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Home Electronics Components

Würth Elektronik Expands its MagI3C Series

Power Modules for Higher Current

Nimish by Nimish
July 30, 2025
in Electronics Components
Reading Time: 2 mins read
Würth Elektronik

The MagI³C-VDLM power module family has been expanded with two LGA-26 SMDs offering output currents of 4 A and 5 A, respectively.

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Waldenburg (Germany) – Würth Elektronik has expanded its successful MagI³C-VDLM power module series with two new models. With output currents of 4 A and 5 A respectively, they further enhance the performance of the existing portfolio of compact DC/DC power supply modules.

The new modules are designed for input voltages from 4 to 36 V and come in a space-saving LGA-26 package (11 × 6 × 3 mm). They provide an output voltage from 1 to 6 V and, like all power modules in the MagI3C-VDLM series, integrate the essential components for a DC/DC power supply in a compact package: switching regulator with integrated MOSFETs, controller, compensation circuitry, and a shielded inductor.

The power modules maintain high efficiency across the entire output current range by automatically switching between operating modes based on load requirements. So they ensure minimal output ripple – ideal for precise and interference-sensitive applications. Typical applications include point-of-load DC/DC converters, industrial, medical, test and measurement equipment, or for supplying power to DSPs, FPGAs, MCUs, MPUs, and interfaces.

Excellent efficiency

The MagI3C-VDLM modules achieve peak efficiencies of up to 96 percent and impress with their excellent EMC performance in accordance with EN55032 Class B / CISPR-32. Additional features include selectable switching frequencies, automatic PFM/PWM transition, and a sync function for synchronizing to individual clock frequencies.

The new MagI³C-VDLM modules are now available from stock without a minimum order quantity. All customers are offered design and layout reviews as well as EMI filter design support as a service.

Tags: Würth ElektroniK
Nimish

Nimish

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