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Designed to grip evenly around your shaft, these couplings provide more holding power than set screw couplings without marring the shaft.
Also called double-loop couplings, these have a flexible center that reduces vibration and compensates for high parallel and angular shaft misalignment.
Tighten the set screws to fasten these couplings to your shaft. Set screws bite into the shaft to hold the couplings in place.
Specially designed ridges allow these bellows couplings to compensate for more misalignment than other precision couplings—useful for low-torque, high-precision applications such as instrumentation and motion control.
Able to handle high twisting forces as well as misalignment, these couplings are good for high-performance servomotor applications.
With a bellows between two hubs, these couplings handle all types of misalignment and are good for precision stepper and encoder motion-control applications.
Each hub includes a set screw (unless noted), which bites into your shaft to hold the coupling in place.
Each hub includes a set screw, which bites into your shaft to hold the coupling in place.
Magnetic force transfers torque from one half of these couplings to the other; there’s no contact between the parts, so they won’t wear. Couplings compensate for angular and parallel misalignment.
Set screws bite into your shaft to hold these couplings in place.
Designed to grip evenly around your shaft, clamping couplings provide more holding power than set screw couplings without marring the shaft.
These U-joints are made of steel or zinc.
These pin-and-block style U-joints work at lower speeds but transmit greater torque than needle-bearing joints.
To protect power-transmission components from damage, these couplings will shear or tear in overtorque conditions (approximately 10-20 times the maximum rated torque) to sever connections between shafts.
Use these with an overload sensor in an automated system to instantly disconnect power and prevent damage. Couplings also accelerate loads from zero to full speed in less than three milliseconds when the power is turned on.
Prevent damage from overloading. When overloaded, these limiters cause your sprocket or pulley to slip. Once the overload is removed, the limiters automatically reset.