Rotary Stages & Tables
Indexing tables, rotary stages, slew rings and turntables.
Also searched as: rotary tableslew ringturntable bearingindexerrotary stage
-
12" Horizontal & Vertical Rotary Table
Center Bore: 4MTTable Size: 12"Vernier Reading: 10 seconds
-
-
-
4" Rotary Table
Diameter: 4" /100 mm
-
-
Aluminum Lazy Susan Turntable Bearing
Capacity: 160 poundsInner Diameter: 247 mmOuter Diameter: 300 mmThickness: 10 mm
-
DC24V 180:1 Electric Hollow Precision Rotary Table Motorized
Ratio: 180:1Voltage: 24 V
-
Electric Rotary Platform Motorized Precision Rotary Stage
Table Diameter: 100 mm
-
Electric Rotary Stage Precision Indexing Table 360° Turntable
Diameter: 60 mmMaximum Speed: 50°/S
-
-
Electric Rotating Platform Motorized Precision Rotary Table
Table Diameter: 60 mm
-
Flat Lazy Susan Turntable Bearing
Diameter: 12 inchLoad Capacity: 1000 lbsThickness: 5/16"
-
Four-Point Contact Ball Slewing Bearing Ring
Height: 79 mmInside Diameter: 1013 mmOutside Diameter: 1278 mm
-
Four-Point Contact Ball Slewing Bearing Ring
Height: 80 mmInside Diameter: 458 mmOutside Diameter: 662 mm
-
Heavy Duty Angular Contact Turntable Bearing
Diameter: 34 inchLoad Capacity: 4 TonSize: 742mm x 850mm x 65mmWidth: 65 mm
-
Heavy Duty Commercial Turntable Bearing
Diameter: 23 inchLoad Capacity: 2 TonSize: 430mm x 580mm x 65mm
-
Horizontal Vertical Rotary Table 3-Slot
Number of T-Slot: 3Worm Gear Transmission Ratio: 1:90
-
Lazy Susan Round Turntable Bearing
Diameter: 8 InchLoad Limit: 700 poundsThickness: 5/16 Inch
-
Precision Electric Rotary Stage
Repeatability: 0.005°Table Diameter: 60 mm
-
Precision Manual Rotary Stage Translation Angle
Adjustment Range: 360° coarse, ±3° fineMinimum Reading: 5'Minimum Scale: 1°Table Size: 73 mm
-
Precision Rotary Stage, 360° Single Turn Rotation
Outside Diameter: 7.5 inRotation: 360° Single Turn
-
R-Axis Manual Rotary Positioning Stage
Coarse Rotation: 360°Eccentricity: 0.05 mmFine Tuning: ±5°
-
-
-
Rotary Table 3"Inch 80mm Horizontal And Vertical
Diameter: 3" (80 mm)Graduation: 360 Degrees
-
Slew Ring
Cage Material: SteelCage Width: 30 mmInner Diameter: 50 mmOuter Diameter: 150 mm
-
-
Slew Ring Bearing
Inside Diameter: 36 inOutside Diameter: 43.875 in
-
Slewing Bearing
Inside Diameter: 2.5 inOutside Diameter: 5.5 inOverall Height: 22 mm
-
About rotary stages & tables
Rotary stages and tables are precision positioning devices that provide controlled angular motion for a wide range of industrial and scientific applications. These components facilitate indexing, precise angular alignment, and continuous rotation of workpieces or sensors. Key variants include indexing tables, which offer discrete, repeatable angular positions, and rotary stages, designed for continuous, high-precision motion often with closed-loop feedback. Slew rings and turntables typically handle larger loads and provide robust rotational support, often with integral gearing or bearing races.
Selection is primarily driven by load capacity, defined by axial, radial, and moment loads, and the required positional accuracy, expressed in arcseconds or arcminutes. Other critical specifications include rotational speed, acceleration, and the range of motion. Drive mechanisms vary, encompassing worm gears, direct drive motors, and belt drives, each offering different trade-offs in terms of backlash, stiffness, and speed. Common materials for housings include aluminum alloys (e.g., 6061-T6) for lighter duty applications and cast iron or steel for higher rigidity and load-bearing capacity. Bearing types range from crossed roller bearings for high precision and stiffness to ball bearings for smoother, lower-friction rotation, and plain bearings for heavy-duty, lower-speed applications. Surface finishes often include anodization for aluminum and black oxide or paint for steel components to enhance corrosion resistance.
How to choose
When selecting a rotary stage or table, first define the required load capacity, considering axial, radial, and moment loads. Second, determine the necessary positional accuracy and repeatability, often specified in arcseconds, to meet application requirements. Third, assess the required rotational speed and acceleration, which will influence the choice of drive mechanism (e.g., direct drive for high speed, worm gear for high torque and accuracy). Fourth, consider the environment: does it require sealed units for dust/moisture protection, or specific materials for chemical resistance? Finally, evaluate the physical constraints, including the overall diameter, height, and mounting interface, to ensure compatibility with existing systems.