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UHF Textronic RFID Transponder with Bead-Shaped Microelectronic Module

Electronics (Switzerland), ISSN: 2079-9292, Vol: 12, Issue: 23
2023
  • 5
    Citations
  • 0
    Usage
  • 4
    Captures
  • 2
    Mentions
  • 0
    Social Media
Metric Options:   Counts1 Year3 Year

Metrics Details

  • Citations
    5
  • Captures
    4
  • Mentions
    2
    • Blog Mentions
      1
      • Blog
        1
    • News Mentions
      1
      • News
        1

Most Recent Blog

Electronics, Vol. 12, Pages 4873: UHF Textronic RFID Transponder with Bead-Shaped Microelectronic Module

Electronics, Vol. 12, Pages 4873: UHF Textronic RFID Transponder with Bead-Shaped Microelectronic Module Electronics doi: 10.3390/electronics12234873 Authors: Piotr Jankowski-Mihułowicz Mariusz Węglarski Patryk Pyt Kacper Skrobacz

Most Recent News

New Electronics Study Findings Have Been Published by Researchers at Rzeszow University of Technology (UHF Textronic RFID Transponder with Bead-Shaped Microelectronic Module)

2023 DEC 27 (NewsRx) -- By a News Reporter-Staff News Editor at Electronics Daily -- New study results on electronics have been published. According to

Article Description

The idea of novel antennas and matching circuits, developed for radio frequency identification (RFID) passive transponders, and made on textile substrates, is presented in this paper. By manufacturing an RFID transponder by the means used in every clothing factory, we developed the concept of RFIDtex tags, which, as textronic devices, make a new significant contribution to the Internet of Textile Things (IoTT). The main feature of the device consists of the use of an uncommon inductively coupled system as the antenna feed element. The antenna is sewn/embroidered with a conductive thread, and the microelectronic module with an RFID chip is made in the form of a bead, using standard electronic technology. Finally, the construction of the RFIDtex tag is developed for easy implementation in production lines in the garment industry. The proposed inductive coupling scheme has not been considered anywhere, so far. The developed transponder is dedicated to operating in RFID systems of the ultra-high frequency band (UHF). The numerical calculations confirmed by the experimental results clearly indicate that the proposed coupling system between the antenna and the microelectronic module works properly and the RFIDtex device can operate correctly within a distance of several meters. The proposed design is based on the authors’ patent on the textronic RFID transponder (patent no PL 231291 B1).

Bibliographic Details

Piotr Jankowski-Mihułowicz; Mariusz Węglarski; Patryk Pyt; Kacper Skrobacz; Karol Karpiński

MDPI AG

Engineering; Computer Science

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