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Hardware Design for Low Power Integrated Sensor System

机译:低功耗集成传感器系统的硬件设计

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An integrated sensor system is implemented using inter-integrated circuit mode (I2C) software, utilizing the PIC182585 MPLAB embedded control system utilizing hardware. The hardware implementation features high level of integration, reliability, high precision, and high speed communications. The system was demonstrated by temperature and CO2 sensors. An extension for Zigbee system is proposed to enhance the security of the integrated system. A bi-directional air/liquid flow sensor is also added to detect the flow magnitude and direction that can be applied to heating, ventilating, and air-conditioning (HVAC), local and national security within subway systems, and medical equipment. The hardware design of the flow sensor included one heating element and two sensing elements to detect the bi-directional flow. Platinum sensors were found to be of high sensitivity and linear characteristics within 0℃ to 100℃ range, and their high temperature coefficient (0.00385 Ω/Ω/℃). Polyimide thin film heater was used as the heating element due to its high throughput and good thermal efficiency. Two bridge circuits were also designed to sense the temperature distribution in the vicinity of the sensing elements. Three high precision instrumentation low power amplifiers with offset voltage ~2.5 μV (50 μV max) were used for the overall design. The system security is also enhanced with the detection of poison gas using Carbon Nanotube devices (CNT). An antenna system was designed, and a frequency shift was detected to designate the type of poison gas used for a general threat.
机译:集成传感器系统是通过内部集成电路模式(I2C)软件实现的,而PIC182585 MPLAB嵌入式控制系统是通过硬件实现的。硬件实现具有高度集成,可靠性,高精度和高速通信的特点。该系统通过温度和二氧化碳传感器进行了演示。提出了Zigbee系统的扩展,以增强集成系统的安全性。还添加了双向空气/液体流量传感器,以检测可应用于加热,通风和空调(HVAC),地铁系统内的本地和国家安全以及医疗设备的流量大小和方向。流量传感器的硬件设计包括一个加热元件和两个传感元件,用于检测双向流量。发现铂传感器在0℃至100℃的范围内具有高灵敏度和线性特性,并且具有较高的温度系数(0.00385Ω/Ω/℃)。聚酰亚胺薄膜加热器由于其高产量和良好的热效率而被用作加热元件。还设计了两个桥式电路来感应传感元件附近的温度分布。整个设计中使用了三个失调电压约为2.5μV(最大50μV)的高精度仪器低功率放大器。使用碳纳米管设备(CNT)检测有毒气体,也可以提高系统安全性。设计了天线系统,并检测了频移以指定用于一般威胁的有毒气体的类型。

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