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  2. Electrohydraulic servo valve - Wikipedia

    en.wikipedia.org/wiki/Electrohydraulic_servo_valve

    A servo valve receives pressurized hydraulic fluid from a source, typically a hydraulic pump. It then transfers the fluid to a hydraulic cylinder in a closely controlled manner. Typically, the valve will move the spool proportionnaly to an electrical signal that it receives, indirectly controlling flow rate.

  3. File:Schema single-stage servo valve3.svg - Wikipedia

    en.wikipedia.org/wiki/File:Schema_single-stage...

    English: Sectional diagram of a single stage servo-valve with linear motor and Linear Variable Differential Transformer (LVDT). Is=Current to solenoid, P A T B are gates, sig=signal. initial position Is=Current to solenoid, P A T B are gates, sig=signal. initial position

  4. Electro-hydraulic actuator - Wikipedia

    en.wikipedia.org/wiki/Electro-hydraulic_actuator

    Here, small valves were attached to the original control cables, controlling the flow of oil into an associated actuator connected to the control surface. One of the earliest fittings of a hydraulic boost system was to ailerons on late-war models of the P-38L, removing the need for great human strength to achieve a higher rate of roll. [2]

  5. Actuator - Wikipedia

    en.wikipedia.org/wiki/Actuator

    The control signal is relatively low in energy and may be voltage, electric current, pneumatic, or hydraulic fluid pressure, or even human power [clarification needed]. [3] In the electric, hydraulic, and pneumatic sense, it is a form of automation or automatic control .

  6. Servomechanism - Wikipedia

    en.wikipedia.org/wiki/Servomechanism

    Globe control valve with pneumatic actuator and "positioner". This is a servo which ensures the valve opens to the desired position regardless of friction. A common type of servo provides position control. Commonly, servos are electric, hydraulic, or pneumatic.

  7. Control valve - Wikipedia

    en.wikipedia.org/wiki/Control_valve

    A control valve is a valve used to control fluid flow by varying the size of the flow passage as directed by a signal from a controller. [1] This enables the direct control of flow rate and the consequential control of process quantities such as pressure , temperature , and liquid level.