The IS200EHPAG1A – General Electric Gate Pulse Amplifier Board is a critical component used in GE’s advanced turbine excitation and control systems, particularly within the EX2100 platform. This board is responsible for amplifying low-level gate pulse signals from the control circuitry and delivering them with the required voltage and current levels to drive the power semiconductor devices such as IGBTs or SCRs. By ensuring clean, stable, and precisely timed gate signals, the IS200EHPAG1A helps maintain optimal switching performance, minimize power losses, and enhance the overall efficiency of the excitation system.
Engineered with robust insulation and advanced noise immunity, the board provides reliable operation even in high electrical noise and harsh industrial environments. It also features high thermal stability, ensuring consistent performance under varying load and temperature conditions. The IS200EHPAG1A is designed for easy integration and replacement, supporting quick maintenance to reduce downtime.
This advanced signal amplification ensures that switching devices operate at their optimal performance parameters, reducing switching losses, preventing false triggering, and extending the life of the power components. The IS200EHPAG1A is built using high-quality components with robust PCB design practices, offering exceptional electrical noise immunity, stable performance under high-frequency operation, and resistance to transient disturbances.
In demanding turbine and generator excitation environments, the IS200EHPAG1A provides unmatched reliability due to its heat-resistant construction and thermal management features, allowing continuous operation under elevated temperatures. The module’s compact and modular form factor supports quick installation and replacement, minimizing downtime during scheduled maintenance or emergency repairs.
Key Features:
Amplifies and conditions gate pulse signals for power semiconductor control
Compatible with GE EX2100 excitation systems
High noise immunity for stable operation in harsh environments
Durable design with excellent thermal stability
Supports precise and reliable turbine excitation control
Contact Information:
Evaflux Private Limited
📞 Phone: +91 7303573946
📧 Email: support@evaflux.com
Reviews
There are no reviews yet.