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The Design of a Low Power MEMS Based Micro-hotplate Device Using a Novel Nickel Alloy for Gas Sensing Applications

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Title The Design of a Low Power MEMS Based Micro-hotplate Device Using a Novel Nickel Alloy for Gas Sensing Applications
 
Creator Kantha, Bijoy
Sarkar, Subir Kumar
 
Subject MEMS
Micro-hotplate
CoventorWareTM
Electro-thermo-mechanical
ZnO
 
Description In this paper comparative analysis of MEMS (Micro-electro-mechanical System) based Micro-hotplate
using three different heating elements use as separately are presented. Three different materials (viz. DilverP1,
Polysilicon, and Platinum) are used as heating elements with same thickness of 0.2 m. Coventor-
WareTM simulator has been used for construction of 3D model and electro-thermo-mechanical analysis of
Micro-hotplate device. Power consumption, stress and displacement of Micro-hotplate are studied at operating
temperature (165 ºC). It is obtained that power consumption, stress and displacement of Dilverp1 heating element
are 13.06 mW, 190 MPa and 0.028 m which are less in comparison to those with Poly Silicon heater
and Platinum heater at moderate temperature (150-200 C) over the sensing material (ZnO).
 
Publisher Sumy State University
 
Date 2014-06-23T10:58:36Z
2014-06-23T10:58:36Z
2014
 
Type Article
 
Identifier Kantha, Bijoy The Design of a Low Power MEMS Based Micro-hotplate Device Using a Novel Nickel Alloy for Gas Sensing Applications [Текст] / B. Kantha, S.K. Sarkar // Журнал нано- та електронної фізики. — 2014. — Т.6, №1. — 01004.
http://essuir.sumdu.edu.ua/handle/123456789/35816
 
Language en