AEROTECH A3200 CONTROLLERS
AEROTECH A3200 CONTROLLERS
General Information
Model: A3200
Brand: Aerotech, a renowned American company specialized in motion control and automation18
Type: PC-based multi-axis motion control system2
Technical Specifications
Axis Support: Can support up to 32 axes, being compatible with various types of axes23.
Communication Protocol: Utilizes high-speed FireWire communication to connect with drives, enabling data transmission at up to 2G3.
Encoder Interface: Supports various encoder types like resolver, sine-cosine, TTL AB differential and Endat, with high-speed signal input capability and built-in MXH interpolation option2.
I/O Interface: Equipped with analog input/output and digital input/output, as well as PSO output for precise synchronization and control2.
Functions
Motion Trajectory Generation: Capable of generating and synchronizing complex motion trajectories, including point-to-point, linear, circular, helical and spherical interpolation. It can also perform in speed mode, electronic gearing, online trajectory correction and cam function3.
Control Algorithms: Features a full range of digital control functions and algorithms like PID control, which can be fine-tuned through software to achieve high-precision motion control.
Real-time Monitoring and Diagnosis: The A3200 software suite includes tools like the A3200 Digital Scope for real-time monitoring of signals such as position, velocity and position error. It can also perform fault diagnosis and analysis to help users quickly identify and address issues4.
Programmable Function: Allows programming in languages such as AeroBasic, G-code, PLC and C#. It provides a variety of software development libraries, facilitating secondary development and customization by users2.
Applications3
Semiconductor Industry: Used in semiconductor manufacturing processes such as wafer handling, lithography and packaging to achieve high-precision positioning and motion control of equipment.
Medical Equipment: In medical imaging devices like CT scanners and surgical robots, it provides precise motion control to assist doctors in obtaining accurate diagnostic results and performing precise surgical operations.
Laser Processing: Applies to laser cutting, welding and marking, controlling the movement of the laser head to ensure the accuracy and quality of laser processing.
Automotive Industry: Utilized in automotive manufacturing for tasks such as precise positioning in assembly lines and testing of automotive parts.
Aerospace and Defense: In the development and production of aircraft and missiles, it is used in test equipment and precision assembly systems to ensure the accuracy and reliability of aerospace products.
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