IHLP2020ABER2R2M01 Fixed inductor from Vishay Dale, 2.2 µH inductance with ±20% tolerance. Rated current 3.4 A, DC resistance 77.3 mΩ max, shielded molded construction.
Mfr Part #:

IHLP2020ABER2R2M01

Available from 1 distributors
Mfr Name: Vishay
Vishay
Fixed inductor from Vishay Dale, 2.2 µH inductance with ±20% tolerance. Rated current 3.4 A, DC resistance 77.3 mΩ max, shielded molded construction.
Total Stock: 475 pcs
$ Price Range: $0.48 - $0.85

IHLP2020ABER2R2M01 Available from 1 distributor

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Non-Authorised
Distributor Stock Pricing MOQ PKG Lead Time Date Code On Order Quantity On Order Delivery
Non-Authorised Inventory information
475 pcs
475 pcs On Request 1 On Request On Request 13+ On Request On Request

IHLP2020ABER2R2M01 Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Current
Current Rating (Amps)
DC Resistance (DCR)
Frequency
Height
Inductance
Length
Mounting Type
Operating Temperature
Rated Voltage
Shielding
Tape & Reel
Termination Style
Tolerance
Type
Width

IHLP2020ABER2R2M01 Description

Short technical summary and product information.

The Vishay Dale IHLP2020ABER2R2M01 is a fixed inductor from the IHLP-2020AB-01 series, featuring a shielded molded construction for low electromagnetic interference. It offers an inductance of 2.2 µH measured at 100 kHz and 0.25 V with a tolerance of ±20%. The inductor is rated for a DC current of 3.4 A that causes a 40°C temperature rise, and can handle saturation currents up to 6 A before inductance drops by 20%. The typical DC resistance is 73.6 mΩ with a maximum of 77.3 mΩ, and the self-resonant frequency is 47 MHz. The rated operating voltage across the inductor is 50 V. This component is designed for surface mount assembly in a nonstandard package measuring 5.49 mm x 5.18 mm x 1.20 mm. It operates over a temperature range of -55°C to 125°C. Typical applications include high current point-of-load converters, DC/DC converters in distributed power systems, battery-powered devices, and FPGA power supplies. The inductor is RoHS compliant and lead-free per the datasheet.

IHLP2020ABER2R2M01 Quick Information

Product Type: Fixed Inductor
Series: IHLP-2020AB-01
Canonical Name: Vishay Dale IHLP2020ABER2R2M01 Fixed Inductor, 2.2 µH, Shielded, Molded
Subcategory: Shielded Molded Inductor

IHLP2020ABER2R2M01 Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected
Lead Free: Lead Free

IHLP2020ABER2R2M01 Estimated Pricing

Qty Low High
1+ $0.85 $0.85
10+ $0.70 $0.70
100+ $0.58 $0.58
1,000+ $0.50 $0.50
4,000+ $0.48 $0.48

Estimated market price range - modelled values for guidance only, not live distributor offers.

IHLP2020ABER2R2M01 Features

  • Shielded molded construction for low EMI.
  • Rated current of 3.4 A at 40°C rise.
  • Low DCR of 77.3 mΩ max.
  • High saturation current of 6 A.
  • Operating temperature range -55°C to 125°C.

IHLP2020ABER2R2M01 Applications

  • Used in high current POL converters.
  • Ideal for DC/DC converters in distributed power systems.
  • Suitable for battery powered devices.
  • Applicable in FPGA power supplies.

IHLP2020ABER2R2M01 FAQs

7 frequently asked questions generated from this part’s specifications.
What is the inductance of the IHLP2020ABER2R2M01?

The inductance is 2.2 µH at 100 kHz, 0.25 V, 0 A with ±20% tolerance.

What is the rated current of this inductor?

The rated current (heat rating) is 3.4 A, which causes a temperature rise of 40°C.

What is the DC resistance (DCR) of the IHLP2020ABER2R2M01?

The typical DCR is 73.6 mΩ and the maximum is 77.3 mΩ at 25°C.

What is the self-resonant frequency?

The self-resonant frequency is 47 MHz typical.

What is the package size and mounting type?

The inductor comes in a nonstandard surface mount package measuring 5.49 mm x 5.18 mm x 1.20 mm.

What is the operating temperature range?

The operating temperature range is -55°C to 125°C.

What is the saturation current?

The saturation current is 6 A typical, defined as the DC current causing a 20% inductance drop.

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