Uni-directional On-Board Charger (OBC)
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- New High Side Switch ICs with User-Definable Protection Achieve Optimized Performance in Automotive Applications
- Developing SiC-based Automotive Inverters together: ROHM and LEADRIVE Establish a Joint Laboratory
- New 4th Generation SiC MOSFETs Featuring the Industry’s Lowest ON Resistance
- Vitesco Technologies and ROHM cooperate on silicon carbide power solutions
- New Shunt Resistors Feature the Industry’s Highest Rated Power in the 5.0mm×2.5mm Size
ROHM Solution Simulator
ROHM Solution Simulator is a new web-based electronic circuit simulation tool that can carry out a variety of simulations, from initial development that involves component selection and individual device verification to the system-level verification stage. This makes it possible to quickly and easily implement complete circuit verification of ROHM power devices (i.e. SiC) and ICs (e.g. driver and power supply ICs), in simulation circuits under close to actual conditions, significantly reducing application development efforts.
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A system-level evaluation board that combines ROHM's IC and discrete products. We have already solved not only the characteristics of individual products but also the problems that may occur when combining them to build a system, thus contributing significantly to the reduction of development time for our customers. For example, it has been confirmed that all the products equipped with the product meet CISPR25 Class-5 standards in operation with regard to EMC standards, which are important factors in incorporating the product into automotive equipment. In addition, system-level evaluation and design data can be downloaded so that customers can use it as a reference for their designs. ROHM will continue to offer a wide range of solution evaluation boards in the future.
Industry-leading SiC Power and Gate Driver Solutions
Learn more about silicon carbide semiconductors and why they are the most promising material for use in power electronics due to the inherent advantages that SiC has over other materials.
Their lower loss, higher withstand voltage, faster switching capability, and superior thermal characteristics enable simpler designs that are more efficient, smaller, and lighter than silicon-based alternatives.