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  2. Linear actuator - Wikipedia

    en.wikipedia.org/wiki/Linear_actuator

    A linear actuator is an actuator that creates linear motion (i.e., in a straight line), ... Precise position control impossible except at full stops Wax motor:

  3. Servomotor - Wikipedia

    en.wikipedia.org/wiki/Servomotor

    This is the steering actuator of a large robot vehicle. Industrial servomotors and gearboxes, with standardised flange mountings for interchangeability. A servomotor (or servo motor or simply servo) [1] is a rotary or linear actuator that allows for precise control of angular or linear position, velocity, and acceleration in a mechanical system.

  4. Valve actuator - Wikipedia

    en.wikipedia.org/wiki/Valve_actuator

    Gate Valve with Handwheel (L) and with Linear Pneumatic Actuator (R) A linear actuator opens and closes valves that can be operated via linear force, the type sometimes called a "rising stem" valve. These types of valves include globe valves, rising stem ball valves, control valves and gate valves. [2] The two main types of linear actuators are ...

  5. Stewart platform - Wikipedia

    en.wikipedia.org/wiki/Stewart_platform

    A Stewart platform is a type of parallel manipulator that has six prismatic actuators, commonly hydraulic jacks or electric linear actuators, attached in pairs to three positions on the platform's baseplate, crossing over to three mounting points on a top plate.

  6. Servomechanism - Wikipedia

    en.wikipedia.org/wiki/Servomechanism

    The windmill fantail is an earlier example of automatic control, but since it does not have an amplifier or gain, it is not usually considered a servomechanism. The first feedback position control device was the ship steering engine, used to position the rudder of large ships based on the position of the ship's wheel. John McFarlane Gray was a ...

  7. Actuator - Wikipedia

    en.wikipedia.org/wiki/Actuator

    The displacement achieved is commonly linear or rotational, as exemplified by linear motors and rotary motors, respectively. Rotary motion is more natural for small machines making large displacements. By means of a leadscrew, rotary motion can be adapted to function as a linear actuator (which produces a linear motion, but is not a linear motor).

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