The ferrite core inductor is designed for high current applications, featuring shielded construction and suitable for frequencies up to 5.0 MHz. It supports operation from -55°C to +125°C, handling transient spikes without saturation. Ideal for diverse electronic devices such as PDAs, notebooks, servers, and FPGA power supplies, it offers low profile design, high current handling, and RoHS compliance. With a typical inductance of 4.7 μH ±20%, this surface-mount component is essential for efficient power management in compact electronic systems.
Vishay IFSC1111ABER2R2M01 High Current Inductor Specifications:
Inductance: 4.7 μH ±20%
Operating temperature range: -55°C to +125°C
Frequency range: up to 5.0 MHz
Maximum DC resistance: not specified
Current handling: suitable for high transient currents
Construction: Shielded ferrite core
Package: Surface-mount, compact profile
RoHS compliant
Dimensions: 0.118 x 0.047 inches (3.0 x 1.2 mm)
Designed for applications: high current POL converters, low profile power supplies, battery devices, distributed power systems
Buy the Vishay IFSC-1111AB – Reliable High Current Inductor for Industrial Applications
Purchase the high current shielded inductor online today and enhance your electronic systems with reliable power management. The Vishay IFSC-1111AB provides a compact, RoHS-compliant solution with 4.7 μH inductance, designed to handle transient spikes and operate efficiently across a broad temperature range. Ideal for use in high current POL converters, low profile power supplies, and FPGA applications, it ensures consistent performance and durability in demanding environments. Order now to improve your device reliability and power efficiency.
Buy Vishay IFSC-1111AB now and experience unmatched reliability and high current performance for your power systems.
Frequently Asked Questions
Where can I buy Vishay IFSC1111ABER2R2M01?
You can click on the BUY or RFQ button to purchase IFSC1111ABER2R2M01 from an authorized Vishay distributor.
How do I troubleshoot issues or seek technical support for part IFSC1111ABER2R2M01?