REVO 5-axis measurement system

A REVO® system delivers high performance scanning, non-contact inspection and surface finish analysis on a single CMM.


5-axis multi-sensor measurement system

The REVO system uses synchronised motion and 5-axis measurement technology to minimise the dynamic effects of CMM motion at ultra high measurement speeds.

This is achieved by letting the REVO-2 head do the fast demanding motion while the CMM moves in a linear slow fashion. The use of a flexible tip-sensing probe further adds to the system's accuracy and performance. The removable probe system, used in conjunction with a low cost changer, provides added system flexibility.

Speed, accuracy, agility

As a new installation or an accredited upgrade, the REVO 5-axis measurement system offers:

    Surface finish measurement and dimensional inspection.
    15% to 50% cycle time savings.
    Maximised throughput, minimised capital investment.

Renishaw offers a range of CMMs optimised for REVO 5-axis multi-sensor measurement.

New eBook: REVO 5-axis measurement technology

High-speed measurement

    Up to 500 mm/sec resulting in increased part throughput
    Data collection rates up to 4,000 points per second
    Infinite positioning and 5-axis motion reduces non-productive transitions between features
    Rapid calibration with all positions inferred means more time measuring

High system accuracy

    5-axis scanning minimises CMM motion and the associated dynamic errors
    Stylus wear minimised by extremely low scanning forces
    Infinite positioning and five-axis motion aid access to difficult features
    Tip-sensing further adds to the systems' accuracy and flexibility

Great flexibility

    Maximum reach up to 800 mm from centre of head rotation
    Multi-sensor probe and stylus changing capability
    Renishaw UCCserver software application (based on I++ DME command protocol) provides the interface for REVO-2 control
    The removable probe system, used in conjunction with a low cost changer, provides added system flexibility