GE VMIVME-017614-132 VME Controller Board
1. Overview
GE VMIVME-017614-132 is an industrial-grade VME controller board and a core supporting component of the GE Speedtronic Mark VI series control systems. It is essentially a high-performance VME bus single-board computer.It is mainly applied for industrial automation control, real-time data processing and equipment linkage management. As the core control unit of industrial control systems, it realizes real-time monitoring, control command execution, multi-interface data interaction and complex control algorithm computation, and adapts to harsh industrial environments in power, energy, aerospace and other fields.Inheriting the core advantages of high reliability and high stability of GE industrial control products, this module can be seamlessly integrated into GE Mark VIe and various VME bus control systems, providing critical control and data support for efficient and safe operation of industrial equipment. It is widely used in core industrial fields including power generation, petrochemical industry, military and aerospace. At present, products of this series have been discontinued and are mainly supplied as in-stock spare parts.
2. Product Specifications
| Parameter Name | Specifications |
|---|---|
| Model | VMIVME-017614-132 |
| Manufacturer | GE (General Electric) |
| Compatible Systems | GE Mark VI, Mark VIe control systems and various VME bus industrial control systems |
| Operating Temperature | Standard range: -40℃ to 70℃, wide-temperature adaptive for harsh industrial operating conditions |
| Power Supply | Supports 24V DC / 120V AC power input with stable power supply, adaptable to diverse power supply scenarios on industrial sites |
| Signal Type & Functions | Supports real-time control signal transmission and multi-interface data interaction, with integrated functions of data acquisition, processing and storage, and multiple communication interfaces |
| Hardware Configuration | Equipped with Socket 370 Celeron processor, 32KB battery-backed SRAM, and optional up to 512MB IDE CompactFlash memory |
| Communication Interfaces | Integrated with 10BaseT/100BaseTX (RJ-45) Ethernet port, a pair of 16550 compatible serial ports, and supports Profibus and other fieldbus protocols |
| Electromagnetic Compatibility | Compliant with industrial standards, with strong anti-electromagnetic interference performance, suitable for harsh environments such as power plants and chemical plants |
| Mounting Method | Rack mounting, compatible with standard VME bus cabinets; compact structure, easy to install and space-saving |
3. Technical Features
Excellent Compatibility: Specially designed for VME bus systems, it can be seamlessly integrated into GE Mark VI, Mark VIe and other control systems. It supports multiple operating systems including Windows NT, Windows 2000, Linux and VxWorks, with strong scalability and backward compatibility with existing GE VME infrastructure.
High Reliability: Adopts high-grade industrial components with ultra-wide operating temperature range, vibration resistance and anti-interference capability, adapting to harsh environments such as power plants, chemical plants and aerospace sites. Built-in hardware diagnosis and fail-safe mechanisms with redundant configuration support effectively prevent various operation risks, ensuring system integrity and long-term continuous stable operation.
High Processing Performance: Built with high-performance Socket 370 Celeron processor, it features high-speed computing and deterministic execution, capable of efficiently running complex control algorithms and processing real-time control tasks. Multiple storage modules meet the storage requirements of programs, data and configuration information, and support remote Ethernet booting.
Abundant Interface Functions: Integrated with diversified communication interfaces including Ethernet and serial ports, supporting Profibus, ISBus, DLAN and other bus protocols. It flexibly connects with sensors, actuators and other control devices to realize multi-equipment linkage and efficient data exchange. PS/2 keyboard and mouse ports are also equipped for on-site operation.
Convenient & Efficient Maintenance: Modular design enables online debugging and fault diagnosis with easy installation and removal. Software-selectable watchdog timer and reset functions allow rapid fault locating, reduced downtime and lower maintenance costs. It also supports connection of VMEbus P2, hard disk and floppy disk drives for convenient data reading and maintenance.
4. Application Scenarios
(1) Power Generation Industry
Widely applied in turbine control systems of thermal power plants, natural gas power plants, hydropower stations and other power stations. As a core control component, it undertakes real-time control, data acquisition and processing, connects with control units of steam turbines and gas turbines, and realizes unit speed regulation, load control and protection interlock. It ensures stable operation and efficient power output of generator units, and is an essential part of power plant automation systems.
(2) Petrochemical Industry
Applied in control systems of oil & gas exploitation and chemical production facilities. It is responsible for process control, equipment status monitoring and data interaction, collects operating parameters of equipment such as compressors and pump units, executes control commands and feeds back operating status to realize automatic management of production processes. It guarantees safe and continuous production, and adapts to corrosive and humid harsh industrial environments.
(3) Military & Aerospace Field
Suitable for flight control, navigation, communication and data acquisition systems in military and aerospace applications. As a core control board, it undertakes real-time control and data processing tasks with high reliability and environmental adaptability. It operates stably under extreme temperature and strong electromagnetic interference conditions, providing support for performance optimization and safe operation of aircraft.
(4) Other Industrial Fields
Adapted to large-scale equipment control systems in heavy industries such as metallurgy and building materials, responsible for motor driving, temperature monitoring and process interlock to meet high-load real-time control requirements. It is also applied in industrial automated production lines and robot control systems for control command execution and data interaction, as well as scenarios including medical equipment control and vehicle diagnosis, providing core support for stable operation of various industrial devices.
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