Semiconductor Hybrid Welder with A Flexible Platform for Industrial Laser Welding
| Model: | HW-BFH-XXXXXX | Accessible wave range: | 915nm + 1064nm |
| Head Type: | Y | Net Weight: | 2.5 Kg |
| Focuses length: | 200 | Interface type: | QBH - QBH |
| Usable laser source: | Diode And Fiber Laser Source | Collimating length: | Diode 110 – Fiber 100/120/150 |
| Laser Power: | Diode Laser ≤ 30000 W & Fiber Laser ≤ 4000 W | ||
| High Light: | Semiconductor hybrid welder for industrial use,Flexible platform laser welding machine,Industrial laser welder with semiconductor technology |
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The semiconductor hybrid welding machine combines semiconductor and fiber laser technologies within one welding process. The two laser sources contribute different energy characteristics, allowing the welding process to be adjusted according to the material, joint configuration and required processing conditions. This combined approach provides manufacturers with greater flexibility when developing suitable welding parameters.
A well-controlled energy distribution is important for maintaining a consistent welding process. The hybrid configuration allows the contribution of each laser source to be coordinated according to the application, helping establish an appropriate energy profile around the joint. This makes the system suitable for metal components where controlled heat input and reliable joint formation are important.
Dual-Laser Process for More Flexible Welding Control.
Balanced Energy Input Across the Welding Area.
Suitable for Different Joint Configurations.
Consistent Performance for Repetitive Welding Tasks.
A Flexible Platform for Industrial Laser Welding.
| Model | HW-BFH-XXXXXX |
|---|---|
| Laser Power | Diode laser ≤ 30000 W Fiber laser ≤ 4000 W |
| Accessible Wave Range | 915nm + 1064nm |
| Usable Laser Source | Diode and Fiber laser source |
| Focus Length | 200 |
| Collimating Length | Diode 110 - Fiber 100/120/150 |
| Net Weight | 2.5 Kg |
| Head Type | Y |
| Interface Type | QBH - QBH |
The machine can be applied to various metal joining requirements, including butt joints, lap joints and other common configurations. Welding parameters can be adjusted according to material type, thickness, joint design and production requirements. This makes the equipment suitable for manufacturers handling different component structures within their production processes.
For industrial production, repeatability is an important factor in selecting welding equipment. The semiconductor hybrid configuration provides a controllable laser processing method for repeated welding operations. When suitable process parameters have been established through application testing, the machine can support consistent processing across successive workpieces.
For manufacturers working with metal components, choosing an appropriate processing method can have a direct impact on the way a product is fabricated. Hanwei Laser operates in this area by supplying equipment based on laser technology, with welding as the company’s primary product direction.

The company’s equipment portfolio includes handheld laser welding machines, welding heads, platform welding equipment, laser cleaning machines, and other related products. Different equipment types are intended for different working methods, giving customers a choice according to the way their products are processed.
Hanwei Laser is located in Shenzhen, China, and has been operating since 2016. Its business has developed alongside the increasing use of laser equipment in metal processing, while laser welding has remained an important part of the company’s product development.