The single-module design integrating PFC and inverter helps home appliances and industrial motors achieve efficient variable-frequency control.
This solution integrates the power factor correction (PFC) stage and the three-phase inverter stage into a single module, providing a highly integrated and energy-efficient complete solution for variable-frequency motor applications such as fans, pumps, and compressors.
1. Adapting to the trend of energy efficiency improvement, promoting the popularization of variable frequency control
With the continuous implementation of global energy conservation and emission reduction policies, the requirements for energy efficiency and environmental protection indicators in household appliances, HVAC systems, and industrial equipment have been continuously increasing. Traditional AC induction motors are being rapidly replaced by brushless DC (BLDC) motors, and the complexity of design and development cycle of variable frequency control systems have become the main bottleneck restricting the rapid iteration of the industry.
Designed to address this industry pain point. The solution is based on Infineon's CIPOS™ Mini IM564-X6D module, integrating a powerful three-phase inverter and power factor correction system into a single DIP 36-pin package. This enables original equipment manufacturers to significantly shorten the development cycle of the variable frequency motor control system and achieve "plug-and-play" rapid prototype verification.
II. Core Technology: PFC + Inverter Single Module Integration
The IM564-X6D module represents the current trend of highly integrated design in the field of small and medium power motor drives. Its technical characteristics include:
Integrated PFC + Inverter Architecture: The module incorporates CoolMOS™ power MOSFETs and fast-switching diodes for the PFC stage, supporting a maximum PFC switching frequency of 150kHz. This single boost PFC topology can significantly reduce the size of the external inductor, achieving high power density and a compact system design.
Powerful output capacity: This solution can achieve a maximum power output of 2800W at an input voltage of 220-240VAC. The rated motor drive power is up to 2000W. It also supports passive cooling, balancing the compact layout with thermal management requirements.
Plug-and-play FOC algorithm engine: The module is equipped with the latest iMotion MCE 2.0 (Motion Control Engine) technology from Infineon, and incorporates an inductive sensorless field-oriented control (FOC) algorithm. Developers do not need to write complex motor control code; they can achieve high precision and low noise three-phase BLDC motor drive simply by configuring it.





