Mechanical · Robotics

6-Axis Robot Arm with Inverse Kinematics

Advanced 7 weeks 55-80 hours

Build a 6-DOF desktop robot arm and program inverse kinematics for precise end-effector positioning. Demonstrate pick-and-place. One of the strongest robotics portfolio pieces for employers.

Major

Mechanical

Focus area

Robotics

Total hours

55-80 hours

What you'll need

  • MG996R metal gear servo motor 12 pack
  • PCA9685 16-channel servo motor driver controller
  • Arduino Mega 2560 R3 microcontroller board
  • robot arm gripper claw servo mechanical
  • 12V 2A DC power supply adapter
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Steps

  1. Assemble the 6-axis arm with servos and gripper and wire them to the servo driver.
  2. Measure link lengths and set up the arm's kinematic model.
  3. Program inverse kinematics to calculate joint angles for any gripper position.
  4. Test positioning accuracy at several target points.
  5. Program a pick-and-place routine that moves objects between locations.
  6. Film the demo and document the math and build for your portfolio.

What to photograph for your portfolio

  • Robot arm build
  • inverse kinematics demo
  • pick-and-place video
  • workspace envelope
  • accuracy test

Resume bullet starters

Copy one, then swap in your own numbers.

  • Designed and built a 6-Axis robot arm with inverse kinematics using Inverse kinematics, robotics, servo control

  • Applied Python/C++ and motion planning to implement, test, and validate the system end-to-end

  • Quantified performance with [insert your result, such as accuracy, error reduction, response time, or load capacity] after iterative tuning

Skills you'll show off

Inverse kinematicsroboticsservo controlPython/C++motion planningCAD

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