· Travels up to 600 mm
· Speeds up to 600 mm/s
· Side-seal design with hardcover
· Low cost and high performance
· Integral brushless rotary motor
· Standard and precision-grade options
The ATS125 is Aerotech's smallest hardcover, side-sealed linear
stage. The integral brushless motor reduces the overall footprint of the stage
enabling its deployment in space-constrained applications, while the hardcover
provides protection from debris created in the manufacturing process. The robust
aluminum cover is hard-coated for scratch resistance, and the side seals keep
dirt and particulates out of the stage and protect the bearing surfaces from
contamination. The vertical orientation of the seals easily deflects debris
away from the stage. Top seal designs can collect debris, resulting in the eventual
failure and replacement of the sealing mechanism.
Integral Motor
The ATS125 with integral motor option directly couples a brushless
motor to the ball-screw drive. This eliminates the flexible coupling typically
present in screw-driven stages, yielding a stiffer system with higher servo
bandwidth. The lack of a coupling also improves system reliability by removing
a component susceptible to failure. The integral motor is enclosed in a modular
subassembly that, if required, can be easily replaced in the field. The motor
is based on a slotless design that provides ultra-smooth velocity operation
due to the complete absence of torque ripple.
Highly Configurable
Standard- and precision-grade ball-screw options are available
to closely match the price/performance point of a wide variety of positioning
applications. Square-wave encoder output with a net resolution of 1 micron for
10 mm ball screw and 0.5 micron for 5 mm ball screw is standard with the integral
motor. An optional analog output encoder can be coupled with external interpolation
electronics to provide higher resolution. The stage is also available specially
prepared for vacuum operation. A holding brake can be added to the integral
motor modular assembly for vertical applications.