GE DS200GDPAG1AEB: High-Performance Gate Driver Power Module
The GE DS200GDPAG1AEB Gate Driver Power Module is designed to enhance the performance of industrial control systems by providing precise control over gate drivers. This module ensures reliable operation in harsh environments, making it ideal for applications requiring high efficiency and robustness.
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Model Type:DS200GDPAG1AEB
Series:Mark VI
Module Designation:Advanced Gate Driver Power
Weight:0.32 kg
Dimension:25.4 cm x 10.2 cm x 3.5 cm
Power Rating:Up to 200V DC
Operating Temperature Range:-40°C to +85°C
Input Voltage Range:DC 10V to 100V
Output Current:20A
Communication Protocol:Modbus-RTU
Protection Mechanism:Overcurrent Protection, Overvoltage Protection
The GE DS200GDPAG1AEB is engineered with advanced semiconductor technology, ensuring unparalleled reliability and longevity in demanding industrial settings. Its high current output capacity makes it suitable for driving large power devices efficiently.
This gate driver power module supports a wide range of input signals, allowing seamless integration with various control systems. Its digital input ensures precision and reliability, minimizing the risk of errors in complex industrial processes.
Designed with industrial durability in mind, the DS200GDPAG1AEB can withstand extreme temperature fluctuations, from -40°C to +85°C, without compromising performance. This robustness is crucial for applications in harsh environments, such as manufacturing plants or outdoor facilities.
Equipped with built-in protection features like overvoltage/undervoltage and overcurrent protection, the module safeguards against potential damage caused by unexpected voltage surges or excessive currents, enhancing system uptime and reducing maintenance costs.
Featuring an RS-485 communication interface, the DS200GDPAG1AEB facilitates easy setup and configuration, allowing for remote monitoring and control. This feature is particularly beneficial for managing large-scale industrial operations, where centralized control is essential for optimizing efficiency and productivity.