KX1390-F1 CCD Laser Cutter With Blade Knife Table
KASU Laser’s KX1390-F1 CCD laser cutter with blade knife table is specially designed for position cutting printed non-metal materials like acrylic, plastic, wood, plywood, paper, etc. with super high precision and speed.
- High Accuracy and Precision Cuts
- Smart CCD Vision and Control Software
- Vision and Non-Vision Working Modes
- Computer-Aided Manufacturing
- Low Initial Machine Investment
- 🚚 7–15 days lead time
- 🛡 12-month warranty
See the KX1390-F1 CCD Laser Cutter With Blade Knife Table in Action — Vision-Aided Cutting Video
Watch the KX1390-F1 CCD Laser Cutter With Blade Knife Table run a real vision-aided cutting job on our factory floor — camera registration, smart path correction, 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 KX1390-F1 CCD Laser Cutter With Blade Knife Table in Action — Vision-Aided Cutting Video
The beauty of Co2 laser cutting is that it is incredibly versatile with suitable for different types of materials. And the KX1390-F1 CCD Laser Cutter With Blade Knife Table is one of the most popular 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.
KX1390-F1 CCD Laser Cutter With Blade Knife Table — Vision System Specs, Accessories & Manufacturing
Every vision system, optics and motion dimension of the KX1390-F1 CCD Laser Cutter With Blade Knife Table in one place — complete technical data sheet, included accessories, available optional upgrades, and our factory manufacturing process. Key strengths at a glance: Non Contact of Materials, Stable and 24 Hours Running, and Energy Saving & No Consumables. Switch the tabs below to drill into each.
- Data Sheet
- Includes & Options
- Video Testimonials
| Working Area | 1300MM*900MM | Software | KASU |
| Laser Type | Glass CO2 Laser Tube | Working Speed | <1000 MM/S |
| Laser Power | 80/100/130/150W/200W | Power Supply Requirements | AC220V±5% 50Hz/60Hz 1Phase |
| Heads of Laser | Single Head | Format Supported | AI\BMP\PLT\DXF\DST |
| Dimensions with Wood Package | 2*1.77*1.32M | Positioning Accuracy | ±0.1MM |
| Gross Weight | 550KG | Operating Temperature | minus 10℃~45℃ |
| Motion System | Stepping Motor | Operating Humidity | 5-95% |
| Cooling System | 5000 Industrial Water Chiller | Total Power | <1.5KW (Excluding exhauster) |
What's Included with the KX1390-F1 CCD Laser Cutter With Blade Knife Table
- Glass CO2 laser tube — 80W / 100W / 130W (configurable)
- Side-mount CCD vision camera
- Blade knife table (standard, for thick stock)
- HIWIN-spec linear rails for 1300 × 900 mm bed
- ZnSe focusing lens
- Three molybdenum reflective mirrors
- Industrial water chiller
- Industrial oil-free air pump
- 1.5kW centrifugal smoke exhaust + ducting kit
- Industrial DC HV power supply
- Triangle-truss welded steel frame
- Vision software (pre-installed)
- E-stop + tower light
- Multi-language CE laser warning labels
- Factory tool kit
Compatible Upgrades for the KX1390-F1 CCD Laser Cutter With Blade Knife Table
- Upgrade to top-mount CCD
- Upgrade to honeycomb table variant (KX1390-F1-honeycomb)
- Rotary axis
- Auto-focus Z-axis head
- Extended-warranty pack
Inside the KX1390-F1 CCD Laser Cutter With Blade Knife Table — Vision-Aided Engineering Highlights
The blocks below take you inside the KX1390-F1 CCD Laser Cutter With Blade Knife Table — each illustrates one specific camera, optics, motion or software component that defines vision-aided cutting accuracy. Topic-by-topic below: Smart CCD Laser Control Software, Reinforced Hardware Module, and Sealed Glass Co2 Laser Tube.

Smart CCD Laser Control Software
The KX1390-F1 CCD Laser Cutter is the Co2 laser cutter combined with the smart CCD vision software and camera. It can detect features of small-sized printed plastic, acrylic, leather, and other materials and then position cut with high accuracy.

Reinforced Hardware Module
The laser cutter lasts longer since there is no mechanical friction that could lead to wear and tear. KASU laser’s reinforced hardware module makes our cutter achieve an impressive level of precision. This level of accuracy is as high as +/- 0.1mm, which is one of the best you’ll get from laser cutting.

Sealed Glass Co2 Laser Tube
A sealed glass Co2 laser tube is one of the consumables for a 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 hundreds of US Dollars to replace one.
One Stop Laser Solution For Your Product
Request An Instant Quote For Your Industry

How KASU Support Your Business
we support OEM/ODM services for your specific equipment. Fast response, exact execution, innovation, and pioneering.
Message us right away! KASU Laser manufacture intelligent and automatic solutions laser cutting machines. The machines have stable and reliable conditions perfect for cutting various materials.
KASU Other Laser Cutters
Frequently Asked Questions About the KX1390-F1 CCD Laser Cutter with Blade Knife Table
What is a "blade knife table" on the KX1390-F1, and what hybrid workflows does it unlock?
The blade-knife table adds a mechanical oscillating-blade cutting head alongside the CO2 laser head. This lets the machine handle materials where the laser doesn’t work cleanly: foam mattress samples (laser melts foam), thick leather hide (laser leaves char), corrugated cardboard (laser leaves brown edge), and synthetic-felt mats (laser singes natural fibres). With both tools on one machine, you can cut a single mixed-material job — laser-cut printed PU leather, then blade-cut the foam backing — in one workflow.
Which mattress / upholstery / packaging shops benefit from the KX1390-F1 laser+blade hybrid?
Top current adopters: mattress sample makers in Vietnam and Mexico (foam panels + printed-fabric covers, both cut on one machine); upholstery sample workshops in Italy and Germany; commercial-carpet sample producers in the US and UK; corrugated-packaging prototypers across Asia; and shoe-sample workshops that need to cut both printed-leather uppers (laser) and EVA-foam midsoles (blade). The laser+blade combination eliminates the back-and-forth between two specialised machines.
How does the blade-knife head coordinate with the CCD camera for printed-substrate jobs?
The CCD camera scans printed registration marks first, then KASU control software assigns cut operations to either the laser or the blade based on layer color in the design file: red = laser cut (printed-PU contour), green = blade cut (foam backing perimeter), etc. Both tools share the same camera coordinate system, so a single registration scan supports both cutting passes. This eliminates the alignment errors typical of moving a part between two separate machines.
What materials can the blade-knife head handle that the laser cannot, and vice versa?
| Material | Best tool | Why |
|---|---|---|
| Acrylic, PMMA | Laser | Polished sealed edge |
| Foam mattress | Blade | Laser melts |
| Printed fabric | Laser | Pattern-following + sealed edge |
| Corrugated cardboard | Blade | Laser chars edge brown |
| Thick leather hide (4mm+) | Blade | Laser leaves heavy char |
| PU leather (printed) | Laser | Pattern + sealed |
| EVA foam (thin) | Either | Both work; blade for thick (10mm+) |
| Felt (synthetic) | Laser | Sealed edge prevents fraying |
| Natural fiber carpet | Blade | Laser singes |
What's the maintenance schedule for the blade head, and how does blade lifespan affect total cost of ownership?
The oscillating blade is a wear component — replacement intervals depend on material and load. Approximate replacement cycles: 200 hours on foam mattress production (soft, low-wear); 80 hours on dense rubber and corrugated; 40 hours on thick leather (high-friction). Replacement blades cost roughly $20-50 per blade. Over the machine’s lifetime, blade consumables add ~3-5% to total operating cost — easily offset by the materials that the blade enables (which would otherwise require a separate dedicated machine).




























