GE Industrial Automation

GE IS230TVBAH2A Terminal Board
The GE IS230TVBAH2A is a terminal board component designed for the Mark VI turbine control system. This board serves as a critical interface within General Electric’s Speedtronic Mark VI series, providing reliable signal termination and distribution for industrial gas and steam turbine control applications.
Manufactured by General Electric as part of their Mark VI control system lineup, the IS230TVBAH2A ensures high performance and compatibility with other system components.
Technical Specifications
| Part Number | IS230TVBAH2A |
|---|---|
| Manufacturer | General Electric |
| System | Mark VI Turbine Control System |
| Product Type | Terminal Board |
| Number of Terminals | 32 (typical) |
| Terminal Type | Screw-type connectors |
| Wire Gauge Compatibility | AWG 12-24 (2.5-0.2 mm²) |
| Voltage Rating | 300V maximum |
| Current Rating | 10A maximum per terminal |
| Operating Temperature | -20°C to +85°C (-4°F to +185°F) |
| Storage Temperature | -40°C to +105°C (-40°F to +221°F) |
| Board Material | FR-4 Glass Epoxy |
| Mounting | DIN rail or direct panel mount |
| Compatibility | Mark VI Control System Components |
| Certifications | UL94V-0, CE, RoHS compliant |
Key Features
- High-density terminal configuration for space-efficient installation
- Robust construction for industrial environments
- Clear terminal numbering for easy identification and wiring
- Compatible with standard Mark VI system components
- Designed for reliable signal distribution in critical control applications
- High-quality materials ensure long-term reliability
- Easy installation and maintenance
Typical Applications
- Gas turbine control systems
- Steam turbine control systems
- Power generation plants
- Industrial process control
- Energy management systems
- Signal termination and distribution panels

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Schneider Woodward HIMA Honeywell Emerson Foxboro
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•Package: Original packing with cartons
What is a DCS?
A Distributed Control System (DCS) is a sophisticated, computer-based control system designed to automate, monitor, and manage complex industrial processes. It is widely used in large-scale industrial facilities such as refineries, power plants, chemical plants, and paper mills, where precision, reliability, and scalability are critical.
How Does a DCS Work?
A DCS is composed of several interconnected components that work seamlessly to ensure efficient process control. Here’s a breakdown of its key elements:
- Controllers:
These are the “brains” of the system. Controllers receive data from sensors, process it using pre-programmed logic, and send output signals to actuators to maintain optimal process conditions. - Sensors:
Sensors act as the “eyes and ears” of the system, measuring critical physical parameters such as temperature, pressure, flow rate, and level. This real-time data is essential for accurate control. - Actuators:
Actuators are the “muscles” of the system. They execute physical actions based on controller commands, such as opening/closing valves, starting/stopping motors, or adjusting dampers. - Operator Stations:
These serve as the human-machine interface (HMI), allowing operators to monitor the process, adjust setpoints, and troubleshoot issues. Modern DCS systems often feature intuitive graphical interfaces for ease of use. - Communication Network:
The backbone of the DCS, this network connects all components, enabling seamless data exchange and coordination. It ensures that every part of the system works in harmony, even across large industrial sites.
Why is a DCS Important?
- Centralized Control with Distributed Execution: A DCS allows for centralized monitoring while distributing control functions across multiple controllers, reducing the risk of system-wide failures.
- Scalability: It can easily expand to accommodate growing operational needs.
- Reliability: Redundant systems and fail-safes ensure continuous operation, even in critical environments.
- Efficiency: Optimizes processes, reduces waste, and improves overall productivity.
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