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Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source
Raycus single-module fiber laser source

Raycus single-module fiber laser source

Raycus Single-Module Fiber Laser Source Introduction

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Raycus single-mode continuous (CW) fiber lasers belong to the third-generation single-mode product line, covering power levels from hundreds of watts to tens of kilowatts (e.g., 2000W, 3000W, 6000W, 12000kW). The core technology is achieving fundamental mode Gaussian beam output, with a thinner fiber core and beam quality far superior to multimode lasers.

Product models include the RFL-C2000 (single-mode), RFL-C3000 (single-mode), RFL-C6000 (single-mode), and higher-power near-fundamental mode kilowatt models. The entire unit adopts a modular, air-cooled/water-cooled integrated design, suitable for industrial-grade 24-hour continuous operation, supports standard fiber output interfaces such as QBH, and can be directly integrated with robots and cutting/welding machine tools.

Raycus Single-Mode Continuous Fiber Laser Core Technology Features

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1. Exceptional Beam Quality:Single-mode output with extremely low M² values ​​(2000W model M² < 1.2; 3000W M² < 1.3; 6000W M² ≤ 1.5), resulting in a very small focused spot, high energy density, narrow kerf, and uniform weld penetration.

2. High Photoelectric Conversion Efficiency and Energy Saving:Electro-optical efficiency generally > 40%, significantly reducing industrial electricity costs; optimized thermal management also reduces cooling energy consumption.

3. Strong Resistance to High Reflectivity:For highly reflective materials such as copper, aluminum, and brass, a dedicated optical path design and monitoring algorithm are used to prevent backlight damage to the pump source and resonant cavity, achieving stable processing.

4. Long Lifespan + Maintenance-Free:All-fiber structure with no mechanical resonant components; pump source and gain fiber lifespan can reach tens of thousands of hours, allowing for long-term operation in industrial settings without disassembly or maintenance.

5. Flexible Control and Integration: Supports continuous/modulated dual modes with a wide modulation frequency range; provides RS232, EtherCAT, and other interfaces for easy integration into automated production lines; output fiber length is customizable (standard 20m).

6. Second-Generation Fiber Optic Transmission System: Optimized fiber coupling and transmission scheme reduces loss and ensures stability and accuracy during thick plate cutting/deep penetration welding.

Product Technical Parameters

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Product Model RFL-C025 RFL-C3000S RFL-C6000S RFL-C12000S
Output Laser Power 2000W 3000W 6000W 12000W
Core Diameter 14μm 20μm 50μm 50μm
Beam Quality (m²) <1.2 <1.3 <1.5 <1.5
Center Wavelength 1080±5 nm 1080±5 nm 1080±5 nm 1080±5 nm
Electro-optic Efficiency >40% >40% >40% >40%
High Reflection Resistance Strong (compatible with copper/aluminum) Strong (compatible with copper/aluminum) Strong (thick plate / high reflectivity) Strong (thick plate / high reflectivity)
Typical Transmission Fiber 20m QBH,14 μm 20m QBH,20μm 20m QBH,50μm 20m QBH,50μm

Typical application scope

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1. Precision Cutting: High-speed cutting of stainless steel/carbon steel thin plates, precision cutting of metal pipes/profiles, cutting of copper-clad laminates/flexible circuit boards in the electronics industry;

2. High-end Welding: Welding of power battery tabs, welding of dissimilar metals such as copper and aluminum, deep penetration welding of aerospace components, welding of micro-components for medical devices;

3. Surface Treatment and Additive Manufacturing: Precision laser cladding (e.g., mold repair, blade strengthening), 3D metal printing, laser hardening;

4. Other Industrial Scenarios: Cutting/welding of solar photovoltaic cells, processing of lightweight automotive materials (aluminum alloys), sensor packaging.

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