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News
Vishay Intertechnology Automotive Grade IHLP® Inductor Offers High Temperature Operation to +155 °C in 7575 Case Size
2021-09-13 | ReturnMALVERN, Pa. — September 13, 2021 — Vishay Intertechnology, Inc. today introduced the industry’s first Automotive Grade IHLP® low profile, high current inductor in the 19 mm by 19 mm by 7 mm 7575 case size. Offering high temperature operation to +155 °C for under the hood automotive applications, the Vishay Dale IHLP-7575GZ-5A offers up to 30 % lower DCR and up to 35 % higher current ratings than devices in the 6767 case size, at a 50 % lower cost than devices in the 8787 case size.
The AEC-Q200 qualified inductor released today is optimized for energy storage in DC/DC converters up to 2 MHz and high current filtering applications up to the SRF of the inductor. With its high operating temperature, the device is designed for filtering and DC/DC conversion in engine and transmission control units, diesel injection drivers, and entertainment / navigation systems, in addition to noise suppression for high current BLDC motors, windshield wipers, power mirrors and seats, HID and LED lighting, and heating and ventilation blowers.
Packaged in a 100 % lead (Pb)-free shielded, composite construction that reduces buzz noise to ultra low levels, the IHLP-7575GZ-5A offers high resistance to thermal shock, moisture, and mechanical shock, and handles high transient current spikes without saturation. The device is RoHS-compliant, halogen-free, and Vishay Green.
Device Specification Table:
Case size |
7575 |
Inductance (µH) |
0.56 to 33 |
DCR typ. (mΩ) |
1.02 to 25.2 |
DCR max. (mΩ) |
1.09 to 27.0 |
Heat rating current (A) |
10.2 to 61(1) |
Saturation current (A) |
9.9 to 70(2) / 14.3 to 101(3) |
SRF (MHz) |
4.4 to 50.0 |
(1) DC current (A) that will cause an approximate ΔT of 40 °C
(2) DC current (A) that will cause L0 to drop approximately 20 %
(3) DC current (A) that will cause L0 to drop approximately 30 %
Samples and production quantities of the IHLP-7575GZ-5A are available now, with lead times of 10 weeks.
Source: http://www.vishay.com/