Explore every major type of robot gripper and use our part geometry selection matrix to choose the right end-of-arm tool for your automation application.
Technical guides on robot grippers, tooling, and end-of-arm tooling (EOAT) for industrial robots
Explore every major type of robot gripper and use our part geometry selection matrix to choose the right end-of-arm tool for your automation application.
Explore how mechanical grippers work—covering linkage mechanisms, cam actuation, and jaw configurations—and how they power industrial robot automation.
Explore how soft grippers work, their key actuation methods, bio-inspired designs, and how compliant end-effectors are reshaping industrial automation and robot
Learn how electric grippers use servo control, force feedback, and programmability to transform industrial automation and precision material handling.
Compare permanent and electromagnetic grippers for industrial robotics. Learn key selection criteria including payload, duty cycle, safety, and AMR integration.
Learn how parallel grippers work, how two-finger mechanics operate, and how to select the right stroke for your robotic automation application.
A complete integrator’s guide to End of Arm Tooling (EOAT): types, selection criteria, integration tips, and how EOAT pairs with AMRs and autonomous forkl