The STEVAL-IHM045V1 system evaluation board is a 3-phase inverter designed to perform field oriented control (FOC) of sinusoidal-shaped back-EMF PMSMs with or without sensors, with nominal power up to 100 W. This flexible, high-performance design consists of a 3-phase inverter bridge based on the STGIPN3H60A SLLIMM™-nano (small low-loss intelligent molded module) IPM, 3-phase inverter, 3 A / 600 V very fast IGBT and the VIPer06 fixed frequency offline converter from the VIPer™ plus family.
The system is specifically designed to achieve fast and accurate current feedback conditioning, thereby matching the requirements typical of high-end applications such as field oriented motor control.
The board is compatible with 110 and 230 Vac mains, and includes an auxiliary power supply stage with the VIPer06 to generate the +15 V and the +3.3 V supply voltages required by the application.
Through a dedicated connector, the board can be interfaced with the STM3210B-EVAL, STM32100B-EVAL, STM3210E-EVAL, STM320518-EVAL, STM3220G-EVAL, STM32303C-EVAL, STM3240G-EVAL (STM32 microcontroller evaluation boards), STEVAL-IHM022V1 (high density dual motor control evaluation board based on the STM32F103ZE microcontroller), STEVAL-IHM039V1 (Dual motor drive control stage based on the STM32F415ZG microcontroller) and the STEVAL-IHM033V1 (Control stage based on the STM32F100CB microcontroller suitable for motor control).
Main features
All reference designs on this site are sourced from major semiconductor manufacturers or collected online for learning and research. The copyright belongs to the semiconductor manufacturer or the original author. If you believe that the reference design of this site infringes upon your relevant rights and interests, please send us a rights notice. As a neutral platform service provider, we will take measures to delete the relevant content in accordance with relevant laws after receiving the relevant notice from the rights holder. Please send relevant notifications to email: bbs_service@eeworld.com.cn.
It is your responsibility to test the circuit yourself and determine its suitability for you. EEWorld will not be liable for direct, indirect, special, incidental, consequential or punitive damages arising from any cause or anything connected to any reference design used.
Supported by EEWorld Datasheet