Inkjet-Printed Electromagnet-Based Touchpad Using Spiral Resonators

  • Choi, Sungjin; 
  • Eom, Seunghyun; 
  • Tentzeris, Manos M.; 
  • Lim, Sungjoon
Citations

WEB OF SCIENCE

20
Citations

SCOPUS

21

초록

In this paper, an inkjet-printed electromagnet-based touchpad employing spiral resonators is proposed. The proposed touchpad is fabricated by a direct patterning method using an inkjet printer with a conductive silver nanoparticle ink. The conductive patterns are easily printed on a paper substrate and sintered for achieving good conductivity. The proposed touchpad is composed of two spiral resonators that resonate at 0.94 GHz (f(1)) and 1.83 GHz (f(2)), respectively. When the first resonator is touched, f(1) decreases from 0.94 to 0.81 GHz because of electromagnetic (EM) coupling between the finger and the spiral resonator. Similarly, when the second resonator is touched, f(2) decreases from 1.83 to 1.55 GHz. Owing to the EM coupling distance between the spiral resonator and the finger, the frequency changes although the finger does not reach beyond a height of 1.27 mm on the spiral resonator. The performance of the proposed touchpad is validated using simulation and measurement results. [2016-0035]

키워드

Inkjet-printed electronics; paper electronics; printed electronics; spiral resonator; touch sensor; THIN-FILMS; PAPER; ELECTRONICS; NANOPARTICLES; TEMPERATURE; FABRICATION; DESIGN; PADS
제목
Inkjet-Printed Electromagnet-Based Touchpad Using Spiral Resonators
저자
Choi, Sungjin; Eom, Seunghyun; Tentzeris, Manos M.; Lim, Sungjoon
DOI
10.1109/JMEMS.2016.2593956
발행일
2016-10
유형
Article
저널명
Journal of Microelectromechanical Systems
권
25
호
5
페이지
947 ~ 953