WN268TA(50-150)M High Precision Motorized Linear Stage

WN268TA(50-150)M High Precision Motorized Linear Stage
WN268TA(50-150)M High Precision Motorized Linear Stage
WN268TA(50-150)M High Precision Motorized Linear Stage
WN268TA(50-150)M High Precision Motorized Linear Stage
WN268TA(50-150)M High Precision Motorized Linear Stage
WN268TA(50-150)M High Precision Motorized Linear Stage

WN268TA(50-150)M High Precision Linear Motor Stages is suitable for providing linear displacement by electric control in automatic displacement control in scientific research, full-automatic measuring and testing equipment, industrial automation and other fields which requiring high load and long-term continuous operation. This precision positioning stage has a wide travel range (50mm, 100mm, and 150mm) with load capacity 40kg.

Parameter table of WN268TA(50-150)M High Precision Motorized Linear Stage
Model Travel Table Size Load Capacity Weight Resolution Maximum Speed Repeatability Straightness Driving Parallelism
WN268TA50M 50 mm 120×125mm 40 kg 3kg 20μ (Non-MS driver) 1μ (20 MS driver) 20mm/sec 15µ

Model Travel Table Size Load Capacity Weight Resolution Maximum Speed Repeatability Straightness Driving Parallelism
WN268TA100M 100 mm 120×165mm 40 kg 5kg 20μ (Non-MS driver) 1μ (20 MS driver) 20mm/sec 15µ

Model Travel Table Size Load Capacity Weight Resolution Maximum Speed Repeatability Straightness Driving Parallelism
WN268TA150M 150 mm 115×115mm 40 kg 8kg 20μ (Non-MS driver) 1μ (20 MS driver)) 20mm/sec 10µ 20µ

Features of WN268TA(50-150)M High Precision Motorized Linear Stage
  • Light weight with aluminum alloy material for the linear stage.
  • High load capacity and rigidity with ball screw drive and high precision cross roller guide.
  • High precision ball screw drive, and the lead is 4mm.
  • Save space with integrated structure of high precision motor and ball screw, and effectively ensure the precision and stability of the motorized stage.
  • Reduce the total height after forming two dimensional system.
  • Could improve the positional accuracy by adding linear scale.
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