Industrial Computing Case Studies & Field Deployments

How OEMs and system integrators deploy BITECH platforms to solve ruggedization, isolation, and lifecycle challenges in the field.

Field Deployments

Edge AI & IPC Deployments by Global System Integrators

BITECH AX-234BT industrial control unit mounted inside a Danish milk transport truck cabin

A Danish system integrator deployed the AX-234BT as the central control unit for milk transport and waste management trucks—surviving dirty power, EMI, and continuous vibration with wide-voltage input, 4000V isolated CAN bus, and pre-shipment burn-in QC.

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AX-234BTDenmark

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Burn-in quality control station for semiconductor IPC platform

Semiconductor

Fanless EFEM & Wafer Handling Controller for Semiconductor Fabs

A fanless, lifecycle-managed x86 platform engineered for EFEM, load ports, and atmospheric wafer transfer. By utilizing the unique modular mainboard layout of the AX-130BT, we ensure seamless future computing upgrades and a strict 10-year lifecycle for ‘Copy Exactly’ compliance, alongside native CAN bus and segregated network architectures.

AX-130BTCleanroom Fab
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Engineering Support FAQ

Technical insights into BITECH’s industrial computing and OEM/ODM solutions.

Does BITECH provide custom OEM/ODM development services?

Yes. We focus on providing end-to-end engineering support for Tier-1 equipment manufacturers. This includes I/O layout customization, thermal chassis design, and modular mainboard development, with a 1-3 month turnaround for rapid prototyping.

How does BITECH ensure 'Copy Exactly' compliance for semiconductor equipment?

We utilize a modular SOM architecture (like the AX-130BT) that stabilizes carrier board layouts. This architecture ensures long-term 'Copy Exactly' compliance over 7-10 years, allowing computing core updates without requiring a complete hardware redesign.

How do you mitigate electrical interference in industrial environments?

We implement robust hardware protections including 4000V galvanic isolation for CAN bus and serial interfaces, alongside strict adherence to the 60-ohm impedance matching rule. This eliminates ground loops and signal noise in high-EMI industrial zones.

What reliability testing standards does BITECH implement?

Quality is non-negotiable. Every industrial system undergoes 18-hour rigorous high and low-temperature thermal cycling tests and mechanical vibration stress testing to guarantee long-term stability in extreme industrial automation scenarios.

Why use a modular SOM architecture vs. a traditional SBC?

Our modular approach decouples the computing core from the I/O carrier board. This simplifies EOL management, enables cost-effective performance upgrades, and avoids the costly redesigns of mechanical enclosures and cabling often required when swapping traditional Single Board Computers.
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