FCCID.CO- FCC ID Database
HomeCompaniesEquipment ClassesSearch

© 2026 FCC ID Database. All rights reserved.

AboutContactData sourced from FCC public records
  1. Home/
  2. UTStarcom Korea Technologies Ltd./
  3. O6YUTS-EA1H75B

O6YUTS-EA1H75BWireless Local Loop Fixed Terminal

UTStarcom Korea Technologies Ltd.
Wireless Local Loop Fixed Terminal - FCC ID O6YUTS-EA1H75B - UTStarcom Korea Technologies Ltd.
Click to zoom

Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Oct 18, 2000
Application Purpose
Original Equipment
Date of Application
Nov 03, 2000
Equipment Note
Wireless Local Loop Fixed Terminal
Frequency Range
1895.15000000 - 1909.95000000
Company
UTStarcom Korea Technologies Ltd.
Country
South Korea

Documents & Files

Select a file to view

Users Manual

↗
↗

Block Diagram

↗

Cover Letter(s)

↗
↗
↗
↗

External Photos

↗

ID Label/Location Info

Internal Photos

↗

Operational Description

↗

RF Exposure Info

↗

Test Report

↗
↗

Test Setup Photos

↗

Document Text

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

Users Manual

Wireless Local Loop RPC/RP Installation & Configuration Manual WLL-RPC/RP-IN/UM-1.0 June 19, 2000 RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 ii Compiled by (Joseph) Guangping Zhang  Copyright 2000 UTStarcom Inc. All Rights Reserved. This manual has been prepared for UTStarcom customers, UTStarcom personnel, and licensees. The information contained herein is the property of UTStarcom Inc. and shall be neither reproduced nor utilized in any form or by any means, electronically or mechanically, in whole or in part, without prior written approval from UTStarcom Inc. RPC/RP Manual 19June2000 WLL-RPC/RP-IN/UM-1.0 iii Important Safety Instructions ! Safety Information: Installer and User WARNING The device is to be installed and operated at a “fixed location”. The term "fixed location" means that the device is physically secured at one location and is not able to be easily moved to another location. It must be located - (for indoor RPs) up on or near the ceiling away from users or bystanders – (for outdoor RPs) on the roof top site, pole, building, or traffic light away from users or bystanders. It must be mounted in a manner to ensure that a minimum separation distance of 20cm is normally maintained between all users, bystanders and the antenna (including any radiating structure). The installer may be required to perform an MPE evaluation and an Environmental Assessment (EA) of the location at the time of licensing per CFR 47 Part 1.1307. Fixed mounted antennae that are co-located with other antennae must satisfy the co-location requirements of Part 1.1307. Limits: The limit for general population/uncontrolled environment exposures is 1 2 /cmmWfor the band 1895-1910 MHz. MPE evaluation: The following calculations are provided for the more restrictive limit: uncontrolled environment/general population. The calculated minimum safe distance, Radii(cm), is approximately 10 times lower than the minimum required installation distance of 20 cm per Part 2.1091. RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 iv Therefore, the transmitter model numbers EA7H74B and EA7H75B complies with the MPE requirements by providing a safe separation distance between the antenna (including any radiating structure) and any persons. The calculations were performed using formulas found in OET Bulletin 65 Edition 97-01(1997). Transmitter Specifications: Antenna Type Gain (dBi) Output power EIRP (dBm) Output Power (dBm) Base stations M/N Minimum Installation Distance (cm) 2.4 21.4 19 dBm (Peak) EA7H74B 20 Built-in 2.4 12.4 10 dBm (avg) EA7H74B 20 7 26 19 dBm(Peak) EA1H75B 20 Omni- Directional 7 17 10 dBm (avg) EA1H75B 20 MPE Radii (m) For general population/uncontrolled environment Power P(W) Max. Peak Antenna G numeric Radii(cm) Base stations M/N 0.08 1.7 1.5 EA7H74B 0.08 5.0 2.5 EA1H75B General Safety Instructions: • The sign on the top right corner is intended to alert the user the presence of important operation and maintenance (service) instructions in the literature accompanying the product. Also notice warnings such as “WARNING!” or “CAUTION.” • When installing, operating, or maintaining the system, please follow the basic safety procedures in order to reduce the risk of fire, electric shock, and injury to persons, as listed below: • Read and understand all instructions. • Follow all warnings and instructions marked on this product. • For information on proper mounting instructions, consult the Installation Manual provided with this product. • Install only equipment identified in the Installation Manual provided with this product. Use of other equipment may result in improper connection of circuitry leading to fire or injury to persons. RPC/RP Manual 19June2000 WLL-RPC/RP-IN/UM-1.0 v • The telecommunication interfaces should not leave the building unless connected to telecommunication devices providing primary and secondary protection, as applicable. • This product should only be operated from the type of power source indicated on the marking label. • This equipment must be provided with a readily accessible disconnect device as part of the building installation. • Installation must include an independent frame ground drop to building ground. Refer to installation instructions. • Do not use this product near water, for example in a wet basement. • Do not place this product on an unstable cart, stand, or table. The product may fall, causing serious damage to the product. • Use caution when installing or modifying telecommunications lines. • Never install telecommunications wiring during a lightning storm. • Never install telecommunications in wet locations. • Never touch uninsulated telecommunications wires or terminals unless the telecommunications line has been disconnected at the network interface. • Never touch uninsulated telecommunications wires or terminals carrying direct current or ringing current or leave this wiring exposed. Protect and tape such wiring and terminals to avoid risk of fire, electric shock, and injury to service personnel. • Never push objects of any kind into this product through slots as they may touch dangerous voltage points or short-out parts that could result in a risk of fire or electrical shock. Never spill liquids of any kind on this product. • Slots and openings in the unit are provided for ventilation, to protect it from overheating. These openings must not be blocked or covered. This product should not be placed in a built-in installation unless proper ventilation is provided. • To reduce the risk of an electrical shock, do not disassemble this product. Service should be performed by trained personnel only. Opening or removing covers and/or circuit boards may expose you to dangerous voltages or other risks. Incorrect re-assembly can cause electrical shock when the unit is subsequently used. RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 vi • This equipment is intended for installation in restricted access locations where access is controlled or where access can only be gained …

Text truncated - open the document above for the full version.

Users Manual

RPC/RP Configuration RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 4-12 Figure 4-13: RPC Window 4.2.1 Set Time To set the system time, follow the procedures below: 1. Click the Set Time option on the Configuration pull-down menu. The Set Time window appears, as shown in the figure below. Figure 4-14: Set Time Window 2. By default the RPC time is set to the current time of the PC. Set new date and time to RPC if necessary. Make necessary adjustment using the Arrow RPC/RP Manual RPC/RP Configuration 19June2000 WLL-RPC/RP-IN/UM-1.0 4-13 buttons in the fields. Click OK to accept the setting or Cancel to stop the transaction. 4.2.2 RPC Change Sometimes the operation data for an RPC may not be compatible to the hosting RPC. Use this function to make changes to the SDM (System Data Memory) so that it can accommodate the hosting RPC. Before making any change, the RPC device manager will disconnect from the RPC. 1. From the Configuration main menu, select RPC Change. This opens the RPC Assignment window, as illustrated in the figure below. Figure 4-15: RPC Assignment Window 2. Select the target RPC and click OK. This will change the SDM to fit the target RPC. 3. If this command doesn’t work, exit the current Netman session and restart. 4.2.3 Unit Control The Unit Control option can be accessed through the Maintenance pull-down menu. It has the following functions: • Blockade: block or unblock RPIF, E1IF, RPCs, RPs • TimeSlot Layout: configure the RP control channel time slot • Maintenance: set or cancel system maintenance • Master RP: change Master RP • RPC Sync: RPC Synchronization • Online Trace: retrieve the information of the active RP RPC/RP Configuration RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 4-14 4.2.3.1 Blockade/Unblockade The Blockade option is used to block or unblock RP interface, E1 interface, RPs, or the entire RPC. Use this function to block traffic from a malfunctioning device. It is also used when units are replaced. Netman 2000 must be connected to the WLL/V5WLL in order to perform this function. Another important usage of this option is to regain the synchronization of the slave RPCs upon the recovery of the master RPC. 1. From the Maintenance main menu, select Unit Control and then Blockade. This opens the Blockade/Unblockade window, as displayed in the figure below. Figure 4-16: Blockade/Unblockade Window Field Name Description RPC The entire RPC, including all the units under its control E1-I/F #... E1 interface. Each RPC uses 4 E1 interfaces to communicate with WLL/V5WLL. RP-I/F #... RP interface. RPC uss 8 RP interfaces to control RPs. Each RP interface is connected to 4 RPs. All RP All the 32 RPs RP #... Individual RP. There are altogether 32 RPs under each RPC. Blockade If this radio button is selected, the selected unit is blocked. UnBlockade If this radio button is selected, the selected unit is unblocked. Table 4-1: Blockade/Unblockade Window Field Description 2. Select the target E1 interface, RP interface, RP, or RPC, and then select Blockade or Unblockade. Click OK. Selecting RPC will block or unblock all RPC/RP Manual RPC/RP Configuration 19June2000 WLL-RPC/RP-IN/UM-1.0 4-15 the units controlled by the RPC. No new calls will be accepted and all the calls in progress are allowed to complete and then dropped. 3. When the action is implemented, the system displays a message in the Self Message window, and the Status View window will also show the Blockade result, as illustrated in the figure below. Use the window to verify the result. Figure 4-17: Self Message and Status View window for Blockade F NOTE: If an RPC or all RPs are blocked, calls cannot be made. 4. Zero “o” in the Blockade Maint column means the unit is blocked, and dash “- ” means the unit is unblocked. The Status and the Self Messages windows both indicate that RP#1 and RP#2 are blocked. 5. There are two ways to access the Status View window. One is to click Status and then the relevant options: RPC, RPs, RP-I/F Board, E1 Signal, Node-I/F Board, Air Channel, or TimeSlot Status. The other is to click the target item on the left frame of the RPC window. In either case the Status View window opens on the right frame. Of course, one can always access the window by clicking the relevant toolbar. RPC/RP Configuration RPC/RP Manual WLL-RPC/RP-IN/UM-1.0 19June2000 4-16 4.2.3.2 TimeSlot Layout F WARNING: Users are NOT recommended to make changes to the settings of the Time Slot. Use with caution! When connected to an RPC, use this function to reconfigure the RP control channel time slot. This function is used to complete the RP configuration and make it usable. This function applies to both RPCs and RPs. 1. Before configuring the time slot, use the Blockade function to block the target RPC or PC. 2. From the Maintenance main menu, select Unit Control and then TimeSlot Layout. This opens the Time Slot Layout window, as shown in the figure below. Figure 4-18: Time Slot Layout Window 3. Select the target RPC or RP. 4. Select Measure Level1. If separation is not completed, try another one from Measure Level2 through Measure Level4. Selecting No Selection may accelerate separation. 5. Select No Selection. If selection must be made, select one from Slot #1 through Slot #80. 6. Click OK to close the window. RPC/RP Manual RPC/RP Configuration 19June2000 WLL-RPC/RP-IN/UM-1.0 4-17 7. Unblock the RPC or RP. F NOTE: The Time Slot Layout window is for configuration purpose only. Actual separation is done when the target RPC or RP is unblocked. 4.2.3.3 Maintenance Use this function to set RPC maintenance status, test RPs, and do other configuration. Eligible units are fully installed RPCs and installed RPs. F NOTE: General PSs can not use RP when maintenance is under way. 1. From the Maintenance main menu, click Unit Control, and then Maintenance. The Set/Cancel Maintenance window opens, as displayed in the figure below. Figure 4-19: Set / Cancel Maintenance Window 2. Select the target RPC or RP, and click Set to set t…

Text truncated - open the document above for the full version.

Block Diagram

15Mar2000 WLL-SYS-REF-2.1 UTStarcom Proprietary Not for use or disclosure outside UTStarcom, Inc. or any of its subsidiaries except under prior written agreement. 5 Radio Port 5. Radio Port 5.1 General Description The Radio Port (RP) is the radio frequency base station that relays the communication between the user side and the operator and network side. The number of RPs and their distribution throughout a service area depend on the following factors: • Topography of the service area • Subscriber distribution in the service area • Desired Grade of Service and traffic load There are two types of RPs: Outdoor Type RP - two versions of outdoor RPs are available: standard power and high power. The standard power RP is designed to cover up to 2.5 Km from the base station. The high-power RP extends to coverage range up to 5 Km. The outdoor RP’s are weather-proof and installed on poles, buildings or traffic lights. Indoor Type RP - is small in size and can be installed in public and semi-public houses like government offices, banks, or office buildings. In the case of the standard power outdoor RP and indoor RP, power is provided remotely via twisted pair wire from the RPC along with the communications signals. The high power RP is powered by a local source. The radio link between RP, FSU, SSU or PS is based on RCR STD-28 PHS technology, which defines frequency bands, protocol, and so on. The RPs are remotely programmable via software download from Netman. Figure 5-1 shows the block diagram of a RP. 5-2 Radio Port Airstar Reference Manual WLL-SYS-REF-2.1 15Mar2000 RF (T X ,R X ) MOD DEM TD M A/TD D Channel Controller Layer 1 & Layer 2 Controller Line I/F RAM CPU RF Cont. EEPROM Boot ROM Flash ROM DC-DC Converter 5V DC 30V DC Figure 5-1- Radio Port (RP) Block Diagram Airstar Reference Manual Radio Port 5-3 15Mar2000 WLL-SYS-REF-2.1 5.2 Traffic Handling PHS applies Time Division Multiple Access (TDMA) and Time Division Duplex (TDD) techniques. Each individual radio link between an RP and FSU/PS is assigned 1 time slot for a control channel (C-Ch) and 3 time slots for traffic (speech) channels (T-Chs). 5.2.1 Stand-alone RP In the case of an isolated RP there are 4 time slots installed for radio links. One slot is a control channel for signaling and the other three are traffic channels. The number of accommodated subscribers in that RP covering the zone calculated according to the Erlang-B model is as follows: • Erlang per zone (3 T-chs, GOS = 99%) = 0.455 Er • Subscribers (FSUs or PSs) (0.455 ÷ 0.08) = 6 Subscribers 5.2.2 Group controlled RPs Using a group configuration, up to eight RPs in the same RPC share one Control Channel, which is useful for high traffic areas. One master RP can control a maximum of seven slave RPs in the same area. The master and slave RPs are designated in the RPC. 5-4 Radio Port Airstar Reference Manual WLL-SYS-REF-2.1 15Mar2000 RPC C ch x 1 Zone 8 RPs Group Control Operation Slave T ch x 3 T ch x 4 Master Slave T ch x 4 Slave T ch x 4 Slave T ch x 4 Slave T ch x 4 Slave T ch x 4 Slave T ch x 4 Figure 5-2 - Group Control RPs In an eight group control mode, the number of accommodated subscribers in the group control coverage zone is calculated in accordance with the Erlang-B model as follows: • Erlang per zone (31 T-chs, GOS = 99%) = 21.2 Er • Subscribers (FSUs or PSs) (21.2 ÷ 0.08) = 265 Subscribers The comparison for the number of accommodated subscribers between the group controlled RPs and non-group RPs is shown in Figure 5-3. Airstar Reference Manual Radio Port 5-5 15Mar2000 WLL-SYS-REF-2.1 20 0 4 8 12 16 12345678 4 subs .455 (erl) 100 50 200 150 250 11 subs .91 (erl) 17 subs 1.365 (erl) 22 subs 1.82 (erl) 28 subs 2.28 (erl) 34 subs 2.73 (erl) 40 subs 3.19 (erl) 46 subs 3.64 (erl) 31 subs 2.5 (erl) 65 subs 5.16 (erl) 101 subs 8.11 (erl) 140 subs 11.2 (erl) 181 subs 14.5 (erl) 223 subs 17.8 (erl) 265 subs 21.2 (erl) Non Group Control Operation Group Control Operation Notes: GOS = 1% .08 erl/subscriber ErlangSubscribers Traffic Capacity Number of RPs Figure 5-3 - Subscribers per RP in Group and Non-group Control 5-6 Radio Port Airstar Reference Manual WLL-SYS-REF-2.1 15Mar2000 5.3 Air Interface The radio interface has four-channel time division multiple access capability with time division duplexing (4-channel TDMA-TDD), which provides one control channel and three traffic channels for each cell station. TDMA-TDD frame(5ms) base station transmissionPHS handset transmission Base station PHS Handset #2 PHS Handset #3 PHS Handset #1 CCHT2T4 CCH R4 R2 T2 R2CCHR4 T2 CCH: signalling channel T2, T4: Traffic channel (transmitted) R2, R4: Traffic channel (received) PHS handset #1: stand-by on signalling channel PHS handset #2: call in progress in the second slot PHS handset #3: call in progress in the fourth slot T2 R2 : transmission slot : receiving slot : idle slot R2 R4 R4 R4 R2 Figure 5-4 - Radio Channel Structure The radio frequency allocation shown in Figure 5-4 displays a typical radio channel structure in which three wireless local loop subscribers are operating through a single RP. The control channel can be assigned to any of the 4 timeslots. Traffic channel assignment is performed by the RP using a distributed- autonomous dynamic channel assignment scheme and is an essential function of the Airstar WLL radio system. Channel assignment for new communication is selected from the available channel resources mapped in a two-dimensional frequency-time matrix updated by checking signal strength and interference conditions when the call is established. A channel needs to have less than 17 dBμV to be considered available. The RP also completes handling of the signaling process over the radio link. Airstar Reference Manual Radio Port 5-7 15Mar2000 WLL-SYS-REF-2.1 Due to the separation of traffic and control channels, traffic channels can be allocated in a distributed and autonomous manner by employing the switching TDMA mechanism. In addition, when using TDMA-TDD and providi…

Text truncated - open the document above for the full version.

Cover Letter(s)

C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 5 of 46 1 Letter of Agency

Cover Letter(s)

C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 5 of 46 1 Letter of Agency

Cover Letter(s)

-----Original Message----- From: William Graff [mailto:[email protected]] Sent: Saturday, November 04, 2000 4:51 PM To: Frank Coperich Cc: George Tannahill Subject: RE: Please resolve the following issues. TC99079 Frank, The correspondence received my me did not have a Correspondence Reference Number, consequently I could not respond via the e-filing site. A copy has been sent to George Tannahill per his standing instructions [whenever I get a request from OET which does not have this reference number]. UTStarcom O6YUTS-EA1H75B TC99079 To begin, there is only one configuration identified in this Application: an outdoor unit. I believe the manual has confused the issue for you in that it describes the outdoor unit (O6YUTS- EAH75B) and the indoor unit (O6YUTS-EA74B) in one 156 page volume. Please review 1.) You are correct this unit is incorrectly identified as a Pico base station: it would be best to describe as a multi subscriber fixed rooftop wireless local loop terminal. This has been corrected on the Grant. 2.) This device operates with an antenna of not greater than 7dBi. Peak conducted power is now shown on the Grant. 3.) The external photo is appropriate for this transmitter. Note the "N" connectors show n on the photographs. Please indicate if you want additional photos of the antenna configurations. 4.) Noted. 5.) Please re-examine the Manual in light of the fact that this is a combined indoor / outdoor manual. We need to know if these comments are still valid. Thanks, Bill Graff AmericanTCB

External Photos

C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 41 of 46 22 EXTERNAL PHOTOGRAPHS 22.1 R IGHT S IDE V IEW 22.2 L EFT S IDE V IEW C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 42 of 46 22.3 B OTTOM V IEW 22.4 B ACK V IEW C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 43 of 46 22.5 T OP V IEW 22.6 F RONT V IEW C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 44 of 46 22.7 F RONT I NNER HOUSING 22.8 L EFT I NNER HOUSING C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 45 of 46 22.9 R IGHT I NNER HOUSING 22.10 T OP I NNER HOUSING C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 46 of 46 22.11 B OTTOM I NNER HOUSING

Internal Photos

C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 34 of 46 21 INTERNAL PHOTOGRAPHS 21.1 S OLDER S IDE OF RF PCB 21.2 S OLDER S IDE OF P OWER PCB C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 35 of 46 21.3 S OLDER S IDE OF M AIN PCB 21.4 S OLDER S IDE E XTERNAL PCB C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 36 of 46 21.5 I NSIDE UNIT C OVER R EMOVED 21.6 I NSIDE OF I NNER H OUSING C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 37 of 46 21.7 I NSIDE F RONT B EVEL 21.8 C OVER AT A NTENNA C ONNECTION R EMOVED C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 38 of 46 21.9 F RONT V IEW OF I NNER U NIT WITH C OVER R EMOVED 21.10 C OMPONENT S IDE OF RF PCB C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 39 of 46 21.11 C OMPONENT S IDE OF P OWER PCB 21.12 C OMPONENT S IDE OF M AIN PCB C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 40 of 46 21.13 C OMPONENT S IDE OF E XTERNAL PCB 21.14 B OTTOM OF I NNER U NIT

Operational Description

C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 31 of 46 18 PRODUCT DESCRIPTION Item Specifications RF output power average (Peak) 10 mW (80 mW) Sensitivity (Static BER = 1%) 14 dB μV Antenna (Diversity) 2 external antennae (2 branch) Diversity RX (uplink) Antenna selection diversity (frame by frame) TX (downlink) Transmitter antenna selection diversity (2 branch) Air interface Based on RCR STD-28 ver.2 RPC interface Proprietary BRI equivalent (4B+D+K) x 1 Speech coding rate 32 kbps (ADPCM) x 3 or 4 Maximum wire line length (⇔ RPC) 3.5 km (φ 0.4) 5.0 km (φ 0.5) Maximum power consumption Approx. 3 W Power source Line power feeding (phantom) from RPC 56 - 116 V DC Operational Environment Temperature -10° to + 50°C Humidity Less than 95 % (non-condensing) Size 260 x 215 x 100 mm Weight Approx. 2 kg Line connection Screw less terminal Antenna connection TNC connector Battery backup None

RF Exposure Info

COMPANY NAME: UTSTARCOM, INC. EUT: UTS-EA1H75B WORK ORDER NUMBER: 2000322 FCC ID: O6YUTS-EA1H75B Page 30 of 46 16.3 TRANSMITTER SPECIFICATIONS: Antenna Type Gain (dBi) Output Power Peak (dBm) Duty Cycle (%) Base stations M/N Minimum Installation Distance (cm) Omni- Directional 7 19 dBm (80mW) 100 UTS- EA1H75B 20 16.4 MPE RADIUS FOR GENERAL POPULATION/UNCONTROLLED ENVIRONMENT Power P(W) Max. Peak Antenna numeric G Radius(cm) Base stations M/N 0.08 5.0 (7 dBi) 2.5 UTS- EA1H75B

Test Report

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 TYPE CERTIFICATION REPORT UTStarcom, Inc. 33 Wood Avenue South 3 rd Floor Iselin, NJ 08830 732-767-5263 (Scott Black) MODEL: UTS-EA1H75B FCC ID: O6YUTS-EA1H75B September 21, 2000 S TANDARDS R EFERENCED FOR THIS R EPORT P ART 2: 1999 F REQUENCY A LLOCATIONS AND R ADIO T REATY M ATTERS ; G ENERAL R ULES AND R EGULATIONS P ART 15: 1999 §15.109: R ADIATED E MISSIONS L IMITS P ART 24 (E): 1998 P ERSONAL C OMMUNICATIONS S ERVICES – B ROADBAND PCS ANSI C63.4-1992 S TANDARD F ORMAT M EASUREMENT /T ECHNICAL R EPORT P ERSONAL C OMPUTER AND P ERIPHERALS ANSI/TIA/EIA603- 1992 L AND M OBILE FM OR PM C OMMUNICATIONS E QUIPMENT M EASUREMENT AND P ERFORMANCE S TANDARDS ANSI/TIA/EIA 603-1-1998 A DDENDUM TO ANSI/TIA/EIA 603-1992 FCC Rules Parts Frequency Range Output Power (W) Freq. Tolerance Emission Designator 24(E) 1895-1910 MHz 0.414 EIRP 13 ppm 277KDXW REPORT PREPARED BY: EMI Technician: Daniel Baltzell Administrative Writer: Melissa Fleming Document Number: 2000322 No part of this report may be reproduced without the full written approval of Rhein Tech Laboratories, Inc. C OMPANY N AME : UTS TARCOM , I NC . EUT: UTS-EA1H75B W ORK O RDER N UMBER : 2000322 FCC ID: O6YUTS-EA1H75B Page 2 of 46 T ABLE OF C ONTENTS 1 Letter of Agency ................................................................................................................................................ 5 2 Letter of Confidential........................................................................................................................................ 6 3 GENERAL INFORMATION........................................................................................................................... 7 3.1 T EST F ACILITY ............................................................................................................................................... 7 3.1 R ELATED S UBMITTAL ( S )/G RANT ( S )............................................................................................................... 7 4 CONFORMANCE STATEMENT................................................................................................................... 8 5 EMISSIONS TEST EQUIPMENT LIST ........................................................................................................ 9 5.1 T ESTED S YSTEM D ETAILS ............................................................................................................................ 11 5.1.1 External Components ........................................................................................................................ 11 5.1.2 Internal Components ......................................................................................................................... 11 5.2 C ONFIGURATION OF T ESTED S YSTEM .......................................................................................................... 12 5.3 F IELD S TRENGTH C ALCULATION ................................................................................................................. 13 6 CONDUCTED EMISSIONS – POWER LINES .......................................................................................... 14 7 RADIATED MEASUREMENT ..................................................................................................................... 15 8 FCC RULES AND REGULATIONS PART 2 §2.1046 (A): RF POWER OUTPUT: CONDUCTED – PART 24.232(C)....................................................................................................................................................... 16 8.1 T EST P ROCEDURE ........................................................................................................................................ 16 8.2 T EST D ATA .................................................................................................................................................. 16 8.3 T EST E QUIPMENT ......................................................................................................................................... 16 9 PART 2.1046 (A) RF POWER OUTPUT: RADIATED – EIRP PART 24.232 ......................................... 17 9.1 T EST P ROCEDURE ........................................................................................................................................ 17 9.1.1 Substitution Method: ERP ................................................................................................................ 17 9.1.2 Calculation Method: EIRP ............................................................................................................... 17 9.2 T EST D ATA .................................................................................................................................................. 18 9.3 T EST E QUIPMENT ......................................................................................................................................... 18 10 PART 2 §2.1051: SPURIOUS EMISSIONS AT ANTENNA TERMINALS – PART 24.238............. 19 10.1 T EST P ROCEDURE .................................................................................................................................... 19 10.2 T EST D ATA .............................................................................................................................................. 19 4.3 T EST E QUIPMENT ......................................................................................................................................... 21 11 BAND-EDGE COMPLIANCE - PART 24.229 AND PART 24.238 .................................................... 22 11.1 T EST P ROCEDURE : .................................................................................................................................. 22 11.2 T EST D ATA ............................…

Text truncated - open the document above for the full version.

Test Report

COMPANY NAME: UTSTARCOM, INC. EUT: UTS-EA1H75B WORK ORDER NUMBER: 2000322 FCC ID: O6YUTS-EA1H75B Page 26 of 46 13 FCC RULES AND REGULATIONS PART 2 §2.1049 (C) (1): OCCUPIED BANDWIDTH – PART 24.238 OCCUPIED BANDWIDTH (99% POWER BANDWIDTH) - COMPLIANCE WITH THE EMISSION MASKS 13.1 TEST PROCEDURE ANSI/TIA/EIA-603-1992, section 2.2.11 Device with digital modulation: operation to …

Text truncated - open the document above for the full version.

Contact Information

Applicant

Chung-Sung Lee(Director, R&D)
[email protected]82-2-368-9023Fax: 82-2-2057-0181

Technical Contact

Rhein Tech Laboratories, Inc.Bruno Clavier
[email protected]703 689 0368

360 Herndon Parkway · Herndon, Virginia · United States

Test Firm

Rhein Tech Laboratories, Inc.Rick McMurray
[email protected]703-689-0368Fax: 703-689-2056

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
124E1.90 GHz - 1.91 GHz80.00 mW277KDXW13.0000000000 ppm
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. This transmitter may operate with a 7 dBi external antenna. The antenna installation and operating configurations of this transmitter, including antenna gain and cable loss must satisfy MPE categorical Exclusion Requirements of 2.1091. The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

Other Applications from UTStarcom Korea Technologies Ltd.

Tri-Band CDMA Phone W/ Bluetooth - FCC ID O6Y-CDM7176 - UTStarcom Korea Technologies Ltd.
O6Y-CDM7176

Tri-Band CDMA Phone W/ Bluetooth

Mar 31, 2008

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Tri Band CDMA Phone with Bluetooth - FCC ID O6Y-CDM7126 - UTStarcom Korea Technologies Ltd.
O6Y-CDM7126

Tri Band CDMA Phone with Bluetooth

Jan 21, 2008

Equipment Class

PCE - PCS Licensed Transmitter held to ear
Cellular/ PCS CDMA Phone with Bluetooth - FCC ID O6Y-CDM1450 - UTStarcom Korea Technologies Ltd.
O6Y-CDM1450

Cellular/ PCS CDMA Phone with Bluetooth

Jun 19, 2007

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Cellular/ PCS CDMA Modem - FCC ID O6Y-CDMRF101 - UTStarcom Korea Technologies Ltd.
O6Y-CDMRF101

Cellular/ PCS CDMA Modem

Jun 03, 2007

Equipment Class

PCB - PCS Licensed Transmitter
Cellular/ PCS CDMA Phone - FCC ID O6Y-CDM7026 - UTStarcom Korea Technologies Ltd.
O6Y-CDM7026

Cellular/ PCS CDMA Phone

May 29, 2007

Equipment Class

PCE - PCS Licensed Transmitter held to ear