitter/Coupler 07-004815 Downlink Input Crossband Splitter/Coupler 07-005754 Downlink Input UHF Lowband Bandpass Filter 02-010701 Downlink Input UHF Midband Bandpass Filter 02-010701 Downlink Input UHF Highband Bandpass Filter 02-010901 Downlink Output UHF Lowband Bandpass Filter 02-010701 Downlink Output UHF Midband Bandpass Filter 02-010701 Downlink Output UHF Highband Bandpass Filter 02-010901 Downlink Output Crossband Splitter/Coupler 07-005754 Downlink Output Crossband Splitter/Coupler 07-004815 Downlink Output 30dB Coupler 07-018005 Uplink Input 30dB Bi-Directional Coupler 07-022005 Uplink Input Crossband Splitter/Coupler 07-004815 Uplink Input Crossband Splitter/Coupler 07-005754 Uplink Input UHF Lowband Bandpass Filter 02-010701 Uplink Input UHF Midband Bandpass Filter 02-010701 Uplink Input UHF Highband Bandpass Filter 02-010901 Uplink Output UHF Lowband Bandpass Filter 02-010701 Uplink Output UHF Midband Bandpass Filter 02-01070 Uplink Output UHF Highband Bandpass Filter 02-010901 Uplink Output Crossband Splitter/Coupler 07-005754 Uplink Output Crossband Splitter/Coupler 07-004815 Uplink Output 30dB Bi-Directional Coupler 07-022005 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 19 of 148 3.3.5. Section 3.3.5.1. 3.3.5.2. 3.3.5.3. 3.3.5.4. 3.3.5.5. 3.3.5.6. 3.3.5.1. Combiner 80-301402 Major Sub-Components Component Part 02-010701 02-010901 07-004815 07-005754 07-018005 07-022005 Component Part Description Qty Per Assembly Bandpass Filter Bandpass Filter Crossband Splitter/Coupler 550/800MHz Crossband Splitter/Coupler VHF/UHF 30dB Directional Coupler 30dB Bi-Directional Coupler Bandpass Filter 02-010701 The bandpass filters are multi-section designs with a bandwidth dependent upon the passband frequencies, (both tuned to customer requirements). The response shape is basically Chebyshev with a passband design ripple of 0.1dB. The filters are of combline design, and are carefully aligned during manufacture in order to optimise the insertion loss, VSWR and intermodulation characteristics of the unit. The tuned elements are silver-plated to reduce surface ohmic losses and maintain a good VSWR figure and 50 load at the input and output ports. Being passive devices, the bandpass filters should have an extremely long operational life and require no maintenance. Should a filter be suspect, it is usually most time efficient to replace the module rather than attempt repair or re-tuning. 02-010701 Specification PARAMETER Downlink UHF Low Uplink Passband Frequency Downlink UHF Mid Uplink UHF Low Bandwidth UHF Mid Number of sections Insertion loss VSWR Connectors Power Handling Temperature operation range storage Weight 3.3.5.2. SPECIFICATION 460.4 to 460.5 MHz 465.4 to 465.5 MHz 482.5 to 483.8 MHz 485.7 to 486.8 MHz 0.1 MHz 1.3 MHz 2.4 dB (typical) better than 1.2:1 SMA 100W max -20°C to +60°C -40°C to +70°C 3 kg (typical) Bandpass Filter 02-010901 Bandpass Filter 02-010901 is a multi-section design with a bandwidth dependent upon the passband frequencies, (both tuned to customer requirements). The response shape is basically Chebyshev with a passband design ripple of 0.1dB. The filters are of helical & combline design respectively, and are carefully aligned during manufacture in order to optimise the insertion loss, VSWR and intermodulation characteristics of the unit. The body and tuned elements are silver-plated to reduce surface ohmic losses and maintain a good VSWR figure and 50 load at the input and output ports. Being passive devices, the bandpass filters should have an extremely long operational life and require no maintenance. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 20 of 148 02-010901 specification SPECIFICATION Passband Downlink Frequency Uplink Uplink Bandwidth Downlink Insertion Loss Power Rating Impedance VSWR Connectors Weight 3.3.5.3. PARAMETER 507.0 to 507.3MHz 510.0 to 510.3MHz 0.3 MHz 0.3 MHz 2.9 dB (typical) 50W 50ȍ Better than 1.2:1 SMA 3Kg (approximately) Crossband Splitter/Coupler 550/800MHz (07-004815) The purpose of Crossband Splitter/Coupler (07-004815) is to split or combine RF signals from different parts of the frequency spectrum. It is a 3 port device comprising two filters, one a low pass, the other a high pass, connected to a common input/output. The couplers are housed in a machined aluminium casing having a centre screening wall between the filter sections and lid secured by screws at frequent intervals over its perimeter to obtain a tight seal and to ensure linearity and stability of response. 07-004815 Specification Parameter Passband Frequencies Insertion loss Isolation between Bands VSWR Impedance Power rating operation Temperature range storage RF Connectors Weight 3.3.5.4. Low Pass Port 380 to 550MHz <0.5dB >50dB High Pass Port 800 to 960MHz <0.5dB >50dB 1.3:1 50 ohm 50W -20C to +60C -40C to +70C SMA (female) <1kg Crossband Splitter/Coupler VHF/UHF (07-005754) The purpose of Crossband Splitter/Coupler (07-005754) is to split or combine RF signals from different parts of the frequency spectrum. It is a 3 port device comprising two filters, one a low pass, the other a high pass, connected to a common input/output. The couplers are housed in a machined aluminium casing having a centre screening wall between the filter sections and lid secured by screws at frequent intervals over its perimeter to obtain a tight seal and to ensure linearity and stability of response. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 21 of 148 07-005754 Specification Parameter Passband Frequencies Insertion loss Return loss Isolation between Bands Impedance Power rating operation Temperature range storage RF Connectors Weight 3.3.5.5. Low Pass Port High Pass Port 70 to 175 MHz 380 to 500 MHz <0.5dB <0.5dB >14dB typical >14dB typical >60dB >60dB 50 ohm 50W -20C to +60C -40C to +70C SMA (female) <1kg 30dB Directional Coupler (07-018005) The purpose of these couplers is to tap off known portions (in this case 30dB) of RF signal from transmission lines and to combine them, for example though splitter units for different purposes (alarms/monitoring etc.), whilst maintaining an accurate 50: load to all ports/interfaces throughout the specified frequency range. 07-018005 is a Uni-Directional device and as such will only couple 30dB of signal in one direction. 07-018005 Specification PARAMETER SPECIFICATION Frequency Range 70 MHz - 1000MHz Mainline Insertion Loss <0.5 Coupling Loss 30 dB VSWR Mainline Better than 1.3:1 Impedance 50 ȍ Power Handling (CW) 100W Outline (W x D x H) 176mm x 104mm x 24mm (ex. connectors) Connectors N (female) on all ports Case Material Aluminium Finish Iridite NCP operation -20C to +60C Temperature range storage -40C to +70C Ingress Protection IP54 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 22 of 148 3.3.5.6. 30dB Bi-Directional Coupler (07-022005) The purpose of these couplers is to tap off known portions (in this case 30dB) of RF signal from transmission lines and to combine them, for example though splitter units for different purposes (alarms/monitoring etc.), whilst maintaining an accurate 50: load to all ports/interfaces throughout the specified frequency range. 07-022005 is a Bi-Directional device and as such will couple 30dB of signal whichever direction the signal is traveling. 07-022005 Specification PARAMETER Frequency Range Mainline Insertion Loss Coupling Loss Coupling Loss Tolerance VSWR Mainline Impedance Power Handling (CW) Outline (W x D x H) Connectors Case Material Finish Operating Temperature Ingress Protection Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 100kHz – 2.7GHz < 1.0 dB 30 dB +/-2.0 dB Better than 1.4:1 50 ȍ 5W 44.5mm x 41mm x 27mm (ex. connectors) SMA (female) on all ports Aluminium Iridite NCP -20 to +55°C IP54 L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 23 of 148 3.4. VHF/UHF BDA Unit (80-301403) VHF/UHF BDA Unit (80-301403) provides the amplification stages for the VHF and UHF Lowband paths, The unit is housed in a wall mount case 600x600x250mm (24” x 24” x 10” approx). The Downlink VHF signal is received at the port labelled “VHF D/L INPUT” (Annotated A in the picture in section 3.4.4.2.). The Downlink VHF path passes through a bandpass filter to remove out of band noise and then a switched attenuator providing 0 to 30 dB of RF signal attenuation. After leaving the attenuator the VHF Downlink signal passes through a 5W amplification stage, this amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. After leaving the Amplification/AGC stage the VHF Downlink signal passes through a second bandpass filter and exits the BDA via the port labelled “VHF D/L OUTPUT” ( B in section 3.4.4.2.). The Uplink VHF Signal is received at the port labelled “VHF U/L INPUT” (C in section 3.4.4.2.). The VHF Uplink path passes through a bandpass filter to remove out of band noise and then a switched attenuator providing 0 to 30 dB of RF signal attenuation. After leaving the attenuator the VHF Uplink signal passes through a 5W amplification stage, this amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. After leaving the Amplification/AGC stage the VHF Uplink signal passes through a second bandpass filter and exits the BDA via the port labelled “VHF U/L OUTPUT” (D in section 3.4.4.2.). The Downlink UHF Lowband signal is received at the port labelled “UHF LOW D/L INPUT” (E in section 3.4.4.2.). The signal passes through a switched attenuator providing 0 to 30 dB of RF signal attenuation and then into the amplification stage. The Downlink UHF Lowband amplification stage is provided by tow amplifier modules, the first is a 15dB gain Low Power Amplifier and the second is a 20W, 23dB gain power amplifier. Both amplification stages are straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The input to the AGC detector is provided by the output of a 30dB tap. After leaving the Amplification/AGC stage the Downlink UHF Lowband signal exits the BDA via the port labelled “UHF LOW D/L OUTPUT” (F in section 3.4.4.2.). The Uplink UHF Lowband signal is received at the port labelled “UHF LOW U/L INPUT” (G in section 3.4.4.2.). The signal passes into a Low Noise Amplifier providing 15dB of gain and then into a switched attenuator providing 0 to 30 dB of RF signal attenuation. After the attenuator the Uplink UHF Lowband signal passes into a second stage of amplification provided by a 5W, 30dB gain Power Amplifier, this amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The Uplink UHF Lowband signal exits the BDA via the port labelled “UHF LOW U/L OUTPUT” (H in section 3.4.4.2.). VHF/UHF BDA Unit (80-301403) is provided with a 24V DC input to power the amplifier modules within and those amplifier modules are configured to provide alarm status reports. Separate alarm contact outputs are provided for the VHF and the UHF Lowband paths. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 24 of 148 3.4.1. VHF/UHF BDA Unit (80-301403) System Diagram Drawing Number 80-301483 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 25 of 148 3.4.2. VHF/UHF BDA Unit (80-301403) Outline Drawing Drawing Number 80-301493 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 26 of 148 3.4.3. VHF/UHF BDA Unit(80-301403) Specification Parameter Specification Downlink VHF UHF Lowband VHF UHF Lowband VHF UHF Lowband VHF UHF Lowband VHF UHF Lowband VHF UHF Lowband 154.0 to 161.5MHz 460.4 to 460.5MHz 30dB 30dB 0 to 30dB in 2dB steps 0 to 30dB in 2dB steps > +34.0dBm > +42.5dBm 1dB below P1dB 1dB below P1dB > +45.0dBm > +53.5dBm VHF UHF Lowband VHF Maximun gain UHF Lowband VHF Gain Adjustment UHF Lowband 1dB Compression Point VHF (P1dB) UHF Lowband VHF ALC setting UHF Lowband VHF 3rd Order Intercept point UHF Lowband VHF Noise Figure UHF Lowband Environmental/Mechanical Specification Mechanical Dimensions (excludes handles and connectors) RF Connectors 155.5 – 161.0MHz 465.4 – 465.5MHz 30dB 30dB 0 to 30dB in 2dB steps 0 to 30dB in 2dB steps > +34.0dBm > +36.5dBm +27dBm +27dBm > +45.0dBm > +48.0dBm < 10dB < 3.0dB Downlink Passband Maximun gain Gain Adjustment 1dB Compression Point (P1dB) ALC setting 3rd Order Intercept point Uplink Uplink Passband IP65 Wall Mount 620mm x 620mm x 250mm (24” x 24” x 10” approx) N-Type Female Local Alarms to SCADA Alarm Interfaces Dry Contact with LED Indication per band path Power Supply 24V DC Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 27 of 148 3.4.4. 3.4.4.1. VHF/UHF BDA Unit(80-301403) Photographs Front View Note: All connectors (RF, DC and Alarms) are on the underside Green LED “Power On” Red LED VHF Downlink Alarm Red LED VHF Uplink Alarm Red LED UHF Lowband Downlink Alarm Red LED UHF Lowband Uplink Alarm Lockable Door Handles Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 28 of 148 3.4.4.2. Underside view showing connectors VHF Downlink Input from port 1 on Combiner 80-301402 VHF Downlink Output to port A on Combiner 80-301402 VHF Uplink Input from port F on Combiner 80-301402 VHF Uplink Output to port 6 on Combiner 80-301402 UHF Lowband Downlink Input from port 2 on Combiner 80-301402 UHF Lowband Downlink Output to port B on Combiner 80-301402 UHF Lowband Uplink Input from port G on Combiner 80-301402 UHF Lowband Uplink Output to port 7 on Combiner 80-301402 24V DC Input VHF Band Alarm Output UHF Lowband Alarm Output Earth Connection Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 29 of 148 3.4.4.3. Interior view AA VHF Downlink Filters 01-002503 (Input filter below, Output filter above) VHF Downlink Switched Attenuator 10-000701 VHF Downlink AGC Attenuator 17-001201 VHF Downlink 5W Power Amplifier 12-025602 VHF Downlink AGC Detector 17-001101 VHF Uplink Filters 01-002503 (Input filter below, Output filter above) VHF Uplink Switched Attenuator 10-000701 VHF Uplink AGC Attenuator 17-001201 VHF Uplink 5W Power Amplifier 12-025602 VHF Uplink AGC Detector 17-001101 UHF Lowband Downlink Switched Attenuator 10-000701 UHF Lowband Downlink AGC Attenuator 17-001201 UHF Lowband Downlink Low Power Amplifier 12-021801 UHF Lowband Downlink 20W Power Amplifier 12-016301 UHF Lowband Downlink 30dB Directional Coupler 07-002908 UHF Lowband Downlink AGC Detector 17-001105 UHF Lowband Uplink Low Noise Amplifier 11-005401 UHF Lowband Uplink Switched Attenuator 10-000701 UHF Lowband Uplink AGC Attenuator 17-001201 UHF Lowband Uplink 5W Power Amplifier 12-021601 UHF Lowband Uplink AGC Detector 17-001101 DC/DC Converter 96-200024 24V Dual Relay Assembly (VHF Alarm output) 20-001602 24V Dual Relay Assembly (UHF Lowband output) 20-001602 24V Relay Assembly 80-008902 Dual Diode Assembly 94-100004 Main DC 10A Circuit Breaker 96-920021 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 30 of 148 3.4.5. Section 3.4.5.1. 3.4.5.2. 3.4.5.3. 3.4.5.4. 3.4.5.5. 3.4.5.6. 3.4.5.7. 3.4.5.8. 3.4.5.9. 3.4.5.10. 3.4.5.11. 3.4.5.12. 3.4.5.13. 3.4.5.1. VHF/UHF BDA Unit(80-301403) Major Sub-components Component Part 01-002503 07-002908 10-000701 11-005401 12-016301 12-021601 12-021801 12-025602 17-001101 17-001105 17-001201 20-001602 80-008902 94-100004 96-200024 Component Part Description Qty Per Assembly Bandpass Filter 30dB Directional Coupler Switched Attenuator 0.25Watt, 0 - 30dB Low Noise Amplifier TETRA Power Amplifier 20W TETRA Power Amplifier 5W Low Power Amplifier VHF Power Amplifier 5W AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly 24V Dual Relay Assembly 24V Relay Assembly Dual Diode Assembly DC/DC Converter Bandpass Filter (01-002503) The bandpass filters are multi-section designs with a bandwidth dependent upon the passband frequencies, (both tuned to customer requirements). The response shape is basically Chebyshev with a passband design ripple of 0.1dB. The filters are of helical design, and are carefully aligned during manufacture in order to optimise the insertion loss, VSWR and intermodulation characteristics of the unit. The tuned elements are silver-plated to reduce surface ohmic losses and maintain a good VSWR figure and 50ȍ load at the input and output ports. Being passive devices, the bandpass filters have an extremely long operational life and require no maintenance. Should a filter be suspect, it is usually most time efficient to replace the module rather than attempt repair or re-tuning. No adjustments should be attempted without full network sweep analysis facilities to monitor both insertion loss and VSWR simultaneously. 01-002503 Specification SPECIFICATION Bandpass Downlink Frequency Uplink Downlink Bandwidth Uplink No. of sections Insertion loss VSWR Connectors Power handling Temperature operational range store Weight Size Axell Wireless Limited Technical Literature Document Number 80-301401HBKM PARAMETER 154.0 MHz to 161.5 MHz 155.5 MHz to 161.0 MHz 7.5MHz 5.5MHz 1.5dB Better than 1.2:1 SMA 100W maximum -20°C to +60°C -40°C to +70°C 3 kg 384 x 82.5 x 56.4mm L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 31 of 148 3.4.5.2. 30dB Directional Coupler (07-002908) The purpose of these couplers is to tap off known portions of RF signal from transmission lines and to combine them, for example through splitter units for different purposes (alarms/monitoring etc.), whilst maintaining an accurate 50: load to all ports/interfaces throughout the specified frequency range. They are known as directional couplers as they couple power from the RF mainline in one direction only. Directional Coupler 07-002908 is configured to tap off 30dB. 07-002908 Specification PARAMETER Frequency range Insertion loss Coupling level Rejection Weight Connectors Temperature operation range storage 3.4.5.3. SPECIFICATION 50 - 1000MHz <0.3dB 30dB N/A <200gms N type, female -20°C to +60°C -40°C to +70°C Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) In many practical applications for Cell Enhancers etc., the gain in each path is found to be excessive. Therefore, provision is made within the unit for the setting of attenuation in each path, to reduce the gain. 10-000701 provides attenuation from 0 to 30dB in 2 dB steps The attenuation is simply set using the four miniature toggle switches on the top of each unit. Each switch is clearly marked with the attenuation it provides, and the total attenuation in line is the sum of the values switched in. They are designed to maintain an accurate 50ȍ impedance over their operating frequency at both input and output. 10-000701 Specification PARAMETER Attenuation Values Attenuation Steps Power Handling Attenuation Accuracy Frequency Range Impedance Connectors VSWR Weight Temperature operation range storage Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 0-30dB 2, 4, 8 and 16dB 0.25 Watt ± 1.0 dB DC to 1GHz 50ȍ SMA 1.3:1 0.2kg -20°C to +60°C -40°C to +70°C L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 32 of 148 3.4.5.4. Low Noise Amplifier (11-005401) The 15dB gain low noise amplifier used in the unit is a double stage solid-state low noise amplifier. Class A circuitry is used throughout the units to ensure excellent linearity over a very wide dynamic range. The active devices are very moderately rated to provide a long trouble-free working life. There are no adjustments on these amplifiers, and in the unlikely event of a failure, the complete amplifier should be replaced. The amplifier is housed in an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a 9way D-type for DC and alarm outputs. 11-005401 Specification PARAMETER Frequency range Bandwidth 1dB compression point 3rd order intercept Gain VSWR Input return loss Noise figure Connectors Supply Temperature operational range storage Size Weight SPECIFICATION 380 - 500MHz <100MHz (as required, tuneable) >+20dBm >+33dBm >15.5dB (typical) better than 1.5:1 >14dB <2.0dB (typical) SMA female 115mA at 12V DC -10°C to +60°C -40°C to +70°C 88 x 50 x 34mm (ex. connectors) 0.26kg LNA ‘D’ Connector Pin-out details Connector pin Signal +ve input (10-24V) GND Alarm relay O/P bad Alarm relay common Alarm relay good No connection TTL voltage set TTL alarm/0V (good) O/C good/0V bad 9-Way Pin-Out Graphical Representation Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 33 of 148 3.4.5.5. TETRA Power Amplifier 20W (12-016301) This amplifier is a Class A 20W power amplifier from 380MHz to 470MHz in a 1 stage balanced configuration. It demonstrates a very high linearity and a very good input/output return loss (RL). It has built in a Current Fault Alarm Function. It is housed is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. Note the large diameter DC power input pins (1 & 2) fitted to reduce volt-drop/arcing. 12-016301 Specification PARAMETER Frequency range Small signal gain Gain flatness I/O Return loss 1dB compression point OIP3 Supply voltage Supply current Temperature operational range storage Weight SPECIFICATION 380-470MHz 23dB ±1.7dB >18dB +43dBm +55dBm 24V DC 3.8Amps (Typical) -10°C to +60°C -20°C to +70°C <2kg (no heatsink) 7-Way Connector Pin-out details Connector Pin Signal A1 (large pin) +24V DC A2 (large pin) GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 34 of 148 3.4.5.6. TETRA Power Amplifier 5W (12-021601) Power amplifier 12-021601 is a multi-stage, solid state power amplifier. Class A circuitry is employed throughout the device to ensure excellent linearity over a wide dynamic frequency range. All the semiconductor devices are very conservatively rated to ensure low device junction temperatures and a long, trouble free working lifetime. The power amplifier should require no maintenance over its operating life. Under no circumstances should the cover be removed or the side adjustments disturbed unless it is certain that the amplifier has failed; since it is critically aligned during manufacture and any re-alignment will require extensive test equipment. The unit housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. 12-021601 Specification PARAMETER Frequency range: Bandwidth: Maximum RF output: Gain: 1dB compression point: 3rd order intercept point: VSWR: Connectors: Supply: Weight: operational: Temperature range: storage: SPECIFICATION 380-470MHz (as required) 10-40MHz (typical, tuned to spec.) >5Watts >30dB +37.5dBm +50dBm better than 1.5:1 SMA female 1.9Amps @ 12V DC 1kg (excluding heatsink) -10qC to +60qC -20qC to +70qC 7-Way Connector Pin-out details Connector Pin Signal A1 (large pin) +12V DC A2 (large pin) GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) 7-Way Pin-Out Graphical Representation A1 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM A2 L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 35 of 148 3.4.5.7. Low Power Amplifier (1Watt) (12-021801) The low power amplifier used is a 1 stage balanced configuration, solid-state amplifier. Class A circuitry is used in the unit to ensure excellent linearity over a very wide dynamic range. The three active devices are very moderately rated to provide a long trouble-free working life. Its housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. There are no adjustments on this amplifier, and in the unlikely event of failure then the entire amplifier should be replaced. 12-021801 Specification PARAMETER SPECIFICATION -20 to +70 qC 380 - 500 MHz 15.5 +/- 0.5 dB 0.7 dB p-p 0.7 dB 20 dB 20 dB +30.5 dBm +41.5 dBm 6 dB 10-15 Vdc 540 mA -10qC to +60qC -40qC to +100qC <0.5 kg 110.5 x 66mm x 24.6mm Temperature Frequency Range Small Signal Gain Gain Flatness 'Gain vs. Temperature In RL Out RL Output Power @ 1dB Compression Point Output 3rd Order IP Noise Figure DC Supply Voltage DC Supply Current Temperature operational: range storage: Weight: Size: Low Power Amplifier (12-021801) 9-Way Connector Pin-outs Connector pin Signal +ve input (10-15V) GND Alarm relay O/P bad Alarm relay common Alarm relay good No connection TTL voltage set TTL alarm/0V (good) O/C good/0V bad 9-Way Pin-Out Graphical Representation Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 36 of 148 3.4.5.8. VHF Power Amplifier 5W (12-025602) Power amplifier 12-025602 is a multi-stage, solid state power amplifier. Class A circuitry is employed throughout the device to ensure excellent linearity over a wide dynamic frequency range. All the semiconductor devices are very conservatively rated to ensure low device junction temperatures and a long, trouble free working lifetime. There is a Current Fault Alarm Function, which indicates failure of each RF transistor with an open collector of a NPN transistor. A relay is fitted to indicate the failure by voltage free change over the relay contacts. The power amplifier should require no maintenance over its operating life. Under no circumstances should the cover be removed or the side adjustments disturbed unless it is certain that the amplifier has failed; since it is critically aligned during manufacture and any re-alignment will require extensive test equipment. The unit housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. 12-025602 Specification PARAMETER Frequency range Maximum RF output Gain 1dB compression point 3rd order intercept point In / RL Out / RL Noise Figure Connectors Supply operational Temperature range storage SPECIFICATION 108 to 174 MHz (as required) >5Watts t 34 dB t +37 dBm t +48 dBm 16 dB 15 dB 9.5 dB SMA female 24 +/- 0.5 Vdc @ 1040 mA Max -10qC to +60qC -20qC to +70qC 7-Way Connector Pin-out details Connector Pin Signal A1 (large pin) +24V DC A2 (large pin) GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 37 of 148 3.4.5.9. Automatic Gain Control 17-001101 17-001105 17-001201 AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly VHF/UHF BDA UNIT(80-301403) is fitted with two differing types of Automatic Gain Control (AGC) system, one linear, and one logarithmic. The Downlink UHF Lowband path is fitted with logarithmic detector (17-001105), and attenuator (17-001201) the Uplink UHF Lowband path and the two VHF paths are each fitted with linear detector (17-001101) and attenuator (17-001201) The Automatic Gain Control system consists of two units, a detector/amplifier and an attenuator. The detector/amplifier unit is inserted in the RF path on the output of the power amplifier, and the attenuator is situated in the RF path before the amplification stage(s) The attenuator comprises a 50ȍ P.I.N diode, voltage-variable attenuator with a range of 3 to 30dB. The attenuation is controlled by a DC voltage which is derived from the associated detector controller board. Normally the attenuator is at minimum attenuation. The detector/amplifier unit monitors the RF level being delivered by the power amplifier, and when a certain threshold is reached it begins to increase the value of the attenuator to limit the RF output to the (factory set) threshold. Therefore overloading of the power amplifier is avoided. The factory set threshold is 1dB below the Enhancer 1dB compression point. Some adjustment of this AGC threshold level is possible, a 10dB range is mostly achieved. It is not recommended under any circumstances to adjust the AGC threshold to a level greater than the 1dB compression point as system degradation will occur. The detector comprises of a 50ȍ transmission line with a resistive tap which samples a small portion of the mainline power. The sampled signal is amplified and fed to a conventional half wave diode rectifier, the output of which is a DC voltage proportional to the RF input signal. This DC voltage is passed via an inverting DC amplifier with integrating characteristics, to the output, which drives the attenuation control line of the corresponding AGC attenuator. This unit is fitted at some earlier point in the RF circuit. For small signals, below AGC onset, the output control line will be close to 12V and the AGC attenuator will have minimum attenuation. As the signal level increases the control line voltage will fall, increasing the attenuator value and keeping the system output level at a constant value. 3.4.5.10. 24V Relay Dual Assembly (20-001602) The General Purpose 24V Dual Relay Board (20-001602) allows the inversion of signals and the isolation of circuits. It is equipped with two dual pole change-over relays RL1 and RL2, with completely isolated wiring, accessed via screw terminals. Both relays are provided with polarity protection diodes and diodes for suppressing the transients caused by "flywheel effect" which can destroy switching transistors or induce spikes on neighbouring circuits. Its common use is to amalgamate all the alarm signals into one, volts-free relay contact pair for the main alarm system. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 38 of 148 20-001602 Specification PARAMETER SPECIFICATION Operating voltage 8 to 30V (floating earth) Alarm Threshold Vcc - 1.20 volt +15% Alarm output relay contacts: Max. switch current 1.0Amp Max. switch volts 120Vdc/60VA Max. switch power 24W/60VA Min. switch load 10.0µA/10.0mV Relay isolation 1.5kV Mechanical life >2x107 operations Relay approval BT type 56 Connector details Screw terminals Temperature operational -10°C to +60°C range storage -20°C to +70°C 3.4.5.11. 24V Relay Assembly (80-008902) The General Purpose Relay Board allows the inversion of signals and the isolation of circuits. It is equipped with a single, dual pole, change-over relay RL1 with completely isolated wiring, accessed via screw terminals. The relay is provided with a polarity protection diode and diodes for suppressing the transients caused by "flywheel effect" which can destroy switching transistors or induce spikes on neighbouring circuits. It’s common use is to amalgamate all the alarm signals into one, volts-free relay contact pair for the main alarm system. 80-008902 Specification Parameter Max. switch current Max. switch volts Max. switch power Min. switch load Relay isolation Mechanical life Relay approval Connector details Temperature operational range storage 3.4.5.12. Specification 1.0Amp 120Vdc/60VA 24W/60VA 10.0µA/10.0mV 1.5kV >2x107 operations BT type 56 15-way 0.1" pitch -10°C to +55°C -40°C to +70°C Dual Diode Assembly (94-100004) The purpose of these dual diode assemblies is to allow two DC voltage sources to be combined, so that the main DC rail within the equipment can be sourced from either a mains driven PSU, or externally through an XLR connector or from dual mains driven PSUs . They are very heavy-duty diodes and they prevent any reverse current from flowing back to their source or the alternative supply rail. Combining diodes such as these will also be used if the equipment is to be powered from external back-up batteries. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 39 of 148 3.4.5.13. DC/DC Converter, 24V in, 12V 5A out (96-200024) This unit it is an O.E.M high power device with a 5 amp @ 12V (60Watts) output capability used to derive a 12V fixed voltage power supply rail from a 24V supply. In the event of failure this unit should not be repaired, only replaced. 96-200024 Specification PARAMETER Input Voltage range Output voltage Max output current load Temperature operation range storage Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 18-28V DC 12V±0.5V 5.0 Amps -10°C to +60°C -20°C to +70°C L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 40 of 148 3.5. UHF BDA Unit (80-301404) UHF BDA Unit (80-301404) provides the amplification stages for the UHF Midband and UHF Highband paths, The unit is housed in a wall mount case 600x600x250mm (24” x 24” x 10” approx). The Downlink UHF Midband signal is received at the port labelled “UHF MID D/L INPUT” (Annotated A in the picture in section 3.5.4.2.). The signal passes through a switched attenuator providing 0 to 30 dB of RF signal attenuation and then into the amplification stage. The Downlink UHF Midband amplification stage is provided by two amplifier modules, the first is a 15dB gain Low Power Amplifier and the second is a 20W, 23dB gain power amplifier. Both amplification stages are straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The input to the AGC detector is provided by the output of a 30dB tap. After leaving the Amplification/AGC stage the Downlink UHF Midband signal exits the BDA via the port labelled “UHF MID D/L OUTPUT” (B in section 3.5.4.2.). The Uplink UHF Midband signal is received at the port labelled “UHF MID U/L INPUT” (D in section 3.5.4.2.). The signal passes into a Low Noise Amplifier providing 15dB of gain and then into a switched attenuator providing 0 to 30 dB of RF signal attenuation. After the attenuator the Uplink UHF Midband signal passes into a second stage of amplification provided by a 5W, 30dB gain Power Amplifier, this amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The Uplink UHF Midband signal exits the BDA via the port labelled “UHF MID U/L OUTPUT” (C in section 3.5.4.2.). The Downlink UHF Highband signal is received at the port labelled “UHF HIGH D/L INPUT” (Annotated G in the picture in section 3.5.4.2.). The signal passes through a switched attenuator providing 0 to 30 dB of RF signal attenuation and then into the amplification stage. The Downlink UHF Highband amplification stage is provided by two amplifier modules, the first is a 15dB gain Low Power Amplifier and the second is a 20W, 23dB gain power amplifier. Both amplification stages are straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The input to the AGC detector is provided by the output of a 30dB tap. After leaving the Amplification/AGC stage the Downlink UHF Highband signal exits the BDA via the port labelled “UHF HIGH D/L OUTPUT” (H in section 3.5.4.2.). The Uplink UHF Highband signal is received at the port labelled “UHF HIGH U/L INPUT” (E in section 3.5.4.2.). The signal passes into a Low Noise Amplifier providing 15dB of gain and then into a switched attenuator providing 0 to 30 dB of RF signal attenuation. After the attenuator the Uplink UHF Highband signal passes into a second stage of amplification provided by a 5W, 30dB gain Power Amplifier, this amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. The Uplink UHF Highband signal exits the BDA via the port labelled “UHF HIGH U/L OUTPUT” (F in section 3.5.4.2.). UHF BDA Unit (80-301404) is provided with a 24V DC input to power the amplifier modules within and those amplifier modules are configured to provide alarm status reports. Separate alarm contact outputs are provided for the UHF Midband and the UHF Highband paths. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 41 of 148 3.5.1. UHF BDA Unit (80-301404) System Diagram Drawing Number 80-301484 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 42 of 148 3.5.2. UHF BDA Unit (80-301404) Outline Drawing Drawing Number 80-301494 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 43 of 148 3.5.3. UHF BDA Unit (80-301404) Specification Parameter Specification Downlink UHF Midband UHF Highband UHF Midband UHF Highband UHF Midband UHF Highband UHF Midband UHF Highband UHF Midband UHF Highband UHF Midband UHF Highband 482.5 to 483.8MHz 507.0 to 507.3MHz 30dB 30dB 0 to 30dB in 2dB steps 0 to 30dB in 2dB steps > +42.5dBm > +42.5dBm 1dB below P1dB 1dB below P1dB > +53.5dBm > +53.5dBm UHF Midband UHF Highband UHF Midband Maximun gain UHF Highband UHF Midband Gain Adjustment UHF Highband 1dB Compression Point UHF Midband (P1dB) UHF Highband UHF Midband ALC setting UHF Highband UHF Midband 3rd Order Intercept point UHF Highband UHF Midband Noise Figure UHF Highband Environmental/Mechanical Specification Mechanical Dimensions (excludes handles and connectors) RF Connectors 485.7 to 486.8MHz 510.0 to 510.3MHz 30dB 30dB 0 to 30dB in 2dB steps 0 to 30dB in 2dB steps > +36.5dBm > +36.5dBm +27dBm +27dBm > +48.0dBm > +48.0dBm < 3.0dB < 3.0dB Downlink Passband Maximun gain Gain Adjustment 1dB Compression Point (P1dB) ALC setting 3rd Order Intercept point Uplink Uplink Passband IP65 Wall Mount 620mm x 620mm x 250mm (24” x 24” x 10” approx) N-Type Female Local Alarms to SCADA Alarm Interfaces Dry Contact with LED Indication per band path Power Supply 24V DC Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 44 of 148 3.5.4. 3.5.4.1. UHF BDA Unit (80-301404) Photographs Front View Note: All connectors (RF, DC and Alarms) are on the underside Red LED UHF Highband Downlink Alarm Red LED UHF Highband Uplink Alarm Red LED UHF Midband Downlink Alarm Red LED UHF Midband Uplink Alarm Green LED “Power On” Lockable Door Handles Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 45 of 148 3.5.4.2. Underside view showing connectors UHF Midband Downlink Input from port 3 on Combiner 80-301402 UHF Midband Downlink Output to port C on Combiner 80-301402 UHF Midband Uplink Output to port 8 on Combiner 80-301402 UHF Midband Uplink Input from port H on Combiner 80-301402 UHF Highband Uplink Input from port I on Combiner 80-301402 UHF Highband Uplink Output to port 9 on Combiner 80-301402 UHF Highband Downlink Input from port 4 on Combiner 80-301402 UHF Highband Downlink Output to port D on Combiner 80-301402 24V DC Input UHF Midband Band Alarm Output UHF Highband Alarm Output Earth Connection Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 46 of 148 3.5.4.3. Interior view AA BB CC UHF Midband Downlink Switched Attenuator 10-000701 UHF Midband Downlink AGC Attenuator 17-001201 UHF Midband Downlink Low Power Amplifier 12-021801 UHF Midband Downlink 20W Power Amplifier 12-016301 UHF Midband Downlink 30dB Directional Coupler 07-002908 UHF Midband Downlink AGC Detector Assembly 17-001105 UHF Midband Uplink Low Noise Amplifier 11-005401 UHF Midband Uplink Switched Attenuator 10-000701 UHF Midband Uplink AGC Attenuator 17-001201 UHF Midband Uplink 5W Power Amplifier 12-021601 UHF Midband Uplink AGC Detector Assembly 17-001101 UHF Highband Downlink Switched Attenuator 10-000701 UHF Highband Downlink AGC Attenuator 17-001201 UHF Highband Downlink Low Power Amplifier 12-021801 UHF Highband Downlink 20W Power Amplifier 12-016301 UHF Highband Downlink 30dB Directional Coupler 07-002908 UHF Highband Downlink AGC Detector Assembly 17-001105 UHF Highband Uplink Low Noise Amplifier 11-005401 UHF Highband Uplink Switched Attenuator 10-000701 UHF Highband Uplink AGC Attenuator 17-001201 UHF Highband Uplink 5W Power Amplifier 12-021601 UHF Highband Uplink AGC Detector Assembly 17-001101 DC/DC Converter 13-003011 24V Dual Relay Assembly 20-001602 UHF Highband Alarms 24V Dual Relay Assembly 20-001602 UHF Midband Alarms 24V Relay Assembly 80-008909 UHF Midband Alarms 24V Relay Assembly 80-008909 UHF Highband Alarms Dual Diode Assembly 94-100004 DC Circuit Breaker Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 47 of 148 3.5.5. Section 3.5.5.1. 3.5.5.2. 3.5.5.3. 3.5.5.4. 3.5.5.5. 3.5.5.6. 3.5.5.7. 3.5.5.8. 3.5.5.9. 3.5.5.10. 3.5.5.11. 3.5.5.1. UHF BDA Unit (80-301404) Major Sub-components Component Part 07-002908 10-000701 11-005401 12-016301 12-021601 12-021801 13-003011 17-001101 17-001105 17-001201 20-001602 80-008909 94-100004 Component Part Description 30dB Directional Coupler Switched Attenuator 0.25Watt, 0 - 30dB Low Noise Amplifier TETRA Power Amplifier 20W TETRA Power Amplifier 5W Low Power Amplifier DC/DC Converter AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly 24V Dual Relay Assembly 24V Relay Assembly Dual Diode Assembly Qty Per Assembly 30dB Directional Coupler (07-002908) The purpose of these couplers is to tap off known portions of RF signal from transmission lines and to combine them, for example through splitter units for different purposes (alarms/monitoring etc.), whilst maintaining an accurate 50: load to all ports/interfaces throughout the specified frequency range. They are known as directional couplers as they couple power from the RF mainline in one direction only. Directional Coupler 07-002908 is configured to tap off 30dB. 07-002908 Specification PARAMETER Frequency range Insertion loss Coupling level Rejection Weight Connectors Temperature operation range storage 3.5.5.2. SPECIFICATION 50 - 1000MHz <0.3dB -30dB N/A <200g N type, female -20°C to +60°C -40°C to +70°C Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) In many practical applications for Cell Enhancers etc., the gain in each path is found to be excessive. Therefore, provision is made within the unit for the setting of attenuation in each path, to reduce the gain. 10-000701 provides attenuation from 0 to 30dB in 2 dB steps The attenuation is simply set using the four miniature toggle switches on the top of each unit. Each switch is clearly marked with the attenuation it provides, and the total attenuation in line is the sum of the values switched in. They are designed to maintain an accurate 50ȍ impedance over their operating frequency at both input and output. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 48 of 148 10-000701 Specification PARAMETER Attenuation Values Attenuation Steps Power Handling Attenuation Accuracy Frequency Range Impedance Connectors VSWR Weight Temperature operation range storage 3.5.5.3. SPECIFICATION 0-30dB 2, 4, 8 and 16dB 0.25 Watt ± 1.0 dB DC to 1GHz 50ȍ SMA 1.3:1 0.2kg -20°C to +60°C -40°C to +70°C Low Noise Amplifier (11-005401) The 15dB gain low noise amplifier used in the unit is a double stage solid-state low noise amplifier. Class A circuitry is used throughout the units to ensure excellent linearity over a very wide dynamic range. The active devices are very moderately rated to provide a long trouble-free working life. There are no adjustments on these amplifiers, and in the unlikely event of a failure, the complete amplifier should be replaced. The amplifier is housed in an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a 9way D-type for DC and alarm outputs. 11-005401 Specification PARAMETER Frequency range Bandwidth 1dB compression point 3rd order intercept Gain VSWR Input return loss Noise figure Connectors Supply Temperature operational range storage Size Weight SPECIFICATION 380 - 500MHz <100MHz (as required, tuneable) >+20dBm >+33dBm >15.5dB (typical) better than 1.5:1 >14dB <2.0dB (typical) SMA female 115mA at 12V DC -10°C to +60°C -40°C to +70°C 88 x 50 x 34mm (ex. connectors) 0.26kg LNA ‘D’ Connector Pin-out details Connector pin Signal +ve input (10-24V) GND Alarm relay O/P bad Alarm relay common Alarm relay good No connection TTL voltage set TTL alarm/0V (good) O/C good/0V bad Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 49 of 148 3.5.5.4. TETRA Power Amplifier 20W (12-016301) This amplifier is a Class A 20W power amplifier from 380MHz to 470MHz in a 1 stage balanced configuration. It demonstrates a very high linearity and a very good input/output return loss (RL). It has built in a Current Fault Alarm Function. It is housed is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. Note the large diameter DC power input pins (1 & 2) fitted to reduce volt-drop/arcing. 12-016301 Specification PARAMETER Frequency range Small signal gain Gain flatness I/O Return loss 1dB compression point OIP3 Supply voltage Supply current Temperature operational range storage Weight SPECIFICATION 380-470MHz 23dB ±1.7dB >18dB +43dBm +55dBm 24V DC 3.8Amps (Typical) -10°C to +60°C -20°C to +70°C <2kg (no heatsink) 7-Way Connector Pin-out details Connector Pin Signal A1 (large pin) +24V DC A2 (large pin) GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 50 of 148 3.5.5.5. TETRA Power Amplifier 5W (12-021601) Power amplifier 12-021601 is a multi-stage, solid state power amplifier. Class A circuitry is employed throughout the device to ensure excellent linearity over a wide dynamic frequency range. All the semiconductor devices are very conservatively rated to ensure low device junction temperatures and a long, trouble free working lifetime. The power amplifier should require no maintenance over its operating life. Under no circumstances should the cover be removed or the side adjustments disturbed unless it is certain that the amplifier has failed; since it is critically aligned during manufacture and any re-alignment will require extensive test equipment. The unit housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. 12-021601 Specification PARAMETER Frequency range: Bandwidth: Maximum RF output: Gain: 1dB compression point: 3rd order intercept point: VSWR: Connectors: Supply: Weight: operational: Temperature range: storage: SPECIFICATION 380-470MHz (as required) 10-40MHz (typical, tuned to spec.) >5Watts >30dB +37.5dBm +50dBm better than 1.5:1 SMA female 1.9Amps @ 12V DC 1kg (excluding heatsink) -10qC to +60qC -20qC to +70qC 7-Way Connector Pin-out details Connector Pin Signal A1 (large pin) +10-24V DC A2 (large pin) GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) 7-Way Pin-Out Graphical Representation A1 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM A2 L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 51 of 148 3.5.5.6. Low Power Amplifier (12-021801) The low power amplifier used is a 1 stage balanced configuration, solid-state amplifier. Class A circuitry is used in the unit to ensure excellent linearity over a very wide dynamic range. The three active devices are very moderately rated to provide a long trouble-free working life. Its housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. There are no adjustments on this amplifier, and in the unlikely event of failure then the entire amplifier should be replaced. 12-021801 Specification PARAMETER Temperature Frequency Range Small Signal Gain Gain Flatness 'Gain vs. Temperature In RL Out RL Output Power @ 1dB Compression Point Output 3rd Order IP Noise Figure DC Supply Voltage DC Supply Current Temperature operational range storage Weight Size SPECIFICATION -20 to +70 qC 380 - 500 MHz 15.5 +/- 0.5 dB 0.7 dB p-p 0.7 dB 20 dB 20 dB +30.5dBm +41.5dBm 6 dB 10-15 Vdc 540 mA Max -10qC to +60qC -40qC to +100qC <0.5 kg 110.5 x 66mm x 24.6mm Low Power Amplifier (12-021801) 9-Way Connector Pin-outs Connector pin Signal +ve input (10-15V) GND Alarm relay O/P bad Alarm relay common Alarm relay good No connection TTL voltage set TTL alarm/0V (good) O/C good/0V bad Axell Wireless Limited Technical Literature Document Number 80-301401HBKM 9-Way Pin-Out Graphical Representation L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 52 of 148 3.5.5.7. DC/DC Converter, 24V in, 12V 8A out (13-003011) The DC/DC converter fitted is a high power PCB unit with an 8 amp at 12V output capability. The circuit is basically an O.E.M semiconductor regulator (one side of which has a heatsink mounting plate, usually bolted to the casing of the unit) and smoothing components built onto a printed circuit board with screw block terminations. In event of failure this unit should not be repaired, only replaced. 13-003011 Specification PARAMETER Input Voltage range Output voltage Max. current load Temperature operation range storage Size(PCB) Weight (Loaded PCB) 3.5.5.8. Automatic Gain Control 17-001101 17-001105 17-001201 AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly SPECIFICATION 18-28V DC 12V±0.5V 8.0Amps -10°C to +60°C -20°C to +70°C 190 x 63mm 291g UHF BDA UNIT(80-301404) is fitted with two differing types of Automatic Gain Control (AGC) system, one linear, and one logarithmic. The Downlink UHF Midband and Highband paths are each fitted with logarithmic detector (17-001105), and attenuator (17-001201) the Uplink UHF Midband and Highband paths are each fitted with linear detector (17-001101) and attenuator (17-001201) The Automatic Gain Control system consists of two units, a detector/amplifier and an attenuator. The detector/amplifier unit is inserted in the RF path on the output of the power amplifier, and the attenuator is situated in the RF path before the amplification stage(s) The attenuator comprises a 50ȍ P.I.N diode, voltage-variable attenuator with a range of 3 to 30dB. The attenuation is controlled by a DC voltage which is derived from the associated detector controller board. Normally the attenuator is at minimum attenuation. The detector/amplifier unit monitors the RF level being delivered by the power amplifier, and when a certain threshold is reached it begins to increase the value of the attenuator to limit the RF output to the (factory set) threshold. Therefore overloading of the power amplifier is avoided. The factory set threshold is 1dB below the Enhancer 1dB compression point. Some adjustment of this AGC threshold level is possible, a 10dB range is mostly achieved. It is not recommended under any circumstances to adjust the AGC threshold to a level greater than the 1dB compression point as system degradation will occur. The detector comprises of a 50ȍ transmission line with a resistive tap which samples a small portion of the mainline power. The sampled signal is amplified and fed to a conventional half wave diode rectifier, the output of which is a DC voltage proportional to the RF input signal. This DC voltage is passed via an inverting DC amplifier with integrating characteristics, to the output, which drives the attenuation control line of the corresponding AGC attenuator. This unit is fitted at some earlier point in the RF circuit. For small signals, below AGC onset, the output control line will be close to 12V and the AGC attenuator will have minimum attenuation. As the signal level increases the control line voltage will fall, increasing the attenuator value and keeping the system output level at a constant value. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 53 of 148 3.5.5.9. 24V Relay Dual Assembly (20-001602) The General Purpose 24V Dual Relay Board (20-001602) allows the inversion of signals and the isolation of circuits. It is equipped with two dual pole change-over relays RL1 and RL2, with completely isolated wiring, accessed via screw terminals. Both relays are provided with polarity protection diodes and diodes for suppressing the transients caused by "flywheel effect" which can destroy switching transistors or induce spikes on neighbouring circuits. Its common use is to amalgamate all the alarm signals into one, volts-free relay contact pair for the main alarm system. 20-001602 Specification PARAMETER SPECIFICATION Operating voltage 8 to 30V (floating earth) Alarm Threshold Vcc - 1.20 volt +15% Alarm output relay contacts: Max. switch current 1.0Amp Max. switch volts 120Vdc/60VA Max. switch power 24W/60VA Min. switch load 10.0µA/10.0mV Relay isolation 1.5kV Mechanical life >2x107 operations Relay approval BT type 56 Connector details Screw terminals Temperature operational -10°C to +60°C range storage -20°C to +70°C 3.5.5.10. 24V Relay Assembly (80-008909) Relay Board (80-008909) allows the inversion of signals and the isolation of circuits. It is equipped with a single dual pole change-over relay RL1, with completely isolated wiring, accessed via a 15 way in-line connector. The relay is provided with polarity protection diodes and diodes for suppressing the transients caused by "flywheel effect" which can destroy switching transistors or induce spikes on neighbouring circuits. It’s common use is to amalgamate all the alarm signals into one, volts-free relay contact pair for the main alarm system. This relay board also carries an LED to serve as a “Status OK” indicator which is illuminated during normal operation. 80-008909 Specification PARAMETER SPECIFICATION Operating voltage 8 to 30V (floating earth) Alarm threshold Vcc - 1.20 volt +15% Alarm output relay contacts Max. switch current 1.0Amp Max. switch volts 120Vdc/60VA Max. switch power 24W/60VA Min. switch load 10.0µA/10.0mV Relay isolation 1.5kV Mechanical life >2x107 operations Relay approval BT type 56 Connector details Screw terminals Temperature operational -10°C to +60°C range storage -20°C to +70°C Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 54 of 148 3.5.5.11. Dual Diode Assembly (94-100004) The purpose of these dual diode assemblies is to provide polarity protection for the DC supply input. They are very heavy-duty diodes and they prevent any reverse current from flowing back to their source. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 55 of 148 3.6. 800MHz BDA UNIT (80-301405) 800MHz BDA UNIT (80-301405) provides the amplification stages for the 800MHz paths, The unit is housed in a wall mount case 600x600x250mm (24” x 24” x 10” approx). The Downlink 800MHz signal is received at the port labelled “D/L INPUT” (Annotated A in the picture in section 3.6.4.2.). The Downlink 800MHz path passes through a bandpass filter to remove out of band noise and then a switched attenuator providing 0 to 30 dB of RF signal attenuation, after the Attenuator the signal passes through the first of two amplification stages. This first stage is provided by a low noise amplifier which gives approx. 19dB of gain. After the Low Noise Amplifier the Downlink 800MHz signal passes through the second amplification stage; the signal is first split into two equal paths and then each path is passed through a 20W power amplifier and then the two signal paths are re-combined. The second stage amplifiers are straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. After leaving the second stage amplifiers the Downlink 800MHz signal path passes through a second bandpass filter before exiting the BDA via the port labelled “D/L OUTPUT” (B in section 3.6.4.2.). The Uplink 800MHz signal is received at the port labelled “U/L INPUT” (C in section 3.6.4.2.). The Uplink 800MHz path passes through a bandpass filter to remove out of band noise and then into the first of two amplification stages, the first stage is provided by a low noise amplifier which gives approx. 19dB of gain; after leaving the Low Noise Amplifier the signal passes through a switched attenuator providing 0 to 30 dB of RF signal attenuation, After leaving the switched attenuator the Uplink 800MHz path passes through the second stage of amplification which is provided by a 5W power amplifier giving approx. 30db of gain; this second amplification stage is straddled by an Automatic Gain Control assembly providing limiting to the output signals in the case of high input signals. After leaving the second amplification stage the Uplink 800MHz path passes through a second bandpass filter before exiting the BDA via the port labelled “U/L OUTPUT” (D in section 3.6.4.2.). 800MHz BDA UNIT (80-301405) is provided with a 24V DC input to power the amplifier modules within and those amplifier modules are configured to provide alarm status reports. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 56 of 148 3.6.1. 800MHz BDA UNIT (80-301405) System Diagram Drawing Number 80-301485 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 57 of 148 3.6.2. 800MHz BDA UNIT (80-301405) Outline Drawing Drawing Number 80-301495 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 58 of 148 3.6.3. 800MHz BDA UNIT (80-301405) Specification Parameter Specification Downlink Downlink Passband Maximun gain Gain Adjustment 1dB Compression Point (P1dB) ALC setting rd 3 Order Intercept point 856.0 to 861.0MHz 30dB 0 to 30dB in 2dB steps > +45.0dBm 1dB below P1dB > +55.0dBm Uplink Passband Maximun gain Gain Adjustment 1dB Compression Point (P1dB) ALC setting rd 3 Order Intercept point Noise Figure Environmental/Mechanical Specification Mechanical Dimensions (excludes handles and connectors) RF Connectors 811.0 to 816.0MHz 30dB 0 to 30dB in 2dB steps > +36.0dBm +27dBm > +46.0dBm < 5.0 dB Uplink IP65 Wall Mount 620mm x 620mm x 250mm (24” x 24” x 10” approx) N-Type Female Local Alarms to SCADA Alarm Interfaces Dry Contact with LED Indication per band path Power Supply 24V DC Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 59 of 148 3.6.4. 3.6.4.1. 800MHz BDA UNIT (80-301405) Photographs Front View Note: All connectors (RF, DC and Alarms) are on the underside 3.6.4.2. Green LED “Power On” Red LED Uplink Alarm Red LED Downlink Alarm Lockable Door Handles Underside view showing connectors 800MHz Downlink Input from port 5 on Combiner 80-301402 800MHz Downlink output to port E on Combiner 80-301402 800MHz Downlink Input from port J on Combiner 80-301402 800MHz Downlink output to port 10 on Combiner 80-301402 Alarm Output 24V DC Input Earth Connection Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 60 of 148 3.6.4.3. Interior view Downlink Input Bandpass Filter 02-011601 Downlink Switched Attenuator 10-000701 Downlink Low Noise Amplifier 11-005902 Downlink AGC Attenuator Assembly17-001201 Downlink Splitter/Combiner 05-002602 (splits signal to feed Power Amplifiers) Downlink 20W Power Amplifier 12-020501 (1) Downlink 20W Power Amplifier 12-020501 (2) Downlink Splitter/Combiner 05-002602 (combines signals from Power Amplifiers) Downlink 30dB Directional Coupler 07-002907 Downlink AGC Detector Assembly17-001105 Downlink Output Bandpass Filter 02-011601 Uplink Input Bandpass Filter 02-011601 Uplink Low Noise Amplifier 11-005902 Uplink Switched Attenuator 10-000701 Uplink AGC Attenuator Assembly17-001201 Uplink 5W Power Amplifier 12-018601 Uplink AGC Detector Assembly17-001101 Uplink Output Bandpass Filter 02-011601 24V Relay Dual Assembly 20-001602 DC/DC Converter 96-200024 Dual Diode Assembly 94-100004 Main DC Circuit Breaker Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 61 of 148 3.6.5. section 3.6.5.1. 3.6.5.2. 3.6.5.3. 3.6.5.4. 3.6.5.5. 3.6.5.6. 3.6.5.7. 3.6.5.8. 3.6.5.9. 3.6.5.10. 3.6.5.11. 3.6.5.1. 800MHz BDA UNIT (80-301405) Major Sub-components Component Part 02-011601 05-002602 07-002907 10-000701 11-005902 12-018601 12-020501 17-001101 17-001105 17-001201 20-001602 94-100004 96-200024 Component Part Description Bandpass FIlter Splitter/Combiner 30dB Directional Coupler Switched Attenuator 0.25Watt, 0 - 30dB Low Noise Amplifier 5W Power Amplifier 20W Power Amplifier AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly 24V Relay Dual Assembly Dual Diode Assembly DC/DC Converter, 24V in, 12V 5A out Qty Per Assembly Bandpass Filter (02-011601) The bandpass filters are multi-section designs with a bandwidth dependent upon the passband frequencies, (both tuned to customer requirements). The response shape is basically Chebyshev with a passband design ripple of 0.1dB. The filters are of combline design, and are carefully aligned during manufacture in order to optimise the insertion loss, VSWR and intermodulation characteristics of the unit. The tuned elements are silver-plated to reduce surface ohmic losses and maintain a good VSWR figure and 50ȍ load at the input and output ports. Being passive devices, the bandpass filters should have an extremely long operational life and require no maintenance. Should a filter be suspect, it is usually most time efficient to replace the module rather than attempt repair or re-tuning. 02-011601 Specification PARAMETER Frequency Downlink Range Uplink Downlink Bandwidth Uplink Number of Sections Insertion Loss VSWR Connectors Power Handling Temperature operation range storage Weight Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 856 to 861MHz 811 to 816MHz 5 MHz 5 MHz 1.2 dB better than 1.2:1 SMA 100W max -10°C to +55°C -40°C to +70°C 3 kg (typical) L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 62 of 148 3.6.5.2. Splitter/Combiner (05-002602) The Splitter/Combiner used is a device for accurately matching two or more RF signals to single or multiple ports, whilst maintaining an accurate 50: load to all inputs/outputs and ensuring that the VSWR and insertion losses are kept to a minimum. Any unused ports should be terminated with an appropriate 50: load. Being passive devices, the splitters should have an extremely long operational life and require no maintenance. Should a unit be suspect, it is usually most time efficient to replace the whole module rather than attempt repair or re-tuning. 05-002602 Specification PARAMETER Frequency Range Bandwidth Ports Insertion loss Return loss input & output Impedance Isolation MTFB Splitting Power rating Combining Connectors Weight Size 3.6.5.3. SPECIFICATION 800 – 1000MHz 200MHz 3.3dB typical 1.3:1 50ȍ >20dB >180,000 hours 20Watts 0.5Watt SMA female 200g (approximately) 54 x 44 x 21mm 30dB Directional Coupler (07-002907) The purpose of these couplers is to tap off known portions (in this case 30dB) of RF signal from transmission lines inband to combine them, for example through splitter units for different purposes (alarms/monitoring etc.), whilst maintaining an accurate 50: load to all ports/interfaces throughout the specified frequency range. They are known as directional couplers as they couple power from the RF mainline in one direction only. 07-002907 Specification PARAMETER Frequency range Insertion loss Coupling level Rejection Weight Connectors Temperature operation range storage Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 800 - 1000MHz <0.3dB -30dB ±0.5dB N/A <200g SMA, female -20°C to +60°C -40°C to +70°C L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 63 of 148 3.6.5.4. Switched Attenuator 0.25Watt, 0 - 30dB (10-000701) 10-000701 provides attenuation from 0 to 30dB in 2 dB steps The attenuation is simply set using the four miniature toggle switches on the top of each unit. Each switch is clearly marked with the attenuation it provides, and the total attenuation in line is the sum of the values switched in. They are designed to maintain an accurate 50ȍ impedance over their operating frequency at both input and output. 10-000701 Specification PARAMETER Attenuation Values Attenuation Steps Power Handling Attenuation Accuracy Frequency Range Impedance Connectors VSWR Weight Temperature operation range storage 3.6.5.5. SPECIFICATION 0-30dB 2, 4, 8 and 16dB 0.25 Watt ± 1.0 dB DC to 1GHz 50ȍ SMA 1.3:1 0.2kg -20°C to +60°C -40°C to +70°C Low Noise Amplifier (11-005902) The Gallium-Arsenide low noise amplifier used in the unit is a double stage, solid-state low noise amplifier. Class A circuitry is used throughout the units to ensure excellent linearity and extremely low noise over a very wide dynamic range. The active devices are very moderately rated to provide a long trouble-free working life. There are no adjustments on these amplifiers, and in the unlikely event of a failure, then the complete amplifier should be replaced. This amplifier features its own in-built alarm system which gives a volt-free relay contact type alarm that is easily integrated into any alarm system. There is a Current Fault Alarm Function, which indicates failure of each one or both RF transistors by a various alarm output options. The amplifier is housed in an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a 9way D-type for DC and alarm outputs. 11-005902 Specification PARAMETER Frequency range Bandwidth Gain 1dB compression point OIP3 Input/output return loss Noise figure Power consumption Supply voltage Connectors Temperature operational range storage Size Weight Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 800 – 960MHz <170MHz 19.5dB (typical) +21dBm +33dBm >20dB 1dB (typical) 190mA @ 24V DC 10-24V DC SMA female -10°C to +60°C -40°C to +70°C 90 x 55 x 30.2mm 0.28kg L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 64 of 148 LNA ‘D’ Connector Pin-out details Connector pin 3.6.5.6. Signal +Ve input (10-24V) GND Alarm relay O/P bad Alarm relay common Alarm relay good No connection TTL voltage set TTL alarm/0V (good) O/C good/0V bad 5W Power Amplifier (12-018601) This amplifier is a Class A 5W power amplifier from 800MHz to 960MHz in a 1 stage balanced configuration. It demonstrates a very high linearity and a very good input/output return loss (RL). It has built in a Current Fault Alarm Function. Its housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. 12-018601 Specification PARAMETER Frequency range Small signal gain Gain flatness I/O Return loss 1dB compression point OIP3 Supply voltage Supply current Temperature operational range storage Weight SPECIFICATION 800-960MHz 30dB ±0.5dB >20dB +37dBm +52dBm 12V DC 2.0Amps (typical) -10°C to +60°C -20°C to +70°C <2kg (no heatsink) PA 7-Way Connector Pin-outs Connector Pin A1 (large pin) A2 (large pin) Signal +12V DC GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 65 of 148 3.6.5.7. 20W Power Amplifier (12-020501) This amplifier is a Class A 20W power amplifier from 800-960MHz in a 1 stage balanced configuration. It demonstrates a very high linearity and a very good input/output return loss (RL). It has built in a Current Fault Alarm Function. Its housing is an aluminium case (Iridite NCP finish) with SMA connectors for the RF input/output and a D-Type connector for the power supply and the Current Fault Alarm Function. 12-020501 Specification PARAMETER Frequency range Small signal gain Gain flatness I/O Return loss 1dB compression point OIP3 Supply voltage Supply current Temperature operational range storage Weight SPECIFICATION 800-960MHz 31.5dB ±0.6dB >18dB +43.5dBm +54dBm 24V DC 4.6Amps @12V(typical) -10°C to +60°C -20°C to +70°C <2kg (no heatsink) PA 7-Way Connector Pin-outs Connector Pin A1 (large pin) A2 (large pin) Signal +24V DC GND Alarm relay common TTL alarm/0V good Alarm relay contact (bad) Alarm relay contact (good) O/C good/0V bad (TTL) 7-Way Connector Graphical Representation A1 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM A2 L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 66 of 148 3.6.5.8. Automatic Gain Control 17-001101 17-001105 17-001201 AGC Detector Assembly AGC Detector Assembly (Logarithmic) AGC Attenuator Assembly 800MHz BDA UNIT (80-301405) is fitted with two differing types of Automatic Gain Control (AGC) system, one linear, and one logarithmic. The Downlink path is fitted with logarithmic detector (17001105), and attenuator (17-001201) the Uplink path is fitted with linear detector (17-001101) and attenuator (17-001201) The Automatic Gain Control system consists of two units, a detector/amplifier and an attenuator. The detector/amplifier unit is inserted in the RF path on the output of the power amplifier, and the attenuator is situated in the RF path before the amplification stage(s) The attenuator comprises a 50ȍ P.I.N diode, voltage-variable attenuator with a range of 3 to 30dB. The attenuation is controlled by a DC voltage which is derived from the associated detector controller board. Normally the attenuator is at minimum attenuation. The detector/amplifier unit monitors the RF level being delivered by the power amplifier, and when a certain threshold is reached it begins to increase the value of the attenuator to limit the RF output to the (factory set) threshold. Therefore overloading of the power amplifier is avoided. The factory set threshold is 1dB below the Enhancer 1dB compression point. Some adjustment of this AGC threshold level is possible, a 10dB range is mostly achieved. It is not recommended under any circumstances to adjust the AGC threshold to a level greater than the 1dB compression point as system degradation will occur. The detector comprises of a 50ȍ transmission line with a resistive tap which samples a small portion of the mainline power. The sampled signal is amplified and fed to a conventional half wave diode rectifier, the output of which is a DC voltage proportional to the RF input signal. This DC voltage is passed via an inverting DC amplifier with integrating characteristics, to the output, which drives the attenuation control line of the corresponding AGC attenuator. This unit is fitted at some earlier point in the RF circuit. For small signals, below AGC onset, the output control line will be close to 12V and the AGC attenuator will have minimum attenuation. As the signal level increases the control line voltage will fall, increasing the attenuator value and keeping the system output level at a constant value. 3.6.5.9. 24V Relay Dual Assembly (20-001602) The General Purpose 24V Dual Relay Board (20-001602) allows the inversion of signals and the isolation of circuits. It is equipped with two dual pole change-over relays RL1 and RL2, with completely isolated wiring, accessed via screw terminals. Both relays are provided with polarity protection diodes and diodes for suppressing the transients caused by "flywheel effect" which can destroy switching transistors or induce spikes on neighbouring circuits. Its common use is to amalgamate all the alarm signals into one, volts-free relay contact pair for the main alarm system. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 67 of 148 20-001602 Specification PARAMETER SPECIFICATION Operating voltage 8 to 30V (floating earth) Alarm Threshold Vcc - 1.20 volt +15% Alarm output relay contacts: Max. switch current 1.0Amp Max. switch volts 120Vdc/60VA Max. switch power 24W/60VA Min. switch load 10.0µA/10.0mV Relay isolation 1.5kV Mechanical life >2x107 operations Relay approval BT type 56 Connector details Screw terminals Temperature operational -10°C to +60°C range storage -20°C to +70°C 3.6.5.10. Dual Diode Assembly (94-100004) The purpose of these dual diode assemblies is to provide polarity protection for the DC voltage input. They are very heavy-duty diodes and they prevent any reverse current from flowing back to their source. 3.6.5.11. DC/DC Converter, 24V in, 12V 5A out (96-200024) This unit it is an O.E.M high power device with a 5 amp @ 12V (60Watts) output capability used to derive a 12V fixed voltage power supply rail from a 24V supply. In the event of failure this unit should not be repaired, only replaced. 96-200024 Specification PARAMETER Input Voltage range Output voltage Max. current load Temperature operation range storage Axell Wireless Limited Technical Literature Document Number 80-301401HBKM SPECIFICATION 18-28V DC 12V±0.5V 5.0 Amps -10°C to +60°C -20°C to +70°C L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 68 of 148 4. In-Line BDA Rack Mount 80-301406 The Rack Mount In Line BDA consists of ten, 19” equipment rack mount shelves The function is exactly the same as the Wall Mount unit in section 3 but the construction is different. The Rack Mount BDA is divided into four main components equivalent to the four Wall Mount cases described in section 3, these are: The Splitter Combiner which is comprised of four, 4U 19” rack mount shelves: Downlink Input Shelf 80-301407 Downlink Output Shelf 80-301408 Uplink Input Shelf 80-301407 Uplink Output Shelf 80-301407 The VHF and UHF Low Band Amplifier which is comprised of two, 4U 19” rack mount shelves: VHF Amplifier Shelf 80-301409 UHF Lowband Amplifier Shelf 80-301410 The Mid and High Band UHF Amplifier which is comprised of two, 4U 19” rack mount shelves: UHF Midband Amplifier Shelf 80-301410 UHF Highband Amplifier Shelf 80-301410 The 800MHz Amplifier which is comprised of one, 8U 19” rack mount shelf: 800MHz Amplifier Shelf 80-301411 A 2U 19” rack mount shelf houses the power supply unit that provides 24V DC feeds to the amplifier shelves The entire arrangement is housed in two, 40U Swing-fame 19” Equipment Mountings Racks, Rack 1 houses: Downlink Input Shelf 80-301407 Uplink Input Shelf 80-301407 Uplink Output Shelf 80-301407 UHF Highband Amplifier Shelf 80-301410 UHF Midband Amplifier Shelf 80-301410 UHF Lowband Amplifier Shelf 80-301410 VHF Amplifier Shelf 80-301409 PSU Shelf Rack 2 houses: Downlink Output Shelf 80-301408 800MHz Amplifier Shelf 80-301411 Rack interconnections, test ports and connections to the Leaky Feeders are via patch panels in the tops of each rack Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 69 of 148 Downlink The downlink signal is received from the radiating cable and enters the Downlink Input Shelf 80301407 where by means of crossband splitter/couplers it is split into VHF, UHF and 800MHz paths, the UHF path is further split into Low, Middle and Highband paths. The VHF and UHF LowBand paths leave Downlink Input Shelf 80-301407. The VHF path goes to the Downlink Input of VHF Amplifier Shelf 80-301409 and the UHF Lowband path goes to the Downlink Input of UHF Lowband Amplifier Shelf 80-301410. The UHF Mid and Highband paths leave Downlink Input Shelf 80-301407 the UHF Midband path goes to the Downlink Input of UHF Midband Amplifier Shelf 80-301410; the UHF Highband path goes to the Downlink Input of UHF Highband Amplifier Shelf 80-301410 The 800MHz path leaves Downlink Input Shelf 80-301407 and goes to the Downlink Input of 800MHz Amplifier Shelf 80-301411 After their respective amplification stages the signal paths enter Downlink Output Shelf 80-301408 where they are combined into a single path and fed into the radiating cable. Uplink The Uplink signal signal is received from the radiating cable and enters Uplink Input Shelf 80-301407 where by means of crossband splitter/couplers it is split into VHF, UHF and 800MHz paths, the UHF path is further split into Low, Middle and High band paths. The VHF and UHF LowBand paths leave Uplink Input Shelf 80-301407. The VHF path goes to the Uplink Input of VHF Amplifier Shelf 80-301409 and the UHF Lowband path goes to the Uplink Input of UHF Lowband Amplifier Shelf 80-301410. The UHF Mid and Highband paths leave Uplink Input Shelf 80-301407 the UHF Midband path goes to the Uplink Input of UHF Midband Amplifier Shelf 80-301410; the UHF Highband path goes to the Uplink Input of UHF Highband Amplifier Shelf 80-301410 The 800MHz path leaves Uplink Input Shelf 80-301407 and goes to the Uplinklink Input of 800MHz Amplifier Shelf 80-301411 After their respective amplification stages the signal paths enter Uplink Output Shelf 80-301407 where they are combined into a single path and fed into the radiating cable. Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 70 of 148 4.1. In-Line BDA Rack Mount System Diagrams 4.1.1. Overall System Diagram Drawing Number 80-301486 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 71 of 148 4.1.2. Combiners System Diagram Drawing Number 80-301487 Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 72 of 148 4.2. In-Line BDA Rack Mount 80-301406 Specification ELECTRICAL SPECIFICATION Downlink VHF Uplink Downlink UHF Low Uplink Frequency Downlink UHF Mid Range Uplink Downlink UHF High Uplink Downlink 800MHz Uplink Passband Ripple VHF UHF Low Downlink Power UHF Mid Amplifier UHF High 800MHz VHF UHF Low Uplink Power UHF Mid Amplifier UHF High 800MHz Gain Gain Adjust Sampling Ports VSWR Impedance Power Supply Power Consumption Mechanical Specification 154.0 to 161.5 MHz 155.5 to 161.0 MHz 460.4 to 460.5 MHz 465.4 to 465.5 MHz 482.5 to 483.8 MHz 485.7 to 486.8 MHz 507.0 to 507.3 MHz 510.0 to 510.3 MHz 856.0 to 861.0 MHz 811.0 to 816.0 MHz ± 1.5dB 5 Watts 20 Watts 20 Watts 20 Watts 40 Watts 5 Watts 5 Watts 5 Watts 5 Watts 5 Watts 30dB 0 - 30dB in 2dB Steps 30dB 1.5:1 50 Ohms 24V DC < 800 Watts Two 40U, 19” Swingframe, 600mm x 600mm Equipment Mounting racks RF Connectors N-Type Female Local Alarms to SCADA Alarm Interfaces Dry Contact with LED Indication per band path Mechanical Axell Wireless Limited Technical Literature Document Number 80-301401HBKM L.A. M.T.A. Remote Sites Issue No. 1 Date 13/06/2008 Page 73 of 148
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