Genopsys Tech provides an all‑optical switching network system called DOVINSY that replaces traditional electronic switches in AI and high‑performance computing data centers. By using dense‑wavelength‑division‑multiplexing virtual circuit switches and integrated SDN‑plus‑optical control, the platform delivers up to 409.6 Tbps of bandwidth, sub‑10 µs tail latency, and up to 90 % power savings, enabling cost‑effective scaling for massive GPU workloads.
Funding
Funding not disclosed
Founders
Product
Problem
Electrical switching networks in AI and high‑performance computing data centers suffer from limited bandwidth scalability, high power consumption, and excessive latency, which constrain compute performance and increase operational costs.
Solution
Genopsys Tech offers an all‑optical switching network system, DOVINSY, that replaces traditional electronic switches with dense‑wavelength‑division‑multiplexing (DWDM) optical virtual circuit switches. The platform delivers ultra‑high bandwidth (up to 409.6 Tbps) and end‑to‑end tail latency below 10 µs by eliminating OEO conversions. Integrated SDN‑plus‑optical “thruway” control provides proactive and reactive path provisioning, while a real‑time dashboard monitors network health. The solution achieves up to 90 % power savings compared to electronic switches, enabling cost‑effective scaling for AI and HPC workloads.
Target Audience
Primary customers are operators of AI and high‑performance computing data centers, including cloud providers, supercomputing facilities, and enterprise HPC clusters that require massive GPU interconnectivity.
Features
- Optical Virtual Circuit Switches (OvCS) with 32, 64, or 128 wavelengths supporting 400 G/800 G per wavelength
- DOVINSY‑5232 model for 50 racks (800 GPUs) delivering 102.4 Tbps; DOVINSY‑7264 for 196 racks (3136 GPUs) delivering 409.6 Tbps; cluster‑scale option for >100 K GPUs
- SDN‑plus‑Optical Thruway control with proactive provisioning and load‑balancing reactive adjustments
- Real‑time operational dashboard with alerts for fault detection and performance monitoring
- Ultra‑low latency (<10 µs tail) and bandwidth up to twice that of comparable electrical switches
- 90 % reduction in power consumption versus traditional electronic switching solutions