Unlock New Possibilities of 2μm Lasers: Multi-scenario Applications of Rayon Fiber Lasers
Unlocking New Possibilities of 2μm Lasers: A Multi-Scenario Application Revolution of Rayever Fiber Lasers
A technology is quietly rewriting industry standards across medical minimally invasive treatment, industrial manufacturing, atmospheric monitoring and other fields — the 2μm (1700-2100nm) fiber laser. As a deep-rooted player in this field, Rayever's product series is bringing precise and efficient new solutions to multiple industries with its technical advantages of high stability and high adaptability.
🔍 Why the 2μm Band?
Unlike common 1μm band lasers, the 1700-2100nm band is exactly near the strong absorption peak of water, which endows it with unique application advantages:
🔹In medical scenarios, energy can be efficiently absorbed by water in biological tissues, achieving minimally invasive treatment with minimal thermal damage area and excellent hemostatic effect;
🔹In industrial scenarios, the processing efficiency of special materials such as transparent plastics and composite materials is far higher than that of traditional lasers, making it an ideal light source for precision welding and cutting;
🔹At the same time, this band is an eye-safe band, which greatly reduces the safety risks during use and adapts to more complex operating environments.
✨ Four Core Advantages, Building Performance Barriers
Rayever's 2μm fiber lasers have built four core competitiveness based on solid technical accumulation:
1.High reliability, long service life: Adopts an all-fiber structure design, no risk of optical lens pollution, suitable for long-term continuous operation, greatly reducing equipment maintenance costs;
2.High efficiency, small size: High electro-optical conversion efficiency, compact overall structure, easy to integrate into various equipment platforms, meeting the miniaturization needs of medical equipment and industrial production lines;
3.Wide adaptation, flexible application: Supports multi-wavelength output in the range of 1700-2100nm (typical wavelengths: 1908nm, 1940nm, 1980nm), with customizable parameters to adapt to different scenarios;
4.Low maintenance, low operating cost: Maintenance-free design concept, combined with low-power operation mode, allowing the equipment to work stably for a long time without pressure.
🏥 Covering Multiple Scenarios, from Operating Rooms to Production Lines

Medical Health: The "Invisible Scalpel" for Precision Minimally Invasive Surgery
In urology, otolaryngology, stomatology, gynecology and other departments, this laser is playing a key role:
🔹In urology, lasers with wavelengths of 1940nm/1980nm can be used for vaporization of benign prostatic hyperplasia and lithotripsy, precisely crushing lesions while reducing damage to surrounding tissues;
🔹In the field of medical aesthetics, it is used in projects such as photon skin rejuvenation, freckle removal, and scar repair, achieving treatment effects with small wounds and quick recovery by virtue of its mild energy absorption characteristics;
🔹In dental surgery, it can precisely cut soft tissues while achieving immediate hemostasis, greatly improving surgical efficiency and patient experience.
Industrial Manufacturing: A "Sharp Tool" for Processing Special Materials
Aiming at the problems that traditional lasers are difficult to solve, such as transparent plastic welding and composite material cutting, the 2μm laser shows unique advantages:
🔹In the new energy vehicle field, it can realize stress-free welding of composite structures of plastic and metal in dashboards and door panels, avoiding material deformation;
🔹In the aerospace field, high-precision opening and cutting of carbon fiber composite materials and glass fiber components can be carried out, with a heat-affected zone of less than 50μm, protecting structural integrity;
🔹In daily industry, it can also be used in scenarios such as plastic etching and foreign object removal, with significantly improved processing efficiency and finished product quality.

Scientific Research and National Defense: A Reliable Light Source for Cutting-Edge Fields
In fields such as atmospheric detection, lidar, and nonlinear optics research, this series of lasers, with their narrow linewidth (<1nm) and high power stability (±1%), have become powerful assistants for researchers; at the same time, their excellent environmental adaptability also provides stable and reliable light source support for the development of national defense equipment.
📊 Hardcore Parameters, Defining Industry Benchmarks
| Parameter Item | Detailed Specifications |
|---|---|
| Wavelength Range | 1700~2100nm, typical 1908nm/1940nm/1980nm |
| Linewidth (FWHM) | <1nm |
| Operating Mode | Continuous / Pulsed |
| Average Power | 300W (kW-level customizable) |
| Power Adjustment Range | 10~100% |
| Power Stability | ±1% |
| Beam Quality | M² <1.3 |
Note: All parameters can be customized according to customer needs to adapt to different application scenarios
💡 Final Thoughts
From laboratories to clinical practice, from single applications to multi-scenario coverage, 2μm fiber lasers are showing broader and broader development prospects. As a domestic manufacturer focusing on this field, Rayever has always taken technological innovation as the core, providing high-performance and high-reliability laser solutions for medical, industrial, scientific research and other fields.
In the future, with the breakthrough of kW-level 2μm laser technology, we have reason to believe that this technology will create value in more fields and inject new momentum into industry development.
If you want to know the customized solutions of this laser in specific scenarios, or need more detailed technical parameter descriptions, feel free to contact us~
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