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50mm Travel, Metric Micrometer, Solid-Top Ball Bearing Stage

32mm/1.25” Center drive stage and its X-Y-Z configuration

32mm/1.25” Center drive stage and its X-Y-Z configuration

32mm/1.25” Center drive stage and its X-Y-Z configuration 45mm/1.75” Center drive stages and optional brackets
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Stock #13-770 Clearance 3-5 days
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S$759.80 S$1,519.60
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S$759.80 S$1,519.60
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Type of Movement:
Linear (X)
Guide System:
Ball Bearing
Type of Drive:
Metric Micrometer
Drive Orientation:
Center Drive
Type:
Metric
Stage Size (mm):
127 x 127
Travel (mm):
50
Construction:
Aluminium Stage
Graduation (mm):
0.01
Height (mm):
25.4
Load Capacity, Normal (kg):
48
Load Capacity, Ta (kg):
13.6
Note:
Solid Top
Straight Line Accuracy (μm):
2 per 25mm of travel
Weight (kg):
1.2
Thrust Capacity, Ta (kg):
13.6
Thrust Capacity, Tb (kg):
1.1

Regulatory Compliance

RoHS 2015:
Certificate of Conformance:

Product Family Description

  • Preloaded Ball Bearing Design for Low-Friction Linear Adjustment
  • Solid-Top and Thru-Hole Versions
  • English or Metric Micrometer Drive and Fine Screw Drive Available
  • Stackable for 2-Axis or 3-Axis Movement

Metric Ball Bearing Translation Stages with a metric hole patterns on both the top and bottom plates feature a preloaded ball bearing design that provides straight line accuracy of 2μm per 25mm of travel. These stages are available in multiple stage sizes and configurations of drive mechanism, drive orientation, and travel distance, as well as the option of a clearance-thru hole. The Fine Screw (64 Pitch) models provide fine resolution positioning while the English and Metric micrometer models provide a position readout in 0.001inch or 0.01mm graduations. Metric Ball Bearing Translation Stages are designed to reduce friction, allowing smooth linear motion without backlash or sideplay. All stages include screws for creating an X-Y stage and a position lock.

Note: Adapter Plates and Z-Axis Brackets are available for breadboard mounting application and X-Y-Z configuration. Brackets include screws for assembling X-Y-Z stages from multiple stages.