-
- News
- Books
Featured Books
- pcb007 Magazine
Latest Issues
Current IssueThe Legislative Outlook: Helping or Hurting?
This month, we examine the rules and laws shaping the current global business landscape and how these factors may open some doors but may also complicate business operations, making profitability more challenging.
Advancing the Advanced Materials Discussion
Moore’s Law is no more, and the advanced material solutions to grapple with this reality are surprising, stunning, and perhaps a bit daunting. Buckle up for a dive into advanced materials and a glimpse into the next chapters of electronics manufacturing.
Inventing the Future With SEL
Two years after launching its state-of-the-art PCB facility, SEL shares lessons in vision, execution, and innovation, plus insights from industry icons and technology leaders shaping the future of PCB fabrication.
- Articles
- Columns
- Links
- Media kit
||| MENU - pcb007 Magazine
Würth Elektronik Defines an Electrical Property for Molded Inductors
July 18, 2024 | Wurth ElektronikEstimated reading time: 2 minutes

Würth Elektronik has developed a new testing procedure for determining the maximum operating voltage of molded inductors. The manufacturer of electronic and electromechanical components introduces developers to the electrical property of dielectric strength and what happens if it is exceeded in an application which is described in Application Note 126 (www.we-online.com/ANP126). The molded inductors from the Power Magnetics product portfolio (e. g., WE-MAPI, WE-XHMI, WE-LHMI) are now successively supplemented with the value of the maximum operating voltage Vop as a new parameter in the specifications.
Based on the new testing procedure, Würth Elektronik defines the maximum operating voltage Vop in its data sheets. This represents the voltage at which an inductor can be operated continuously in the application without impairing performance, risking damage or overheating the inductor. The operating voltage is therefore a limit value for the input voltage, up to which the inductor can be used reliably in an application without irreversible damage.
The test concept examines the behavior of inductors up to their voltage limits under realistic conditions in a DC-DC full-bridge converter (voltage transients of up to 60 V/ns and frequencies of up to 2 MHz). The approximate voltage limit is firstly evaluated using a short-term test. The operating voltage is then defined on this basis and verified in a long-term test.
Background
Thanks to steady technological advancement in the semiconductor industry, today’s MOSFETs can now achieve high current densities and short switching times. For this reason, the question of the dielectric strength of coils has become increasingly important in recent years when it comes to selecting the appropriate inductor.
What’s more: Continuous optimization of the production process and the material composition of molded inductors enable high permeability of the ferrite material to achieve the highest possible inductance values in the smallest possible package space. The power density per volume can therefore be raised continuously.
This entailed a steady increase in the proportion of iron powder or iron alloys relative to the insulation of the binder, resulting in the distance between individual grains becoming progressively smaller. If the insulation barrier between the individual metal particles is not high enough for the voltage applied in the application, a conductive path is created through the core material, caused by arcing between the individual metal particles. It may be observed in the application that the profile of the ripple current changes. Schematically, there is now a resistor parallel to the inductor.
The consequences: Self-heating of the coil rises dramatically due to the rising losses. These additional losses considerably reduce the inductor’s efficiency. The advantage of a DC/DC converter – to transmit voltage levels with high efficiency – is lost.
Testimonial
"We’re proud to call I-Connect007 a trusted partner. Their innovative approach and industry insight made our podcast collaboration a success by connecting us with the right audience and delivering real results."
Julia McCaffrey - NCAB GroupSuggested Items
Imec Launches 300mm GaN Program to Develop Advanced Power Devices and Reduce Manufacturing Costs
10/13/2025 | ImecImec, a world-leading research and innovation hub in nanoelectronics and digital technologies, welcomes AIXTRON, GlobalFoundries, KLA Corporation, Synopsys, and Veeco as first partners in its 300mm gallium-nitride (GaN) open innovation program track for low- and high-voltage power electronics applications.
Eaton Begins Production at Newly Expanded Texas Manufacturing Facility
10/09/2025 | BUSINESS WIREIntelligent power management company Eaton announced the successful completion of a $100 million expansion project at its Nacogdoches, Texas manufacturing facility.
Empower Sets New Benchmark with 20x Faster Response and Breakthrough Sustainability Demonstrated at OCP Global Summit 2025
09/25/2025 | Empower SemiconductorEmpower Semiconductor, the world leader in powering AI-class processors, announced that its Crescendo chipset, an artificial intelligence (AI) and high-performance computing (HPC) processor true vertical power delivery platform, is available now for final sampling, with mass production slated for late 2025.
TI Teams with NVIDIA to Bring Efficient Power Distribution to AI Infrastructure
05/26/2025 | Texas InstrumentsTexas Instruments technologies will help enable NVIDIA's future 800V high-voltage DC power-distribution systems for next-generation AI data centers.
Hitachi Energy Boosts Pennsylvania Investments to Over $70 million to Meet Surging Demand for Sustainable Grid Infrastructure
04/21/2025 | Hitachi EnergyHitachi Energy announced that it has increased its investments to more than $70 million USD in Pennsylvania. Originally announced in 2024 as part of a $155 million nationwide investment in U.S. manufacturing capacity.