Product Introduction
The GE DS200FCSAG1ACB Current Sensing Feedback Board is a precision feedback interface designed to provide accurate current sensing signals in industrial control and excitation systems. It monitors current flow within the exciter or generator circuits and provides feedback to control modules for reliable regulation of electrical output.
This feedback board ensures real-time current measurement, enabling high-performance excitation control, system protection, and predictive maintenance. Its robust industrial construction allows operation under electrical noise, temperature fluctuations, and vibration typical of generator and turbine environments.
Designed to integrate seamlessly into GE DS200 series control systems, the DS200FCSAG1ACB board enhances system reliability, improves response accuracy, and supports safe and efficient operation of machinery and power generation equipment.
Product Specifications
| Parameter | Specification |
|---|---|
| Product Type | Current Sensing Feedback Board |
| Model | DS200FCSAG1ACB |
| Brand | GE |
| Function | Provides real-time current feedback for exciter and generator circuits |
| Application System | Excitation control, generator regulation, and feedback monitoring |
| Mounting Type | DS200 series module rack |
| Dimensions | 140 × 260 × 50 mm |
| Weight | 1.4 kg |
| Compatibility | GE DS200 series exciter and control systems |
Product Applications
• Monitoring current flow in exciter and generator circuits
• Providing real-time feedback for control modules
• Enhancing excitation system stability and response
• Industrial machinery protection and power generation applications
• Integration into GE DS200 series control and monitoring systems
• Supporting predictive maintenance and operational reliability
Product Advantages
• Provides accurate and reliable current feedback signals
• Enables stable and precise excitation control for generators
• Seamless integration with GE DS200 series control modules
• Industrial-grade design for operation under harsh conditions
• Improves system protection and operational efficiency
• Supports real-time monitoring and predictive maintenance strategies
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