Research Article
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Year 2022, Volume: 10 Issue: 3, 273 - 277, 30.07.2022
https://doi.org/10.17694/bajece.1094805

Abstract

References

  • [1] Sweeney P. J., “RFID for Dummies”, 1st Edition, Wiley Publishing Inc., Indiana, USA, 2005.
  • [2] https://www.upu.int/UPU/media/upu/files/postalSolutions/programmesAndServices/standards/S10-12.pdf Online: 15.01.2022
  • [3] Bilgin, M., “Biyometrik Seçim Sistemi Tasarımı ve Gerçekleştirilmesi”, Thesis of MSc, Selçuk University Institute of Pure and Applied Sciences, Konya, Türkiye, 2008.
  • [4] B. Eren, “Biyometrik Teknolojilerin Etkili Tasarlanması ve Uygulanmasında Yeni Bir Öneri: Multimodel Teknoloji”, Thesis of MSc, Mimar Sinan Fine Arts University Institute of Pure and Applied Sciences, İstanbul, Türkiye, 2009.
  • [5] J.M. Sardroud, “Influence of RFID technology on automated management of construction materials and components”, Scientia Iranica, Vol. 19, No. 3, 2012, pp. 381-392.
  • [6] X. Zhu, S.K. Mukhopadhyay, H. Kurata, “A Review of RFID Technology and Its Managerial Applications in Different Industries” Journal of Engineering and Technology Management, Vol. 29, No. 1, 2012, pp. 152–167.
  • [7] Y. Wang, Y. Huang, Y. Li, P. Cheng, S. Cheng, Q. Liang et. al., “A facile process combined with roll-to-roll flexographic printing and electroless deposition to fabricate RFID tag antenna on paper substrates”, Composites Part B: Engineering, Vol: 224, November 2021, pp. 109194.
  • [8] S. Kalaycı, “Design of A Radio Frequency Identification (Rfid) Antenna”, Thesis of MSc, Middle East Technical University Institute of Pure and Applied Sciences, Ankara, Türkiye, 2009.
  • [9] D. Dobkin, The RF in Rfid Passive UHF Rfid in Practise, 1st Ed., Elsevier, 2008.
  • [10] C. Luo, I. Gil, R. Fernandez-Garcia, “Experimental comparison of three electro-textile interfaces for textile UHF-RFID tags on clothes”, AEU - International Journal of Electronics and Communications, Vol. 146, March 2022, pp.154137.
  • [11] C.D.M. Pena, D.B. Oliveira, E.J. Silva, M.W.B. Silva, “Ultra slim and small UHF RFID tag design for mounting on curved surfaces”, AEU - International Journal of Electronics and Communications, Vol.128, January 2021, pp.153502.
  • [12] E. Hardi, M. Veigt, M. Koerdt, A.S. Herrmann, M. Freitag, “Use of RFID tags for monitoring resin flow and investigation of their influence on the mechanical properties of the composite”, Procedia Manufacturing, Vol.24, 2018, pp.305-310.
  • [13] J. Alarcon, R. Saba, M. Egels, P. Pannier, “A Flexible UHF RFID Tag for Harsh Environments”. IEEE 2012 International Conference on RFID-Technologies and Applications (RFID-TA), France, 2012
  • [14] A.S. Sarkın, “Esnek Yüzeylerdeki Baskı Devrelere Yarı İletken Uygulamaları”, Thesis of MSc, Marmara University Institute of Pure and Applied Sciences, İstanbul, Türkiye, 2013.
  • [15] L. Jian, A. Bing, Q. Jian, W. Yiping, “Nano Copper Conductive Ink for RFID Application”. 2011 International Symposium on Advanced Packaging Materials (APM), China, 2011.
  • [16] Ü. Sevinç, Akrilonitril Bütadien (Nbr) Kauçuğunun ve Yapıştırıcısının Sentezi, Karakterizasyonu ve Demir Metaline Yapıştırılması”, Thesis of MSc, Bursa Uludağ University Institute of Pure and Applied Sciences, Bursa, Türkiye, 2019.

Semi-conductor Applications to Printed Circuits on Flexible Surfaces

Year 2022, Volume: 10 Issue: 3, 273 - 277, 30.07.2022
https://doi.org/10.17694/bajece.1094805

Abstract

The most common type of identification system today is RFID. RFID circuits are used as covered with plastic. With the increase in usage areas, it is also used on metal, wood, paper, and plastic product. In this study, the behavior of the same circuit on different surfaces was investigated. The surface impedance and signal reflection coefficients of RFID tag antennas were investigated based on paper, plastic, and textile surfaces. According to the results of the electrical and mechanical tests, the best results in terms of reflectance coefficients and surface impedances of RFID tags are on PET surfaces. The surface impedance and the reflection coefficients were high on paper surfaces. The lowest values were measured on textile surfaces. According to the results, it has been seen that RFID antenna application on plastic, paper, and textile surfaces is possible and usable.

References

  • [1] Sweeney P. J., “RFID for Dummies”, 1st Edition, Wiley Publishing Inc., Indiana, USA, 2005.
  • [2] https://www.upu.int/UPU/media/upu/files/postalSolutions/programmesAndServices/standards/S10-12.pdf Online: 15.01.2022
  • [3] Bilgin, M., “Biyometrik Seçim Sistemi Tasarımı ve Gerçekleştirilmesi”, Thesis of MSc, Selçuk University Institute of Pure and Applied Sciences, Konya, Türkiye, 2008.
  • [4] B. Eren, “Biyometrik Teknolojilerin Etkili Tasarlanması ve Uygulanmasında Yeni Bir Öneri: Multimodel Teknoloji”, Thesis of MSc, Mimar Sinan Fine Arts University Institute of Pure and Applied Sciences, İstanbul, Türkiye, 2009.
  • [5] J.M. Sardroud, “Influence of RFID technology on automated management of construction materials and components”, Scientia Iranica, Vol. 19, No. 3, 2012, pp. 381-392.
  • [6] X. Zhu, S.K. Mukhopadhyay, H. Kurata, “A Review of RFID Technology and Its Managerial Applications in Different Industries” Journal of Engineering and Technology Management, Vol. 29, No. 1, 2012, pp. 152–167.
  • [7] Y. Wang, Y. Huang, Y. Li, P. Cheng, S. Cheng, Q. Liang et. al., “A facile process combined with roll-to-roll flexographic printing and electroless deposition to fabricate RFID tag antenna on paper substrates”, Composites Part B: Engineering, Vol: 224, November 2021, pp. 109194.
  • [8] S. Kalaycı, “Design of A Radio Frequency Identification (Rfid) Antenna”, Thesis of MSc, Middle East Technical University Institute of Pure and Applied Sciences, Ankara, Türkiye, 2009.
  • [9] D. Dobkin, The RF in Rfid Passive UHF Rfid in Practise, 1st Ed., Elsevier, 2008.
  • [10] C. Luo, I. Gil, R. Fernandez-Garcia, “Experimental comparison of three electro-textile interfaces for textile UHF-RFID tags on clothes”, AEU - International Journal of Electronics and Communications, Vol. 146, March 2022, pp.154137.
  • [11] C.D.M. Pena, D.B. Oliveira, E.J. Silva, M.W.B. Silva, “Ultra slim and small UHF RFID tag design for mounting on curved surfaces”, AEU - International Journal of Electronics and Communications, Vol.128, January 2021, pp.153502.
  • [12] E. Hardi, M. Veigt, M. Koerdt, A.S. Herrmann, M. Freitag, “Use of RFID tags for monitoring resin flow and investigation of their influence on the mechanical properties of the composite”, Procedia Manufacturing, Vol.24, 2018, pp.305-310.
  • [13] J. Alarcon, R. Saba, M. Egels, P. Pannier, “A Flexible UHF RFID Tag for Harsh Environments”. IEEE 2012 International Conference on RFID-Technologies and Applications (RFID-TA), France, 2012
  • [14] A.S. Sarkın, “Esnek Yüzeylerdeki Baskı Devrelere Yarı İletken Uygulamaları”, Thesis of MSc, Marmara University Institute of Pure and Applied Sciences, İstanbul, Türkiye, 2013.
  • [15] L. Jian, A. Bing, Q. Jian, W. Yiping, “Nano Copper Conductive Ink for RFID Application”. 2011 International Symposium on Advanced Packaging Materials (APM), China, 2011.
  • [16] Ü. Sevinç, Akrilonitril Bütadien (Nbr) Kauçuğunun ve Yapıştırıcısının Sentezi, Karakterizasyonu ve Demir Metaline Yapıştırılması”, Thesis of MSc, Bursa Uludağ University Institute of Pure and Applied Sciences, Bursa, Türkiye, 2019.
There are 16 citations in total.

Details

Primary Language English
Subjects Electrical Engineering
Journal Section Araştırma Articlessi
Authors

Nazmi Ekren 0000-0003-3530-9262

Ali Samet Sarkın 0000-0001-6261-0531

Publication Date July 30, 2022
Published in Issue Year 2022 Volume: 10 Issue: 3

Cite

APA Ekren, N., & Sarkın, A. S. (2022). Semi-conductor Applications to Printed Circuits on Flexible Surfaces. Balkan Journal of Electrical and Computer Engineering, 10(3), 273-277. https://doi.org/10.17694/bajece.1094805

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