Dead time selection for imperix power modules
This page presents a dead time selection method that can be used with imperix power modules. Appropriate dead time selection is crucial to guarantee the…
This page presents a dead time selection method that can be used with imperix power modules. Appropriate dead time selection is crucial to guarantee the…
This example generates three phase alternating currents from a voltage source inverter in an open loop manner. It can be used in a grid-forming application.
This note shows a possible control for a grid tied back to back converter. The proposed control implements active damping of the LCL filter.
This technical note provides an example of how a fast hysteresis current controller can be implemented, leveraging the possibility of editing the FPGA firmware for…
This technical note shows how the implementation of an FPGA-based hysteresis controller can be conducted, starting from the modeling stage, following with automated VHDL code…
This note presents the various messages displayed on the LCD screen of imperix closed converter racks. These racks contain several power modules, forming a reconfigurable…
This note presents an FPGA control implementation of a grid-tied current-controlled inverter. It combines several control modules presented in different Technical Notes to form a…
This page is a quick-start guide to build a 3 phase inverter using imperix’s high-end control hardware for power electronics. It is specifically made to…
What is the space vector modulation technique (SVM) and how does it work? To answer these questions, this article introduces first the notions of active…
This quick-start guide describes how to build a buck converter controlled in open-loop using power modules and the B-Box RCP programmable controller using the Simulink…
End of content
End of content