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Manual
ARE i2.0x SEMI
AEG is a registered trademark used under license from AB Electrolux (publ)

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Summary of Contents for AEG ARE i2.0x SEMI

  • Page 1 Manual ARE i2.0x SEMI AEG is a registered trademark used under license from AB Electrolux (publ)
  • Page 2: Table Of Contents

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 2 / 26 Introduction ............................4 ARE i2.0x SEMI............................5 ARE i2.0x SEMI hardware ....................... 5 Dimensions ARE i2.0x SEMI ......................5 2.1.1 Protection Class ........................... 5 2.1.2 AAN Xi9F dimensions ........................5 2.1.3...
  • Page 3 Version: 13 Manual ARE i2.0x SEMI release V2 Page: 3 / 26 LED Return to standby (LRT) ....................19 2.3.5 LED Error (LERR) ........................19 2.3.6 LED Process active ........................20 2.3.7 LED Process status ........................21 2.3.8 LED Setup help (FLED) ......................22 2.3.9...
  • Page 4: Introduction

    Page: 4 / 26 1. Introduction ARE i2.0x SEMI is a compact industrial reader based on an RS-232 interface. This version is compatible with SEMI applications. ARE i2.0x SEMI uses an external antenna for communication to the transponder. There are various antenna form factors available.
  • Page 5: Are I2.0X Semi

    Manual ARE i2.0x SEMI release V2 Page: 5 / 26 2. ARE i2.0x SEMI ARE i2.0x SEMI works with LF hdx transponders that comply to SEMI standard 144-0312. 2.1 ARE i2.0x SEMI hardware 2.1.1 Dimensions ARE i2.0x SEMI 37.1mm | 1.4631 in 57.7mm | 2.272 in...
  • Page 6: Mounting And Grounding

    ARE i2.0x SEMI is connected via its M12, 5-Pin male A-coded plug. Power supply as well as communication is provided by user. Do only use specified cables. ARE i2.0x SEMI uses a LED lit RFID symbol on its front side to visually communicate its various states (standby, reading, successful read, no read, error, and so on...).
  • Page 7: Read Range For Semi Applications Using Aan Xi9F

    The antenna AAN Xi9F is connected via a 3-pin connector on top of ARE i2.0x SEMI. ARE i2.0x SEMI uses an external antenna AAN Xi9F. There are air core coil transponders like disks and ferrite core coil transponders like glass tube transponders. It is important to understand the impact of orientation of transponders relative to AAN Xi9F.
  • Page 8 Version: 13 Manual ARE i2.0x SEMI release V2 Page: 8 / 26 Glass transponder 90° perpendicular 65mm 65mm 10mm 60mm 60mm The highest read range is achieved right at the perimeter of the antenna housing. *note: only one transponder in the field at a time. Above illustration only shows possible read ranges.
  • Page 9: Firmware Are I2.0X Semi

    2.2.1 Instruction Set Communication with ARE i2.0x SEMI is based on a simple ASCII text based protocol. The host sends text based telegrams to ARE i2.0x SEMI and receives text based telegrams back containing the answer to the query. Communication to ARE i2.0x SEMI is always triggered by the host.
  • Page 10: Ver

    TOR – Timeout Reading After a read is triggered by GT, TOR is a time during which ARE i2.0x SEMI continuously tries to read a transponder UID without the need to be triggered by the host again. This limits bus traffic considerably. Once a successful read is performed, continuous reading stops immediately regardless of time and the transponder UID is transmitted to the host.
  • Page 11 Version: 13 Manual ARE i2.0x SEMI release V2 Page: 11 / 26 2.2.6 GT GT – Get Tag GT is used to retrieve the transponder UID. GT uses TOR parameter to define the time during which the reader continuously looks for a transponder without the need for the host to get involved.
  • Page 12 Version: 13 Manual ARE i2.0x SEMI release V2 Page: 12 / 26 2.2.8 WD WD – Write transponder memory page WD is used to write to individual memory page of a transponder in the field. WD uses TOR parameter during which the reader continuously looks for a transponder without the need for the host to get involved.
  • Page 13: Nid

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 13 / 26 2.2.10 NID NID – Double reading of UID to ensure consistency in EMV polluted environment. NID is used to double read a transponder UID to ensure consistency in an EMV polluted environment. The transponder UID...
  • Page 14: Vsave

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 14 / 26 Input format: CID<SP>1<CR> Hex: ASCII: ‘C’ ‘N’ <SP> ‘1’ Output (example): 0x1<CR> Hex: ASCII: ‘1’ <CR> 2.2.13 LD LD – lock memory page LD is used to lock a particular memory page from a transponder in the field.
  • Page 15: Init

    LSTB 01101 LED 1 LGT 01111 2.2.16 Error messages Error messages and protocol errors are acknowledged by ARE i2.0x SEMI using an error code. The format is described below: <NAK> '#' <error code> <CR> Example error #02 (wrong parameter) Hex: ASCII: <NAK>...
  • Page 16: Led Instruction Set

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 16 / 26 2.3 LED instruction set ARE i2.0 SEMI employs a multi-color LED to signal different modes. Basically below colors can be created: The user can choose any color apart from white. This color is reserved for setup help functionality as described below.
  • Page 17: Led Standby (Lstb)

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 17 / 26 2.3.1 LED Standby (LSTB) Standby color is Cyan, no flash. Input format: LSTB<SP> 01101<CR> Hex: ASCII: ‘L’ ‘S’ ‘T’ ‘B’ <SP> ‘0’ ’1’ <CR> Output: 01101<CR> Hex: ASCII: ‘0’...
  • Page 18: Led Transponder Number Successfully Read (Lrd)

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 18 / 26 2.3.3 LED Transponder number successfully read (LRD) Successful read color is green, no flash Input format: LRD<SP> 01001<CR> Hex: ASCII: ‘L’ ‘R’ ‘D’ <SP> ‘0’ ‘1’ ’1’ <CR>...
  • Page 19: Led Return To Standby (Lrt)

    Manual ARE i2.0x SEMI release V2 Page: 19 / 26 2.3.5 LED Return to standby (LRT) Some modes require ARE i2.0x SEMI to go back to standby. The time until this happens is set by using the LRT command. Input format: LRT<SP>time<CR>...
  • Page 20: Led Process Active

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 20 / 26 2.3.7 LED Process active In case of multiple commands being sent to the chip (e.g. rd and wd instructions), it may be necessary to control LED functionality manually. The LED Process active instruction sets the LED to a defined color and mode. This color and mode stays on as long as the LED Process active parameter is switched on.
  • Page 21: Led Process Status

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 21 / 26 2.3.8 LED Process status LED Process status is used to indicate the status of a process, after it is performed. Successful Process LED color is green, not flashing Input format: LPS<SP>...
  • Page 22: Led Setup Help (Fled)

    ‘F’ ‘L’ ‘E’ ‘D’ <CR> After flashing for 10 seconds ARE i2.0x SEMI returns to standby mode. 2.3.10 LED (De)activate LED functionality (LED) In order to deactivate (or activate) the LED functionality, LED instruction is used. Input format: LED<SP>Parameter<CR> Hex: ASCII: ‘L’...
  • Page 23: System Implementation

    3.3 Mounting on metal ARE i2.0x SEMI is typically mounted on a metal DIN hat rail in a metal electrical cabinet. There is no influence of metal on performance of ARE i2.0x SEMI and therefore nothing to watch out for.
  • Page 24: Fcc Statement

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 24 / 26 4. FCC Statement 4.1 ARE i2.0x SEMI Valid for ARE i2.0x SEMI Federal Communications Commissions (FCC) Statement §15.21 You are cautioned that changes or modifications not expressly approved by the part responsible for compliance could void the user’s authority to operate the equipment.
  • Page 25: Release, Change Protocol

    Version: 13 Manual ARE i2.0x SEMI release V2 Page: 25 / 26 5. Release, Change Protocol Revision: Date: Changes: Author: 28.05.2023 Release first edition 09.06.2023 Details added Manual ARE i2.0x SEMI release V2.docx...
  • Page 26 AEG Identifikationssysteme GmbH Hörvelsinger Weg 47 89081 Ulm Tel.: +49 731 14 00 88 – 0 Email: sales@aegid.de Web: www.aegid.de AEG is a registered trademark used under license from AB Electrolux (publ)

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