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The KS184060 Toroidal Power Inductor is designed for high-current power conversion applications requiring low core loss, high efficiency, and excellent thermal stability. Built with premium magnetic core materials and precision copper winding technology, it provides reliable energy storage and filtering performance in demanding power electronics systems.
This custom toroidal inductor is widely used in DC-DC converters, solar inverters, battery energy storage systems, EV chargers, UPS systems, industrial power supplies, and power factor correction circuits. Inductance value, current rating, wire size, mounting style, and insulation requirements can be customized to meet specific application needs.
| Parameter | Specification |
|---|---|
| Product Type | Toroidal Power Inductor |
| Model | KS184060 |
| Core Material | Sendust / Iron Powder / Ferrite Optional |
| Inductance Range | Custom Design Available |
| Rated Current | Custom Design Available |
| Saturation Current | Custom Design Available |
| DCR | Optimized for Low Power Loss |
| Operating Frequency | 20kHz – 500kHz |
| Winding Material | 100% Copper Wire |
| Insulation Class | Class B / F / H Optional |
| Mounting Type | PCB Mount / Chassis Mount |
| Operating Temperature | -40°C to +125°C |
| Cooling Method | Natural Air Cooling |
| RoHS Compliance | Available |
| Customization | Inductance, Current, DCR, Core Material, Leads |
Key parameters include inductance value, RMS current, peak current, switching frequency, allowable temperature rise, and DCR requirements. Providing these specifications helps engineers recommend the most suitable design.
Please provide target inductance, rated current, peak current, DCR limit, operating frequency, application type, dimensions, and annual demand quantity.
Depending on efficiency and frequency requirements, sendust, iron powder, ferrite, and other magnetic materials can be selected to optimize performance.
Yes. KS184060 inductors are commonly used in solar inverters, energy storage systems, and power conversion equipment requiring high-current energy storage and filtering.
Lower DCR reduces copper loss and heat generation, improving overall efficiency and allowing higher current operation in power electronics systems.
Saturation current is the current level where inductance begins to decrease significantly. Proper saturation margin helps maintain stable circuit performance during peak load conditions.
Yes. We can customize inductance values, current ratings, winding structures, core materials, lead configurations, and mechanical dimensions according to application requirements.
Toroidal inductors are widely used in renewable energy systems, EV charging equipment, industrial automation, UPS systems, telecom power supplies, battery storage systems, and medical electronics.

