Industrial grade laser systems designed to integrate into demanding solid-state pumping environments and advanced aesthetic platforms.
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View Technical SpecificationsThe global demand for high-performance industrial laser systems has expanded past traditional sheet-metal processing and fabrication. Today, advanced industries ranging from clinical aesthetic manufacturing to aerospace LIDAR, micro-welding, and scientific solid-state pumping depend heavily on complex optoelectronic assemblies. The procurement criteria for modern manufacturers has shifted towards long-term reliability, precise beam profile uniformity, and modular serviceability.
Key Procurement Insight: Cost-per-watt remains a key parameter, but the total cost of ownership (TCO) is dictated by thermal management efficiency and the stability of packaging materials under continuous wave (CW) and quasi-continuous wave (QCW) operation modes.
In highly regulated domains, such as the design and production of medical hair removal systems or defense-grade distance measurements, buying laser diode stacks requires vetting the semiconductor chip origins and packaging technologies. Industrial laser assemblies must withstand millions of cycles without optical performance degradation, which requires sophisticated thermal layouts like micro-channel coolers (MCC) and optimized macro-channel arrays.
To evaluate potential factories and suppliers, engineering teams must evaluate the underlying technical stack of the laser diode module. High-power semiconductor lasers rely on precisely aligned diode bars. For example, our 3500W 808nm laser diode modules implement 70 high-density bars integrated with Fast Axis Collimation (FAC) lenses. This integration achieves low beam divergence, enabling effective coupling into optical systems or focused delivery directly onto the target plane.
Fast Axis Collimation optics reshape the highly divergent raw diode beam into a parallel path, maximizing light concentration and energy density for precise industrial illumination.
Micro-channel liquid cooling structures and high-efficiency heat sink configurations prevent thermal crossover, reducing wavelength drift and extending diode lifetime.
Simultaneous array configuration using 755nm, 808nm, 940nm, and 1064nm diodes targets varying depths and absorption coefficients for medical and industrial processing.
Furthermore, when dealing with high power outputs (ranging from 300W to 4800W arrays), thermal stability determines system longevity. Hard solder materials, such as Gold-Tin (AuSn) packaging, have largely replaced indium solder in premium industrial setups to avoid indium migration and subsequent thermal wear. This engineering focus is critical for factories that operate laser equipment in continuous-shift environments.
Welcome to Xi’an Prima Beauty Equipment Co., Ltd. your trusted partner in the world of high-quality beauty equipment. With over 10 years of experience in manufacturing laser beauty equipment, we take pride in being a leading beauty equipment factory, specializing in the production and research and development of cutting-edge beauty technology.
Prima Beauty Laser is known for providing a wide range of high-quality beauty equipment, such as Diode hair removal laser machine, CO2 fractional laser machine, Pico laser machine, IPL laser machine, Skin management machine, etc. With more than 10 years of aesthetic and laser experience, its head office integrates the research and development of diode lasers and solid-state lasers, including the production and manufacturer of beauty equipment sales.
Years Laser Experience
Max Array Output Power
Testing and Calibration
Services Provided
Combining vertical optoelectronic chip packaging with system integration under one roof, we deliver technical consistency and cost efficiencies.
As a Chinese mid-to-high-end beauty equipment supplier, we prioritize customer satisfaction and offer ongoing training, technical support, and comprehensive after-sales services. Our dedication to innovation has enabled us to integrate the research and development of laser chips, production, packaging, and equipment sales under one roof.
Our commitment to quality is unwavering. Every device undergoes rigorous testing to ensure it meets our high performance standards before dispatch. We support extensive customization, whether you are seeking beauty equipment modifications or customized industrial laser chips matching specific pulse durations and wavelengths.
We provide professional OEM/ODM services, allowing our clinical and industrial clients to brand, package, and adjust the electrical and physical parameters of our laser devices to match local requirements, ensuring compatibility with your existing system components.
Our manufacturing workflow is certified to international industrial standards, ensuring safe, legal, and stable product deployment worldwide.
Industrial laser systems are highly complex optoelectronic devices. In material processing, high-power diode stacks are used for direct diode welding, cladding, and surface hardening. The flat-top spatial distribution of diode arrays provides uniform heat profiles, minimizing localized stress and cracking in tool steel and aluminum alloys. For solid-state lasers (such as Nd:YAG or Yb:YAG), 808nm and 940nm laser stacks act as high-efficiency optical pumps. Our vertical stacks deliver the peak power densities required to initiate laser oscillation in optical crystals.
In medical fields, our 755nm, 808nm, and 1064nm multi-wavelength diode arrays are configured for hair removal and dermatological treatments. Since melanin, oxyhemoglobin, and water exhibit distinct light absorption characteristics across different regions of the spectrum, combining wavelengths allows clinics to treat varying skin phototypes safely. Using micro-channel water cooling in these handpieces maintains the target temperature, preventing thermal damage to epidermal layers during treatments.
Procuring laser stacks internationally requires reliable, ongoing post-sale support. A key concern for systems integrators is the compatibility of laser drivers with the electrical characteristics of the diode arrays. Laser diodes are constant-current devices, making them sensitive to electrical spikes, reverse currents, and voltage fluctuations. We support our global partners with schematic consulting, power supply selection, cooling layout design, and handle assembly training to minimize integration risks.
Find technical answers on laser diode life cycles, wavelength options, thermal requirements, and custom configurations.
Micro-channel cooling uses thin cooling channels positioned close to the laser diode junction, providing thermal dissipation for high-duty-cycle operations. Macro-channel cooling (HSW) employs larger, simplified channels, reducing the risk of blockage from particulate-heavy water and lowering maintenance requirements at the expense of slightly higher operating temperatures.
Due to the small aperture size of the laser diode chip, the output beam diverges quickly along the fast axis. An integrated FAC lens collimates this light into a narrow, parallel beam path, which increases optical coupling efficiency into target delivery systems or optical fibers.
Yes. We customize diode packages to combine 755nm, 808nm, 940nm, and 1064nm laser bars into a single vertical stack. This allows clinical systems to target different tissue depths and melanin profiles during aesthetic procedures.
Our 3500W modules typically operate with a 70-bar array layout. The driving current depends on the configuration (usually around 50A to 120A) with voltage scaled based on the series-parallel connection of the individual laser bars. Detailed datasheets are provided for correct driver matching.
Yes, we specialize in high-power diode laser stack refurbishment. Our cleanroom facilities can unpack failed arrays, clean the substrate, and mount new diode bars into existing aesthetic or industrial handpieces.
Access high-power laser stacks and specialized illumination modules directly from our manufacturing facility.
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