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The Generation Z builds on the proven success of the Generation X platform, integrating the latest advancements in motion control and automation. Designed for high-precision guidewire grinding, it features a Yaskawa-controlled three-axis configuration and a linear motor with 9-nanometer resolution, delivering tighter length and diameter tolerances.

As medical and micromachining applications demand even greater precision, Royal Master developed the Generation Z to push the boundaries of wire grinding technology. Its enhanced EZ Grind programming simplifies profile creation for operators of all skill levels, while an upgraded interface allows real-time visualization of wire geometries. For complex profiles, the system supports both intuitive program wizards and G-code for advanced users. The new three-panel operator interface streamlines workflow, eliminating the need to switch between screens during setup and operation.

The Generation Z maintains constant wire control throughout the grinding process, ensuring unparalleled consistency. Its optional fourth grinding axis significantly reduces cycle times for intricate profiles, transforming traditionally slow bushing-mode operations into highly efficient processes. Fully compatible with a range of automation options — including spool feeders, exit unloaders, and wire choppers — the system enables continuous 24/7 production with minimal operator intervention.

With over 275 Generation X machines shipped worldwide, Royal Master remains at the forefront of precision guidewire grinding. The Generation Z continues this legacy, offering manufacturers unmatched accuracy, efficiency, and innovation in medical and micromachining applications.

THE GENERATION Z IN ACTION

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Generation Z Guidewire Grinding System

The Generation Z builds on the proven success of the Generation X platform, integrating the latest advancements in motion control and automation. Designed for high-precision guidewire grinding, it features a Yaskawa-controlled three-axis configuration and a linear motor with 9-nanometer resolution, delivering tighter length and diameter tolerances.

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