The LPO6013-222MLB is a high-performance power inductor manufactured by Coilcraft. This inductor is designed for use in a variety of power supply applications, offering excellent current handling capabilities and low DC resistance. Its compact size and shielded construction make it suitable for space-constrained applications requiring efficient power conversion.
Applications
- DC-DC converters
- Voltage regulators
- Power amplifiers
- Point-of-load (POL) modules
- Filtering circuits
- LED lighting
Features
- Shielded construction: Minimizes electromagnetic interference (EMI).
- High current handling: Capable of handling high DC currents without saturation.
- Low DC resistance (DCR): Reduces power losses and improves efficiency.
- Small size: Compact footprint for space-constrained applications.
- Wide operating temperature range: Suitable for use in a variety of environmental conditions.
- RoHS compliant: Environmentally friendly and compliant with RoHS standards.
Benefits
- Improved efficiency: Low DCR minimizes power losses, leading to higher efficiency in power conversion circuits.
- Reduced EMI: Shielded construction reduces electromagnetic interference, improving system performance.
- Increased power density: Small size allows for higher power density in power supply designs.
- Enhanced reliability: Robust construction ensures long-term reliability in demanding applications.
- Simplified design: Optimized electrical characteristics simplify the design of power supply circuits.
Additional Details
The LPO6013-222MLB inductor features a ferrite core material and is designed for surface mount applications. Key specifications include an inductance value of 2.2 µH and a saturation current rating that depends on the temperature rise. Consult the Coilcraft datasheet for precise electrical characteristics such as SRF (Self-Resonant Frequency), DCR (DC Resistance), and Irms (RMS current) at different operating temperatures.
The inductor's robust construction and shielded design make it a reliable choice for power supply applications requiring high performance and minimal EMI. Careful attention to thermal management is recommended when operating at high currents.