This Motion Control Tutorial from OES (Optimal Engineering Systems, Inc.) covers four key elements of programming and executing the program for a three axis XYZ stage.
1 - Connections to an Allegra Multi axis controller
2 - Setting up the communication between the Motion Controller and the programming computer such as a Laptop. This section covers the Serial Port Connection (COM Port), Baud Rate, Data Bits, Parity, Stop Bits, and Flow Control.
3 - Writing a Basic XYZ Motion Control Program
4 - Executing the Program.
Motion control stages require a Motion Controller that can be ordered as a complete plug-and-play system with RS-232, USB, joystick, trackball, and keypad control.
For additional information contact our sales team at Optimal Engineering Systems, Inc. (OES), 6901 Woodley Ave, Van Nuys, CA 91406; Tel 888-777-1826, +1 818-222-9200, E-Mail [email protected] or visit the website at http://www.oesincorp.com
About OES – Optimal Engineering Systems, Inc. (OES) is a supplier of motorized and manual Motion Control Single and Multi-axis Stages, and Motion Controllers. High precision stages from OES includes: Linear Motion Stages, Rotary Motion Stages, Goniometer Stages, Vertical axis Stages (also called Z axis Stages, Elevator Stages, and Labjacks), and Gimbal Mounts (stages). Available as Stepper Motor Stages and Servo Motor Stages, the stages are available as a complete Plug-and-Play Motion Control System with a Single or Multi axis Controller, Joystick, Keypad, and Custom Length Cables. Capable of Submicron Positioning the Servo Motor Stages can be supplied with a Brushless DC or Brushed DC Servo Motor with Quadrature Optical Encoders for closed loop applications.
Applications include: Animation, automated assembly systems, automation, CNC machines, flight simulation, inspection systems, linear and rotary stages, machine tools, medical devices, motion control camera boom systems, optical comparators, CMMs, pan-tilt gimbals, PCB assembly & inspection, pick-and-place, positioning stages, robotics, scanners, security cameras, telescope drive mechanisms, time-lapse photography and winders, identifying crystals, examining cutting edges of medical instruments, estimating hyperspectral bidirectional reflectance, gloss measurements, measurements of radiation patterns of LEDs, directing lasers, aligning mirrors, and manufacturing quartz oscillator plates using quartz cutting X-rays.
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