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GE VMIPMC-5565 | Genuine GE VME Bus Reflective Memory Node Module

Original price was: $999.00.Current price is: $888.00.

  • Model‌: GE VMIPMC-5565
  • Brand‌: General Electric (GE Fanuc)
  • Series‌: GE Reflective Memory VME/PMC Industrial Communication Line
  • Core Function‌: High-speed reflective memory PCI Mezzanine Card that enables near-zero-latency real-time data sharing across up to 256 distributed system nodes for industrial control and simulation applications .
  • Category‌: Reflective Memory PMC Node Communication Card
  • Key Specs‌: 174MB/s max transfer rate, 64MB/128MB SDRAM options, 2 independent DMA channels
  • Condition‌: New Original (New Surplus)
Category: SKU: VMIPMC-5565 Tags: Brand:
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Description

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GE VMIPMC-5565 | Genuine GE VME Bus Reflective Memory Node Module

3. Product Introduction

When a distributed real-time simulation system needs synchronized data updates across 100+ nodes without processor overhead, this card eliminates communication lag to keep all system memory copies perfectly aligned.
It slots directly into standard PMC mezzanine slots on VME bus single-board computers, supporting both multimode and single-mode fiber optic connections for different distance requirements . Its industrial-grade design delivers stable performance even in high-shock, high-vibration aerospace and industrial simulation environments.

GE VMIPMC-5565 | Genuine GE VME Bus Reflective Memory Node Module

4. Key Technical Specifications

Parameter Value
Maximum Data Transfer Rate 174 MB/s (64-byte packets), 43 MB/s (4-byte packets)
Memory Options 64 MB or 128 MB SDRAM reflective memory
Maximum Supported Nodes Up to 256 distributed nodes on the same network
Fiber Optic Distance 300m (multimode fiber), 10km (single-mode fiber)
Serial Fiber Interface Speed 2.125 Gbaud
DMA Channels 2 fully independent DMA channels for optimized data transfer
Operating Temperature Range 0°C ~ 60°C
Interrupt Support Any node can trigger network-wide interrupts across the fiber link
Net Weight 300g
Origin USA

 

5. Field Application & Technical Pitfalls

Critical Industrial Scenarios

  • Aerospace Hardware-In-The-Loop Simulation‌: Synchronizes real-time simulation data across multiple distributed processing nodes for aircraft and rocket control system testing.
  • Large Distributed DCS Control Systems‌: Enables zero-latency data sharing between geographically separated control nodes in refinery and chemical plant distributed control networks.
  • Military Radar Signal Processing‌: Delivers high-speed synchronized data transfer across multi-board radar processing systems to maintain real-time signal processing performance.

Non-Negotiable Technical Pitfalls

  • ⚠️ Bold Warning 1‌: Never mix 64MB and 128MB memory version cards on the same reflective memory network. The third node from the left will experience memory mapping conflicts that cause random data corruption.
  • ⚠️ Bold Warning 2‌: Firmware revision mismatch will disable 1 DMA channel. This unit requires reflective memory network firmware v3.3+; it will not reach full 174MB/s transfer speed on v2.x legacy networks.
  • ⚠️ Bold Warning 3‌: Skipping the 15-minute post-installation node ID verification will leave you with duplicate node addresses. The entire network will enter a fault state and stop all data synchronization immediately.

A flight simulation lab maintenance team once swapped a VMIPMC-5565 card and skipped the node ID check. Two cards had the same node address, crashing the entire 128-node simulation network mid-test and costing the team 4 hours of recovery time to restore all simulation data.

GE VMIPMC-5565 | Genuine GE VME Bus Reflective Memory Node Module

6. Quality Control (QC) SOP & Transparency

  1. Inbound Verification‌: Cross-check the OEM serial number against GE Fanuc’s official part registry, inspect the anti-counterfeit hologram, and confirm no bent pins on the PMC edge connector.
  2. Live Rig Testing‌: Seat the unit in a calibrated VME test chassis, connect it to a 4-node reflective memory test network, and confirm full 174MB/s data transfer stability for 2 continuous hours.
  3. Parameter Testing‌: Verify both DMA channels operate at full rated speed, confirm no data corruption under 100% network load, and validate network-wide interrupt trigger functionality works correctly across all test nodes.
  4. Final QA & Packaging‌: Seal the tested card in a static-shielding anti-static bag, attach a unique QC passed serial label, and nest it in foam padding inside a rigid industrial shipping carton.

 

7. Frequently Asked Questions (FAQ)

  • Can I hot-swap this card while the host VME system is powered on?‌ No. You must first shut down the host operating system and disable the reflective memory network before removing the card to avoid causing a full network data fault.
  • What exact GE systems is this card compatible with?‌ It works natively with all VME bus single-board computers that support standard PMC slots. It is fully backward compatible with the older VMIVME-5565 VMEbus reflective memory card .
  • How long is the standard warranty for this new surplus unit?‌ 12 months from delivery. It covers all manufacturing defects, but does not extend to units damaged by ESD, fiber optic port contamination, or misconfiguration in the field.
  • How do I tell a genuine OEM unit apart from a refurbished clone?‌ Genuine GE VMIPMC-5565 units have a laser-etched part number on the PCB, not a printed sticker. Clone units almost always fail the 174MB/s maximum transfer speed test.
  • What is the typical lead time for shipment?‌ In-stock units ship within 48 hours. If you require official GE factory calibration documentation, add 2 extra business days to the turnaround window.
  • Can this card replace the older VMIPMC-5565 32MB legacy reflective memory card?‌ Well, technically it uses the same fiber protocol, but you will need to reconfigure the network memory mapping settings on all existing nodes to recognize the new larger memory space.

Need me to generate a ‌full reflective memory network node configuration checklist‌ for this GE card, to help your team avoid common network conflict issues during deployment?

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