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XS5-M191919POptical Remote Unit ION-M

Andrew Wireless System
Optical Remote Unit ION-M - FCC ID XS5-M191919P - Andrew Wireless System
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Oct 14, 2012
Application Purpose
Original Equipment
Date of Application
Oct 14, 2012
Equipment Note
Optical Remote Unit ION-M
Frequency Range
1975.00000000 - 1990.00000000
Company
Andrew Wireless System
Country
Germany

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

Installation Instruction The Remote Unit, Extension Unit or Master Unit has to be mounted by proffessionel / special trained installer. 1.1. MECHANICAL INSTALLATION 1.1.1. General Read the health and safety warnings in section 1.3. 1. Do not ins tall the unit in a way or at a place where the specifications outlined in the Environmental and Safety Specifications leaflet of the supplier are not met. 2. It is recommended only to use the mounting hardware delivered by the supplier. If different mounting hardware is used, the specifications for stationary use of the Remote Unit must not be exceeded.  Note: Exceeding the specified load limits may cause the loss of warranty! 3. The unit is considerably heavy. Make sure that a suitable mounting surface is used. Ensure there is adequate manpower to handle the weight of the system. 4. Due to power dissipation, the Remote Unit may reach a very high temperature. Ensure sufficient airflow for ventilation as specified in the individual mounting procedures. 5. When connecting and mounting the cables (RF, optical, mains, ...) ensure no water can penetrate into the unit through these cables. 6. Also observe all additional rules or restrictions regarding mounting that depend on the type of Remote Unit. For details refer to chapter 7.2.2 Mechanical Specification. Install the unit vertically with the fan unit at the top. A maximum tilt angle of 25° from a vertical position must be kept, as in the following illustrations: 7. A spacing of 40 mm (1.58 inch) around the unit is required. 8. To ensure sufficient airflow when mounting the unit in enclosed spaces, two lid openings (one for the air inlet and the other for the air outlet) have to be provided. Do not block these air inlets and outlets when mounting the Remote Unit. The size of each opening must equal at least 12 x 12 cm (144 cm 2 ). Make sure, too, there is no thermal short circuit between the air inlet and air outlet. If any different or additional mounting material is used, ensure that the mounting remains as safe as the mounting designed by the manufacturer. Ensure that the static and dynamic strengths are adequate for the environmental conditions of the site. The mounting itself must not vibrate, swing or move in any way that might cause damage to the Remote Unit. Specified torques have to be observed for certain mounting procedures according to the following table: Type Tallow-drop screws Hex nuts Spacing bolts PG (plastic) PG (aluminium) Thread M 4 M 8 M 4 M 8 PG 13.5 PG 29 Specified torques 3.3 Nm 27 Nm 2.3 Nm 27 Nm 3.75 Nm 10 Nm table Fehler! Kein Text mit angegebener Formatvorlage im Dokument.-1 Specified torques  Note: To avoid damage when mounting the unit, always make sure that the M8 washers (DIN9021 or DIN125 depending on the mounting kit) are placed behind and in front of the mounting drillings of the unit. The mounting procedures for a stand-alone Remote Unit without optional accessories are described and illustrated in the following sections. For further information regarding special mounting procedures including mounting of accessory equipment, please see separate manual. 1.2. ELECTRICAL INSTALLATION 1.2.1. General Read the health and safety warnings in section 1.3. 1. This unit contains dangerous voltages. Loss of life, severe personal injury or property dam age can be the result if the instructions contained in this manual are not followed. 2. It is compulsory to ground the unit before connecting power supply. A grounding bolt is provided on the cabinet to connect the ground-bonding cable. 3. Although the remote unit is internally protected against overvoltage, it is strongly recommended to earth the antenna cables close to the antenna connectors of the remote unit for protection against atmospheric discharge. In areas with strong lightning it is strongly recommended to insert additional lightning protection. 4. If the mains connector of the remote unit is not easily accessible, a disconnect device in the mains circuit must be provided within easy reach. 5. Before connecting or disconnecting the mains connector at the remote unit, ensure that mains supply is disconnected. 6. Make sure that an appropriate circuit breaker and an overcurrent limiting device are connected between mains and remote unit. 7. A connection of mains supply to a power socket requires the power socket to be nearby the remote unit. 8. Incorrectly wired connections can destroy electrical and electronic components. 9. To avoid corrosion at the connectors caused by electrochemical processes, the material of the cable connectors must not cause a higher potential difference than 0.6 V (see electrochemical contact series). 10. It is sufficient to tighten the N-antenna connector hand-screwed. Any use of a tool (e.g. pair of pliers) might cause damage to the connector and thus lead to malfunctioning of the remote unit. 11. For unstabilized electric networks which frequently generate spikes, it is advised to use a voltage limiting device. 12. The unit complies with the surge requirement according to EN 61000-4-5 (fine protection); however, it is recommended to install an additional medium (via local supply connection) and/or coarse protection (external surge protection) depending on the individual application in order to avoid damage caused by overcurrent. 13. Observe the labels on the front panels before connecting or disconnecting any cables. 1.3. HEALTH AND SAFETY WARNINGS 1. Only suitab ly qualified personnel are allowed to work on this unit and only after becoming familiar with all safety notices, installation, operation and maintenance procedures contained in this manual. 2. Read and obey all th e warning labels attached to the unit. Make sure that the warning labels are kept in a legible condition and replace any missing or damaged labels. 3. Obey all general and regional installation and safety regulations relating to work on high voltage installations, as well as regulations covering correct use of tools and …

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Users Manual

Optical Remote Unit ION™-M19P/19P/19P single source / 3 - sector (M-Cabinet) Manual MF0145AAA 2 of 46 © Copyright 2012 CommScope, Inc. All rights reserved. All information contained in this manual has been revised thoroughly. Yet CommScope accepts no liability for any omissions or faults. CommScope reserves the right to change all hardware and software characteristics without notice. Names of products mentioned herein are used for identification purposes only and may be trademarks and / or registered trademarks of their respective companies. No parts of this publication may be reproduced, stored in a retrieval system, transmitted in any form or by any means, electronical, mechanical photocopying, recording or otherwise, without prior written permission of the publisher. Andrew Wireless Systems GmbH, 26-September-2012 3 of 46 TABLE OF CONTENTS 1.1. USED ABBREVIATIONS 6 1.2. HEALTH AND SAFETY WARNINGS 7 1.3. ABOUT COMMSCOPE SOLUTIONS 10 1.4. INTERNATIONAL CONTACT ADDRESSES FOR CUSTOMER SUPPORT 11 2. INTRODUCTION 14 2.1. PURPOSE 14 2.2. THE ION – M 19P/19P/19P SINGLE SOURCE / 3-SECTOR 14 2.2.1. Fan-Protection Kit 15 2.2.2. Accessories 15 3. 3. COMM ISSIONING 16 3.1. MECHANICAL INSTALLATION 16 3.1.1. General 16 3.1.2. Wall-Mounting Procedure 18 3.1.3. Pole-Mounting Procedure 19 3.1.4. Mounting of Fan Protection 21 3.2. ELECTRICAL INSTALLATION 22 3.2.1. General 22 3.2.2. Connections 23 3.2.3. Grounding 24 3.2.4. Connection of the Antenna Cables 25 3.2.5. Power Connection 26 3.3. OPTICAL-FIBRE-CABLE CONNECTION - RULES 27 3.3.1. Protective Plug 28 3.3.2. Protective-Tube Kit 30 3.4. COMMISSIONING 32 4. ALARMS 35 4.1. BITE AND ALARMS 35 4.2. HANDLING OF ALARMS 35 4.3. ALARM STATUS 35 4.4. STATUS LED ALARMS 35 4.5. EXTERNAL ALARM INPUTS AND OUTPUTS 37 4.6. TROUBLESHOOTING 38 4 of 46 5. MAINTENANCE 39 5.1. GENERAL 39 5.2. REPLACING THE FAN UNIT 40 5.3. CLEANING THE HEAT SINK 42 6. APP ENDIX 43 6.1. ILLUSTRATIONS 43 6.2. ELECTRICAL SPECIFICATIONS 44 6.3. ENVIRONMENTAL AND SAFETY SPECIFICATIONS 44 6.4. MECHANICAL SPECIFICATIONS 44 6.5. SPARE PARTS 45 7. INDEX 46 5 of 46 FIGURES AND TABLES figure 3-1 Wall mounting...........................................................................................18 figure 3-2 Pole-mounting kit......................................................................................19 figure 3-3 Pole mount ing ..........................................................................................20 figure 3-4 Mounting procedure for fan protection......................................................21 figure 3-5 Connector flange of ION-M19P/19P/19P ..................................................23 figure 3-6 RS232 connector......................................................................................24 figure 3-7 Grounding bolt with loosened hex nut ......................................................24 figure 3-8 Grounding bolt, schematic view ................................................................24 figure 3-9 AC mains plug..........................................................................................26 figure 3-10 DC mains plug ........................................................................................26 figure 3-11 Protective-plug assembly.......................................................................28 figure 3-12 Tube-kit installation .................................................................................31 figure 4-1 Alarm triggering ........................................................................................36 figure 4-2 Flange connector, 5 poles........................................................................37 figure 4-3 Flange connector, 7 poles ........................................................................37 figure 4-4 Alarm inputs and outputs, standard ..........................................................38 figure 6-1 Installation drawing...................................................................................43 table 2-1 List of international cont act addresses.......................................................13 table 3-1 Specified torques .......................................................................................17 table 3-2 RS232 connector, pin assignment .............................................................24 table 4-1 Status LED alarms.....................................................................................36 6 of 46 General 1.1. USED ABBREVIATIONS 3GPP 3 rd Generation Partnership Project AC/DC Alternating current / Direct Current AIMOS Andrew Integrated Management and Operating System ALC Automatic Level Control BITE Built-In Test Equipment BTS Base Transceiver Station CE "Conformité Européenne" ("European Conformity") CD Compact Disk CPD Channel Power Detection DL Downlink DoC Declaration of Conformity EDGE Enhanced Data Rates for GSM Evolution EN European Norm EP Extension Port ESD Electrostatic Discharge ETS European Telecommunication Standard EU Extension Unit GSM Global System for Mobile Communication GND Ground GUI Graphical User Interface ICP3 Intercept Point 3 rd order ID No Identification Number ION Intelligent Optical Network IP Ingress Protection ISO International Organization for Standardization LED Light Emitting Diode LMT Local Maintenance Terminal LTE Long Term Evolution MIMO Multiple Input Multiple Output MS Mobile Station MU Main Unit NF Noise Figure OTRx Optical Transceiver = SRMU (Subrack Master Unit) PDU Power Distribution Unit PG Packing Gland PIM Passive Intermodulation P in Input power P out Output power R&TTE Radio & Telecommunications Terminal Equipment Rev Revision RF Radio Frequency RU Remote Unit RX Receiver SNMP Simple Network Management Protocol TS Technical Specification TX Transmitter UL Uplink UMTS Universal Mobile Telecommunication System UPS Uninterruptible Power Supply VSWR Voltage Standing Wave Ratio WCDMA Wideband Code Division Multiple Access WDM Wavelength Divisi…

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External Photos

External Photos

ID Label/Location Info

Label Location 6,5cm 11,5cm

Internal Photos

Internal Photos OTRX 19P/19P/19P RU Amplifier Fin.Ampl. 1930-1995MHz FCM 19P/19P/19P RU Control Unit RCM161

RF Exposure Info

RF Exposure Info / MPE Sample Calculation Model: ION-M19P/19P/19P FCC-ID: XS5-M191919P The ION-M19P/19P/19P is a three-sector remote unit (RU). It is used in conjunction with a master unit in the ION optical distribution system. This system transports 3 sectors simultaneously 3 x 1900 MHz, providing a cost-effective solution for distributing capacity from one or more base stations. Beside 3 – sector mode the system can be switched to single source operation. In this operation mode no frequency conversion is used, but one input signal (single source) is split to 3 output signals. Purpose of this mode is to support the possibility of quasi omni directional radiation. Together with a phase detection box the system is able to detect phase differences between the RF feeder cables to the antennas and to adjust phases such, that the phase differences are compensated, i.e. phase differences are 0° after phase adjust. This process is running automatically, when initiated by a “button to push” The ION-M19P/19P/19P transports signals on the RF layer in a very inexpensive manner. This means that multiple operators and multiple technologies are moved simultaneously from a cluster of base stations to a remote location over the same fiber. The ION-M (Intelligent Optical Network) optical distribution system is a cost-effective coverage solution for dense urban areas, airports, campus, high-rise buildings and other locations where physical structures increase path loss or provide limited space for installation. It has been specifically designed to reduce zoning problems and to provide homogeneous coverage. The compact, mechanical design is specifically architected to mount inside of or on poles and along side structures in such a way that it has a minimal visual impact. It has been specifically tested and optimized for CDMA2000, EV-DO, WCDMA and LTE. Furthermore it is provisioned for future improvements to the modulation and frequency bands. The ION-M19P/19P/19P can be easily set-up and supervised via a graphical user interface (GUI). Remote units can be commissioned through the use of built-in test equipment. An auto-leveling function compensates for the optical link loss making installation easy and quick. The entire system may be monitored remotely via an Andrew OMC. This is a comprehensive management platform with SNMP protocol and X.733 standard implemented. Should a sophisticated interface not be re-quired, the master unit can be directly connected to the alarm interface of a base station via relay alarming. The specific device generally will be professionally installed. Hereby the gain of the finally installed antenna(s), cable attenuation and antenna height will be defined site specific at the time of licensing with the appropriate FCC Bureau(s). The maximum permissible exposure limit is defined in 47 CFR 1.1310 (B). S = power density limit [W/m] P = power [W] R = distance [m] 2 4 n nn n R GP S   => n nn n S GP R 4  (to calculate the distance at one frequency) If we have more bands, than we have to calculated as a percentage: The additional of the terms have to be lower than 1. 1 4 .... 4 44 1.... 2 3 2 3 33 2 2 2 22 1 2 1 11 ln 3 3 2 2 1 1   n n nn n cacalcalcal S R GP S R GP S R GP S R GP S S S S S S S S   We are looking for a distance of ensures that the formula is satisfied. n RRRR... 321 1 4 ... 444 2 3 2 33 2 2 22 1 2 11  n nn SR GP SR GP SR GP SR GP  R S GP S GP S GP S GP R S GP S GP S GP S GP n nn n nn     4 ... 444 4 ... 444 3 33 2 22 1 11 2 3 33 2 22 1 11 With n nn n S GP R 4  => n nn n S GP R 4 2  RRRRR n  22 3 2 2 2 1 ... What you have to do for calculate the minimum distance were the power density limit is met: 1) If you have one path, you have to put you special values in the following formula. n nn n S GP R 4  (Distance for one carrier) Limits for General Population / Uncontrolled Exposures Frequency Range (MHz) Power Density (mW/cm 2 ) 300 – 1500 S = f/1500 1550 – 100,000 S = 1 2) If you have more than one path, you must add the individual terms quadratic. n nn n S GP R 4  (Distance for individual carrier) RRRRR n  22 3 2 2 2 1 ... (See previous page) For example: The EUT operates with one frequency band: Calculation with maximum possible antenna gain and without cable loss (worst case): Frequency [MHz] Max Power out [dBm] Max. possible Antenna gain, without cable loss [dBi] Max. Distance [m] 1990 43 19 3.5514 For more accurate calculation, the cable loss and actual antenna gain have to be included in the finally system. The antenna(s) used with device must be fixed-mounted on permanent structures with a distance to any human body to comply with the RF Exposure limit.

Test Report

Test Site: FCC Test Site No.: 96997 IC OATS No.: IC3475A-1 The test report shall not be reproduced except in full without the written approval of the testing laboratory. ECL-EMC-TR-12-187-V01.00 Page 1 of 40 Date of issue: 10.10.11 Signature Issue-No.: 01 Author: Date of delivery: 06.10.12 Checked: Test dates: 21.09. – 06.10.12 Pages: 40 ECL-EMC Test Report No.: 12-187 Equipment under test: ION-M19P/19P/19P Pseudo Omni FCC ID: XS5-M191919P IC ID: Type of test: FCC 47 CFR Part 24 Subpart E: 2012 Broadband PCS IC RSS-131:2003 Zone Enhancers for the Land Mobile Service Measurement Procedures: 47 CFR Parts 2: 2012(Frequency Allocations and Radio Treaty Matters; General Rules and Regulations), 24 (Broadband PCS), ANSI/TIA-603-C (2004), Land Mobile FM or PM Communications Equipment Measurement and Performance Standards IC-GEN General Requirements and Information for the Certification of Radiocommunication Equipment Test result: Passed Test Report No.: 11-095 FCC ID: XS5-ML7851719P IC ID: 2237E-ML7851719P The test report shall not be reproduced except in full without the written approval of the testing laboratory. ECL-EMC-TR-12-187-V01.00 Page 2 of 40 Manufacturer: ANDREW Wireless Systems GmbH Industriering 10 D-86675 Buchdorf Tel.: +49 (0)9099 69 0 Fax: +49 (0)9099 69 140 Test Location: TEMTPON Service Plus GmbH European Compliance Laboratory (ECL) Thurn-und Taxis-Straße 18 D-90411 Nürnberg Tel.: +49 0911 59835 23 Fax: +49 0911 59835 90 General: The purpose of this report is to show compliance to the FCC regulations for unlicensed devices operating under section 15.249 of the Code of Federal Regulations title 47. This report informs about the results of the EMC tests, it only refers to the equipment under test. No part of this report may be reproduced in any form, without written permission. Test Report No.: 11-095 FCC ID: XS5-ML7851719P IC ID: 2237E-ML7851719P The test report shall not be reproduced except in full without the written approval of the testing laboratory. ECL-EMC-TR-12-187-V01.00 Page 3 of 40 Table of contents 1 TEST RESULTS SUMMARY ................................................................................................................. 5 2 EQUIPMENT UNDER TEST (E.U.T.) .................................................................................................... 6 2.1 DESCRIPTION .................................................................................................................................... 6 2.1.1 DOWNLINK ................................................................................................................................. 6 2.1.2 UPLINK ...................................................................................................................................... 6 2.1.3 DESCRIPTION OF EUT ................................................................................................................ 6 2.1.4 BLOCK DIAGRAM OF MEASUREMENT REFERENCE POINTS .............................................................. 7 2.1.5 DOWNLINK SYSTEM GAIN AND OUTPUT POWER ........................................................................... 7 3 TEST SITE (ANDREW BUCHDORF) .................................................................................................... 8 3.1 TEST ENVIRONMENT .......................................................................................................................... 8 3.2 TEST EQUIPMENT .............................................................................................................................. 8 3.3 INPUT AND OUTPUT LOSSES ............................................................................................................... 8 3.4 MEASUREMENT UNCERTAINTY ............................................................................................................ 8 4 TEST SITE (TEMPTON SERVICE PLUS GMBH) ................................................................................. 9 5 RF POWER OUT: §24.232, §2.1046 ................................................................................................... 10 5.1 LIMIT............................................................................................................................................... 10 5.2 TEST METHOD ................................................................................................................................. 10 5.3 TEST RESULTS ................................................................................................................................ 11 5.3.1 DOWNLINK ............................................................................................................................... 12 5.3.1.1 GSM ................................................................................................................................ 13 5.3.1.2 GSM-EDGE .................................................................................................................... 13 5.3.1.3 CDMA ............................................................................................................................. 14 5.3.1.4 W-CDMA......................................................................................................................... 14 5.3.1.5 LTE ................................................................................................................................. 15 5.3.2 UPLINK .................................................................................................................................... 15 5.4 SUMMARY TEST RESULT ................................................................................................................... 15 6 OCCUPIED BANDWIDTH: §2.1049 .................................................................................................... 16 6.1 LIMIT......................................................................................................................................…

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Test Setup Photos

Test setup Measurement Equipment EUT ION-M19P/19P/19P Pseudo Omni

Contact Information

Applicant

Jiri Cecka(Manager Quality)
[email protected]+420606620263Fax: +49-9099-69930

Test Firm

Bureau Veritas Consumer Products Services GermanyMario Lehmann
[email protected]49-40-74041-2702Fax: 49-175-575-4778

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
424E1.98 GHz - 1.99 GHz20 WD7D
Confidentiality
Long Term
Grant Notes
Power listed is conducted. The antenna(s) used for this transmitter must be fixed-mounted on permanent structures. RF exposure compliance must be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of section 1.1307(b)(3). This device must be professionally installed.

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