The Welding Robot for Flexible Welding Solution from Huawei Laser combines six-axis motion, force-controlled teaching and flexible robot configurations for automated welding. With 919mm and 1434mm working radius options, 5kg/12kg payloads and ±0.02mm repeatability, it adapts to different workpiece sizes and production requirements.
The Welding Robot for Flexible Welding Solution is designed for manufacturers that need welding automation without being locked into a single workpiece size or production format.
Instead of using one fixed robot configuration for every application, Huawei Laser provides two robot arm options. The HW-X00-919 offers a 919mm working radius and 5kg payload, while the HW-X00-1434 extends the working radius to 1434mm with a 12kg payload. This allows manufacturers to select the robot according to workpiece dimensions and welding requirements.
The system uses a six-axis collaborative robot arm with full-joint force control and torque sensing. These functions support hand-guided teaching, allowing operators to physically guide the robot to define welding paths instead of relying entirely on conventional programming methods.
For welding applications, the system supports MIG welding, while the larger 1434mm configuration can also be used for heavy welding applications. Optional technologies such as laser positioning, laser seam tracking and external-axis coordination further extend the system's ability to handle different welding tasks.
Flexible automation starts with choosing a robot that matches the actual workpiece.
Huawei Laser provides two robot configurations:
| Specification | HW-X00-919 | HW-X00-1434 |
| Working Radius | 919mm | 1434mm |
| Payload | 5kg | 12kg |
| Repeatability | ±0.02mm | ±0.02mm |
| Maximum Tool Speed | ≤2.0m/s | ≤3.0m/s |
| Robot Weight | 16.5kg | 41kg |
| Application | Small & medium workpieces | Medium & large workpieces |
The 919mm model is suited to smaller components, while the 1434mm model provides a longer working range and higher payload for larger assemblies.
This two-model configuration allows manufacturers to build a welding workstation around the actual size and weight of their products.
The robot uses a six-axis structure, allowing the welding torch to change position and orientation across different welding paths.
This is particularly useful when a workpiece contains multiple joints or welding positions that cannot be accessed from one fixed direction.
The six-axis design provides the movement flexibility required for multi-angle welding and complex component geometries.
The robot integrates full-joint force control and torque sensing technology to support hand-guided teaching.
Instead of creating every welding path solely through conventional programming, the operator can guide the robot arm along the required trajectory and record the movement for program creation.
Technology Evidence:
Full-joint force control
Torque sensing
Hand-guided teaching
Programmable welding trajectories
This approach is particularly useful for manufacturers handling customized products or frequent workpiece changes, where welding programs need to be adjusted regularly.
The robot provides a repeatability specification of ±0.02mm for both available models.
This repeatability allows the robot to return to programmed positions with a defined level of motion consistency during repeated welding operations.
For production environments where the same welding path needs to be repeated across multiple workpieces, consistent robot positioning provides a stable basis for automated welding.
The robotic welding system can be configured with different welding and positioning technologies according to the application.
MIG Welding
The standard welding configuration supports MIG welding for common metal fabrication applications.
Laser Positioning
A laser positioning system can be used to identify the welding position before the robot begins its programmed operation.
Laser Seam Tracking
Laser seam tracking detects changes in the welding seam and provides position information for trajectory adjustment.
Arc Tracking
Arc tracking uses welding process signals such as current and voltage to assist torch positioning during welding.
Multi-Layer & Multi-Pass Welding
For applications requiring multiple welding layers or passes, the robot can execute programmed multi-pass welding paths.
External Axis Coordination
The robot can coordinate its movement with external positioners or other axes, extending the system's ability to process larger or more complex workpieces.
These options allow the welding system to be configured according to the actual production process rather than using the same setup for every application.
Huawei Laser integrates the robot arm, welding equipment and control components into a complete robotic welding workstation.
| Component | Function | Specification / Feature |
| Six-Axis Robot Arm | Welding movement | 5kg/12kg payload, 919mm/1434mm reach |
| Welding Torch | Welding operation | Torch positioning and welding |
| MIG Welder | Welding power | MIG welding |
| Wire Feeder | Wire supply | Controlled wire feeding |
| Control Cabinet | System management | Robot motion control |
| Teach Pendant | Program operation | Parameter and program adjustment |
To further improve workstation flexibility, Huawei Laser provides additional equipment options.
| Option | Function |
| Smart Handle | Hand-guided programming |
| Laser Sensor | Seam detection and tracking |
| Magnetic Base | Quick robot installation |
| Mobile Trolley | Workstation movement |
| Linear Track | Extended working range |
| Gantry System | Large-scale welding applications |
Metal Fabrication
The collaborative welding robot is suitable for manufacturers producing different metal components and structures.
Applications include:
Metal frames
Brackets
Fabricated components
Customized structures
The 919mm and 1434mm working radius options allow the system to cover different component sizes.
Machinery Manufacturing
The robot can be integrated into machinery production where repeated welding paths are required across multiple components.
Applications include:
Machine frames
Equipment components
Mechanical assemblies
Industrial structures
The ±0.02mm repeatability provides consistent robot positioning for repeated welding operations.
Steel Structure Welding
For larger structures, the 1434mm working radius and 12kg payload provide greater reach and load capacity than the compact configuration.
Applications include:
Steel frames
Structural components
Medium and large metal assemblies
Heavy welding applications
External-axis coordination can also be added when a larger working range is required.
Customized & Small-Batch Production
Manufacturers handling multiple product models often need to adjust welding programs frequently.
The combination of hand-guided teaching, six-axis movement and flexible workstation options allows the system to accommodate changing welding requirements.
Applications include:
Customized orders
Prototype production
Small-batch manufacturing
Multi-product welding
Huawei Laser specializes in laser processing and robotic automation equipment, providing welding solutions for industrial manufacturing applications.
The company's robotic welding product portfolio includes 50+ developed robot products, with customers in 40+ countries and regions and 8 global service locations.
Huawei Laser provides:
Robotic welding equipment
Customized workstation solutions
Welding process integration
Machine testing
Technical support
Global service support
The combination of equipment manufacturing and application engineering allows Huawei Laser to configure robotic welding systems according to different production environments.

Build a More Flexible Welding Automation Solution
The Welding Robot for Flexible Welding Solution combines six-axis movement, ±0.02mm repeatability, force-controlled teaching and two robot configurations to accommodate different workpieces and production requirements.
With 919mm/1434mm working radius, 5kg/12kg payload options, MIG welding support and expandable positioning technologies, the system can be configured from a compact welding workstation to a larger automated welding solution.
Contact Huawei Laser to discuss your workpiece size, welding process and automation requirements.
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