• K1325-F Flatbed Laser Cutter-KASU Laser
  • BLADE KNIFE TABLE
  • Rack and Pinion Motion Structure
  • Linear Motion Guide Rail
  • Ruida Control Card and Panel
  • K1325-F Flatbed Laser Cutter-KASU Laser
  • BLADE KNIFE TABLE
  • Rack and Pinion Motion Structure
  • Linear Motion Guide Rail
  • Ruida Control Card and Panel

K1325-F1 High Precision Flatbed Laser Cutter

KASU Laser’s flatbed laser cutter and engraver K1325-F1 can cut and engrave on non-metal materials like acrylic, plastic, wood, plywood, mdf, paper, etc. with super high precision and speed.

  • Bigger Working Area, Less Material Loss
  • High Accuracy and Precision Cuts
  • Powerful Control Software Meet Different Industry Needs
  • Computer-Aided Manufacturing
  • Low Initial Machine Investment
Model: K1325-F1
  • 💰 $7,800 – $8,600
  • 🚚 7–15 days lead time
  • 🛡 12-month warranty
K1325-F1 High Precision Flatbed Laser Cutter
Support Whole Sheet Layout
K1325-F1 High Precision Flatbed Laser Cutter
Stable and 24 Hours Running
K1325-F1 High Precision Flatbed Laser Cutter
Energy Saving & No Consumables
K1325-F1 High Precision Flatbed Laser Cutter
Low Maintenance Cost

See the K1325-F1 High Precision Flatbed Laser Cutter in Action — Production Floor Video

Watch the K1325-F1 High Precision Flatbed Laser Cutter run a real cutting job on our factory floor — feed alignment, beam path, and continuous output captured at production speed. The clip shows what to expect on day one before you commit to a machine of this class.

See the K1325-F1 High Precision Flatbed Laser Cutter in Action — Production Floor Video

The beauty of Co2 laser cutting is that it is incredibly versatile with suitable for different types of materials. And the K1325-F1 High Precision 4 x 8 Flatbed Laser Cutter is one of the most popular large Co2 laser cutting machine models.

It has been widely applied in advertising and signage, art and craft, toy and decorations, etc. Super low initial investment and low maintenance cost make it ideal for individual startups and industrial applications.

K1325-F1 High Precision Flatbed Laser Cutter — Full Spec Sheet, Accessories & Manufacturing

Every dimension you need to evaluate the K1325-F1 High Precision Flatbed Laser Cutter in one place — complete technical data sheet, included accessories, available optional upgrades, and our factory manufacturing process. Key strengths at a glance: Support Whole Sheet Layout, Stable and 24 Hours Running, and Energy Saving & No Consumables. Switch the tabs below to drill into each.

Working Area1300MM*2500MMSoftwareKASU
Laser TypeGlass CO2 Laser TubeWorking Speed<1000 MM/S
Laser Power80/100/130/150W/200WPower Supply RequirementsAC220V±5%   50Hz/60Hz 1Phase
Heads of LaserSingle HeadFormat SupportedAI\BMP\PLT\DXF\DST
Dimensions with Wood Package2*3.6*1.32MPositioning Accuracy±0.1MM
Gross Weight900KGOperating Temperatureminus 10℃~45℃
Motion SystemStepping MotorOperating Humidity5-95%
Cooling System5000 Industrial Water ChillerTotal Power<1.5KW (Excluding exhauster)

What's Included with the K1325-F1 High Precision Flatbed Laser Cutter

  • Glass CO2 laser tube — 100W / 130W / 150W (configurable)
  • HIWIN-spec precision linear rails for 1300 × 2500 mm bed
  • American II–VI 25mm focusing lens
  • Three molybdenum reflective mirrors
  • S&A CW-5200 industrial chiller
  • Hailey diaphragm air pump
  • 1.5kW centrifugal smoke exhaust + ducting kit
  • Industrial DC HV power supply
  • Triangle-truss welded steel frame (1300 × 2500 mm bed)
  • E-stop + 3-color tower light
  • Multi-language CE laser warning labels
  • Factory tool kit

Compatible Upgrades for the K1325-F1 High Precision Flatbed Laser Cutter

  • Rotary axis (φ80 / φ100 / φ160)
  • CCD vision camera for printed-pattern alignment
  • Honeycomb / blade knife table
  • Auto-focus Z-axis head
  • Pass-through doors for oversized stock

Inside the K1325-F1 High Precision Flatbed Laser Cutter — Engineering Highlights & Capabilities

The blocks below take you inside the K1325-F1 High Precision Flatbed Laser Cutter — each illustrates one specific engineering choice, component, or workflow capability that defines how this machine performs in production. Topic-by-topic below: Smart Laser Control Card and Software, Reinforced Hardware Module And Motion System, and Sealed Glass Co2 Laser Tube.

Smart Laser Control Card and Software

While using KASU K1325-F1 laser cutter, only CAD design files are necessary, and you can design at your wish. The smart laser control software can make the whole cutting and engraving process highly automatic. And the larger working area allows you to do design and layout on the entire sheet board and minimize your material loss.

Reinforced Hardware Module And Motion System

KASU laser’s reinforced hardware module, linear guide rail, and rack and pinion motion system make our 4 x 8 laser cutter achieve an impressive level of precision and durability. This level of accuracy is as high as +/- 0.1mm, which is one of the best you’ll get from the flatbed 1325 laser cutter.

Sealed Glass Co2 Laser Tube

Sealed Glass Co2 Laser Tube

Sealed glass Co2 laser tube is one of the consumables for Co2 laser cutting machine. But the Made-In-China Co2 glass tube’s ROI is super high. One 100W laser tube can last for over 2 years based on 8 working hours per day. And you only need to pay about 300 US Dollars to replace one.

Request An Instant Quote For Your Industry

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How KASU Support Your Business

How KASU Support Your Business

Message us! With over 12 years of experience, KASU Laser become competent and qualified in laser cutting machine products. We are setting new laser machine standards.

Full customization, 24/7 online support, and excellent after-sale services. Our expert team will provide you with high-efficient and strong laser machines that provide work simpler, faster, and more profitable.

Frequently Asked Questions About the K1325-F1 High Precision Flatbed Laser Cutter

What's the working area on the K1325-F1, and what production workflows is it designed for?

The K1325-F1 has a 1300 × 2500 mm (51″ × 98″) flatbed — large enough to handle a full 4 ft × 8 ft acrylic sheet, standard PU leather hide, or a full bolt of upholstery fabric in one pass. This puts it in the sweet spot for medium-volume industrial cutting where the workload is too big for an 80 cm bed and too small to justify a 2 m × 3 m beast. Typical buyers: mid-size sign shops, leather-goods workshops, upholstery cutters, and packaging die-cut prototypers.

What ±0.1 mm precision means in real-world production output?

Across a 100-piece batch of 50 × 50 mm acrylic squares, the K1325-F1 holds the corner-to-corner diagonal within ±0.1 mm of nominal. That’s tight enough for: snap-fit acrylic enclosures (no sandpaper trimming), interlocking MDF joinery without slop, packaging die-cut prototypes that test as production-spec, and PU leather panels matching pre-cut lining sheets within a hair. Looser ±0.3 mm cutters need post-trimming on most of these.

Which materials does the K1325-F1 cut at production speed, and to what thickness?
MaterialProduction thicknessSpeed @ 130 W
Cast acrylic8 mm10 mm/s
MDF6 mm15 mm/s
Plywood4 mm20 mm/s
PU leather3 mm40 mm/s
Felt / foam10 mm50 mm/s
Cardboard3 mm60 mm/s
Which industries in Europe, the US, and Latin America are typical K1325-F1 buyers?

Recurring 2025 export segments: Italian and Spanish leather-goods workshops (handbag panels, shoe upper templates), German automotive interior trim shops (PU and felt), UK bespoke furniture makers (MDF joinery), US point-of-sale display houses (acrylic signage), Brazilian packaging die-cut prototypers, and Mexican craft-export operations. The shared spec sweet spot is a full 4×8 ft sheet plus ±0.1 mm precision — the K1325-F1 hits both at a price point well under European-built equivalents.

Does the K1325-F1 need 3-phase power, and what are the floor-space and ventilation requirements?

Single-phase 220 V is standard and sufficient for tube wattage up to 150 W. 3-phase 380 V is available on request for facilities running 200 W tubes alongside other heavy equipment. Floor footprint is ~3.2 × 2.0 m; KASU recommends 1 m clearance on the operator side and 0.6 m on rear/sides for service access. Fume extraction is mandatory — either a ducted external exhaust or a recirculating activated-carbon filter unit. Compressed air at 0.6-0.8 MPa drives the assist-air jet.

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