Research Areas
Biography and Research Information
OverviewAI-generated summary
David Agogo-Mawuli's research focuses on the reliability of power modules, particularly in extreme environments. His work involves developing automated methods for optimizing the layout of bidirectional DC-DC converters, aiming to enhance design for reliability. He has developed a framework and tool named LAREL (Reliability-Aware Framework for Power Module Layout Optimization) that accounts for interacting stress mechanisms under dynamic drive cycle conditions.
His publications explore automated multi-physics reliability-oriented layout design for multi-chip power modules using the LAREL tool, and factoring interacting stress mechanisms in design for reliability for extreme environment power modules. Agogo-Mawuli has a citation h-index of 2 and has published 5 total works. He collaborates with David Huitink, Yarui Peng, Whit Vinson, and Imam Al Razi, all at the University of Arkansas at Fayetteville.
Metrics
- h-index: 2
- Publications: 5
- Citations: 7
Selected Publications
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LAREL: A Reliability-Aware Framework for Power Module Layout Optimization Under Dynamic Drive Cycle Stress (2025)
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Automated Multi-Physics Reliability-Oriented Layout Design for Multi-Chip Power Modules Using the LAREL Tool (2025)
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Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth (2023)
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Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules (2023)
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Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules (2023)
Collaboration Network
Top Collaborators
- Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Automated Multi-Physics Reliability-Oriented Layout Design for Multi-Chip Power Modules Using the LAREL Tool
- Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Factoring Interacting Stress Mechanisms in Design for Reliability of Extreme Environment Power Modules
- Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth
- LAREL: A Reliability-Aware Framework for Power Module Layout Optimization Under Dynamic Drive Cycle Stress
- Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth
- Automated Layout Optimization Methods of a Bidirectional DC-DC ZVS Converter Using PowerSynth
- Automated Multi-Physics Reliability-Oriented Layout Design for Multi-Chip Power Modules Using the LAREL Tool
- Automated Multi-Physics Reliability-Oriented Layout Design for Multi-Chip Power Modules Using the LAREL Tool
- Automated Multi-Physics Reliability-Oriented Layout Design for Multi-Chip Power Modules Using the LAREL Tool
- LAREL: A Reliability-Aware Framework for Power Module Layout Optimization Under Dynamic Drive Cycle Stress
- LAREL: A Reliability-Aware Framework for Power Module Layout Optimization Under Dynamic Drive Cycle Stress
- LAREL: A Reliability-Aware Framework for Power Module Layout Optimization Under Dynamic Drive Cycle Stress
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