Smart Weld
Intelligent handheld laser welding for stainless steel, carbon steel, and aluminum, combining precise wobble control with fast setup and easy operation.
More Welds
Less Rework
Concentrated fiber-laser heat and a controlled weld path help move quickly along thin-metal joints while limiting distortion and post-weld finishing.
Higher Productivity
On suitable thin-metal jobs, handheld laser welding can deliver 2 to 10 times the throughput of traditional processes.
Fast Seam Travel
Reference welding speed reaches up to 120 mm/s; the working speed depends on material, fit-up, and joint geometry.
Workstation Reach
The standard 10 m output fiber helps operators work around large assemblies without moving the source cabinet for every seam.
Reach Complex Joints
Move around cabinets, railings, enclosures, and irregular assemblies instead of repeatedly repositioning the workpiece.
Choose the Source Around the Job
IPG Fiber Laser Welding Source
A German source option for concentrated heat input and stable output across precision thin-metal joining. Match source power to material, thickness, and duty cycle.
MAX Fiber Laser Welding Source
A practical Chinese source option for routine stainless steel, carbon steel, and aluminum welding, with output selected around weld depth and production load.
Raycus Fiber Laser Welding Source
A Chinese source option for flexible sheet and tube fabrication. Final selection should follow the material mix, joint design, and sample-weld results.
Set the Parameters At the Screen
Use the touch screen to set laser and wire-feed parameters while monitoring the laser, chiller, and control board in real time. Multilingual interfaces support global teams.
Light in the Hand Precise at the Seam
Double Wobble
Adjustable Weld Path
Infrared Positioning
Visible Joint Alignment
Ergonomic Grip
Flexible Workpiece Access
The lightweight head combines double-wobble beam control, infrared positioning, and an ergonomic grip to help operators follow straight, curved, and irregular joints.
Distribute heat across the seam
The double-pendulum path spreads energy across the joint, supporting smooth seams on thin stainless steel, carbon steel, and aluminum with less local heat concentration.
Align the path before welding
Infrared positioning provides a visible reference for checking the intended seam path and improving placement consistency.
Move around complex assemblies
The compact handpiece helps reach cabinets, railings, racks, enclosures, and other parts that are awkward to reposition.
Stable Wire Feed For Better Fit-Up
Steady, adjustable filler delivery supports a more consistent bead when joint gaps require wire. The 1000W and 1500W systems support 0.8, 1.0, and 1.2 mm wire; the 2000W system supports 0.8 to 1.6 mm.
Process-Matched Feed
Adjust feed and return speed from the same touch interface used for welding setup
Bridge Wider Fit-Up
Use filler wire when joint gaps exceed 0.2 mm, subject to application testing
Match Laser Power To the Joint
Use these figures as starting points for application review, not guaranteed limits. Material grade, joint geometry, fit-up, scan pattern, and travel speed affect actual capacity.
Starting reference for steel from approximately 0.5 to 2 mm. Confirm the joint with representative sample welds.
Starting reference for steel from approximately 0.5 to 3 mm. Confirm the joint with representative sample welds.
Starting reference for steel from approximately 0.5 to 4 mm. Confirm the joint with representative sample welds.
Starting reference for aluminum from approximately 0.5 to 3 mm. Confirm alloy and joint suitability with sample welds.
Bring the Head To the Work
Reach straight, curved, and irregular joints without moving large parts between every seam. The handheld head supports butt, lap, and tailored welding across sheet and tube assemblies.
Faster Onboarding
Visual controls and straightforward parameter setup reduce the learning curve; qualified process training is still required
Controlled Heat Input
Concentrated energy helps limit the heat-affected area, deformation, and undercut on suitable thin-metal jobs
Less Part Handling
Work around cabinets, railings, ducting, racks, and enclosures with fewer workpiece moves
Butt, Lap and Tailored Joints
Built for Everyday Fabrication
Smart Weld brings speed, controlled heat input, flexible access, wire-assisted joining, and multilingual controls into one handheld workflow.
Move Faster, Finish Less
On suitable jobs, higher travel speed and a smooth, low-spatter bead shorten cycle time and reduce grinding, straightening, and cleanup.
Shorter Setup, Better Reach
Touch-based parameters and a lightweight head help operators move between materials, joint shapes, and hard-to-position assemblies with less handling.
Adapt the Process to the Joint
CW, PWM, and Arc modes, plus wire-assisted or wire-free welding, give operators multiple ways to match heat input and bead shape to the job. Thin-steel cutting is available where configured.
From Enclosures To Precision Assemblies
Smart Weld is suited to thin-metal joining across sheet-metal workshops, kitchen equipment, architectural metalwork, automotive components, HVAC ducting, power enclosures, racks, furniture, and precision hardware.
Join sheet-metal cabinets, electrical enclosures, distribution boxes, and equipment housings with controlled heat input and limited finishing.
Fabricate stainless kitchen equipment, ovens, ventilation ducts, and appliance housings with long, visible seams.
Weld stair handrails, door and window guards, shelving, racks, and metal furniture frames without repeatedly moving large assemblies.
Handle thin automotive parts, precision hardware, instrument housings, and other appearance-sensitive assemblies.
Choose the Right Smart Weld Configuration
Compare 1, 1.5, and 2 kW starting points with the process differences that matter: material, thickness, speed, distortion, and finishing.
* All values are reference data. Actual results vary with material, joint design, fit-up, scan pattern, travel speed, and operator technique. A 220V supply is optional.
Ready to
Master Your
Production?
Share your material type, sheet size, thickness range, and production goals. Our engineering team will recommend a Smart Cut configuration for your workshop.