IHLP3232DZER4R7M11 Allicdata Electronics
Allicdata Part #:

541-1353-2-ND

Manufacturer Part#:

IHLP3232DZER4R7M11

Price: $ 0.51
Product Category:

Inductors, Coils, Chokes

Manufacturer: Vishay Dale
Short Description: FIXED IND 4.7UH 8A 22.6 MOHM SMD
More Detail: 4.7µH Shielded Molded Inductor 8A 22.6 mOhm Max No...
DataSheet: IHLP3232DZER4R7M11 datasheetIHLP3232DZER4R7M11 Datasheet/PDF
Quantity: 4000
1 +: $ 0.51000
10 +: $ 0.49470
100 +: $ 0.48450
1000 +: $ 0.47430
10000 +: $ 0.45900
Stock 4000Can Ship Immediately
$ 0.51
Specifications
DC Resistance (DCR): 22.6 mOhm Max
Height - Seated (Max): 0.157" (4.00mm)
Size / Dimension: 0.340" L x 0.322" W (8.64mm x 8.18mm)
Supplier Device Package: --
Package / Case: Nonstandard
Mounting Type: Surface Mount
Inductance Frequency - Test: 100kHz
Operating Temperature: -55°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 17MHz
Q @ Freq: --
Series: IHLP-3232DZ-11
Shielding: Shielded
Current - Saturation: 8.7A
Current Rating: 8A
Tolerance: ±20%
Inductance: 4.7µH
Material - Core: --
Type: Molded
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Inductors are basic components found in many electrical circuits. They have the ability to store and transfer energy Elecromagnetically, and can be used in a variety of applications. One specific type of inductor is the IHLP3232DZER4R7M11, which belongs to the family of Fixed Inductors. In this article we will explain the application field of this particular component, as well as its working principle.

The IHLP3232DZER4R7M11 is a high-power surface-mount fixed inductor. Its applications include power line filtering, EMI/RFI filtering, and high-frequency transformers. It is ideal for use in consumer applications such as televisions and computers, as well as automotive and industrial applications. These inductors also offer improved mechanical performance when compared to air-core inductors due to their ability to conduct heat away from sensitive components.

The IHLP3232DZER4R7M11 has a wide range of operating parameters, allowing it to work in a variety of situations. Its ferrite construction ensures that the inductor carries current with minimal power losses, and the construction also ensures high inductance over a wide range of frequencies. The inductor also has excellent temperature stability, allowing it to remain effective even under extreme changes in temperature.

The working principle of the IHLP3232DZER4R7M11 is based on Faraday\'s Law of Electromagnetic Induction. This law states that when a conductor is placed in a changing magnetic field, it induces an electric current. Similarly, the fixed inductor inducts an electric current when placed near an electric field. This induction, or generation, of electric current is what is utilized in the inductor.

The electrical current that is induced contains frequencies, which can range from very low to very high. Depending on the electrical current, the inductor can be configured to absorb or reject certain frequencies. By doing this, the IHLP3232DZER4R7M11 can be used to filter, or shape, the input signal. The frequency responses of the inductors can be adjusted by changing the inductor, which is helpful when dealing with complex signals.

The IHLP3232DZER4R7M11 also has the capability to act as an inductive transformer. Transformers are used to increase or decrease the voltage of an electrical signal, allowing it to be used in applications where the input volts are very different than the required output voltage. The transformer uses the variations in the input signal to create a transfer of energy from one coil to another, resulting in the desired voltage.

The IHLP3232DZER4R7M11 is a high-power surface-mount fixed inductor used in various applications. Its wide range of operating parameters, temperature stability, and ability to act as a filter, or inductive transformer, make it a versatile component for any electrical circuit. Additionally, Faraday\'s Law of Electromagnetic Induction explains the working principle of the fixed inductor, which involves inducing electrical current when a conductor is placed in a changing magnetic field.

The specific data is subject to PDF, and the above content is for reference

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