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GaN-based micro chemical sensor nodes for early warning chemical agents

机译:基于GaN的微化学传感器节点,用于预警化学剂

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We are developing micro chemical sensor nodes that can be used for real time, remote detection and early warning of chemical agent threats. The chemical sensors in our sensor nodes utilize GaN HEMTs (High Electron Mobility Transistors) fabricated with catalytically active transition metal gate electrodes. The GaN HEMT chemical sensors exhibit high sensitivity and selectivity toward chemical agent simulants such as DECNP (Diethyl cyano phosphonate), and this is the first time that chemical agent simulants have been detected with GaN micro sensors. Response time of the GaN HEMT sensor to a chemical species is within a second, and the maximum electronic response speed of the sensor is ~3 GHz. A prototype micro chemical sensor node has been constructed with the GaN sensor, a micro controller, and an RF link. The RF sensor node is operated with a single 3V Li battery, dissipating 15 mW during the RF transmission with 5 dBm output power. The microcontroller allows the operation of the RF sensor nodes with a duty cycle down to 1 %, extending lifetime of the RF sensor nodes over 47 days. Designed to transmit RF signals only at the exposures to chemical agents and produce collective responses to a chemical agent via a sensorweb, the GaN micro chemical sensor nodes seem to be promising for chemical agent beacons.
机译:我们正在开发微化学传感器节点,可用于实时,远程检测和化学代理威胁的预警。传感器节点中的化学传感器利用了用催化有源过渡金属栅电极制造的GaN Hemts(高电子迁移率晶体管)。 GaN Hemt化学传感器对化学试剂的敏感性和选择性具有高敏感性和选择性,例如DECNP(氰基膦酸二乙酯),这是第一次用GaN Micro传感器检测到化学药物模拟器。 GaN HEMT传感器到化学物质的响应时间在秒内,传感器的最大电子响应速度为〜3 GHz。用GaN传感器,微控制器和RF链路构造了原型微化学传感器节点。 RF传感器节点用单个3V Li电池操作,在RF传输期间耗散15MW,具有5 dBm输出功率。微控制器允许将具有占空比的RF传感器节点降至1%,超过47天的RF传感器节点的寿命。设计用于仅在暴露于化学试剂处传输RF信号并通过SensorWeb产生对化学试剂的集体反应,GaN Micro Chemical Sensor节点似乎对化学剂信标有望。

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