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  2. 321 kinematic structure - Wikipedia

    en.wikipedia.org/wiki/321_kinematic_structure

    An arm design that does not follow these design rules typically requires an iterative algorithm to solve the inverse kinematics problem. The 321 design is an example of a 6R wrist-partitioned manipulator: the three wrist joints intersect, the two shoulder and elbow joints are parallel, the first joint intersects the first shoulder joint ...

  3. Robotic arm - Wikipedia

    en.wikipedia.org/wiki/Robotic_arm

    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. The links of such a manipulator are connected by joints allowing either rotational motion (such as in an articulated robot ) or translational (linear ...

  4. Articulated robot - Wikipedia

    en.wikipedia.org/wiki/Articulated_robot

    Articulated Robot: See Figure. An articulated robot uses all the three revolute joints to access its work space. Usually the joints are arranged in a “chain”, so that one joint supports another further in the chain. Continuous Path: A control scheme whereby the inputs or commands specify every point along a desired path of motion. The path ...

  5. Robot kinematics - Wikipedia

    en.wikipedia.org/wiki/Robot_kinematics

    The robot Jacobian results in a set of linear equations that relate the joint rates to the six-vector formed from the angular and linear velocity of the end-effector, known as a twist. Specifying the joint rates yields the end-effector twist directly. The inverse velocity problem seeks the joint rates that provide a specified end-effector twist.

  6. Delta robot - Wikipedia

    en.wikipedia.org/wiki/Delta_robot

    Delta robot of the FlexPicker series by ABB. Sketchy, a portrait-drawing delta robot [1] A delta robot is a type of parallel robot [2] that consists of three arms connected to universal joints at the base. The key design feature is the use of parallelograms in the arms, which maintains the orientation of the end effector. [3]

  7. SCARA - Wikipedia

    en.wikipedia.org/wiki/SCARA

    The SCARA is a type of industrial robot. The acronym stands for Selective Compliance Assembly Robot Arm [1] or Selective Compliance Articulated Robot Arm. [2] By virtue of the SCARA's parallel-axis joint layout, the arm is slightly compliant in the X-Y direction but rigid in the Z direction, hence the term selective compliance. This is ...

  8. Denavit–Hartenberg parameters - Wikipedia

    en.wikipedia.org/wiki/Denavit–Hartenberg...

    The system of six joint axes S i and five common normal lines A i,i+1 form the kinematic skeleton of the typical six degree-of-freedom serial robot. Denavit and Hartenberg introduced the convention that z-coordinate axes are assigned to the joint axes S i and x-coordinate axes are assigned to the common normals A i,i+1.

  9. Serial manipulator - Wikipedia

    en.wikipedia.org/wiki/Serial_manipulator

    Serial robots usually have six joints, because it requires at least six degrees of freedom to place a manipulated object in an arbitrary position and orientation in the workspace of the robot. A popular application for serial robots in today's industry is the pick-and-place assembly robot, called a SCARA robot, which has four degrees of freedom.

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