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QCW Laser Welding Head With Selectable Optical Parameters For Flexible Processing

ویژگی های اساسی
محل تولید: شنژن، چین
نام تجاری: HanWei
گواهینامه: CE
شماره مدل: HW-QCW
املاک تجاری
حداقل مقدار سفارش: 1 مجموعه
قیمت: USD / Set
شرایط پرداخت: T/T
توانایی عرضه: 2000 مجموعه در سال
مشخصات
Laser Power: 150W/300W Pulse Energy: 15J/30J
Power Consumption: 2 کیلو وات/2.5 کیلو وات Power Stability: ≤ ± 1٪
Machine Size: 665*450*300 میلی متر Pulse Width: 0.5-50
Peak power: 1500W/3000W Machine Weight: 22 کیلوگرم/28 کیلوگرم
Frequency: 100 هرتز/2 کیلوهرتز Wavelength: 1070 نانومتر ± 10 ٪
Input Voltage: AC220V 50/60Hz Cooling Method: خنک کننده هوا
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توضیحات محصول
QCW Laser Welding Head With Selectable Optical Parameters For Flexible Processing

The QCW laser welding head is designed for applications requiring accurate heat input control and refined welding performance. Compatible with QCW laser sources and low-output fiber lasers, it performs efficiently in thin material welding and miniature component assembly. The optimized beam transmission system helps achieve smooth weld seams while reducing excessive thermal influence on surrounding areas, making it suitable for precision manufacturing environments.

Featuring a compact and lightweight body, the welding head is developed for convenient installation in different industrial systems. To meet diverse equipment integration requirements, the product is available in Y-style, T-style, and F-style configurations. These structural options allow users to select the most suitable installation method according to workspace limitations and machine layouts while maintaining stable optical performance during operation.

QCW Laser Welding Head With Selectable Optical Parameters For Flexible Processing 0
Key Features
  • Specialized for Delicate Metal Joining Applications.
  • Compact Construction with Multiple Structural Variants.

  • Selectable Optical Parameters for Flexible Processing.

  • Efficient Solution for Electronics and Precision Industries.

Technical Specifications
Model HW-Q-150 HW-Q-300
Input Voltage AC220V 50/60Hz AC220V 50/60Hz
Machine Size 665*450*300 mm 665*450*300 mm
Wavelength 1070nm ± 10% 1070nm ± 10%
Frequency 100 Hz 2 KHz
Machine Weight 22 Kg 28 Kg
Laser Power 150 W 300 W
Peak Power 1500 W 3000 W
Pulse Width 0.5-50 0.5-50
Pulse Energy 15 J 30 J
Power Stability ≤ ± 1% ≤ ± 1%
Power Consumption 2 Kw 2.5 Kw
Cooling Method Air Cooling Air Cooling
Applications

The welding head supports various collimating and focusing lens combinations, enabling users to optimize beam characteristics for different processing conditions. This flexible optical arrangement allows adjustment of working distance and spot performance according to specific welding tasks. In addition, the system supports laser sources below 600W, providing compatibility for a wide range of precision processing applications and customized laser systems.

Combining practical design with reliable welding capability, this QCW welding head is suitable for industries that require stable and repeatable precision welding performance. It is widely applicable in 3C electronics production, precision hardware fabrication, sensor assembly, and other fine processing operations. Its diversified structural design and efficient optical performance provide manufacturers with a dependable solution for modern precision welding applications.

About Shenzhen Hanwei Laser

Hanwei Laser is dedicated to laser processing applications for the metalworking industry. We supply equipment and processing solutions designed for daily industrial use, with attention to operational reliability and adaptable production requirements.

QCW Laser Welding Head With Selectable Optical Parameters For Flexible Processing 1

Our business covers multiple laser processing fields, including metal joining, surface preparation, material treatment, and precision fabrication. The equipment is suitable for different processing environments where efficiency, controllability, and continuous operation are important.

We understand that production requirements vary between industries and working conditions. For this reason, we focus on practical equipment matching according to actual application demands, helping users select systems suitable for their materials, processing methods, and workflow arrangements.