
The lab stays here. Your team works from wherever they are.
Automotive teams are distributed, lab space is limited, and the right debugger or CAN adapter is often on someone else's desk. EV Bench is our answer: instrumented hardware on our bench, secure remote access for yours.
Every other lab experiment depends on this model. If we cannot run it remotely with usable fidelity, it does not scale as a service.
Technical Overview
A Raspberry Pi 4 gateway orchestrates remote flash and debug, CAN-FD/LIN access, µA-resolution power capture, oscilloscope capture, and controlled DUT reset.
Rest-bus testing starts on Virtual Bus, then moves to physical CAN-FD with the same database. Flashing runs against a simulated ECU first, then the real target over CAN-FD.
Includes reservation/lock for shared use, audit logging, and fault injection (CAN drop, GPIO glitch, power-cycle).
What This Demonstrates
- Remote flash of an automotive MCU, often in under a minute
- Live debug with usable latency over a secure tunnel
- Remote CAN-FD interaction and UDS execution
- Remote scope trigger/capture and power profiling
- Controlled fault injection and recovery
- Simulation-first to hardware with one interface change
- Safe multi-tenant bench reservation
