The Xycom XVME-600 70600-002 Single-board represents a robust single-board computer solution built on the proven VMEbus architecture, designed specifically for industrial and military applications requiring reliable operation in harsh environments. As part of Xycom's XVME series, the Processor Module XVME-600 70600-002 Xycom shares the same rugged design philosophy as the XVME-601 processor module, but offers enhanced processing capabilities for more demanding computational tasks. The board's military-grade construction ensures reliable performance in extreme temperature ranges and high-vibration environments where commercial-grade computers would fail.
Like its XVME-601 counterpart, the Xycom XVME-600 Processor Module 70600-002 features comprehensive memory options, though with expanded capacity to meet modern application requirements. The board maintains backward compatibility with the VMEbus standard while incorporating advanced processor technology that significantly outperforms the 68000/68010 CPUs used in earlier models. The Xycom XVME-600 70600-002 builds upon the serial communication capabilities of the XVME-601, offering additional interface options while retaining the reliable DUART implementation for serial port operations.
The XVME-600 70600-002 Single-board Xycom enhances the diagnostic capabilities first introduced in the XVME-601, featuring multiple status LEDs and comprehensive self-test routines. These improvements make the Xycom XVME-600 70600-002 particularly valuable for mission-critical applications where system health monitoring is essential. The board's design maintains the same attention to real-time performance that characterized the XVME-601, ensuring rapid response to industrial control and data acquisition requirements.
With its proven reliability in field applications, the Xycom XVME-600 70600-002 PDF continues the legacy of Xycom's VMEbus solutions while addressing the needs of modern industrial automation systems. The board finds particular application in military systems, industrial control, and transportation systems where its combination of processing power, rugged construction, and expansion capabilities make it a preferred choice for engineers designing systems that must operate reliably in challenging environments.