Aerotech 100-50U02P Ballscrew Linear Stage
Aerotech 100-50U02P Ballscrew Linear Stage
General Information
Model: 100-50U02P
Brand: Aerotech, a globally recognized leader in motion control solutions
Type: Ballscrew-driven linear stage, designed for applications requiring precise linear motion control
Technical Specifications
Travel: 50 mm2
Lead: 2 mm/rev2
Positioning Accuracy: Typically reaches ±2.0 µm, ensuring high-precision positioning
Motor Mount: NEMA 23, which provides a standard interface for motor connection2
Load Capacity: Can bear a certain load within the specified range, suitable for different workpieces and tools
Drive Mode: Driven by a ball screw, which can convert the rotary motion of the motor into precise linear motion1
Features
High Precision: The precision-ground ball screw and high-quality bearings contribute to excellent positioning accuracy and repeatability, making it ideal for applications demanding high precision, such as semiconductor manufacturing, optical testing and precision machining.
Smooth Motion: The ball screw drive system, combined with advanced mechanical design, ensures smooth and stable linear motion with minimal vibration and ripple, reducing the impact on the accuracy of the motion and improving the quality of the processed products.
Reliable Structure: It is made of high-strength materials with a reasonable structural design, providing good rigidity and stability to withstand long-term use and heavy loads. The integral bellows way covers protect the drive and bearing system from contamination, prolonging the service life3.
Easy Integration: With a standard NEMA 23 motor mount and a variety of interface options, it can be easily integrated with other components and systems, such as motors, controllers and sensors, to form a complete motion control system.
Applications
Semiconductor Industry: It can be used in wafer handling, lithography and other processes to achieve precise positioning and movement of wafers, ensuring the accuracy and quality of semiconductor manufacturing.
Optical Industry: In optical component processing, testing and alignment, it can accurately control the position and movement of optical elements, such as lenses and mirrors, to ensure the accuracy of optical systems.
Medical Equipment: In medical devices such as precision surgical robots and medical imaging equipment, it provides precise linear motion to assist doctors in performing more accurate operations and obtaining higher-quality imaging results.
Research and Development: It is widely used in scientific research institutions and laboratories for experiments and research that require precise linear motion control, such as material testing, micro-nano technology research and precision measurement.
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