Microelectromechanical Switch with Carbon Nanotube Arrays for High-Temperature Operation
  • Eunhwan Jo
  • YUNSUNG KANG
  • Sangjun Sim
  • Jungwook Choi
  • Jongbaeg Kim
Citations

SCOPUS

1

초록

This paper reports a micro-electro-mechanical (MEM) switch based on carbon nanotube (CNT) array-to-CNT array contact operating at high temperatures. The outstanding interfacial thermal stability of the CNT arrays allowed the successful operation of the switch at 300 °C, under which condition the solid-state transistors or metal-based MEM switches would not be functioning. Our device operated as an n-type MEM switch by forming an air gap based on the intended stiction induced by the wet processes and the recovery after the synthesis of CNTs. Additionally, we investigated the possible degradation in switching behavior and the change in contact resistance at various temperatures. The switch exhibits stable and repetitive operations over 1, 000 cycles at 300 °C under hot-switching conditions in nitrogen at atmospheric pressure without a significant change in the switching characteristics. © 2020 IEEE.

키워드

carbon nanotubehigh-temperature operationlogic circuitMechanical switchAtmospheric pressureHigh temperature operationsMechanicsMEMSShotcretingThermodynamic stabilityCarbon nanotube arrayInterfacial thermal stabilityMicro-electro-mechanicalMicroelectromechanical switchRepetitive operationsSolid-state transistorsSwitching characteristicsSwitching conditionsCarbon nanotubes
제목
Microelectromechanical Switch with Carbon Nanotube Arrays for High-Temperature Operation
저자
Eunhwan JoYUNSUNG KANGSangjun SimJungwook ChoiJongbaeg Kim
DOI
10.1109/MEMS46641.2020.9056285
발행일
2020-01
유형
Conference Paper
저널명
Proceedings of the IEEE International Conference on Micro Electro Mechanical Systems (MEMS)
2020-January
페이지
574 ~ 577

파일 다운로드