
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
ADCP-75-114 Issue C June 2001 Digivance Indoor Coverage Solution 800 Mhz Remote Interface Unit User Manual DRAFT 1145993 FCC ID: F8I-DVICSRIU800 ADCP-75-114 • Issue C • June 2001 • Preface Page ii COPYRIGHT 2001, ADC Telecommunications, Inc. All Rights Reserved Printed in the U.S.A. REVISION HISTORY ISSUE DATE REASON FOR CHANGE Issue C 06/2001 Original TRADEMARK INFORMATION ADC and ADC Telecommunications are registered trademarks of ADC Telecommunications, Inc. Digivance is a trademark of ADC Telecommunications, Inc. TORX is a registered trademark of Textron, Inc. DISCLAIMER OF LIABILITY Contents herein are current as of the date of publication. ADC reserves the right to change the contents without prior notice. In no event shall ADC be liable for any damages resulting from loss of data, loss of use, or loss of profits and ADC further disclaims any and all liability for indirect, incidental, special, consequential or other similar damages. This disclaimer of liability applies to all products, publications and services during and after the warranty period. This publication may be verified at any time by contacting ADC’s Technical Assistance Center at 1-800-366-3891, extension 63475 (in U.S.A. or Canada) or 952-946-3475 (outside U.S.A. and Canada), or by e-mail to [email protected]. ADC Telecommunications, Inc. P.O. Box 1101, Minneapolis, Minnesota 55440-1101 In U.S.A. and Canada: 1-800-366-3891 Outside U.S.A. and Canada: (952) 938-8080 Fax: (952) 946-3292 ADCP-75-114 • Issue C • June 2001 • Preface Page iii 2001, ADC Telecommunications, Inc. TABLE OF CONTENTS Content Page 1 DESCRIPTION.......................................................................1 1.1 Primary Functions and Components...................................................1 1.2 Mounting....................................................................2 1.3 Fault Detection and Alarm Reporting..................................................3 1.4 RF Signal Connections ...........................................................3 1.5 RF Signal Level Adjustments.......................................................3 1.6 Powering....................................................................3 1.7 Cooling.....................................................................3 1.8 User Interface.................................................................4 1.9 Specifications.................................................................5 2 INSTALLATION......................................................................7 2.1 Tools and Materials.............................................................7 2.2 Unpacking and Inspections........................................................7 2.3 Mounting Procedure.............................................................8 2.4 Chassis Ground Connection........................................................11 2.5 Coaxial Cable Connections........................................................12 2.6 External Alarm System Connections..................................................14 2.7 AC Power Connection............................................................15 3 OPERATION........................................................................17 3.1 Tools and Materials.............................................................17 3.2 Turn-Up Unit and Verify Operation....................................................17 3.3 Forward Path Level Adjustment.....................................................18 3.4 Reverse Path Level Adjustment.....................................................21 4 MAINTENANCE......................................................................22 4.1 Tools and Materials.............................................................22 4.2 Fault Detection and Alarm Reporting..................................................22 4.3 Fan Replacement...............................................................23 5 CUSTOMER INFORMATION AND ASSISTANCE..................................................25 ADCP-75-114 • Issue C • June 2001 • Preface Page iv 2001, ADC Telecommunications, Inc. ABOUT THIS MANUAL This publication provides a description of the Digivance ICS Remote Interface Unit (RIU) plus instructions for installing the RIU. An overview of the Digivance ICS and a complete description of the Digital Host Unit (DHU), Digital Remote Unit (DRU) and the Digital Expansion Unit (DEU) are provided in the Digivance ICS Installation and Operation Manual (ADCP-75-110). The RIU is an interface device that is used in conjunction with the Digivance ICS product. RELATED PUBLICATIONS Listed below are related manuals and their publication numbers. Copies of these publications can be ordered by contacting the ADC Technical Assistance Center at 1-800-366-3891 (in U.S.A. or Canada) or 952-946-3000, extension 63475 (outside U.S.A. and Canada). Title/Description ADCP Number Digivance ICS Installation and Operation Manual ADCP-75-110 Provides an overview of the Digivance ICS, a complete description of the DHU, DRU, and DEU, system planning and engineering guidelines, DHU installation instructions, system turn-up and test procedures, and system troubleshooting and maintenance procedures. Digivance ICS Digital Expansion Unit Installation Instructions ADCP-75-111 Provides a description of the DEU and procedures for installing the DEU. Digivance ICS Digital Remote Unit Installation Instructions ADCP-75-112 Provides a description of the DRU and procedures for installing the DRU. Digivance ICS Local Interface Unit User Manual ADCP-75-113 Provides a description of the LIU and procedures for installing the LIU. ADMONISHMENTS Important safety admonishments are used throughout this manual to warn of possible hazards to persons or equipment. An admonishment identifies a possible hazard and then explains what may happen if the hazard is not avoided. The admonishments — in the form of Dangers, Warnings, and Cautions — must be followed at all times. Thes…
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TÜV MANAGEMENT SERVICEPhone: (651) 631 2487 TÜV PRODUCT SERVICE INC.Fax: (651) 638 0285 1775 Old Highway 8 NW, Suite 104email [email protected] New Brighton MN 55112-1891http:://www.tuvglobal.com Divisions of TÜV America Inc., a subsidiary of TÜV Süddeutschland and TÜV Nord Group TÜV PRODUCT SERVICE INC 19333 WILD MOUNTAIN ROAD TAYLORS FALLS, MINNESOTA 55084-1786 ENGINEERING STATEMENT For Certification of ADC Telecommunications Incorporated P O Box 1101 Minneapolis MN 55440-1101 Digivance Remote Interface Unit – Cellular Amplifier Model Nos: DGVI-110000RIU (A Band) and DGVI-120000RIU (B Band) FCC ID: -F8I-DVICSRIU800 I am an Electromagnetic Compatibility Engineer for TÜV PRODUCT SERVICE INC, Taylors Falls, Minnesota. My education and experience are a matter of record with the Federal Communications Commission. TÜV PRODUCT SERVICE INC has been authorized by David Conyers, Vice President of Engineering, ADC Telecommunications Incorporated, to make Certification measurements on the DGVI-110000RIU (A Band) and DGVI-120000RIU (B Band) Digivance Remote Interface Unit (Cellular Amplifier). These tests were made by me or under my supervision at our Wild River Laboratory which is on file with the FCC under Paragraph 2.948 of the FCC Rules. Test data required by the TCB is included in this report. It is submitted that the above equipment meets the FCC Part 22, Subpart H Requirements and Certification is hereby requested. Joel T. Schneider Chief Engineer Minnesota Wild River Lab TÜV Product Service [email protected] Dated: 12 June 2001
FCC ID: F8I-DVICSRIU800 FCC ID: F8I-DVICSRIU800
Page 1 of 5 FCC ID: F8I-DVICSRIU800 Page 2 of 5 Page 3 of 5 Page 4 of 5 ADCP-75-114 • Issue C • June 2001 Page 4 © 2001, ADC Telecommunications, Inc. 1.8 User Interface The RIU user interface consists of the various connectors, switches, terminals, and LED that are provided on the RIU front panel. The RIU user interface points are indicated in Figure 3 and described in Table 1. NOTE: SHOWN WITHOUT CABLE MANAGEMENT TRAY (3) AC POWER CORD CONNECTOR (8) ALARM LED INDICATOR (9) ALARM CONNECTOR (1) ANTENNA CONNECTOR (5) FORWARD LEVEL ADJUSTMENT SWITCHES (2) AC POWER ON/OFF SWITCH (6) FORWARD RF OUTPUT CONNECTOR (7) REVERSE RF INPUT CONNECTOR (4) REVERSE LEVEL ADJUSTMENT SWITCHES 16651-A Figure 3. Remote Interface Unit User Interface Table 1. Remote Interface Unit User Interface REF No. USER INTERFACE DESIGNATION DEVICE FUNCTIONAL DESCRIPTION 1 ANTENNA N-type female RF coaxial connector Used for connecting the donor antenna coaxial cable. 2 I/O I/O rocker switch/ circuit breaker Provides AC power On/Off control and AC power over current protection. 3 POWER 3-wire AC power cord connector Used for connecting the AC power cord. 4 REV LEVEL ADJ MSB LSB Rotary switch Used to adjust the reverse path RF signal level by adding or removing attenuation. 5 FWD LEVEL ADJ MSB LSB Rotary switch Used to adjust the forward path RF signal level by adding or removing attenuation. 6 FORWARD OUT N-type female RF coaxial connector Used for connecting the RIU to DHU forward path coaxial cable. 7 REVERSE IN N-type female RF coaxial connector Used for connecting the DHU to RIU reverse path coaxial cable. 8 ALARMS Multi-colored LED (Red/Green/Yellow) Indicates if the RIU is normal or faulty. (see Section 3 for a detailed description) 9 MINOR MAJOR Screw-type terminal connector (14–26 AWG) Used for connecting the RIU to an external alarm system. Includes normally open (NO), normally closed (NC), and common (COM) wiring connections. Page 5 of 5
Page 1 of 5 FCC ID: F8I-DVICSRIU800
Page 1 of 7 FCC ID: F8I-DVICSRIU800 Page 2 of 7 Page 3 of 7 Page 4 of 7 Page 5 of 7 Page 6 of 7 Page 7 of 7
FCC ID: F8I-DVICSRIU800
PRODUCT SERVICE TEST RESULT SUMMARY FCC PART 22 SUBPART H MANUFACTURER'S NAMEADC Telecommunications NAME OF EQUIPMENTDigivance Remote Interface Unit – Cellular Amplifier MODEL NUMBER DGVI-110000RIU (A Band) DGVI-120000RIU (B Band) MANUFACTURER'S ADDRESSPO Box 1101 Minneapolis MN 55440 TEST REPORT NUMBERNC103645 TEST DATE25 April, 23 & 24 May 2001 According to testing performed at TÜV Product Service Inc, the above-mentioned unit is in compliance with the electromagnetic compatibility requirements defined in FCC Part 22 Subpart H. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical characteristics. Any modifications necessary for compliance made during testing on the above mentioned date(s) must be implemented in all production units for compliance to be maintained. TÜV Product Service Inc, as an independent testing laboratory, declares that the equipment tested as specified above conforms to the requirements of FCC Part 22 Subpart H. Date:04 June 2001 Location:Taylors Falls MNJ. C. SausenJ. T. Schneider USATest EngineerChief Engineer Not Transferable File No. NC103645, Page 1 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE EMC EMISSION - T E S T R E P O R T Test Report File No.: NC103645 Date of issue: 04 June 2001 Model / Serial No.: DGVI-110000RIU (A Band) / 214090058 DGVI-120000RIU (B Band) / 214090059 Product Type: Digivance Remote Interface Unit – Cellular Amplifier Applicant: ADC Telecommunications Manufacturer: ADC Telecommunications License holder: ADC Telecommunications Address: PO Box 1101 : Minneapolis MN 55440 Test Result: nn Positiveoo Negative Test Project Number: Reference(s) NC103645 Total pages including Appendices 79 TÜV Product Service Inc is a subcontractor to TÜV Product Service, GmbH according to the principles outlined in ISO/IEC Guide 25 and EN 45001. TÜV Product Service Inc reports apply only to the specific samples tested under stated test conditions. It is the manufacturer's responsibility to assure that additional production units of this model are manufactured with identical electrical and mechanical components. TÜV Product Service Inc shall have no liability for any deductions, inferences or generalizations drawn by the client or others from TÜV Product Service Inc issued reports. This report is the confidential property of the client. As a mutual protection to our clients, the public and ourselves, extracts from the test report shall not be reproduced except in full without our written approval. This report shall not be used by the client to claim product endorsement by NVLAP or any agency of the US government. TÜV Product Service Inc and its professional staff hold government and professional organization certifications and are members of AAMI, ACIL, AEA, ANSI, IEEE, NVLAP, and VCCI File No. NC103645, Page 2 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE D I R E C T O R Y - EMISSIONS Page(s) A)Documentation Test report1 – 71 Directory2 Test Regulations3 B)Test data Conducted emissions on power leads150 kHz - 30 MHz5 - 7 22.355 Frequency tolerance8 - 10 22.913 Effective Radiated Power Limit11 - 12 22.915 Modulation requirements13 22.917 Emission Limitations for cellular13 – 65 Test Setup Photo(s)See Test Setup Exhibit Product Information FormA1 – A8 File No. NC103645, Page 3 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE EMISSIONS TEST REGULATIONS : The emissions tests were performed according to following regulations: -------------------------------------------------------------------------------- o - EN 50081-1 / 1991 o - EN 55011 / 1991o - Group 1o - Group 2 o - Class Ao - Class B o - EN 55013 / 1990 o - EN 55014 / 1987o - Household appliances and similar o - Portable tools o - Semiconductor devices o - EN 55014 / A2:1990 o - EN 55014 / 1993o - Household appliances and similar o - Portable tools o - Semiconductor devices o - EN 55015 / 1987 o - EN 55015 / A1:1990 o - EN 55015 / 1993 o - EN 55022 / 1987o - Class Ao - Class B n - FCC Part 22 Subpart H o - BS o - VCCIo - Class Ao - Class B o - FCCo - Class Ao - Class B o - AS 3548 (1992)o - Class Ao - Class B o - CISPR 11 (1990) o - Group 1o - Group 2 o - Class Ao - Class B o - CISPR 22 (1993) o - Class Ao - Class B File No. NC103645, Page 4 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE Environmental conditions in the lab: Actual Temperature: 20 °C Relative Humidity: 49 % Atmospheric pressure: 99.1 kPa Power supply system: 60 Hz - 115 V - 1-phase Sign Explanations: o - not applicable n - applicable File No. NC103645, Page 5 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE Emissions Test Conditions: CONDUCTED EMISSIONS (Interference Voltage) per 15.207 The CONDUCTED EMISSIONS (INTERFERENCE VOLTAGE) measurements were performed at the following test location: o - Test not applicable o - Wild River Lab Large Test Site (Open Area Test Site) o - Wild River Lab Small Test Site (Open Area Test Site) o - Oakwood Lab (Open Area Test Site) n - Wild River Lab Screen Room o - New Brighton Lab Shielded Room Test equipment used : TUV IDModel NumberManufacturerDescriptionSerial NumberCal Due n -24173825/2Electro-Mechanics (EMCO) 50 Ω LISN 8812-14399-21-01 n -2534ESHS-20Rhode & SchwarzEMI Receiver837055/0038-22-01 n -274111947AHewlett-PackardTransient Limiter3107A007793-21-02 All measurement instrumentation is traceable to the National Institute of Standards and Technology (NIST) and is calibrated annually. Conducted emissions on the 60 Hz power interface of the E…
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Out of Band Emissions Test for ADC Inc. Digivance 800 Remote Interface Unit Models DGVI-110000RIU (Band A) and DGVI-120000RIU (Band B). Per FCC CFR 47 Part 22.917 Emission Limitations for Cellular The out of band emissions were measured directly from the EUT output with a spectrum analyzer from 30MHz to the 10 th harmonic of the highest carrier frequency. Three tests were done for each band EUT. A CW signal at the low, mid and high parts of the band was input one at a time to the EUT. In all cases, the out of band emissions were less than –13dBm from the equation (29.5dBm-[43 + 10 log(.9W)]) For the in-band emissions, on any frequency removed from the carrier frequency by more than 20KHz, but not more than 45KHz, the emissions are at least 26dB below the carrier power level. On any frequency removed from the carrier by more than 45KHz, the emissions are at least –13dBm from the above formula. These plots also demonstrate band edge compliance. Test Set-up Results: Pass (see plots) Signal Generator Attenuator EUT Spectrum Analyzer Composite Power Meter File No. NC103645, Page 40 of 71 Band A EUT Data File No. NC103645, Page 41 of 71 File No. NC103645, Page 42 of 71 File No. NC103645, Page 43 of 71 File No. NC103645, Page 44 of 71 File No. NC103645, Page 45 of 71 File No. NC103645, Page 46 of 71 File No. NC103645, Page 47 of 71 File No. NC103645, Page 48 of 71 File No. NC103645, Page 49 of 71 Band B EUT Data File No. NC103645, Page 50 of 71 File No. NC103645, Page 51 of 71 File No. NC103645, Page 52 of 71 File No. NC103645, Page 53 of 71 File No. NC103645, Page 54 of 71 File No. NC103645, Page 55 of 71 File No. NC103645, Page 56 of 71 File No. NC103645, Page 57 of 71 File No. NC103645, Page 58 of 71 Conducted Spurious Emissions (TDMA Modulation) Test for ADC Inc. Digivance 800 Remote Interface Unit Models DGVI-110000RIU (Band A) and DGVI-120000RIU (Band B). This measurement was made as a direct conducted emission measurement. The output from the EUT antenna connector was connected to the spectrum analyzer as shown below. A typical TDMA type signal was input to the EUT and a search was made from 30MHz to the 10 th harmonic of the highest fundamental frequency (10 GHz) for any spurious emissions greater than –13dBm. Test Set-up Results: Pass (See plots) Signal Generator Attenuator EUT Spectrum Analyzer File No. NC103645, Page 59 of 71 File No. NC103645, Page 60 of 71 File No. NC103645, Page 60 of 71 File No. NC103645, Page 61 of 71 Occupied Bandwith Modulation Test for ADC Inc. Digivance 800 Remote Interface Unit Models DGVI-110000RIU (Band A) and DGVI-120000RIU (Band B). An input/outputOccupied Bandwidth test was done with 3 different modulation types: FM (8KHz, 1KHz), TDMA, and CDMA. The purpose was to determine the ammout of distortion added to different types of modulation schemes by the EUT. The following plots show input signals vs. output signals. Test Set-up Results: Pass (see plots) Signal Generator Attenuator EUT Spectrum Analyzer File No. NC103645, Page 62 of 71 File No. NC103645, Page 63 of 71 File No. NC103645, Page 64 of 71 File No. NC103645, Page 65 of 71 File No. NC103645, Page 66 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE A radiated emission scan was also made with the EUT’s antenna replaced with a termination to demonstrate case radiation compliance to the –13 dBm requirement at the 3 carrier frequencies. Radiated emissions from the EUT are measured in the frequency range of 30 to 9000 MHz using a spectrum analyzer and appropriate broadband linearly polarized antennas. Measurements between 30 MHz and 1000 MHz are made with 120 kHz/6 dB bandwidth and quasi- peak detection and measurements above 1000 MHz are made with a 1 MHz/6 dB bandwidth and peak detection. Table top equipment is placed on a 1.0 X 1.5 meter non-conducting table 80 centimeters above the ground plane. Floor standing equipment is placed directly on the turntable/ground plane. Interface cables that are closer than 40 centimeters to the ground plane are bundled in the center in a serpentine fashion so they are at least 40 centimeters from the ground plane. Cables to simulators/testers (if used in this test) are routed through the center of the table and to a screen room located outside the test area. The antenna is positioned 10 meters horizontally from the EUT. To locate maximum emissions from the test sample the antenna is varied in height from 1 to 4 meters, measurement scans are made with both horizontal and vertical antenna polarizations and the EUT are rotated 360 degrees. The field strength levels were measured per ANSI C63.4. The EUT is then replaced with a tuned dipole antenna (below 1 GHz) or horn antenna (above 1 GHz). The substitute antenna was placed in the same polarization as the test antenna. A signal generator was used to generate a signal level that matched the level measured from the EUT. The signal generator level minus the cable loss from the signal generator to the substitute antenna plus the substitute antenna gain equals the spurious power level. The 10 highest frequencies are listed below. Frequency MHzdBuV/m(from EUT)Substitution power level - dBm 84059.9-31 83053.3-37 73.3833.7-57 72.9430.3-60 172.130.2-60 56.030.0-60 43.228.9-62 477.2428.2-62 156.3427.4-63 173.027.1-63 File No. NC103645, Page 67 of 71 TÜV PRODUCT SERVICE INC19333 Wild Mountain RoadTaylors Falls MN 55084-1758Tel: 651 638 0297Fax: 651 638 0298Rev.No 1.0 PRODUCT SERVICE Equipment Under Test (EUT) Test Operation Mode - Emission tests : The device under test was operated under the following conditions during emissions testing: o - Standby o - Test program (H - Pattern) o - Test program (color bar) o - Test program (customer specific) o - Practice operation n - Normal Operating Mode o - Configuration of the device under test: The following peripheral devices and interface cables were connected during the measurement: o -Type : …
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Radiated Emissions Test Setup Page 1 of 5 FCC ID: F8I-DVICSRIU800 Radiated Emissions Test Setup Page 2 of 5 Conducted Emissions Test Setup Page 3 of 5 EMM0094 REV 09.95 TEST SETUP FOR EMISSIONS TESTING WILD RIVER LAB Large Test Site Notes: 1.Items shown in dotted lines are located on the floor below the test area. It is 5 meters vertically from the ground floor to the test area. 2.50 Hz, 60 Hz, and 400 Hz are power panels for alternating current. 3.The antenna may be positioned horizontally 3, 10 or 30 meters from the center of the turntable. 4.The circle is a 6.7 meter diameter turntable. 5.A ground plane is in the plane of this sheet. 6.The test sample is shown in the azimuthal position representing zero degrees. EUT 0 90270 180 60 Hz 50 Hz 400 Hz Shielded Enclosure ANTENNA Page 4 of 5 EMM0096 REV 09.95 TEST SETUP FOR EMISSIONS TESTING WILD RIVER LAB Screen Room Other Measurements: 2 meters from top of EUT to ceiling 80 cm from closest part of EUT to the LISN Non-conducting Table EUT LISN SIDE VIEW 80 cm EUT LISN Instrumentation Table Receiver 40 cm Non-conducting Table TOP VIEW LISN Vertical Ground Plane 40 cm Page 5 of 5
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 3 | 22H | 824 MHz - 849 MHz | 900.00 mW | FXW | 1.5 ppm |

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