M1G4A1V1X Allicdata Electronics
Allicdata Part #:

1110-4044-ND

Manufacturer Part#:

M1G4A1V1X

Price: $ 200.87
Product Category:

Motors, Solenoids, Driver Boards/Modules

Manufacturer: Panasonic Industrial Automation Sales
Short Description: INVERTER FREQ SPEED CNTL 3PH 25-
More Detail: Variable Frequency Drive (VFD) 100 ~ 110VAC Supply...
DataSheet: M1G4A1V1X datasheetM1G4A1V1X Datasheet/PDF
Quantity: 4
1 +: $ 182.60500
5 +: $ 179.34300
10 +: $ 176.08300
25 +: $ 173.47400
Stock 4Can Ship Immediately
$ 200.87
Specifications
Series: M1G
Part Status: Active
Type: Module
Motor Type: AC Motor
Control / Drive Type: Variable Frequency Drive (VFD)
Number of Motors: 1
Voltage - Load: 200 ~ 220 V
Current - Output: 0.4A
Wattage - Load: 40W
Voltage - Supply: 100 ~ 110VAC
Interface: --
Mounting Type: Panel Mount
Operating Temperature: -10°C ~ 40°C
Features: --
For Use With/Related Products: --
Description

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M1G4A1V1X Application Field and Working Principle

M1G4A1V1X is a type of motor driver board, module that is used to control the operation of a motor in a variety of applications. It is an integrated, permanent magnet synchronous motor (PMSM) driver designed for high-performance and cost-effective applications. This type of motor driver board, module can be used for varying applications such as linear applications, robotics, construction vehicles, and automatic machine tools.

The motor driver board, module incorporates a comprehensive protection function to protect the motor from abnormal conditions, such as overcurrent protection, thermal protection, over-temperature protection, motor drive fault protection, and output short protection. In addition, this type of motor driver board, module also offers a wide range of feedback and control systems, including pulse width modulation (PWM) input, amplifier input signals, speed control, current limit and phase current detection. It also features a position control which allows the user to set the desired motor position.

Working Principle

The working principle of this type of motor driver board, module is based on the concept of permanent magnet synchronous motor (PMSM). The PMSM consists of a permanent magnet mounted on a rotor which rotates in the presence of a magnetic field of a stator. The motor\'s rotor is coupled to a series of coils that are energized in a sequence so that the rotor is able to rotate in a circular motion. The energizing of each coil is controlled by the motor driver board, module which provides the necessary power to the coils.

The motor driver board, module provides a wide range of control and feedback systems that enables the user to customize its operation as required. These systems include pulse width modulation (PWM) inputs, amplifier input signals, speed control, current limit and phase current detection, and position control. All of these features allow the motor to be controlled in a manner that is best suited for the application.

In addition to the PMSM, other electrical components, such as inverter bridges, may be included in the motor driver board, module to improve the motor\'s performance and reliability. The inverter bridge is an electrical circuit that transfers electrical energy from one circuit to another, and it is often used to improve the efficiency of a motor. The inverter bridge also helps to reduce the amount of energy consumed by the motor, making it more cost-effective.

Conclusion

M1G4A1V1X is a type of motor driver board, module that provides a variety of features and functions to control the operation of a motor in different applications. This motor driver board, module is designed for high-performance, cost-effective, and reliable operations. It features a wide range of control and feedback systems, including PWM input, amplifier input signals, speed control, current limit and phase current detection, along with a position control feature. Other electrical components, such as inverter bridges, are often used in combination with the motor driver board, module to improve the performance and reliability of the motor.

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

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