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GE PCI-5565

Technical Specifications of GE PCI-5565

  • Memory: Supports 128 MB or 256 MB board-level SDRAM with parity checking, providing ample storage for data caching and processing.
  • Transmission Rates:
    • Fiber network transmission rates range from 43 MB/s (single long word access) to 170 MB/s (64-byte burst).
    • Non-redundant transmission rates range from 20 MB/s (single long word access) to 87 MB/s (64-byte burst).
    • PCI transmission rates are 132 MB/s (33 MHz/32-bit bus) and 264 MB/s (33 MHz/64-bit bus or 64-bit bus).
    • PCI Express transmission rates reach up to 2.5 Gbit/s with 4 channels.
Tag:
  • Fiber Network: Features a fiber optic rate of 2.125 Gbps, supporting multi-mode fiber up to 300 meters and single-mode fiber up to 10 kilometers.
  • Bus Compatibility: Compatible with 33 MHz/66 MHz, 64-bit/32-bit PCI buses, and supports both 3.3 V and 5.0 V voltage levels.
  • Network Topology: Supports both ring and star topologies, allowing for flexible network configurations.
  • Node Capacity: Can accommodate up to 256 independent system nodes, enabling large-scale data sharing.
  • Data Packet Size: Automatically adjusts data packet sizes from 4 to 64 bytes, optimizing transmission efficiency.
  • Latency: Transmission delay is as low as 0.4 microseconds, ensuring real-time data exchange.
  • DMA Channel: Equipped with an independent DMA channel, supporting network interrupts with 32-bit data.
  • PIO Window: The PIO window size can be configured from 2 MB to 64 MB, or up to the size of the board-level memory.
  • Operating Temperature: Operates reliably within a temperature range of 0°C to +65°C (with forced air cooling), and can be stored between -40°C and +85°C.
  • Power Requirements: Requires 5 VDC (±5%) power supply, with a typical current draw of 1.5 A and a maximum of 1.8 A.
  • Form Factor: Standard PCI half-length card design, facilitating easy integration into existing systems.
  • Operating Systems: Supports multiple operating systems, including Windows XP, Windows 7, Linux, and VxWorks.

Functional Characteristics of GE PCI-5565

  • High-Speed Data Transmission: Leverages fiber optic technology to achieve high-speed data transmission, with rates reaching up to 170 MB/s, ensuring efficient data exchange between nodes.
  • Low Latency: With a transmission delay as low as 0.4 microseconds, it provides deterministic data transmission, crucial for real-time applications.
  • Large Node Capacity: Supports up to 256 nodes, enabling large-scale distributed systems to share data seamlessly.
  • High Reliability: Features redundant transmission modes and hardware-level CRC checksums to ensure data integrity and transmission reliability.
  • Flexible Network Topology: Supports both ring and star topologies, allowing for easy network expansion and maintenance.
  • Software Transparency: Data transmission between nodes is transparent to software, eliminating the need for additional I/O overhead and simplifying system integration.
  • Rich Interface Options: Provides multiple interface options, including PCI, PCIe, CPCI, and PMC, ensuring compatibility with various hardware platforms.
  • Wide Temperature Range: Designed to operate reliably in a wide temperature range, making it suitable for harsh industrial environments.

Application Scenarios of GE PCI-5565

  • Aerospace: Used in flight control computers, navigation systems, and sensor systems of aerospace vehicles to share critical data with extremely low latency, ensuring flight safety. It also serves as a high-speed data sharing medium in satellite communication systems, facilitating rapid instruction and data exchange between devices.
  • Industrial Automation and Control Systems: Enables real-time data synchronization among multiple controllers, ensuring coordinated system operation. This is essential for improving production efficiency, reducing failure rates, and optimizing resource utilization in manufacturing and production line control applications.
  • Simulation and Training: Provides real-time data sharing in distributed simulation systems, enhancing simulation accuracy and training effectiveness. It helps simulate various scenarios in real-world environments, improving training quality and efficiency.
  • Data Acquisition and Distribution: Ensures real-time and consistent data in applications requiring rapid data acquisition and distribution, such as financial and telecommunications sectors, where timely data processing is crucial.
  • Military Systems: Applied in military electronic equipment for its high reliability and stability, ensuring accurate and timely data processing and control in critical military applications.
  • Smart Manufacturing: Synchronizes data from production equipment in real-time, optimizing production processes, implementing quality control, and helping enterprises achieve intelligent manufacturing, thereby improving production efficiency and product quality.




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