From RTL to Prompt Coding: Empowering the Next Generation of Chip Designers through LLMs

Fuente: arXiv
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Main Authors: Krupp, Lukas, Venn, Matthew, Wehn, Norbert
Format: Preprint
Published: 2026
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author Krupp, Lukas
Venn, Matthew
Wehn, Norbert
author_facet Krupp, Lukas
Venn, Matthew
Wehn, Norbert
contents This paper presents an LLM-based learning platform for chip design education, aiming to make chip design accessible to beginners without overwhelming them with technical complexity. It represents the first educational platform that assists learners holistically across both frontend and backend design. The proposed approach integrates an LLM-based chat agent into a browser-based workflow built upon the Tiny Tapeout ecosystem. The workflow guides users from an initial design idea through RTL code generation to a tapeout-ready chip. To evaluate the concept, a case study was conducted with 18 high-school students. Within a 90-minute session they developed eight functional VGA chip designs in a 130 nm technology. Despite having no prior experience in chip design, all groups successfully implemented tapeout-ready projects. The results demonstrate the feasibility and educational impact of LLM-assisted chip design, highlighting its potential to attract and inspire early learners and significantly broaden the target audience for the field.
format Preprint
id arxiv_https___arxiv_org_abs_2601_13815
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle From RTL to Prompt Coding: Empowering the Next Generation of Chip Designers through LLMs
Krupp, Lukas
Venn, Matthew
Wehn, Norbert
Hardware Architecture
This paper presents an LLM-based learning platform for chip design education, aiming to make chip design accessible to beginners without overwhelming them with technical complexity. It represents the first educational platform that assists learners holistically across both frontend and backend design. The proposed approach integrates an LLM-based chat agent into a browser-based workflow built upon the Tiny Tapeout ecosystem. The workflow guides users from an initial design idea through RTL code generation to a tapeout-ready chip. To evaluate the concept, a case study was conducted with 18 high-school students. Within a 90-minute session they developed eight functional VGA chip designs in a 130 nm technology. Despite having no prior experience in chip design, all groups successfully implemented tapeout-ready projects. The results demonstrate the feasibility and educational impact of LLM-assisted chip design, highlighting its potential to attract and inspire early learners and significantly broaden the target audience for the field.
title From RTL to Prompt Coding: Empowering the Next Generation of Chip Designers through LLMs
topic Hardware Architecture
url https://arxiv.org/abs/2601.13815