Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications

博士 === 國立成功大學 === 電機工程學系 === 102 === Analog and mixed-signal circuits are sensitive to many factors such as the manufacturing process and supply voltage variations. In a highly integrated system chip, the effect from heat is an important issue which is attracting more and more concern. Either the fu...

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Main Authors: Peng-YuChen, 陳鵬宇
Other Authors: Soon-Jyh Chang
Format: Others
Language:en_US
Published: 2014
Online Access:http://ndltd.ncl.edu.tw/handle/wz5a69
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spelling ndltd-TW-102NCKU54420992019-05-15T21:42:46Z http://ndltd.ncl.edu.tw/handle/wz5a69 Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications 應用於系統晶片之穩定參考電壓源產生電路與溫度感測系統之設計 Peng-YuChen 陳鵬宇 博士 國立成功大學 電機工程學系 102 Analog and mixed-signal circuits are sensitive to many factors such as the manufacturing process and supply voltage variations. In a highly integrated system chip, the effect from heat is an important issue which is attracting more and more concern. Either the function maintenance in different temperature or the real-time warning of overheat is necessary in a system chip. In this dissertation, we present a switched-capacitor (SC) charge-mode bandgap reference generator with an improved correlated double sampling (CDS) technique to produce a temperature-insensitive output reference voltage over a wide temperature range. By manipulating the CDS technique, the circuit only needs a low-gain amplifier to realize the design, and thus it is suitable for low-supply-voltage applications. For real-time thermal monitoring of all the critical locations in a system-on-a-chip (SoC), a primary-auxiliary temperature sensing scheme is proposed. Taking advantage of the high accuracy and linearity of the analog primary temperature sensors and the low production cost of the digital auxiliary temperature sensors, this sensing scheme monitors multiple hotspots in a highly integrated system chip with small area and low power consumption. A cost efficient calibration strategy based on the difference of calibration complexity and sensitivity to the MOSFET aging between the primary and auxiliary temperature sensors is also presented in this dissertation. This calibration strategy can calibrate all the temperature sensors in a thermal monitoring system. Soon-Jyh Chang 張順志 2014 學位論文 ; thesis 97 en_US
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description 博士 === 國立成功大學 === 電機工程學系 === 102 === Analog and mixed-signal circuits are sensitive to many factors such as the manufacturing process and supply voltage variations. In a highly integrated system chip, the effect from heat is an important issue which is attracting more and more concern. Either the function maintenance in different temperature or the real-time warning of overheat is necessary in a system chip. In this dissertation, we present a switched-capacitor (SC) charge-mode bandgap reference generator with an improved correlated double sampling (CDS) technique to produce a temperature-insensitive output reference voltage over a wide temperature range. By manipulating the CDS technique, the circuit only needs a low-gain amplifier to realize the design, and thus it is suitable for low-supply-voltage applications. For real-time thermal monitoring of all the critical locations in a system-on-a-chip (SoC), a primary-auxiliary temperature sensing scheme is proposed. Taking advantage of the high accuracy and linearity of the analog primary temperature sensors and the low production cost of the digital auxiliary temperature sensors, this sensing scheme monitors multiple hotspots in a highly integrated system chip with small area and low power consumption. A cost efficient calibration strategy based on the difference of calibration complexity and sensitivity to the MOSFET aging between the primary and auxiliary temperature sensors is also presented in this dissertation. This calibration strategy can calibrate all the temperature sensors in a thermal monitoring system.
author2 Soon-Jyh Chang
author_facet Soon-Jyh Chang
Peng-YuChen
陳鵬宇
author Peng-YuChen
陳鵬宇
spellingShingle Peng-YuChen
陳鵬宇
Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
author_sort Peng-YuChen
title Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
title_short Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
title_full Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
title_fullStr Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
title_full_unstemmed Design of Stable Reference Voltage Generator and Temperature Sensing System for System Chip Applications
title_sort design of stable reference voltage generator and temperature sensing system for system chip applications
publishDate 2014
url http://ndltd.ncl.edu.tw/handle/wz5a69
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