Compact, netlist-based representation of thermal transient coupling using controlled sources

A compact, efficient electrical dual-circuit topology for the representation of transient thermal coupling is presented. Based on controlled sources, the method allows an arbitrary level of complexity to be used for each self and coupled response. Two possible variations on the circuit form, and the...

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Veröffentlicht in:IEEE transactions on computer-aided design of integrated circuits and systems 2004-11, Vol.23 (11), p.1593-1596
Hauptverfasser: Walkey, D.J., Smy, T.J., Celo, D., MacElwee, T.W., Maliepaard, M.C.
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container_issue 11
container_start_page 1593
container_title IEEE transactions on computer-aided design of integrated circuits and systems
container_volume 23
creator Walkey, D.J.
Smy, T.J.
Celo, D.
MacElwee, T.W.
Maliepaard, M.C.
description A compact, efficient electrical dual-circuit topology for the representation of transient thermal coupling is presented. Based on controlled sources, the method allows an arbitrary level of complexity to be used for each self and coupled response. Two possible variations on the circuit form, and the resulting requirements for model extraction, are developed. The method is applied to the modeling of transient thermal self-heating and coupling data for a pair of thermal sources representative of integrated device structures in semi-infinite homogeneous as well as trench-isolated substrates.
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source IEEE Electronic Library (IEL)
subjects Circuit simulation
Circuit synthesis
Circuit topology
Circuits
Compact model
Complex networks
Computer aided design
Coupling circuits
Data mining
Design engineering
Electrothermal effects
Joining
Mathematical models
Network synthesis
Numerical simulation
Representations
Thermal conductivity
Thermal coupling
thermal model
thermal transient
Thermal transients
title Compact, netlist-based representation of thermal transient coupling using controlled sources
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