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All Inductors press releases

February 09, 2007

Four New IHLP Low-Profile, High-Current Inductors Feature Low Profiles of 1.2 mm and 2.0 mm With Maximum Frequency Ranges of 1.0 MHz and 5.0 MHz

December 20, 2006

Vishay Expands IHLP Family of Low-Profile, High-Current Inductors With New Devices Featuring Maximum Frequency Ranges of 1.0 MHz and 5.0 MHz

June 30, 2006

Vishay Expands IHLP Family of Low-Profile, High-Current Inductors With New Devices Featuring Very Low 3.0-mm Height Profile

January 19, 2005

Vishay Adds to IHLP Family of High-Current, Surface-Mount Inductors: New Devices Feature Saturation Currents up to 40 A, Typical DCR Values Down to 3.0 mΩ, and Low 1.8-mm Height Profile

December 22, 2004

Vishay Extends High-Current Inductor Offering: New Devices Feature 3.0-mm Profile, DCR Values Down to 1.5 Milliohms, High Dielectric Withstanding Voltage

Sept. 10, 2004

New Vishay IHLP Inductors Feature 6.5 mm Height Profile, Saturation Currents Up to 120 A, and Inductance Values of 5.6 µH, 6.8 µH, 8.2 µH, and 10 µH

April 09, 2004

Vishay Extends IHLP Family of Current-Sensing Power Inductors With First Devices to Offer 5% DCR Tolerance

May 23, 2003

Vishay Extends IHLP Family of Low-Profile, Surface-Mount Inductors With New Devices Rated for Saturation Currents up to 120 A and Typical DCR Values as Low as 0.47 mΩ

April 11, 2003

Vishay Extends IHLP Family of Surface-Mount Inductors With Devices Featuring Saturation Currents up to 50 A, Typical DCR Values Down to 1.5 mΩ, and a Very Low 2.4-mm Height Profile

March 07, 2003

Vishay Extends Low-Profile Inductor Family Aimed At High-Frequency DC-to-DC Converters:

November 08, 2002

Vishay Adds to High-Current Inductor Series: New Devices Provide Extended Range of Inductance Values (from 0.10 µH to 10 µH), Are Rated for Saturation Currents up to 84 A, and Have Typical DCR Values as Low as 0.8 mΩ

October 05, 2001

New Low-Profile, High-Current Inductors Enhance Space and Power Savings in DC/DC Converter Applications

January 17, 2000

New Inductors/Transformers From Vishay Feature Noise-Minimizing Toroidal Design

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