
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
D-620605-0-20 Rev A Installation, Operation, and Reference Manual InterReach Fusion TM SingleStar ® D-620605-0-20Help Hot Line (U.S. only): 1-800-530-9960 Rev ACONFIDENTIAL D-620605-0-20Help Hot Line (U.S. only): 1-800-530-9960 Rev ACONFIDENTIAL 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 © 2006 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. InterReach Fusion SingleStar Installation, Operation, and Reference Manual CONFIDENTIALD-620605-0-20 Rev D 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. Licensed Operators LGC Wireless’ equipment is designed to operate in the licensed frequency bands of mobile, cellular, and PCS operators. In the USA, the EU, and most countries this equipment may only be used by the licensee, his authorized agents or those with written authorization to do so. Similarly, unauthorized use is illegal, and subjects the owner to the corresponding legal sanctions of the national jurisdiction involved. Ownership of LGC Wireless equipment carries no automatic right of use. InterReach Fusion SingleStar Installation, Operation, and Reference Manuali D-620605-0-20 Rev ACONFIDENTIAL Table of Contents SECTION 1General Information . . . . . . . . . . . . . . . . . . . . . . 1-1 1.1 Firmware Release. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-2 1.2 Purpose and Scope . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-2 1.3 Conventions in this Manual . . . . . . . . . . . . . . . . . . . . . . . . . . 1-3 1.4 Standards Conformance . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-4 1.5 Related Publications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1-4 SECTION 2 InterReach Fusion SingleStar 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 RF End-to-End Performance. . . . . . . . . . . . . . . . . . . . . . . . . . 2-9 SECTION 3Fusion SingleStar Hub . . . . . . . . . . . . . . . . . . . . 3-1 3.1 Fusion SingleStar Hub Front Panel . . . . . . . . . . . . . . . . . . . . 3-3 3.1.1 F Connectors . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 3.1.2 Communications RS-232 Serial Connector . . . . . . . . . . . . . . 3-4 3.1.3 Hub LED Indicators . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 3-4 3.2 Fusion SingleStar Hub Rear Panel. . . . . . . . . . . . . . . . . . . . . 3-7 3.2.1 Fusion SingleStar Hub Rear Panel Connectors. . . . . . . . . . . . 3-8 3.3 Faults, Warnings, and Status Messages . . . . . . . . . . . . . . . . . 3-9 3.3.1 Description . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .…
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To: Marie Confroy From: Tim Harrington [email protected] FCC Equipment Authorization Branch Re: FCC ID: NOOFSN-8519-1 Applicant: LGC Wireless Inc Correspondence Reference Number: 36139 731 Confirmation Number: TC625781 Date of Original Email: 02/14/2007 Subject: audit cont. Filing still does not appear to be in accordance with FCC Lab kdb935210 amp / booster / repeater filing guidance. TCB please thoroughly review that document. (http://fccweb01w.fcc.gov/prod/oet/cf/kdb/forms/FTSSearchResultPage.cfm?id=20673& switch=P) (http://fccweb01w.fcc.gov/prod/oet/forms/blobs/IDBretrieve.cgi?attachment_id=20762) [2.962(c)(4), 2.962(f)(1), 2.962(f)(5)(i)] 1) Grant appears to show no rule part for 1930-1990 - please explain and/or revise Response: Grant Revised. 2) Please note kdb935210 discussion about freq. tol AMP - please explain present grant listing or revise. Response: Revised to Repeater 3) If eqpt has pt24, PCB not TNB is used Response: Grant revised to PCB for Part 22 and Part 24 4) Form 731 description indicates filing is for remote unit - typically this means FCC ID applies only for actual remote-unit system component, whereas separate eqpt. auth. applies for other boxes in system. Please note the system testing, reporting, and grant listing requirements of kdb935210. In reply here please explicitly list and describe other components comprising system, using terms and descriptions as in kdb935210, and describe eqpt. auth. status for each. Response: For the original grant the system that was used in testing comprised of. The system is a distributed antenna system for in-building wireless coverage. A system is made up of: InterReach Fusion remote unit: FSN-8519-1 InterReach Fusion SingleStar hub: FSN-1-SS-1 The FSN-1-SS-1 (hub) takes the downlink RF signal from a base station or BDA and converts the signal to IF. This IF signal is sent over coax cable (up to 300 meters) to the FSN-8519-1 (remote), which is then converted back to RF signal. The remote outputs the RF signal over coax to a remote antenna for transmission. The output of the remote is the same frequency as the downlink frequency received by the hub. Also the hub can provide a gain on the downlink signal. The uplink direction is reverse. The FSN-8519-1 (remote) takes the uplink RF signal from the remote antenna and converts the signal to IF. This IF signal is sent over coax to the FSN-1-SS-1 (hub), which is then converted back to RF. This RF signal is sent back over coax to the base station or BDA. Up to 8 FSN-8519-1 remotes can be connected to the FSN-1-SS-1. Note, I believe we made a change to the grant a few months later to also list the other hub configuration that can be used with this remote as a system. This new hub configuration was actually now made up of two separate boxes separated by fiber optic link. With this system up to 32 FSN-8519-1 remotes can be connected to the FSN-1-MH-1/FSN-EH-1 hub set. Please let us know if you need additional information. Regards, Jennifer Sanchez TCB Administrator
PRODUCT COMPLIANCE LABEL MODEL LABEL
PRODUCT COMPLIANCE LABEL
Document Title:Dual Band RAU Preliminary Specifications REV Page 4 12 of 37 Filename: !DBR Design spec Rev 5 When printed or copied, document is for REFERENCE ONLY as of, 03/29/06 LGC Wireless Confidential 6.5 Downlink Setup Procedure 6.5.1 Downlink Gain Allocation A wide operating range is required for downlink gain in the RAU. A large amount of range is required for accommodating the specified range of cable losses. Significant margin is also allocated at each end of the gain range to accommodate errors in the ATE setup and cable model. Additionally, the user can adjust the gain in the system on a per-RAU basis. The figure below illustrates the gain allocations in the RAU, and maps the allocations to the absolute operating gain range. This range must be met for all RAU conditions, including over temperature. 27 dB 12 dB Nominal Gain 6 dB 6 dB 6 dB 12 dB (no cable) 39 dB (max cable) 45 dB AGC Margin (high side) AGC Margin (low side) Cable Compensation RAU Absolute Gain Gain Allocation 1 dB 46 dB User Gain User Gain -4 dB 10 dB Document Title:Dual Band RAU Preliminary Specifications REV Page 4 13 of 37 Filename: !DBR Design spec Rev 5 When printed or copied, document is for REFERENCE ONLY as of, 03/29/06 LGC Wireless Confidential Table 1: Downlink Gain Setup Parameters Parameter Units MinimumTypical Maximum DL ref signal, into coax cable (system test tone) dBm -17.5 -17 -16.5 Gain of band 1 (for system gain of 0dB, includes coax cable loss) dB 11.5 12 12.5 Gain of band 2 referenced to band 1 dB -0.5 0 +0.5 Band 1 DL system test output level dBm -5.5 -5 -4.5 Band 2 DL system test output level dBm -5.5 -5 -4.5 Maximum frequency step size for swept measurements MHz TBD Note: The downlink pilot level is specified in the Dualband Hub spec. 6.5.2 Downlink AGC setup 6.5.2.1 Overview Downlink gain in the DBR is set based on the received downlink pilot level. Since the pilot and IF signal are not at the same frequency, they experience different amounts of loss across the cable. A pilot table is used to relate the pilot loss for a particular cable length to the corresponding IF signal loss. ATE is responsible for generating the pilot table. After it is computed, the pilot table is stored in non-volatile memory on the DBR where it can be recalled at runtime. The AGC attenuator compensates for the loss due to various cable lengths for the high-band (ie, band 2) path. The band-specific IF attenuators compensate primarily for unit-to-unit gain variations, as well as for part of the low-band (ie, band 1) cable loss. The variable slope circuits in the IF sections are used to accommodate (1) slope incurred by the coaxial cable loss, and (2) unit-to-unit slope variations introduced by filters in the RF and IF paths. As described in section 4.2.1, the downlink path of the DBR is comprised of two main sections for gain control: the AGC portion and the IF/RF portion. The AGC section is common to both frequency bands whereas the IF/RF portions are unique to each band. 6.5.2.2 General Concepts This section outlines a general overview of the downlink gain setup procedure. Details are reserved for the section that follows. Downlink gain is set for the DBR using the two general steps outlined below. I. Characterize slope circuit responses. The responses of the two slope circuits are determined by creating tables that equate the slope circuit setting (ie, voltage) to the measured slope. Each slope table is created for a small number Document Title:Dual Band RAU Preliminary Specifications REV Page 4 14 of 37 Filename: !DBR Design spec Rev 5 When printed or copied, document is for REFERENCE ONLY as of, 03/29/06 LGC Wireless Confidential of points using pre-set voltages. After the table has been created, an arbitrary slope can be set by interpolating the circuit voltage from the measured slope data points. Slope measurements are made through each signal path of the unit. A signal is injected at the downlink input and is swept across the downlink band. The output signal is recorded by measuring the response at the output of the antenna port. The slope of the sweep is then computed and stored in the table for the corresponding voltage (see Figure 3a). 0 dB M o d e l e d C a b l e R e s p o n s e X dB Cascade Response Center-of-Band to Avg gain offset Center-of-band offset due to cable model (b) Calculated cable response to negate slope of sweep (c) Sum of sweep and cable response B e s t F i t S l o p e X dB Slope (a) Swept response with calculated slope D B R S w e e p R e s p o n s e (Offset CR) (Offset CoB) Figure 3: Slope Table Generation. A second parameter is also stored in the table for each slope offset. This parameter is the gain offset. It relates the center-of-band gain to the average gain (across the band) for each slope Document Title:Dual Band RAU Preliminary Specifications REV Page 4 15 of 37 Filename: !DBR Design spec Rev 5 When printed or copied, document is for REFERENCE ONLY as of, 03/29/06 LGC Wireless Confidential offset. This value allows the DBR gain for each pilot table entry to be determined by measuring at only a single frequency, rather than sweeping the entire band. Before this parameter is measured, the sweep response is “leveled” to zero slope by adding the modeled cable response that corresponds to the calculated slope. The center-of-band to average gain is measured on the resulting sweep. Refer to Figure 3 for a pictorial representation of the process. Separate slope tables must be created for long and short cable mode and for each band (for a total of four tables). An example AGC slope circuit response is shown in the plot and table below. Slope Circuit Response 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 0.01.02.03.04.05.0 Voltage (V) Slope (dB) Voltage (V) Slope (dB) Gain Offset (dB) 0.24.40.0 1.12.9-0.3 1.92.1-0.4 2.91.5-0.3 4.01.00.0 4.90.70.1 Slope Circuit Response 0.0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 0.01.02.03.04.05.0 Voltage (V) Slope (dB) Voltage (V) Slope (dB) Gain Offs…
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§ 24.52 RF Exposure RF Exposure Requirements: §24.52. Licensees and manufacturers are subject to the radiofrequency radiation exposure requirements specified in Sec. 1.1307(b), Sec. 2.1091 and Sec. 2.1093 of this chapter, as appropriate. Applications for equipment authorization of mobile or portable devices operating under this section must contain a statement confirming compliance with these requirements for both fundamental emissions and unwanted emissions. Technical information showing the basis for this statement must be submitted to the Commission upon request. RF Radiation Exposure Limit: §1.1310: As specified in this section, the Maximum Permissible Exposure (MPE) Limit shall be used to evaluate the environmental impact of human exposure to radiofrequency (RF) radiation as specified in Sec. 1.1307(b), except in the case of portable devices which shall be evaluated according to the provisions of Sec. 2.1093 of this chapter. MPE Limit Calculation: EUT’s operating frequencies @ 869 - 894 MHz ; highest conducted power = 25.0dBm therefore, Limit for Uncontrolled exposure: 0.596 mW/cm 2 or 10 W/m 2 EUT maximum EIRP per users manual = 34dBm (2500mW) Equation from page 18 of OET 65, Edition 97-01 S = PG / 4πR 2 or R = √PG / 4πS where, S = Power Density (1 mW/cm 2 ) PG = 2500 R = √(2500/ 4*3.14*0.596) = √ (2500/7.49) = 18.2 cm MPE Limit Calculation: EUT’s operating frequencies @ 1930-1990 MHz ; highest conducted power = 25.4dBm therefore, Limit for Uncontrolled exposure: 1 mW/cm 2 or 10 W/m 2 EUT maximum EIRP per users manual = 34dBm (2500mW) Equation from page 18 of OET 65, Edition 97-01 S = PG / 4πR 2 or R = √PG / 4πS where, S = Power Density (1 mW/cm 2 ) PG = 2500 R = √(2500/ 4*3.14*1) = √ (2500/12.56) = 14.0cm
MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 33439 WESTERN AVENUE ! UNION CITY, CALIFORNIA 94587 ! PHONE (510) 489-6300 ! FAX (510) 489-6372 The Nation’s First Licensed Nationally Recognized Testing Laboratory March 13, 2006 LGC Wireless, Inc. 2540 Junction Avenue San Jose, CA 95134 Dear Tom Macall, Enclosed is the EMC test report for compliance testing of the LGC Wireless, Inc., FSN-8519-1 Remote Unit as tested to the requirements of the FCC Certification rules under Title 47 of the CFR Part 24 Subpart E for Broadband PCS Devices. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please contact me. Sincerely yours, MET LABORATORIES, INC. Boonmanus Seelapasay Documentation Department Reference: (\LGC Wireless, Inc.\EMCS19269-FCC24E) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. While use of the National Voluntary Laboratory Accreditation Program (NVLAP) letters or the NVLAP Logo, the Standards Council of Canada Logo, or the Nationally Recognized Testing Laboratory (NRTL) Letters in this report reflects MET Accreditation under these programs, these letters, logo, or statements do not claim product endorsement by NVLAP or any Agency of the U.S. Government. This letter of transmittal is not a part of the attached report. LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 24 Subpart E MET Report: EMCS19269-FCC24E © 2006, MET Laboratories, Inc. Page i of vi Electromagnetic Compatibility Criteria Test Report for the LGC Wireless, Inc. InterReach Fusion Remote Unit (FSN-8519-1) Verified under FCC Certification Rules Title 47 of the CFR, Part 24 Subpart E for Broadband PCS Devices MET Report: EMCS19269-FCC24E March 13, 2006 Prepared For: LGC Wireless, Inc. 2540 Junction Avenue San Jose, CA 95134 Prepared By: MET Laboratories, Inc. 4855 Patrick Henry Dr., Building 6 Santa Clara, CA 95054 LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 24 Subpart E MET Report: EMCS19269-FCC24E © 2006, MET Laboratories, Inc. Page ii of vi Electromagnetic Compatibility Criteria Test Report for the LGC Wireless, Inc. InterReach Fusion Remote Unit (FSN-8519-1) Tested Under FCC Certification Rules Title 47 of the CFR, Part 24 Subpart E for Broadband PCS Devices Shawn McMillen, Project Engineer Boonmanus Seelapasay Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and 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, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of Part 24 Subpart E and Part 15 Subpart B of the FCC Rules under normal use and maintenance. Tony Permsombut, Manager Electromagnetic Compatibility Lab LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 24 Subpart E MET Report: EMCS19269-FCC24E © 2006, MET Laboratories, Inc. Page iii of vi Report Status Sheet Revision Report Date Reason for Revision ∅ March 13, 2006 Initial Issue. LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 24 Subpart E MET Report: EMCS19269-FCC24E © 2006, MET Laboratories, Inc. Page iv of vi Table of Contents I. Executive Summary .................................................................................................................................................1 A. Purpose of Test ...................................................................................................................................................2 B. Executive Summary ............................................................................................................................................2 II. Equipment Configuration .......................................................................................................................................3 A. Overview.............................................................................................................................................................4 B. References...........................................................................................................................................................5 C. Test Site ..............................................................................................................................................................5 D. Description of Test Sample.................................................................................................................................6 E. Description of Test Sample.................................................................................................................................9 F. Support Equipment .............................................................................................................................................9 G. Ports and Cabling Information ..........................................................................................................................10 H. Mode of Operation............................................................................................................................................11 I. Method of Monitoring EUT Operation .............................................................................................................11 J. Modifications ....................................................................................................................................................11 Modifications to EUT .............................................................................................................…
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MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 33439 WESTERN AVENUE ! UNION CITY, CALIFORNIA 94587 ! PHONE (510) 489-6300 ! FAX (510) 489-6372 The Nation’s First Licensed Nationally Recognized Testing Laboratory March 13, 2006 LGC Wireless, Inc. 2540 Junction Avenue San Jose, CA 95134 Dear Tom Macall, Enclosed is the EMC test report for compliance testing of the LGC Wireless, Inc. , FSN-8519-1 Remote Unit as tested to the requirements of the FCC Certification rules under Title 47 of the CFR Part 22 Subpart H for Cellular Devices. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please contact me. Sincerely yours, MET LABORATORIES, INC. Boonmanus Seelapasay Documentation Department Reference: (\LGC Wireless, Inc. \EMCS19269-FCC22H) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. While use of the National Voluntary Laboratory Accreditation Program (NVLAP) letters or the NVLAP Logo, the Standards Council of Canada Logo, or the Nationally Recognized Testing Laboratory (NRTL) Letters in this report reflects MET Accreditation under these programs, these letters, logo, or statements do not claim product endorsement by NVLAP or any Agency of the U.S. Government. This letter of transmittal is not a part of the attached report. LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 22 Subpart H MET Report: EMCS19269-FCC22H © 2006, MET Laboratories, Inc. Page i of vi Electromagnetic Compatibility Criteria Test Report for the LGC Wireless, Inc. InterReach Fusion Remote Unit (FSN-8519-1) Verified under FCC Certification Rules Title 47 of the CFR, Part 22 Subpart H for Cellular Devices MET Report: EMCS19269-FCC22H March 13, 2006 Prepared For: LGC Wireless, Inc. 2540 Junction Avenue San Jose, CA 95134 Prepared By: MET Laboratories, Inc. 4855 Patrick Henry Dr., Building 6 Santa Clara, CA 95054 LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 22 Subpart H MET Report: EMCS19269-FCC22H © 2006, MET Laboratories, Inc. Page ii of vi Electromagnetic Compatibility Criteria Test Report for the LGC Wireless, Inc. InterReach Fusion Remote Unit (FSN-8519-1) Tested Under FCC Certification Rules Title 47 of the CFR, Part 22 Subpart H for Cellular Devices Shawn McMillen, Project Engineer Boonmanus Seelapasay Electromagnetic Compatibility Lab Documentation Department Engineering Statement: The measurements shown in this report were made in accordance with the procedures indicated, and 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, and for the qualifications of all persons taking them. It is further stated that upon the basis of the measurements made, the equipment tested is capable of operation in accordance with the requirements of Part 22 Subpart H and Part 15 Subpart B of the FCC Rules under normal use and maintenance. Tony Permsombut, Manager Electromagnetic Compatibility Lab LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 22 Subpart H MET Report: EMCS19269-FCC22H © 2006, MET Laboratories, Inc. Page iii of vi Report Status Sheet Revision Report Date Reason for Revision ∅ March 13, 2006 Initial Issue. LGC Wireless, Inc. FSN-8519-1 Remote Unit CFR Title 47 Part 22 Subpart H MET Report: EMCS19269-FCC22H © 2006, MET Laboratories, Inc. Page iv of vi Table of Contents I. Executive Summary .................................................................................................................................................1 A. Purpose of Test ...................................................................................................................................................2 B. Executive Summary ............................................................................................................................................2 II. Equipment Configuration .......................................................................................................................................3 A. Overview.............................................................................................................................................................4 B. References...........................................................................................................................................................5 C. Test Site ..............................................................................................................................................................5 D. Description of Test Sample.................................................................................................................................6 E. Equipment Configuration....................................................................................................................................9 F. Support Equipment .............................................................................................................................................9 G. Ports and Cabling Information ..........................................................................................................................10 H. Mode of Operation............................................................................................................................................11 I. Method of Monitoring EUT Operation .............................................................................................................11 J. Modifications ....................................................................................................................................................11 Modifications to EUT ..........................................................................................................................…
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MET Laboratories, Inc. Safety Certification - EMI - Telecom Environmental Simulation 33439 WESTERN AVENUE ! UNION CITY, CALIFORNIA 94587 ! PHONE (510) 489-6300 ! FAX (510) 489-6372 The Nation’s First Licensed Nationally Recognized Testing Laboratory September 5, 2006 LGC Wireless 2540 Junction Avenue San Jose, CA 95134 Dear Tom Macall, Enclosed is the EMC test report for compliance testing of the LGC Wireless, InterReach Fusion FSN-1-MH-1 Main Hub, FSN-EH-1 Expansion Hub, FSN-8519-1 Remote Unit as tested to the requirements of the FCC Class II Permissive Change Certification rules under Title 47 of the CFR Part 22 Subpart H for Cellular Devices and Part 24 Subpart E for Broadband PCS Devices. Thank you for using the services of MET Laboratories, Inc. If you have any questions regarding these results or if MET can be of further service to you, please contact me. Sincerely yours, MET LABORATORIES, INC. Jennifer Sanchez Documentation Department Reference: (\EMCS20646-FCC22H24E) Certificates and reports shall not be reproduced except in full, without the written permission of MET Laboratories, Inc. While use of the National Voluntary Laboratory Accreditation Pro…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 6 | 24E | 1.93 GHz - 1.99 GHz | 240.00 mW | GXW | 0.3 ppm |

FSN-2525-1-TDD
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
SPT-S3-2323-12-HP
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
InterReach Spectrum Remote Access Unit
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
InterReach Fusion 700 MHz (Upper C) LTE, 850 MHz and high power 1900 MHz Multi-Band
Equipment Class
PCB - PCS Licensed Transmitter
InterReach Fusion� 700 MHz (Lower ABC), AWSMIMO HP
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter