WT525225-12F2-MA2-G Allicdata Electronics
Allicdata Part #:

445-175301-ND

Manufacturer Part#:

WT525225-12F2-MA2-G

Price: $ 6.29
Product Category:

Inductors, Coils, Chokes

Manufacturer: TDK Corporation
Short Description: TX 1 COIL, 1 LYR 10.5UH
More Detail: 1 Coil, 1 Layer 10.5µH Wireless Charging Coil Tran...
DataSheet: WT525225-12F2-MA2-G datasheetWT525225-12F2-MA2-G Datasheet/PDF
Quantity: 360
1 +: $ 5.72040
10 +: $ 5.08662
100 +: $ 3.94229
500 +: $ 3.68793
1000 +: $ 3.38273
Stock 360Can Ship Immediately
$ 6.29
Specifications
Series: WT
Part Status: Active
Function: Transmitter
Type: 1 Coil, 1 Layer
Inductance: 10.5µH
Tolerance: --
DC Resistance (DCR): 60 mOhm
Q @ Freq: --
Current Rating: --
Current - Saturation: --
Frequency - Self Resonant: --
Operating Temperature: --
Size / Dimension: 2.05" L x 2.05" W x 0.15" H (52.0mm x 52.0mm x 3.7mm)
Description

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Wireless Charging Coils: WT525225-12F2-MA2-G Application Field and Working Principle

The WT525225-12F2-MA2-G is a type of wireless charging coil, which refers to a kind of electrical circuit component that capitalizes on the principle of electromagnetic induction to wirelessly transfer energy between devices. The component is typically used in the industrial, medical, manufacturing, and education sectors.This article will explore the application field and working principle of the WT525225-12F2-MA2-G wireless charging coil.

Application Field

The WT525225-12F2-MA2-G is often used in a variety of industrial, medical, manufacturing, and educational applications.In industrial applications, the wireless charging coil is commonly used in power tools, machinery, and robotic systems. Its ability to wirelessly transfer energy between multiple devices allows for more efficient operation and maintenance. It also eliminates the need for having to make connections to multiple power sources, saving time and reducing wear and tear on connectors and cables.In medical applications, the WT525225-12F2-MA2-G is commonly used in patient monitors and medical implants such as pacemakers. Its ability to wirelessly transfer energy means that it can effectively power these devices without the need for cumbersome wires or cables. This means that medical staff can more easily move patients or operate on them without having to worry about connecting and disconnecting cables.The coil is also used in manufacturing applications, as its wireless power capabilities can simplify the process of connecting machines and equipment to a power source. It can reduce the amount of time spent on set up and connection and help to streamline the production process.Finally, the WT525225-12F2-MA2-G has a wide range of applications in the educational sector. In schools, the coil can be used to power interactive white boards, projectors, and other classroom equipment. In addition, its ability to wirelessly transfer energy means that students and educators can move around freely without having to worry about connecting and disconnecting cables.

Working Principle

The WT525225-12F2-MA2-G operates on the principle of electromagnetic induction. This is a type of energy transfer that takes place when an alternating electric field interacts with a nearby conductive material. This interaction creates an electric current, which then flows through the material.The WT525225-12F2-MA2-G consists of two components: the primary coil and the secondary coil. When an alternating current is applied to the primary coil, it creates a magnetic field, which induces an electric current in the secondary coil. This electric current can then be used to power a device or transfer energy between devices.The WT525225-12F2-MA2-G is designed to be highly efficient, and can transfer energy with minimal interference or losses. It is also capable of transferring energy over long distances, making it an ideal choice for applications where cables and wires are not feasible.In conclusion, the WT525225-12F2-MA2-G is a type of wireless charging coil. It is used in a variety of industrial, medical, manufacturing, and educational applications, and operates on the principle of electromagnetic induction. The coil is highly efficient, and is capable of transferring energy with minimal interference or losses.

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

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