INDUSTRIAL LASER SOLUTIONS

Industrial Laser Solutions

Start with the industry part, core process and material system, then combine the source, optics, motion, tooling, automation and quality validation into a production-ready solution.

06priority industries
08core processes
03material systems

START WITH THE APPLICATION

Define the manufacturing task before selecting equipment

The same rated power can require completely different optics, motion, tooling and inspection for different materials, structures and quality standards.

Choose the nearest entry point, then refine the boundary through the industry, process and material guides. Final equipment follows real samples and an agreed acceptance method.

01

Part & application

Drawings, geometry, material condition, current issue and production environment.

02

Process & quality

Appearance, cross-section, strength, sealing, edge, cleanliness or function.

03

Equipment & automation

Source, optics, motion, tooling, vision, handling and safety.

04

Validation & delivery

Process window, repeatability, takt, inspection, data and acceptance.

SOLUTIONS BY PROCESS

Choose the laser process by manufacturing target

The manufacturing target and quality criteria determine the process—not the equipment name or rated power alone.

INTEGRATION LAYER

Laser automation and intelligent production lines

Integrate robotics, vision, tooling, handling, inline inspection, PLC, MES and guarding into a deliverable production system.

View automation solutions ↗
Manufacturing targetPriority processValidation focus
Structural and functional joiningLaser weldingJoint, penetration, strength, sealing, spatter and distortion
Sheet, tube and complex contoursLaser cuttingThickness, edge, heat input, access and takt
Oxide, coating and pre-weld treatmentLaser cleaningContamination, selectivity, substrate protection, roughness and extraction
Characters, codes and serializationLaser markingContrast, read rate, durability, appearance and data
Microholes, cooling holes and arraysLaser drillingDiameter, taper, recast, cracks and positional accuracy
Functional-layer windows and patternsLaser etchingLayer selectivity, residue, uniformity and substrate protection
Wafers, brittle materials and microstructuresLaser micromachiningChipping, cracks, heat input, particles and cleanliness
Deep textures, molds and durable graphicsLaser engravingDepth, edge, surface quality, appearance and throughput

SOLUTIONS BY MATERIAL

Define the process boundary from material behavior

Absorption, conductivity, reflectivity, layer structure, crystal orientation and surface condition directly change the process window.

PROJECT VALIDATION

From sample validation to equipment delivery

Keep the process window, quality, takt, automation and acceptance in one project chain.

01 / PART

Part & material

Material certificates, drawings, real samples, batch condition and current process.

02 / QUALITY

Quality & inspection

Appearance, cross-section, strength, sealing, edge, cleanliness and function.

03 / PRODUCTION

Takt & integration

Output, changeover, handling, vision, data and site interfaces.

04 / ACCEPTANCE

Validation & acceptance

Sample records, process window, repeatability, configuration and acceptance method.

  1. 01
    Requirements record

    Record part, material, quality, takt and environment boundaries.

  2. 02
    Samples & process window

    Develop a repeatable window around the critical variables.

  3. 03
    Equipment & automation

    Freeze optics, motion, tooling, inspection, safety and data.

  4. 04
    Acceptance & production delivery

    Validate quality, stability and takt using the agreed method.

FAQ

Industrial laser solution questions

If you already have material, drawings or samples, submit them for a focused assessment.

Should industrial laser equipment be selected by power or application?

Start with the part, material, geometry, quality and takt, then work backward to the source, optics, motion, tooling and automation. Power is one variable in the system.

Can one laser system serve multiple industries?

A base platform may be shared, but material, process head, tooling, guarding, extraction, inspection, software and the quality window are configured for the real task.

How do I choose welding, cutting, marking or cleaning?

Define the manufacturing objective, then review the relevant process page. Multiple operations can be combined in a cell or line around part flow and output.

Can samples be validated before the equipment is selected?

Yes. Use representative material and parts to validate the process window, quality, takt and repeatability before freezing the equipment and acceptance method.

Can equipment integrate with robotics, vision and MES?

Robotics, vision, handling, inline inspection, PLC, MES, traceability and safety interfaces can be evaluated within a defined project scope.

What information is needed for a project assessment?

Provide material grade and condition, drawings, real samples, current process, quality criteria, inspection method, target takt and planned automation interfaces.

BUILD THE RIGHT SOLUTION

Start with the real part—not a list of equipment parameters

Submit material, drawings, quality, takt and integration requirements so we can define the industry, process, material and equipment path.

Start project assessment