1938150500 Allicdata Electronics
Allicdata Part #:

1938150500-ND

Manufacturer Part#:

1938150500

Price: $ 23.77
Product Category:

Uncategorized

Manufacturer: Weidmuller
Short Description: SAIL-M8WM12W-4-5.0Q
More Detail: N/A
DataSheet: 1938150500 datasheet1938150500 Datasheet/PDF
Quantity: 1000
1 +: $ 21.60270
Stock 1000Can Ship Immediately
$ 23.77
Specifications
Series: *
Part Status: Active
Description

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The scope of application of 1938150500 and its working principle can be broken down to several applications and components. When it comes to the application range, 1938150500 is widely used in a number of fields, such as electrical machines, communications, engineering machinery, robotics, and automation, just to name a few. In terms of its basic parts, 1938150500 consists of a rotor, stator, and a number of permanent magnets or electric coils. Each auxiliary part plays a critical role in controlling the output of the main motor.

To start with, the rotor of 1938150500 is usually composed of a cylindrical core and a copper coil. The rotor is generally connected to the shaft and functions like a rotor in traditional motors, rotating when currents pass through the coil and create a magnetic torque. On the other hand, the stator of 1938150500 comprises of punched metal lamination and cooper wires, which can be divided into two parts according to their functions. A rotating field is created when the stator’s permanent magnet pole is energized by an alternating current (AC). As a result, the magnetic field generated by the magnetomotive force within the motor interacts with the circumferential force presented by the stator’s magnetic field. Thus, a magnetically induced current is created in the rotor coil, allowing it to rotate.

In addition, the salient pole built in the stator of 1938150500 functions to transfer power from rotor to the shaft. This part has two sets of electrical components with differing polarization. Magnetic flux generated by the rotor interact with these components, generating a magnetic field in the stator. As a result, a fluctuation of the amplitude is created in the stator, enabling it to transfer power from the rotor to the motor shaft. Meanwhile, these components also guide the changes in the current flow direction in the rotor, allowing its generated magnetic field to alternate.

Furthermore, permanent magnets used in 1938150500 are mainly divided into two types: rare earth and ceramic. The former makes it possible to reduce the size of the motor, with a high level of production. Meanwhile, the high magnetic permeability of ceramic makes them able to create a powerful demand field with the limited number of windings. Due to the lightweight and compact construction of these components, 1938150500 are capable of running at high speeds, increasing efficiency and reducing their volume.

When discussing the working principle of 1938150500, it can be broadly classified into three stages. To start off, a DC current is supplied to the stator’s magnetic field via permanent magnets or electric coils. This current will eventually travel to the rotor, generating a magnetic field symmetrical to that of the stator. As a result, an electromagnetic torque is created, bringing the rotor to rotate. Secondly, the motor’s angular speed will increase rapidly until a current is generated in the rotor, functioning as a dynamo with the help of the winding on it. When the dynamo’s generated speed accelerates, the magnetic lines of force generated by the stator will become weaker, while the electromotive force will also drop, balancing the current supplied to the motor shaft, and continuing the rotating of the motor.

Lastly, when the level of current supplied to the motor shaft is balanced, the power output of the motor will be reduced and eventually run at stable speed. In order to adjust the speed of the motor, the winding in the stator can be connected to a frequency controlling device. By changing the frequency of the power supply, the speed of the motor can be adjusted according to the requirement.

In conclusion, 1938150500 has been widely used in many fields due to its powerful torque, stability, compactness, and lightweight. It has been certified to be a viable choice when it comes to applications with high requirements in terms of automation, engineering machinery, and robotics. It works by filling the rotor with electric current, relying on the reaction of the magnetic lines of force between the stator and the rotor. In order to vary its speed, 1938150500 can be conveniently adjusted with the help of a frequency controlling device.

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

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