2015•Unpublished venueRequires access

Parasitics in Power Electronic Modules: How parasitic inductance influences switching and how it can be minimized

Michael Meißer, Max Schmenger, Thomas Blank

Open publisher page 19 citations

Abstract

This paper covers a theoretical approach on understanding the impact of parasitic inductances in power modules. Simulations provide a fundamental insight into the influence of parasitic inductances on the maximum switching speed, i.e. the minimum voltage rise time. Based on this, strategies for parasitic inductance minimization are outlined. The concept of multilayer copper thick-film substrates is illustrated by a sample design.

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What this paper is about

This paper covers a theoretical approach on understanding the impact of parasitic inductances in power modules. Simulations provide a fundamental insight into the influence of parasitic inductances on the maximum switching speed, i.e. the minimum voltage rise time. Based on this, strategies for parasitic inductance minimization are outlined. The concept of multilayer copper thick-film substrates is illustrated by a sample design.

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OpenAlex reports 19 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper covers a theoretical approach on understanding the impact of parasitic inductances in power modules. Simulations provide a fundamental insight into the influence of parasitic inductances on the maximum switching speed, i.e. the minimum voltage rise time. Based on this, strategies for parasitic inductance minimization are outlined. The concept of multilayer copper thick-film substrates is illustrated by a sample design.

Key concepts: Parasitic extraction, Inductance, Parasitic element, Power (physics), Electronic engineering, Electrical engineering, Minification, Voltage

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