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Low-power micro-scale CMOS-compatible silicon sensor on a suspended membrane.

机译:悬浮膜上的低功耗微尺度CmOs兼容硅传感器。

摘要

In this paper we describe a new, simple and cheap silicon device operating at high temperature at a very low power of a few mW. The essential part of the device is a nano-size conductive link 10-100 nm in size (the so-called antifuse) formed in between two poly-silicon electrodes separated by a thin SiO2 layer. The device can be utilized in chemical sensors or chemical micro-reactors requiring high temperature and very low power consumption e.g. in portable, battery operated systems. As a direct application, we mention a gas sensor (i.e. Pellistor) for hydrocarbons (butane, methane, propane, etc.) based on temperature changes due to the catalytic combustion of hydrocarbons. The power consumed by our device is at about 2% of the power consumed by conventional Pellistors.
机译:在本文中,我们描述了一种新型的,简单且便宜的硅器件,该器件在高温下以几mW的极低功率工作。该设备的主要部分是在两个薄SiO2层隔开的多晶硅电极之间形成10-100 nm大小的纳米级导电链(所谓的反熔丝)。该装置可用于需要高温和极低功耗的化学传感器或化学微反应器,例如在便携式电池供电的系统中。作为直接的应用,我们提到一种基于碳氢化合物催化燃烧引起的温度变化的气体传感器(即Pellistor),用于碳氢化合物(丁烷,甲烷,丙烷等)。我们的设备消耗的功率大约是传统Pellistor消耗的功率的2%。

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