Rivvor provides terabit‑class, software‑defined wireless interconnects that replace short‑reach copper and optical cables in data centers, HPC clusters, edge platforms, and space systems. Its RF‑based links deliver multi‑terabit per second throughput with sub‑microsecond latency, offering programmable, cable‑free connectivity that simplifies assembly, reconfiguration, and scaling while maintaining predictable performance for AI and high‑performance computing workloads.
Funding
Funding not disclosed
Founders
Product
Problem
Modern AI, high‑performance computing (HPC) and edge systems rely on dense, short‑reach interconnects, but traditional copper or optical cables add physical complexity, limit modularity, and slow deployment and reconfiguration at scale.
Solution
Rivvor replaces these short‑reach cables with software‑defined, terabit‑class wireless links that operate in controlled compute environments such as data centers, tactical edge platforms, and orbital systems. By using advanced RF‑based interconnect technology, the company delivers high‑bandwidth, sub‑microsecond latency connectivity without the constraints of physical cabling. The wireless fabric is programmable, allowing infrastructure to be assembled, re‑wired, and scaled more quickly while maintaining predictable system behavior for synchronized workloads. Deployments can start alongside existing cabling to add flexibility and resilience, then expand as performance needs evolve, supporting both terrestrial AI workloads and space‑based data relay.
Target Audience
Primary customers are hyperscale data‑center operators, AI and HPC system integrators, defense and edge‑computing platforms, and satellite or lunar mission providers requiring high‑performance, flexible interconnect solutions.
Features
- Terabit‑class RF wireless links providing up to multi‑terabit per second throughput with sub‑microsecond latency
- Software‑defined, programmable connectivity that integrates with existing compute fabrics and orchestration tools
- Modular, cable‑free design enabling rapid assembly, reconfiguration, and scaling of data‑center and edge clusters
- Secure, hardened wireless modules for tactical, defense, and orbital applications where traditional networks are impractical
- Integrated support for satellite and lunar communication links, delivering low‑latency, high‑capacity data relay in space environments