The SWB1010-SMLD from Coilcraft is a series of shielded wirewound inductor specifically designed for high-current power applications. These inductors are characterized by their low DC resistance (DCR) and high saturation current, making them ideal for use in DC-DC converters, voltage regulators, and power supplies where efficiency and minimal power loss are critical.
Applications:
- DC-DC converters in various electronic devices.
- Voltage regulators for stable power delivery.
- Power supplies for computers, servers, and industrial equipment.
- Point-of-Load (POL) converters to efficiently power specific components.
- High current filtering applications where noise reduction is required.
Features:
- Shielded Construction: Minimizes electromagnetic interference (EMI) and provides improved performance in sensitive environments.
- Wirewound Inductor: Offers high current handling capabilities and low DCR.
- Small Size: Compact design allows for use in space-constrained applications.
- High Saturation Current: Ensures stable inductance under high current conditions.
- Low DC Resistance (DCR): Minimizes power loss and improves efficiency.
Benefits:
- Improved Efficiency: Low DCR reduces power dissipation, leading to higher overall system efficiency.
- Reduced EMI: Shielded construction minimizes electromagnetic interference, ensuring stable operation of surrounding components.
- Stable Performance: High saturation current maintains inductance value under varying load conditions.
- Compact Design: Allows for integration into space-constrained applications without compromising performance.
- Reliable Operation: Robust construction ensures long-term reliability and consistent performance.
Technical Specifications:
The specific inductance value, DCR, saturation current, and other parameters vary depending on the specific part number within the SWB1010-SMLD series. Refer to the Coilcraft datasheet for detailed specifications for the exact part being used. The inductor is designed for surface mount assembly and is RoHS compliant.