Название: Embedded Cooling of Electronic Devices: Conduction, Evaporation, and Single- and Two-Phase Convection Автор: Madhusudan Iyengar, Justin A Weibel, Mehdi Asheghi Издательство: World Scientific Publishing Год: 2024 Страниц: 479 Язык: английский Формат: pdf (true) Размер: 31.2 MB
This book is a comprehensive guide on emerging cooling technologies for processors in microelectronics. It covers various topics such as chip-embedded two-phase cooling, monolithic microfluidic cooling, numerical modeling, and advances in materials engineering for conduction-limited direct contact cooling, with a goal to remedy high heat flux issues.
The book also discusses the co-design of thermal and electromagnetic properties for the development of light and ultra-high efficiency electric motors. It provides an in-depth analysis of the scaling limits, challenges, and opportunities in embedded cooling, including high power RF amplifiers and self-emissive and liquid crystal displays. Its analysis of emerging cooling technologies provides a roadmap for the future of cooling technology in microelectronics.
This book is a good starting point for the electrical and thermal engineers, as well as MS and PhD students, interested in understanding and collaboratively tackling the complex and multidisciplinary field of microelectronics device (embedded) cooling. A basic knowledge of heat conduction and convection is required.
Compact Thermal Modeling of Emerging Cooling Technologies for Processors Microscale Evaporation for High Heat Flux Applications Numerical Modeling of Embedded Two-Phase Cooling in Silicon Microelectronics Chip-Embedded Two-Phase Cooling Embedded Cooling of High-Power RF Amplifiers Thermal Characteristics and Management Scheme of Self-Emissive and Liquid Crystal Displays Advances in Materials Engineering for Conduction-limited Direct Contact Cooling Monolithic Microfluidic Cooling Using Micropin-Fin Arrays for Local High Heat Flux Remediation: Design Considerations, Experimental Validation, and FPGA Integration Recent Experimental and Modeling Advances in Two-Phase Embedded Microfluidic Cooling Scaling Limits, Challenges, and Opportunities in Embedded Cooling Co-Design of Thermal and Electromagnetics for Development of Light and Ultrahigh Efficiency Electric Motors
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