SWS-0.20-374 Allicdata Electronics

SWS-0.20-374 Inductors, Coils, Chokes

Allicdata Part #:

TE2039TR-ND

Manufacturer Part#:

SWS-0.20-374

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Amgis, LLC
Short Description: FIXED IND 374UH 200MA 2.7 OHM
More Detail: 374µH Unshielded Toroidal Inductor 200mA 2.7 Ohm N...
DataSheet: SWS-0.20-374 datasheetSWS-0.20-374 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
DC Resistance (DCR): 2.7 Ohm
Height - Seated (Max): 0.266" (6.75mm)
Size / Dimension: 0.394" L x 0.394" W (10.00mm x 10.00mm)
Package / Case: Nonstandard
Mounting Type: Surface Mount
Inductance Frequency - Test: 10kHz
Operating Temperature: -40°C ~ 125°C
Ratings: --
Frequency - Self Resonant: --
Q @ Freq: --
Series: SW
Shielding: Unshielded
Current - Saturation: --
Current Rating: 200mA
Tolerance: ±20%
Inductance: 374µH
Material - Core: Iron Powder
Type: Toroidal
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Fixed inductors are composed of multicore winding, enameled wire and core support. Most of these inductors are axial coils. The SWS-0.20-374 series is an inductor that falls into this category. It is a type of fixed inductor with a ferrite core.

The external size of SWS-0.20-374 is 8.2*4*3mm and the nominal inductance is 20nH, which generally can be changed to 10nH when the inductor is equally wound with an inductance of 7.5nH up to 97nH. The permissible peak current is a maximum of 1.2A. Because of its small size and lightweight, the SWS-0.20-374 is a preferred choice for applications where a small profile and minimal power consumption is desired.

The working principle of SWS-0.20-374 is based on the inductor design, which introduces an inductance into the circuit by utilizing Faraday\'s law. Faraday\'s law states that when a magnetic field passes through a conductor, a voltage will be induced. The windings of the inductor consist of a coil of wire, wrapped around a core. The core can be made from ferrite, powdered iron or air. As electric current passes through the coil, a magnetic field is created in the core, inducing a voltage in the coil. The resistance of the inductor plays an important role in determining the inductance. The greater the resistance, the higher the inductance will be. The resistance must be kept constant in order to maintain the inductance.

The SWS-0.20-374 is typically used in mobile communication equipment, computers, and other electronic devices. It is mainly used to decouple the supply voltage, filter out the transmitted signal, store the energy, and stabilize the rechargeable device circuit. In mobile communication equipment, SWS-0.20-374 is mainly used in the receiver circuit to filter out the signal and isolate the noise. In multimedia speakers, SWS-0.20-374 has the same function as in mobile communication equipment, that is, to filter out the signal and isolate the noise.

In the computer system, SWS-0.20-374 is used to maintain a steady voltage across the processor and ram. This ensures that both components are receiving an adequate power supply. In addition, SWS-0.20-374 is used in circuit damping. Damping is a process where an inductor is used to reduce the amount of energy in a signal before it reaches the load. This prevents spikes and other interference from affecting the electrical components.

SWS-0.20-374 can also be used in power supply systems. It is used to prevent power surges and to maintain a constant amount of current in a circuit. By regulating the amount of current, the inductor can reduce the risk of damage to the hardware. This is especially important in power supplies for electronic devices, such as computers and mobile phones.

In summary, the SWS-0.20-374 is a fixed inductor with a ferrite core. It is designed mainly for mobile communication equipment, computers, and other electronic devices. Its small size and lightweight make it an ideal choice for applications that require a small profile and low power consumption. Furthermore, its resistance plays an important role in determining its inductance, and its use in damping, power supplies, and decoupling makes it a highly valuable part in circuits.

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

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