Industry Applications

Various fields, provide different modes of solid-state laser products

Solid picosecond laser


Laser Model ALLOY-HW-30PIR ALLOY-HW-50PIR ALLOY-HW-70PIR
Wavelength 1064 1064 1064
Output average power >30W@100KHz >50W@50KHz 4Burst >70W@500KHz
Maximum single pulse energy > 300μJ @ 100KHz >1mJ@50KHz 4Burst > 140μJ @ 500KHz
pulse repetition frequency 100KHz-2MHz 50KHz-2MHz 500KHz-2MHz
Pulse width <12ps <15ps <15ps
Average power stability (12 hours) <2 <2 <2
spatial pattern TEM00(M2<1.3) TEM00(M2<1.3) TEM00(M2<1.3)
spot roundness >90 >90 >90
Outlet spot size 2±0.5 2±0.5 2±0.5
beam divergence angle <2.5 <2.5 <2.5
spot pointing stability <50 <50 <50
degree of polarization > 100:1 Vertical > 100:1 Vertical > 100:1 Vertical
Preheating time <30 <30 <30
Use ambient temperature 15 ℃-30 ℃ 15 ℃-30 ℃ 15 ℃-30 ℃
Use ambient humidity 20 to 80 non-condensing 20 to 80 non-condensing 20 to 80 non-condensing
Cooling mode Water Water Water
Supply voltage 220V 220V 220V
Communication Protocol RS232 RS232 RS232
Volume 745mmx375mmx130mm 745mmx375mmx130mm 745mmx375mmx130mm
Weight 35KG 35KG 35KG
Laser Model ALLOY-HW-30PGR ALLOY-HW-60PGR
Wavelength 532 532
Output average power >30W@500KHz >60W@1000KHz
Maximum single pulse energy > 60μJ @ 500KHz > 100μJ @ 600KHz
pulse repetition frequency 100KHz-2MHz 600KHz-2MHz
Pulse width <10ps <10ps
Average power stability (12 hours) <2 <2
spatial pattern TEM00 (M2<1.3) TEM00 (M2<1.3)
spot roundness >90 >90
Outlet spot size (6 times expanded beam) 2±0.5 1.5±0.5
beam divergence angle <1.5 <1.5
spot pointing stability <50 <50
degree of polarization >100:1 Vertical > 100:1 Vertical
Preheating time <30 <30
Use ambient temperature 15 ℃-30 ℃ 15 ℃-30 ℃
Use ambient humidity 20 to 80 non-condensing 20 to 80 non-condensing
Cooling mode Water Water
Supply voltage 220V 220V
Communication Protocol RS232 RS232
Volume 745mmx375mmx130mm 745mmx375mmx130mm
Weight 35KG 35KG
Laser Model ALLOY-HW-05PUV ALLOY-HW-15PUV ALLOY-HW-30PUV
Wavelength 355 355 355
Output average power >5W@300KHz >15W@1MHz >30W@1MHz
Maximum single pulse energy >30uJ@300KHz > 15μJ @ 1MHz > 60μJ @ 500KHz
pulse repetition frequency 300KHz-2MHz 500KHz-2MHz 500KHz-2MHz
Pulse width <12ps <12ps <12ps
Average power stability (12 hours) <2 <2 <2
spatial pattern TEM00(M2<1.3) TEM00 (M2<1.3) TEM00(M2<1.3)
spot roundness >90 >90 >90
Outlet spot size (6 times expanded beam) 2±0.5 2±0.5 2±0.5
beam divergence angle <1.5 <1.5 <1.5
spot pointing stability <20 <20 <20
degree of polarization > 100:1 Vertical > 100:1 Vertical >100:1 Vertical
Preheating time <30 <30 <30
Use ambient temperature 15 ℃-30 ℃ 15 ℃-30 ℃ 15 ℃-30 ℃
Use ambient humidity 20 to 80 non-condensing 20 to 80 non-condensing 20 to 80 non-condensing
Cooling mode Water Water Water
Supply voltage 220V 220V/110V 220V
Communication Protocol RS232 RS232 RS232
Volume 745mmx375mmx130mm 745mmx375mmx130mm 745mmx375mmx130mm
Weight 35KG 35KG 35KG

A solid picosecond laser is a highly advanced and precise laser technology. It emits extremely short pulses of light in the picosecond range. The unique characteristics of this laser make it highly valuable in various fields. In the field of materials processing, the solid picosecond laser offers exceptional precision and minimal heat-affected zones. It can be used for micromachining, such as drilling tiny holes or cutting intricate patterns with high accuracy. In the medical field, it is utilized in applications like laser surgery, especially for delicate procedures where precise tissue ablation is required. The short pulse duration of the solid picosecond laser helps to minimize damage to surrounding healthy tissues. It also finds applications in scientific research, spectroscopy, and imaging. The ability to generate short pulses allows for time-resolved studies and high-resolution imaging. The performance of a solid picosecond laser depends on factors such as the laser medium, resonator design, and pulse generation technology. High-quality solid picosecond lasers are often engineered to provide stable output, high peak power, and narrow pulse widths. The development and continuous improvement of this technology have opened up new possibilities in many industries, enabling more precise and efficient processes.

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