HomeProductsCO2 Laser Cutting & Engraving Machines1390 CO2 Laser Cutter for Acrylic and Wood
VankCut-1390 CO2 cutter with its lid open and cutting bed visible
Dimension drawing of the VankCut-1390 CO2 laser cutter
CO2 cutting head positioned above a wooden engraving on the 1390 cutting bed
Detailed tiger portrait engraved on transparent acrylic
Illuminated OMEGA lettering on a dark background
1390 CO2 cutter control panel with screen, keypad and emergency stop
VankCut-1390 CO2 cutter with its lid open and cutting bed visible
Dimension drawing of the VankCut-1390 CO2 laser cutter
CO2 cutting head positioned above a wooden engraving on the 1390 cutting bed
Detailed tiger portrait engraved on transparent acrylic
Illuminated OMEGA lettering on a dark background
1390 CO2 cutter control panel with screen, keypad and emergency stop

1390 CO2 Laser Cutter for Acrylic and Wood

CO2 Laser Cutting & Engraving Machines

The VankCut-1390 uses a 1300 × 900 mm work area for acrylic displays, wood crafts, packaging blanks and mixed engraving jobs. It offers more sheet space than the 9060 while remaining below the full-sheet 1325 format.

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Product Description

Application and model selection

Select the bed around your largest routine sheet and smallest loose part. Knife blades support rigid panels; honeycomb helps support paper and flexible materials. A 1390 nonmetal CO2 machine is different from the enclosed 1390FL fiber laser for metal sheets.

Configuration and specifications

ParameterProduct configuration
Model / formatVankCut-1390
Nominal working area1300 × 900 mm
Laser power options80 / 100 / 130 / 150 W
Laser sourceWater-cooled sealed CO2 glass tube
Nominal wavelength10.6 µm
Motion systemLinear guides and belt-driven gantry
Controller / softwareRuida DSP; RDWorks or compatible LightBurn configuration
WorktableKnife-blade or honeycomb options
CoolingIndustrial water chiller matched to source power

The values below identify this product and its listed options. The selected source, optics, controller, accessories and site utilities must be named in the quotation. Motion speed and positioning figures do not establish finished-part tolerance or production throughput.

Materials and process limits

Acrylic, wood, plywood, MDF, paper and cardboard are common cutting and engraving candidates. Approved textiles, natural leather and laser-grade rubber require composition and sample checks. Glass, ceramic, stone and coated metal are surface-marking applications; this standard CO2 platform does not cut bare metal.

Identify the exact material, coating and adhesive before testing. Do not laser-process PVC, vinyl, PTFE, other halogen-containing materials or unidentified composites. Use material-specific extraction and continuous supervision during cutting.

Production workflow

Prepare the artwork in the supplied control software, check scale and processing order, then set focus and test the material. Ruida DSP configurations commonly use RDWorks; LightBurn compatibility requires the exact supported controller, firmware and license. Camera recognition, where fitted, uses its matched vision workflow. Keep the original machine settings and lens data backed up.

Options to specify

Choose honeycomb support for thin flexible material or knife blades for rigid sheets. A motorized Z table and rotary fixture must provide enough clearance for the actual part. Tube power, focal length, cooling, air assist and extraction should be selected together. Current LightBurn releases support Windows and macOS; Linux requires an older supported release.

Plan suitable guarding, interlocks, emergency stops, extraction and operator training for the supplied laser system. The finished machine classification must be verified; an enclosure alone is not proof of Class 1 compliance. Follow the supplied operating and maintenance instructions.

Sample test and acceptance

Approve a representative sample and the written configuration before ordering. Record the material, source, settings, lens or nozzle, fixture, appearance, dimensions and complete cycle time. Keep those results as the production acceptance reference.

Cutting thickness and speed

Use your actual material and drawing to agree the thickness, edge finish, kerf and cycle time. Tube rating alone is insufficient: density, resin, moisture, focus, air assist and acceptable charring all affect the result. A maximum separation cut is different from repeatable production cutting.

Installation, service and documentation

Ask Vank Laser to include the machine layout, electrical requirements, supplied software, operating instructions, maintenance schedule and recommended spare parts in the technical proposal. Agree commissioning, operator training, support language, warranty coverage and service responsibilities before shipment. Request conformity documents for the actual machine and destination.

Request a sample test and quotation

Provide material composition, sheet size, thickness range, artwork, required edge or engraving finish and parts per shift.

Send the destination country, installation voltage and required delivery scope with your inquiry. Ask for sample photos or video, measured results and a configuration-specific quotation.

Request a sample test and configuration quote

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Machine and component photos

Photos illustrate the product or component family. Included brands, accessories and configuration are defined in the approved quotation.

Red CO2 laser cutting head positioned above a wooden workpiece
CO2 cutting and engraving head
Glass CO2 laser tube mounted in its compartment with cooling hoses
Sealed CO2 glass tube

Product videos

Vank product-family demonstration. The machine shown may have a different power or optional equipment; confirm the configuration for your order.

FREQUENTLY ASKED QUESTIONS
  • Can the 1390 produce display-quality acrylic edges?

    The 1390 supports acrylic cutting, and the required edge finish is qualified on your stock and process. Send us your display drawing and actual material. Inspect visible edges, small features and fitted joints in the sample before approving the configuration for your production finish.

  • Can I use the same settings for all plywood and MDF?

    No. Density, resin, moisture and adhesive vary between wood-based sheets and affect the cut. For furniture details or craft blanks, send us the exact stock you plan to use. Approve edge appearance and repeatable results before keeping a production recipe for that material.

  • Does the 1390 need water cooling?

    Yes. The 1390 uses a water-cooled CO2 glass tube with an industrial chiller matched to the selected power. We confirm the tube, chiller and installation utilities in your quotation. Approve acrylic or wood samples using that complete package before accepting it for your workload.

  • Which 1390 tube suits engraved wood and cut acrylic?

    The 1390 offers 80, 100, 130 and 150 W options. Compare your wood engraving and acrylic cutting with the proposed source and optics. A higher power rating does not automatically improve fine engraving; approve the smallest artwork detail and required acrylic edge finish together.

  • What extra working space does the 1390 offer over the 9060?

    The 1390 has a 1300 × 900 mm work area, compared with 900 × 600 mm on the 9060. For larger display parts or packaging blanks, send us your nesting layout. Check whether the extra area reduces sheet changes while keeping smaller pieces accessible.

  • How does this 1390 differ from the 1390FL?

    This 1390 uses CO2 for nonmetal cutting and engraving; the 1390FL uses a fiber laser for metal sheets. If your project combines acrylic and steel components, send us both material requirements. Choose the appropriate process for each component rather than relying on the shared model number.

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