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Archer series femtosecond lasers are millijoule femtosecond lasers developed in accordance with the standards of industrial customers and suitable for scientific research customers. The product is based on the ultra-fast laser system of Ti:Sapphire regenerative amplification and traveling wave amplification. It adopts modular design and high compatibility. It can be flexibly combined and upgraded according to application requirements. The repetition frequency can be customized at 1kHz-10kHz, and the power covers 4W-20W, standard The pulse width of the product is less than 40fs (about 35fs), and can be combined with a super continuous white light compressor to achieve a laser output with a pulse width of less than 10fs. The light path has a simple structure and a modular design, which makes it stable and reliable.
Lancer series of nanosecond ultraviolet lasers are developed in accordance with the standards of industrial customers and can support a maximum power of 40W ultraviolet output. The product is based on an all-solid-state end-pumped, intracavity frequency doubling, and frequency laser system, with a wavelength of 355nm/351nm/266nm and a long life. The standard product has a pulse width of 12ns and a 7-day power instability (2×RMS) ≤ 1.4%, stable and reliable operation, meeting 365*7*24 hours high-intensity use.
The Galver series of nanosecond green lasers are developed in accordance with the standards of industrial customers and can support narrow pulse width or high energy output. The product is based on an all-solid-state end-pumped, intracavity frequency doubling laser system, with an output wavelength of 527nm/532nm, long life, 7-day power instability (2×RMS) ≤1.4%, stable and reliable operation, meeting 365*7 *24 hours of high-intensity use.
The Ladder series of nanosecond infrared lasers are developed in accordance with the standards of industrial customers, with high power, high energy, high cost performance, safety, stability and reliability. The product is based on all solid-state end-pumping, the cavity shape is stable, the output wavelength is 1064nm, the life is long, the 7-day power instability (2×RMS) is less than 1.4%, the operation is stable and reliable, and it can meet the high intensity use of 365*7*24 hours .
River series nanosecond mid-infrared lasers are developed in accordance with the standards of military customers. They are cost-effective, safe and stable, small in size, no water cooling, light in weight, and can be installed in small tactical platforms. The product is based on an all-solid-state end-pumped +OPO laser system, which is suitable for vehicle-mounted systems with frequent vibrations in the field, and meets 365*7*24 hours of high-intensity use.
The Glider series picosecond oscillator adopts solid design, RS232 interface control, quasi-continuous output of 1064nm/355nm laser, with TEM00 mode quality. The product is based on the all-solid end pump, with stable cavity shape, long life, 7-day power instability (2×RMS) ≤1.4%, stable and reliable operation, and meets 365*7*24 hours of high-intensity use.
The Assassin solid-state quasi-waveguide structure is a product of our company's independent intellectual property rights. Its mechanism for generating supercontinuum spectrum is that when a strong laser passes through a solid sheet, it produces a self-phase modulation effect, which broadens the spectrum. A series of unfavorable nonlinear processes such as self-focusing will occur when strong lasers interact with solids. The use of solid flakes can avoid the destruction of the material self-focusing into filaments. Although the self-phase modulation process between the laser and each solid sheet is not as violent as the air-filled hollow-core fiber, multiple solid sheets can be used and their positions can be placed reasonably, and the Kerr lens process associated with SPM makes the beam cycle between the sheets. It converges and diverges sexually to form a Kerr lens quasi-waveguide structure, and uses the self-steepening effect to make the pulse continuously narrow.
The Lancer hollow-core fiber compressor uses a hollow-core fiber system filled with rare gases to broaden the spectrum of the Ti:Sapphire femtosecond laser amplifier to more than one octave (450-900nm), and further uses a chirped mirror to compensate for dispersion, achieving less than Laser pulse of 10fs. This system can be compatible with different energy, repetition frequency and spectral width requirements according to the customer's site conditions and application directions.

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We sincerely invite you to visit CIOE China Optical Expo
CLOE China Optical Expo (Booth No.: 2A58) invites Wuhan Huazu Laser Technology Co., Ltd. to participate in CLOE China Optical Expo at Shenzhen International Convention and Exhibition Center (Bao'an New Hall), 2020.9.9-11
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The company consists of a technical team composed of senior optical engineers in the laser field, responsible for product development and production. All products have comprehensive independent intellectual property rights. The company strictly controls the quality, strictly controls every link of product...

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