9N Technologies develops ultra‑pure graphene‑based semiconductor components that deliver higher speed and lower energy consumption for demanding applications.
Funding
Funding not disclosed
Founders
Product
Problem
Modern high‑performance computing and defence systems require semiconductor components that can operate faster while consuming less power, often under extreme conditions such as high radiation or harsh temperatures. Existing silicon‑based devices struggle to meet these efficiency and durability demands, leading to higher cooling costs and limited performance scalability.
Solution
9N Technologies supplies ultra‑pure graphene‑based semiconductor components that deliver substantially higher processing speeds and lower energy consumption compared with traditional silicon. Their product portfolio includes graphene transistors with high radiation tolerance, robust graphene capacitors, and dense graphene memory cells, all fabricated on scalable, sustainable graphene wafers. By integrating transistor fabrication directly on the wafer, the company streamlines production and reduces material waste. The resulting components enable data‑center operators, AI hardware designers, quantum system builders, and defence electronics manufacturers to achieve higher throughput with reduced cooling requirements, supporting more sustainable and resilient system architectures.
Target Audience
Primary customers are data‑center operators, AI and high‑performance computing hardware developers, quantum computing system designers, and defence electronics manufacturers seeking faster, lower‑energy semiconductor solutions for demanding or extreme environments.
Features
- High‑performance graphene transistors offering ~80% faster processing and built‑in radiation tolerance for extreme environments
- Efficient graphene capacitors designed for stability under harsh operating conditions
- High‑density graphene memory cells that increase data storage density and system performance
- Scalable production of ultra‑pure graphene wafers with integrated on‑wafer transistor fabrication
- Lower power consumption that reduces cooling demand and overall energy use in data‑center and HPC deployments
- Sustainable manufacturing process that minimizes material waste and manufacturing energy footprint