2905674 Allicdata Electronics
Allicdata Part #:

2905674-ND

Manufacturer Part#:

2905674

Price: $ 179.49
Product Category:

Motors, Solenoids, Driver Boards/Modules

Manufacturer: Phoenix Contact
Short Description: EX I SOLENOID DRIVER FOR CONTROL
More Detail: Solenoid 19.2 ~ 30VDC Supply 37.4mA 23.98V Load
DataSheet: 2905674 datasheet2905674 Datasheet/PDF
Quantity: 1000
1 +: $ 163.17000
Stock 1000Can Ship Immediately
$ 179.49
Specifications
Series: MACX MCR
Part Status: Active
Type: Module
Motor Type: Solenoid
Control / Drive Type: Solenoid
Number of Motors: 1
Voltage - Load: 23.98V
Current - Output: 37.4mA
Wattage - Load: 224mW
Voltage - Supply: 19.2 ~ 30VDC
Interface: --
Mounting Type: DIN Rail
Operating Temperature: -20°C ~ 60°C
Features: --
For Use With/Related Products: EX-I Series
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Motor Driver Boards, Modules

A motor driver board, module, or power electrically amplifies the electrical signals given to motors by a controller. Depending on the application, the motor driver can be precision-controlled DC or brushless DC motor. The motor driver boards and modules are designed to optimize system performance while minimizing power consumption.

2905674 Application Field and Working Principle

Motor driver boards are primarily used in automotive applications where precision and control are essential. Examples include engine control, cooling fan control and brake control. Motor driver boards can also be used in industrial and robotics applications, as well as consumer electronics applications.The working principle of a motor driver board depends on the type of motor being driven. For DC/Brushless DC motors, the board generates the necessary waveforms, or pulses, necessary to control the motor. For stepper motors, the board generates the digital signals that are used to sequence the motor to specific steps.When it comes to controlling a motor driver board, the board can be controlled with either analog signals, such as voltage signals, or digital signals, such as pulse width modulation (PWM) signals or I2C or SPI commands. The analog signals can be sent to the board using a controller such as a microcontroller board or a PC. The digital signals can be sent to the board using digital I/O pins, or directly from a microcontroller.Most motor driver boards also come with a variety of built-in features that help to optimize their performance. For instance, some boards feature current sensing capabilities that can be used to detect anomalies and help protect the motor and driver board from damage. Other boards feature fault detection capabilities that can detect when the motor is running too hot, and shut off the power supply. Some boards also feature communication capabilities, allowing for communication with a host controller over a serial or I2C bus.

Motor Driver Boards – Limitations and Considerations

When using a motor driver board, there are several limitations to consider. First, the board must be supplied with a voltage that matches the driver board’s operating voltage. Second, the current demand of the motor must match the current rating of the board. Third, the board must be supplied with a source of power, either from an AC power supply or a battery. Finally, the motor driver board must also be connected to the motor via the appropriate control signals.In addition to the above considerations, there are some additional considerations to be aware of when using a motor driver board. For instance, the motor driver board may require additional cooling as the motor runs at high speeds. Additionally, the motor driver board must be interfaced with the control system in an appropriate manner. Finally, the board must be programmed to respond to the control signals correctly.

Conclusion

Motor driver boards, modules, and power are essential components of a variety of electronics and automation systems. They are used for controlling motors, providing precise, high-power control, while also reducing power consumption. Motor driver boards must be properly programmed, powered, and interfaced with the control system to ensure their optimal performance. By understanding the application field, working principle, limitations, and considerations of motor driver boards, users can ensure that the board is functioning correctly and providing the desired performance.

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

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