Increasing automation in the industrial field is leading to a growing number of industrial motor systems, from small to heavy-duty applications. With sustainability in mind, it is crucial to design for the highest possible efficiency.
Industrial motor drives account for almost two-thirds of energy consumed in industrial applications today. Our industry-leading power solutions provide industrial motor drive solutions for either AC or BLDC motors that offer high reliability, high-power efficiency, and reduced time to market for your designs.
onsemi offers a variety of products, including comprehensive portfolio of sensing, power conversion, power delivery and drive solutions. System-in-Package (SIP) and power modules maximize scalability across platforms and minimize area requirements, in addition to offering superior reliability compared to traditional solutions.
Our portfolio of industrial drives solutions ensures your system operates smoothly and functionally while withstanding extreme conditions and temperatures.
Our SiC MOSFETs are designed to be fast and rugged and include system benefits from high efficiency to reduced system size and cost. MOSFETs are metal–oxide–semiconductor field-effect transistors with insulated gates. These silicon carbide MOSFETs have a higher blocking voltage and higher thermal conductivity than silicon MOSFETs, despite having similar design elements. SiC power devices also have a lower state resistance and 10 times the breakdown strength of regular silicon. In general, Systems with SiC MOSFETs have better performance and increased efficiency when compared to MOSFETs made with silicon material.
There are many advantages to choosing SiC MOSFETs over silicon MOSFETs, such as higher switching frequencies. High-temperature development is also not a concern when using SiC MOSFET modules because these devices can operate efficiently even in high heat. Additionally, with SiC MOSFETs, you benefit from a more compact product size because all components (inductors, filters, etc.) are smaller.
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Switching fast SiC FETs in standard TO packages requires users to either slow the FETs down, or use an RC snubber to reduce voltage overshoots and ringing.
Electric motors account for more than 40% of total global electric power consumption. Read White Paper to look into ways to reduce losses and increase motor efficiency.
The Document covers the basic principles of stepping motors, including the physics of steppers, the electronics of the basic control systems, and software architectures.
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