FIBER LASER METAL CUTTING

Fiber Laser Cutting Machines

Hightech supplies fiber laser cutting machines for accurate, efficient processing of carbon steel, stainless steel, aluminum, brass, copper, galvanized sheet, titanium alloys, silicon steel, and other supported metals. Our range includes compact sheet-cutting systems, standard industrial models, sheet-and-tube configurations, and exchange-table machines for continuous production.

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Our Fiber Laser Cutting Machine Models

The Hightech collection currently includes six fiber laser machine models covering different working areas and production requirements. Available configurations include standard flatbed machines, sheet-and-tube systems, and an exchange-table model designed to reduce loading and unloading delays.

How to Choose the Right Fiber Laser Cutting Machine

Choose a fiber laser cutting machine for metal based on your material type, maximum thickness, sheet dimensions, required production volume, available floor space, and automation requirements.

By Material Type and Maximum Thickness

Identify the metals you process and the maximum required thickness. Laser power, assist gas, cutting speed, and edge-quality requirements must be evaluated together.

By Sheet Size and Working Area

Match the machine working area to your standard sheet dimensions, part sizes, nesting requirements, and available workshop space.

By Production Volume

Choose between compact sheet-cutting systems, standard industrial machines, and higher-throughput configurations according to daily output and operating hours.

By Machine Configuration

Select a standard flatbed machine, exchange-table system, or sheet-and-tube configuration based on the products and production workflow you require.

By Utilities and Automation

Confirm electrical capacity, cooling, extraction, assist-gas supply, floor space, loading requirements, and the level of automation needed before ordering.

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Compare Fiber Laser Cutting Machine Models

Compare machine types, working areas, production roles, laser configurations, and workflow advantages across the current Hightech fiber laser cutting machine range.

Compare HT 3015 ST HT 4015H HT FC-2040
Exchange Table
HT FC-1325 HT FC-2040 HT FC-1530
Best For Businesses cutting both metal sheets and compatible tubes Demanding industrial fabrication and larger production environments Continuous sheet production with reduced loading delays Smaller sheets, signage, custom parts and limited workshop space High-volume industrial metal-sheet manufacturing General sheet-metal fabrication and medium-volume production
Machine Type Sheet-and-Tube Fiber Laser Cutter Industrial Flatbed Fiber Laser Cutter Exchange-Table Flatbed Fiber Laser Cutter Compact Flatbed Fiber Laser Cutter Industrial Flatbed Fiber Laser Cutter Standard Flatbed Fiber Laser Cutter
Work Area Not specified on current product page 4000 × 1500 mm 2000 × 4000 mm 1300 × 2500 mm 1300 × 1500 mm
As listed on the current product page
3000 × 1500 mm
Laser Power 1500W / 3000W /
6000W / 12000W
Raycus 6000W Raycus Fiber Laser Source
Wattage not stated
Raycus Fiber Laser Source
Wattage not stated
Raycus Fiber Laser Source
Wattage not stated
Raycus Fiber Laser Source
Wattage not stated
Positioning Accuracy ±0.03 mm ±0.03 mm ±0.05 mm ±0.05 mm ±0.05 mm ±0.05 mm
Applicable Materials Metal,
Stainless Steel,
Aluminum,
Copper,
Brass,
Carbon Steel,
Galvanized Sheet
Supported Metal Sheets
Exact material list is not itemized on the current product page
Aluminum Alloy,
Brass,
Carbon Steel,
Copper,
Electrolytic Sheet,
Galvanized Sheet,
Manganese Alloy,
Silicon Steel,
Stainless Steel,
Titanium Alloy
Aluminum Alloy,
Brass,
Carbon Steel,
Copper,
Electrolytic Sheet,
Galvanized Sheet,
Manganese Alloy,
Silicon Steel,
Stainless Steel,
Titanium Alloy
Aluminum Alloy,
Brass,
Carbon Steel,
Copper,
Electrolytic Sheet,
Galvanized Sheet,
Manganese Alloy,
Silicon Steel,
Stainless Steel,
Titanium Alloy
Aluminum Alloy,
Brass,
Carbon Steel,
Copper,
Electrolytic Sheet,
Galvanized Sheet,
Manganese Alloy,
Silicon Steel,
Stainless Steel,
Titanium Alloy
Key Configuration Sheet-and-Tube Processing,
Auto-Focus Head,
Capacitive Height Control,
1.5G Maximum Acceleration
Raycus 6000W Source,
BLT 421H Head,
Cypcut 4000E,
1.5G Maximum Acceleration
Dual Exchange Table
Automatic Focusing,
Intelligent Tracking,
FSCUT Control
Raycus Source,
Raytools Auto-Focus Head,
FSCUT Control,
0.4G Maximum Acceleration
Automatic Focusing,
Intelligent Tracking,
Free Nesting,
FSCUT Control
Automatic Focusing,
Intelligent Tracking,
Free Nesting,
FSCUT Control
why us?

Why Choose Hightech Fiber Laser Cutting Machines?

High-Precision and Stable Metal Cutting

High-quality fiber laser sources, auto-focus cutting heads, capacitive height control, servo motion systems, and rigid machine beds support accurate and consistent cutting across production runs.

Flexible Material and Assist-Gas Options

Selected machines can operate with air, oxygen, or nitrogen and process common industrial metals including carbon steel, stainless steel, aluminum, brass, copper, and galvanized sheet.

Configurations for Different Workflows

Choose from compact flatbed systems, standard industrial machines, larger working areas, exchange-table equipment, and sheet-and-tube configurations.

Global Configuration and Technical Support

Hightech provides machine configuration consultation, worldwide shipping options, remote installation guidance, operator training, spare parts, and technical support.

Metals and Fiber Laser Cutting Applications

Hightech fiber laser cutting machines support accurate processing of common industrial metals for sheet-metal fabrication, machinery components, enclosures, structural panels, signage, and custom manufacturing.

Carbon Steel and Stainless Steel

Cut structural parts, machinery components, brackets, enclosures, panels, and fabricated products with the appropriate laser power and assist gas.

Aluminum, Brass and Copper

Process compatible non-ferrous sheets for signs, decorative components, electrical products, furniture parts, and custom fabrication.

Galvanized and Electrolytic Sheet

Produce HVAC parts, refrigeration components, cabinets, housings, panels, and industrial sheet-metal assemblies.

Silicon Steel and Titanium Alloys

Selected machine configurations support compatible industrial alloys according to material thickness, laser power, assist gas, and required cut quality.

Machinery, HVAC and Elevator Components

Manufacture mechanical parts, electrical enclosures, refrigeration products, elevator panels, brackets, frames, and structural components.

Signage and Custom Metal Products

Produce metal letters, decorative panels, display structures, branding elements, metal furniture parts, and custom fabricated components.

MACHINE TYPES

Types of Fiber Laser Cutting Machines

Hightech offers fiber laser cutting machine configurations for smaller sheet formats, standard industrial production, continuous exchange-table workflows, and combined sheet-and-tube processing.

1

Small and Compact Fiber Laser Cutting Machines

Compact fiber laser machines are suitable for smaller sheets, custom parts, signage, and lower-volume production. Models such as the HT FC-1325 provide industrial CNC control in a smaller installation footprint.

2

Industrial Fiber Laser Cutting Machines

Industrial fiber laser machines are built for regular production, larger workpieces, and higher throughput. They are widely used for machinery parts, enclosures, HVAC products, elevator components, panels, and fabricated metal products.

3

Exchange-Table Fiber Laser Cutting Machines

Exchange-table systems use two working platforms, allowing one table to be loaded while the other is cutting. This reduces idle time and supports continuous sheet-metal production.

4

Sheet-and-Tube Fiber Laser Cutting Machines

Sheet-and-tube machines process flat sheets as well as compatible tubes and profiles. They are suitable for frames, furniture parts, machinery structures, railings, automotive components, and fabricated assemblies.

Frequently Asked Questions

Fiber laser machines can process many common metals, including carbon steel, stainless steel, aluminum, copper, brass, galvanized sheet, silicon steel, and titanium alloys. Supported thickness depends on the machine, laser power, assist gas, and required cutting quality.

The correct machine depends on sheet size, metal type, maximum thickness, daily output, floor space, and whether tube processing is required. These factors should be evaluated before recommending a model.

Small machines generally have a more compact working area and are suitable for smaller sheets or lower-volume production. Industrial machines may offer larger tables, higher power, heavier frames, exchange tables, automation, and greater continuous-production capacity.

Yes, but the machine must be designed as a sheet-and-tube combination system. Standard flatbed machines normally process sheets only.

Required power depends on the material, maximum thickness, desired cutting speed, assist gas, and edge-quality requirements. Submit sample materials and production details for an application-based recommendation.

An exchange-table machine uses two working platforms so one table can be loaded or unloaded while the other remains in the cutting area. This helps reduce non-cutting time between production cycles.

Selected fiber laser machines can operate with air, oxygen, or nitrogen. The correct gas depends on the metal, thickness, cutting speed, edge-quality requirements, and machine configuration.

Choose a working area that accommodates your standard sheet dimensions, nesting layout, part size, available floor space, and loading workflow without unnecessary material repositioning.

Most industrial fiber laser installations require suitable electrical capacity, water cooling, assist-gas delivery, extraction or ventilation, compressed air where applicable, and adequate installation and loading space.

Hightech provides machine configuration consultation, remote installation guidance, operator training, spare parts, and technical support. The exact service arrangement should be confirmed for the selected model and destination country.