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F8I-FWM1901AFlexWave� microBTS

ADC Telecommunications Inc
FlexWave� microBTS - FCC ID F8I-FWM1901A - ADC Telecommunications Inc
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Jun 09, 2007
Application Purpose
Original Equipment
Date of Application
Jun 07, 2007
Equipment Note
FlexWave� microBTS
Frequency Range
1930.20000000 - 1989.80000000
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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Document Text

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

Users Manual

© ip.access Ltd Page 1 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc 1.1 Introduction 1.1.1 Purpose and Scope This documents the procedure used to install the nanoBTS hardware and physical connections together with applying the base software configuration. 1.1.2 Related Documents Reference Number Document Title Description 1 CENG0133 Customer Safety and Regulatory Information 2 CENG0220 Operations Procedure 1.2 Warnings This document must be translated into your local language, if English is not commonplace. This system is designed to be operated indoors as a fixed system device and must be located either on or near the ceiling away from the user. It must be mounted in a manner to ensure that all users and bystanders and users are kept a minimum of 20cm away from antennas at all times. Do not touch or move the antenna(s) while the unit is transmitting or receiving. Do not hold any component containing a radio such that the antenna is very close to or touching any exposed parts of the body, especially the face or eyes while transmitting. In most parts of the world, regulatory approval(s) are needed before the nanoBTS is operated. Do not connect any device other than the nanoBTS to any RJ45 socket that has been enabled for nanoBTS connection (i.e. 48Vdc operation). © ip.access Ltd Page 2 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc The nanoBTS is intended for dry indoor applications only. If evidence of condensation is present do not apply power to the nanoBTS. The cabling to the nanoBTS and power supply is to run indoors only. The nanoBTS must only be powered using a PSU supplied by ip.access; the approved part is APC model PSU109 with UL file number E231617. PSUs supplied by ip.access must not be used for powering any other equipment. The external antenna ports are not covered by this products UL approval. 1.3 Regulatory Information For all regulatory information please see CENG0133 Ref{1}. 1.4 Unpacking Unpack nanoBTS and check to see that the unit has not been damaged in transit. Any damaged units should be returned to your supplier. Figure 1 - Unpacking the nanoBTS © ip.access Ltd Page 3 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc 1.5 Fitting the External Antenna Kit (optional) NOTE: When looking at the nanoBTS with the connections facing down and the LED visible the antenna on the left is the Transmit antenna and the antenna on the right hand side is the Receive antenna. NOTE: The RF feeder cable must not be bent as this may result in a degraded performance. Remove the plastic covers by removing the top and bottom plates from both ends of the nanoBTS. Lever gently apart with screwdriver in notch. Antenna Cover Top Antenna Cover Bottom Notch to aid removal of cover Antenna Cover Body Figure 2 - Removal of antenna covers Remove the antenna cover body, by unscrewing the two Torx T20 screws retaining Remove Torx Screws Figure 3 - Removal of antenna cover body © ip.access Ltd Page 4 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc Fit the replacement antenna cover body ensuring that the feeder cable connector fits into the antenna. Note that one cover only fits the receiver whilst the other fits the transmitter. Fit the clamp as shown below and second Torx screw, then replace top and bottom covers. Clamp plate Figure 4 - Fit clamp plate Repeat the process for the other end of nanoBTS © ip.access Ltd Page 5 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc 1.6 IP Configuration ∑ Connect the nanoBTS up as shown in Figure 5 nanoBTS Connections and power on the nanoBTS Figure 5 - Local BTS Connection ∑ Start the BTSInstaller application ∑ If the IP address of you PC is not shown the IP Address window (see Figure 6) Figure 6 - BTSInstaller Interface ∑ Click on the “Configure” button and select the network interface, then IP address that is being used to connect to the nanoBTS then click on the “OK” button. ∑ In the DHCP pane, click on the “Pool“ button and then the “Add” button ∑ Enter the IP address for the nanoBTS and click on the “OK” button. ∑ In the DHCP pane, click on the “Stop” and then “Start” button, to make the DHCP server take the new IP address pool. ∑ Under the BTS Status pane, click on the “New” button ∑ From the “BTS tab”, enter the MAC address of the nanoBTS (see label on the side of the nanoBTS ∑ From the “DHCP tab”, Enable the “DHCP Configuration” tick box and enter the Subnet Mask and Router address. If no router is used leave the router address as 0.0.0.0 ∑ From the “Unit ID” tab, Enable the “Configure Unit ID” tick box and enter the Site ID. If the nanoBTS is part of a multi-TRX site also enter the TRX ID. ∑ From the ”NV Attr (1)” tab, enable the “NV Attr Configuration” tick box and select the “Configure Flags” tick box and set “F1”, “F2” and ”F3” to the “ON” state. © ip.access Ltd Page 6 of 12 COMPANY CONFIDENTIAL CENG0210_XB Hardware Installation - nanoBTS.doc ∑ From the “NV Attr (2)” tab, enable the “Configure Primary OML” tick box and set the “Primary OML IP Address” to the IP address of the BSC. ∑ From the “NV Attr (2)” tab, enable the “Configure Location” tick box and enter a text string for the nanoBTS location. ∑ From the “NV Attr (2)” tab, enable the “Configure Unit Name” tick box and enter a text string for the nanoBTS name. ∑ If new software is required to be downloaded to the nanoBTS, then from the “Download” tab; enable the “Software Download” tick box. ∑ Click on the “Browse” button and using the standard Windows dialogue box, select the software you wish to download to the nanoBTS and then click on the “OK” button. ∑ Click on the “OK” button to accept the configuration. ∑ From the “BTS Database Log” window, click on the “Auto” button. The BTSInstaller application will now assign an IP address and automatically configure the nanoBTS parameters. Once this process has completed, the four (4) indicators in the “BTS Status” …

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Users Manual

Mailing Address: P.O. Box 1101, Minneapolis, Minnesota 55440-1101 World Headquarters: Minneapolis, Minnesota USA +1.952.938.8080 www.adc.com Addendum CENG0210_XB Hardware Installation – nanoBTS FlexWave™ microBTS Operation and Maintenance Manual Addendum PRODUCT DESCRIPTION This publication provides basic information about the FlexWave™ microBTS. Place this addendum with CENG0210_XB Hardware Installation manual for the nanoBTS. The FlexWave microBTS provides the same functionality as the nanoBTS. However, the microBTS utilizes an additional Linear Power Amplifier, and combines four nanoBTS units into one single chassis. This chassis is functional for indoor and outdoor installation. The chassis provides the degree of protection specified by NEMA 6 and IP67 as defined by IEC Publication 60529. INSTALLATION OVERVIEW Mounting The microBTS may be mounted on a flat vertical surface (such as the side of a building) or on a utility pole. A combination wall/pole mounting bracket is provided with each unit. A separate stand mount kit (accessory item) is available if it is necessary to mount the microBTS from a cable. A grounding lug is provided on the bottom of the microBTS enclosure for connecting a grounding wire. Mailing Address: P.O. Box 1101, Minneapolis, Minnesota 55440-1101 World Headquarters: Minneapolis, Minnesota USA +1.952.938.8080 www.adc.com FlexWave™ microBTS Nominal Specifications: PARAMETER SPECIFICATION REMARKS System bandwidth 60 MHz Frequency range 1930 – 1990 MHz Out-of-band emissions -13 dBm per 1 MHz bandwidth from 30 MHz to 20 GHz Passband Gain 18.5 dB Addition to +23 dBm gain setting on each nanoBTS Composite RF Output power (see Note 1 at end of table) 41.5 dBm (14.13 Watts) at antenna port 40.5 dBm (11.22 Watts) for Industry Canada using two tone method Gain variation ± 3 dB over temp and unit-to- unit Gain flatness Band flatness Channel flatness ± 1.5 dB across freq. range ± 1.0 dB across any 1.25 MHz channel Mounting Pole, wall, or strand mounted Operating Temperature -5° C to +45° C Antenna Connector 50 ohm N-Type (Female) 50 ohm output impedance Voltage Input 100-250 VAC, 47-63 Hz Note 1: Per Industry Canada Section 5.3 - The Manufacturer's rated output power of this equipment is for single carrier operation. For situations when multiple carrier signals are present, the rating would have to be reduced by 3.5 dB, especially where the output signal is re-radiated and can cause interference to adjacent band users. This power reduction is to be by means of input power or gain reduction and not by an attenuator at the output of the device." STANDARDS CERTIFICATION FCC: This equipment complies with the applicable sections of Title 47 CFR Part 24 (1900 MHz) IC: This equipment complies with the applicable sections of RSS-131. The term “IC:” before the radio certification number only signifies that Industry Canada Technical Specifications were met. Caution: Modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Note: To comply with Maximum Permissible Exposure (MPE) requirements, the maximum composite output form the antenna cannot exceed 1000 Watts EIRP and the antenna must be permanently installed in a fixed location that provides at least 6 meters (20 feet) of separation from all persons.

Users Manual

nanoBTS™ EDGE/AMR The new nanoBTS EDGE/AMR picocellular basestation represents a significant step on the migration path to higher data rates and more supported users. Based on the world beating nanoBTS GSM/GPRS basestation it delivers the same features and functionality for GSM voice and GPRS but with the addition of high-speed EDGE data and improved voice quality and capacity using AMR coding. For operators moving to higher speed data networks by deploying EDGE, there is a strong requirement to provide high quality coverage in buildings. With ip.access revolutionary GSM-over-IP technology it is possible to bring cost effective high-speed coverage to the user where they most need and use it. nanoGSM™ GSM-over-IP picocells for in-building coverage and capacity increased data capacity For many of the new data services the majority of use will be indoors where the EDGE BTS will be physically close to the user. The quality of the signal can be correspondingly higher, so the higher rate data coding schemes will be available to the user. The nanoBTS EDGE/AMR supports all the EDGE coding schemes from MCS1- MCS9 giving a maximum nominal data rate of 414kpbs which is up to three times the maximum data rate of the GSM/GPRS model. The BTS also monitors for the optimum RF conditions for data transfer and alters the data throughput to achieve the fastest rates This ensures the best possible user experience and maximizes the use of the available spectrum. improved voice quality and capacity In networks where AMR capable handsets are being deployed the new coding scheme can be used to improve the quality of voice calls, improving the user experience. In addition, as the quality of the AMR half rate coding is very similar to the standard full rate GSM, half rate AMR can be used to double the number of voice channels available per BTS. Erlang models show that this increases the number of supported users by up to three times, improving the return on investment for the BTS. easy deployment Picocells offer a lower cost alternative to the traditional antenna based approach to providing GSM coverage and capacity within buildings. Due to the small size and deployment flexibility, the nanoBTS can easily achieve coverage where needed. The quick and simple installation using existing Ethernet wiring for both data and power avoids the need for the expensive site surveys, cabling installations and access to roof and floor spaces typical of distributed antenna systems (DAS). The unique Network Listen™ function supplements the conventional RF planning process, allowing the planners to see into the difficult indoor environment to optimize the coverage. For operators with existing nanoBTS deployments the EDGE unit can be added to an existing installation using the multi TRX capability. Both units then operate as a single cell to give up to 22 channels of voice together with the high data rates of 414kbps of the highest EDGE coding schemes. scalable system architecture The nanoBTS is a complete GSM basestation that conforms to the picocell standard and delivers “GSM-over-IP”. It combines a standard U m air interface, which supports the more than 1 billion GSM handsets in use globally, with an IP based backhaul, which can take advantage of the existing IP broadband infrastructure. There are two versions of the nanoBTS EDGE/AMR for operation in the 1800 and 1900MHz GSM frequency bands. For applications requiring even greater capacity up to 4 nanoBTS can be combined into a multiple TRX cell, increasing the number of supported users per TRX by up to 200%. The nanoBTS GPRS/GSM and the nanoBTS EDGE/AMR are controlled by the nanoGSM BSC basestation controller. System configuration, performance and fault reporting is handled by the nanoGSM OMC-R management system. key features ƒ Up to 3 times the data rate with EDGE support ƒ Up to 3 times the number of supported users with half rate AMR ƒ Support for EDGE coding MCS1-MCS9 ƒ Indoor coverage up to 125,000m 2 ƒ Single 10/100 Ethernet connection ƒ Smallest footprint in the industry applications ƒ Dedicated coverage for SME premises ƒ In-building capacity and coverage for large corporate offices ƒ Stand-alone in-fill for shopping malls, airports or undergrounds ƒ Delivering GSM access on ships, aeroplanes and rural areas technical specification Copyright © ip.access 2005. nanoGSM and nanoBTS are trademarks of ip.access ltd. All other trademarks are acknowledged. This document contains advance information, subject to change without notice. No responsibility is assumed by ip.access for the use of this information, nor for infringements of patents or other rights of third parties. This document is the property of ip.access and implies no license under patents, copyrights or trade secrets. No part of this publication may be copied, reproduced, stored in a retrieval system, or transmitted, in any form of any means, electronic, photographic, or otherwise, or used as the basis for manufacture or sale of any items without the prior written consent of ip.access. U m radio interface transmit frequencies GSM 1800 model.............................. 1805 to 1880MHz GSM 1900 model.............................. 1930 to 1990MHz Channel spacing .............................................. 200kHz Max. output power: GMSK (CS 1-4/MCS 1-4) ................................ +23dBm 8PSK (MCS 5-9) ..............................................+13dBm Static power control ........................ 6 steps (2dB each) Dynamic power control ....................6 steps (2dB each) receive frequencies GSM 1800 ........................................ 1710 to 1785MHz GSM 1900 ........................................ 1850 to 1910MHz Channel spacing ............................................... 200kHz Performance .............................................. GSM 05:05 Gain control steps .................................................... 26 internal aerials Separate antennas for TX, RX and NetworkListen™ 0dBi o…

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Users Manual

© ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 1 - Installation Guide ip.access Ltd Building 2020 Cambourne Business Park Cambridge CB3 6DW United Kingdom ip.access Customer Safety and Regulatory Information Author(s) Lance Davidson 26/10/2004 © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 2 -  The information contained in this document is commercially confidential and must not be disclosed to third parties without prior consent. © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 3 - 1 REVISION HISTORY Version Change Summary ECN Date Author A First release 0190 Sept 2004 LED B BSC notes updated 0243 Aug 2005 LED C Product 165 Included, Cambourne address updated TBA Dec 2005 LED © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 4 - Contents 1 REVISION HISTORY ....................................................................................3 2 INTRODUCTION ...........................................................................................5 2.1 Purpose and Scope .................................................................................5 2.2 Related Documents .................................................................................5 2.3 Terminology.............................................................................................5 2.4 Change Control .......................................................................................5 2.5 Document Organisation...........................................................................5 3 Model 109 POWER SUPPLY .......................................................................6 3.1 109 - Handbook - Warnings and Cautions ..............................................6 3.2 109 - Handbook - FCC Text ...................................................................7 3.3 109 – Handbook - Industry Canada text ..................................................7 3.4 109 – Handbook - Regulatory Compliance Statement ............................7 4 Model 126 Ethernet Switch and Power Inserter........................................9 4.1 126 - Handbook - Warnings and Cautions ..............................................9 4.2 126 – Handbook - FCC Text..................................................................10 4.3 126 – Handbook - Industry Canada text ................................................11 4.4 126 – Handbook - Regulatory Compliance Statement ..........................11 5 NANOBTS Products ..................................................................................13 5.1 NanoBTS - Handbook - Warnings and Cautions...................................13 5.2 NanoBTS - Handbook - Parts required for each nanoBTS...................14 5.3 NanoBTS - Handbook - Provision of Power to the nanoBTS ................14 5.3.1 NanoBTS - Handbook - Installing the PSU at the Ethernet switch. .16 5.3.2 Nano - BTS Handbook - Installing the PSU at the nanoBTS...........16 5.4 NanoBTS - Handbook – FCC Text ........................................................17 5.5 NanoBTS - Handbook – IC Text............................................................17 5.6 NanoBTS – Handbook - Regulatory Compliance Statement.................18 6 Model 129 BSC (Base Station Controller) ...............................................19 6.1 BSC – Handbook – Warnings and Cautions .........................................19 6.2 BSC – Handbook - FCC Text ................................................................21 6.3 BSC - Handbook - Industry Canada text ...............................................22 6.4 BSC - Handbook - Regulatory Compliance Statement..........................22 © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 5 - 2 INTRODUCTION 2.1 Purpose and Scope This document provides the customer with safety and regulatory warnings, cautions and information for the IP Access range of products. Products covered are the model 108, 110, 139, 140, 165 and 178 range of nanoBTS’s, model 109 and 126 power supplies, model 129 4U circuit switched BSC. 2.2 Related Documents This document shall be referenced by the individual product’s user guides. 2.3 Terminology UL Underwriters Laboratories FCC Federal Communications Commission ICE Industry Canada CE European Union 2.4 Change Control Changes to this document shall be agreed and implemented according to the ECN procedures described within QS019, Approvals Liaison Engineer signature is required in all cases. 2.5 Document Organisation This document is divided into sections by product type. © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Information.doc - 6 - 3 Model 109 POWER SUPPLY 3.1 109 - Handbook - Warnings and Cautions This document is written in English, please request a copy in your local language if required. This product is only intended to power products approved by IP Access. Ensure that only IP Access products are connected to an Ethernet circuit enabled for 48V operation, this also applies to outlets remote from the unit For indoor use only, output cabling is SELV / LAN for indoor routing only. Do not cover casing or otherwise impede cooling. Do not apply power to unit if there is any evidence of condensation. Do not open casing as mains voltages may be present within the unit. 90 to 264VAC input is via a 2 pin IEC C7 (figure 8) connector. Inlet cable assembly must carry a suitable local approval (e.g. UL marked for US and Canadian markets). PSU109 – Environmental Specification ∑ -10 to +45 degrees Centigrade ambient operating temperature. ∑ This product has been Listed by UL for use in a 25 degree C ambient. ∑ -20 to +80 degrees C ambient storage temperature. ∑ 5 to 95% RH non condensing humidity. © ip.access Ltd COMPANY CONFIDENTIAL CENG0133_C_Customer_Safety_and _Regulatory_Informat…

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Cover Letter(s)

Mailing Address: P.O. Box 1101, Minneapolis, Minnesota 55440-1101 World Headquarters: Minneapolis, Minnesota USA +1.952.938.8080 www.adc.com May 16, 2007 Attn: Application Examiner, Reviewing Engineer Re: Request of Confidentiality Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission’s Rules, the Applicant hereby requests confidential treatment of information accompanying as outlined below: Schematics, Technical Description or Theory of Operation, Bill of Materials (BOM’s), and Block Diagrams 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. Sincerely, Mark Miska Compliance Engineer Tele: 952 403-8340 Fax: 952 403-8858 Email: [email protected]

External Photos

Linear Power Amplifier 10 Watt - PCS Left View Linear Power Amplifier 10 Watt - PCS Right View Linear Power Amplifier 10 Watt - PCS Rear View Linear Power Amplifier 10 Watt - PCS Top View Linear Power Amplifier 10 Watt - PCS Bottom View

External Photos

IP ACCESS 165B External View Front View IP ACCESS 165B External View Bottom View IP ACCESS 165B External View Right View IP ACCESS 165B External View Left View IP ACCESS 165B External View Bottom View IP ACCESS 165B External View Top View IP ACCESS 165B External View Overall View

External Photos

FlexWave™ microBTS Left View FlexWave™ microBTS Right View FlexWave™ microBTS Rear View FlexWave™ microBTS Bottom View FlexWave™ microBTS Top View FlexWave™ microBTS Open View

External Photos

VICOR Power Supply Top View VICOR Power Supply Bottom View

ID Label/Location Info

INFORMATION ON THIS DOCUMENT IS PROPRIETARY TO ADC AND SHALL NOT BE USED, COPIED, REPRODUCED OR DISCLOSED IN WHOLE OR IN PART WITHOUT WRITTEN CONSENT OF ADC TITLE FlexWave™ microBTS FCC / IC Identification Label TOLERANCE UNLESS .XX NA OTHERWISE SPECIFIED .XX NA DRAWING NUMBER None A REV DO NOT SCALE DRAWING ENGR. Mark F. Miska SIZE A SHEET 1 OF 1 REV ECO DWN DATE A MFM 5-16-2007 XXXX-XXXXXXXX FCC ID: F8I-FWM1901A IC: 1208G-FWM1901A 2 1.500 REF R.075 (4) DIE CUT LABEL .750 REF 1,4 - See Note 4 for Model Number NOTES: 1 PRINTING TYPE: TRANSFER METHOD. COLOR: BLACK TEXT 8 PT ARIAL NON-BOLD LOCATED APPROXIMATELY AS SHOWN. 2 PRINTING TYPE: TRANSFER METHOD. COLOR: BLACK TEXT 6 PT ARIAL NON-BOLD LOCATED APPROXIMATELY AS SHOWN. MATERIAL: ADC PART NUMBER 1215140 3 4 FWB-MBTS-D40N00

ID Label/Location Info

FlexWave™ microBTS Location of FCC ID

Internal Photos

IP ACCESS 165B Internal View Front View IP ACCESS 165B Internal View Cover Removed IP ACCESS 165B Internal View Circuit View – Top IP ACCESS 165B Internal View Circuit View – Bottom IP ACCESS 165B Internal View All Parts Removed

Internal Photos

Linear Power Amplifier 10 Watt Main Board, Part A – Top Linear Power Amplifier 10 Watt Main Board, Part A - Bottom Linear Power Amplifier 10 Watt Main Board, Part B – Top Linear Power Amplifier 10 Watt Main Board, Part B - Bottom Linear Power Amplifier 10 Watt Driver Board, Part A - Top Linear Power Amplifier 10 Watt Driver Board, Part A - Bottom Linear Power Amplifier 10 Watt Mother Board, Part A - Top Linear Power Amplifier 10 Watt Mother Board, Part A - Bottom Linear Power Amplifier 10 Watt Mother Board, Part B – Top Linear Power Amplifier 10 Watt Mother Board, Part B - Bottom Linear Power Amplifier 10 Watt Control Board, Part A - Top Linear Power Amplifier 10 Watt Control Board, Part A - Bottom Linear Power Amplifier 10 Watt Pilot Tone, Part A - Top Linear Power Amplifier 10 Watt Pilot Tone, Part A - Bottom

Test Report

ADC Telecommunications Test Report Summary FCC CFR 47, Part 24 Subpart E Broadband PCS Manufacturer: ADC Telecommunications Name of Equipment: FlexWave™ microBTS Model Number(s): FWB-MBTS-D40N00 Manufacturer’s Address: P.O. Box 1101 Minneapolis, MN 55440-1101 Test Report Number: MN070518 Test Date(s): 16-17 May, 2007 (ETL) 15 May, 2007 (ADC) According to testing performed at Intertek, the above-mentioned unit is in accordance with the applicable electromagnetic compatibility (EMC) portions of the requirements defined in FCC Part 24. It is the manufacturer’s responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical characteristics. Any modifications necessary for compliance made during testing on the above mentioned date(s) must be implemented in all production units for compliance to be maintained. All testing was done in accordance with the Federal Communications Commission’s CFR 47 Part 24 and the EUT fulfills the requirements of the Federal Communications Commission’s CFR 47 Part 24. Date: 18 May, 2007 Location: Intertek Testing Services (ETL) ADC Telecommunications 7250 Hudson Blvd., Suite 100 5341 12 th Ave E Oakdale, MN 55128 Shakopee, MN 55379 Phone: (651) 730-1188 Phone: (952) 403-8340 Fax: (651) 730-1282 Fax: (952) 403-8858 Testing Conducted by (ADC): And Report Written by: Mark F. Miska Compliance Engineer 1 of 60 MN070518 ADC Telecommunications EMC Emission – T E S T R E P O R T Test Report File Number: MN070518 Date of Issue: 18 May, 2007 Model Number(s): FWB-MBTS-D40N00 Product Name: FlexWave™ microBTS Product Type: Indoor/Outdoor Base Station System Applicant: ADC Telecommunications Manufacturer: ADC Telecommunications License Holder: ADC Telecommunications Address: P.O. Box 1101 Minneapolis, MN 55440-1101 Test Result: ▪ Positive ▫ Negative Test Project Number: 3122953MIN-001 Reference(s) Total pages including Appendices: 60 2 of 60 MN070518 ADC Telecommunications Table of Contents 1.0 Revision Description .............................................................................................. 4 2.0 Documentation..................................................................................................... 4 2.1 Test Regulations ................................................................................................ 4 2.2 Test Operation Mode .......................................................................................... 5 2.3 Configuration of the device under test: ................................................................. 5 2.4 Product Options:................................................................................................ 5 2.5 EUT Specifications and Requirements: .................................................................. 5 2.6 Cables:............................................................................................................. 5 2.7 Power Requirements: ......................................................................................... 5 2.8 Typical Installation and/or Operating Environment:................................................. 5 2.9 Other Special Requirements: ............................................................................... 5 2.10 EUT Software: ................................................................................................ 5 2.11 EUT System Components ................................................................................. 6 2.12 Support Equipment.......................................................................................... 6 2.13 Deviations from standard: ................................................................................ 6 2.14 General Remarks: ........................................................................................... 6 2.15 Summary:...................................................................................................... 6 3.0 Test set-Up drawings and Photos............................................................................ 7 3.1 Test set-up photo, radiated emissions ................................................................... 7 3.2 Test set-up photo, radiated emissions ................................................................... 8 3.3 Test Set-up Drawings ......................................................................................... 9 4.0 Test Results ....................................................................................................... 11 4.1.1 24.232 Power and antenna height limits........................................................ 11 4.1.2 24.235 Frequency Stability.......................................................................... 12 4.1.3 24.238 Emission limitations for broadband PCS equipment............................... 13 5.0 Appendix A........................................................................................................ 14 6.0 A…

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Contact Information

Applicant

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

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
224E1.93 GHz - 1.99 GHz16.98 W253KG7W1.5 ppm
Confidentiality
Long Term
Grant Notes
Power listed is conducted. Professional installers must be provided with appropriate antenna installation instructions and transmitter operating conditions, including antenna co-location requirements of �1.1307(b)(3), for satisfying RF exposure compliance. Approved for use with antennas as listed in this filing.

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