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Understanding Wonsmart Company's External Drives and Speed Control Methods

July 24, 2024
Understanding Wonsmart Company's External Drives and Speed Control Methods


Wonsmart Company provides the matched driver for brushelss dc blower. This article explores their innovative products and three primary speed control methods: potentiometer adjustment, PWM control, and 0-5V control.



Speed Control Methods






a. Potentiometer Adjustment

Potentiometer adjustment is a classic method employed by Wonsmart Company to control the speed of their drives. We can provide the control line.It involves a knob that allows operators to precisely set the speed output. This method is straightforward and provides real-time speed adjustments, making it ideal for applications requiring immediate response and flexibility.


b. PWM (Pulse Width Modulation) Control  PWM control is another sophisticated technique utilized by Wonsmart's external drives. It operates by varying the duty cycle of a square wave signal to regulate the motor speed. PWM frequency range is 2kHZ-50kHZ.PWM control offers high efficiency and precise speed regulation, making it suitable for applications demanding consistent performance and energy savings.



c.  0-5V Control  

The 0-5V control method integrates voltage signals to adjust the speed of Wonsmart's external drives. It provides a linear relationship between the input voltage and motor speed, offering fine control over various operational parameters. This method is favored for its simplicity and compatibility with standard control systems in industrial automation and robotics.


Detailed Description of Each Speed Control Method





Potentiometer Adjustment: This method involves a rotary knob or slider that changes the resistance in the circuit. As the resistance varies, the motor speed adjusts accordingly. It's intuitive and allows for quick adjustments on-site without the need for complex programming.


PWM Control: PWM control modulates the width of the pulses in a signal to regulate motor speed. By adjusting the duty cycle of the waveform, the average voltage applied to the motor changes, thereby altering its speed. This method is highly efficient and minimizes heat generation compared to traditional resistor-based speed control.


0-5V Control: Using a 0-5V signal, this method provides a linear relationship where 0V corresponds to minimum speed and 5V to maximum speed. It's widely used in automated systems where precise speed control is crucial for maintaining process accuracy and efficiency.


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