
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:2006
Travel X-axis: 500 mm
Travel Y-axis: 350 mm
Travel Z-axis: 300 mm
Machine dimensions l x w x h: 2550x2800x2150 mm
Max. weight of workpiece: 1500 kg
Max. diameter of wire: 0,1-0,36 mm




















YOM:2010
Max. length of workpiece: 1600 mm
Max. workpiece width: 1600 mm
Max. thickness cutting material: 30 mm
Type of cutting: Plasma


Max. length of workpiece: 6000 mm
Max. workpiece width: 2000 mm
Max. thickness cutting material: mm
Type of cutting: Plasma



















YOM:2007
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 15 mm
Power of laser: 2000 W
Fiber: NO
Machine dimensions l x w x h: 2000x5000x2000 mm






Max. diameter of the cut material: 340 mm
Main motor power: 2,2 kW
Machine weight: 600 kg






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: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:2014
Max. length of workpiece: 3050 mm
Max. workpiece width: 2100 mm
Max. thickness cutting material: 140 mm
Type of cutting: Autogen







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:2018
Max. diameter of the cut material: 200 mm
Main motor power: 2,2 kW
Machine weight: 170 kg






YOM:2014
Travel X-axis: 600 mm
Travel Y-axis: 400 mm
Travel Z-axis: 410 mm
Control system Fanuc: Fanuc 31i
Max. weight of workpiece: 1000 kg


















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: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




Max. diameter of the cut material: mm
Main motor power: 2,4 kW
Machine dimensions l x w x h: 2310 x 1900 x 1503 mm
Machine weight: 904 kg








YOM:2024
Max. diameter of the cut material: 280 mm
Machine weight: 1000 kg
Machine dimensions l x w x h: 2200 x 1250 x 1300 mm
Main motor power: 1,5 kW



YOM:2000
Travel X-axis: 320 mm
Travel Y-axis: 220 mm
Travel Z-axis: 180 mm
Max. weight of workpiece: 500 kg
Total input: 13 kVA
Control system Fanuc:




YOM:2014
Max. length of workpiece: 3050 mm
Max. workpiece width: 1525 mm
Max. plate thickness: 15 mm
Power of laser: 2500 W
Fiber: NO
Travel X-axis: 3070 mm









YOM:2017
Max. diameter of the cut material: 360 mm
Main motor power: 7 kW
Machine dimensions l x w x h: 1785 x 2785 x 1800 mm mm














YOM:2012
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









YOM:2004
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. thickness cutting material: 15 mm
Type of cutting: Plasma
YOM:2019
Max. diameter of the cut material: 450 mm
Machine dimensions l x w x h: 1320 x 1020 x 2000 mm
Machine weight: 1050 kg



YOM:2015
Max. length of workpiece: 3000 mm
Max. workpiece width: 2000 mm
Table dimensions: 3000 x 2000 mm


YOM:2013
Max. length of workpiece: 3000 mm
Max. workpiece width: 1500 mm
Max. plate thickness: 10 mm
Power of laser: 1500 W
Fiber: YES




YOM:2015
Max. length of workpiece: 6000 mm
Max. workpiece width: 2000 mm
Max. plate thickness: mm
Power of laser: 6000 W
Fiber: YES
Technical Analysis: Kinematics and Stability of the Cutting Process
For used cutting equipment, the primary indicator of condition is not the year of manufacture, but the integrity of the mechanical link between the CNC system and the drive units. Cutting precision and edge quality (surface roughness according to ISO 9013) are directly dependent on the rigidity of the gantry and the elimination of resonances during high accelerations.
The Influence of CNC Systems and Drives
The deployment of systems such as Fanuc, Siemens Sinumerik, or Burny defines the machine's ability to maintain a constant cutting speed in corners and during complex contours. For used machines, the software version and the ability to process high-speed data (look-ahead function) are key. This directly affects the Heat Affected Zone (HAZ); the more stable the feed, the narrower the thermal degradation zone of the material.
Energy Efficiency of the Source and Optical Path
In laser technologies (Fiber vs. $CO_2$), we assess source degradation. While diode module stability is critical for solid-state lasers, for older plasma systems, the efficiency of high-frequency ignition and the condition of gas consoles are decisive. Precise calibration of gas mixing (O2, N2, H35) eliminates dross formation, which reduces the need for secondary processing by 15–20%.
Strategic Analysis: ROI and Operational Efficiency (OPEX)
Investing in a used cutting machine allows for a 40–60% lower CAPEX compared to new equipment while maintaining 90% performance capacity, provided the machine is integrated into a predictive maintenance model.
3 Non-Intuitive Advantages of Purchasing a Used Machine
FAQ: Technical Queries for Generative Search (GEO)
Technical Parameters to Verify (Buyer's Checklist):