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Electrostatic actuator (1)

Efficiently convert electrostatic attraction into mechanical work! Invention of a small electrostatic actuator.

In this invention, the electrostatic actuator utilizes the phenomenon where the gap distance between a pair of opposing electrodes changes due to the electrostatic attraction generated when a voltage is applied to the electrodes. To achieve a sufficient amount of displacement as an actuator, the electrostatic attraction was initially small, making it difficult to obtain a large output, which was a challenge. Therefore, an elastic body, such as a spring, was used not only as a support but also as a component to store mechanical energy. As a result, a compact electrostatic actuator was developed that efficiently converts electrostatic attraction into mechanical work by transforming it into elastic force. [Research Summary] - Capable of performing work after converting electrostatic attraction into elastic force - Efficiently converts electrostatic attraction into mechanical work - Can generate large forces and work while being compact *For more details, please refer to the PDF materials or feel free to contact us.

  • Solenoid Actuators
  • Actuator

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Electrostatic actuator (2)

Introducing an invention that efficiently converts the electrostatic attraction between electrodes into mechanical work, resulting in a significant generation of force.

Electrostatic attraction has the characteristic of increasing sharply as the distance between electrodes decreases. In conventional electrostatic actuators, the initial driving force is weak, and furthermore, the driving force is consumed in the deformation of the supporting members for the movable components, resulting in a reduced force that can be extracted externally. In this invention, by utilizing nonlinear springs and the like as members for storing mechanical energy, an electrostatic actuator is produced. By using springs, particularly nonlinear expanding and contracting springs, to convert the work done by electrostatic attraction into elastic energy, it is possible to efficiently convert electrostatic attraction into mechanical work, generate large forces and work, and also create a compact design. [Research Overview] ■ Efficiently converts electrostatic attraction between electrodes into mechanical work, resulting in a large generated force. ■ Ultra-compact. ■ Current flows only during the initial charging phase, making it energy-efficient. *For more details, please refer to the PDF document or feel free to contact us.

  • Solenoid Actuators
  • Actuator

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