首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >366-kS/s 1.09-nJ 0.0013-${rm mm}^{2}$ Frequency-to-Digital Converter Based CMOS Temperature Sensor Utilizing Multiphase Clock
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366-kS/s 1.09-nJ 0.0013-${rm mm}^{2}$ Frequency-to-Digital Converter Based CMOS Temperature Sensor Utilizing Multiphase Clock

机译:366-kS / s 1.09-nJ 0.0013-$ {rm mm} ^ {2} $利用多相时钟的基于频率数字转换器的CMOS温度传感器

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摘要

A smart temperature sensor in 65-nm CMOS, utilizing CMOS ring oscillators, consumes 1.09 nJ at a conversion rate of 366 kS/s. This is achieved by the direct temperature-to-digital conversion method implemented in the frequency-to-digital converter. The algorithm utilized in the fine code generator makes it possible to increase the resolution of the sensor efficiently. Compared to previous work, this brief shows lower $V_{rm DD}$ operation. After one point calibration, the chip-to-chip spread is ${+}2.7sim{-}{2.9}^{circ}{rm C}$ over the temperature range of ${-}{rm 40}^{circ}{rm C}$ to 110$^{circ}{rm C}$.
机译:采用CMOS环形振荡器的65nm CMOS智能温度传感器在366 kS / s的转换速率下消耗1.09 nJ。这是通过在频率数字转换器中实现的直接温度数字转换方法来实现的。精细代码生成器中使用的算法可以有效地提高传感器的分辨率。与以前的工作相比,此简介显示了较低的 $ V_ {rm DD} $ 操作。一点校准后,芯片到芯片的扩展为<配方公式type =“ inline”> $ {+} 2.7sim {-} {2.9} ^ {circ} {rm C} $ $ {-} {rm 40} ^ {circ} {rm C} $ 的温度范围内到110 $ ^ {circ} {rm C} $

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