Unlock New Possibilities with 3D Dynamic Focus Technology

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Someone asked, “It turns out that the application scenarios of 3D laser processing technology are far more extensive than I imagined.”

The answer is YES.

As a component supplier, FEELTEK has been committed to unlocking the potential of 3D laser dynamic focusing technology. It has offered innovative industrial laser solutions to various sectors, including but not limited to 3C(Compter/Communication/Consumer Electronics), Additive Manufacturing, Automotive, and Electronics.

Now, let’s discuss the benefits of the 3D dynamic focusing system.

Key Technical Advantages:

Large – Area Seamless Processing:
With a working area of up to 1200x1200mm, it eliminates stitching gaps and overlaps, enabling single – pass processing for high efficiency. Customized sizes are also available to meet specific production requirements.

Deep Z-Axis Control:
Achieves precise laser focus adjustment along the Z-axis with a depth of up to 200 mm, ensuring consistent quality on both standard and highly irregular 3D surfaces—from gentle curves to complex contours.

High – Speed Dynamic Response:
Equipped with a high – response scanhead and real – time Z – axis compensation, it maintains consistent focus and processing quality even at high speeds and on surfaces with variable topographies.

Multi – Process Compatibility: It supports a wide variety of laser applications, such as etching, engraving, cleaning, cutting, welding, and additive manufacturing.
FEELTEK’s 3D dynamic focus system is spurring innovation across multiple industries, including additive manufacturing, 3C electronics, automotive, textiles, polymer processing, die cutting,etc. By enabling the processing of materials and geometries that were once difficult to handle, we are actively seeking new opportunities to expand its application scope. Integrating the 3D dynamic focus system can break through dimensional constraints, improve efficiency, and open up new possibilities in design and fabrication.


Post time: Nov-04-2025