This new design tool will assist you in the selection of cores for DC output inductors, input chokes, PFC (Power Factor Correction) inductors, high current inductors and other energy storage devices. All you need to do is just input the desired material and DC current, ripple current, switching frequency, full load and no load inductance and temperature rise. Then the design tool returns parameters for inductances at no load and full load, number of turns, wound core dimensions, estimated core and copper losses, and total wire length.
The final inductor design is simulated and modelled and the user can view a graphical representation of the DC Bias curve.
Key figures:
- Addition of new 75-Series toroids to part number results
- Core details including OD, ID, Height, AL value, and Permeability
- Separate Core Loss and Copper Loss fields
- New Wire Length field
- Ability to plot DC Bias
XFlux cores offer superior DC bias performance with lower losses
Magnetics Inc. XFlux distributed air gap cores are made from 6.5% silicon iron powder and offer superior DC bias performance for high currents when compared against other available magnetic materials. In addition, the soft saturation of XFlux material offers an advantage over ferrite cores and is ideal for low and medium frequency chokes where inductance at peak load is critical. This gives you reliable best-in-class cores that will perform faultlessly especially where inductance under load is critical in application such as renewable energy and uninterrupted power supplies.
XFlux is available in a wide range of toroids up to 165mm, E cores and blocks, and now includes permeabilities of 26µ, 40µ and 60µ. This gives you the flexibility to find the best option for your application.
Key figures:
- High saturation flux density
- Temperature stability (approx. 3% deviation over 250°C)
- Cost-effective alternative to High Flux performance
- Available in a wide range of toroids and shapes
For your questions, feel free to contact our product specialist Piet van der Kuijl by email address piet.van.der.kuijl@acalbfi.nl. And for Belgium please contact Julien Declerc: julien.declerc@acalbfi.be Visit our website: www.acalbfi.nl/magneticsinc / www.acalbfi.be/magneticsinc