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  5. A 0.2 V Micro‐Electromechanical Switch Enabled by a Phase Transition

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Article
en
2018

A 0.2 V Micro‐Electromechanical Switch Enabled by a Phase Transition

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en
2018
Vol 14 (14)
Vol. 14
DOI: 10.1002/smll.201703621

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Junqiao Wu
Junqiao Wu

University of California, Berkeley

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Kaichen Dong
Hwan Sung Choe
Xi Wang
+11 more

Abstract

Abstract Micro‐electromechanical (MEM) switches, with advantages such as quasi‐zero leakage current, emerge as attractive candidates for overcoming the physical limits of complementary metal‐oxide semiconductor (CMOS) devices. To practically integrate MEM switches into CMOS circuits, two major challenges must be addressed: sub 1 V operating voltage to match the voltage levels in current circuit systems and being able to deliver at least millions of operating cycles. However, existing sub 1 V mechanical switches are mostly subject to significant body bias and/or limited lifetimes, thus failing to meet both limitations simultaneously. Here 0.2 V MEM switching devices with ≳10 6 safe operating cycles in ambient air are reported, which achieve the lowest operating voltage in mechanical switches without body bias reported to date. The ultralow operating voltage is mainly enabled by the abrupt phase transition of nanolayered vanadium dioxide (VO 2 ) slightly above room temperature. The phase‐transition MEM switches open possibilities for sub 1 V hybrid integrated devices/circuits/systems, as well as ultralow power consumption sensors for Internet of Things applications.

How to cite this publication

Kaichen Dong, Hwan Sung Choe, Xi Wang, Huili Liu, Bivas Saha, Changhyun Ko, Yang Deng, Kyle B. Tom, Shuai Lou, Letian Wang, Costas P. Grigoropoulos, Zheng You, Jie Yao, Junqiao Wu (2018). A 0.2 V Micro‐Electromechanical Switch Enabled by a Phase Transition. , 14(14), DOI: https://doi.org/10.1002/smll.201703621.

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Publication Details

Type

Article

Year

2018

Authors

14

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/smll.201703621

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