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Browse 19 ultra fiber laser cutting machines from 16 manufacturers. Compare specifications, capabilities, and pricing. Pricing from $150,000 to $950,000.
The ultra segment contains 19 machines from 16 manufacturers, with power levels spanning 20kW to 60kW (average 26.3kW). High-power systems serve heavy fabrication, structural steel, and high-volume production environments where thick-plate capability and maximum throughput justify the premium investment of $100K–$500K+.
Chinese-origin machines account for 74% of this tier (14 of 19 systems). At this power level, laser source reliability becomes critical — ask manufacturers for documented MTTF (Mean Time To Failure) data and laser source warranty terms. IPG Photonics and TRUMPF TruFiber sources offer the longest field-proven track records (50,000+ hours).
Supplier shortlist
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| Brand / Model | Power | Work Area | Max Steel | Speed @5mm | Price Range | Origin |
|---|---|---|---|---|---|---|
| Penta Laser Bolt VII 6025 60kW URL | 60kW | 6000×2500 | 80mm | — | $520,000 - $980,000 | CN |
| Cutlite Penta Plus EVO 6525 40kW URL | 40kW | 6500×2500 | 70mm | — | $720,000 - $1,350,000 | IT |
| Eagle Laser iNspire 3080 40kW | 40kW | 8000×3000 | 70mm | — | $950,000 - $1,650,000 | PL |
| Eagle Laser eVision 2560 30kW URL | 30kW | 2500×6000 | 60mm | — | $850,000 - $1,450,000 | PL |
| IPG Photonics YLR-30000 30kW URL | 30kW | — | — | — | $180,000 - $380,000 | US |
| Han's Laser G6025HF 30kW URL | 30kW | 6000×2500 | 60mm | — | $300,000 - $620,000 | CN |
| Golden Laser GF-2560JH 30kW URL | 30kW | 2500×6000 | 70mm | 42 m/min | $230,000 - $520,000 | CN |
| Penta Laser Bull V 12030 20kW | 20kW | 12000×3000 | 55mm | 34 m/min | $480,000 - $780,000 | CN |
| Yawei HLL-25120 20kW | 20kW | 12000×2500 | 55mm | 34 m/min | $430,000 - $690,000 | CN |
| Jiatai Laser JT-6025 20kW | 20kW | 6000×2500 | 55mm | 34 m/min | $240,000 - $420,000 | CN |
Selecting the right fiber laser cutting machines involves evaluating five critical factors: (1) Material type and maximum thickness — determine the minimum laser power required. (2) Work area dimensions — match to your largest sheet or part size, with common formats being 3015 (3000×1500mm) and 4020 (4000×2000mm). (3) Production volume — high-volume shops benefit from automation features like sheet loading/unloading and nesting software. (4) Budget — consider total cost of ownership including installation, training, consumables, and maintenance, not just purchase price. (5) Service and support — verify the manufacturer has local service partners in your region. Use our comparison table above to evaluate 19 options side by side, filtering by the specifications most important to your application.
Five primary factors determine laser cutting edge quality: (1) Laser power and beam quality (BPP/M²) — lower BPP values produce focused spots with higher energy density for cleaner cuts. (2) Cutting head optics — auto-focus heads with collimation adjustment optimize beam characteristics for different materials and thicknesses. (3) Motion system accuracy — positioning accuracy (±0.03mm typical for premium machines) and repeatability directly affect dimensional precision. (4) Assist gas selection and pressure — nitrogen for oxide-free edges on stainless and aluminum, oxygen for faster thick-steel cutting. (5) Mechanical rigidity — machine bed flatness, gantry stiffness, and vibration damping affect edge straightness and surface roughness. Compare these specifications across our 19 listed machines using the table above.