Allicdata Part #: | L70-280-140-ND |
Manufacturer Part#: |
L70-280-140 |
Price: | $ 0.00 |
Product Category: | Uncategorized |
Manufacturer: | Rosenberger |
Short Description: | 1.0MM CABLE ASSEMBLY W/O ARMOUR |
More Detail: | Cable Assembly Coaxial |
DataSheet: | L70-280-140 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | * |
Part Status: | Active |
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The L70-280-140 is an efficient and powerful motor for industrial and other applications. It has a wide range of applications in the industry, ranging from powering generator sets to driving power tools. It is typically used in applications such as pumps, compressors, mixers, and other industrial equipment. The motor works on the principles of magnetic induction, and is designed to operate at a constant speed and power level.
The L70-280-140 is a three-phase induction motor, which means that it utilizes the interaction between magnetic fields created by stationary and rotating parts. The rotor, or moving element of the motor, is made up of a set of copper windings that are wound around a metal core. Through induction, the electric current flowing through the windings creates a rotating magnetic field, which interacts with the static magnetic field of the stator to create torque, or rotational force. The torque is then transferred by an output shaft, providing power to the application.
In order to maintain the speed and power of the motor, there are several features that are included in the design of the L70-280-140. This includes a centrifugal over-speed governor, which limits the speed of the motor and puts a lock on it when the required speed is reached. This ensures that the motor doesn’t spin too quickly, which could lead to mechanical failure or potential damage. Additionally, the motor uses a proportional/integral (PI) regulator, which helps to maintain the speed of the motor, even when there are fluctuations in the load.
The motor can also be series wound or separately excited. In a series wound motor, the winding resistance of the rotor is very low compared to the stator, causing the motor to spin faster. On the other hand, a separately excited motor has a higher rotor winding resistance and therefore requires a higher magnetic field from the stator in order to keep the motor running.
The L70-280-140 is a popular choice for a wide range of industrial applications because of its particular features and efficiency. It is capable of powering various types of equipment and machines, from pumps and compressors to machine tools. It is also able to sustain high torque loads and efficient operation, making it ideal for industrial use. Furthermore, its efficient motor design ensures low energy consumption and reduced maintenance costs.
The specific data is subject to PDF, and the above content is for reference
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