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GE PCIE-5565PIORC-100000

Technical Specifications

  • Memory Capacity: 128 MB SDRAM (expandable to 256 MB for other models in the series).
  • Data Transfer Rates:
    • PCIe Bus: Up to 132 MB/s (33 MHz/32-bit) or 264 MB/s (33 MHz/64-bit).
    • Fiber Network: 2.125 Gbps (2.12 Gbaud serial), supporting 43 MB/s (single longword) to 170 MB/s (64-byte burst).
Tag:
  • Latency:
    • Node-to-Node: 1 microsecond.
    • Full System Sync (30 Nodes): 30 microseconds.
  • Fiber Optic Support:
    • Multimode: Up to 300 meters.
    • Single-Mode: Up to 10 kilometers.
  • Node Capacity: Supports up to 256 nodes in a network.
  • Bus Compatibility: PCI, CPCI, VME, and PCIe interfaces.
  • Operating Systems: Windows, Linux, VxWorks, QNX, and Solaris.
  • Environmental:
    • Operating Temperature: 0°C to +65°C (forced air cooling).
    • Storage Temperature: -40°C to +85°C.
    • Humidity: 20% to 80% (non-condensing).

Functional Features

  1. High-Speed, Low-Latency Data Sharing:
    • Enables real-time data synchronization across distributed systems with microsecond-level latency.
    • Supports deterministic communication, ensuring predictable performance for critical applications.
  2. Zero Software Overhead:
    • Data transmission is transparent to software, eliminating the need for additional I/O operations or driver development.
  3. Scalability:
    • Network configuration supports up to 256 nodes, making it suitable for large-scale distributed systems.
  4. Redundancy and Fault Tolerance:
    • Supports redundant transmission modes and hardware-level CRC checksums for data integrity.
    • Faulty nodes can be bypassed using a reflective memory Hub, ensuring network stability.
  5. Long-Distance Connectivity:
    • Single-mode fiber enables data transmission over distances up to 10 km, ideal for geographically dispersed systems.
  6. Ease of Integration:
    • Compatible with multiple bus architectures (PCI, CPCI, VME, PCIe) and operating systems, simplifying deployment in heterogeneous environments.

Application Scenarios

  1. Aerospace and Defense:
    • Real-time sharing of flight control, navigation, and sensor data between subsystems in aircraft and spacecraft.
    • Ensures low-latency communication in mission-critical environments.
  2. Industrial Automation:
    • High-speed data exchange between production line equipment, improving automation efficiency and process stability.
    • Enables real-time monitoring and control in manufacturing plants.
  3. Simulation and Training:
    • Provides real-time data synchronization in distributed simulation systems, enhancing accuracy for applications like flight training and automotive crash testing.
  4. Smart Manufacturing:
    • Optimizes production workflows by synchronizing data across connected devices, enabling predictive maintenance and quality control.
  5. Data Acquisition and Distribution:
    • Ensures real-time consistency in high-speed data collection and dissemination systems, such as those used in scientific research or energy management.

Key Advantages

  • Performance: Combines PCIe and fiber-optic technologies to deliver ultra-fast, deterministic data transfer.
  • Reliability: Redundant design and fault tolerance mechanisms ensure continuous operation in demanding environments.
  • Flexibility: Supports a wide range of bus interfaces and operating systems, facilitating integration into diverse systems.
  • Cost-Effectiveness: Reduces development time and complexity by eliminating the need for custom software solutions for data sharing.

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