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World’s strongest and most reliable clamping system from SCHUNK

By Lisa Eitel | March 13, 2017

VERO-S NSL Sync your workholding with your machine for ultimate spindle uptime today. Set up changes are reduced by 90% with this fast, extremely accurate quick change, workholding, and positioning system. Infinite combinations are possible as any workholding can be mounted on top, from a standard vise to a custom fixture, for a reliable and consistent changeover. More after the jump.

For a micron-precise connection between machine table and workpiece, the VERO-S clamping system makes optimal use of even the smallest machine table. Combine with the comprehensive SCHUNK stationary workholding range or your existing workholding to find the solution to your clamping needs. VERO-S quick-change pallet system delivers fast and precise resetting of workpieces, clamping devices and other equipment on 3, 4, or 5-axis machining centers. Workpieces can be directly clamped and machined from five sides without restricting accessibility. This is done by screwing the clamping pins of the Quick-Change Pallet System directly into the workpiece.

The components are then quickly exchanged in the machine, positioned, fixed, and clamped all in one step with a repeat accuracy of less than 0.005 mm. The clamping height of the workpieces can be adjusted with module height extensions, so the machine spindle can reach all five sides of the workpiece without any special tools.


SCHUNK is a German family-owned company and global player in one – a competence and world market leader for clamping technology and gripping systems. SCHUNK designs and manufactures an unmatched selection of gripping systems including grippers, rotary modules, linear modules, robotic components, sensors and accessories. With a total of 11,000 standard components, SCHUNK offers the world’s largest assortment of clamping technology and gripping systems.

About The Author

Lisa Eitel

Lisa Eitel has a B.S. in Mechanical Engineering and 17 years of experience as a technical writer. Her areas of focus include motors, drives, motion control, power transmission, robotics, linear motion, and sensing and feedback technologies.

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