IMS05WDST152J40 Allicdata Electronics
Allicdata Part #:

IMS05WDST152J40-ND

Manufacturer Part#:

IMS05WDST152J40

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Vishay Dale
Short Description: IMS-5WD-40 1.5K 5% RJ4
More Detail: 1.5mH Shielded Inductor 118mA 23.7 Ohm Max Axial
DataSheet: IMS05WDST152J40 datasheetIMS05WDST152J40 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Q @ Freq: 51 @ 250kHz
Height - Seated (Max): --
Size / Dimension: 0.164" Dia x 0.450" L (4.17mm x 11.43mm)
Supplier Device Package: Axial
Package / Case: Axial
Mounting Type: Through Hole
Features: --
Inductance Frequency - Test: 25kHz
Operating Temperature: -55°C ~ 125°C
Ratings: --
Frequency - Self Resonant: 1.2MHz
Series: IMS-5WD-40
DC Resistance (DCR): 23.7 Ohm Max
Shielding: Shielded
Current - Saturation: 48mA
Current Rating: 118mA
Tolerance: ±10%
Inductance: 1.5mH
Material - Core: Ferrite
Type: --
Part Status: Obsolete
Packaging: --
Description

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Fixed Inductors

Fixed inductors are a basic component of electrical circuits and are widely used in electronic circuits to provide control and support for electrical signals. IM S05W DST152J40 is an ideal type of fixed inductor for a variety of applications.

Application Field of IM S05W DST152J40 Fixed Inductor

IM S05W DST152J40 inductor is a type of surface-mount component for the appropriate applications. It is usually used in low-current applications, such as providing filtering signals in DC motor controls, signal processing applications, transformers in switching power supplies, and coupling networks in audio amplifiers. It is also suitable for high-density board applications in areas with limited board space. It can also be used in impedance reflow and RF circuits.

Working Principle of IM S05W DST152J40 Fixed Inductor

IM S05W DST152J40 fixed inductor works on the principle of electromagnetic induction. It is based on Faraday\'s law of induction, which states that when a current passes through a conductor, it creates a magnetic field around it and the magnetic field induces an electric current. In this case, when an alternating current passes through a coil wound around a core ready, an electric field is created that induces a current. The current is rectified to make it the desired form of output.

IM S05W DST152J40 is a wound-type inductor consisting of two components: a core and a coil. The core can be made of ferrite, powdered iron, etc. and the coil can be made of copper or aluminum. When an alternating current passes through the coil, it creates a magnetic field around the core. The magnetic field is proportional to the current and the number of turns. This induces a voltage in the windings which is then converted to the desired form of output.

The core of the inductor helps to increase the strength of the magnetic field. It also helps reduce the losses in the coil due to heating and saponification. The ferrite core also helps reduce the effect of electromagnetic interference (EMI). The core can be designed to meet specific requirements depending on the application. It is important to choose a suitable core for the desired performance. The inductance of the inductor can also be changed by varying the number of turns in the coil.

IM S05W DST152J40 is designed to provide high-current saturation and low-level impedance. It also features high-frequency performance and requires a low-inductance substrate for its performance. It is suitable for operating temperatures from -40 °C to +85 °C and has a maximum rod width of 0.51 mm.

Conclusion

IM S05W DST152J40 fixed inductor is a great choice for many applications. This inductor is a two-component device with an inductor and a core that improves its overall performance. It is suitable for operating in a wide range of temperature and is great for high-density board applications. Lastly, this inductor is ideal for low-current applications, such as providing filtering signals in DC motor controls, signal processing applications, transformers in switching power supplies, and coupling networks in audio amplifiers.

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

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