
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
BTS Optimization/ATP CDMA LMF Software Release 2.16.X SC4812ET 1.9 GHz and 800 MHz CDMA English Apr 2001 68P09253A74–O DRAFT Notice While reasonable efforts have been made to assure the accuracy of this document, Motorola, Inc. assumes no liability resulting from any inaccuracies or omissions in this document, or from use of the information obtained herein. The information in this document has been carefully checked and is believed to be entirely reliable. However, no responsibility is assumed for inaccuracies or omissions. Motorola, Inc. reserves the right to make changes to any products described herein and reserves the right to revise this document and to make changes from time to time in content hereof with no obligation to notify any person of revisions or changes. Motorola, Inc. does not assume any liability arising out of the application or use of any product, software, or circuit described herein; neither does it convey license under its patent rights or the rights of others. It is possible that this publication may contain references to, or information about Motorola products (machines and programs), programming, or services that are not announced in your country. Such references or information must not be construed to mean that Motorola intends to announce such Motorola products, programming, or services in your country. Copyrights This instruction manual, and the Motorola products described in this instruction manual may be, include or describe copyrighted Motorola material, such as computer programs stored in semiconductor memories or other media. Laws in the United States and other countries preserve for Motorola certain exclusive rights for copyrighted material, including the exclusive right to copy, reproduce in any form, distribute and make derivative works of the copyrighted material. Accordingly, any copyrighted Motorola material contained herein or in the Motorola products described in this instruction manual may not be copied, reproduced, distributed, merged or modified in any manner without the express written permission of Motorola. Furthermore, the purchase of Motorola products shall not be deemed to grant either directly or by implication, estoppel, or otherwise, any license under the copyrights, patents or patent applications of Motorola, as arises by operation of law in the sale of a product. Usage and Disclosure Restrictions License Agreement The software described in this document is the property of Motorola, Inc. It is furnished by express license agreement only and may be used only in accordance with the terms of such an agreement. Copyrighted Materials Software and documentation are copyrighted materials. Making unauthorized copies is prohibited by law. No part of the software or documentation may be reproduced, transmitted, transcribed, stored in a retrieval system, or translated into any language or computer language, in any form or by any means, without prior written permission of Motorola, Inc. High Risk Activities Components, units, or third–party products used in the product described herein are NOT fault–tolerant and are NOT designed, manufactured, or intended for use as on–line control equipment in the following hazardous environments requiring fail–safe controls: the operation of Nuclear Facilities, Aircraft Navigation or Aircraft Communication Systems, Air Traffic Control, Life Support, or Weapons Systems (“High Risk Activities”). Motorola and its supplier(s) specifically disclaim any expressed or implied warranty of fitness for such High Risk Activities. Trademarks and Motorola are registered trademarks of Motorola, Inc. Product and service names profiled herein are trademarks of Motorola, Inc. Other manufacturers’ products or services profiled herein may be referred to by trademarks of their respective companies. Copyright Copyright 2001 Motorola, Inc. All Rights Reserved Printed on Recyclable Paper REV010598 SPECIFICATIONS SUBJECT TO CHANGE WITHOUT NOTICE Apr 2001 i SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT Table of Contents SC4812ET BTS Optimization/ATP — CDMA LMF CDMA 1.9 GHz and 800 MHz List of Figuresiv. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . List of Tablesvi. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Product Informationxi. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . FCC Part 15xii. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . FCC Part 68xiv. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Forewordxv. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . General Safetyxviii. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Revision Historyxx. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Patent Notificationxxi. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Chapter 1: Introduction Optimization Overview1-1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . BTS Equipment Identification1-13. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Chapter 2: Preliminary Operations Preliminary Operations: Overview2-1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Initial Power Up2-3. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Chapter 3: Optimization/Calibration Optimization/Calibration – Introduction3-1. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Isolate Span Lines/Connect LMF3-4. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . Preparing the LMF3-10. . . . . . . . . . . . . . . . . . . . . . . . . . . . . …
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Initial Power Up Apr 2001 2-3 SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT Introduction The following information is used to check for any electrical short circuits and to verify the operation and tolerances of the cellsite and BTS power supply units before applying power for the first time. It contains instructional information on the initial proper power up procedures for the SC 4812ET power cabinet and RF cabinet. Also presented are tests to be preformed on the power cabinet. Please pay attention to all cautions and warning statements in order to prevent accidental injury to personnel. Required Tools The following tools are used in the procedures. DC current clamp (600 Amp capability with jaw size to accommodate 2/0 cable). Hot Air Gun – (optional for part of the Alarm Verification) Digital Multimeter (DMM) Cabling Inspection Using the site-specific documentation generated by Motorola Systems Engineering, verify that the following cable systems are properly connected: Receive RF cabling – up to 12 RX cables Transmit RF cabling – up to six TX cables For positive power applications (+27 V): The positive power cable is red. The negative power cable is black. (The black power cable is at ground potential.) IMPORTANT * Initial Inspection and Setup Ensure all battery breakers for unused battery positions are open (pulled out) during any part of the power up process, and remain in the off position when leaving the site. CAUTION Table 2-2: Initial Inspection and Setup StepAction 1Verify that ALL AC and DC breakers are turned OFF in both the Power and RF cabinets. Verify that the DC power cables between the Power and RF cabinets are connected with the correct polarity 2The RED cables connect to the uppermost three (3) terminals (marked +) in both cabinets. Confirm that the split phase 240/120 AC supply is correctly connected to the AC load center input. 2 Initial Power Up – continued DRAFT SC4812ET BTS Optimization/ATP — CDMA LMF Apr 2001 2-4 Failure to connect the proper AC feed will damage the surge protection module inside the AC load center. CAUTION Power Up Sequence The first task in the power up sequence is to apply AC power to the Power cabinet. Once power is applied a series of AC Voltage measurements is required. Table 2-3: AC Voltage Measurements StepAction 1Measure the AC voltages connected to the AC load center (access the terminals from the rear of the cabinet after removing the AC load center rear panel). See Figure 2-2. 2Measure the AC voltage from terminal L1 to neutral. This voltage should be in the range of nominally 115 to 120 V AC. 3Measure the AC voltage from terminal L1 to ground. This voltage should be in the range of nominally 115 to 120 V AC. 4Measure the AC voltage from terminal L2 to neutral. This voltage should be in the range of nominally 115 to 120 V AC. 5Measure the AC voltage from terminal L2 to ground. This voltage should be in the range of nominally 115 to 120 V AC. 6Measure L1 – L2 – should be from 208 to 240 V AC. If the AC voltages are in excess of 120 V (or exceed 200 V) when measuring between terminals L1 or L2 to neutral or ground, STOP and Do Not proceed until the cause of the higher voltages are determined. The power cabinet WILL be damaged if the Main breaker is turned on with excessive voltage on the inputs. CAUTION 2 Initial Power Up – continued Apr 2001 2-5 SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT Figure 2-2: AC Load Center Wiring G= Ground N = Neutral L1= Line 1 L2= Line 2 G N AC to Pilot Beacon L2 L1 FW00305 Applying AC Power Once AC Voltage Measurements are complete, apply AC power to the Power Cabinet. Table 2-4 provides the procedure for applying AC power. Table 2-4: Applying AC Power StepAction 1When the input voltages are verified as correct, turn the Main AC breaker (located on the front of the AC Load Center) ON. Observe that all eight (8) green LEDs on the front of the AC Load Center are illuminated (see Figure 2-7). 2Turn Rectifier 1 and Rectifier 2 AC branch breakers (on the AC Load Center) ON. All the installed rectifier modules (see Figure 2-7) will start up and should each have two green LEDs (DC and Power) illuminated. 3Turn the Meter Alarm Panel module, ON (see Figure 2-3), while observing the K2 contact in the PDA assembly (see Figure 2-9). The contact should close. The Meter Alarm Panel voltage meter should read approximately 27.4 + 0.2 Vdc. 4Turn the Temperature Compensation Panel (TCP) ON, (see Figure 2-4). Verify that the Meter Alarm Control Panel does not have any alarm LEDs illuminated. 5Check the rectifier current bargraph displays (green LED display on the rectifier module). None should be illuminated at this point. If batteries are fitted, turn on the two battery heater AC breakers on the AC Load Center. NOTE 2 Initial Power Up – continued DRAFT SC4812ET BTS Optimization/ATP — CDMA LMF Apr 2001 2-6 Figure 2-3: Meter Alarm Panel OFF VOLT VOLT – + TEST POINTS AMPS – + TEST POINTS AMP PWR ON FRONT VIEW FW00245 Figure 2-4: Temperature Compensation Panel OFF V ADJ SENSOR 25 c SENSE – + COM ON ON FRONT VIEW 1/2 A 250V 12 TEMPERATURE COMPENSATION PANEL FW00246 Power Cabinet Power Up Tests Table 2-5 lists the step–by–step instructions for Power Up Tests. Table 2-5: Power Cabinet Power Up Tests StepAction 1Probe the output voltage test point on the Meter Alarm Panel while pressing the 25° C set button on the TCP (see Figure 2-4). The voltage should read 27.4 + 0.2 Vdc. Adjust Master Voltage on Meter Alarm Panel if necessary. Release the TCP 25° C set button. 2Depending on the ambient temperature, the voltage reading may now change by up to + 1.5 V compared to the reading just measured. If it is cooler than 25C, the voltage will be higher, and if it is warmer than 25C, the voltage will be lower. 3Ensure the RF cabinet 400 Amp main DC breaker is OFF. 4Close the three (3) Main DC breakers on the Power Cabinet ONLY. Close by holding in the reset button on the front of the PDA, and engaging one breaker at a time. …
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RFDS Setup and Calibration Apr 2001 3-71 SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT RFDS Description The optional RFDS is a Field Replaceable Unit (FRU) used to perform RF tests of the site from the CBSC or from the LMF. The RFDS contains the following elements: Antenna Select Unit (ASU) FWT Interface Card (FWTIC) Subscriber Unit Assembly (SUA) For complete information regarding the RFDS, refer to the CDMA RFDS Hardware Installation manual (Motorola part no. 6864113A93) CDMA RFDS User’s Guide (Motorola part no. 6864113A37), and the CDMA LMF Operator’s Guide (Motorola part no. 6864113A21). RFDS Parameter Settings The bts-#.cdf file includes RFDS parameter settings that must match the installed RFDS equipment. The paragraphs below describe the editable parameters and their defaults. Table 3-38 explains how to edit the parameter settings. RfdsEquip – valid inputs are 0 through 2. 0 = (default) RFDS is not equipped 1 = Non-Cobra/Patzer box RFDS 2 = Cobra RFDS TsuEquip – valid inputs are 0 or 1 0 = (default) TSU not equipped 1 = TSU is equipped in the system MC1....4 – valid inputs are 0 or 1 0 = (default) Not equipped 1 = Multicouplers equipped in RFDS system (9600 system RFDS only) Asu1/2Equip – valid inputs are 0 or 1 0 = (default) Not equipped 1 = Equipped TestOrigDN – valid inputs are ’’’ (default) or a numerical string up to 15 characters. (This is the phone number the RFDS dials when originating a call. A dummy number needs to be set up by the switch, and is to be used in this field.) Any text editor may be used to open the bts–#.cdf file to verify, view, or modify data. NOTE 3 RFDS Setup and Calibration – continued DRAFT SC4812ET BTS Optimization/ATP — CDMA LMF Apr 2001 3-72 Table 3-38: RFDS Parameter Settings StepAction * IMPORTANT Log out of the BTS prior to performing this procedure. 1Using a text editor, verify the following fields are set correctly in the bts–#.cdf file (1 = GLI based RFDS; 2 = Cobra RFDS). EXAMPLE: RfdsEquip = 2 TsuEquip = 1 MC1Equip = 0 MC2Equip = 0 MC3Equip = 0 MC4Equip = 0 Asu1Equip = 1 Asu2Equip = 0 (1 if system is non-duplexed) TestOrigDN = ’123456789’’ NOTE The above is an example of the bts-#.cdf file that should have been generated by the OMC and copied to the LMF. These fields will have been set by the OMC if the RFDSPARM database is modified for the RFDS. 2Save and/or quit the editor. If any changes were made to these fields data will need to be downloaded to the GLI2 (see Step 3, otherwise proceed to Step 4). 3To download to the GLI2, click on the Device menu and select the Download Data menu item (selected devices do not change color when data is downloaded). A status report window is displayed showing status of the download. Click OK to close the status report window. ! CAUTION After downloading data to the GLI2 the RFDS LED will slowly begin flashing red and green for approximately 2–3 minutes. DO NOT attempt to perform any functions with the RFDS until the LED remains green. 4Status the RFDS TSU. A status report is displayed showing the software version number for the TSIC and SUA. * IMPORTANT If the LMF yields an error message, check the following: Ensure AMR cable is correctly connected from the BTS to the RFDS. Verify RFDS has power. Verify RFDS status LED is green. Verify fields in the bts-#.cdf file are correct (see Step 1). Status the GLI2 and ensure the device is communicating (via Ethernet) with the LMF, and the device is in the proper state (INS). 3 RFDS Setup and Calibration – continued Apr 2001 3-73 SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT RFDS TSU NAM Programming The NAM (number assignment module) information needs to be programmed into the TSU before it can receive and process test calls, or be used for any type of RFDS test. The RFDS TSU NAM must be programmed with the appropriate system parameters and phone number during hardware installation. The TSU phone and TSU MSI must be recorded for each BTS used for OMC–R RFDS software configuration. The user will only need to program the NAM for the initial install of the RFDS. NOTE Explanation of Parameters used when Programming the TSU NAM Table 3-39 defines the parameters used when editing the tsu.nam file. Table 3-39: Definition of Parameters Access Overload Code Slot Index System ID Network ID These parameters are obtained from the switch. Primary Channel A Primary Channel B Secondary Channel A Secondary Channel B These parameters are the channels which are to be used in operation of the system. Lock Code Security Code Service Level Station Class Mark Do NOT change. IMSI MCC IMSI 11 12 These fields are obtained at the OMC using the following command: OMC000>disp bts–# imsi If the fields are blank, replace the IMSI fields in the NAM file to 0, otherwise use the values displayed by the OMC. MIN Phone NumberThese fields are the phone number assigned to the mobile. The ESN and MIN must be entered into the switch as well. NOTE: This field is different from the TODN field in the bts-#.cdf file. The MIN is the phone number of the RFDS subscriber, and the TODN is the number the subscriber calls. 3 RFDS Setup and Calibration – continued DRAFT SC4812ET BTS Optimization/ATP — CDMA LMF Apr 2001 3-74 Valid NAM Ranges Table 3-40 provides the valid NAM field ranges. If any of the fields are missing or out-of–range, the RFDS will error out. Table 3-40: Valid NAM Field Ranges Valid Range NAM Field Name MinimumMaximum Access Overload Code015 Slot Index07 System ID032767 Network ID032767 Primary Channel A251175 Primary Channel B251175 Secondary Channel A251175 Secondary Channel B251175 Lock Code0999 Security Code0999999 Service Level07 Station Class Mark0255 IMSI 11 12099 IMSI MCC0999 MIN Phone NumberN/AN/A 3 RFDS Setup and Calibration – continued Apr 2001 3-75 SC4812ET BTS Optimization/ATP — CDMA LMF DRAFT Measuring Directional Coupler Loss Uas the following procedure to calibrate directional couplers associated with RFDS installation. The procedure involves measuring the for…
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Global Telecom Solutions Sector August 10, 2001 Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 Re: Application for Cellular Transceiver Certification Gentlemen: Motorola Inc., 1475 W. Shure Drive, Arlington Heights, Illinois 60004, herein submits: Filing fee, Application for Equipment Authorization (FCC Form 731) and Sections, for Certification of a Cellular Transceiver, FCC ID: IHET5BQ1. Motorola is also the manufacturer of this equipment. Motorola requests that the following Sections of the Schematics Exhibit be kept confidential: Section A MPC6 - Multicoupler Preselector Card Section B GLI2 - Group Line Interface Card Section C BBX 1X- Broadband Transceiver Card Section D BBX2- Broadband Transceiver Card Section E MCC 1X - Multi Channel CDMA Card Section F MCC x 24E - Multi Channel CDMA Card Section G CCD - CDMA Clock Distribution Card Section H CSM2 - Clock Synchronization Module w/GPS Section I LPA - Linear Power Amplifier Section J CIO - Combiner Input/Output Card Section K Switch Card Section L HSO - High Stability Oscillator Section M SPAN I/O Section N RGD - Remote GPS Distribution Section O LFR – Low Frequency Receiver Special Note The confidential portions have been identified as such on the Uploading Sections Form. The filing fee includes fee for a confidential filing.
FCC Filing - SC4812ET @ 800 MHz BTS Global Telecom Solutions Sector APPLICANT: MOTOROLA TRANSCEIVER TYPE: IHET5BQ1 SC4812ET @ 800 MHz CDMA BTS EXTERNAL PHOTOS EXHIBIT List of External Photographs NO. PHOTOGRAPH 01Front View Doors Closed 02Front View Doors Open 03Rear View with Panel 04Rear View without Panel 05Left Side View 06Right Side View 07Top View
APPLICANT: MOTOROLA FCC ID: IHET5BQ1 EQUIPMENT NAMEPLATE PER CFR., Title 47, Part 2.925 Bar Coding Graphics to be black A name plate of this type, or one similar to it, will be affixed to every base station. This label is permanent, indelible, and tamper evident. || | |||| | ||| | |||||| | | ||||| ||| ||| || | | ||||||| | Model No.__________________ |||| | | ||| |||| ||||| | | | ||||| | |||| ||| || || || | | Serial No.__________________ MOTOROLA FCC ID: IHET5BQ1 Complies with Part 68, FCC Rules FCC Reg. No. IHEUSA-35778-DE-E REN: 03B USOC: RJ11C 800 MHz SC4812 ET IHET5BQ1 Location of FCC ID Label Side FCC Label (Top of Panel)
FCC Filing - SC4812ET @ 800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SECTION A SUMMARY OF RF MEASUREMENTS
FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 MODULATION CHARACTERISTICS Maximum Power
FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 MODULATION CHARACTERISTICS Minimum Power
FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SECTION C SPURIOUS & HARMONIC EMISSIONS RADIATED FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SECTION D SPURIOUS & HARMONIC EMISSIONS CONDUCTED FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SPURIOUS & HARMONIC EMISSIONS CONDUCTED CDMA Transmitter Channel 1013 Maximum Power FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SPURIOUS & HARMONIC EMISSIONS CONDUCTED CDMA Transmitter Channel 1013 Minimum Power FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 SPURIOUS & HARMONIC EMISSIONS CONDUCTED CDMA Transmitter Channel 777 Maximum Power FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector SECTION D FCC ID: IHET5BQ1 SPURIOUS & HARMONIC EMISSIONS CONDUCTED CDMA Transmitter Channel 777 Minimum Power
FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 OCCUPIED BANDWIDTH Maximum Power FCC Filing - SC4812ET @800 MHz CDMA BTS Frame Global Telecom Solutions Sector FCC ID: IHET5BQ1 OCCUPIED BANDWIDTH Minimum Power
12 Laboratory Drive · Reseach Triangle Park, North Carolina · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 22H | 869.7 MHz - 893.31 MHz | 40 W | 1M25F9W | 1.5000000000 ppm |

LTE 700 MHz Public Safety Base Station Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
UBS CDMA XMI Transceiver at 800 MHz
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
CDMA Base Station
Equipment Class
PCB - PCS Licensed Transmitter
2.5 GHz Diversity Access Point
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
2.5GHz DIVERSITY ACCESS POINT
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter