2008Unpublished venueRequires access

Surge Current Ruggedness of Silicon Carbide Schottky- and Merged-PiN-Schottky Diodes

Birk Heinze, Josef Lutz, Matthias Neumeister, Roland Rupp, Matthias Holz

Open publisher page 60 citations

Abstract

In the paper the surge current capability of different power diodes made of silicon carbide (SiC) providing Schottky- and merged-pin-Schottky (MPS) structures are investigated. The diodes were impinged with surge current pulses of different shape and time. Depending on the diodes and there structures, they provide a different responsiveness. In some cases apart from the diode design it's time constant and the case influences the destruction limit of the surge current capability. There exist different destruction mechanisms. The destruction mechanism of MPS diodes of one diode type was the temperature limitation of the metallization melting point. While the surge current pulse the SiC diodes reaches astonishingly high temperatures at the epitaxy layer and the metallization. The diodes of a second diode type show destructive hot spots.

About this research paper

What this paper is about

In the paper the surge current capability of different power diodes made of silicon carbide (SiC) providing Schottky- and merged-pin-Schottky (MPS) structures are investigated. The diodes were impinged with surge current pulses of different shape and time. Depending on the diodes and there structures, they provide a different responsiveness. In some cases apart from the diode design it's time constant and the case influences the destruction limit of the surge current capability. There exist different destruction mechanisms. The destruction mechanism of MPS diodes of one diode type was the temperature limitation of the metallization melting point. While the surge current pulse the SiC diodes reaches astonishingly high temperatures at the epitaxy layer and the metallization. The diodes of a second diode type show destructive hot spots.

Why it matters

OpenAlex reports 60 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In the paper the surge current capability of different power diodes made of silicon carbide (SiC) providing Schottky- and merged-pin-Schottky (MPS) structures are investigated. The diodes were impinged with surge current pulses of different shape and time. Depending on the diodes and there structures, they provide a different responsiveness. In some cases apart from the diode design it's time constant and the case influences the destruction limit of the surge current capability. There exist different destruction mechanisms. The destruction mechanism of MPS diodes of one diode type was the temperature limitation of the metallization melting point. While the surge current pulse the SiC diodes reaches astonishingly high temperatures at the epitaxy layer and the metallization. The diodes of a second diode type show destructive hot spots.

Key concepts: Schottky diode, Diode, Materials science, Silicon carbide, Optoelectronics, PIN diode, Schottky barrier, Silicon

Related papers

Back to paper searchBrowse research topicsOriginal source
Surge Current Ruggedness of Silicon Carbide Schottky- and Merged-PiN-Schottky Diodes — Research Paper | ScholarLens