Explore our premier portfolio of high-precision laser modules, aesthetic medical equipment, and customized engineering solutions manufactured under ISO 13485 quality standards.
Navigating the Paradigm Shift in High-Precision Glass Micro-Machining and Electro-Optic Component Fabrication
Traditional mechanical scoring and long-pulse thermal cutting introduce severe micro-cracks and significant Heat-Affected Zones (HAZ). Picosecond lasers operate within ultra-short pulse widths (sub-10 picoseconds), executing non-linear multiphoton absorption. Thermal energy is dissipated before thermal diffusion occurs, yielding pristine edge finishes without residual stress.
Utilizing high-peak-power ultrashort pulses, picosecond optics trigger Kerr lens self-focusing inside brittle transparent substrates such as ultra-thin glass (UTG), sapphire, and quartz. This forms continuous high-density plasma channels (filaments) through the entire glass depth, enabling clean single-pass separation with edge roughness below Ra 0.5 µm.
Beijing UNT Technology Co., Ltd bridges advanced optical engineering with high-capacity manufacturing. Our deep understanding of beam conditioning, high-energy pulse stability, and precision galvo-scanner synchronization allows us to design robust OEM Pico laser architectures tailored for both complex industrial glass substrates and high-end medical skin resurfacing platforms.
The manufacturing of modern consumer electronics, medical device touch interfaces, micro-fluidic chips, and specialized optical windows requires stringent geometric tolerances and zero-defect edge strength. Standard laser ablation techniques melt glass, leading to micro-fractures, chipping, and reduced mechanical bending strength.
In contrast, OEM Pico Laser Glass Cutting technology relies on stealth modification. By delivering ultra-short optical bursts in the picosecond domain (typically 800fs to 15ps), peak power densities exceed $10^{12} \text{ W/cm}^2$. At these extreme intensities, transparent dielectrics absorb energy via avalanche ionization. The material structure is modified internally without surface burning. Post-laser mechanical or mild chemical etching yields micro-edge strength exceeding 300 MPa, eliminating the requirement for costly secondary CNC grinding and polish operations.
A Beacon of Innovation in the Medical, Aesthetic & Advanced Laser Equipment Industry
In the dynamic and ever-evolving landscape of the global medical and aesthetic equipment industry, Beijing UNT Technology Co., Ltd has emerged as a trailblazer, setting new standards for innovation, quality, and customer service. As a high-tech enterprise, our unwavering commitment to excellence is reflected in every aspect of our operations, from research and development to production, sales, and after-sales support.
In the aesthetic equipment realm, our R & D team is dedicated to creating products that enhance the beauty and well-being of individuals. We are at the forefront of developing non-invasive and minimally invasive aesthetic treatments. Our latest line of laser-based aesthetic devices can effectively treat a wide range of skin conditions, including wrinkles, acne scars, hair removal, and pigmentation issues. These devices are designed to deliver optimal results with minimal discomfort and downtime for patients.
Complementing our strong R & D capabilities is our large-scale production facility. Spanning an impressive 6,000 square meters in the heart of Beijing, China, our comprehensive office houses a state-of-the-art production line. This facility is equipped with the latest manufacturing equipment and follows strict quality control processes to ensure that every product leaving our factory meets the highest standards of quality. Our production team is made up of experienced professionals well-versed in the latest manufacturing techniques, utilizing lean manufacturing to optimize processes, eliminate waste, and increase throughput.
State-of-the-art laboratory dedicated to optical engineering and mechanical testing.
Pioneering minimally invasive laser technologies for maximum patient safety.
Comprehensive aesthetic solutions for pigmentation, vascular, and resurfacing care.
Delivering fast clinical results with minimized downtime and zero side effects.
Empowering worldwide OEM/ODM partnerships through proven production capacity and certified international standards.
Tailored picosecond laser optics integration for high-yield manufacturing across critical sectors.
Cutting Ultra-Thin Glass (UTG) for foldable smartphone screens, curved tablet cover glasses, and smart wearable displays requires zero micro-crack propagation. Picosecond laser stealth dicing provides exceptional bending radius tolerances and high yield rates for mass production.
Laser handpiece optical sapphire windows, IPL quartz crystal light guides, and precision aesthetic filter plates demand defect-free edge geometry. Our OEM picosecond cutting solutions allow sub-millimeter custom shapes with zero edge micro-fractures, ensuring longevity under high pulse energy.
Micro-machining micro-channels in borosilicate glass for biomedical lab-on-a-chip applications. Picosecond laser pulses cleanly etch and slice semiconductor glass wafers without chemical contamination, thermal distortion, or substrate delamination.
"Quality control is a top priority at Beijing UNT Technology Co., Ltd. Every product undergoes a series of rigorous tests at various stages of the production process. From raw material inspection to final product testing, they leave no stone unturned to ensure we receive products that are reliable, durable, and safe to use. Their compliance with ISO 13485 for medical devices attests to their dedication."
"Their production capacity is highly scalable, allowing us to meet growing market demands effortlessly. Whether it is a specialized medical laser component or large-scale aesthetic supply for our clinic chains, UNT consistently delivers on time while adhering to the highest global quality standards."
End-to-End OEM/ODM Systemization with European Local Support Center
Prototypes are developed using advanced CAD/CAM software and optical simulations, with iterative testing to optimize mechanics, thermal balance, and beam geometry.
Laser modules and optical assemblies are constructed inside ISO Class 7 cleanrooms, preventing airborne particulate contamination and protecting delicate optical elements.
Each finished device is assigned a unique Serial Number (SN), enabling complete lifecycle tracking from raw component sourcing to client delivery.
We guarantee seamless door-to-door global logistics alongside comprehensive technical and regulatory consulting for international distributors.
ISO 13485:2016 (MDR), MDSAP, FDA 510(k), and CE Medical Device Approvals








Over a Decade of Engineering Innovation, Patent R&D, and Global Expansion
Beijing UNT Technology Co., Ltd. was officially registered in Beijing and Hong Kong, establishing a dedicated R&D hub for laser optical equipment.
Successfully engineered and independently produced our first generation high-intensity IPL therapy platform for clinical applications.
Pioneered the market by developing the "Alpha" diode laser operation handle integrated with an intelligent color touch-screen display interface.
Expanded our product line to encompass a full portfolio of medical and aesthetic laser systems, including Nd:YAG and picosecond technologies.
Introduced "SmartDepi", the world's first Android operating system natively integrated into diode laser platforms, enabling cloud management and client data tracking.
Expanded our operational headquarters to 6,000 square meters, growing our team to over 130 skilled engineers and production personnel.
Secured FDA 510(k) clearances for 4 flagship product lines, including Diode Lasers, MuseShape, Nd:YAG, and Cryo Slimming devices.
Achieved ISO 13485 (MDR) and MDSAP certifications. Diode lasers earned MDR CE approval, accompanied by the launch of our "APEX" European Customer Service Center in the Netherlands.
Pioneering the Next Generation of Sub-Picosecond and Femtosecond Laser Machining
Future iterations of our OEM picosecond laser sources feature MHz burst-mode pulse shaping, allowing customized energy distribution profiles. This dramatically increases glass cutting speeds up to 1000 mm/s while maintaining sub-micron kerf precision.
Integrating real-time machine vision and optical coherence tomography (OCT) into galvo heads. Automated feedback loops automatically adjust beam focal depth and laser power in real-time, offsetting minor substrate thickness variations.
Picosecond stealth dicing reduces coolant, abrasive waterjet slurry, and chemical waste. By providing dry, clean laser micro-machining solutions, UNT aligns with global green manufacturing mandates for electronics and medical optics fabrication.
Technical & Commercial Insights for OEM/ODM Procurement Partners
Factory-direct supply of aesthetic laser devices, body sculpting equipment, and micro-machining solutions.