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AKO 600

Laser micromachining workstation for increased throughput. The working area of 600x400x200 mm enables the machining of larger parts or large pallets of smaller ones. Increased size allows multiple laser sources and a wider selection of beam-shaping devices.

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  • Product details


    • Equipped with world-leading, up to 80W, femtosecond laser source for the best surface finish and high throughput

    • High-accuracy positioning stages and galvo scanners assure the highest accuracy and part-to-part repeatability

    • Integrated machine vision and calibration tools allow automated precision machining


    • AKO 600 can be configured with multiple wavelengths, fixed beam, and galvo scanner optics to match your application requirement

    • AKO 600 can be configured with two Z stages for different requirements of high load and high dynamic range

    • Our software platform allows performing different machining processes on the same machine

    • AKO 600 can be equipped with a gimbal for 5-axis + 3D galvo scanner machining of 3D shapes


    • AKO 600 is designed for easy use in multiple applications

    • 2D and 3D CAD models can be imported directly into the machine software

    • Integrated machine vision provides instant quality inspection for process tuning

    • The 3D surface profiler can be integrated as an option, for an all-in-one process development tool


    AKO 600 is a versatile tool suitable for multiple applications.

    • SSAIL
    • Glass cutting
    • Glass marking
    • Drilling
    • Micro cutting
    • Laser process R&D


    Standard configuration Options
    Laser source DPSS femtosecond laser Fiber femtosecond laser, fiber nanosecond laser, multiple wavelengths
    Average laser power 40 W 10 - 200 W
    Positioning system XYZ linear stages, 2D galvo scanner XYZ1Z2 AB stages, 3D galvo scanner, Synchronized stages + galvo scanner motion, 5-axis galvo scanner for 0 taper cutting
    Travel range 600x400x200 mm
    Machine vision Integrated machine vision with automatic pattern recognition 3D surface profiler

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