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논문 기본 정보

자료유형
학술저널
저자정보
정동욱 (광주과학기술원) 주훈표 (한국전자통신연구원)
저널정보
한국센서학회 센서학회지 센서학회지 제33권 제5호
발행연도
2024.9
수록면
344 - 352 (9page)

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초록· 키워드

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Stretchable electronics are emerging as next-generation devices owing to their unique deformable characteristics, which allow theirapplication on nonplanar and even deformable surfaces. However, to implement advanced functions in stretchable electronics, conventional rigid components must be integrated to reduce the overall stretchability of these systems. Various design strategies have beenproposed to address this challenge. One notable approach involves dividing the electronics into nonstretchable regions for componentintegration and stretchable interconnector regions that absorb strain. However, stretchable interconnectors, which electrically connectnonstretchable circuits, may reduce the functional density of electronics. In this study, we present a design strategy for self-sensingstretchable electronics by embedding strain sensors within stretchable interconnectors. We provide both computational and experimentalevidence demonstrating the advantages of this approach and validate the feasibility of the design by developing a stretchable light-emitting diode (LED) matrix with self-sensing capabilities for measuring the stretching ratio. The results presented herein offer valuable strategies for advancing applications that require stretchable electronics with high functional densities. Moreover, the self-sensing designapproach has significant potential for application in proprioceptive electronics.

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