Smart single-chip CMOS microhotplate array for metal-oxide-based gas sensors

M. Graf, D. Barrettino, P. Kaser, J. Cerdà, A. Hierlemann, H. Baltes
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引用次数: 13

Abstract

A monolithic gas sensor system is presented, which includes on a single chip an array of three metal-oxide covered microhotplates, each of which is individually addressable and can be operated at a defined temperature. The monolithically co-integrated circuitry consists of three independent temperature control loops for the microhotplates and an on-chip temperature sensor. An innovative design of a circular-shape microhotplate has been realized. Temperature homogeneity and thermal efficiency of the membrane were optimized for use with thick films of nanocrystalline metal oxides as sensitive layers. A SnO/sub 2/-based sensing material with noble metal doping was operated at different temperatures as well as in temperature pulsing mode. Chemical sensor measurements have been conducted with, e.g., CO to show the system performance.
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用于金属氧化物气体传感器的智能单芯片CMOS微热板阵列
提出了一种单片气体传感器系统,该系统在单个芯片上包含三个金属氧化物覆盖的微热板阵列,每个热板都是单独可寻址的,可以在指定的温度下工作。单片协集成电路由三个独立的温度控制回路和一个片上温度传感器组成。实现了一种圆形微热板的创新设计。对膜的温度均匀性和热效率进行了优化,以纳米晶金属氧化物厚膜为敏感层。研究了掺杂贵金属的SnO/ sub2 /基传感材料在不同温度和温度脉冲模式下的工作特性。化学传感器测量已经进行,例如,一氧化碳,以显示系统性能。
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