Load |
Speed |
6000N |
4mm/s |
3000N |
8mm/s |
1500N |
12mm/s |
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ARF01 Deluxe Rod Actuators
Specifications
Input voltage: 12V/24 VDC
Load Capacity: 6000N max
Speed: 4~ 16mm/s
Stroke: 50mm~ 500mm,can produce as your request.
Minimum installation distance: stroke + 175mm
Duty Cycle: 10% or 2 minutes continuous use followed by 18 minutes not in use .
Limit Switches: Built-in (Not Adjustable)
Operation Temperature: -25℃~ +65℃
Noise decibel: ≤48dB
Protection Class: IP44
Certificates:CE&RoHS
ARF01 permanent magnet motor driven linear actuator is a linear motion device driven by a permanent magnet motor. It converts the rotational motion of the motor into linear motion through the transmission mechanism, driving the load to move in a specified direction. The control system adjusts the motor's speed and direction based on preset programs or real-time signals to achieve precise linear positioning. The ARF01 permanent magnet motor driven linear actuator includes the motor body, driver, encoder, reduction mechanism, linear motion components, etc. It adopts high-precision bearings and guide rails to ensure the smoothness and accuracy of motion.
Load |
Speed |
6000N |
4mm/s |
3000N |
8mm/s |
1500N |
12mm/s |
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READ MOREThe ARF01 permanent magnet motor driven linear actuator is an advanced motor drive system, whose high efficiency and reliability are based on the core components of the permanent magnet motor. The permanent magnet motor uses rare earth permanent magnet materials, such as neodymium iron boron magnets, which have high magnetic energy product and high magnetic field strength, can provide a stable magnetic field and achieve efficient energy conversion.
The transmission device is a key component that converts the rotational motion of the permanent magnet motor into linear motion. In the ARF01 permanent magnet motor driven linear actuator, the transmission device uses structures such as sliding rails or ball screws to achieve the conversion of rotational motion to linear motion. The sliding rail is suitable for low-speed and low-precision applications, while the ball screw is suitable for high-precision and high-speed applications.
The controller is an intelligent component of the linear actuator, which is used to accurately control the speed and position of the motor. The controller using a closed-loop control algorithm monitors the operating status of the motor and external feedback signals in real time, adjusts the current and speed of the motor, and achieves precise position control and speed regulation. At the same time, it has a protection function to ensure the safe operation of the motor.
Sensors are sensing components used to monitor the operating status and environmental conditions of the motor in real time. Through the data collected by sensors such as position sensors, speed sensors, temperature sensors and load sensors, the controller can monitor the position, speed, temperature and load of the motor in real time to achieve closed-loop control and precise adjustment.
The linear actuator driven by the ARF01 permanent magnet motor has the advantages of compact structure, stable performance and high reliability. The permanent magnet motor has high magnetic field strength and high torque density to achieve efficient energy conversion; the transmission device uses precision sliding rails or ball screws to achieve high-precision linear motion; the controller uses advanced closed-loop control algorithms to achieve high dynamic response and high-speed adjustment; the sensor monitors the operating status of the motor in real time to ensure the safe operation of the motor. These advantages make the linear actuator driven by the ARF01 permanent magnet motor widely used in automation equipment, machinery manufacturing and aerospace.
The linear actuator driven by the ARF01 permanent magnet motor is an advanced motor drive system with high efficiency, high precision and high reliability.
High efficiency
The linear actuator driven by the ARF01 permanent magnet motor uses permanent magnets as the magnetic field source, with high magnetic field strength and high torque density, achieving efficient energy conversion. The transmission device adopts a sliding track or ball screw structure to achieve efficient power transmission. The controller adopts a closed-loop control algorithm to achieve precise position control and speed regulation. These features enable the linear actuator driven by the ARF01 permanent magnet motor to achieve efficient energy conversion and power transmission during operation, improving the overall efficiency of the system.
High precision
The linear actuator driven by the ARF01 permanent magnet motor uses a sliding track or ball screw structure to achieve high-precision linear motion. The controller adopts a closed-loop control algorithm to monitor the position and speed of the motor in real time, achieving precise position control and speed regulation. The sensor monitors the operating status of the motor in real time to ensure the stability and accuracy of the system. These features enable the linear actuator driven by the ARF01 permanent magnet motor to achieve high-precision linear motion during operation, meeting the needs of various precision applications.
High reliability
The linear actuator driven by the ARF01 permanent magnet motor uses rare earth permanent magnet materials to provide a stable magnetic field, ensuring the stability and reliability of the system. The transmission device has high wear resistance and durability, and can achieve long-term stable operation. The controller adopts advanced closed-loop control algorithm to monitor the operating status of the system in real time, ensuring the safe operation of the system. These features enable the linear actuator driven by the ARF01 permanent magnet motor to operate stably in various harsh environments, ensuring the reliability and stability of the system.