LASER CUTTING SYSTEM
FEATURES
Ultra Hard Material Cutting PCD,CVD, CBDN,TITANIUM, PLATINIUM, TUNGSTEN, ALUMINA SUBSTRATE & PRECIOUS METAL, TOOL, Slice, DRILLING & MICRO Cutting
SAFETY SPECIFICATIONS
Comparison of Conventional and SYNOVA Laser Water MicroJet Laser Beams
(LEFT) The conventional focused laser beam has a limited
working distance of just a few millimeters to even
fractions of a millimetre due to beam divergence.
This not only makes precise focusing and distance
control necessary, it also limits the ratio of kerf
width to depth.
(RIGHT) The LMJ technology employs a laser beam that is
completely reflected at the air-water interface. The beam
can be guided over a distance of up to 10 cm, enabling
parallel high aspect ratio kerfs. No focusing or distance
control is required.


UTILITY


GENERAL SPECIFICATION
| Axis | BLADE II | ||
|---|---|---|---|
| Working Volume | mm (W x D x H) | 150 x 150 x 50 | |
| XY axis | Precise Motor | ||
| Maximum Stroke | mm (X,Y) | 150 x 1500 | |
| Accuracy | µm | +/- 3 | |
| Repeatability | µm | +/- 2 | |
| Maximum XY Speed | mm/s | 50 | |
| CNC Control (Panasonic/Fuji) | mm (W x D x H) | 2,3 Or 4 Axis | |
| Cutting Fixture | |||
| Fixture | 10 CVD Block Holder | Fixed-Cutting Single Side & Single Turn Tool | |
| Laser | |||
| Laser Type | Laser Type | ||
| Wavelength | nm | 532/1064 | |
| Average Power | W (max.) | 50-100 | |
| Beam transmission (Optical Fibre) | μm (core diameter) | 150-200 | Water Pump |
| Water Flow | I/h (Average) | 1 | |
| Water Pressure | bar (max.) | 200-350 | |
| Jet nozzle Diameter | µm | 40-80 | Water Treatment System |
| Resistivity | MΩ.cm | >15 | |
| TOC | ppb | <30 | |
| Filtration | µm | 0.2 | |
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