• XVME-244    Multiple interfaces       communication protocols support:
  • XVME-244    Multiple interfaces       communication protocols support:

XVME-244 Multiple interfaces communication protocols support:

No.XVME-244
peculiarity
exportation
• 32 optical isolated digital output channels
• Output to 30 V and 400 mA
• 300 VDC optical isolation between groups and 1000 V VMEbus between groups
• Power on
When the output is hardware initialized • The output can be read by software
• All outputs are transient protected
Input • 32 digital input channels
• Input voltage range 10-35 VDC
• Input dejitter circuit
• 35 VDC reverse bias protection
• VMEbus optical isolation applications between 300 VDC groups and 1000 V groups
  • XVME-244    Multiple interfaces       communication protocols support:
Desciption
peculiarity
exportation
• 32 optical isolated digital output channels
• Output to 30 V and 400 mA
• 300 VDC optical isolation between groups and 1000 V VMEbus between groups
• Power on
When the output is hardware initialized • The output can be read by software
• All outputs are transient protected
Input • 32 digital input channels
• Input voltage range 10-35 VDC
• Input dejitter circuit
• 35 VDC reverse bias protection
• VMEbus optical isolation applications between 300 VDC groups and 1000 V groups
High-speed data transmission and processing capabilities:
The XVME-244 supports high-speed data transfer and is able to handle large amounts of data and meet the needs of real-time applications.
Its built-in processor can quickly perform a variety of complex computing tasks, providing the system with powerful data processing capabilities.
Multiple interfaces and communication protocols support:
The module provides a variety of interface options, such as Ethernet interface, serial interface, etc., to meet different communication needs.
It also supports multiple communication protocols, enabling seamless connectivity and data sharing with other devices.
Highly scalable:
XVME-244 provides rich expansion slots and interfaces. Users can add other functional modules or expansion boards as required to realize flexible function expansion.
This scalability allows it to adapt to systems of different sizes and complexity, providing users with greater flexibility and customization.