Description
Product Name:
Basler Electric DECS-200-2L
Product Description:
The DECS-200-2L is a digital excitation control system designed by Basler Electric for synchronous generators. This controller offers advanced features to enhance performance, reliability, and stability of electrical power systems. It provides precise control over generator excitation, ensuring optimal output and improved voltage regulation. The DECS-200-2L is suitable for a variety of applications, including power plants, industrial facilities, and renewable energy installations.
Product Parameters / Specifications:
- Input Voltage Range:
- Typically rated for a range of input voltages, often around 90-265 VAC (for auxiliary power).
- Excitation Output:
- Capable of supplying adjustable excitation output, often rated around 0-75 VDC or similar based on application requirements.
- Control Circuit Voltage:
- Logic and control circuits typically operating at standard voltage levels, often 24 VDC or 48 VDC.
- Environment:
- Operating temperature range: -40°C to +70°C (-40°F to +158°F).
- Humidity: Designed to withstand high humidity environments.
- Communication Ports:
- Options for communication via industry-standard protocols like Modbus, Ethernet, or other protocols as required.
- Protection Features:
- Overvoltage, fault detection, and protection options for both the generator and the control system.
- Regulation Modes:
- Various modes for voltage regulation, including automatic voltage regulation (AVR) and droop control.
- Feedback Inputs:
- Multiple sensor inputs for voltage, current, and temperature for real-time system monitoring.
- Display:
- Typically features an LCD or LED display for system diagnostics and configuration.
- Physical Dimensions:
- Compact design, often mounted on a panel or in a rack, specific dimensions depending on model number.
Product Use:
The DECS-200-2L controller is primarily used to control the excitation system of synchronous generators. It ensures stable voltage output by adjusting the excitation of the rotor, which is crucial for maintaining system stability, especially in grid-connected scenarios. Its versatile design makes it applicable in:
- Power generation plants (traditional and renewable sources)
- Industrial power systems
- Marine and offshore applications
- Combined heat and power (CHP) systems
- Backup power generation systems
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