Do not force one specification on every field.
Links, bandwidth, power, antennas and continuity requirements differ by operation. We select products and architectures for the deployment.
COMPANY / WHY IDY
We have focused on industrial connectivity since our founding, selecting products and architectures for each field. We publish how we design and measure continuity.

01 / ENGINEERING PRINCIPLES
Links, bandwidth, power, antennas and continuity requirements differ by operation. We select products and architectures for the deployment.
With base-station and RAN experience, we connect RF, antennas, devices, embedded software, networks and edge processing.
Monitor, detect, switch paths, confirm reachability and manage recovery as one control sequence.
We show path-specific latency, sustained load and thermal or vibration evaluation alongside test conditions.
02 / ENGINEERING EVIDENCE
We validate resilient connectivity with real devices and measured paths. Explore our published architectures and results for recovery control, local 5G latency and sustained traffic.
Explore the sequence for connection health and published industrial engineering examples.
View the engineering evidence →LOCAL 5G / LATENCYSee mean RTT and packet loss for the radio segment and a path including device and overlay.
View the engineering evidence →EDGE / SUSTAINED LOADSee the approximately 70-minute iR800B load test, including throughput, internal temperature and test conditions.
View the engineering evidence →
03 / IoM® & AUTOMATION
As automation reduces human intervention, machine connectivity must endure. IoM® is IDY’s approach to selecting links for each field and connecting its data to decisions and control.