An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization

A novel gate driver design is proposed to improve the conversion efficiency of DC-DC converters. Conventional gate drivers provide a fixed gate driving strength (capability) over the entire output load range. However, it is demonstrated that to optimize the overall conversion efficiency, the driving...

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Bibliographic Details
Main Author: Akhavan Fomani, Armin
Other Authors: Ng, Wai Tung
Language:en_ca
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/1807/24526
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-245262013-04-20T05:21:23ZAn Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency OptimizationAkhavan Fomani, ArminGate DriverAdjustable Driving CapabilityA novel gate driver design is proposed to improve the conversion efficiency of DC-DC converters. Conventional gate drivers provide a fixed gate driving strength (capability) over the entire output load range. However, it is demonstrated that to optimize the overall conversion efficiency, the driving capability of the gate driver circuit should be adjusted according to the loading condition. The proposed segmented gate driver consists of 8 parallel driver segments that can be turned on/off allowing the power consumption of the gate driver circuit to be dynamically adjusted. The post layout simulation results in high voltage TSMC 0.25µm CMOS process shows that up to 7% improvement in the efficiency can be achieved. Furthermore, in addition to efficiency improvements, a 60% reduction in the ringing and overshoot/undershoot was observed. An integrated segmented gate driver IC designed for AMSP35HV process was submitted for fabrication with the support from CMC.Ng, Wai Tung2010-062010-07-21T15:10:38ZNO_RESTRICTION2010-07-21T15:10:38Z2010-07-21T15:10:38ZThesishttp://hdl.handle.net/1807/24526en_ca
collection NDLTD
language en_ca
sources NDLTD
topic Gate Driver
Adjustable Driving Capability
spellingShingle Gate Driver
Adjustable Driving Capability
Akhavan Fomani, Armin
An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
description A novel gate driver design is proposed to improve the conversion efficiency of DC-DC converters. Conventional gate drivers provide a fixed gate driving strength (capability) over the entire output load range. However, it is demonstrated that to optimize the overall conversion efficiency, the driving capability of the gate driver circuit should be adjusted according to the loading condition. The proposed segmented gate driver consists of 8 parallel driver segments that can be turned on/off allowing the power consumption of the gate driver circuit to be dynamically adjusted. The post layout simulation results in high voltage TSMC 0.25µm CMOS process shows that up to 7% improvement in the efficiency can be achieved. Furthermore, in addition to efficiency improvements, a 60% reduction in the ringing and overshoot/undershoot was observed. An integrated segmented gate driver IC designed for AMSP35HV process was submitted for fabrication with the support from CMC.
author2 Ng, Wai Tung
author_facet Ng, Wai Tung
Akhavan Fomani, Armin
author Akhavan Fomani, Armin
author_sort Akhavan Fomani, Armin
title An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
title_short An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
title_full An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
title_fullStr An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
title_full_unstemmed An Integrated Segmented Gate Driver with Adjustable Driving Capability for Efficiency Optimization
title_sort integrated segmented gate driver with adjustable driving capability for efficiency optimization
publishDate 2010
url http://hdl.handle.net/1807/24526
work_keys_str_mv AT akhavanfomaniarmin anintegratedsegmentedgatedriverwithadjustabledrivingcapabilityforefficiencyoptimization
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