IS215UCVDH5AN | GE Fanuc | Mark VI VME Assembly Module
Manufacturer: GE Fanuc
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Part Number: IS215UCVDH5AN
Condition:New with Original Package
Product Type: Universal Controller Board
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
Product Overview
The IS215UCVDH5AN is a high-performance Universal Controller and VME Assembly Board engineered by GE Fanuc for the Mark VI and Mark VIe Speedtronic turbine control systems. This module serves as the primary processing engine for modern turbine automation, utilizing an AMD G-series quad-core 1.2 GHz processor to manage real-time control logic, high-speed I/O interfacing, and peer-to-peer network communications. Designed for high-availability industrial environments, the IS215UCVDH5AN features an exceptional Mean Time Between Failures (MTBF) of over 414,000 hours, making it a mechanical necessity for mission-critical operations in power generation and petrochemical refining.
Detailed Technical Specifications
| Attribute | Details |
| Manufacturer | GE Fanuc / General Electric |
| Model Number | IS215UCVDH5AN |
| Series | Mark VI / Mark VIe Speedtronic |
| Product Type | Universal Controller / VME Assembly Board |
| Processor | AMD G-series Quad-Core, 1.2 GHz |
| Operating System | QNX Neutrino (Real-time OS support) |
| MTBF | 414,248 Hours |
| Input Voltage | 24 VDC ±10% |
| Operating Temp | -40 °C to +85 °C (Industrial Grade) |
| Humidity | 5% to 95% non-condensing |
| Form Factor | Double-slot VME board (266.7 x 196.85 mm) |
| Communication | Dual/Triple Ethernet (IONet), Serial, VMEbus |
Engineering and Operational Guidelines
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Real-Time Processing Expertise: The IS215UCVDH5AN is optimized for deterministic execution. Its quad-core architecture allows for the simultaneous processing of complex control algorithms and high-bandwidth communication tasks without compromising turbine safety or loop cycle times.
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Industrial-Grade Durability: With a wide operating temperature range reaching up to +85 °C, this board is a trustworthy solution for control cabinets located in harsh plant environments. The ruggedized VME form factor provides superior mechanical stability against high-frequency vibrations common in turbine enclosures.
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System Redundancy: In Mark VIe architectures, the IS215UCVDH5AN is frequently deployed in Dual or Triple Modular Redundant (TMR) configurations. This ensures that the loss of a single controller does not result in a turbine trip, maintaining grid stability and operational continuity.
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Advanced Diagnostics: The module includes comprehensive onboard monitoring for voltage levels, processor temperature, and communication health. These authoritative diagnostic capabilities facilitate proactive maintenance and significantly reduce Mean Time to Repair (MTTR).
Technical FAQ
Q: Does the IS215UCVDH5AN support migration from Mark VI to Mark VIe?
A: Yes. The "Universal" nature of the IS215UCVDH5AN allows it to function as a bridge or upgrade path in many VME-based Mark VI racks, enabling existing systems to utilize modern Mark VIe processing power and Ethernet-based I/O (IONet) connectivity.
Q: What is the significance of the "H5AN" suffix?
A: This suffix specifies the hardware revision and component population, including the specific quad-core processor speed and memory allocation. It is a professional best practice to ensure the hardware revision matches your system configuration file in the ToolboxST software.
Q: Can this controller manage both gas and steam turbine applications?
A: Absolutely. The IS215UCVDH5AN is an application-neutral processor; its specific function is determined by the control software (ToolboxST) and the I/O modules connected via the VME backplane or IONet.