5300-17 Allicdata Electronics
Allicdata Part #:

5300-17-ND

Manufacturer Part#:

5300-17

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Bourns Inc.
Short Description: FIXED IND 22UH 1A 190 MOHM TH
More Detail: 22µH Unshielded Wirewound Inductor 1A 190 mOhm Max...
DataSheet: 5300-17 datasheet5300-17 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
DC Resistance (DCR): 190 mOhm Max
Height - Seated (Max): --
Size / Dimension: 0.160" Dia x 0.500" L (4.06mm x 12.70mm)
Supplier Device Package: Axial
Package / Case: Axial
Mounting Type: Through Hole
Inductance Frequency - Test: 1kHz
Operating Temperature: -55°C ~ 105°C
Ratings: --
Frequency - Self Resonant: 8.4MHz
Q @ Freq: --
Series: 5300
Shielding: Unshielded
Current - Saturation: 640mA
Current Rating: 1A
Tolerance: ±10%
Inductance: 22µH
Material - Core: Ferrite
Type: Wirewound
Part Status: Obsolete
Packaging: Bulk 
Description

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Fixed Inductors

A fixed inductor is an electronic device that consists of a coil of high-conductive wire. The coil has an inductive reactance, which is determined by the frequency of the current flowing through the device. The primary purpose of the coil is to create a magnetic field when current passes through it. This field is then used to create an electrical field when a current passes through it, thus providing the inductance of the device. This inductance can be varied by changing the size of the coil or the number of turns.

The 53xx-17 series fixed inductor is a type of electronic component used to store energy for later use. It is commonly used for power conversion in power supplies and other electronic applications. Fixed inductors are sometimes referred to as chokes or filters. The 53xx-17 series specifically is a fixed-frequency inductor designed for high-efficiency applications.

The 53xx-17 series of fixed inductors have a maximum peak current rating of 16A and a working frequency range from 0-20MHz. It has a maximum operating temperature of 105°C, and can operate efficiently in temperatures ranging from -55°C to 105°C. The internal core of the device consists of a NdFeB material, which offers good electrical and magnetic properties.

The primary application for fixed inductors is power conversion. They can be used to regulate the supply of power to a variety of electrical loads. For example, they can be used to convert alternating current (AC) to direct current (DC), and to increase or decrease the amplitude of a given voltage. They are also extensively used in the control circuits of power supplies and amplifiers. These circuits use the device to store energy and prevent undesired voltage drops.

The 53xx-17 series of fixed inductors have a wide range of applications in different industries including medical, automotive, telecommunication, and aerospace applications. The device is often used in power conditioning, switching power converter circuits, and impedance matching circuits for efficient operation. It is also used in automotive devices, and can be found in the power control circuitry of many motors and alternators.

The working principle behind the 53xx-17 series of fixed inductors is based on Faraday’s Law. According to Faraday’s Law, when an electric current passes through a closed circuit, an electromotive force (EMF) is induced in the circuit. This induced EMF in the circuit opposes the applied current, and hence produces a voltage drop across the device, resulting in the production of a magnetic field.

The magnetic field generated by the device is then used to induce a voltage in the device, thus providing the inductance of the device. This voltage is often referred to as the inductive actuel and is measured in volts. The inductive reactance of a fixed inductor is determined by the frequency of the current passing through it.

In conclusion, the 53xx-17 series of fixed inductors can be used in various applications, ranging from power conditioning and switching power converters to impedance matching circuits. Their working principle is based on Faraday’s Law, and they are capable of providing a wide range of inductance values based on the frequency of the current passing through them. The device offers excellent performance, high efficiency, and low noise when compared to other types of inductors.

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

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