The single-gantry independent dual-head digital cutting machine features a unique dual-head independent operation capability. Both cutting heads can work simultaneously on the same large-format material, cutting multiple components in parallel. This greatly reduces overall processing time and significantly boosts the efficiency of batch part cutting.
A single-gantry independent dual-head digital cutting machine is equipped with two tool holders mounted on a single gantry, each capable of operating independently. These tool heads can be fitted with various tools such as oscillating knives, circular blades, pneumatic knives, V-cut knives, drag knives, and plotter pens. The system can also be integrated with auxiliary devices like printers and punching tools to perform cutting, printing, and punching tasks simultaneously.
This setup significantly boosts production efficiency, especially when cutting small components from large-format materials. It is widely used across industries such as carbon fiber composites, leather, garment manufacturing, felt, advertising, foam, carpets, home interiors, and packaging.
Model | Independent Dual-Head Digital Cutting Machine |
Optional Size | 1325/1625/2030/3030/2060/3060 (support/customize size) |
Max. Cutting Speed | 0–2000mm/s |
Cutting Depth | Adopt vacuum adsorption system, ≤50mm (depending on different materials); multi-layer fabric, total height after compression <0–30mm |
Air Pressure Supply | 0.6–0.8MPA |
Repeatability Positioning Accuracy | ±0.01mm |
Working Power Supply | 220V / 380V / 3P 50HZ 60HZ |
Vacuum Power | 7.5KW / 9KW / 12KW |
Total Power | ≤11KW, Standby state 0.45KW |
Motor | Dorna servo motor / Panasonic servo motor |
Control System | Ruida / TROCEN / TRUSTER CNC system |
Optional Tools | Vibration Knife, Circular Knife, Pneumatic Knife, Drag Knife, V-knife, Printer, Hole Punch, Paintbrush |
Production And Manufacturing | OEM / ODM |
HS Code | 8479899990 |
Operating Temperature | 0°C–40°C |
Drawing Software | AUTOCAD, CORELDRAW, PGM, BOKE, GERBER, ETC |
Machine Support Format | AI, PLT, DXF, DST, DSB, EPS, DATNC, V CUT |
Work Environment | Temperature: -10°C to 40°C, Humidity: 20%–80% RH |
Application Material | Carbon Fiber Composites, Leather, Clothing Cutting, Felt, Advertising, Foam, Carpets, Home Interiors, Packaging |
Each module of the independent dual-head digital cutting machine is equipped with high-precision Panasonic servo motors from Japan, along with wear-resistant linear guide rails and racks. The machine is compatible with a wide range of tools, including oscillating knives, pneumatic knives, circular knives, printers, and plotter pens.
Its key advantage lies in the ability of multiple modules to work collaboratively on the same cutting task, significantly reducing per-unit production costs while increasing overall production efficiency.
Cooperative Operation of Circular Knife and Plotter Pen
The circular knife enables high-speed, smooth cutting, ideal for continuous cutting of flexible fabrics. The plotter pen is used to draw positioning lines, process marks, or size indicators on the fabric surface, facilitating subsequent sewing or assembly. The dual-tool combination greatly enhances both processing efficiency and marking accuracy.
Equipped with original Panasonic servo motors from Japan, the system offers high response speed, exceptional positioning accuracy, and outstanding stability. When combined with high-precision linear guides and gear reducers, it significantly enhances overall cutting smoothness, repeatability, and machine longevity—especially ideal for complex paths and high-speed cutting operations.
The pneumatic knife, spindle punching tool, and printing module are integrated into a single tool head, enabling multi-process collaboration on the independent dual-head digital cutting machine. The pneumatic knife ensures precise cutting of high-strength materials, the spindle tool handles drilling or assembly hole processing, and the printing module performs marking operations simultaneously—achieving seamless, efficient, and synchronized production.
The solenoid valve module works in coordination with Panasonic servo motors, precision rack-and-pinion drive systems, and linear guide sliders to enable precise lifting and responsive control of cutting tools such as pneumatic and oscillating knives. It ensures fast response and reliable performance, maintaining continuity and safety throughout the cutting process.
The machine features an industrial-grade linear guide and slider combination for smooth operation and strong load capacity. The rack uses a high-precision helical gear structure for tighter meshing, effectively reducing motion noise and transmission backlash. This drive system provides a solid foundation and long-term stability for the entire machine’s performance.
Featuring a prominent red button and a yellow protective cover, this device enables rapid shutdown by interrupting the power control circuit. It effectively prevents personal injury or equipment damage caused by accidental operation, material displacement, or mechanical failure.
The spindle punching tool uses a high-performance HSD or HQD brand spindle, driven by a Panasonic servo motor. It is one of the core components for achieving high-precision and high-efficiency punching operations. This tool is ideal for a wide range of applications such as pre-drilling for rivets, assembly holes, drawstring holes in bags, ventilation holes in shoes or gaskets, shock-absorbing holes, guide holes, fixing holes, snap fastener holes, air vents, installation holes, and hook slots.
It is widely used in materials like carbon fiber composites, leather/PU leather, and EVA foam. The tool features high-speed, high-accuracy punching performance, outstanding stability, and long service life. Working in tandem with the cutting system, it enables a highly efficient workflow of “simultaneous cutting and punching.”
The pneumatic knife tool module, driven by a Panasonic servo motor and integrated with a pneumatic control system, is specifically designed for cutting dense, hard-to-penetrate thick or composite materials. It offers powerful cutting force, clean edges, and high operational efficiency.
The tool uses compressed air to drive the blade in a high-speed vertical punching motion, making it ideal for tough or high-resistance materials. Equipped with a safety spring buffer structure, it protects the blade and material during high-frequency cutting and extends tool life. Based on the principle of high-frequency pneumatic punching, it delivers strong penetration and is suitable for cutting EVA foam, honeycomb cardboard, thick leather, rubber, carpets, and composite materials. The resulting cut edges are clean and vertical, with no tearing.
This is a circular blade tool designed for use with an independent dual-head digital cutting machine, widely applied in the textile and fabric industries. Its performance and advantages are primarily reflected in its suitability for large-format continuous cutting, producing clean edges without fraying, low noise and vibration operation, and compatibility with various material thicknesses.
It features continuous, smooth, uninterrupted cutting with neat edges, no fraying, and no burning, making it widely applicable for clothing fabrics, curtain fabrics, shoe upper fabrics, upholstery fabrics, medical protective materials, filter fabrics, industrial fabrics, and carbon fiber/glass fiber fabrics.
This is a vibrating knife tool designed for use with an independent dual-head digital cutting machine. The tool utilizes an electric motor to drive the blade in high-frequency vertical vibrations, achieving rapid material cutting through mechanical impact. Its primary performance advantages include: wide application range and strong cutting capability; high cutting precision; strong compatibility and quick blade replacement; stable operation, and easy maintenance.
It can be used for cutting EVA, EPE, XPE, CR foam liners, padding, packaging, PVC soft sheets, soft PE gaskets, rubber sheets, corrugated cardboard, honeycomb cardboard, industrial composite panels, Oxford cloth, felt, composite fabric, carpet backing, sound-absorbing cotton, floor mats, adhesive-backed panels, and insulation materials.
This is an industrial printing module that can be mounted on the independent dual-head digital cutting machine. It can be installed on a separate tool holder or integrated with a cutting tool in the same holder. The module enables non-contact inkjet printing directly on the material surface—either before, during, or after the cutting process.
The printhead assembly uses industrial-grade inkjet heads with strong ink adhesion and fast drying properties. It supports real-time printing of logos/brand marks, alphanumeric labels, barcodes, QR codes, production numbers, and batch information. The module works in synchronization with the cutting system, enabling simultaneous cutting and printing for streamlined, all-in-one operations.
Single-Gantry Independent Dual-Head Digital Cutting Machine | Dual-Gantry Single-Tool Holder Digital Cutting Machine | |
Gantry Structure | Single gantry structure, all tools are mounted on the same gantry | Dual gantry structure, each gantry independently mounts one tool holder |
Tool Holder Configuration | One gantry integrates two independent tool holders, each can carry different types of tools (e.g., oscillating knives, pneumatic knives, circular knives, printers, and plotter pens), supports multi-process simultaneous cutting | Each gantry carries one tool holder, typically equipped with one tool, suitable for single-process cutting |
Work Efficiency | Can perform multi-tool simultaneous operations on one gantry, improving overall efficiency, ideal for multi-process cutting | Dual gantry enables true multi-process operation, system dynamically allocates tasks, ideal for large-format, high-volume production |
Flexibility and Expandability | Two tool holders can carry different tools, suitable for various materials and complex processes | Stronger compatibility and expandability with multi-tool configuration, supports upgrades and expansion |
Typical Applications | Suitable for industries requiring multi-process cutting, such as clothing, advertising, composite materials | Suitable for high-end industries, such as furniture, automotive interior, etc. |
Control Accuracy and Positioning | Centralized tool control, positioning and path planning require external sensing tools to avoid deviation | Dual gantry independently allocates tasks, compatible with CCD camera recognition and projection positioning for improved precision |
Structural Size and Maintenance | More compact structure, smaller footprint, easier to maintain | Larger structure and footprint, but supports wider work area and long-term continuous operation |
The single-gantry dual-head digital cutting machine, with its integrated gantry structure and independently controlled dual-tool design, offers significant advantages in mass production of flexible materials. Both tool heads can be equipped with different functional modules to perform cutting, punching, drawing, and marking tasks simultaneously—greatly enhancing production efficiency and automation.
It is especially effective for cutting multiple small components from large-format materials, reducing work cycles and minimizing manual intervention. This machine is widely used in industries such as carbon fiber composites, leather, garment cutting, felt, advertising, foam materials, carpets, home interiors, and packaging.
Can the Single-Gantry Double Head Digital Cutting Machine Be Equipped with Large CCD, Small CCD, or a Projector?
Large CCD, small CCD, or projectors are generally not used on single-gantry dual-head digital cutting machines. These components are typically more suitable for use with fixed-table digital cutting machines or automatic feeding digital cutting machines.
Can This Machine Ensure Cutting Accuracy Without CCD or Projector?
Yes, it can. The machine uses an intelligent software control system combined with high-precision hardware, fully capable of maintaining cutting accuracy for various materials.
In Which Scenarios Does the Double Head Model Deliver the Highest Efficiency?
What Types of Tools Can Be Configured with the Double Head Model?
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