GFD563A102 3BHE046836R0102 Excitation Controller
- T/T Western Union
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Product Details
Brand Name | ABB | Place of Origin | Sweden | |
Model Number | GFD563A102 3BHE046836R0102 | Rated power | 46kW | |
Input voltage | 380V AC | Output voltage | 0 to 380V AC | |
Output frequency | 0.5 to 800Hz | Overload capacity | 150% for 1 minute | |
Cooling method | Natural cooling | Installation method | Wall-mounted | |
Dimensions | 500x400x200mm | Weight | 2.5kg |
Product Description
Functional Features
Integration of Multiple Functions: It can be used as a high-speed digital output module, variable frequency drive, servo drive, central controller processing unit, excitation convection interface module, etc. The specific functions depend on its application scenarios and configurations.
High-speed Response and Control: It has high-speed response capability. By adopting a high-performance processor and advanced control algorithms, it can quickly transmit control signals to the execution equipment, achieving fast and accurate control responses to meet the requirements of real-time control.
Powerful Input and Output Capabilities: It supports multiple digital output channels, enabling the simultaneous control of multiple devices or the execution of multiple tasks, and each channel can be controlled independently. It also supports a total of 62 combinations of analog and digital inputs and outputs, including 30 digital inputs, 2 analog inputs, 28 digital outputs, and 2 high-speed digital outputs.
Flexible Expandability: Through additional expansion modules, its configuration can be expanded to 1024 I/Os, which can adapt to the application requirements of various complex industrial automation and robotics fields.
Complete Protection Functions: It has protection functions such as overcurrent, overvoltage, and overheating to prevent damage to the module and connected equipment caused by overcurrent, overvoltage, overheating, etc., ensuring the safe operation of the equipment.
Application Scenarios Power Plants: Especially in the excitation system of generators, it is used for interfacing with the convection-cooled thyristor bank. In power plants, it can also be used for quickly controlling power generation equipment and switches to ensure the stable operation of the power system. Other Industrial Settings: It is used in other industrial scenarios that require precise control of voltage and current, and can also be applied to fields such as automated production lines, robot control, power grid management, and building automation.
Installation Steps:
Preparation Work: Ensure that the installation site meets the equipment requirements, such as ambient temperature, humidity, cleanliness, etc. Prepare necessary tools and safety equipment, such as screwdrivers, wrenches, insulated gloves, etc.
Equipment Inspection: Before installation, carefully check whether the excitation controller and its accessories are damaged or missing to ensure that the equipment has an intact appearance and complete accessories.
Determination of the Installation Location: Select a suitable installation location. Usually, factors such as convenient wiring, good heat dissipation, and being away from strong electromagnetic interference sources should be considered.
Fixing the Equipment: Use appropriate installation brackets or rails to firmly install the excitation controller in the designated location. According to the installation holes on the equipment, use screws to fix it to ensure a firm installation.
Electrical Connection: Power Supply Connection: According to the power supply requirements of the controller, connect the appropriate power supply, and pay attention to the voltage level and polarity of the power supply.
Signal Connection: Connect various input and output signal cables, such as control signals, feedback signals, communication cables, etc. Ensure that the cables are firmly connected, have good contact, and are well insulated. For communication cables, connect them according to the specified communication protocol and interface.
Excitation Connection: Correctly connect the excitation controller to the excitation winding of the generator, and pay attention to the phase sequence and polarity of the connection to avoid equipment damage caused by incorrect connection.
Grounding: Ensure that the grounding terminal of the excitation controller is reliably grounded to ensure the safe operation of the equipment, and the grounding resistance should meet the relevant standard requirements.
Debugging Steps:
Inspection Before Power-on: Before powering on, check again whether all electrical connections are correct, whether the screws are tightened, and whether the cables are damaged or short-circuited.
Power-on: Connect the power supply of the excitation controller, observe whether the indicator lights of the controller are normally on, and determine whether the equipment is powered on normally.
Parameter Setting: According to the parameters and operation requirements of the generator, set relevant parameters such as rated voltage, rated current, excitation current limit, and regulation gain through the operation panel or debugging software of the controller. Ensure that the parameter setting is accurate.
System Self-check: Let the excitation controller perform a self-check to check whether the internal circuits and functional modules are working normally. If an error code appears during the self-check process, refer to the equipment manual to find the cause of the error and troubleshoot it.
Simulation Test: Without connecting the generator, conduct a simulation test, input simulated control signals and feedback signals, and observe whether the output response of the controller meets the expectations. Through the simulation test, the normal operation of the controller's functions can be initially verified.
Online Debugging: Connect the excitation controller to the generator for actual debugging operation. During the operation process, closely observe the changes in parameters such as the voltage, current, and excitation current of the generator, and fine-tune the parameters of the controller according to the actual situation to optimize the operation of the generator.
Performance Test: Conduct some performance tests, such as load sudden change test, voltage regulation accuracy test, etc., to verify the performance and stability of the excitation controller under different working conditions. Recording and Document
Arrangement: During the debugging process, record in detail various parameter settings, test results, and problems encountered and solutions. After the debugging is completed, organize the relevant documents for subsequent maintenance and reference.
Main Products:
Covering world-renowned brands:
Bently Nevada、Triconex、Woodward、Foxboro、Westinghouse、Reliance、Schneider Modicon、ABB、Allen-Bradley、Motorola、GE Fanuc、Yaskawa、ACSO、YOKOGAWA、Rexroth、NI、Bosch Rexroth、ICS Triplex、Kollmorgen、Mitsubishi、MOOG、Emerson、B&R、SST、ALSTOM、EPRO、HIMA、HONEYWELL、prosoft、AMAT 、SIEMENS、KUKA、LAM
Product categories include: DCS system parts, robot system spare parts, large-scale servo system components, widely applied in power, chemical, metallurgy, smart manufacturing, and other industries.
Service Advantages:
✅ Original imports with quality assurance
✅ Ample stock for rapid delivery
✅ Professional team for technical support
✅ Global logistics for worry-free coverage
Contact Us
- Guizhou Yuanmiao Automation Equipment Co., Ltd.
- Contact nameAva Chat Now
- AddressHongshan Hotel, No. 42, Hongshan Lake Road, North Street, Xixiu District. Doubletree by Hilton) Building 14 Floor 9, Anshun, Guizhou
Product Categories
ABB | GE Fanuc | Triconex | Bently Nevada |
Woodward | HIMA | HONEYWELL | ICS Triplex |
MOOG | FOXBORO | NI | Emerson |
Other brands |
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