Surface Mount High Current Power Inductors - SMPI15080E
SMPI15080E
SMPI15080E ensures efficient energy transfer and thermal stability, supporting heavyâduty industrial and highâpower communication equipment.
Inductance / Impedance
2.0-15 (µH)
Rated Current
18-51 (A)
Features
- Magnetic shielding structure: excellent resistance to electromagnetic interference (EMI).
- Die-casting by low loss alloy powder: low impedance.
- High efficiency, wide application frequency and application scope.
Applications
- Servers.
- Graphics cards.
- Various categories of consumer electronics.
A 15.5 ± 0.5 m/m
B 16.5 ± 0.5 m/m
C 13.2 (REF) m/m
D 8.1 (MAX) m/m
E 3.2 (REF) m/m
- File Downlaod
How can you reduce electromagnetic interference while maintaining high current capacity in next-generation server power supplies?
Core Master's SMPI15080E inductors feature advanced magnetic shielding structures that deliver excellent EMI resistance combined with high current ratings of 18-51A and low impedance design. This unique combination enables server manufacturers to achieve superior power efficiency and thermal stability without compromising circuit density. Our 40 years of expertise ensures reliable performance in the most demanding server applications.
Core Master's SMPI15080E inductors are specifically designed for heavy-duty industrial and high-power communication equipment where thermal stability and reliable energy transfer are critical performance requirements. With over 40 years of specialized manufacturing expertise, Core Master delivers RoHS-certified components backed by SGS quality reports, ensuring consistent performance and regulatory compliance. Whether you're designing next-generation server power supplies, high-performance graphics card circuits, or advanced consumer electronics, the SMPI15080E series provides the customization flexibility and technical support needed to meet your exact specifications. Contact our professional engineering team today to discuss how Core Master's high current power inductors can optimize your circuit design and reduce time-to-market.


