GE VMIVME-5565 Ultra-high speed fiber optic reflective memory

GE VMIVME-5565 Today's recommended products: NVIDIA H100 PCIE NVIDIA H800 PCIE LAM 839-101612-885 LAM 839-101612-887 LAM 719-101612-885 LAM 719-101612-887 Many in stock, first come first served, first-hand source, channel Contact: Han Fangting Sales Manager Mobile :18030042035 QQ: 748141623 Email: 748141623@qq.com Web site :www.changxindcs.com www.changxinsz.com We operate ABB, GE aereration, A-B, Honeywell, KUKA, SCHNEIDER, Bentley, TRICONEX Invensys, WOODWARD, FOXBORO, WESTINGHOUSE, and MOTOROLA MOTOROLA, KEBA, KOLLMORGEN, EMERSON, HIMA dark horse, industrial and commercial energy storage, container energy storage, household light energy storage, (peak cutting, valley filling, backup power supply) can be contacted if necessary. Country of Origin: USA Moq :1 piece Packaging: new raw materials and individual packaging Delivery time :2-3 working days Payment method: Bank transfer, Western Union

GE VMIVME-5565

The GE VMIVME-5565 is an ultra-high speed Fiber optic reflective memory (RFM) node card designed for VMEbus systems. It realizes high speed and low latency data transmission between nodes through optical fiber network, which is suitable for distributed systems with high real-time requirements.

Product parameters and specifications
Model: VMIVME-5565
Type: RFM node card
Interface: VMEbus


Transfer rate: up to 2.12 Gbaud
Packet size: 4-64 bytes
Number of network nodes: A maximum of 256 nodes are supported
Operating temperature: 0°C to 55°C
Storage temperature: -40°C to 85°C
Main feature


Ultra-high-speed transmission: The use of optical fiber technology to achieve high-speed data transmission, to meet the real-time requirements.
Low latency: Extremely low data transfer latency for time-sensitive applications.
High reliability: Optical fiber transmission has the characteristics of strong anti-interference ability and long transmission distance.
Scalability: Supports large-scale networks up to 256 nodes.
Compatibility: Compatible with multiple operating systems and bus architectures.

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