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Counter based CMOS temperature sensor for low frequency applications

机译:基于计数的CMOS温度传感器,用于低频应用

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A simple temperature sensor in Bi-CMOS technology is proposed for applications with low frequency temperature variations in addition to a complete analysis of each block in the system. Most CMOS temperature sensors are based on the temperature characteristics of parasitic bipolar transistors. Two important factors need to be met in the design of the sensor: the first is the accuracy of the sensor, and the second is the power consumption of the temperature sensor that needs to be reduced. A simplified counter approach is used here instead of the commonly used complex decimation filter techniques. This approach is appropriate for applications that have low sampling rate of the temperature. The design achieves one degree accuracy over the range 0°C to 85°C which is suitable for most applications. Using such approach saves power and area due to the simplicity of the counter design compared to the decimation filter.
机译:除了完全分析系统中的每个块的完全分析之外,还提出了Bi-CMOS技术中的简单温度传感器,用于低频温度变化。大多数CMOS温度传感器基于寄生双极晶体管的温度特性。在传感器的设计中需要满足两个重要因素:首先是传感器的精度,第二个是需要减少温度传感器的功耗。这里使用简化的计数器方法而不是常用的复杂抽取滤波器技术。这种方法适用于具有低采样率的温度的应用。该设计在0°C至85°C范围内实现了一度的精度,适用于大多数应用。由于对计数器设计的简单性,使用此类方法可以节省电量和面积,而与抽取过滤器相比,使用计数器设计。

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