Description
LTC745A101 3BHE039905R0101 excitation controller
Product Description
The LTC745A101 3BHE039905R0101 is an excitation controller manufactured by ABB that plays an important role in industrial automation and power generation applications, particularly in the regulation of excitation current in synchronous generators. The following are the main features and application scenarios of the product:
Main feature
Accurate excitation control: can accurately control the excitation current, maintain the generator terminal voltage within the specified range, to ensure stable power output and system stability.
Fast response time: Rapid response to load and voltage fluctuations, typically less than 100 milliseconds, enables the generator to quickly adapt to changes in power demand.
Advanced control algorithm: The complex control algorithm is used to optimize generator performance, minimize reactive power consumption, and improve system efficiency.
Modular design: easy to install, maintain, and scale to meet specific application requirements.
Robust construction: Designed to withstand harsh industrial environments, including vibration, extreme temperatures and electromagnetic interference.
Product parameter
Control range: Supports wide field current control from 0 A to maximum generator field current rating.
Accuracy: High accuracy in maintaining the desired terminal voltage, usually within ±0.5% of the set point.
Communication interface: Supports standard communication protocols such as Modbus or Ethernet for easy integration with control systems and SCADA networks.
Protection features: Protection against overexcitation and underexcitation, as well as other potential hazards to the generator and system.
In addition, it is mentioned that the LTC745A101 3BHE039905R0101 May be associated with fail-safe inverters, but this information is more limited and may relate to devices that convert DC power to AC power and have fail-safe features that automatically shut down the output in the event of a failure to protect the load and the inverter itself
Accuracy: High accuracy in maintaining the desired terminal voltage, usually within ±0.5% of the set point.
Communication interface: Supports standard communication protocols such as Modbus or Ethernet for easy integration with control systems and SCADA networks.
Protection features: Protection against overexcitation and underexcitation, as well as other potential hazards to the generator and system.
In addition, it is mentioned that the LTC745A101 3BHE039905R0101 May be associated with fail-safe inverters, but this information is more limited and may relate to devices that convert DC power to AC power and have fail-safe features that automatically shut down the output in the event of a failure to protect the load and the inverter itself
Application field
Power plant: Ensure stable power generation of synchronous generators and grid stability.
Industrial automation: Control the excitation current of generators powered by industrial motors, drives and process equipment to maintain consistency of power supply and system performance.
Renewable energy systems: Manage generator excitation currents in renewable energy systems such as wind turbines and hydro generators to optimize power output and system stability.
Emergency generation: Control backup generator excitation current for critical infrastructure and emergency applications to ensure reliable power supply during grid outages.
Marine applications: Regulate the excitation current of Marine generators in Marine environments to maintain stable power supply and system performance.
Industrial automation: Control the excitation current of generators powered by industrial motors, drives and process equipment to maintain consistency of power supply and system performance.
Renewable energy systems: Manage generator excitation currents in renewable energy systems such as wind turbines and hydro generators to optimize power output and system stability.
Emergency generation: Control backup generator excitation current for critical infrastructure and emergency applications to ensure reliable power supply during grid outages.
Marine applications: Regulate the excitation current of Marine generators in Marine environments to maintain stable power supply and system performance.
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