The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System
碩士 === 國立中正大學 === 電機工程研究所 === 103 === The increase in device density and speed of modern high performance processors cause chips to heat up and not removed quickly during runtime, thus resulting in thermal problems. The thermal management techniques are essential to be incorporated into systems to...
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ndltd-TW-103CCU004421082019-05-15T22:08:03Z http://ndltd.ncl.edu.tw/handle/24ar7c The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System 以二十八奈米製程設計全數位溫度感測器 並整合於變異偵測與管理系統之研究 Shang-Yi Li 李尚頤 碩士 國立中正大學 電機工程研究所 103 The increase in device density and speed of modern high performance processors cause chips to heat up and not removed quickly during runtime, thus resulting in thermal problems. The thermal management techniques are essential to be incorporated into systems to protect from damage. On-chip all-digital temperature sensors (TSs) have features as low cost, low power and easy integration. We design the all-digital TSs in 28-nm and integrate them in the variation monitoring and management system, which monitors the variations. However, the issues of the nominal voltage being near the zero-temperature- coefficient (ZTC) point, and the influence of serious process variations, cause the severe sensing errors. We design a new delay cell with improved temperature sensitivity. And a new method, adaptive one-point calibration, has better accuracy (4.7℃) than that of the conventional one-point calibration (7.6℃) with the similar calibration cost. Jinn-Shyan Wang 王進賢 2015 學位論文 ; thesis 107 zh-TW |
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碩士 === 國立中正大學 === 電機工程研究所 === 103 === The increase in device density and speed of modern high performance processors cause chips to heat up and not removed quickly during runtime, thus resulting in thermal problems. The thermal management techniques are essential to be incorporated into systems to protect from damage. On-chip all-digital temperature sensors (TSs) have features as low cost, low power and easy integration. We design the all-digital TSs in 28-nm and integrate them in the variation monitoring and management system, which monitors the variations. However, the issues of the nominal voltage being near the zero-temperature- coefficient (ZTC) point, and the influence of serious process variations, cause the severe sensing errors. We design a new delay cell with improved temperature sensitivity. And a new method, adaptive one-point calibration, has better accuracy (4.7℃) than that of the conventional one-point calibration (7.6℃) with the similar calibration cost.
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Jinn-Shyan Wang |
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Jinn-Shyan Wang Shang-Yi Li 李尚頤 |
author |
Shang-Yi Li 李尚頤 |
spellingShingle |
Shang-Yi Li 李尚頤 The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
author_sort |
Shang-Yi Li |
title |
The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
title_short |
The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
title_full |
The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
title_fullStr |
The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
title_full_unstemmed |
The Research on The 28-nm All-Digital Temperature Sensor Design and Integration in The Variation Monitoring and Management System |
title_sort |
research on the 28-nm all-digital temperature sensor design and integration in the variation monitoring and management system |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/24ar7c |
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