The store will not work correctly when cookies are disabled.
We use cookies and tracking technologies to improve your experience and analyze site usage. Some information may be shared with third parties for analytics and advertising. You can accept all cookies or decline non-essential tracking. To find out more about the cookies we use, see our Privacy policy.
The Ruland Slit Coupling is a high-performance, zero-backlash coupling ideal for applications requiring high torsional stiffness and low vibration at high speeds. Suitable for use in confined spaces, this set screw style coupling features two sets of slit cuts for low inertia and no maintenance requirements. It can accommodate all forms of misalignment, protecting small sensitive bearings from high bearing loads. The coupling's balanced design and aluminum construction make it suitable for high-speed applications up to 15,000 RPM. Perfect for use in machinery, equipment, and automation systems where precision and reliability are paramount.
Top product features:
Zero-backlash design for reduced vibration at high speeds up to 15,000 RPM
Two sets of slit cuts for low inertia, no maintenance, and high torsional stiffness
Accommodates all forms of misalignment with low bearing loads to protect small sensitive bearings
This Ruland supplied slit coupling is zero-backlash and has a balanced design for reduced vibration at high speeds up to 15,000 RPM. The coupling is made from a single piece of aluminum and has two sets of slit cuts allowing for low inertia, no maintenance, and high torsional stiffness when compared to beam couplings. It is set screw style and has 0.250" x 6mm bores, 0.984" (25.0mm) OD, and 1.016" (25.80mm) length. This short style slit coupling can fit in confined spaces where the long style may not fit. It can accommodate all forms of misalignment with low bearing loads helping to protect small sensitive bearings. This slit coupling is manufactured by Reliance Precision Ltd. in their facility in County Cork, Ireland and is RoHS and REACH compliant.