Fiber Laser Cutters | Industrial manufacturing, automotive/aerospace | 3000W+ fiber laser (Raycus, 3000x5000mm cutting area) ▲▲ (Exceeds industry standard 2000W) CE-certified safety | High precision, fast cutting speed, low maintenance costs | Higher upfront cost, limited to reflective metals |
CO2 Laser Cutters | Thick materials, wood/plastic fabrication | 2000W CO2 laser tube Large cutting area (up to 6000x3000mm) ▲ (Standard for non-metals) | Versatile for non-metals, lower initial cost than fiber lasers | Slower speed, higher maintenance (gas refills), larger footprint |
UV Laser Cutters | Electronics, medical devices | 100W UV laser (wavelength 355nm) ▲ (Precision: 0.01mm tolerance) ISO 9001 certified | Ultra-precise cuts, minimal heat-affected zones, ideal for thin materials | Limited material compatibility, high energy consumption, expensive |
Hybrid Laser Cutters | Mixed material processing | Dual-mode (2000W fiber + 1500W CO2) ▲▲ (Flexibility: cuts metal/non-metal) IP54 dust protection | Versatile for mixed materials, handles thick metals and plastics | Complex operation, higher cost, requires skilled technicians |
High-Power Industrial Lasers | Heavy-duty manufacturing (e.g., shipbuilding) | 5000W+ laser (continuous duty cycle) ▲▲▲ (Cuts >20mm steel) ASME B11.0 safety compliance | Handles thick materials, high throughput, robust for industrial environments | Enormous footprint, high energy consumption, requires dedicated infrastructure |
Desktop Laser Cutters | Prototyping, small-scale workshops | 50W fiber laser (500x500mm area) ▲ (Affordable: < $10k) CE/UL certified | Compact design, cost-effective for small batches, easy to operate | Limited cutting capacity, slower for large jobs, restricted to thin materials |