150 mm SiC Engineered Substrates for High-Voltage Power Devices

Author:

Rouchier Séverin1,Gaudin Gweltaz1,Widiez Julie2,Allibert Frederic1,Rolland Emmanuel1,Vladimirova Kremena2,Gélineau Guillaume2,Troutot Nicolas2,Navone Christelle2,Berre Guillaume3,Bosch Daphnée3,Leow Yen Lin3,Duboust Alain3,Drouin Alexis1,Bethoux Jean Marc1,Boulet Romain1,Chapelle Audrey1,Cela Enrica1,Lavaitte Guillaume1,Bouville-Lallart Adeline1,Viravaux Laurent1,Servant Florence4,Bhargava Shivan3,Thomas Shawn3,Radu Ionut1,Maleville Christophe1,Schwarzenbach Walter1

Affiliation:

1. SOITEC SA

2. CEA-LETI

3. Applied Materials

4. Commissariat à l’Energie Atomique et aux énergies alternatives (CEA)

Abstract

Silicon Carbide (SiC) Power Devices have emerged as a breakthrough technology for a wide range of applications in the frame of high power electronics. Despite the continuously improving quality and supply of 4H-SiC substrates, the availability of such wafers is still insufficient. An advantageous opportunity is offered by the Smart CutTM technology with the integration of a very high quality SiC layer transferred to a low resistivity handle wafer. This bi-layer material enables a significant yield optimization and improvement of the device’s electrical performance. Moreover, an additional key feature of the Smart CutTM technology is the possibility to re-use multiple times the donor wafer, leading to reduced manufacturing costs and enabling the high volume production of SiC wafers. In this paper we report the latest advances in the development of such so called SmartSiCTM substrates.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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