Description
Woodward 8200-1300
Technical Specifications
- Part Number: 8200-1300
- Power Supply: LVDC (18–32 Vdc)
- Input Current: 4.3A
- Input Voltage: -150 Vdc
Functional Features
- Speed and Load Control: Continuously adjusts equipment speed to adapt to different loads and work conditions while maintaining precise setpoints.
- Automated System Integration: Capable of integrating into automated control systems for intelligent industrial process management.
- Equipment Health Monitoring: Features built-in diagnostic functions to monitor equipment health and detect potential issues proactively.
Application Scenarios
Widely deployed in industrial power generation, gas and steam turbine control, and mechanical drive applications requiring precise digital governing.
Performance Parameters
- Stability and Precision: Engineered for high stability and accuracy, ensuring reliable operation under fluctuating industrial conditions.
- Communication: Supports CAN bus and serial communication interfaces for seamless DCS integration.
Material Composition
Conformal coated electronics housed in a durable, sulfur-resistant industrial enclosure designed for harsh environments.
Structural Characteristics
- Terminal Layout: Features CAN ports, discrete inputs/outputs, and analog inputs/outputs for comprehensive system interfacing.
- Status Indicators: Front panel LEDs for CPU, IOLOCK, and alarm status monitoring.
Working Principle
The module continuously monitors speed signals via MPU or proximity switches. It executes PID control algorithms to calculate the required actuator output, adjusting fuel or steam valves to maintain the desired speed or load share.
Installation Requirements
- Wiring: Field wiring must use copper stranded wire rated for at least 75°C.
- Shielding: Use shielded wire for all speed sensor connections, grounding the shield to the chassis.
Usage Precautions
- Gear Tooth Configuration: Ensure the control is properly programmed with the correct gear-tooth count to prevent engine overspeed.
- Power Safety: Strictly adhere to the 18-36 Vdc input voltage limits.





