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  2. Manipulator (device) - Wikipedia

    en.wikipedia.org/wiki/Manipulator_(device)

    In robotics, a manipulator is a device used to manipulate materials without direct physical contact by the operator. The applications were originally for dealing with radioactive or biohazardous materials, using robotic arms , or they were used in inaccessible places.

  3. Kibō (ISS module) - Wikipedia

    en.wikipedia.org/wiki/Kibō_(ISS_module)

    Close view of the exterior panels of the Pressurized Module and Logistics Module, during STS-132 A prototype for the Small Fine Arm was tested during the STS-85 space shuttle mission in 1997. [21] Kibō is the largest single ISS module: Pressurized module [22] Length: 11.19 metres (36.7 ft) Diameter: 4.39 metres (14.4 ft)

  4. Robotic arm - Wikipedia

    en.wikipedia.org/wiki/Robotic_arm

    The Canadarm while deploying a payload from the cargo bay of the Space Shuttle. A robotic arm is a type of mechanical arm, usually programmable, with similar functions to a human arm; the arm may be the sum total of the mechanism or may be part of a more complex robot.

  5. Industrial robot - Wikipedia

    en.wikipedia.org/wiki/Industrial_robot

    A full parallel manipulator can move an object with up to 6 degrees of freedom (DoF), determined by 3 translation 3T and 3 rotation 3R coordinates for full 3T3R mobility. However, when a manipulation task requires less than 6 DoF, the use of lower mobility manipulators, with fewer than 6 DoF, may bring advantages in terms of simpler ...

  6. Mobile Servicing System - Wikipedia

    en.wikipedia.org/wiki/Mobile_Servicing_System

    The station received a second robotic arm during STS-124, the Japanese Experiment Module Remote Manipulator System (JEM-RMS). The JEM-RMS is primarily used to service the JEM Exposed Facility. An additional robotic arm, the European Robotic Arm (ERA) was launched alongside the Russian-built Multipurpose Laboratory Module on July 15, 2021.

  7. Parallel manipulator - Wikipedia

    en.wikipedia.org/wiki/Parallel_manipulator

    A manipulator can move an object with up to 6 degrees of freedom (DoF), determined by 3 translation 3T and 3 rotation 3R coordinates for full 3T3R mobility. However, when a manipulation task requires less than 6 DoF, the use of lower mobility manipulators, with fewer than 6 DoF, may bring advantages in terms of simpler architecture, easier control, faster motion and lower cost. [2]

  8. Linear actuator - Wikipedia

    en.wikipedia.org/wiki/Linear_actuator

    A mechanical linear actuator with digital readout (a type of micrometer). Roller screw actuation with traveling screw (rotating nut). Mechanical linear actuators typically operate by conversion of rotary motion into linear motion.

  9. Degrees of freedom (mechanics) - Wikipedia

    en.wikipedia.org/wiki/Degrees_of_freedom_(mechanics)

    An example of a simple open chain is a serial robot manipulator. These robotic systems are constructed from a series of links connected by six one degree-of-freedom revolute or prismatic joints, so the system has six degrees of freedom. An example of a simple closed chain is the RSSR spatial four-bar linkage.