eBook untangles the complexities of electromagnetic compatibility design

24-02-2022 | Mouser Electronics | Design & Manufacture

Mouser offers a new eBook in collaboration with Würth Elektronik, exploring how new electronic designs include high-speed data transfer, wireless power, connectivity, battery management and near-field communication in a single device. In Behind the Mystery of Electromagnetic Compatibility Design, subject matter experts from the companies provide rich analyses of some of the most important breakthrough technologies in electronic component design and how they improve electromagnetic behaviour.

Whilst modern electronic designs have developed to include an increasing number of components and applications, they must nonetheless contend with the same electromagnetic environment that holds a considerable risk of interference. The The eBook offers four detailed articles and product information for more than a dozen Würth Elektronik solutions, enabling readers to quickly discover and learn more about the components required for advanced electromagnetic compatibility design.

WCAP-CSGP general-purpose MLCCs are high-performance ceramic capacitors ideal for temperature compensation, coupling, decoupling, filtering, and bypass applications. The company's WE-XHMI Xtreme high current inductors offer an insulated flat wire coil for low copper losses and composite core material for high saturation currents. The inductors can be employed in various devices, including laptops, graphics cards, multiphase converters, and battery-powered devices.

The WE-CMB common-mode power line inductors provide high suppression of asymmetric interferences, even at low-frequency ranges, while also delivering broadband screening through a low-capacitance winding technique. The inductors are ideal for power electronics and radio interference suppression in motors.

Mouser stocks a wide range of the company's products, including capacitors, power modules, transformers, and automotive-qualified passive components.

By Natasha Shek