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LDKVP1900XXPCS GSM Base Station

Cisco Systems Inc
PCS GSM Base Station - FCC ID LDKVP1900XX - Cisco Systems Inc
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Sep 12, 2000
Application Purpose
Original Equipment
Date of Application
Aug 06, 2000
Equipment Note
PCS GSM Base Station
Frequency Range
1930.20000000 - 1989.80000000
Company
Cisco Systems Inc
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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ID Label/Location Info

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

-HW&HOO,QF 8VHUV0DQXDO %HWD 1R YH PE H U   9LSHU%DVHå 9LSHU%DVHŒ8VHUV0DQXDO%H W D  JetCell Confidential The information contained in this document is the property of JetCell, Inc. Except as specifically authorized in writing by JetCell, the holder of this document shall keep the information contained herein confidential and protect it from disclosure and dissemina- tion to third parties in whole or in part and use same for evaluation purposes only. Cert- tain inventions described herein may be the subject of pending U.S. and international patent applications. This document, whether published or unpublished, is protected as a copyrighted work and may not be copied, adapted, displayed or modified without written consent of Jet- Cell, Inc. Report infringements to [email protected]. The contents of this document are provided for information purposes only and are sub- ject to modification by JetCell, Inc. without notice. No representation or warranty is made as to the completeness or accuracy of the information contained herein, including but not limited to information concerning the suitability or performance of the product or application, merchantability or fitness for any particular purpose. The following are trademarks of JetCell, Inc.: GoIP, RAP, SmartCell, SureTrack, V7M, V7X, ViperBase, ViperCell, ViperWatch. ViperBase Users Manual Beta Release 0.1 © Copyright 1999 JetCell Incorporated. All rights reserved. -HW&HOO,QF 9LSHU%DVHŒ8VHUV0DQXDO³%HWDL 7DEOHRI&RQWHQWV Installing and Configuring ViperBase .......................................................... 1-1 Running ViperBase .................................................................................... 1-1 Navigating ViperBase ........................................................................ 1-2 Using ViperBase Configuration Management .............................................. 1-2 The General Dialog Box ..................................................................... 1-3 The Gateway List Dialog Box ............................................................. 1-4 ViperBase Subscriber Management ............................................................ 1-4 The IP Phone List Dialog Box............................................................. 1-5 The Mobile List Dialog Box ................................................................ 1-6 The Subscriber Detail Information Dialog Box ..................................... 1-7 Sending a Text Message with SMS-CB ....................................................... 1-7 Schedule a New Message .................................................................. 1-8 Delete a Scheduled Message ............................................................. 1-9 Query Scheduled Messages ............................................................... 1-9 Change a Schedule Message ............................................................. 1-9 Sending Feedback to JetCell, Inc. .............................................................. 1-9 LL9LSHU%DVHŒ8VHUV0DQXDO³%HWD -HW&HOO,QF 9LSHU%DVHŒ8VHUV0DQXDO³%HWD   9LSHU%DVH2SHUDWLRQ ,QVWDOOLQJDQG&RQILJXULQJ9 LSHU% DVH ViperBase performs the H.323 Gatekeeper required by the ViperCell network. ViperBase: •Runs on a Windows NT server •Is configured and managed from the HTML-based ViperWatch OA&M sys- tem. •Is compatible with Microsoft Internet Explorer 4.0 or later and Netscape Navigator 4.0 or later 5XQQLQJ9 LSHU%DV H In the IP Address area of the web browser, type the IP address of the active Viper- Base. After a short delay, the Registered ViperCells dialog box opens. The Registered Viper Cells dialog box is divided into four fields: •The ViperCell Name field identifies the active ViperCell •The Cell ID identifies the identifying number assigned to the ViperCell •Click on a ViperCell IP address to be transferred to the System Informa- tion dialog box of the ViperCell -9LSHU%DVHŒ8VHUV0DQXDO³%HWD 8VLQJ9LSHU%DVH&RQILJXUDWLRQ0DQDJHPHQW • The Number of Active Mobiles shows how many MS’s are active at the time the dialog box is accessed. At the bottom of the dialog box, click Recall to update the Registered ViperCells dialog box. 1DYL JDWL QJ9 LSHU% DV H The ViperBase display is divided into three frames. •The top frame contains information about the ViperBase being viewed •The frame at the left side of the display contains the topic headings of the different ViperBase dialog boxes •The central and largest frame is the specific ViperBase dialog box. In the left frame, click on a topic heading to open the topic in the main window. 8VLQJ9 LSHU% DVH&RQILJXU DWLRQ0DQD JHPHQW ViperBase Configuration Management uses interactive Java. In the left frame, click on Configuration Management to load the Java Applet. After a pause of up to 30 seconds while the applet loads, the General dialog box appears. Configuration Management consists of primary dialog boxes: •The General dialog box provides information about ViperBase network connectivity •The Gateway List dialog box displays a list of all active H.323 Gateways that are part of the ViperCell network 9LSHU%DVHŒ8VHUV0DQXDO³%HWD 8VLQJ9LSHU%DVH&RQILJXUDWLRQ0DQDJHPHQW 7 KH* HQHU DO' LDORJ%R[ In the left frame, click on the ViperBase Configuration Management topic heading to open the General dialog box. The General dialog box contains configuration information for the ViperBase. •Click Get to refresh the displayed information. •Click Set to write from the General dialog box to the ViperBase. -9LSHU%DVHŒ8VHUV0DQXDO³%HWD 9LSHU%DVH6XEVFULEHU0DQDJHPHQW 7 KH* DWHZD\ /LV W 'LDO RJ %R[ The Gateway List dialog box shows all H.323 Gateways active in the ViperCell network. •Click Get to refresh the display •Click Set to transfer changes from the Gateway List dialog box to the ViperBase 9 LSHU%DVH6XEVFULEHU0DQD JHPHQW In the left frame, click on Subscriber Management to add, modif…

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Users Manual

JetCell, Inc. +DUGZDUH ,QVWDOODWLRQ %HWD 1R YH PE H U   9LSHU&HOOå ViperCell™ I&C Guide - Beta 1.0 JetCell Confidential The information contained in this document is the property of JetCell, Inc. Except as specifically authorized in writing by JetCell, the holder of this document shall keep the information contained herein confidential and protect it from disclosure and dissemina- tion to third parties in whole or in part and use same for evaluation purposes only. Cert- tain inventions described herein may be the subject of pending U.S. and international patent applications. This document, whether published or unpublished, is protected as a copyrighted work and may not be copied, adapted, displayed or modified without written consent of Jet- Cell, Inc. Report infringements to [email protected]. The contents of this document are provided for information purposes only and are sub- ject to modification by JetCell, Inc. without notice. No representation or warranty is made as to the completeness or accuracy of the information contained herein, including but not limited to information concerning the suitability or performance of the product or application, merchantability or fitness for any particular purpose. The following are trademarks of JetCell, Inc.: GoIP, RAP, SmartCell, SureTrack, V7M, V7X, ViperBase, ViperCell, ViperWatch. ViperCell Hardware Installation Beta Release 0.1 © Copyright 1999 JetCell Incorporated. All rights reserved. -HW&HOO,QF 9 LS HU & HOOŒ+DUGZDUH,Q VW D OODW LR Q³%HWDL 7DEOHRI&RQWHQWV ViperCell Hardware Installation Installing ViperCell Hardware ............................................................. 1-1 Unpacking ViperCell .......................................................................... 1-1 Choosing Where to Mount ViperCell ................................................... 1-2 Mounting the Wall Bracket ................................................................. 1-2 Mounting the ViperCell to the Wall Bracket ......................................... 1-3 Connecting ViperCell to the LAN ........................................................ 1-3 Connecting ViperCell to Power ........................................................... 1-4 ViperCell Self-test Sequence.............................................................. 1-4 Attaching the Faceplate ..................................................................... 1-5 ViperCell Software Install ........................................................................... 1-5 LL9LSHU&HOOŒ+DUGZDUH,QVWDOODWLRQ³%HWD -HW&HOO,QF 9 LS HU & HOOŒ+DUGZDUH,Q VW D OODW LR Q³%HWD   9LSHU&HOO+DUGZDUH,QVWDOODWLRQ A complete ViperNet Installation requires the installation of four major compo- nents: •The ViperCell combined GSM Radio and H.323 Endpoint hardware •The ViperWatch Operations, Administration, and Maintenance (OA&M) software •The ViperBase GSM-Enhanced H.323 Gatekeeper software •The V7M Interworking software This Installation and Commissioning (I&C) Guide describes how to install the ViperCell combined GSM Radio and H.323 Endpoint hardware. Installation of ViperWatch, ViperBase, and V7M software are each described in their own Instal- lation and Commissioning Guide. Before beginning the procedures described in this document please consult the ViperCell Pre-Installation Checklist to determine whether your site is ready to receive ViperCell hardware. ,QVWDOOL QJ 9 LSHU&HOO +DU G ZDUH Installing ViperCell hardware involves the following major steps: •Mount the ViperCell bracket to the wall •Attach the ViperCell hardware to the bracket •Connect the ViperCell hardware to a 10 or 100 BaseT LAN •Connect the ViperCell hardware to power and verify the self-test sequence •Attach the decorative faceplate Completion of Hardware Installation is followed by installation of the ViperWatch OA&M Software. 8 QSDFNLQJ9 LSHU&HOO Each ViperCell is shipped with the following: •A ViperCell combined GSM Radio and H.323 Endpoint assembly •An AC/DC power transformer that accepts a 110-220 VAC input, and pro- duces a 12 VDC 5A output •A country-specific power cord •A bracket for mounting the ViperCell to a wall •A decorative faceplate •A package of screws used to attach the bracket and faceplate If you have ordered the GPS option, this list is supplemented by the following two items: -9LS H U& H OOŒ+ D UG ZDUH,QVWDOODWLRQ³%HWD •A GPS antenna assembly •A GPS connecting cable Report missing or damage items to JetCell, Inc. (E-Mail or Telephone number?) &KRRV LQJ: KHU H WR 0RXQW9 L SHU&HO O Choosing where to install ViperCell is important: •Avoid placing ViperCell in direct sunlight or in locations of extreme heat or cold: ViperCell operates from -5C to +45C. •Put the ViperCell in an area free of obstructions that could interfere with the operation of the GSM radio components •Place the ViperCell unit at least 10’ (3 M) from the floor For additional help in choosing a location for your ViperCell combined GSM Radio & H.323 Endpoint, consult the ViperCell Pre-Installation Checklist. Once a location has been chosen, it is necessary to install the wall bracket. 0RXQWLQJWKH :DOO %U DFNHW The ViperCell wall bracket is attached to the wall using the four mounting holes. 7RPRXQWWKHZD OOE U D FNHW  1Hold the bracket up to the wall so that the key-hole shaped holes in the bracket are positioned as shown. 2Secure the bracket to the wall using all four wall-mounting holes. Wall-mounting hole (4) External earth grounding point Key-hole shaped mounting hole (4) Optional swivel-mount attachments (4) Power/LAN cable entry 9LS H U& H OOŒ+DUGZDUH,QVWDOODWLRQ³%HWD   0RXQWLQJWKH 9 LSHU&HOO WR WKH:DOO %U DFNHW Install the ViperCell into the wall bracket. 7RDWWDFKWKH9LSHU&HOOW R WK H ZD OOE U DF NH W  1Position the ViperCell so that the LAN and power connectors are at the top of the unit. WARNING!Take care not to damage the flat antenna ass…

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Cover Letter(s)

July 21, 2000 Federal Communications Commission Equipment Approval Service Attn: Authorization and Evaluation Division Reference : Cisco Systems FCC ID: LDKVP1900XX To Whom It May Concern:: Pursuant to Sections 0.457(d)(1)(ii) and 0.459 of the Commission rules , the Applicant Hereby requests confidential treatment of Cisco Systems supplied information accompanying this application. The confidential information includes the following Theory of Operation Schematics Block Diagram Bill of Materials The material contain trade secrets and proprietary information not customarily released to the public. Public disclosure of this information might be harmful to Cisco Systems and provide unjustified benefits to our competitors. Cisco Systems understands that pursuant to 0.457 (d)(1)(ii), disclosure of application and all accompanying documentation will not be made public before the grant date. Sincerely, Semyon Grozman Regulatory Compliance Manager Enterprise Line of Business

RF Exposure Info

Engineering Analysis of Transmitter Model VPX1900XX FCC ID: LDK1900XX To Federal Communications Commission Part 1.1310 Radio Frequency Exposure Limits & OET 65C 07/12/00 This analysis was done per the requirements of Part 1.1310 and 24.52 of the FCC rules as part of the certification requirements for Part 24 devices. This report is for reference only and to help provide the installer guidance. The license provider installing the system is required to perform the actual MPE study of the installation as well as performing a possible Environmental Assessment of the installation in accordance with the FCC rules. The Cisco Systems radio transmitter analyzed had a maximum TX power of 250mW (+24dBm) and all calculations were based on that power output. The formulas and Maximum Permissible Exposure (MPE) limit requirements referenced in this report can be found in FCC Bulletin OET-65 and specifically OET-65 Supplement C which addresses devices such as GSM devices. All calculations were done in the worse case mode, the Uncontrolled environment with the radio duty cycle at 100%. It should be understood that under normal operating conditions these transmitters will not operate at 100% duty cycle and the assessment done by the installer can be done based on the actual duty cycle as long as the method is documented properly and the actual duty cycle can be verified. Based on the MPE calculation using the limits of the uncontrolled environment, the Cisco Viper radio did not exceed the MPE requirements set forth in these documents providing the minimum safe distance between antenna and operator is met. Since this system is designed to be ceiling mounted away from the intended user's, it can be defined as a fixed system. Therefore no SAR evaluation will be required _______________________________________________ David A. Case NCE Senior Radio Compliance Engineer Cisco systems Corporate Compliance 3875 Embassy Parkway Akron, OH 44333 T 330-664-7396 F 330-664-7301 Page 1 I Equipment Under Test FCC ID:LDKVPX1900XX Model:VPX1900XX Series Type:GSM Voice over IP transmitter base station Max Power0.25Watts Duty Cycle100% Max EIRP for antenna combinations 6 dBi Omni Antenna +30dBm EIRP II MPE Distances Calculations based on 100% duty cycle. AntennaTX PowerEIRPMPE Distance 6.0 dBi Omni+24dBm+30dBm \ 1.0 W 10.5 cm Page 2 III Maximum Permissible Exposure Ref: FCC Rules, CFR 47 1.1310 FCC Limits for Maximum Permissible Exposure (MPE) (A) Limits for Occupational/Controlled Exposure Frequency E Field M Field Power Density Average Time Range Strength Strength (MHz) (V/m) (A/m) (mW/cm2) (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842/f 4.88/f (900/f2)* 6 30-300 61.4 0.163 1.0 6 300-1500 -- -- f/300 6 1500-100,000 - - 5 6 (B) Limits for General Population/Uncontrolled Exposure Frequency E Field M Field Power Density Average Time Range Strength Strength (MHz) (V/m) (A/m) (mW/cm2) (minutes) 0.3-3.0 614 1.63 (100)* 30 3.0-30 824/f 2.19/f (180/f2)* 30 30-300 27.5 0.163 0.2 30 300-1500 -- -- f/1500 30 1500-100,000 - - 1 30 The uncontrolled environment represents the most restrictive limits. Page 3 IV. Summary In an uncontrolled environment, the maximum permissible exposure from a radio device operating at 1.9 Ghz is 1mW/cm 2 average over a 30 minute period. Based on the calculated power density, the antenna must be mounted at a minimum distance of 10.5 cm from the user. The following warning statement will be placed in the user manuals to caution the user on correct and safe use of this antenna. The following warning needs to be placed in the manual : This system is designed to be operated as a fixed system device and must be located either on the roof top site, or up on or near the ceiling away from the user. It must be mounted in a manner to ensure that all user's and bystanders are kept a minimum of 20cm away from the antennas at all times. The actual system provider installing the system is required to perform an MPE study as part of the licensing process and may also be required to perform an Environment Assessment of the location as required under 1.1307 of the FCC rules. This Environmental Assessment will depend on the co location of other transmitters of this type and other types of fixed transmitter (including unlicensed transmitter) operating in the immediate area. In the controlled environment, the maximum permissible exposure from a radio device operating at 1.9 Ghz is 5mW/ cm2 over a 6 minute period. Since the analysis is favorable in the Uncontrolled Environment, it is unnecessary to analyze the device to the less restrictive limits of the Controlled Environment. Page 4 Formulas 1) For calculating MPE Distance 2) Conversion mW to dBm 3) Conversion dBm to mW 4) Power Density EIRP 4 π 10 = EIRP log 10() . mW = logdBm log 1 dBm 10 . = logmW EIRP 4 π r 2 = EIRP r Pd Page 5 Appendix A : Technical Opinion from American TCB and FCC Dave, Based on your specifications, your product seems to qualify under fixed mobile transmitters provided your installation instructions clearly demonstrate that. Per FCC 2.1091 (Attached) it is less than 1.5 watt for GSM 900MHz, and certainly less than 3 Watt EIRP for GSM 1800 MHz. In that case I believe it falls under the TCB scope, however MPE evaluation is necessary. I have attached a copy of Kwok's recent opinion on this issue. See also FCC 2.1091. I will concur with Bill Graff and Mike Violette. <<FCC.2.1091.doc>> <<TCB-Exclusions.doc>> From: Kwok Chan [mailto:[email protected]] <mailto:[mailto:[email protected]]> Sent:Monday, June 05, 2000 11:09 AM To:[email protected] <mailto:[email protected]> Cc:Kwok Chan Subject:Re: Part 24 E (broadband PCS- TDMA) SAR/MPE requirements / RTL, Inc. Currently, TCB cannot approve equipment that requires SAR evaluation. For part 24 portable devices, there is no exclusion for routine SAR evaluation. If device qualifies for the requirements of 2.1091 for mobile transmitter operating configurations, depending on antenna gain and output power, it may q…

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RF Exposure Info

Engineering Analysis of Transmitter Model VP1900XX FCC ID: LDKVP1900XX To Federal Communications Commission Part 1.1310 Radio Frequency Exposure Limits & OET 65C 09/19/00 This analysis was done per the requirements of Part 1.1310 and 24.52 of the FCC rules as part of the certification requirements for Part 24 devices. This report is for reference only and to help provide the installer guidance. The license provider installing the system is required to perform the actual MPE study of the installation as well as performing a possible Environmental Assessment of the installation in accordance with the FCC rules. The Cisco Systems radio transmitter analyzed had a maximum TX power of 250mW (+24dBm) per transmitter and all calculations were based on the measured power of the one and then both transmitters running simultaneously The formulas and Maximum Permissible Exposure (MPE) limit requirements referenced in this report can be found in FCC Bulletin OET-65 and specifically OET-65 Supplement C which addresses devices such as GSM devices. All calculations were done in the worse case mode, the Uncontrolled environment with the radio duty cycle at 100%. It should be understood that under normal operating conditions these transmitters will not operate at 100% duty cycle and the assessment done by the installer can be done based on the actual duty cycle as long as the method is documented properly and the actual duty cycle can be verified. Based on the MPE calculation using the limits of the uncontrolled environment, the Cisco Viper radio did not exceed the MPE requirements set forth in these documents providing the minimum safe distance between antenna and operator is met. Since this system is designed to be ceiling mounted away from the intended users, it can be defined as a fixed system. Therefore no SAR evaluation will be required _______________________________________________ David A. Case NCE Senior Radio Compliance Engineer Cisco Systems Corporate Compliance 3875 Embassy Parkway Akron, OH 44333 T 330-664-7396 F 330-664-7301 Page 1 I Equipment Under Test FCC ID: LDKVP1900XX Model: VP1900XX Series Type: GSM Voice over IP transmitter base station Max Power 0.25Watts (Per transmitter) Duty Cycle 100% Calculated Max EIRP for antenna and single transmitter 6 dBi Omni Antenna 1 Watt EIRP Measured Transmitter Power Conducted: 0.21mW Measured EIRP 0.79mW II MPE Distances Calculations based on 100% duty cycle for single transmitter at calculated EIRP. Antenna TX Power EIRP MPE Distance 6.0 dBi Omni +24dBm 1.0 W 10.5 cm Calculations based on actual measured power EIRP MPE Distance TX 0.79 W 10.21 cm Page 2 III Maximum Permissible Exposure Ref: FCC Rules, CFR 47 1.1310 FCC Limits for Maximum Permissible Exposure (MPE) (A) Limits for Occupational/Controlled Exposure Frequency E Field M Field Power Density Average Time Range Strength Strength (MHz) (V/m) (A/m) (mW/cm2) (minutes) 0.3-3.0 614 1.63 (100)* 6 3.0-30 1842/f 4.88/f (900/f2)* 6 30-300 61.4 0.163 1.0 6 300-1500 -- -- f/300 6 1500-100,000 - - 5 6 (B) Limits for General Population/Uncontrolled Exposure Frequency E Field M Field Power Density Average Time Range Strength Strength (MHz) (V/m) (A/m) (mW/cm2) (minutes) 0.3-3.0 614 1.63 (100)* 30 3.0-30 824/f 2.19/f (180/f2)* 30 30-300 27.5 0.163 0.2 30 300-1500 -- -- f/1500 30 1500-100,000 - - 1 30 The Uncontrolled environment represents the most restrictive limits. Page 3 IV. Summary In an uncontrolled environment, the maximum permissible exposure from a radio device operating at 1.9 Ghz is 1mW/cm 2 average over a 30-minute period. Based on the calculated power density, the radio system must be mounted at a minimum distance of 10.5 cm from the user. The following warning statement will be placed in the user manuals to caution the user on correct and safe use of this antenna. The following warning will be placed in the manual: This system is designed to be operated indoors as a fixed system device and must be located either up on or near the ceiling away from the user. It must be mounted in a manner to ensure that all user's and bystanders are kept a minimum of 20cm away from the antennas at all times. The actual system provider installing the system is required to perform an MPE study as part of the licensing process and may also be required to perform an Environment Assessment of the location as required under 1.1307 of the FCC rules. This Environmental Assessment will depend on the co location of other transmitters of this type and other types of fixed transmitter (including unlicensed transmitter) operating in the immediate area. In the controlled environment, the maximum permissible exposure from a radio device operating at 1.9 Ghz is 5mW/ cm2 over a 6 minute period. Since the analysis is favorable in the Uncontrolled Environment, it is unnecessary to analyze the device to the less restrictive limits of the Controlled Environment. Page 4 Formulas: 1) For calculating MPE Distance 2) Conversion mW to dBm 3) Conversion dBm to mW 4) Power Density EIRP 4π10 = EIRP log10() . mW=logdBm log 1 dBm 10 . =log mW EIRP 4πr 2 = EIRP r Pd Page 5 Appendix A : Technical Opinion from American TCB and FCC Dave, Based on your specifications, your product seems to qualify under fixed mobile transmitters provided your installation instructions clearly demonstrate that. Per FCC 2.1091 (Attached) it is less than 1.5 watt for GSM 900MHz, and certainly less than 3 Watt EIRP for GSM 1800 MHz. In that case I believe it falls under the TCB scope, however MPE evaluation is necessary. I have attached a copy of Kwok's recent opinion on this issue. See also FCC 2.1091. I will concur with Bill Graff and Mike Violette. <<FCC.2.1091.doc>> <<TCB-Exclusions.doc>> From: Kwok Chan [mailto:[email protected]] <mailto:[mailto:[email protected]]> Sent: Monday, June 05, 2000 11:09 AM To: [email protected] <mailto:[email protected]> Cc: Kwok Chan Subject: Re: Part 24 E (broadband PCS- TDMA) SAR/MPE requirements / RTL, Inc. Currently, TCB ca…

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Test Report

File: R38114 June 21,2000 Chief, Equipment Authorization Branch, Authorization and Evaluation Division, Office of Engineering and Technology FEDERAL COMMUNICATIONS COMMISSION P.O. Box 358315 Pittsburgh, PA 15251-5315 Gentlemen: The enclosed documents constitute a formal submittal and application for a Grant of Equipment Authorization pursuant to Subpart E of Part 24 of FCC Rules (CFR 47) regarding broadband PCS. Data within this report demonstrates that the equipment tested complies with the FCC limits for broadband PCS devices. Elliott Laboratories, as duly authorized agent prepared this submittal. A copy of the letter of our appointment as agent is enclosed. If there are any questions or if further information is needed, please contact Elliott Laboratories for assistance. Sincerely, David W. Bare Principal Engineer DWB/bab Enclosures:Agent Authorization Letter Emissions Test Report with Exhibits File: R38114 Page 1 of 11 Electromagnetic Emissions Test Report and Application for Grant of Equipment Authorization pursuant to FCC Part 24, Subpart E Specifications for a Broadband PCS Device on the Cisco Systems, Inc. Model: VP1900BX FCC ID:LDKVP1900XX GRANTEE:Cisco Systems, Inc. 170 West Tasman Drive San Jose, CA. 95134-1706 TEST SITE:Elliott Laboratories, Inc. 684 W. Maude Avenue Sunnyvale, CA 94086 REPORT DATE:June 21,2000 FINAL TEST DATE:June 16, 2000 AUTHORIZED SIGNATORY:______________________________ David W. Bare Principal Engineer This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC DepartmentTest Report Report Date: June 21,2000 File: R38114Page 2 of 11 pages TABLE OF CONTENTS COVER PAGE..................................................................................................................................................................................1 TABLE OF CONTENTS.................................................................................................................................................................2 SCOPE...............................................................................................................................................................................................3 OBJECTIVE.....................................................................................................................................................................................3 STATEMENT OF COMPLIANCE................................................................................................................................................3 EMISSION TEST RESULTS.........................................................................................................................................................4 LIMITS OF POWER AND BANDWIDTH..............................................................................................................................4 LIMITS OF RADIATED SPURIOUS EMISSIONS................................................................................................................4 LIMITS OF FREQUENCY TOLERANCE.................................................................................................................................4 MEASUREMENT UNCERTAINTIES......................................................................................................................................5 EQUIPMENT UNDER TEST (EUT) DETAILS............................................................................................................................6 ENCLOSURE................................................................................................................................................................................6 SUPPORT EQUIPMENT............................................................................................................................................................6 EXTERNAL I/O CABLING........................................................................................................................................................6 TEST SOFTWARE.....................................................................................................................................................................6 TEST SITE........................................................................................................................................................................................7 GENERAL INFORMATION......................................................................................................................................................7 CONDUCTED EMISSIONS CONSIDERATIONS..................................................................................................................7 RADIATED EMISSIONS CONSIDERATIONS......................................................................................................................7 MEASUREMENT INSTRUMENTATION....…

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Contact Information

Applicant

Samuel Kim(Manager, Engineering)
[email protected]408-527-1446Fax: 408-527-1446

Technical Contact

Elliott LaboratoriesDavid W Bare
[email protected]408 245 7800

684 W. Moude Avenue · Sunnyvale, California · United States

Non-Technical Contact

Elliott LaboratoriesDavid W Bare
[email protected]408 245 7800

Test Firm

Elliott Laboratories, Inc.David Bare
408-245-7800Fax: 408-245-3499

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
124E1.93 GHz - 1.99 GHz776.00 mW236KGXW100.0000000000 Hz
Confidentiality
Long Term
Grant Notes
The antenna used for this transmitter is to be fixed-mounted on indoor permanent structures providing a seperation 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 Bureaus, including antenna co-location requirements of 1.1307(b)(3).

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