2020-22G Allicdata Electronics
Allicdata Part #:

2020-22G-ND

Manufacturer Part#:

2020-22G

Price: $ 31.68
Product Category:

Inductors, Coils, Chokes

Manufacturer: API Delevan Inc.
Short Description: FIXED IND 820NH 800MA 300 MOHM
More Detail: 820nH Unshielded Toroidal Inductor 800mA 300 mOhm ...
DataSheet: 2020-22G datasheet2020-22G Datasheet/PDF
Quantity: 1000
50 +: $ 28.51380
Stock 1000Can Ship Immediately
$ 31.68
Specifications
DC Resistance (DCR): 300 mOhm Max
Height - Seated (Max): 0.230" (5.84mm)
Size / Dimension: 0.200" L x 0.100" W (5.08mm x 2.54mm)
Supplier Device Package: --
Package / Case: Radial
Mounting Type: Through Hole
Inductance Frequency - Test: 25MHz
Operating Temperature: -55°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 160MHz
Q @ Freq: 70 @ 25MHz
Series: 2020
Shielding: Unshielded
Current - Saturation: --
Current Rating: 800mA
Tolerance: ±2%
Inductance: 820nH
Material - Core: Iron
Type: Toroidal
Part Status: Active
Packaging: Bulk 
Description

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In recent years, the technology industry has seen huge strides when it comes to advancements in the application field and working principles of 2020-22G-level fixed inductors. Inductors, as opposed to resistors, rely on the changing and movement of an electrical current to create a magnetic field within a conductor. In turn, this magnetic field induces an opposing electrical current that is then stored in the inductor’s coil. As such, the more current that flows the stronger the magnetic field which results in a greater force driving an opposing current towards the inductor’s terminal. This is seen as a “slowing down” of current, much like the way water in a hose slows down when going around a corner. Thus, this permits the use of inductors to create transient flows which can then be used in a variety of ways.

The 2020-22G-level fixing of inductors can be applied in many different ways depending on the desired results and environment. The primary use of such inductors is in electromechanical systems as they can be used to provide a relatively constant voltage regardless of the changing dynamics of the surrounding system. This permits relatively accurate and reliable control of the voltage across the circuit, allowing for a more reliable and efficient operation. Additionally, inductors of this type can be used in power electronic systems to increase the efficiency of the power being transmitted and to optimize the level of current. In many cases, this eliminates the need for a reactive component, such as a transformer, thanks to the low internal power losses of such inductors.

In order to understand the principles and workings of the 2020-22G-level fixed inductors, it is first important to understand the basic principles of inductance. In a nutshell, inductance is the process in which an electric current creates a magnetic field which in turn induces an opposing electric current. This results in an opposition to changes in the current, meaning that the current is altered much slower when increases and decreases are made. This opposition is referred to as back emf, a type of voltage that is created as a result of the inductance. Thus, a fixed inductor has an inductance that is constant, meaning that any changes in the current will be opposed but according to the amount of inductance that has been fixed.

In order to create a fixed inductor, inductors must be designed to create a specific inductance depending on the application. Depending on the type of application, the inductor can be either a through-hole or a surface-mount design. They may also be made from different materials such as aluminum, copper or even a combination of materials to increase the inductance. The design of the inductor is also crucial as the amount of inductance will depend upon the design and application. For example, when creating a 2020-22G-level inductor for a switching power supply, the inductor needs to be designed for such an application with the proper size and inductance values in order to ensure that the power supply will operate correctly.

After the inductor has been designed for the application, it is then time to ensure that it is working properly. This can be done by testing the inductor on a variety of parameters such as resistance, frequency response, and inductance value. Additionally, testing can be done to ensure the inductor has very low stray inductance so that there is no interference with the surrounding circuitry. Once the unit is tested and approved, it can then be installed into the circuit.

In conclusion, the 2020-22G-level fixed inductors are a key component of a variety of electronics applications due to their low internal power losses and the ability to provide a consistent voltage. As such, it is important to understand the basic principles of inductance as well as the proper design of such components in order to effectively integrate them into the circuit. Furthermore, testing for various parameters should be done in order to ensure the component is working properly.

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

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