H-31-MAGNET Allicdata Electronics
Allicdata Part #:

HE510-ND

Manufacturer Part#:

H-31-MAGNET

Price: $ 1.11
Product Category:

Sensors, Transducers

Manufacturer: Littelfuse Inc.
Short Description: MAGNET RECTANGULAR ALNICO AXIAL
More Detail: Magnet Alnico 5 (AlNiCo) 0.063" Sq x 0.500" H (1....
DataSheet: H-31-MAGNET datasheetH-31-MAGNET Datasheet/PDF
Quantity: 10621
1 +: $ 1.01430
5 +: $ 0.97524
10 +: $ 0.79254
25 +: $ 0.68292
50 +: $ 0.59157
100 +: $ 0.53663
500 +: $ 0.45128
1000 +: $ 0.40249
5000 +: $ 0.36590
Stock 10621Can Ship Immediately
$ 1.11
Specifications
Series: --
Part Status: Active
Shape: Rectangular
Magnetization: Axial
Material: Alnico 5 (AlNiCo)
Finish: --
Grade: --
Gauss Strength: 10900G (Flux Density)
Size: 0.063" Sq x 0.500" H (1.60mm x 12.7mm)
Operating Temperature: 450°C (TA)
Description

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H-31-MAGNET application field and working principle

As an important type of magnet, H-31-magnets have a wide range of applications and can be applied in many industries. With its superior properties, H-31-magnets are especially suitable for use in electronics, medical instruments, microwave communication, motor coils, sensors and automotive industry. In addition, this magnet can also be applied in daily life, such as magnetic separators, holding components, generator components and so on.

When it comes to the working principle of H-31-magnets, it can be attributed to a process of magnetization. The process of magnetization is the ability of an object to become magnetized by being subjected to a magnetic field. The magnetizing force causes the magnetic domains inside a material to become aligned, thus creating a magnet. To magnetize an H-31-magnet, it first needs to be exposed to an external magnetic field source, such as an electric current. The electric current passes through the H-31-magnet and causes the magnetic domains inside the material to become aligned. After that, the magnetized force increases, thus creating a stronger magnet.

In addition, H-31-magnets can also generate their own magnetic field when exposed to a current. This magnet generates its own magnetic field by moving its domains within the material. This is known as the retentive or remanence effect. This process is slightly different to magnetization, as the magnetic domains do not need to be subjected to an external magnetic field source in order to generate a magnetic field. The H-31-magnet can attract and repel other particles and objects even without an external magnetic field source.

The superior properties of H-31-magnets make it the ideal choice for a variety of applications. Its robustness and durability make it suitable for many industrial applications, while its versatility allows it to be used in devices that require high precision and accuracy. As an added bonus, the H-31-magnet is relatively inexpensive compared to other types of magnets.

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

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