LASER WELDING SOLUTIONS

Laser Welding Machines

Hightech laser welding machines are designed for fast, precise metal joining with controlled heat input and reduced post-weld finishing. Choose from handheld, table, jewelry, QCW, and YAG configurations for workshops, precision applications, and industrial production.

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Explore Our Laser Welding Machine Types

Hightech’s laser welding range covers handheld fabrication, precision jewelry work, fixed-table production, controlled QCW welding, and pulsed YAG applications. Compare the five machine families to find the process that best matches your parts and production requirements.

4-in-1 Fiber Laser Welding Machines

Handheld fiber laser systems for metal fabrication, supporting spot, butt, overlap, edge, and T-joint welding with wire feeding and water cooling.

Fiber Laser Jewellery Welding Machines

Precision jewelry welding systems for repair workshops and manufacturers working with small metal parts and delicate assemblies, with 100W to 300W options.

Fiber Laser Table Welding Machine

Fixed-table fiber laser systems for accurate welding of thin parts, channel letters, decorative components, and repeat assemblies with CCD-assisted positioning.

QCW Laser Welding Machines

Controlled pulsed laser systems for fine welds, repairs, and precision metal work, with configurations for stationary and handheld operation.

How to Choose the Right Laser Welding Machine

Choose the right laser welding system based on the workpiece, material thickness, required precision, production method, and part size.

Choose by Application & Workpiece

For flexible welding on different metal parts and larger assemblies, choose the HT FW handheld series. For fixed, precisely positioned parts, choose the HT FWT table welding system.

Choose by Power & Material Thickness

The HT FW series is available in 1500W, 2000W, and 3000W. For stainless and carbon steel, published welding capacity reaches 4 mm with 1500W/2000W and 6 mm with 3000W, while aluminum is supported up to 3 mm.

Choose by Precision & Pulse Control

For controlled spot welding, short seams, detailed repair, and applications requiring precise heat control, choose a QCW or YAG laser welding system.

Choose by Production & Workholding

For repeatable parts that require stable positioning and visual alignment, choose the HT FWT table system. For changing workpieces and flexible access around the part, choose the HT FW handheld series.

Choose for Jewelry & Small Parts

For rings, chains, settings, jewelry repair, and other small precision parts, choose a dedicated HT JW Jewelry Laser Welder.

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Laser Welding Machine Family Comparison

Compare published laser power, wavelength, and welding capacity across Hightech’s 4-in-1 Fiber, Jewelry, Fiber Table, QCW, and YAG welding machine families.

Published Specifications 4-in-1 Fiber Jewelry Welding Fiber Table QCW YAG
Laser Power 1500–3000W 100–300W 1500–2000W 750W 300–500W
Laser Wavelength 1064 nm ±10 nm 1064 nm 1070 nm 1080 nm 1064 nm
Published Welding Range 0.5–6 mm
Welding capacity
Stainless / Carbon Steel: 0.5–6 mm
Aluminum: 0.5–3 mm
Published spot size: 0.1–3 mm
0.2–6 mm
Welding capacity
Aluminum: 0.2–4 mm
Galvanized: 0.2–6 mm
Stainless: 0.6–6 mm
0.1–3 mm
Penetration depth
Stainless: 0.2–3 mm
Galvanized: 0.2–2 mm
0.1–4 mm
Welding capacity
Stainless: 0.1–2.5 mm
Galvanized: 0.1–4 mm
Aluminum: up to 1 mm
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Why Choose Hightech for Laser Welding Machines?

Multiple Welding Technologies

Compare handheld fiber, fixed-table, jewelry, QCW, and YAG systems instead of forcing every welding application onto one machine type.

From Portable to Fixtured Production

Choose flexible handheld systems for varied workpieces or table and precision configurations for repeatable, controlled production.

Training, Warranty & Spare Parts

Hightech provides machine training, a one-year warranty, and spare-parts support for its laser welding equipment.

Worldwide Delivery & Lifetime Support

Worldwide shipping and lifetime technical assistance help support machine setup, troubleshooting, maintenance, and long-term operation.

Choose a Laser Welder by Material

Material grade, coating, reflectivity, fit-up, shielding gas, filler wire, and joint geometry all influence laser welding results. Select the machine and process using the exact alloy and production conditions.

 

Stainless Steel

Suitable for clean, narrow seams with limited distortion when joint fit-up and welding parameters are properly controlled.

Aluminum

Aluminum reflects laser energy and conducts heat quickly, so alloy, surface condition, focus, shielding, and process testing are especially important.

Carbon Steel

Carbon steel welding requires control of joint fit-up, shielding, heat input, and surface condition.

Laser Welding Machine Types and Applications

Hightech offers multiple laser welding technologies for different production needs, from handheld fabrication and jewelry repair to fixed-table, QCW, and YAG precision welding. Each machine type is designed around specific requirements for material thickness, heat control, workpiece size, repeatability, and production volume.

1

4-in-1 Fiber Laser Welding Machines

The HT FW 1500, HT FW 2000, and HT FW 3000 products are listed in the Machine Lineup with direct links to their dedicated pages.

2

Jewelry Welding Machines

The jewelry welding range includes the MD100, MD200, CB200, and CB300 products. Use the Machine Lineup to open each dedicated product page.

3

Fiber Table Welding Machine

The HT FWT-1500 is a fixed 1500W table welding system with a published welding range of 0.4–8 mm. Its documented materials include aluminum plate, galvanized sheet, and stainless steel.

4

QCW Laser Welding Machines

The verified QCW range includes the 300W QCW Mini and the 750W HT750W QCW and HT-QCW-750Y. Their published power, wavelength, and welding ranges are listed in the comparison table.

5

YAG Laser Welding Machines

Explore the YAG machine range through the dedicated product cards in the Machine Lineup.

Frequently Asked Questions

A focused laser beam heats and melts the joint edges, which then cool into a welded seam. Depending on the material and joint, shielding gas or filler wire may also be used.

They are well suited to fast, accurate, repeatable welding with limited distortion and reduced finishing when the parts, parameters, safety controls, and operator training are appropriate.

Price depends on laser power, machine type, cooling system, controls, automation, accessories, safety equipment, freight, installation, and support.

Potential drawbacks include higher initial investment, strict laser-safety requirements, sensitivity to joint gaps and surface condition, and maintenance of optics and cooling systems.

Published welding capacity varies by machine family and material. The current comparison ranges from 0.5–6 mm for the 4-in-1 Fiber family, 0.2–6 mm for Fiber Table systems, 0.1–3 mm penetration for QCW, and 0.1–4 mm for YAG. Jewelry welding machines are specified by spot size rather than a published welding-depth range.

Industrial or automated systems are most useful for repetitive parts that can be located and fixtured consistently. Portable equipment is better suited to varied parts, repairs, and large assemblies.

Start with sample welds on the thickest material you process routinely, then evaluate duty cycle, welding speed, and daily throughput before selecting the power level.

Stainless steel and aluminum require different machine settings, surface preparation, shielding, filler strategy, and sample validation.

Pulsed systems deliver controlled bursts for localized precision and lower heat input. Continuous-wave systems provide sustained power for faster seams and higher-throughput fabrication, while QCW provides characteristics between the two.

Compare material, thickness, joint gap, power, operating mode, cooling, fixtures, wire feeding, portability, automation, safety, electrical requirements, support, warranty, and sample-weld results.

Laser welding can offer faster operation, cleaner seams, and lower distortion for suitable parts. TIG and MIG can remain practical where larger gaps, very thick material, or variable field conditions are involved.