High-performance configurations featuring CE certification, engineered for precision marking, engraving, and automated assembly line integration.
Hangzhou Kinray Laser Co., Ltd. is a leading China industrial laser marking machine manufacturer specializing in advanced fiber and UV laser solutions for global manufacturing industries. With a strong focus on innovation, precision, and intelligent manufacturing, Kinray Laser is committed to delivering high-performance laser equipment that improves production efficiency, product traceability, and marking quality.
Located in Hangzhou, China, the company integrates research and development, manufacturing, sales, and technical support to provide comprehensive laser processing solutions for customers worldwide. Our extensive product portfolio includes fiber laser marking machines, UV laser marking machines, CO2 laser marking systems, MOPA laser markers, flying laser marking machines, 3D laser marking equipment, and customized automated laser solutions.
Kinray Laser products are widely used in electronics, automotive, medical devices, precision hardware, jewelry, packaging, aerospace, consumer goods, and industrial manufacturing industries. Designed for high-speed, high-precision, and permanent marking applications, our systems are capable of processing a wide range of materials, including metals, plastics, ceramics, glass, and composite materials.
The global manufacturing ecosystem is transitioning toward ultra-precise, digital, and permanent traceability solutions. In this landscape, industrial laser system components serve as the core modules driving automated production. The demanding nature of smart factories, driven by Industry 4.0 paradigms, requires laser sub-systems that offer maximum reliability, high electro-optical conversion efficiency, and compliance with stringent international safety regulations.
Within the European Economic Area (EEA) and global markets, the CE certification is not merely a custom clearance pass; it is a critical benchmark confirming compliance with essential health, safety, and environmental protection standards (such as the Machinery Directive 2006/42/EC, Low Voltage Directive 2014/35/EU, and EMC Directive 2014/30/EU). Standardized component compliance ensures that laser oscillators, galvo scanners, and optical pathways can be seamlessly integrated into high-speed production lines without compromising workplace safety or electrical safety certifications.
Standardized, modular component fabrication prevents manufacturing bottlenecks, allowing OEM clients to source reliable replacement optics and scan heads globally.
Every component is subjected to severe thermal cycling, vibrational tests, and beam profiling to ensure long-term stability and peak performance under heavy shifts.
Designed around EN 60825-1 safety metrics. Ensures protective housings, interlock systems, and emission indicators align perfectly with regional safety laws.
Understanding the material-laser interactions allows system integrators to select the precise wavelength and pulse duration required for maximum throughput.
| Laser Source Type | Wavelength Range | Typical Application Materials | Key Advantages | Target Sectors |
|---|---|---|---|---|
| Fiber Laser (Q-switched) | 1064 nm | Stainless Steel, Carbon Steel, Aluminum, Brass | High peak power, low cost, extreme durability | Precision hardware, automotive parts |
| MOPA Fiber Laser | 1064 nm (Variable Pulse) | Anodized Aluminum, Stainless Steel, Plastics | Pulse duration control (2ns-500ns), color marking | Electronics, medical devices, jewelry |
| UV Laser (Diode Pumped) | 355 nm | Glass, Silicon, PEEK, Polycarbonate, Gemstones | "Cold marking" technique, zero micro-cracking | Semiconductors, medical packaging, crystals |
| CO2 Laser (RF/Gas) | 10.6 μm | Wood, Acrylic, PVC Pipes, Leather, Paper | High absorption rate on organics, high-speed coding | Packaging, consumer goods, piping systems |
Industrial integration demands more than just a laser oscillator. Solutions require a multi-disciplinary approach combining high-speed galvanometer scanning heads, f-theta field lenses, dynamic focusing systems, and automated machine vision inspection. Kinray Laser addresses these workflows by engineering system components that seamlessly interface with automated PLCs via fieldbus networks (EtherCAT, Profinet) and support custom APIs for MES integration.
Under European Medical Device Regulation (MDR) and FDA guidelines, medical components must display permanent, non-corrosive Unique Device Identification (UDI) marks. Our UV lasers and MOPA fiber systems enable high-contrast markings on sensitive surgical steels and implantable plastics without altering surface topography or compromising biocompatibility.
For high-speed beverage, pharmaceutical, and building materials manufacturing (e.g., PVC extrusion), downtime is costly. Flying laser coding systems equipped with digital galvo scanners capture real-time conveyor speeds via rotary encoders, executing crisp alphanumeric, date, and barcode marking on-the-fly without halting production.
Equipped with advanced production facilities and rigorous quality management systems, Kinray Laser maintains strict quality control throughout every stage of manufacturing. Each machine undergoes comprehensive testing to ensure stable performance, reliability, and compliance with international standards.
To support global customers, we offer flexible OEM and ODM services for distributors, system integrators, equipment brands, and industrial manufacturers. Our experienced engineering team works closely with customers to develop customized laser solutions tailored to specific production requirements, automation needs, and industry applications.












The industrial laser field is fast evolving toward two primary focal points: ultra-short pulse duration and embedded machine learning feedback systems. Future-proof architectures must integrate vision inspection directly into the optical path. Co-axial vision inspection systems utilize dichroic mirrors to capture marking alignments through the f-theta lens, allowing automatic repositioning and verification (marking + OCR validation) in milliseconds.
Furthermore, green lasers (532 nm) and picosecond/femtosecond oscillators are entering mainstream manufacturing. Their shorter pulse widths limit thermal diffusion, preventing unwanted modifications near critical electronic and pharmaceutical packaging components. Kinray Laser’s continuous R&D projects guarantee that our partners remain equipped with state-of-the-art optics capable of handling next-generation, high-speed production demands.
Expert insights addressing complex integration challenges and design requirements for machinery builders.
Explore our advanced, multi-axis, and vision-integrated systems engineered for complex modern production facilities.