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IXLUDL500UHF RFID Reader

Deister Electronic GmbH
UHF RFID Reader - FCC ID IXLUDL500 - Deister Electronic GmbH
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 17, 2008
Application Purpose
Original Equipment
Date of Application
Jan 17, 2008
Equipment Note
UHF RFID Reader
Frequency Range
902.25000000 - 926.75000000
Company
Deister Electronic GmbH
Country
Germany

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

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

Users Manual

UDL500 Wiring & Installation Instructions V17/01/08 © Copyright 2008 by deister electronic GmbH All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without prior written permission of deister electronic GmbH. deister electronic GmbH reserves the right to make changes to any and all parts of this documentation without obligation to notify any person or entity of such changes. January 2008 SK/IO/BF deister electronic GmbH Hermann-Bahlsen Str. 11 30890 Barsinghausen Germany Phone:+49 (0) 51 05 - 51 61 11 Fax:+49 (0) 51 05 - 51 62 17 E-Mail:[email protected] Web:www.deister.com 2deister electronic GmbH 30890 Barsinghausen GermanyV17/01/08 Wiring & Installation Instructions UDL500 Content 1. Technical Data............................................................4 2. Connectors...................................................................5 2.1 Installation note..................................................................................................5 2.2 Pin assignment UDL500.......................................................................................6 2.3 UDL500: RS485 interface....................................................................................6 2.4 UDL500: Control digital output via hardware trigger..............................................7 2.5 UDL500: Control digital output via software trigger................................................8 3. RS485 interface...........................................................9 4. Mechanical dimensions.............................................10 4.1 UDL500 housing...............................................................................................10 5. Transmission protocol...............................................11 6. Mounting...................................................................11 6.1 Mast/Tube mounting.........................................................................................11 6.2 Extended mast holding device LRM2 ..................................................................13 6.3 Wall mounting with link holder LRM1..................................................................14 6.4 Fixing link holder LRM1.....................................................................................14 6.5 Function principle and environmental influences...................................................15 6.6 Radiation pattern of the transmitting antenna.......................................................16 7. Configuration software.............................................20 7.1 SNG3 interface converter..................................................................................20 7.2 Configuration...................................................................................................21 7.3 Parameters.......................................................................................................22 7.3.1 Basic Setup..............................................................................................22 7.3.2 Frequency Setup......................................................................................24 7.3.3 Mode Control..........................................................................................25 7.3.4 Trigger....................................................................................................27 7.3.5 Selection Settings.....................................................................................28 7.3.6 Selection Mask.........................................................................................29 7.3.7 Prog data................................................................................................30 7.4 LEDs and Beeper...............................................................................................30 8. Portal application with DCU1 Data Control Unit......31 9. Accessories of the UHF product family......................32 10. Regulatory Notices..................................................33 10.1 Europe...........................................................................................................33 10.2 FCC Digital Device Limitations.........................................................................33 10.3 FCC Notice....................................................................................................34 10.4 FCC Radiation Exposure Statement...................................................................34 10.5 Industry Canada.............................................................................................34 V17/01/08deister electronic GmbH 30890 Barsinghausen Germany 3 Wiring & Installation Instructions UDL500 1.Technical Data Dimensions (mm):640 x 280 x 75 Housing material:ABS/PMMA, ALUMINUM, V2A Color:silver Protection class:IP65 Operating temperature:-20 ... +70°C Storing temperature:-40 ... +85°C Relative humidity:5% ... 95% non condensing Voltage supply:10 ... 30V/DC Power consumption:10W (during operation) 2W (standby) Transmission frequency:865 – 868MHz (EU) 902 – 928MHz (USA) Writing-/reading distance:up to 5m, depending on type of transponder and the local environment Antennas:2 patch antennas (transmitting and receiving antennas) Polarization:circular Radiated output power:2W ERP (ETSI EN 302 208) or 4W EIRP (FCC Part 15), configurable in 10 steps Transponder protocol:ISO 18000-6 Type C EPC Class1 Gen2 optional: ATMEL ATA 5590 (TAGIDU), EM 4022, 4222, 4422 Trigger Input:8 ... 36V/DC Digital Output:6 ... 32V/DC (I<500mA) 32 ... 48V/DC (I<300mA) Interface:RS485 Anticollision:high-speed detection for multiple tag identification Operating modes:single reader (stand alone), portal mode (up to 4 readers can be connected to the DCU1) Acoustical indicator:beeper Optical indicator:3 LEDs (yellow, green, red) Conformity: Human exposureE…

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Cover Letter(s)

Königswinkel 10 D-32825 Blomberg, Germany Phone +49 (0) 52 35 95 00-0 Fax +49 (0) 52 35 95 00-20 [email protected] www.phoenix-testlab.de 29. November 2007 Dr. Altmaier-BD Bank: Stadtsparkasse Blomberg General Manager: Dr.-Ing. Holger Altmaier Legal Form: GmbH Routing Code: 476 512 25 Headquarter: Blomberg/Lippe Account No.: 113 720 Register of Companies: Amtsgericht Lemgo HRB 5233 Swift-Code: WELA DE D1 BLO Our VAT-No.: DE 162977933 Additional declaration part according to FCC 15.247 for a 902 MHz to 928 MHz FHSS devices 1. Frequency range The frequency range of this device is 902.25 to 926.75 MHz as declared by the applicant. 2. Examples of hopping sequences Example of a 50 hopping sequence: 28, 11, 24, 43, 15, 39, 23, 4, 14, 18, 32, 19, 44, 29, 8, 41, 25, 40, 38, 0 20, 13, 42, 27, 6, 34, 7, 45, 37, 16, 3, 47, 36, 46, 9, 2, 21, 5, 48, 17 1, 26, 35, 31, 22, 49, 12, 30, 33, 10,1, 23, 30, 15, 21, 22, 20, 7, 18, 36 33, 11, 3, 9, 2, 0, 14, 48, 27, 19, 28, 13, 8, 24, 31, 49, 4, 29, 17, 26 10, 25, 32, 44, 16, 37, 46, 12, 38, 43, 45, 35, 42, 47, 39, 34, 5, 41, 6, 40 3. Equally average use of frequencies in data mode The use of frequencies will be pseudo randomly generated by the use of different channel sequence tables. So the used hopping sequence will be always different from the one before and an equally average use of the frequencies is guaranteed. 4. The receiver input bandwidth The input bandwidth of the receiver is 320 kHz. This will be part of the device manufacturing test. FCC Federal Communications Commission PHOENIX TESTLAB GmbH • Königswinkel 10 • D-32825 Blomberg

Cover Letter(s)

deister electronic GmbH - Hermann-Bahlsen-Straße 11-13 D-30890 Barsinghausen { IDENTIFIKATION PHOENIX TEST-LAB GmbH { SICHERHEITSTECHNIK Product Certification { VERKEHRSELEKTRONIK Königswinkel 10 05105-516-01 32825 Blomberg  05105-516217 4. Januar 2008 RE: Certification Application FCC ID: IXLUDL500 Pursuant to Sections 0.457 and 0.459 of the Commission's Rule, deister electronic GmbH, hereby requests confidential treatment of information accompanying this application as outlined below: - schematic diagrams - block diagram - technical description of operation The application contains technical information which deister electronic GmbH deems to be trade secrets and proprietary. If made public, the information might be used to the disadvantage of the applicant in the market place. Thank you for your attention in this matter. (Stefan Eichler) deister electroinc GmbH Handelsregister : Bankverbindungen : Kto.-Nr. BLZ Mitglied . BHE ® Hermann-Bahlsen-Straße 11-13 Amtsger. Wennigsen HBR 1203 Stadtsparkasse Barsinghausen 05 304 (251 512 70) 30890 Barsinghausen Geschäftsführung: Dresdner Bank Hannover 76 142 02 (250 800 20) (+49) 05105 516 01 Anatoli Stobbe Deutsche Bank Barsinghausen 4 686 424 (250 700 70)  (+49) 05105 516 217 USt-IdNr. : DE 115507822 Postgiro Hannover 612 23-303 (250 100 30)

External Photos

Annex C of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page1 of4 70243_15.jpgUDL500, 3-D-view 1 Annex C of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page2 of4 70243_14.jpgUDL500, 3-D-view 2 Annex C of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page3 of4 70243_16.jpgUDL500, type plate Annex C of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page4 of4 70243_1.jpgUDL500, rear cover opened

Internal Photos

Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page1 of12 70243_13.jpgUDL500, front housing removed Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page2 of12 70243_12.jpgUDL500, reader sandwich, 3-D-view 1 Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page3 of12 70243_11.jpgUDL500, reader sandwich, 3-D-view 2 Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page4 of12 70243_9.jpgUDL500, LED PCB, top view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page5 of12 70243_10.jpgUDL500, LED PCB,bottom view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page6 of12 70243_7.jpgUDL500, main PCB, top view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page7 of12 70243_8.jpgUDL500, main PCB, bottom view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page8 of12 70243_5.jpgUDL500, rf PCB, top view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page9 of12 70243_4.jpgUDL500, rf PCB, top view, shielding removed Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page10of12 70243_6.jpgUDL500, rf PCB, bottom view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page11of12 70243_3.jpgUDL500, antenna PCB, top view Annex B of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page12of12 70243_2.jpgUDL500, antenna PCB, bottom view

RF Exposure Info

Bank: Stadtsparkasse Blomberg General Manager: Dr.-Ing. Holger Altmaier Legal Form: GmbH Routing Code: 476 512 25 Headquarter: Blomberg/Lippe Account No.: 113 720 Register of Companies: Amtsgericht Lemgo HRB 5233 Swift-Code: WELA DE D1 BLO Our VAT-No.: DE 162977933 PHOENIX TESTLAB GmbH • Königswinkel 10 • D-32825 Blomberg Königswinkel 10 D-32825 Blomberg, Germany Phone +49(0)5235-9500-0 Fax +49(0)5235-9500-20 [email protected] www.phoenix-testlab.de 29 November 2007 Dr. Altmaier / KT RF-exposure requirements - FCC ID IXLUDL500 Dear Application Examiner, the maximum measured power output is 682.34 mW (28.34 dBm), the maximum antenna gain is + 6.2 dBi (numeric gain 4.17) (refer also FCC test report R70243 Edition 1). The maximum permissible exposure is defined in 47 CFR 1.1310: (B) Limits for General Population/Uncontrolled Exposure Frequency Range: 300 MHz to 1500 MHz Power Density (mW/cm 2 ): f/1500 Calculated Power Density limit: 0.6015 mW/cm 2 The Transmitter is using indoor antennas, which operate at 20 cm or more from nearby persons. The maximum permitted level is calculated using the general equation: S = P*G / 4πR² With P = 682.34 mW, G = 4.17 (numeric gain), R = 20 cm and π = 3.1416 the power density (S) at 20 cm distance is calculated to: S = 0.566 mW/cm 2 . So the limit of 0.6015 mW/cm 2 limit is kept. Please contact us if you have any additional questions. Best Regards FCC Federal Communications Commission

Test Report

Königswinkel 10 32825 Blomberg Germany Phone+49 5235 9500-0 Fax+49 5235 9500-10 TEST REPORT Test Report Reference: R70243 Edition 1 Equipment under Test: UDL500 FCC ID: IXLUDL500 IC: 1893B-UDL500 Serial Number: 7137001110 Applicant: deister electronic GmbH Manufacturer: deister electronic GmbH Test Laboratory (CAB) accredited by DATech GmbH in compliance with DIN EN ISO/IEC 17025 under the Reg. No. DAT-P-105/99-21, FCC Test site registration number 90877 and Industry Canada Test site registration IC3469 and FCC Test site registration number 90877 TEST REPORT REFERENCE: R70243 Edition 1 Examiner: Thomas KÜHNDate of issue: 03 December 2007Page2 of55 Contents:Page 1 IDENTIFICATION.....................................................................................................................................3 1.1 APPLICANT.....................................................................................................................................3 1.2 MANUFACTURER..........................................................................................................................3 1.3 DATES.............................................................................................................................................3 1.4 TEST LABORATORY......................................................................................................................4 1.5 RESERVATION...............................................................................................................................4 1.6 NORMATIVE REFERENCES..........................................................................................................4 1.7 TEST RESULTS..............................................................................................................................4 2 TECHNICAL DATA OF EQUIPMENT......................................................................................................5 2.1 PERIPHERY DEVICES...................................................................................................................6 3 OPERATIONAL STATES AND PHYSICAL BOUNDARIES.....................................................................6 4 LIST OF MEASUREMENTS.....................................................................................................................7 5 TEST RESULTS.......................................................................................................................................8 5.120 dB BANDWIDTH........................................................................................................................8 5.1.1 METHOD OF MEASUREMENT (20 dBBANDWIDTH)......................................................8 5.1.2 TEST RESULTS (20 dBBANDWIDTH)..............................................................................9 5.2 CARRIER FREQUENCY SEPARATION.........................................................................................11 5.2.1 METHOD OF MEASUREMENT (CARRIER FREQUENCY SEPARATION)......................11 5.2.2 TEST RESULTS (CARRIER FREQUENCY SEPARATION)..............................................12 5.3 NUMBER OF HOPPING FREQUENCIES......................................................................................14 5.3.1 METHOD OF MEASUREMENT(NUMBER OF HOPPING FREQUENCIES)....................14 5.3.2 TEST RESULTS (NUMBER OF HOPPING FREQUENCIES)............................................15 5.4 DWELL TIME................................................................................................................................... 16 5.4.1 METHOD OF MEASUREMENT (DWELL TIME)................................................................16 5.4.2 TEST RESULTS (DWELL TIME)........................................................................................17 5.5 MAXIMUM PEAK OUTPUT POWER..............................................................................................18 5.5.1 METHOD OF MEASUREMENT (MAXIMUM PEAK OUTPUT POWER)............................18 5.5.2 TEST RESULTS (MAXIMUM PEAK OUTPUT POWER)...................................................19 5.6 BAND-EDGE COMPLIANCE...........................................................................................................21 5.6.1 METHOD OF MEASUREMENT (BAND-EDGE COMPLIANCE (RADIATED))..................21 5.6.2 TEST RESULT (BAND-EDGE COMPLIANCE (RADIATED)).............................................22 5.7 RADIATED EMISSIONS..................................................................................................................25 5.7.1 METHOD OF MEASUREMENT (RADIATED EMISSIONS)...............................................25 5.7.2 TEST RESULTS (RADIATED EMISSIONS).......................................................................32 5.7.2.1 PRELIMINARY MEASUREMENT (10 MHz to10 GHz).........................................32 5.7.2.2 FINAL RADIATED EMISSION TEST (30 MHz to 1 GHz)......................................42 5.7.2.3 FINAL MEASUREMENT (1 GHz to 25 GHz).........................................................46 5.8 CONDUCTED EMISSIONS ON POWER SUPPLY LINES (150 kHz to 30 MHz)...........................49 5.8.1 METHOD OF MEASUREMENT (CONDUCTED EMISSIONS ON POWER SUPPLY LINES(150kHz to 30 MHz)) .................................................................49 5.8.2 TEST RESULTS (CONDUCTED EMISSIONS ON POWER SUPPLY LINES(150kHz to 30 MHz)) .................................................................50 6 TEST EQUIPMENTAND ANCILLARIES USED FOR TESTS.................................................................51 7 LIST OF ANNEXES..................................................................................................................................55 TEST REPORT REFERENCE: R70243 Edition 1 Examiner: Thomas KÜHNDate of issue: 03 December 2007Page3 of55 1 IDENTIFICATION 1.1APPLICANT Name:deister electronic GmbH Address:Hermann-Bahlsen-Str. 11 30890 Barsinghausen Country:Germany …

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Test Setup Photos

Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page1 of6 70243_d.jpgUDL500, test set-up fully anechoic chamber Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page2 of6 70243_a.jpgUDL500, test set-up fully anechoic chamber Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page3 of6 70243_c.jpgUDL500, test set-up fully anechoic chamber Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page4 of6 70243_e.jpgUDL500, test set-up fully anechoic chamber Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page5 of6 70243_f.jpgUDL500, test set-up open area test site Annex A of test report R70243 Edition 1 EUT: UDL500 Manufacturer: deister electronic GmbH Examiner: Thomas KÜHNDate of issue: 03 December 2007page6 of6 70243_b.jpgUDL500, test set-upshielded room

Contact Information

Applicant

Nicolas Stobbe(Head of Business Development)
[email protected]49-0-5105-516Fax: 49-0-5105-5162 66

Test Firm

PHOENIX TESTLAB GmbHHolger Bentje
[email protected]49-5235-9500-24Fax: 49-5235-9500-28

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.25 MHz - 926.75 MHz676.00 mW
Confidentiality
Long Term
Grant Notes
Power listed is peak conducted. This device must be professionally installed. Only the antenna(s) listed in this filing can be used. The antenna(s) 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.

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