Woodward CSC3LG120 | CE UL Certified Control Module for Industrial Systems

Brand
Model Woodward CSC3LG120-NEW

The Woodward CSC3LG120 is a high-performance control module manufactured by Woodward, engineered for industrial automation, power generation, and engine control applications. As a versatile PLC-based control solution, the Woodward CSC3LG120 integrates advanced control algorithms with flexible communication capabilities to deliver precise regulation across critical operations in demanding environments.

Designed to meet the stringent requirements of turbine control, generator management, and industrial process automation, the Woodward CSC3LG120 operates on a 24 VDC supply with low power consumption of approximately 5 W. The module supports a wide operating temperature range of -40°C to +85°C, enabling reliable performance in harsh industrial conditions where temperature fluctuations and environmental stress are common.

The Woodward CSC3LG120 features a compact form factor suitable for DIN rail or panel mounting, with dimensions of approximately 120 × 100 × 60 mm and a weight of 1.2 kg. Its modular design allows configuration to meet specific application requirements, while integrated PID, feedforward, and adaptive control capabilities provide versatile process optimization across diverse control scenarios. The module communicates via CANbus and Modbus protocols, ensuring seamless integration with existing Woodward control ecosystems and third-party industrial networks.

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Description

 

Technical Specifications

Parameter Name Parameter Value
Product Model CSC3LG120
Manufacturer Woodward
Product Type Control Module / PLC Module
Supply Voltage 24 VDC
Power Consumption 5 W
Operating Temperature Range -40°C to +85°C
Communication Protocols CANbus, Modbus
Digital I/O Supports various sensors, actuators, and external systems
Control Algorithms PID, Feedforward, Adaptive Control
Mounting Type DIN Rail / Panel Mount
Dimensions 120 × 100 × 60 mm
Weight 1.2 kg
Certifications CE, UL

 

Main Features and Advantages

Advanced Control Algorithms: The Woodward CSC3LG120 incorporates PID control, feedforward control, and adaptive control capabilities, enabling versatile process optimization for demanding industrial applications. These algorithms work in concert to maintain setpoint accuracy despite system disturbances, load variations, and changing process dynamics.

Flexible Communication Architecture: The Woodward CSC3LG120 supports both CANbus and Modbus communication protocols, facilitating integration with industrial networks, SCADA systems, and distributed control architectures. This dual-protocol capability eliminates the need for additional gateway devices when interfacing with mixed-protocol environments.

Digital I/O Integration: The module provides digital input/output interfaces that facilitate connection with various sensors, actuators, and external control systems. This I/O flexibility allows the Woodward CSC3LG120 to serve as a central control hub in applications ranging from turbine speed regulation to process valve actuation.

High Control Accuracy: Fast response times and precise regulation are critical in power generation and engine control applications. The Woodward CSC3LG120 delivers the control accuracy required for maintaining optimal performance in time-sensitive operations, with real-time processing capabilities that minimize control loop latency.

Robust Environmental Tolerance: Built for stable performance in challenging conditions, the Woodward CSC3LG120 operates reliably across a temperature range of -40°C to +85°C. This wide tolerance makes the module suitable for installation in outdoor cabinets, unconditioned electrical rooms, and other environments where temperature control is not practical.

Modular Design and Maintainability: The Woodward CSC3LG120 features a modular architecture that simplifies upgrades and component replacements, reducing downtime during maintenance operations. Configurable to meet specific application requirements, the module enhances system flexibility without requiring complete control system redesign.