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A Multi-Physics Coupled Simulation Platform for Next-Generation Wide-Bandgap Semiconductors (DDCC-TCAD)

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A Multi-Physics Coupled Simulation Platform for Next-Generation Wide-Bandgap Semiconductors (DDCC-TCAD)

Technology Introduction:
To accelerate next-gen semiconductor R&D, our team developed DDCC-TCAD, a fully autonomous multi-physics simulation platform. It pioneers the integration of the Localized Landscape (LL) theory, boosting computational efficiency by 1000x to accurately model quantum effects and solve key material disorder challenges. Commercially licensed by industry leaders like Apple and Meta device devepment department, and downloaded by over 1,000 academics worldwide, DDCC-TCAD has proven its high industrial and academic value.
Industry Applicability:
Our platform offers a versatile digital twin solution rivaling commercial software. Its unique Localized Landscape (LL) model provides superior physical insights. The technology's value is proven by commercial licensing to industry leaders like Apple and Meta, generating significant royalties. Critically, this autonomous platform breaks the foreign monopoly, ensuring Taiwan's strategic security and technological sovereignty in the semiconductor industry.

National Taiwan University

At present, the University consists of 16 colleges, 58 departments, 146 graduate institutes, as well as 34 Master's and PhD degree programs. NTU's programs cover a wide array of disciplines across science, arts, and the humanities, with up to 8,000 courses made available for selection each semester.

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  • Phone:02-3366-9647

  • Address:No. 1, Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan (R.O.C.)

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  • Pavilion:Future Tech Semiconductors, Optoelectronics & Communication Technologies FH03

  • Affiliated Ministry:National Science and Technology Council

  • Application Field:Electronics & Optoelectronics

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  • Technology maturity:Others

  • Exhibiting purpose:Display of scientific results

  • Trading preferences:Negotiate by self

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