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Electro Mechanical Rotary Encoder

Supplier : Apple Automation And Sensor

Key Features of Electro Mechanical Rotary Encoder
  • Electro-mechanical device that converts the angular position of a shaft or axle to an analog or digital code, making it an angle transducer.
  • There are two main types: absolute and incremental.
  • The absolute digital type produces a unique digital code for each distinct angle of the shaft.
  • Incremental rotary encoders are used to track motion and can be used to determine position and velocity. This can be either linear or rotary motion.
  • Direction can be determined so very accurate measurements can be made.
  • Industrial controls.
  • Robotics.
  • Expensive photographic lenses.
  • Computer input devices [such as optomechanical mice and trackballs].
  • Rotating radar platforms.
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Product Profile of Electro Mechanical Rotary Encoder
Electro Mechanical Rotary Encoder is a device that converts the angular position of a shaft or axle to an analog or digital code, making it an angle transducer. The Rotary Encoder is used in application that require precise shaft rotation including industrial controls, robotics, expensive photographic lenses, computer input devices [such as optomechanical mice and trackballs], and rotating radar platforms. The Rotary Encoder is available in two versions such as absolute and incremental type rotary encoder.

Electro Mechanical Rotary Encoder is manufactured by Apple Automation & Sensor. Apple Automation & Sensor also manufactures a wide range of industrial process instruments that include proximity sensor, optical sensor, relay card, special sensor, flow switch, tower lamp, power supply, panel accessories and relay.

Key Features of Electro Mechanical Rotary Encoder
  • Electro-mechanical device that converts the angular position of a shaft or axle to an analog or digital code, making it an angle transducer.
  • There are two main types: absolute and incremental.
  • The absolute digital type produces a unique digital code for each distinct angle of the shaft.
  • Incremental rotary encoders are used to track motion and can be used to determine position and velocity. This can be either linear or rotary motion.
  • Direction can be determined so very accurate measurements can be made.
  • Industrial controls.
  • Robotics.
  • Expensive photographic lenses.
  • Computer input devices [such as optomechanical mice and trackballs].
  • Rotating radar platforms.
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