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PRQ-FD-3500ADistributed Antenna System

Avitec, AB
Distributed Antenna System - FCC ID PRQ-FD-3500A - Avitec, AB
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Apr 17, 2002
Application Purpose
Original Equipment
Date of Application
Apr 17, 2002
Equipment Note
Distributed Antenna System
Frequency Range
869.00000000 - 894.00000000
Company
Avitec, AB
Country
Sweden

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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Operational Description

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Parts List/Tune Up Info

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Test Report

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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

Operating Manual FiberDAS Distributed Antenna System FiberDAS Manual, Rev. E14 ii Table of Contents 1 LINK DESCRIPTION..................................................................................................................................1-1 1.1 C AUTIONS AND W ARNINGS ......................................................................................................................1-1 1.2 G ENERAL D ESCRIPTION ............................................................................................................................1-2 1.2.1 Basic Principles...............................................................................................................................1-2 1.2.2 Functional Description....................................................................................................................1-3 1.3 S PECIFICATIONS .......................................................................................................................................1-7 2 INSTALLATION...........................................................................................................................................2-1 2.1 G ENERAL P ROCEDURE ..............................................................................................................................2-1 2.2 I NSTALL F IBEROPTIC C ABLES ...................................................................................................................2-5 2.2.1 Minimizing Optical Reflections.......................................................................................................2-5 2.2.2 Cleaning Optical Connectors..........................................................................................................2-6 2.3 S YSTEM A LARMS ......................................................................................................................................2-7 2.4 H UB S HELF AND R EMOTE P OWER S UPPLY B ATTERY C HARGE M ONITORING AND R EPLACEMENT ...........2-7 2.4.1 Replacing the Hub Shelf Battery......................................................................................................2-8 2.4.2 Replacing the Remote Power Supply Battery..................................................................................2-8 2.5 I NSTALLATION C HECKLIST .......................................................................................................................2-9 2.5.1 Inspect Received Items.....................................................................................................................2-9 2.5.2 Recommended Tools........................................................................................................................2-9 2.6 I NSTALLING THE H UB S HELF ....................................................................................................................2-9 2.6.1 Rack Installation..............................................................................................................................2-9 2.6.2 Connect Fiberoptic Cables............................................................................................................2-10 2.6.3 Indentifying Remote Locations......................................................................................................2-10 2.6.4 Serial Bus, Telephone and Local Alarm Connections...................................................................2-10 2.6.5 Mains Power and Fuses.................................................................................................................2-10 2.6.6 RF Connections.............................................................................................................................2-11 2.7 I NSTALLING THE R EMOTE T RANSCEIVERS ..............................................................................................2-11 3 MONITORING AND TROUBLESHOOTING..........................................................................................3-1 3.1 F IELD S UPPORT N UMBERS ........................................................................................................................3-1 3.2 T ROUBLESHOOTING T IPS ..........................................................................................................................3-2 3.3 R EGULATORY ...........................................................................................................................................3-4 iii iv 1 Link Description 1.1 Cautions and Warnings Throughout this manual, these terms appear which highlight the care that should be exercised to ensure personal safety and proper operation of the equipment. WARNING: Warning statements identify conditions or practices that could result in injury or loss of life. CAUTION: Caution statements identify conditions or practices that could result in damage to this product or other property. CAUTION: any modifications to this device not expressly authorized by Remec, Inc. could void the user’s authority to operate this device. CLASS 1 LASER PRODUCT FDA/CDRH Class 1 laser product. All versions of the FiberDAS are Class 1 lasers products per CDRH, 21 CFR 1040 Laser Safety requirements. All versions are Class 1 laser products per EN 60825-1:1994. NOTICE UNTERMINATED OPTICAL RECEPTACLES MAY EMIT LASER RADIATION. DO NOT VIEW WITH OPTICAL INSTRUMENTS. 1-1 1.2 General Description The FiberDAS Fiberoptic Distributed Antenna System provides extended coverage of wireless networks throughout buildings and campus environments. The Hub Shelf is a 3U (5.25 inch) high, 19-inch wide rack-mounted chassis. The Hub Shelf holds up to 8 Hub Transceiver Plug-Ins. The Hub Shelf is located in a communications equipment room in the building and is connected to the wireless base station or repeater via hardline connection. The Hub Shelf may also be connected to the radios of a wireless PBX. Each Hub Shelf is configured with up to eight Hub Transceiver plug-in …

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Operational Description

1.2 General Description The FiberDAS Fiberoptic Distributed Antenna System provides extended coverage of wireless networks throughout buildings and campus environments. The Hub Shelf is a 3U (5.25 inch) high, 19-inch wide rack-mounted chassis. The Hub Shelf holds up to 8 Hub Transceiver Plug-Ins. The Hub Shelf is located in a communications equipment room in the building and is connected to the wireless base station or repeater via hardline connection. The Hub Shelf may also be connected to the radios of a wireless PBX. Each Hub Shelf is configured with up to eight Hub Transceiver plug-in cards. Each card is connected to up to two Remote Transceivers via two pairs of singlemode fiberoptic lines. The Remote Transceiver Units are distributed throughout the building as necessary to provide coverage. The Remote Transceivers are mounted, generally, above the suspended ceiling but may be mounted near the ceiling inside the room if need be. The aesthetic and low-profile design of the Remote Transceiver makes it relatively unobtrusive. The plastic cover may even be removed and/or painted to match the décor. Each Remote Transceiver is connected to Hub Shelf via two singlemode optical fibers. Each Remote Transceiver has one RF port which is connected to a user-supplied indoor coverage antenna. This port may also be routed through an N- way RF splitter to provide coverage from a number N antennas for the one Remote Transceiver. The choice depends on the results of the engineering design for that particular structure as to the most cost- effective way to provide uniform coverage. The Remote Transceiver is DC-powered, usually by the Remec Central DC Power Supply. This is distributed from the power supply at the Hub location using the conductor pairs in a composite fiber/conductor cable or by a separate two-wire cable pulled along with the fiberoptic cable. The DC connector utilized at the Remote Transceiver can accommodate up to 14 AWG wire. The FiberDAS design is very versatile but certain options are available that target specific signal types and applications. In addition to the single band versions from iDEN through UMTS, there are dual band versions such as 800 MHz/1900 MHz and GSM900/GSM1800. FiberDAS installation and setup is very simple. First, standard telcom grade singlemode fiberoptic cable that is most suitable for the site is installed. The cable installer can terminate the cable on site easily with the SC/UPC optical connectors. The Plug-Ins and Remote Transceivers of a given type are completely interchangeable. The SC/UPC plugs directly into the Remote Transceiver at one end. The other end plugs into an optical patch panel or directly into the Hub Shelf via an SC/UPC-to-SC/UPC adapter. If the patch panel is used, SC/UPC-to-SC/UPC jumpers must be used to connect the Hub Shelf to the patch panel. Built-in optical loss compensation automatically equalizes the gain in both the transmit and receive paths so the transmit RF power is known for a given input RF power and the receive path sensitivity is optimized. The only adjustment available is a manual setting for the static transmit power at the Remote Transceiver which may be used to optimize coverage, if necessary. This is a one time adjustment during set up. 1.2.1 Basic Principles The FiberDAS operation is based on an analog RF fiberoptic link. The principles are illustrated in Figure 1. Input RF signals are converted to light by direct intensity modulation of a semiconductor laser. This modulated light is transmitted over optical fiber and detected by a semiconductor PIN photodiode. The photodiode converts optical power to electrical current. This current is AC coupled and passed through a load to recover the RF signal. The basic RF loss in this link is determined by the inefficiencies of the conversions of RF to optical and back. The fiber also contributes an RF loss equal to twice the optical loss. This is because the photodiode converts optical power to electrical current and RF power is proportional to the square of the current. So, for 1 km of fiber with a loss of 0.4 dB/km (this is typical at 1310 nm wavelength) the optical loss is 0.4 dB 1-2

Parts List/Tune Up Info

May 6, 2002 Attn: Review Engineer Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Subject: Tune-up procedure To w hom it May Concern: Per your requested, you can find the tune up procedure is on the operating manual under section 1.2 General Description: .... The only adjustment available is a manual setting for the static transmit power at the Remote Transceiver which may be used to optimize coverage, if necessary. This is a one-time adjustment during set up. Please fell free to contact us w ith any questions you may have about this letter. Sincerely, Gary Grimes Managing Director Phone: (714)765-5813 Fax(714)765-5817

Test Report

April 7, 2002 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Attention:Applications Examiner Applicant:REMEC Inc. 300 S. Harbor Blvd. Suite 900 Anaheim, CA 92805 Equipment:FiberDAS FD-3500A FCC ID: PRQ-FD-3500A Specification:47 CFR 22 Licensed Certification Dear Examiner: The following application for Grant of Equipment Authorization is presented on behalf of REMEC Inc. for the Licensed Certification of their Model: FiberDAS FD-3500A. Enclosed, please find a complete data and documentation package demonstrating that this device complies with the technical requirements of 47 CFR, Part 22, for a Cellular Repeater. If you have any questions, please contact the undersigned, who is authorized to act as Agent. Sincerely, Chris Harvey Director, EMC Laboratory MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 914 WEST PATAPSCO AVENUE !! BALTIMORE, MARYLAND 21230-3432 !! PHONE (410) 354-3300 !! FAX (410) 354-3313 ENGINEERING TEST REPORT in support of the Application for Grant of Equipment Authorization EQUIPMENT:FiberDAS FD-3500A FCC ID:PRQ-FD-3500A Specification:47 CFR 22 On Behalf of the Applicant:REMEC Inc. 300 S. Harbor Blvd. Suite 900 Anaheim, CA 92805 Manufacturer:REMEC Inc. 300 S. Harbor Blvd. Suite 900 Anaheim, CA 92805 Manufacturer’s Mr. Gary Grimes Representative Test Date(s):March 12 thru March 28, 2002 ENGINEERING STATEMENT I ATTEST: the measurements shown in this report were made in accordance with the procedures indicated, and that the emissions from this equipment were found to be within the limits applicable. I assume full responsibility for the accuracy and completeness of these measurements. On the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of Part 22 of the FCC Rules under normal use and maintenance. Liming Xu EMC Engineer, MET Laboratories -3- EMC12061Copyright 2000, MET Laboratories, Inc. Summary of Test Results These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with Part 22, of 47 CFR. All tests were conducted using measurement procedure ANSI C63.4-1992. Type of Submission/Rule Part: Original Filing/Part 22 EUT:REMEC Inc. FiberDAS FD-3500A FCC ID:PRQ-FD-3500A Type of Emissions:GXW (GSM) GXW (TDMA) F9W ( CDMA ) F3E (AMPS) RF Power output:GXW (GSM) - 0.34 watts GXW (TDMA) - 0.33 watts F9W ( CDMA ) - 0.34 watts F3E (AMPS) - 0.33 watts Frequency Range (MHz): 824 - 849 MHz receive 869 - 894 MHz transmit Frequency Stability:N/A Summary of Test Data Name of TestFCC Rule Part/SectionResults Radiated Spurious Emissions2.1053; 22.917(e); 22.901(d)(2)Complies Occupied Bandwidth - In vs. Out2.1049Complies RF Power Output2.1046; 22.913(a)Complies Spurious Emissions at Antenna Terminals 2.1051; 22.917(e)Complies Intermodulation Spurious Emissions2.1051;Complies -4- EMC12061Copyright 2000, MET Laboratories, Inc. 1.0INTRODUCTION The following data is presented on behalf of the Applicant, Repeater Technologies, as verification of the compliance of the REMEC Inc. FiberDAS FD-3500A to the requirements of 47CFR 22. 2.0TEST SITE All testing was conducted at MET Laboratories, Inc., 914 West Patapsco Avenue, Baltimore, Maryland 21230-3493. Radiated emissions measurements were performed in a semi-anechoic chamber. A complete site description is on file with the FCC Laboratory Division as 31040/SIT/MET. 3.0TEST EQUIPMENT USED Test Equipment ManufacturerModel #Met Asset #Cal DateCal Due ReceiverHP8546A1T430208/11/01 08/11/02 AntennaSCHAFFNER1155 1T430308/26/01 08/26/02 AntennaEMCO3301B1T324003/23/01 03/23/02 Test RoomETSCH11T430008/17/01 08/17/02 4.0EQUIPMENT UNDER TEST CONFIGURATION The PCS Repeater was configured with AC power supply modules and a digital signal generator was used to simulate various CDMA, TDMA, AMPS, and GSM cellular RF input signals to the EUT. The EUT with host external computer was configured for maximum signal gain and bandwidth. The EUT was operated in a manner representative of the typical usage of the equipment. During all testing, system components were manipulated within the confines of typical usage to maximize each emission. 5.0TEST TYPE(S) 5.1Radiated Emissions: 47 CFR 2.1053, 22.901(d)(2); 22.917(e) 5.2Occupied Bandwidth In vs Out: 47 CFR 2.1049, Input vs. Output 5.3RF Power Output: 47 CFR 2.1046, 22.913(a) 5.4Spurious Emission at Antenna Terminals (downlink): 47 CFR 2.1051, 22.917(c) 5.5Intermodulation Spurious Emissions-2 Tone Simultaneous RF Injection (uplink & downlink) at the lowest and highest sides of the band: 47 CFR 2.1051. -5- EMC12061Copyright 2000, MET Laboratories, Inc. Po&[43%10Log(0.34)]'&13dBm 6.0TEST RESULTS 6.1TEST TYPE: Radiated Emissions 6.1.1TECHNICAL SPECIFICATION:47 CFR 2.1053; 22.901(d)(2); 22.917(e) 6.1.2TEST DATE(S):March 12, 2002 6.1.3MEASUREMENT PROCEDURES: As required by §2.1053, field strength of spurious radiation measurements were made in accordance with the general procedures of ANSI C63.4-1992 "Methods of Measurement of Radio-Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9kHz to 40 GHz". Preliminary and final radiated emission measurements were performed inside a semi-anechoic chamber with all digital signal generators on and . The frequency list from the preliminary measurements was used as a guide for making final measurements in the semi-anechoic chamber. The unit was scanned over the frequency range of 30MHz to 20 GHz. The Radiated Spurious Emissions Limit is obtained by the following: Based on an output power (as measured at the output of the Amplifier) of 0.34 watts: P o = 0.34 W the radiated power level of all spurious emissions must be attenuated by at least 43 + 10log(Po) below Po, yielding: 6.1.4RESULTS: All of the measurable radiated emissions are related to the digital device portion of the EUT, and thus are compared to the 47CFR 15 Class A field strength limit. Math…

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Contact Information

Applicant

Hakan Samuelsson(Managing Director)
46 8-475-4700Fax: 46 8-475-4799

Test Firm

MET Laboratories, Inc.John Mason
[email protected]410-354-3300Fax: 410-354-3313

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
322H869 MHz - 894 MHz330.00 mWF3E
Confidentiality
Long Term
Grant Notes
The antenna(s) used for this transmitter are to be fixed-mounted on indoor permanent structures providing a separation distance of at least 20 cm from all persons during normal operation. The maximum radiated output power at each antenna must satisfy the MPE Categorical Exclusion Requirement of Section 2.1091. RF exposure compliance may need to be addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirement of Section 1.1307(b)(3). This device previously aproved with lower power rating under FCC ID: PRQ80002. This device has been tested using GSM, NADC, CDMA and AMPS modulations.

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