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Energy-Efficient Smart Temperature Sensors in CMOS Technology [Hardcover]

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  • Category: Books (Technology & Engineering)
  • Author:  Souri, Kamran, Makinwa, Kofi A.A.
  • Author:  Souri, Kamran, Makinwa, Kofi A.A.
  • ISBN-10:  3319623060
  • ISBN-10:  3319623060
  • ISBN-13:  9783319623061
  • ISBN-13:  9783319623061
  • Publisher:  Springer
  • Publisher:  Springer
  • Binding:  Hardcover
  • Binding:  Hardcover
  • Pub Date:  01-Apr-2017
  • Pub Date:  01-Apr-2017
  • SKU:  3319623060-11-SPRI
  • SKU:  3319623060-11-SPRI
  • Pages:  118
  • Pages:  118
  • Item ID: 100769757
  • List Price: $139.99
  • Seller: ShopSpell
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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-ADCs 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.


Introduction.-?Readout Methods for BJT-Based Temperature Sensors.-?Energy-Efficient BJT Readout.-?BJT-Based, Energy-Efficient Temperature Sensors.-?All-CMOS Precision Temperature Sensors.-?Conclusions.-?Summary.-?Index.

Dr. Kamran Souri received his M.Sc. (cum laude) from the Electronic Instrumentation Laboratory, Delft University of Technology, in 2009. Between 2009 and 2014 he was a Ph.D. candidate in the same faculty, focusing on the design of ultralow-power/energy-efficient CMOS smart temperature sensors for RFID applications. He is currently a Prinls(

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