
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Airstar-Wireless Local Loop Fixed Subscriber Unit Installation Manual October 3, 1997
Fixed Subscriber Unit Installation Manual Table of Contents Release 1.00 10/03/97 Airstar-Wireless Local Loop i Proprietary Statement UTStarcom Inc. has prepared this manual for use by customers, UTStarcom personnel, and licensees. The information contained herein is the property of UTStarcom Inc. and shall neither be reproduced in whole nor in part without prior written approval from UTStarcom Inc. UTStarcom 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, arithmetic, and listing errors. Trademarks All trademarks and service marks used in this document belong to their respective owners. Warranty and Return Policy Refer to the terms and conditions of the contract for warranty and return policy details. Customer Service Refer to the terms and conditions of the contract for customer service policy details, or call the local UTStarcom Facility. UTStarcom’s Facilities are listed below: U.S. Facilities and Operations UTStarcom, Inc. 1275 Harbor Bay Rd. Alameda, CA 94502, USA Tel. 510 864 8800 Fax 510 864 8802 UTStarcom New Jersey R&D Center 33 Wood Avenue South 8 th floor Iselin, NJ 08830 Tel. 732 767 5200 Fax 732 548 1099 China Facilities and Operations UTStarcom (China) Ltd. 4 th Floor A&B, Beijing FuHua Tower No. 8 Chao Yang Men Bei Da Jie, Dong Cheng District, Beijing, 100027 P.R. China Tel 86-10-6554-2030 Fax 86-10- 6554-2058 Zhejiang Unitel Telecommunications Equipment Ltd 3/4F Building 3 Yile Industrial Park 129 Wenyi Rd. Hangzhou, 310012, P.R. China Tel. 86-571-886-2314 Fax 86-571-886-2349 UTStarcom, Shanghai Office Guang Dong UTStarcom Co. Ltd. Table of Contents Fixed Subscriber Unit Installation Manual 10/03/97 Release 1.00 Airstar-Wireless Local Loop ii 245 Tianping Rd. Jinguo Garden 803 Shanghai, 200030, P.R. China Tel. 86-21-6433-6223 Fax 86-21-6433-6226 4 Yunshan Road East, North River Yunshan Industry Zone Huizhou, Guangdong 516001, P.R. China Tel. 86-752-280-8868 or 86-752-280-8818 Fax 86-20-280-8838 UST Guangdong Subsidiary 352 Tianhe Road, 21F Guangdong, 510620, P.R. China Tel. 86-20-8758-4025 Fax 86-20-89753-7411 Nantian UTStarcom Inc. 43 Tianmushan Rd. Hangzhou, 310007, P.R.China Tel. 86-571-2314 Fax 86-571-797-5149 UTStarcom (Hangzhou) Ltd. 118 Moganshan Rd. 2 nd floor Hangzhou, 310005, P.R. China Tel. 86-571-880-0350 or 86-571-880-0369 Fax 86-571-805-6499 International Facilities and Operations UTStarcom, Singapore Office ACTEL Communications 141 Middle Road #06-02 GSM Building, Singapore 188976 Tel. 65-334-6602 Fax 65-334-6606 UTStarcom, India Office W.S. Telesystems Limited Dr. Brownamma Towers 11 Floor, 70/1, Mission Road Bangalore - 560 027, India Tel. 91-80-227-4444 Fax 91-80-222-5268 UTStarcom, Thailand Office For You Infosys Co., Ltd 47/15 Soi Lardprao 122 Bangkapi Bangkok 10310 Tel. 66-2-539-7140 or 66-2-934-0179 ext 80 Fax 66-2-539-7431 Fixed Subscriber Unit Installation Manual Table of Contents Release 1.00 10/03/97 Airstar-Wireless Local Loop iii WARNING! FCC RF EXPOSURE COMPLIANCE This PCS base station has been tested and complies with the Federal Communications Commission (FCC) RF exposure limits for General Population/Uncontrolled exposure environment. In addition, it complies with the following Standards and Guidelines: • FCC 96-326, Guidelines for Evaluating the Environmental Effects of Radio- Frequency Radiation. • FCC OET Bulletin 65 Edition 01-01 (2001) Supplement C, Evaluating Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields. • ANSI/IEEE C95.1-1992, IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. • ANSI/IEEE C95.3-1992, IEEE Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields - RF and Microwave. Antenna Installation Requirement: The antenna must be installed and located on a roof top site, pole, or building structure away from users and bystanders. It must be mounted in a manner to ensure that a minimum separation distance of 20cm is normally maintained between all users and bystanders. Important Safety Instructions • Read and follow all warning notices and instructions marked on the product or included in this document. • This product is intended to be used with a three-wire grounding type plug - a plug that has a grounding pin. This is a safety feature. Equipment grounding is vital to ensure safe operation. Do not defeat the purpose of the grounding type plug by modifying the plug or using an adapter. Prior to installation, use an outlet tester or voltmeter to check AC receptacle for the presence of earth ground. If the receptacle is not properly grounded, the installation must not continue until a qualified electrician can determine another method of grounding the equipment. • Do not allow anything to rest on the power or line cords and do not located the product where the power or line cords could be stepped on. • This product must be serviced only by a qualified service technician. • Special cables, which may be required by the regulatory inspection authority for the installation site, are the responsibility of the customer. Table of Contents Fixed Subscriber Unit Installation Manual 10/03/97 Release 1.00 Airstar-Wireless Local Loop iv • When installed in the final configuration, the product must comply with the applicable safety standards and regulatory requirements of the country in which it is installed. If necessary, consult with the appropriate regulatory agencies and inspection authorities to ensure compliance. • A rare phenomenon can create a voltage potential between the earth grounds of two or more locations. If products installed in separate locations are interconnected, the voltage potential may cause a hazardous condition. Consult a qualified electrical consultant to determine whether this …
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Introduction to This Manual Fixed Subscriber Unit Installation Manual Release 1.00 10/03/97 Airstar-Wireless Local Loop 1-1 1. Introduction to This Manual This manual contains all the information necessary to install and maintain the Fixed Subscriber Unit (FSU). 1.1 Organization This manual is organized to assist the installer and technician in gaining an understanding of the Fixed Subscriber Unit in terms of the system’s physical characteristics, installation instructions, and maintenance methods. Listed below are descriptions of each chapter in this manual : Introduction - Describes the contents of this manual. General Description - Provides a high level description of the Fixed Subscriber Unit System. System Construction - Provides a more detailed system description of physical characteristics. Installation Instructions - Details all the steps necessary to install the device. Acronyms and Abbreviations List - Provides definitions for each abbreviation and acronym used in this manual. Appendix A : Specifications - Lists the specifications for the FSU. 1-2 Introduction to This Manual Fixed Subscriber Unit Installation Manual 10/03/97 Release 1.00 Airstar-Wireless Local Loop Fixed Subscriber Unit Installation Manual General Description Release 1.00 10/03/97 Airstar-Wireless Local Loop 2-3 2. General Description The Fixed Subscriber Unit (FSU) is the radio equipment that connects to fixed standard telephones and is located in the subscriber’s residence. FSUs consist of a Radio Frequency (RF) interface and a telephone line interface. Together they manage the supplied line voltage, the ringing signal, Dial Tone (DT) and Busy Tone (BT) to the telephone, detect off-hook and on-hook states, and dialing. In a zone near the Radio Port (RP), the FSU uses a 4.5 dBi, omni-directional, attached antenna. In zones far from the RP, the FSU uses a 10 dBi, directional, Yagi type, attached antenna. In mid-range zones, the FSU uses a 7 dBi omni-directional antenna. The telephone line interface consists of a BRSH (Battery supply, Ringing Supervision, Hybrid) circuit, service tone generator, DTMF receiver, and ADPCM CODEC. The number of fixed standard connected telephones from the same battery supply circuit is three. The power of FSU is fed from the external DC power generated by AC adapter. Figure 2-1 shows the FSU in the Airstar-WLL system architecture. Phone FAX Computer Modem Fixed Ssubscriber Unit Phone FAX Computer Modem Indoor RP Outdoor RP Radio Port Controller Up to 32 Copper Pair Up to 5Km Copper Pair Up to 5Km ..... ..... ..... Personal Station Air Interface RCR STD-28 Main Distribution Frame Central Office Terminal 4 E1s ..... ..... ..... Personal Station Fixed Ssubscriber Unit Figure 2-1 : Overview of FSU in Airstar-WLL System The following sections describe the air interface call handling procedures for outgoing and incoming calls. In addition, brief descriptions of the General Description Fixed Subscriber Unit Installation Manual 10/03/97 Release 1.00 Airstar-Wireless Local Loop 2-4 authentication, hooking signal transmission, and meter pulsing signal transmission functions are provided. 2.1 Outgoing calls The call handling procedure for an outgoing call is depicted in Figure 2-2 and is described following the figure. A terminal on an FSU sends dialing information with standard in-band DTMF tones after recognizing dial tone. FSU 1 COCOT RPC RP RP 3 4 5 3 2 Switch MDF MDF Figure 2-2 : Outgoing Call 1. When the fixed standard telephone connected to the FSU goes off-hook, the FSU detects the off-hook state, seizes the radio link to the RP, and generates a signal to the standard telephone. If all radio channels are occupied, a Busy Tone is heard. Otherwise the FSU stores the dial code from the standard telephone, converts the outgoing message with the telephone’s number of Personal Handyphone System (PHS) protocol, and transmits the message to the RP. 2. The RP receives the message from that FSU through the radio link. Fixed Subscriber Unit Installation Manual General Description Release 1.00 10/03/97 Airstar-Wireless Local Loop 2-5 3. The RP resends the received message to the Radio Port Controller (RPC) through the twisted pair wires via the Main Distribution Frame (MDF). 4. The RPC converts the PHS protocol message to a Q.931 protocol message. In addition, the RPC extracts the dial code from the outgoing message, and changes it to DTMF signals. The Q.931 message is sent to the COT through the D-channel of the E1 line. 5. When the COT receives the outgoing message, it converts that message, selects and seizes the corresponding analog line interface to the CO, and returns the seized message to the RPC. The RPC sends the DTMF dialing signals to the CO Switch through the voice path via the MDF. After dialing, the RPC and RP connect all voice paths between the CO Switch and the FSU connected to the outgoing standard telephone. The destination telephone rings and is picked up, and the outgoing call is put through. A voice path is now established between the 2 telephones. 2.2 Incoming Call The call handling procedure for an incoming call is depicted in Figure 2-3 and is described following the figure. FSU 5 COCOT RPC RP RP 3 2 1 3 4 Switch MDF MDF Figure 2-3 : Incoming Calls General Description Fixed Subscriber Unit Installation Manual 10/03/97 Release 1.00 Airstar-Wireless Local Loop 2-6 1. A specific analog line is rung in the CO. The signal is sent to the COT via the MDF. 2. The COT detects the ringing of the line and sends the incoming message with the Q.931 calling number to the RPC. 3. When the RPC receives the incoming message from the COT, the RPC converts that Q.931 message to the PHS incoming message protocol and sends it through the MDF to all of the RPs. 4. The RPs page all FSUs and PSs. When the corresponding FSU number receives the paging message from the RP, it rings the connected telephone. 5. If the ringing telephone is lifted off-hook, an off-hook message is sent to the CO switch th…
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American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 September 17, 2001 RE: UTStarcomm FCC ID: O6YUTS-800FSU Please supply the following information on this Application. 1.) This equipment uses a standard RF connector. Please provide conducted RF Pout measurement including procedure. Please include timing information on the TDMA pulse. Please be sure the maximum transmit cycle is used. Conducted RF Pout Measurements: {Table 6-1 in report} Hewlett Packard power meter E4416A was used with a 10 dB attenuator attached to measure the output at the port. The TD pulse was measured on the spectrum analyzer to be 250ms, need to get the manufacturer’s data fram Scott. This phone employs TDMA-TDD modulation. PHS applies Time Division Multiplex Access (TDMA) and Time Division Duplex (TDD) techniques. Each individual radio link between the RP and the FSU/PS is assigned 1 time slot for a control channel (C-ch) and 3 slots for traffic channels (T-chs). In the case of a single RP, there are 4 time slots installed for radio links. One slot is the control channel for signaling and the other three are the traffic channels. Radio Features Carrier spacing 300 KHz Radio access TDMA-TDD Number of TDMA slots 4 (for full rate CODEC) Modulation p/4 shift QPSK (roll-off factor = 0.5) Transmission bit rate 384 kbps Speech coding 32 kbps ADPCM The manufacturer has determined the duty cycle as 12.5% 2.) Your RF Radiated Pout does not make sense. Assuming 17mW peak delivered to antenna with a +10dBi gain antenna the EIRP should be around 173mW [+22.4 dBm]. Explain. The RF Radiated measurement was re-measured and found to fall within reasonable calculated values. Please refer to revised report. 3.) Please confirm rated frequency tolerance. Measured values are below ~1.5ppm, but the request is for 5ppm. This should be 3ppm. Please see revised 731 form. 4.) Please provide justification for requested emission designator and not just necessary bandwidth. Justification of the requested emission designator is as in Section 2.201 (c) (4) gives a value “D” for the first symbol, i.e..., “Emission in which the main carrier is amplitude and angle modulated either simultaneously or in a pre-established sequence.” An “X” is used as the second symbol since the device is time division multiplexing and does not fall in any of the cases covered. The third symbol “W” is used as a combination of Aural reception and data transmission may be used as well with this device. 5.) FYI: All direct connections to a Spectrum Analyzer for Occupied Bandwidth need to use dBm and not dBuV at standard units. Spectrum Analyzer reference level must equal power output. Occupied re-measured in units of dBm. Please refer to revised report. 6.) FYI: Band Edge measurements and radiated emissions may not comply with the procedures set out in 24.238 and Part 2 once Pout is remeasured. Since Pout has not changed band edge remains the same. 7.) For each channel listed in Section 8 please provide Pout measured for Channels 1, 25, and 50. This should be listed on Table 8-1, 8-2, and 8-3 respectively. Pout has been added to headings of tables 8-1, 8-2, and 8-3. Please refer to revised report. l Page 2 October 1, 2001 William H. Graff Examining Engineer President and Director of Engineering mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 October 2, 2001 RE: UTStarcomm FCC ID: O6YUTS-800FSU There are still some outstanding issues, which are not resolved on the Application. 1.) Table 6.1 of the Test Report is in error. Power Output to antenna is listed in dBm and then converted to EIRP. This is in error – should be simply watts or milliwatts. EIRP removed from the heading. 2.) Occupied Bandwidth is still in error. Resolution Bandwidth used is 300Hz when it should be approximately 1% of emission bandwidth. This should be approximately 3 KHz for 300 KHz wide emission bandwidths. Please redo. Corrected 3.) Occupied Bandwidth is not set up so Reference Level is equal to conducted power output. Please redo. Reference level 12.2 dBm is conducted output power, remains unchanged for this channel 4.) Limit values in tables 9.1, 9.2, 9.3 appear to be calculated incorrectly. This also makes me question the rest of your procedure. As an example, if the limit is 43 + 10logP (-13dBm) and I add 25.1dBc I should approach the radiated power output of ~167mW. This is not happening Please review. Provide sample calculations as needed. Tables 9.1 through 9.3 level (dBc) and Limit (dBc) columns were inadvertently calculated from conducted power levels, now changed to EIRP dBc values. Difference is 10 dBi gain antenna 5.) On your answer to my question #1 of 09/17/2001, what does it mean to “...get the manufacturer’s data from Scott...”? Please disregard as that was typo. 6.) RF Exposure information mixes up mobile and fixed category language. Also, no calculations are presented. Please remedy Please see revised RF Exposure 7.) Be sure language in RF Exposure information and Manual match. William H. Graff Examining Engineer President and Director of Engineering mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 September 17, 2001 RE: UTStarcomm FCC ID: O6YUTS-800FSU Please supply the following information on this Application. 1.) This equipment uses a standard RF connector. Please provide conducted RF Pout measurement including procedure. Please include timing information on the TDMA pulse. Please be sure the maximum transmit cycle is used. 2.) Your RF Radiated Pout does not make sense. Assuming 17mW peak delivered to antenna with a +10dBi gain antenna the EIRP should be around 173mW [+22.4 dBm]. Explain. 3.) Please confirm rated frequency tolerance. Measured values are below ~1.5ppm, but the request is for 5ppm. 4.) Please provide justification for requested emission designator and not just necessary bandwidth. 5.) FYI: All direct connections to a Spectrum Analyzer for Occupied Bandwidth need to use dBm and not dBuV at standard units. Spectrum Analyzer reference level must equal power output. 6.) FYI: Band Edge measurements and radiated emissions may not comply with the procedures set out in 24.238 and Part 2 once Pout is remeasured. 7.) For each channel listed in Section 8 please provide Pout measured for Channels 1, 25, and 50. This should be listed on Table 8-1, 8-2, and 8-3 respectively. William H. Graff Examining Engineer President and Director of Engineering mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 October 2, 2001 RE: UTStarcomm FCC ID: O6YUTS-800FSU There are still some outstanding issues which are not resolved on the Application. 1.) Table 6.1 of the Test Report is in error. Power Output to antenna is listed in dBm and then converted to EIRP. This is in error – should be simply watts or milliwatts. 2.) Occupied Bandwidth is still in error. Resolution Bandwidth used is 300Hz when it should be approximately 1% of emission bandwidth. This should be approximately 3 KHz for 300 KHz wide emission bandwidths. Please redo. 3.) Occupied Bandwidth is not set up so Reference Level is equal to conducted power output. Please redo. 4.) Limit values in tables 9.1, 9.2, 9.3 appear to be calculated incorrectly. This also makes me question the rest of your procedure. As an example, if the limit is 43 + 10logP (-13dBm) and I add 25.1dBc I should approach the radiated power output of ~167mW. This is not happening Please review. Provide sample calculations as needed. 5.) On your answer to my question #1 of 09/17/2001, what does it mean to “...get the manufacturer’s data from Scott...”? 6.) RF Exposure information mixes up mobile and fixed category language. Also, no calculations are presented. Please remedy 7.) Be sure language in RF Exposure information and Manual match. William H. Graff Examining Engineer President and Director of Engineering mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
Engineering and Testing for EMC and Safety Compliance 360 Herndon Parkway, Suite 1400 Herndon, VA 20170 Phone: 703-689-0368; Fax: 703-689-2056; Metro: 703-471-6441 September 6, 2001 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 To Whom It May Concern: The following information is to be held confidential pursuant of 47 CFR Part 0 §0.457 and Section 552(b)(4) of the Freedom of Information Act, because the information provided contains trade secrets and proprietary. If made public, the information might be used to the disadvantage of the applicant in the market place. • Schematics • Product Description • Block Diagram • Bill of Materials (Parts List) Best Regards, Melissa Carter [email protected] Rhein Tech Laboratories, Inc.
360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 50 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU APPENDIX J: EXTERNAL PHOTOGRAPHS PHOTOGRAPH 16: OP 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 51 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 17: BOTTOM VIEW 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 52 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 18: RIGHT SIDE VIEW PHOTOGRAPH 19: LEFT SIDE VIEW PHOTOGRAPH 20: FRONT SIDE VIEW 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 53 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 21: BACK SIDE VIEW 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 54 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 22: TOP OF ANTENNA 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 55 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 23: BACK OF ANTENNA 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 56 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 24: TOP OF PSJ_JR CONNECTOR BOX 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 57 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 25: BACK OF PSJ_JR CONNECTOR BOX PHOTOGRAPH 26: FRONT OF PSJ_JR CONNECTOR BOX 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 58 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 27: BATTERY BOX 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 59 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 28: VOLTAGE ADAPTER
360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 33 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU APPENDIX E: LABEL INFORMATION FCC ID LABEL LOCATION OF LABEL ON EUT PHOTOGRAPH 1: LABEL LOCATION Label will be placed on the bottom of the unit UTStarcom UTS-800 FSU FCC ID: O6YUTS-800FSU CANADA: XXXXXXXX
360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 40 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU APPENDIX I: INTERNAL PHOTOGRAPHS PHOTOGRAPH 6: BOTTOM OF MAIN PCB 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 41 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 7: TOP OF MAIN PCB 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 42 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 8: TOP OF RF PCB WITH SHIELDS 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 43 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 9: TOP OF RF PCB WITH SHIELDS REMOVED 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 44 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 10: BOTTOM OF RF PCB WITH SHIELDS 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 45 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 11: BOTTOM OF RF PCB WITH SHIELDS REMOVED 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 46 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 12: TOP OF PCB’S IN CHASSIS 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 47 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 13: BOTTOM OF INSIDE COVER 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 48 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 14: INSIDE OF TOP COVER 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 49 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU PHOTOGRAPH 15: INSIDE OF ANTENNA
360 Herndon Parkway Suite 1400 Herndon, VA 20170 http://www.rheintech.com FCC And Canadian Certification Report Page 26 2001220/QRTL01-210 UTStarcom, Inc. UTS-800FSU APPENDIX A: FCC PART 1.1307, 1.1310, 2.1091, 2.1093: RF EXPOSURES COMPLIANCE (RSS-133 §8) General Information: FCCID: O6YUTS-800FSU Environment: General Population/Uncontrolled Exposure Device category: Mobile under Part 2.1091 Antenna Types:: Antenna Type Gain (dBi) 1.9G-PA019 Directional 10 Operating Conditions: The main unit is installed indoor on a stable surface such as a desk or wall. The antenna must be installed and located outdoor on a roof top site, pole, or building structure away from users and bystanders. A minimum separation distance of 20 cm is normally maintained between all users, bystanders and the antenna (including any radiating structure) during normal operation of this device. The device is powered by an AC/DC adapter Test signal, time-averaging, max. measured output: Mode: TDMA Frequency Range Output Power (W) Freq. Tolerance Emission Designator 1895.15-1909.95 MHz 0.069 EIRP 5 ppm 290KDXW MPE Calculation: The maximum distance, from the antenna at which MPE is met or exceeded, is calculated from the equation relating field strength E in V/m, transmit power P in Watts, transmit antenna numeric gain G, and separation distance in meters: d GP mVE ×× = 30 )/( Power density: 3770 )/( 2 2 E cmmWP d = Frequency A 1895 MHz The limit for general population/uncontrolled exposure environment above 1500MHz is 1 2 /cmmW. 360 Herndon Parkway Suite 1400 Herndon, VA 20170 http…
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360 Herndon Parkway · Herndon, Virginia · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 24E | 1.90 GHz - 1.91 GHz | 69.00 mW | 290KDXW | 3.0000000000 ppm |

Tri-Band CDMA Phone W/ Bluetooth
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Tri Band CDMA Phone with Bluetooth
Equipment Class
PCE - PCS Licensed Transmitter held to ear
Cellular/ PCS CDMA Phone with Bluetooth
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Cellular/ PCS CDMA Modem
Equipment Class
PCB - PCS Licensed Transmitter
Cellular/ PCS CDMA Phone
Equipment Class
PCE - PCS Licensed Transmitter held to ear