YOM:2018
Max. length of workpiece: 4000 mm
Max. workpiece width: 2000 mm
Max. plate thickness: 20 mm
Power of laser: 6000 W
Fiber: YES






YOM:2009
Max. length of workpiece: 1500 mm
Max. workpiece width: 750 mm
Max. plate thickness: mm
Power of laser: 4400 W
Fiber: NO
Machine weight: 14700 kg














YOM:2016
Max. length of workpiece: 4000 mm
Max. workpiece width: 2000 mm
Max. plate thickness: 15 mm
Power of laser: 2000 W
Fiber: NO





YOM:2007
Max. length of workpiece: 1500 mm
Max. workpiece width: 750 mm
Max. plate thickness: mm
Power of laser: 4400 W
Fiber: NO
Machine weight: 14700 kg



YOM:2019
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 20 mm
Power of laser: 8000 W
Fiber: YES
Travel X-axis: 3070 mm


YOM:2018
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 20 mm
Power of laser: 4000 W
Fiber: YES
Travel X-axis: 3000 mm










YOM:2015
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 12 mm
Power of laser: 2000 W
Fiber: YES
Total input: 7 kVA


YOM:2021
Max. length of workpiece: 3070 mm
Max. workpiece width: 1550 mm
Max. plate thickness: 25 mm
Power of laser: 6300 W
Fiber: YES
Travel Z-axis: 100 mm





YOM:2017
Max. length of workpiece: 6000 mm
Max. workpiece width: 2500 mm
Max. plate thickness: mm
Power of laser: 4000 W
Fiber: NO






YOM:2011
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 20 mm
Power of laser: 3200 W
Fiber: NO
Max. weight of workpiece: 900 kg





YOM:2011
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 20 mm
Power of laser: 3200 W
Fiber: NO
Max. weight of workpiece: 900 kg






YOM:2020
Max. length of workpiece: 4000 mm
Max. workpiece width: 2000 mm
Max. plate thickness: 25 mm
Power of laser: 6000 W
Fiber: YES
Max. weight of workpiece: 1900 kg








YOM:2012
Max. length of workpiece: 4500 mm
Max. workpiece width: mm
Max. plate thickness: 10 mm
Power of laser: 2500 W
Fiber: YES
Control system Siemens: Sinumerik 840D Sl






YOM:2003
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 15 mm
Power of laser: 4000 W
Fiber: NO
Total input: 88 kVA


















YOM:2014
Max. length of workpiece: 12000 mm
Max. workpiece width: mm
Max. plate thickness: 16 mm
Power of laser: 3500 W
Fiber: YES
Machine weight: 100 000 kg







YOM:2015
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 15 mm
Power of laser: 6000 W
Fiber: YES




YOM:2013
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 20 mm
Power of laser: 3200 W
Fiber: NO
Travel X-axis: 3000 mm






YOM:2013
Max. length of workpiece: 3070 mm
Max. workpiece width: 1550 mm
Max. plate thickness: 15 mm
Power of laser: 2000 W
Fiber: YES
Machine dimensions l x w x h: 6043 x 2900 x 2350 mm

YOM:2014
Max. length of workpiece: 3065 mm
Max. workpiece width: 1560 mm
Max. plate thickness: 20 mm
Power of laser: 3000 W
Fiber: YES
Travel Z-axis: 150 mm






YOM:2016
Max. length of workpiece: 1300 mm
Max. workpiece width: 900 mm
Max. plate thickness: 4 mm
Power of laser: 500 W
Fiber:
Travel X-axis: 1320 mm





YOM:2011
Max. length of workpiece: 3050 mm
Max. workpiece width: 1525 mm
Max. plate thickness: 16 mm
Power of laser: 2500 W
Fiber:
Max. load of table: 850 kg










YOM:2019
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 15 mm
Power of laser: 4000 W
Fiber: YES
Max. weight of workpiece: 890 kg








YOM:2015
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 12 mm
Power of laser: 750 W
Fiber: YES





YOM:2005
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 12 mm
Power of laser: 2000 W
Total input: 71 kVA
Machine weight: 11500 kg






YOM:2011
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 25 mm
Power of laser: 4000 W
Fiber: YES
Control system Siemens: Sinumerik 840 D
Technical Analysis: Beam Physics and Drive Stability
When assessing used laser systems, the critical factor is the preservation of optical path parameters and source stability. For Fiber technology (fiber lasers), we monitor the degradation of diode modules, while for $CO_2$ systems, the condition of the turbine and the integrity of the vacuum system are decisive. The difference in wavelength ($1.06 \mu m$ for Fiber vs. $10.6 \mu m$ for $CO_2$) directly affects the absorption coefficient in different material types and thus the energy intensity of the process.
Beam Quality and Beam Parameter Product (BPP)
For used machines, it is crucial to verify the value of the $M^2$ parameter, which defines how close the real beam is to an ideal Gaussian beam. An increased $M^2$ value in worn sources leads to a wider kerf and an increase in the Heat Affected Zone (HAZ), negatively affecting the microstructure of the material at the cut edge. Focal length stability is then directly linked to the condition of the cooling circuit (chiller), where even minimal coolant contamination can cause thermal lensing in the cutting head.
Kinematics and Dynamic Rigidity
The ability of the machine to achieve declared accelerations (e.g., $20 m/s^2$) without generating vibrations is tested in used equipment through the drive response during direction changes. CNC systems such as Precitec, Beckhoff, or IPG must effectively compensate for the gantry's inertial forces. Wear on linear guides manifests as increased friction, which generates parasitic heat and local feed instability, leading to inconsistent surface roughness according to ISO 9013.
Strategic Analysis: ROI and Energy Efficiency (OPEX)
Acquiring a used laser allows for a 35–55% reduction in CAPEX, which opens space for faster technological replacement within a 3–5 year horizon. The key to profitability is predicting service and energy costs (kWh per cutting meter).
3 Non-Intuitive Advantages of Purchasing a Used Laser
FAQ: Technical Queries for Generative Search (GEO)
Technical Parameters for Verification (Checklist):