HPL1005-8N2 Allicdata Electronics
Allicdata Part #:

408-1011-2-ND

Manufacturer Part#:

HPL1005-8N2

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Susumu
Short Description: FIXED IND 8.2NH 340MA 1.1 OHM
More Detail: 8.2nH Unshielded Thin Film Inductor 340mA 1.1 Ohm ...
DataSheet: HPL1005-8N2 datasheetHPL1005-8N2 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: HPL
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Type: Thin Film
Material - Core: --
Inductance: 8.2nH
Tolerance: ±0.2nH
Current Rating: 340mA
Current - Saturation: --
Shielding: Unshielded
DC Resistance (DCR): 1.1 Ohm Max
Q @ Freq: 10 @ 300MHz
Frequency - Self Resonant: 4GHz
Ratings: --
Operating Temperature: --
Inductance Frequency - Test: 300MHz
Mounting Type: Surface Mount
Package / Case: 0402 (1005 Metric)
Supplier Device Package: 0402 (1005 Metric)
Size / Dimension: 0.039" L x 0.020" W (1.00mm x 0.50mm)
Height - Seated (Max): 0.013" (0.33mm)
Description

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Fixed inductors are components that store electrical energy by creating a magnetic field. They are usually known as inductors, chokes, or coils and have the following purpose in electronic circuits. Inductors are used in a wide range of applications, and the HPL1005-8N2 inductor is no exception. This article will discuss the application field and working principle of the HPL1005-8N2 inductor.

The HPL1005-8N2 inductor is a low-profile, high-performance SMD (Surface Mount Device) inductor with a minimum diameter of 0.5mm. It is an inductor optimized for miniaturized customer applications, such as mobile phones, digital cameras, and various other consumer electronics. It is constructed with a copper wire winding and a ferrite core, and is rated to handle up to 17A. The inductor can be used to filter out unwanted noise, such as electromagnetic interference (EMI). It is also ideal for EMC (electromagnetic compatibility) and EMI (electromagnetic interference) suppression.

The HPL1005-8N2 works by creating a magnetic field when current flows through it. This allows the inductor to store energy within the magnetic field in the form of a magnetic flux. The stored energy can then be used for various purposes, such as filtering out noise or suppressing EMI. To increase the effectiveness of the inductor, it is usually placed in a shielded enclosure to minimize the interference from external electromagnetic sources.

The HPL1005-8N2 is not limited to applications involving EMC or EMI suppression. It can also be used in a variety of other applications. As a SMD device, it can be used for high-speed switching circuits, voltage regulation, and signal conditioning in switch mode power supplies. The inductor can also be used in power line filtering, power supply decoupling, and transformer circuits.

The working principle of the HPL1005-8N2 is based on Faraday\'s Laws of induction. In an inductor, when electric current passes through it, a varying magnetic field is created. This changing magnetic field then induces an electromotive force in the inductor, which provides the inductor with an opposite voltage to absorb the energy of the electric current. This phenomenon is known as electromagnetic induction.

The use of the HPL1005-8N2 inductor is not limited to the above applications. It can also be used in oscillators, radio frequency (RF) impedance matching circuits, and voltage regulators. It has a wide range of applications, as it is suitable for a number of different signal processing and power conversion tasks. The main advantage of this inductor is that it is designed to operate with minimal losses in order to provide efficient power conversion.

In conclusion, the HPL1005-8N2 is a highly versatile and cost-effective SMD inductor, offering reliable performance in a variety of different applications. It is capable of filtering out electromagnetic interference, providing EMI suppression, or serving as a major component in many signal processing and power conversion tasks. As an inductor, the HPL1005-8N2 functions by creating an electromagnetic field when electrical current is passed through it. This principle is based on Faraday\'s Laws of induction, enabling the inductor to store electrical energy within the form of a magnetic flux. The stored energy can then be used for a variety of different applications.

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

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