Blaze 500
Ultrafast Picosecond Series for Industrial Processing
- Pulse Duration <15 ps
- Average Power: 100 W – 500 W
- Pulse Energy: 100 µJ – 200 µJ
- Wavelength: 1064 nm / 532 nm / 355 nm

The Blaze series high‑power picosecond lasers deliver exceptional performance, specifically designed to meet the demands of cutting‑edge scientific research and advanced industrial applications. Covering three key wavelengths — 1064 nm, 532 nm, and 355 nm — the series addresses a wide range of spectral requirements. With an average power of up to 500 W and a repetition rate of up to 6 MHz, it enables efficient processing and high‑speed scanning.
The laser offers a pulse duration of approximately 10–15 ps, providing ultrahigh temporal resolution and processing precision for time‑sensitive applications. Operating in the TEM₀₀ mode (M² ≤ 1.3) with beam circularity exceeding 90%, it ensures a uniform and stable beam profile, enhancing both processing quality and experimental reliability.
The series supports Burst‑mode operation to accommodate complex processing needs, and features a compact design with a water‑cooling system for stable performance even at high power. Flexible trigger modes and linear external power control facilitate seamless system integration and precise output regulation.
Overall, the Blaze series achieves an optimal balance between high power, high repetition rate, excellent beam quality, and long‑term stability — making it a highly competitive solution in the field of ultrafast laser processing.

Glass Drilling
Ultrafast laser drilling of glass employs high-intensity femtosecond or picosecond pulses to create high-aspect-ratio, tapered, or straight-through holes with negligible chipping and micro-cracking. This method is widely used in consumer electronics, medical devices, and optical component manufacturing, where conventional mechanical drilling often fails due to glass brittleness.

Stent Cutting
Stent cutting utilizes femtosecond or picosecond lasers to precisely machine fine strut patterns from thin-walled metal tubes, achieving high precision and virtually zero thermal damage, which is essential for manufacturing cardiovascular and peripheral vascular stents.

Stainless Steel Polishing
Ultrafast laser polishing of stainless steel removes surface asperities through controlled ablation, significantly reducing surface roughness (Ra) while preserving the part's mechanical integrity and corrosion resistance. This technique has become an important complement to traditional mechanical and electrochemical polishing in the medical and industrial sectors.

Fiber Cutting
Optical fiber cutting using ultrafast lasers enables clean, high-quality end-face cleaving of optical fibers with minimal surface roughness and no micro-cracks, essential for low-loss splicing and connectorization in telecommunications and sensor systems.
Specification | Blaze-355-100 | Blaze-532-200 | Blaze-1064-500 |
CentralWavelength | 355 ± 0.5nm | 532 ± 0.5nm | 1064 ± 0.5nm |
OutputPower | 100W @ 1MHz | 200W @ 1MHz | 500W @ 5MHz |
RepetitionRate | 1Hz - 2MHz | 1Hz - 6MHz | |
PulseEnergy | 100μJ | 200μJ | 100μJ |
PowerStability | < 2%(8 hours,RMS) | < 1.5%(8 hours,RMS) | < 1.0%(8 hours,RMS) |
PulseDuration | - 15ps | - 10ps | |
BeamQuality | TEM00, M²≤1.3 | ||
BeamRoundness | > 90% | ||
BeamDiameter | 3.5 ± 0.5mm | 2.0 ± 0.5mm | 3.0 ± 0.5mm |
BurstPulseNumber | 1 | 1 - 3 | 1 - 10 |
Dimensions | 980 x 560 x 153mm | ||
Trigger Mode | PSO / POD / Gate mode,and TTL trigger | ||
External Power Control | 0 - 5V, linear control | ||
Warm-up Time | 15 min | ||
Power Supply | AC100 - 240V / 50 - 60Hz | ||
Operating Humidity | < 60% RH @ 25 ℃ | ||
Operating Temperature | 22 - 30 ℃ | ||
Cooling Method | Water circulation cooling | ||


