Nanosecond laser TruMicro 7000
short-pulsesolid-stateinfrared

Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared
Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared
Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared - image - 2
Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared - image - 3
Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared - image - 4
Nanosecond laser - TruMicro 7000  - TRUMPF lasers - short-pulse / solid-state / infrared - image - 5
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Characteristics

Operational mode
nanosecond, short-pulse
Technology
solid-state
Spectrum
infrared
Applications
cutting, drilling, for automotive applications, for metal
Other characteristics
high-performance, high-energy, water-cooled
Power

1,000 W, 2,000 W

Wavelength

1,030 nm

Description

The high-performance short-pulse lasers from the TruMicro Series 7000 are based on disk laser technology and combine short pulses with high pulse energies, even with high frequencies. The lasers are therefore ideal for large-scale and quick cleaning, ablation, or structuring with maximum throughput. Thanks to the flexible beam guidance, the lasers can be easily integrated into your manufacturing system and are fully compatible with our scanner optics from the PFO series, which enables precise processing of large surfaces. Short pulses – high performance The ideal combination for your micro-processing requirements. One disk - a range of parameter uses You can also clean or temper large components and find the right operating point for them. Full power The internal power regulation provides the full pulse energy for your process. One laser – up to four laser outputs The configurable power distribution allows for optimal adaptation to your application. Built for maximum performance The particularly powerful short-pulse lasers of the TruMicro Series 7000 can ablate layers quickly and on a large scale, drill or cut with high throughput. With pulse energies of up to 100 mJ, they can achieve tremendous decoating rates with an excellent level of efficiency. You can vary the rate of repetition of the lasers while maintaining an even pulse duration, thereby optimizing your machining processes. Large surfaces can be ablated particularly efficiently through the use of scanners.

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