Product Description
The product details of IC695ETM001 are summarized as follows:
Main features:
High speed, easy to use fiber optic network (2.12 gigabit serial).
Support x4 channel PCI Express 1.0a to PCI bridge.
Optional redundant operation mode provides reliability and stability of data transmission.
Network interface:
The fiber optic network allows data to be shared between up to 256 independent systems (nodes).
Support multi-mode fiber node distance up to 300 meters, single-mode fiber node distance up to 10 kilometers.
Product parameter
The parameters of the IC695ETM001 are summarized as follows:
Network connection parameters:
Fiber optic network: High-speed, easy-to-use fiber optic network with a rate of 2.125G.
Topology: Supports ring and star topology.
Transmission distance: multi-mode fiber transmission distance up to 300 meters, single-mode fiber up to 10 kilometers.
PCI/PCIe port parameters:
Compatible bus: 33MHZ/66MHZ 64-BIT/32-BIT compatible PCI bus, compatible with 3.3V and 5.0V levels.
PCI Express interface: x4 interface.
Data transmission parameters:
Packet size: Automatically adjusts packet size from 4 to 64 bytes.
Transfer rate: from 43 MB/ s (4-byte packets) to 174 MB/ s (64-byte packets).
Transmission delay: 0.4 microseconds.
Memory parameters:
Onboard memory: 256Mbytes of onboard memory with parity check.
SDRAM configuration: Each PCIe reflective memory board can be configured with 128 or 256MB of onboard SDRAM.
DMA and interrupts:
DMA channel: Provides an independent DMA channel.
Network interruption: The network with 32ibt data is interrupted.
Other parameters:
Number of nodes: A maximum of 256 nodes are supported.
PIO window: The PIO window size can be set, ranging from 2Mbytes to 64Mbytes.
Temperature range: Operating temperature 0~65 degrees Celsius, storage temperature -40~85 degrees Celsius.
Operating system support: Windows, Linux, VxWorks, RTX, DOS, LabVIEW RT, RTX/RTX64 driver, etc.
These parameters show the capabilities and features of the PCI-5565PIORC-100A00 in connection, data transfer, memory processing, and interrupt processing, and are suitable for applications that require high-speed and low-latency data sharing.
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