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NOOUNS-IDEN-2800MHz IDEN In-Building Distributed Antenna System

ADC Telecommunications Inc.
800MHz IDEN In-Building Distributed Antenna System - FCC ID NOOUNS-IDEN-2 - ADC Telecommunications Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Feb 27, 2003
Application Purpose
Original Equipment
Date of Application
Feb 27, 2003
Equipment Note
800MHz IDEN In-Building Distributed Antenna System
Frequency Range
851.00000000 - 869.00000000
Company
ADC Telecommunications Inc.
Country
United States

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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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

PN 9000-10 620021-0 Rev. A Installation, Operation, and Reference Manual InterReach Unison Accel ® InterReach Unison Accel Installation, Operation, and Reference ManualPN 9000-10 620021-0 Rev. A This manual is produced for use by LGC Wireless personnel, licensees, and customers. The information contained herein is the property of LGC Wireless. No part of this document may be reproduced or transmitted in any form or by any means, electronic or mechanical, for any purpose, without the express written permission of LGC Wireless. LGC Wireless reserves the right to make changes, without notice, to the specifications and materials contained herein, and shall not be responsible for any damages caused by reliance on the material as presented, including, but not limited to, typographical and listing errors. Your comments are welcome – they help us improve our products and documentation. Please address your comments to LGC Wireless, Inc. corporate headquarters in San Jose, California: Address2540 Junction Avenue San Jose, California 95134-1902 USA Attn: Marketing Dept. Phone1-408-952-2400 Fax1-408-952-2410 Help Hot Line 1-800-530-9960 (U.S. only) +1-408-952-2400 (International) Web Addresshttp://www.lgcwireless.com [email protected] [email protected] Copyright © 2002 by LGC Wireless, Inc. Printed in USA. All rights reserved. Trademarks All trademarks identified by ™ or ® are trademarks or registered trademarks of LGC Wireless, Inc. All other trademarks belong to their respective owners. PN 9000-10InterReach Unison Accel Installation, Operation, and Reference Manual 620021-0 Rev. A Limited Warranty Seller warrants articles of its manufacture against defective materials or workmanship for a period of one year from the date of shipment to Purchaser, except as provided in any warranty applicable to Purchaser on or in the package containing the Goods (which warranty takes precedence over the following warranty). The liability of Seller under the foregoing warranty is limited, at Seller’s option, solely to repair or replacement with equivalent Goods, or an appropriate adjustment not to exceed the sales price to Purchaser, provided that (a) Seller is notified in writing by Purchaser, within the one year warranty period, promptly upon discovery of defects, with a detailed description of such defects, (b) Purchaser has obtained a Return Materials Authorization (RMA) from Seller, which RMA Seller agrees to provide Purchaser promptly upon request, (c) the defective Goods are returned to Seller, transportation and other applicable charges prepaid by the Purchaser, and (d) Seller’s examination of such Goods discloses to its reasonable satisfaction that defects were not caused by negligence, misuse, improper installation, improper maintenance, accident or unauthorized repair or alteration or any other cause outside the scope of Purchaser’s warranty made hereunder. Notwithstanding the foregoing, Seller shall have the option to repair any defective Goods at Purchaser’s facility. The original warranty period for any Goods that have been repaired or replaced by seller will not thereby be extended. In addition, all sales will be subject to standard terms and conditions on the sales contract. InterReach Unison Accel Installation, Operation, and Reference ManualPN 9000-10 620021-0 Rev. A PN 9000-10InterReach Unison Accel Installation, Operation, and Reference Manuali 620021-0 Rev. A Table of Contents SECTION 1General Information . . . . . . . . . . . . . . . . . . . . . . 1-1 1.1 Purpose and Scope . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-2 1.2 Conventions in this Manual . . . . . . . . . . . . . . . . . . . . . . . . . . 1-4 1.3 Acronyms in this Manual . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-5 1.4 Standards Conformance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-7 1.5 Related Publications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-7 SECTION 2 InterReach Unison Accel System Description . 2-1 2.1 System Hardware Description . . . . . . . . . . . . . . . . . . . . . . . . 2-3 2.2 System OA&M Capabilities Overview . . . . . . . . . . . . . . . . . 2-4 2.2.1 System Monitoring and Reporting . . . . . . . . . . . . . . . . . . . . . 2-5 2.2.2 Using Alarm Contact Closures . . . . . . . . . . . . . . . . . . . . . . . . 2-5 2.3 System Connectivity. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-6 2.4 System Operation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-7 2.5 System Specifications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-8 2.5.1 Physical Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-8 2.5.2 Environmental Specifications . . . . . . . . . . . . . . . . . . . . . . . . . 2-8 2.5.3 Operating Frequencies. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2-9 2.5.4 RF End-to-End Performance. . . . . . . . . . . . . . . . . . . . . . . . . 2-10 SECTION 3Accel Hub . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-1 3.1 Accel Hub Front Panel . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-2 3.1.1 RJ-45 Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-3 3.1.2 Communications RS-232 Serial Connector . . . . . . . . . . . . . . 3-3 3.1.3 Hub LED Indicators . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 3.2 Accel Hub Rear Panel. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-6 3.2.1 Accel Hub Rear Panel Connectors . . . . . . . . . . . . . . . . . . . . . 3-7 3.3 Faults and Warnings . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-8 3.4 Accel Hub Specifications. . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-9 iiInterReach Unison Accel Installation, Operation, and Reference ManualPN 9000-10 620021-0 Rev. A SECTION 4Unison Remote Access Unit . . . . . . . . . . . . . . . 4-1 4.1 Remote Access Unit Connectors. . . . .…

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Users Manual

PN 9000-10Help Hot Line (U.S. only): 1-800-530-99605-31 620021-0 Rev. A Thermal NoiseThis is the noise level in the signal bandwidth (BW). Thermal noise power = –174 dBm/Hz + 10Log(BW). Required C/I ratioFor each wireless standard a certain C/I (carrier to interference) ratio is needed to obtain acceptable demodulation performance. For narrowband systems, (TDMA, GSM, EDGE, iDEN, AMPS) this level varies from about 9 dB to 20 dB. Mobile Transmit Power The maximum power the mobile can transmit (power transmitted at highest power level setting). Multipath Fade Margin This margin allows for a certain level of fading due to multipath interference. Inside buildings there is often one or more fairly strong signals and many weaker signals arriving from reflections and dif- fraction. Signals arriving from multiple paths add constructively or destructively. This margin accounts for the possibility of destructive multipath interference. In RF site surveys this margin will not appear because it will be averaged out over power level samples taken over many locations. Log-normal Fade Margin This margin adds an allowance for RF shadowing due to objects obstructing the direct path between the mobile equipment and the RAU. In RF site surveys, this shadowing will not appear because it will be averaged out over power level samples taken over many locations. Body LossThis accounts for RF attenuation caused by the user’s head and body. Minimum Received Signal Level This is also referred to as the “design goal”. The link budget says that you can achieve adequate cov- erage if the signal level is, on average, above this level over 95% of the area covered, for example. Table 5-30Link Budget Considerations for Narrowband Systems (continued) ConsiderationDescription Protocol Signal Bandwidth Thermal Noise TDMA30 kHz–129 dBm GSM200 kHz–121 dBm iDEN25 kHz–130 dBm 5-32InterReach Unison Accel Installation, Operation, and Reference ManualPN 9000-10 620021-0 Rev. A 5.4.2Narrowband Link Budget Analysis for a Microcell Application Narrowband Link Budget Analysis: Downlink • c = a + b • f = c + d + e • j = g + h + i • n = k + l + m • k: in this example, k represents the thermal noise for a TDMA signal, which has a bandwidth of 30 kHz •p = f – j – n LineDownlink Transmitter a.BTS transmit power per carrier (dBm)33 b.Attenuation between BTS and Unison (dB)–23 c.Power into Unison (dBm)10 d.Unison gain (dB)0 e.Antenna gain (dBi)3 f.Radiated power per carrier (dBm)13 Airlink g.Multipath fade margin (dB)6 h.Log-normal fade margin with 8 dB std. deviation, edge reliability 90% (dB) 11 i.Body loss (dB)3 j.Airlink losses (not including facility path loss)20 Receiver k.Thermal noise (dBm/30 kHz)–129 l.Mobile noise figure (dB)7 m.Required C/I ratio (dB)17 n.Minimum received signal (dBm)–105 p.Maximum path loss (dB)–98 PN 9000-10Help Hot Line (U.S. only): 1-800-530-99605-33 620021-0 Rev. A Narrowband Link Budget Analysis: Uplink • e: enter the noise figure and gain of each system component (a, b, c, and d) into the standard cascaded noise figure formula • i = f + e + g – h • m = j + k + l • p = n – m – i Therefore, the system is downlink limited but the downlink and uplink are almost balanced, which is a desirable condition. LineUplink Receiver a.BTS noise figure (dB)4 b.Attenuation between BTS and Unison (dB)–10 c.Unison gain (dB)0 d.Unison noise figure (dB) 1-4-3222 e.System noise figure (dB)22.6 f.Thermal noise (dBm/30 kHz)–129 g.Required C/I ratio (dB)12 h.Antenna gain (dBi)3 i.Receive sensitivity (dBm)–97.4 Airlink j.Multipath fade margin (dB)6 k.Log-normal fade margin with 8 dB std. deviation, edge reliability 90% (dB) 10 l.Body loss (dB)3 m.Airlink losses (not including facility path loss)19 Transmitter n.Mobile transmit power (dBm)28 p.Maximum path loss (dB)106.4 F sys = F 1 +++ .... F 2 – 1 G 1 F 3 – 1 G 1 G 2 where F = 10 (See Rappaport, Theodore S. Wireless Communications, Principles, and Practice. Prentice Hall PTR, 1996.) (Noise Figure/10) G = 10 (Gain/10) 5-34InterReach Unison Accel Installation, Operation, and Reference ManualPN 9000-10 620021-0 Rev. A 5.4.3Elements of a Link Budget for CDMA Standards A CDMA link budget is slightly more complicated because the spread spectrum nature of CDMA must be considered. Unlike narrowband standards such as TDMA and GSM, CDMA signals are spread over a relatively wide frequency band. Upon reception, the CDMA signal is de-spread. In the de-spreading process the power in the received signal becomes concentrated into a narrow band, whereas the noise level remains unchanged. Hence, the signal-to-noise ratio of the de-spread signal is higher than that of the CDMA signal before de-spreading. This increase is called processing gain. For IS-95 and J-STD-008, the processing gain is 21 dB or 19 dB depending on the user data rate (9.6 Kbps for rate set 1 and 14.4 Kbps for rate set 2, respectively). Because of the processing gain, a CDMA signal (comprising one Walsh code channel within the composite CDMA signal) can be received at a lower level than that required for narrowband signals. A reasonable level is –95 dBm, which results in about –85 dBm composite as shown below. An important issue to keep in mind is that the downlink CDMA signal is composed of many orthogonal channels: pilot, paging, sync, and traffic. The composite power level is the sum of the powers from the individual channels. An example is given in the following table. This table assumes that there are 15 active traffic channels operating with 50% voice activity (so that the total power adds up to 100%). Notice that the pilot and sync chan- nels together contribute about 25% of the power. When measuring the power in a CDMA signal you must be aware that if only the pilot and sync channels are active, the power level will be about 6 to 7 dB lower than the maximum power level you can expect when all voice channels are active. The implication is that if only the pilot and sync channels are active, and the maximum power per carrier …

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Cover Letter(s)

2540 Junction Ave. San Jose, California 95134-1902 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Request for Confidentiality In reference to the application under FCC ID: ( NOOUNS-IDEN-2), and pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission's Rules, the Applicant hereby requests confidential treatment of the accompanying information as outlined below: ALL of the following schematics accompanying this submission: RAU IDEN: D-710551-0-17 MH Board: D-710570-0-17 EH Board: D-710580-0-17 All Block Diagrams Tune Up Procedure: D-640120-0-10 Theory of Operation letter The above materials contain trade secrets and proprietary information not customarily released to the public. The public disclosure of these matters might be harmful to the Applicant and provide unjustified benefits to its competitors. The Applicant understands that pursuant to Rule 0.457(d)(1)(ii), disclosure of this Application and all accompanying documentation will not be made before the date of the Grant for this application. Regards, John Dorsey Regulatory Engineer LGC Wireless San Jose, Ca. Tel: 408-952-2431 Fax: 408-952-2631 Email: [email protected]

Cover Letter(s)

From: [email protected] Sent: Friday, March 14, 2003 3:32 PM To: [email protected] Subject: TNB Hi Diane: I am working with LGC Wireless to perform additional tests. There are total of four TCB grants were issued under the product category of AMP ( Amplifier ). Last week during FCC/TCB monthly teleconference calls, FCC has informed to all TCBs that in the past, for In-Building RF antenna distribution system can be classified under AMP ( amplifier ) but after future investigation by the Commission, all In-Building RF antenna distribution system shall be classified as TNB. Due to equipment classification changes, there are additional tests need to be performed. I anticipate all necessary tests will be finished by tomorrow. I will upload and change the grant line entry next Monday. Best Regards Mike Kuo To: Mike Kuo From: Diane Poole [email protected] FCC Equipment Authorization Branch Re: FCC ID: NOOUNS-IDEN-2 Applicant: LGC Wireless Inc Correspondence Reference Number: 7221 731 Confirmation Number: TC527997 Date of Original Email: 03/14/2003 Subject: TNB 1) Originally this application was for an AMP equipment class. It has been changed on 2/2803 to TNB. However the application is incomplete for a TNB. For example, the line items are incorrect. The emission designator and frequency tolerance is missing. There are two line items, one for uplink and one for downlink. I assume that this application is for the RAU downlink frequencies (correct me if I am wrong). Since this application is being modified from an AMP to a RAU TNB, I suggest submitting a cover letter explaining the application and what exhibits are applicable. I would also like all inapplicable exhibits superceded. Please review what is necessary and advise me on your course of action. The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information within 30 days of the original e-mail date may result in application dismissal pursuant to Section 2.917(c). DO NOT Reply to this email by using the Reply button. In order for your response to be processed expeditiously, you must upload your response via the Internet at www.fcc.gov, E-Filing, OET TCB Electronic Filing, TCB Login. If the response is submitted through Add Attachments, a message which informs the processing staff that a new exhibit has been submitted must also be submitted via Submit Correspondence. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the e-mail address listed below the name of the sender.

External Photos

FRONT OF IDEN RAU PORT SIDE OF IDEN RAU TOP OF IDEN RAU

ID Label/Location Info

PROPOSED FCC ID LABEL AND LOCATION LGC WIRELESS, INC. This device complies with Part 90 of the FCC Rules. FCC ID: NOOUNS-IDEN-2

Internal Photos

InterReach Unison Accel IDEN Internal Photos INSIDE RAU (WITH SHIELDS) InterReach Unison Accel IDEN Internal Photos INSIDE RAU (WITHOUT SHIELDS)

Test Report

FCC CFR47 CERTIFICATION TEST REPORT PART 90 FOR 800MHz IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM MODEL: InterReach Unison Accel FCC ID: NOOUNS-IDEN-2 REPORT NUMBER: 02U1586-2 ISSUE DATE: DECEMBER 02, 2002 Prepared for LGC WIRELESS INC. 2540 JUNCTION AVENUE SAN JOSE, CA 95134 Prepared by COMPLIANCE CERTIFICATION SERVICES 561F MONTEREY ROAD, ROUTE 2 MORGAN HILL, CA 95037, USA TEL: (408) 463-0885 FAX: (408) 463-0888 REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 2 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. TABLE OF CONTENT 1. TEST RESULT CERTIFICATION..........................................................................................3 2. EUT DESCRIPTION...............................................................................................................4 3. TEST METHODOLOGY.........................................................................................................4 4. TEST FACILITY.....................................................................................................................5 5. ACCREDITATION AND LISTING.........................................................................................5 6. MEASURING INSTRUMENT CALIBRATION......................................................................5 7. APPLICABLE RULES AND BRIEF TEST RESULT..............................................................6 8. TEST SETUP, PROCEDURE AND RESULT..........................................................................8 8.1. SECTION 2.1046: RF POWER OUTPUT.............................................................................8 8.2. SECTION 2.1047: MODULATION CHARACTERISTICS.................................................10 8.3. SECTION 2.1049: OCCUPIED BANDWIDTH...................................................................10 8.4. SECTION 2.1051: SPURIOUS EMISSION AT ANTENNA TERMINAL............................11 8.5. SECTION 2.1053: FIELD STRENGTH OF SPURIOUS RADIATION................................12 8.6. MEASUREMENT RESULT PLOTS..................................................................................17 9. ATTACHMENT.....................................................................................................................19 9.1. EUT SETUP PHOTOS......................................................................................................19 9.2. EUT PHOTOGRAPHS......................................................................................................22 REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 3 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. 1. TEST RESULT CERTIFICATION COMPANY NAME: LGC WIRELESS INC. 2540 JUNCTION AVENUE SAN JOSE, CA 95134-1902 EUT DESCRIPTION: 800MHZ iDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM MODEM NAME: INTERREACH UNISON ACCEL DATE TESTED: DECEMBER 02, 2002 TYPE OF EQUIPMENT INTENTIONAL RADIATOR EQUIPMENT TYPE 851 – 869MHz (Downlink) 806 – 824MHz (Uplink) MEASUREMENT PROCEDURE ANSI 63.4 / 2001EIA 603 PROCEDURE CERTIFICATION FCC RULE CFR 47 PART 90 Compliance Certification Services, Inc. tested the above equipment for compliance with the requirement set forth in CFR 47, PART 90. The equipment in the configuration described in this report, shows the measured emission levels emanating from the equipment do not exceed the specified limit. Note : This document reports conditions under which testing was conducted and results of tests performed. This document may not be altered or revised in any way unless done so by Compliance Certification Services and all revisions are duly noted in the revisions section. Any alteration of this document not carried out by Compliance Certification Services will constitute fraud and shall nullify the document. Test By: Released For CCS By: VIEN TRAN THU CHAN EMC ENGINEER EMC SUPERVISOR COMPLIANCE CERTIFICATION SERVICES COMPLIANCE CERTIFICATION SERVICES REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 4 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. 2. EUT DESCRIPTION This product is designed for in-building venues (including multi-tenant office buildings, enterprise campuses, transportation hubs such as airports and subway stations, shopping malls and convention centers) to improve IDEN signal strength and availability by extending the coverage of either a macro cell site or dedicated base station. The RF signal is fed into the system from either an outdoor cell site or dedicated base station, converted from RF to optical to electrical signals through the system, and ultimately converted back to RF and transmitted by the antenna unit. Conversely, RF signals from mobile handsets are converted by the system to electrical and then to optical signals, and ultimately back to RF and returned to the macro cell sit…

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Test Report

800MHz iDEN- DOWNLINK Plot # 1 Plot # 2 Plot # 3 Plot # 4 Plot # 5 Plot # 6 Plot # 7 Plot # 8 Plot # 9 Plot # 10 Plot # 11 Plot # 12 Plot # 13 Plot # 14 Plot # 15 Plot # 16 Plot # 17 Plot # 18 Plot # 19 Plot # 20 Plot # 21 Plot # 22 Plot # 23 Plot # 24 Plot # 25

Test Report

800MHz iDEN- UPLINK Plot # 1 Plot # 2 Plot # 3 Plot # 4 Plot # 5 Plot # 6 Plot # 7 Plot # 8 Plot # 9 Plot # 10 Plot # 11 Plot # 12 Plot # 13 Plot # 14 Plot # 15 Plot # 16 Plot # 17 Plot # 18 Plot # 19 Plot # 20 Plot # 21 Plot # 22 Plot # 23 Plot # 24 Plot # 25

Test Report

1. 99% BANDWIDTH TEST SETUP TEST PROCEDURE The transmitter output is connected to the spectrum analyzer. The RBW is set to 1% to 3% of the 99% bandwidth. The VBW is set to 3 times the RBW. The sweep time is coupled. RESULTS No non-compliance noted: 800MHz iDEN Modulation Frequency (MHz) 99% BW (KHz) iDEN 860 23.63 EUT Spectrum Analyzer EMISSION BANDWIDTH PLOTS: IDEN 800MHz: 2. FREQUENCY STABILITY INSTRUMENTS LIST EQUIPMENT MANUFACTURE MODEL NO. CAL. DUE DATE EMI Receiver HP 8593EM 6/11/03 Environmental Chamber Thermotron SE 600-10-10 4/26/03 Detector Function Setting of Test Receiver Frequency Range (MHz) Detector Function Resolution Bandwidth Video Bandwidth Above 1000 Peak 300 Hz 300 Hz TEST SETUP Chamber SIG source Spectrum Analyzer EUT TEST PROCEDURE • Frequency stability versus environmental temperature 1). Setup the configuration per figure 6 for frequencies measurement inside the environmental chamber. Set the temperature of the chamber to 25°C. Set SA Resolution Bandwidth low enough to obtain the desired frequency resolution and measure the EUT 25°C operating frequency as reference frequency. 2). Turn EUT off and set Chamber temperature to -30°C. 3). Allow sufficient time (approximately 20 to 30 minus after chamber reach the assigned temperature) for EUT to stabilize. Turn on EUT and measure the EUT operating frequency. Turn off EUT after the measurement. 4). Repeat step 3 with a 10°C increased per stage until the highest temperature of +50°C reached, record all measured frequencies on each temperature step. • Frequency stability versus AC input voltage 1). Setup the configuration below and set chamber temperature to 25°C. Use a variable AC power supply to power the EUT and set AC output voltage to EUT nominal input AC voltage. Set SA Resolution Bandwidth low enough to obtain the desired frequency resolution and measure the EUT 25°C operating frequency as reference frequency. 2). Slowly reduce the EUT input voltage to specified extreme voltage variation (±15%) and record the maximum frequency change. RESULT

Test Setup Photos

REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 19 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. 9. ATTACHMENT 9.1. EUT SETUP PHOTOS CONDUCTED MEASUREMENT REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 20 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. FUNDAMENTAL MEASUREMENT HARMONIC & SPURIOUS MEASUREMENTS REPORT NO: 02U1586-2 DATE: DEC 02, 2002 FCC ID: NOOUNS-IDEN-2 EUT: 800MHZ IDEN IN-BUILDING DISTRIBUTED ANTENNA SYSTEM Page 21 of 22 COMPLIANCE CERTIFICATION SERVICES DOCUMENT NO: CCSUP4031A 561F MONTEREY ROAD, MORGAN HILL, CA 95037 USA TEL: (408) 463-0885 FAX: (408) 463-0888 This report shall not be reproduced except in full, without the written approval of CCS. This document may be altered or revised by Compliance Certification Services personnel only, and shall be noted in the revision section of the document. SUBSTITUTION MEASUREMENTS

Contact Information

Applicant

Joshua Wittman(Compliance Engineer)
[email protected]952-403-8322Fax: 952-403-8858

Test Firm

Compliance Certification Services IncSteve Cheng
[email protected]408-463-0885Fax: 408-463-0888

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
190851 MHz - 869 MHz27.00 mW24K0GXW2.5000000000 ppm
Confidentiality
Long Term
Grant Notes
Output is specified at the antenna teminals on the Remote Access Unit (RAU). The gain is controlled by the Accel Hub. One Accel Hub can connect max. of 8 RAUs. 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 Requirements of �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 requirements of �1.1307(b)(3).

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InterReach Fusion� 700 MHz (Lower ABC), AWSMIMO HP

Jan 23, 2013

Equipment Class

TNB - Licensed Non-Broadcast Station Transmitter