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Development of LTCC micro‐hotplate with PTC temperature sensor for gas‐sensing applications
Author(s) -
Kulhari Lokesh,
Ray Kanad,
Paptan Ankit,
Suri Nikhil,
Khanna Pramod K
Publication year - 2020
Publication title -
international journal of applied ceramic technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.4
H-Index - 57
eISSN - 1744-7402
pISSN - 1546-542X
DOI - 10.1111/ijac.13465
Subject(s) - materials science , temperature coefficient , ceramic , optoelectronics , heating element , temperature measurement , response time , screen printing , power consumption , electrode , nanotechnology , composite material , power (physics) , computer science , chemistry , physics , computer graphics (images) , quantum mechanics
Low temperature co‐fired ceramic (LTCC) micro‐hotplates show wide applications in gas sensors and micro‐fluidic devices. It is easily structured in three‐dimensional structures. This paper presents the low power consumption micro‐hotplates which were developed with PTC (positive temperature coefficient) temperature sensor and inter‐digitated electrodes. The paper presents two different structures for micro‐hotplate with platinum as a heating element. The PTC temperature sensor using two different materials viz. PdAg and platinum paste are developed with micro‐hotplates. The simulation has been achieved through COMSOL for LTCC and alumina micro‐hotplates. The temperature variation with power consumption has been measured for the developed LTCC micro‐hotplates. The change in resistance of PTC temperature sensors was measured with micro‐hotplate temperature. The aim of this study was to place a temperature sensor with the gas sensor module to measure and control the temperature of micro‐hotplate. A SnO 2 sensing layer is coated on LTCC micro‐hotplate using screen printing and characterized for the sensing of carbon monoxide gas (CO). This study will be beneficial for designing hotplates based on LTCC technology with low power consumption and better stability of temperature for gas‐sensing applications.
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