Linear Actuators
Electric, rod-style, rodless and belt-driven actuators.
Also searched as: electric actuatorlinear stagerodless actuator12v actuator
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Actuator 801VT4, 34 lbf Rated Load, 150 mm Stroke
Rated Load: 34 lbfRatio: 5:1Speed at Full Load: 0.21 in/secStroke: 150 mmVoltage: 12V DC
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Air Hydro Magnetically Coupled Rodless Cylinder
Coupling: Magnetically CoupledType: Rodless
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B-Track K2 Linear Actuator
Dynamic Load Capacity: 600 lbfRated Load: 600 lbfSpeed at Full Load: 0.9 in/secStatic Load Capacity: 3000 lbf
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B-Track K2 Linear Actuator, 1200 lbf Rated Load
Dynamic Load Capacity: 1200 lbfRated Load: 1200 lbfSpeed at Full Load: 0.5 in/secStatic Load Capacity: 3000 lbf
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B-Track K2 Linear Actuator, 1200 lbf Rated Load, 4 in Stroke
Rated Load: 1200 lbfRatio: 20:1Stroke: 4 inVoltage: 12V DC
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B-Track K2 Linear Actuator, 1200 lbf Rated Load, 6 in Stroke
Rated Load: 1200 lbfRatio: 20:1Stroke: 6 inVoltage: 12V DC
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B-Track K2x Linear Actuator, 1200 lbf Rated Load
Dynamic Load Capacity: 1200 lbfRated Load: 1200 lbfSpeed at Full Load: 0.9 in/secStatic Load Capacity: 3000 lbf
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B-Track K2x Linear Actuator, 2200 lbf Rated Load
Rated Load: 2200 lbfVoltage: 12V DC
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Electric Valve Actuator
Type: On/OffVoltage: 12V AC/DC
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Electric Valve Actuator
Type: On/OffVoltage: 12V AC/DC
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Rodless Air Cylinder
Type: Rodless
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Rodless Air Cylinder
Bore Diameter: 32 mmStroke Length: 305 mm
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Rodless Air Cylinder
Bore Diameter: 25 mmStroke Length: 10.5 inch
About linear actuators
Linear actuators convert rotary motion from a motor into linear motion, typically for pushing, pulling, lifting, or positioning applications. They are broadly categorized into rod-style, rodless, and belt-driven types. Rod-style actuators feature an extending and retracting rod, driven by a lead screw or ball screw, often enclosed within a housing. Rodless actuators, conversely, move a carriage along a fixed body, utilizing internal screws, belts, or cables, offering a more compact footprint for a given stroke length. Belt-driven actuators use an external timing belt to move a carriage, suitable for high-speed, longer-stroke applications. Key selection parameters include stroke length, force capacity (e.g., in lbf or N), speed (mm/s or in/s), and positional accuracy or repeatability (micrometers). Input voltage (e.g., 12V, 24V DC, or AC), motor type (stepper, servo, brushed/brushless DC), and duty cycle are also critical. Common materials include aluminum alloys for bodies and carriages, stainless steel for rods and lead screws, and various engineering plastics for components like nuts and guides. Finishes often involve anodizing for corrosion resistance or clear coatings.
How to choose
When selecting a linear actuator, first define the application's primary requirement: force, speed, or precision. For high force or precision, a ball screw-driven rod-style or rodless actuator is typically preferred. For high speed or long strokes with moderate force, consider belt-driven units. Next, determine the required stroke length and the available envelope. Rodless actuators offer a shorter overall length for a given stroke. Third, specify the duty cycle and environmental conditions; this impacts motor selection and IP rating. Finally, consider control requirements: simple on/off, positional feedback with limit switches, or closed-loop servo control for dynamic positioning. This sequence narrows down the viable actuator types and drive mechanisms.