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GE CPCI-5565PIORC-210000

Technical Specifications of GE CPCI-5565PIORC-210000:

  • Brand: GE (General Electric)
  • Model: CPCI-5565PIORC-210000
  • Interface: CPCI (Compact Peripheral Component Interconnect)
  • Memory: 256 MB onboard SDRAM
  • Optical Fiber: Supports both multimode and single-mode fiber. Multimode fiber distance up to 300 meters, single-mode fiber distance up to 10 kilometers.
  • Optical Fiber Rate: 2.125 Gbps
  • Bus Compatibility: 33 MHz/66 MHz, 64-bit/32-bit compatible with PCI bus, supports both 3.3 V and 5.0 V signaling levels.
Tag:
  • Network Topology: Supports both ring and star topologies.
  • Maximum Nodes: Up to 256 nodes in a single network.
  • Data Packet Size: Automatically adjustable from 4 to 64 bytes, with a maximum packet size of 1 MByte.
  • Data Transfer Rate: Up to 174 MB/s, depending on packet size and network configuration.
  • Latency: As low as 0.4 microseconds.
  • DMA Channels: Two independent DMA channels for high-speed data transfer.
  • Interrupt Support: Supports network interrupts with 32-bit data.
  • Endian Conversion: Automatically handles endian conversion for different computer architectures within the same network.
  • PIO Window: Configurable PIO window sizes from 2 MB to 64 MB, or up to the size of the onboard memory.
  • Form Factor: Standard CPCI half-length card.
  • Operating Temperature: 0 °C to 65 °C (industrial-grade temperature range for reliable operation in harsh environments).
  • Storage Temperature: -40 °C to 85 °C.
  • Operating Systems Support: Windows, Linux, VxWorks, RTX, Win7, Win10, Win XP, LabVIEW (RT), LabWindows/CVI, and other real-time operating systems.

Functional Characteristics of GE CPCI-5565PIORC-210000:

  • High-Speed, Real-Time Data Transmission: Utilizes a high-speed optical fiber network with a rate of 2.125 Gbps, enabling real-time data sharing across multiple nodes with minimal latency.
  • CPU-Independent Operation: The network transmission process does not require CPU intervention, freeing up CPU resources for other critical tasks.
  • Redundant Transmission Mode: Optional redundant transmission mode enhances data reliability and fault tolerance in mission-critical applications.
  • Large Node Capacity: Supports up to 256 nodes, allowing for extensive system scalability and flexibility.
  • Automatic Data Synchronization: When data is written to the memory of one node’s reflective memory card, it is automatically transmitted and synchronized across all other nodes in the network, ensuring data consistency.
  • Flexible Network Configuration: Supports both ring and star topologies, enabling users to design networks according to specific application requirements.
  • Easy to Use: The reflective memory technology simplifies data sharing by eliminating the need for complex software protocols, reducing development time and costs.
  • Robust and Reliable: Designed for industrial environments with a wide operating temperature range and high resistance to electromagnetic interference.
  • Dynamic Packet Size Adjustment: Automatically adjusts data packet size from 4 to 64 bytes, optimizing network bandwidth utilization.
  • High Bandwidth Utilization: Effective network bandwidth ranges from 50 MByte/s to 170 MByte/s, depending on packet size and network configuration.

Application Scenarios of GE CPCI-5565PIORC-210000:

  • Flight Simulators: Used in flight simulation systems to provide real-time data sharing between multiple simulation computers, ensuring synchronized and accurate simulation results.
  • Automated Test Systems: Enables high-speed data acquisition and sharing in automated test equipment, improving test efficiency and accuracy.
  • Marine and Submarine Simulators: Supports real-time data transmission in marine and submarine training simulators, providing a realistic training environment.
  • Industrial Automation: Used in industrial control systems for real-time monitoring and control of manufacturing processes, enhancing production efficiency and quality.
  • High-Speed Data Acquisition: Ideal for applications requiring high-speed data acquisition and processing, such as in scientific research and experimental setups.
  • Power Plant Simulators: Facilitates real-time data sharing in power plant simulation systems, aiding in operator training and system optimization.
  • Engine Test Benches: Used in engine testing to capture and analyze real-time data from multiple sensors, ensuring accurate performance evaluation.
  • High-Speed Rail Transportation: Supports real-time data transmission in high-speed rail control systems, enhancing safety and operational efficiency.
  • Nuclear Power Plant Simulation: Provides real-time data sharing and synchronization in nuclear power plant simulators, ensuring safe and efficient operation.
  • Military and Aerospace: Used in military and aerospace applications for real-time data transmission and synchronization, supporting mission-critical operations.

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