NVIDIA offers a unified computing platform for breakthroughs in quantum research and development across artificial intelligence (AI), high-performance computing (HPC), health, finance and other disciplines.
The NVIDIA Quantum Optimized Device Architecture, or QODA, is designed, according to NVIDIA, to make quantum computing more accessible by creating a coherent hybrid quantum-classical programming model. QODA is an open, unified environment for powerful computers and quantum processors, improving scientific productivity and enabling greater scale in quantum research.
HPC and AI domain experts can use it to easily add quantum computing to existing applications, leveraging quantum processors, as well as simulated future quantum machines using NVIDIA DGX systems and a large installed base of NVIDIA GPUs available in scientific supercomputing centers and public clouds.
“Scientific breakthroughs can occur in the near term with hybrid solutions combining classical computing and quantum computing,” says Tim Costa, director of HPC and Quantum Computing Products at NVIDIA. “QODA will revolutionize quantum computing by giving developers a powerful and productive programming model.”
Learn more about NVIDIA QODA.
Sources: Press materials received from the company and additional information gleaned from the company’s website.


Since its founding in 1993, NVIDIA (NASDAQ: NVDA) has been a pioneer in accelerated computing. The company’s invention of the GPU in 1999 sparked the growth of the PC gaming market, redefined computer graphics, ignited the era of modern AI and…
Cut Retrieval-Augmented Generation (RAG) Hallucinations by 50%
Most teams hit the same wall with enterprise AI: LLMs that hallucinate, pipelines that don’t scale, and infrastructure that’s harder to design than the models themselves.
DE's editors contribute news and new product announcements to Digital Engineering. Press releases may be sent to them via [email protected].
Follow DE
Join over 90,000 engineering professionals who get fresh engineering news as soon as it is published.