Energy-Efficient Smart Temperature Sensors in CMOS Technology (Analog Circuits and Signal Processing)
暫譯: CMOS技術中的能源效率智能溫度傳感器(類比電路與信號處理)

Kamran Souri, Kofi A.A. Makinwa

  • 出版商: Springer
  • 出版日期: 2017-10-13
  • 售價: $5,640
  • 貴賓價: 9.5$5,358
  • 語言: 英文
  • 頁數: 118
  • 裝訂: Hardcover
  • ISBN: 3319623060
  • ISBN-13: 9783319623061
  • 相關分類: CMOS感測器 Sensor
  • 海外代購書籍(需單獨結帳)

商品描述

This book describes the design and implementation of energy-efficient smart (digital output) temperature sensors in CMOS technology. To accomplish this, a new readout topology, namely the zoom-ADC, is presented. It combines a coarse SAR-ADC with a fine Sigma-Delta (SD) ADC. The digital result obtained from the coarse ADC is used to set the reference levels of the SD-ADC, thereby zooming its full-scale range into a small region around the input signal. This technique considerably reduces the SD-ADC’s full-scale range, and notably relaxes the number of clock cycles needed for a given resolution, as well as the DC-gain and swing of the loop-filter. Both conversion time and power-efficiency can be improved, which results in a substantial improvement in energy-efficiency. Two BJT-based sensor prototypes based on 1st-order and 2nd-order zoom-ADCs are presented. They both achieve inaccuracies of less than ±0.2°C over the military temperature range (-55°C to 125°C). A prototype capable of sensing temperatures up to 200°C is also presented. As an alternative to BJTs, sensors based on dynamic threshold MOSTs (DTMOSTs) are also presented. It is shown that DTMOSTs are capable of achieving low inaccuracy (±0.4°C over the military temperature range) as well as sub-1V operation, making them well suited for use in modern CMOS processes.


商品描述(中文翻譯)

本書描述了在CMOS技術中設計和實現能量效率高的智能(數位輸出)溫度傳感器。為了實現這一目標,提出了一種新的讀取拓撲,即zoom-ADC。它將粗略的SAR-ADC與精細的Sigma-Delta (SD) ADC結合在一起。從粗略ADC獲得的數位結果用於設置SD-ADC的參考電平,從而將其全量程範圍縮放到輸入信號周圍的一個小區域。這種技術顯著減少了SD-ADC的全量程範圍,並顯著放寬了在給定解析度下所需的時鐘週期數,以及迴路濾波器的直流增益和擺幅。轉換時間和功率效率均可改善,從而顯著提高能量效率。提出了基於1階和2階zoom-ADC的兩個基於BJT的傳感器原型。它們在軍用溫度範圍(-55°C至125°C)內均實現了不準確度小於±0.2°C的性能。還提出了一個能夠感測高達200°C的原型。作為BJTs的替代方案,還提出了基於動態閾值MOSTs (DTMOSTs) 的傳感器。研究顯示,DTMOSTs能夠實現低不準確度(在軍用溫度範圍內±0.4°C)以及低於1V的操作,使其非常適合用於現代CMOS工藝中。

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