Technical FAQ
Q1. How does ThermoSiphon™ cooling work in the ABOX-5221(P)(G)LC?
ThermoSiphon™ uses a patented fanless, pumpless phase-change cooling loop driven by pressure and gravity to continuously transfer heat away from high-performance components. With no moving cooling parts, the system delivers up to 5× the thermal efficiency of traditional heatsinks while supporting silent operation and sustained performance under demanding workloads.
Q2. Can the ABOX-5221(P)(G)LC maintain AI performance during continuous GPU workloads?
The system is designed to reduce thermal throttling during sustained CPU and GPU workloads. Combined with 14th Gen Intel® Core™ processors and NVIDIA RTX™ discrete GPUs, it supports compute-intensive applications such as machine vision, sensor fusion, autonomous systems, and real-time AI inference. Actual performance depends on the selected GPU, workload, installation, and operating environment.
Q3. Which NVIDIA RTX GPU options are available?
The ABOX-5221(P)(G)LC supports NVIDIA RTX™ Embedded 2000 Ada, 3500 Ada, and 5000 Ada GPUs, with configurations delivering up to 682 AI TOPS. GPU selection should be based on factors such as AI model complexity, inference precision, video stream count, latency requirements, and system power budget.
Q4. Can the ABOX-5221(P)(G)LC connect to multiple cameras and sensors?
Yes. The system provides dual 10GbE and four 2.5GbE ports for high-bandwidth camera, sensor, and network integration. Optional PoE+ and M12 X-coded connectivity are also available for deployments requiring integrated power delivery or more secure connections in high-vibration environments.
Q5. Is the ABOX-5221(P)(G)LC suitable for harsh or unstable operating environments?
The system supports 9–60V DC input, -40°C to 70°C operation depending on configuration, and MIL-STD-810H shock and vibration testing. An optional internal backup battery unit can provide up to 10 minutes of emergency power for data preservation and controlled shutdown during sudden power interruptions.