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A Voltage-Scalable Low-Power All-Digital Temperature Sensor for On-Chip Thermal Monitoring

机译:电压可扩展的低功耗全数字温度传感器,用于片上热监测

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This brief presents a highly supply voltage-scalable, ultra-low-power, all-digital CMOS temperature sensor for on-chip thermal monitoring. The proposed all-digital temperature sensor employs a ring oscillator and a frequency counter to convert the temperature-dependent frequency changes into digital output, featuring a small area, and a high integration capability. The sensor core uses delay elements operating in the sub-threshold region to achieve low power consumption while maintaining high supply scalability. The 0.18 mu m prototype sensor occupies 0.007 mm(2) while consuming 3.92 nW at room temperature from a 0.9-V power supply. The sensing error is less than +0.67/ - 1.64 degrees C from 0 degrees C to 100 degrees C after 2-point calibration. The proposed sensor can operate across a wide range of supply voltage of 0.6 V to 1.2 V, with a supply sensitivity of 0.0019 degrees C/mV.
机译:本简介介绍了一种用于片上热监控的高电源电压可缩放,超低功耗全数字CMOS温度传感器。提出的全数字温度传感器采用环形振荡器和频率计数器,将与温度相关的频率变化转换为数字输出,具有面积小和集成度高的特点。传感器内核使用在亚阈值区域内操作的延迟元件来实现低功耗,同时保持高电源可扩展性。 0.18微米原型传感器占用0.007毫米(2),而室温下使用0.9V电源则消耗3.92 nW。两点校准后,从0摄氏度到100摄氏度,传感误差小于+ 0.67 /-1.64摄氏度。所提出的传感器可以在0.6 V至1.2 V的宽电源电压范围内工作,电源灵敏度为0.0019摄氏度/毫伏。

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