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Microscale thermal engineering of electronic systems
Goodson, K.E.
Location: http://hdl.handle.net/1721.1/7305

The electronics industry is encountering thermal challenges and opportunities with lengthscales comparable to or much less than one micrometer. Examples include nanoscale phonon hotspots in transistors and the increasing temperature rise in onchip interconnects. Millimeter-scale hotspots on microprocessors, resulting from varying rates of power consumption, are being addressed using two-phase microchannel heat sinks. Nanoscale thermal data storage technology has received much attention recently. This paper provides an overview of these topics with a focus on related research at Stanford University.

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Microscale thermal engineering of electronic systems
Id. 813963
Idioma inglés (Estados Unidos)
Titulo Microscale thermal engineering of electronic systems
Autor(es) Goodson, K.E.
Location http://hdl.handle.net/1721.1/7305
Versión 1.0
Estado Final
Descripción The electronics industry is encountering thermal challenges and opportunities with lengthscales comparable to or much less than one micrometer. Examples include nanoscale phonon hotspots in transistors and the increasing temperature rise in onchip interconnects. Millimeter-scale hotspots on microprocessors, resulting from varying rates of power consumption, are being addressed using two-phase microchannel heat sinks. Nanoscale thermal data storage technology has received much attention recently. This paper provides an overview of these topics with a focus on related research at Stanford University.
Tipo 1587318 bytes
323957 bytes
application/pdf
application/pdf
Tipo de recurso Presentation
Technical Report
Tipo de Interactividad Expositivo
Nivel de Interactividad muy bajo
Audiencia Estudiante
Profesor
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Estructura Atomic
Coste no
Copyright
Formatos 1587318 bytes
323957 bytes
application/pdf
application/pdf
Requerimientos técnicos Browser: Any
Fecha de contribución 07-may-2008
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