On October 10, Aochuang Photonics announced that the company's 300W infrared femtosecond laser was shipped to scientific research institutes in small quantities. This laser is an ultra-high power femtosecond laser, which can achieve ultra-high repetition rate and high pulse energy (up to 3mJ) at the same time.
It is reported that in August this year, with Aochuang Photon's 300W infrared femtosecond laser products being verified and tested by customers in terminal related industries, some indicators have been further optimized through research and development. Recently, it has attracted the attention of scientific research institutes and achieved the first small batch shipment in the world.
Characteristics of 300w infrared femtosecond laser
Aochuang Photon launched the first 300W infrared femtosecond laser in China. Based on CPA technology, it adopts the femtosecond seed source with all fiber structure mode locking+LD end pump solid state amplification technology+slab amplification technology. The amplification structure is stable and reliable, which overcomes the nonlinear effect generated in the amplification process.
At the same time, this laser solves the problem of crystal thermal effect under high average power amplification, and realizes the output of high average power and high single pulse energy. The maximum single pulse energy can reach 3mJ, the pulse width is 600fs, and the repetition frequency is adjustable from 50KHz to 1MHz. The high power that can be achieved makes it both high quality and high efficiency, which will enable the processing technology to reach a new height and help overcome many processing bottlenecks, such as in the aerospace field.
In the first half of this year, Aochuang Photonics has completed the A+round of financing. At present, it has arranged many fields such as semiconductor, new display, solar photovoltaic, consumer electronics, aerospace, lithium battery new energy, etc. In the future, it will continue to increase the technology research and development of the laser industry, and at the same time, it will continue to expand the application of ultra fast laser industry to accelerate the process of localization substitution.
Source: OFweek