The enabling link in millimeter wave networks.
V-Mesh™ delivers continuous mmWave coverage across indoor, outdoor, and NLOS environments — without new base stations. Powered by RF-on-Glass™ repeaters and AI orchestration.
A network of energy-efficient glass NCRs that keep signals moving...

The link no longer depends
on a direct path.
V-Mesh links RF-on-Glass™ repeaters into a coordinated mesh, extending the mmWave signal across multiple hops instead of relying on a single direct path. AI-powered orchestration continuously monitors signal conditions to maintain the optimal multi-hop path — helping keep the mmWave link stable across obstacles, handovers, and changing conditions.
Coverage follows the environment,
not the other way around.
Adding base stations to close coverage gaps isn't practical at scale — the economics don't work. V-Mesh extends mmWave around corners, across streets, and into buildings, without falling back to lower frequencies.
mmWave Coverage that Doesn't Quit.
Built for environments that stop conventional mmWave.
Campus & Private
Networks.
mmWave across the campus without new base stations.
Extends coverage across courtyards, corridors, and entry points through coordinated multi-hop routing — eliminating the CAPEX of additional base stations.
Extends coverage across courtyards, corridors, and entry points through coordinated multi-hop routing — eliminating the CAPEX of additional base stations.
Industrial & Logistics
Facilities.
Low-latency links where interference kills conventional mmWave.
Dynamically routes around machinery and structural steel to maintain reliable connections for robotics, autonomous vehicles, and floor sensors.
Dynamically routes around machinery and structural steel to maintain reliable connections for robotics, autonomous vehicles, and floor sensors.
Urban Streets &
Corridors.
mmWave throughput that holds as users and vehicles move.
Visban’s AI orchestration dynamically optimizes multi-hop signal paths across building facades and moving obstructions — helping maintain stable throughput in dense urban environments.
Visban’s AI orchestration dynamically optimizes multi-hop signal paths across building facades and moving obstructions — helping maintain stable throughput in dense urban environments.
Venues & Mixed Indoor/Outdoor Spaces.
No session failure at the door.
Preserves mmWave continuity as users move through glass entrances — no fallback to congested lower bands, no dropped sessions.
Preserves mmWave continuity as users move through glass entrances — no fallback to congested lower bands, no dropped sessions.
Latest News.
February 26, 2026
Visban Closes Series A with Investment from Beyond Next Ventures
TOKYO – 27 February 2026 – Visban, Inc., a developer of AI-controlled millimeter wave (mmWave) network technology, today announced that Beyond Next Ventures has...
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February 13, 2026
Visban Technology to Be Featured at Feb. 25 “University as a Gateway” Event
TOKYO (Feb. 12) — Technology developed by Visban will be presented at the Univ×SU Innovation Boost Demo Day, “University as a Gateway — Startup...
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July 5, 2025
Visban Featured in Growthstock Pulse: Powering the Next Generation of Wireless with Glass-Based Mesh Networks
Visban is spotlighted by Growthstock Pulse for its groundbreaking work addressing the challenges of high-frequency 5G and 6G networks. The article highlights how Visban’s...
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June 2, 2025
Visban Selected for Tokyo’s Startup X University Innovation Program
TOKYO – 29 May 2025 — Tokyo-based Visban has been selected for the 2024 Startup × University Collaboration Promotion Program, part of the Tokyo...