Small volume, high current! Depth display of 22uH shielded winding inductance

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February 02, 2026
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Brief: Watch as we walk through the full process, from initial setup to real-world testing of the 22uH shielded winding inductance. This video provides a deep display of its small volume and high current capabilities, showcasing how this SMD chip inductor delivers efficient energy storage, EMI suppression, and reliable performance in high-density circuits.
Related Product Features:
  • Efficient energy storage and release for stable output in switching power supply circuits.
  • High frequency noise filtering using inductive impedance characteristics.
  • High current capability to withstand transient surge and sustained load currents.
  • EMI suppression through a shielded structure that confines the magnetic field.
  • Space-efficient SMD chip package ideal for compact electronic devices.
  • Structural reliability with integrated molding for resistance to mechanical stress.
  • High power density combining compact footprint with high inductance value.
  • High efficiency and low loss with low DC resistance and minimized core losses.
FAQs:
  • What are the key applications for this 22uH shielded power inductor?
    This inductor is ideal for energy storage and filtering in switching power supplies, high current applications like CPU/GPU power supplies and automotive systems, EMI-sensitive environments such as communication modules, and space-constrained designs including portable devices and distributed power systems.
  • How does the shielded structure benefit circuit design?
    The shielded structure confines the magnetic field internally, reducing electromagnetic radiation and external interference. This simplifies EMC compliance and minimizes interference to adjacent circuits, making it suitable for EMI-sensitive environments.
  • What makes this inductor suitable for high-density circuits?
    Its small SMD chip package (220 size) combined with a high inductance value (22μH) provides high power density, saving valuable PCB space. This makes it perfect for modern compact electronic devices where space is limited.
  • How does the inductor handle high current without overheating?
    Optimized winding technology and low-loss core material reduce DC resistance, ensuring superior current handling capability and temperature stability. It reliably supports high transient and continuous currents required by modern processors without overheating or saturation.