logo

products details

Created with Pixso. Home Created with Pixso. Products Created with Pixso.
Industrial Laser Welding Machine
Created with Pixso.

QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization

QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization

Brand Name: HanWei
Model Number: HW-QCW
MOQ: 1 Set
Price: USD / Set
Payment Terms: T/T
Supply Ability: 2000 Sets / year
Detail Information
Place of Origin:
Shenzhen, China
Certification:
CE
Laser Power:
150W/300W
Power Consumption:
2 Kw/2.5 Kw
Machine Size:
665*450*300 Mm
Cooling Method:
Air Cooling
Wavelength:
1070nm ± 10%
Pulse Width:
0.5-50
Peak Power:
1500W/3000W
Machine Weight:
22Kg/28Kg
Pulse Energy:
15J/30J
Frequency:
100 Hz/2 KHz
Power Stability:
≤ ± 1%
Input Voltage:
AC220V 50/60Hz
Packaging Details:
Export Plywood Packing
Supply Ability:
2000 Sets / year
Highlight:

QCW laser welder with structural optimization

,

industrial laser welding machine with low maintenance

,

QCW laser welder optimized for durability

Product Description
QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization
Quasi-Continuous Wave (QCW) fiber lasers deliver extremely high instantaneous energy over extended pulse durations, making them highly suitable for metal processing scenarios requiring strict thermal stability and energy concentration. Whether employed for precise metal spot welding or continuous linear welding, their output mode maintains excellent repeatability. When processing various metals, these lasers effectively control molten pool variations, enhancing the predictability of the welding process. They are particularly ideal for applications demanding rigorous welding precision and uniform heat distribution.
QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization 0
Key Features
  • QCW fiber laser technology suitable for long pulse width and high-energy pulse output
  • Welding solution approaches for upgrading traditional YAG equipment
  • Significant reduction in maintenance requirements through optimized construction
  • Fully independently developed optical control system and output coordination platform
Technical Specifications
ModelHW-Q-150HW-Q-300
Input VoltageAC220V 50/60HzAC220V 50/60Hz
Machine Size665*450*300 mm665*450*300 mm
Wavelength1070nm ± 10%1070nm ± 10%
Frequency100 Hz2 KHz
Machine Weight22 Kg28 Kg
Laser Power150 W300 W
Peak Power1500 W3000 W
Pulse Width0.5-500.5-50
Pulse Energy15 J30 J
Power Stability≤ ± 1%≤ ± 1%
Power Consumption2 Kw2.5 Kw
Cooling MethodAir CoolingAir Cooling
Applications
The entire system, from the multi-beam distribution module and energy management structure to the output timing coordination system, is built on independently developed technology. This platform can flexibly adjust multiple outputs according to production line requirements, ensuring energy consistency and synchronized response speed for each beam. The self-developed system architecture not only enhances overall reliability but also provides greater compatibility when integrating with automated platforms and implementing complex process schemes. On this basis, users can expand to different applications and achieve higher-level processing configurations.
About Shenzhen Hanwei Laser
Shenzhen Hanwei Laser ranks among the globe’s scarce enterprises endowed with independent R&D capabilities for the full hardware and software ecosystem of high-speed laser beam splitting systems, energy splitting systems, and time splitting systems. Its product portfolio mainly encompasses diverse laser welding solutions as well as supporting laser welding control systems.
Since 2019, Shenzhen Hanwei Laser has been dedicated to the independent R&D and innovation of laser welding machines, leveraging core advantages derived from in-house R&D, design, and manufacturing capabilities.
QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization 1QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization 2 QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization 3 QCW Laser Welder with Significantly Reduced Maintenance via Structural Optimization 4