Explore our top-tier CE-certified laser systems engineered for high reproducibility, structural durability, and multi-substrate applications across global production lines.
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.
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.
Modern smart factories demand absolute consistency in laser beam interaction. Kinray Laser addresses this by embedding advanced optical diagnostic validation into our industrial marking architectures.
Our CE-certified fiber and MOPA laser systems guarantee permanent, contrast-rich markings on high-stress components. Fully compliant with direct part marking (DPM) regulations, these systems verify surface roughness and avoid heat-affected zone (HAZ) fatigue on critical aerospace alloys.
Kinray's UV and green laser equipment provide 'cold marking' solutions, leaving the anti-corrosive passivation layer of stainless steel surgical equipment intact. Ensure compliance with Unique Device Identification (UDI) mandates with no surface deformation.
High-precision chip packaging and PCB substrates require localized, clean marks. Our systems are equipped with sub-micron positioning and real-time vision verification modules to prevent structural damage to delicate microcircuits during marking runs.
As a world-class exporter, Kinray Laser ensures all equipment undergoes intensive metrological verification. Understanding the differences in regional technical directives is central to our quality assurance pipeline.
| Regulatory Framework | Key Standards Applied | Metrological Objective | Kinray Implementation & Validation |
|---|---|---|---|
| EU Machinery Directive | EN ISO 12100, EN 60204-1 | Electrical & mechanical safety in industrial environments | Integrated safety relays, emergency stop channels, shielded internal wiring. |
| Laser Radiation Safety | EN 60825-1, FDA CDRH 21 CFR 1040.10 | Prevention of ocular and dermal exposure to Class 4 radiation | Fully enclosed safety cabinets (Class 1 output), active interlocks, certified protective viewing windows. |
| Electromagnetic (EMC) | EN 61000-6-2, EN 61000-6-4 | Suppression of electromagnetic interference (EMI) | High-attenuation line filters, industrial-grade metal chassis grounding, shielded galvo signal cables. |
| Optical Metrology & Quality | ISO 11146 (M²), ISO 11554 | Verification of beam propagation ratio & output power consistency | Automated beam profiling validation for every laser source prior to system deployment. |
Our engineering team customizes each system to match localized factory floor environments, ensuring high reliability under extreme temperatures and dusty environments.
For high-throughput packaging environments in the pharmaceutical and food sectors, Kinray's online flying laser markers (CO2/UV/Fiber) interface directly with existing conveyor systems. Employing high-speed digital galvonometers, these systems perform dynamic coding on moving substrates. Real-time encoder feedback ensures no elongation or distortion of alphanumeric codes or GS1 Datamatrix symbols.
For small, complex surfaces like micro-jewelry or precision contact pins, our coaxial vision alignment system automatically identifies workpiece coordinates. Eliminating physical clamping errors, the camera detects component shifts and rotates the laser coordinate system automatically. This achieves marking accuracies of within ±5 μm.
Take a look inside Kinray Laser's testing labs and production floor. Each zone is configured to isolate optical paths, perform environmental stress tests, and verify beam characteristics before delivery.
Our engineering team continuously integrates next-generation diagnostic tools and high-efficiency optical components to stay ahead of market demands.
As the demand for ultra-precise micro-machining grows, Kinray is expanding its R&D into ultra-short pulse (USP) lasers. Measuring and validating these sub-picosecond optical events requires state-of-the-art autocorrelation measurement systems. This technology ensures zero thermal stress on delicate multi-layer semiconductors.
Future iterations of our CE-certified machines will feature real-time active power correction. By embedding a calibrated photodiode along the optical delivery path, the control system dynamically adjusts pump diode currents to maintain power stability within ±0.5% over 24 hours of continuous operation.
Addressing the challenge of varying material absorption rates, we are developing single-aperture multi-wavelength solutions. For example, our 2-in-1 (1064nm+455nm) laser source allows operators to mark both highly reflective metals and polymers in a single pass without changing hardware setups.
Every system parameter, from galvo temperature and chiller flow rate to laser emission logs, is broadcast to the cloud via industrial MQTT protocols. This simplifies predictive maintenance and provides complete tracking logs for safety audits.
Get answers to common regulatory, optical calibration, and application-specific questions from Kinray's engineering team.
Select from our specialized CO2, UV, and MOPA laser models designed for marking, etching, and engraving organic materials, polymers, and highly reflective metals.