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An Autocalibrated All-Digital Temperature Sensor for On-Chip Thermal Monitoring

机译:用于片上热监控的自动校准全数字温度传感器

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摘要

This brief presents an autocalibrated all-digital temperature sensor circuit for use with on-chip thermal sensing applications. The proposed temperature sensor eliminates the need for two-temperature-point calibration in prior temperature sensors. Therefore, temperature sensor calibration efforts in high-volume production can be significantly reduced. The proposed design uses reference clock period information to perform self-calibration, and thus, effects of process variation can be removed. Subsequently, the accuracy of the proposed temperature sensor can be improved with very small area cost and low power consumption. The temperature sensor is implemented with a standard performance 65-nm complementary metal–oxide–semiconductor technology. The core area is 0.01 $hbox{mm}^{2}$, and the power consumption of the proposed circuit is 150 $muhbox{W}$ with a 1-V supply. Since the proposed temperature sensor can be easily calibrated with a reference clock, the proposed design is very suitable for dynamic thermal management applications in a system-on-a-chip era.
机译:本简介介绍了一种自动校准的全数字温度传感器电路,用于片上热感测应用。所提出的温度传感器消除了现有温度传感器中对两个温度点进行校准的需要。因此,可以显着减少大批量生产中的温度传感器校准工作。提出的设计使用参考时钟周期信息来执行自校准,因此可以消除工艺变化的影响。随后,可以以非常小的面积成本和低功耗来改善所提出的温度传感器的精度。温度传感器采用标准性能65纳米互补金属-氧化物-半导体技术实现。核心区域为0.01 $ hbox {mm} ^ {2} $,采用1V电源时,所建议电路的功耗为150 $ muhbox {W} $。由于所提出的温度传感器可以很容易地用参考时钟进行校准,因此所提出的设计非常适合片上系统时代的动态热管理应用。

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