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CNC Oscillating Knife Cutting Table, 2500×1600 mm, Multi-Tool Head — configured for packaging sample making and short-run carton production with oscillating knife, creasing wheel, kiss-cut knife, and round punch in a single setup.
- Aluminum honeycomb vacuum platform with zone-following adsorption holds small die-cut parts flat throughout the cut cycle
- Rack-and-pinion drive with Hiwin linear guides delivers <0.05 mm repeatability across the full working envelope
- Supports DXF, PDF, AI imports with customizable software language for existing sample-room workflows
Buyers receive a sample cutting report on their own board stock verifying edge quality and crease depth before commitment, with tool head and vacuum zone configuration specified per material.
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Product details
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Description
Multi-Tool Head Integration — The system combines oscillating knife, creasing wheel, kiss-cut knife, and round punch tools in a single setup, allowing packaging sample rooms to complete cutting, folding, and perforation without secondary handling.
Technical Specifications
| Parameter | Value |
|---|---|
| Product Type | CNC Digital Flatbed Cutting Machine (Oscillating Knife / Creasing) |
| Working Area Options | 2500×1300 mm / 2500×1600 mm |
| Machine Dimensions | 3550×1910×1400 mm (2513 format) / 3450×2300×1250 mm (2516 format) |
| Tool Head Configuration | Oscillating knife, Creasing tool, Kiss-Cut knife, Round punch |
| Fixing Method | Vacuum system with aluminum alloy honeycomb platform |
| Rated Power | 9 kW |
| Vacuum Pump Power | 7.5 kW |
| Voltage | 380 V (frequency and plug type configurable per market) |
| Transmission Method | Rack and pinion with straight-line square guide rails |
| Servo Motor | Dongling servo (Delta servo available as alternative configuration) |
| Guide Rail | Taiwan Hiwin linear rail |
| Cutting Thickness | Up to 18 mm (dependent on board grade and flute structure) |
| Repeatability | <0.05 mm |
| Supported File Formats | DXF, OLT, PDF, AI |
| Safety Device | Infrared sensors and emergency stop |
| Conveyor Belt | Germany-sourced belt (conveyor-fed variant available) |
| Auto Feeding | Optional configuration |
| Software Language | Customizable interface (English, Russian, Italian, Chinese confirmed) |
| Blade Supply | 10 oscillating blades included at shipment |
| Warranty | 1 year (excluding consumables: felt and knife blades) |
| Delivery Time | Under 30 working days |
Application Suitability
| Application | Material or Output |
|---|---|
| Carton sample making and prototyping | Corrugated board (E, B, C flute), kraft board, greyboard up to 18 mm |
| Short-run packaging production | Folding carton stock, coated and uncoated cardstock, PP corrugated sheet |
| Express and logistics box cutting | Single and double-wall corrugated, honeycomb paperboard |
| Sticker and label contour cutting | Self-adhesive vinyl, sticker sheets on release liner (kiss-cut mode) |
| Gift box and premium packaging | Rigid board, leather, synthetic covers with creasing and scoring |
| Signage and POS display production | Foam board, cardboard-based display stands, promotional packaging |
Why Vacuum Zoning Decides Whether Small Parts Stay Flat
A vacuum table zoned only for full-sheet holding will lose grip on small die-cut pieces once the surrounding material is removed, causing lift, blade deflection, and scrapped parts at production speed.
I have watched packaging sample rooms invest in a flatbed cutter based purely on working area, then discover during the first live run that sticker sheets and small carton inserts drift across the table the moment the matrix is stripped away. The aluminum honeycomb platform on this carton sample cutting machine workflow uses zone-following adsorption — the vacuum engages only the active cutting zone rather than pulling air across the entire bed surface. This keeps smaller parts pinned without demanding a pump rated for continuous full-bed draw [NEED_CITE: vacuum adsorption principles in flatbed digital cutting].
For operations running a mix of full-sheet carton blanks and small-format die-cut labels on the same shift, the difference in hold-down reliability becomes visible within the first hour of production.
Multi-Tool Head Sequencing for Packaging Workflows
The oscillating knife, creasing wheel, kiss-cut knife, and round punch are mounted on a shared tool carriage, so a single CNC knife cutting machine production line can cut the outer profile, score fold lines, kiss-cut window inserts, and punch hanging holes without manual tool changes or sheet repositioning. For carton sample rooms, this means a prototype box moves from flat file to finished, folded sample in one cycle — no secondary creasing press, no separate punching station.
Tool selection depends on the material structure. Corrugated flutes respond to oscillating knife vibration frequency and amplitude settings that differ from those used on solid cardstock or PP corrugated sheet. The creasing wheel depth must be matched to board caliper so the fold scores cleanly without cracking the liner. Getting this configuration right at the quoting stage, based on your actual board stock, prevents the situation where a machine arrives and produces ragged edges on the one material it was never tested against.
Vacuum Platform Design and Zone-Following Adsorption
The aluminum alloy honeycomb platform is not a single continuous vacuum zone. It is segmented so the system activates adsorption only beneath the area where the tool head is actively cutting. This zone-following approach serves two purposes: it reduces the continuous load on the 7.5 kW vacuum pump, and it maintains consistent hold-down pressure even after surrounding waste matrix has been stripped from the sheet [NEED_CITE: flatbed vacuum zoning standards for digital cutting].
For sticker and label producers running kiss-cut jobs, this matters because small contours lose holding force the instant the waste border is cleared. A poorly zoned table lets the label edge lift into the knife path, producing incomplete cuts or dragging the label out of register. The honeycomb structure also provides a flat reference surface that resists warping under thermal load, keeping repeatability within the stated <0.05 mm tolerance across the full working envelope over long shifts.
What the Specification Sheet Actually Means for Board Cutting
The rack-and-pinion drive paired with Taiwan Hiwin linear guides controls the positioning accuracy that determines whether crease lines land exactly where the CAD file places them. On a 2500×1600 mm working area, thermal expansion and mechanical deflection accumulate over long traverses — the linear guide and servo combination compensates for this, which is why repeatability holds below 0.05 mm regardless of where on the bed the cut occurs.
The 18 mm cutting thickness figure applies to specific board grades and flute structures, not uniformly across all materials. A double-wall corrugated sheet at 18 mm caliper cuts differently from a solid greyboard at the same thickness, because the flute cavities create uneven resistance against the oscillating blade. The 9 kW rated power covers the spindle motor, servo drives, and control system together, while the vacuum pump draws an additional 7.5 kW — your electrical supply must support both loads simultaneously on dedicated circuits [NEED_CITE: industrial electrical load planning for CNC cutting systems].
File format compatibility (DXF, PDF, AI, OLT) removes a frequent bottleneck in sample rooms where designers work in Adobe Illustrator but the machine expects only DXF. The software interface language is configurable before shipment, so a facility running Italian or Russian documentation does not force operators to navigate an English-only control screen.
The Cost of Choosing Tool Heads by Machine Price Instead of Material
I have seen packaging producers specify an oscillating knife cutter based on working area and price, then discover their woven-backed leather or fabric-reinforced board wears blades at twice the expected rate. The blade consumption alone consumed their margin on short-run jobs, and waiting weeks for replacement blades stopped production entirely.
When the tool head is selected without a sample cutting test on your actual stock — including any backing layers, coatings, or laminate films — the machine may cut clean edges on standard test board but produce crushed flutes, frayed edges, or incomplete kiss-cuts on your real production material [NEED_CITE: tooling selection criteria for oscillating knife cutting]. The hidden cost is not the machine; it is the two weeks of downtime waiting for the correct blade geometry and oscillation frequency to arrive after the fact.
What This Purchase Includes Beyond the Machine Frame
The design and production team covers both knife cutting and creasing integration, so the tool head configuration is matched to your material structure rather than defaulting to a single oscillating knife for every application. The sample cutting report is generated on your own board stock before the order is confirmed, showing edge quality, crease depth, and achievable cutting speed on your specific flute type and GSM.
Voltage, plug type, frequency, and control language are confirmed in writing before production begins — the 380 V baseline is adjusted to match your facility’s supply, not shipped as-is and left for your electrician to sort out. Software compatibility with your existing file formats and nesting workflow is verified during the quoting stage, eliminating the post-delivery discovery that your CAD files require manual conversion. The conveyor-fed variant is available with auto-feeding for operations running continuous short-run production, and the Germany-sourced belt is specified for durability under repeated loading cycles.
Documentation & Verification
- Factory test record documenting cutting performance on your specific board grade and flute type
- Electrical schematic confirming voltage, frequency, and plug configuration for your facility
- Tool head and vacuum zone configuration list matched to your material and part size range
- Software license with confirmed file format compatibility (DXF, PDF, AI, OLT)
- Sample cutting report on your own material showing edge quality and crease depth before shipment
- Spare parts list identifying blade types, felt specifications, and recommended reorder quantities
Installation, Commissioning & Support
- Dedicated 380 V circuit with capacity for 9 kW machine load plus 7.5 kW vacuum pump running simultaneously
- Floor leveling required across the 3550×1910 mm footprint to maintain honeycomb platform flatness reference
- Machine ships with tool heads pre-mounted; on-site commissioning verifies rack-and-pinion alignment and servo calibration
- Initial parameter setup includes oscillation frequency tuning for your specific board caliper and flute structure
- Operator training covers tool head changeover sequences and vacuum zone configuration for mixed part sizes
- Ten oscillating blades included at delivery; felt and blade replacements classified as consumables outside warranty scope
Before You Send the Inquiry
To match the correct working area, tool head configuration, and vacuum zoning to your production, the useful starting information includes your typical board materials with flute type and thickness, the range of part sizes from largest carton blank to smallest die-cut insert, and your facility’s voltage and frequency supply. If you run existing CAD or nesting software, confirm the file formats your design team currently outputs so compatibility is verified before the order is placed rather than after delivery.
Frequently Asked Questions
Q: How is cutting speed verified for my specific board type before I commit to the order?
A: A sample cutting test is run on your actual board stock — including your specific flute type, GSM, and any coatings or backing layers. The resulting report documents edge quality, crease depth, and cutting parameters so you can evaluate throughput on your real production material, not a generic test sheet.
Q: Which tool head should I use for corrugated board versus cardstock versus sticker materials?
A: Corrugated flutes typically require an oscillating knife with adjusted vibration frequency, while solid cardstock uses different amplitude settings. Sticker and label kiss-cutting uses a dedicated kiss-cut knife calibrated to cut the face material without penetrating the release liner. Tool selection is confirmed during the sample cutting phase on your specific materials.
Q: What vacuum zoning do I need if I cut both large carton blanks and small die-cut parts?
A: Small-format parts require finer vacuum zoning so adsorption holds after the surrounding waste matrix is removed. The zone-following system on the honeycomb platform activates only the active cutting area. Your typical part size range should be confirmed at the quoting stage so the zone layout matches your actual production mix.
Q: Will the nesting software accept my existing CAD files without manual conversion?
A: The system natively supports DXF, PDF, AI, and OLT formats. File compatibility is verified during the pre-order stage using sample files from your current workflow. If your design team uses a specific nesting application, confirm this before shipment so the software integration is validated.
Q: What electrical specifications are confirmed before the machine ships to my facility?
A: Voltage, frequency, plug type, and control interface language are confirmed in writing before production. The 380 V baseline is configured to match your local supply, and the electrical schematic documents the final configuration. Both the 9 kW machine load and 7.5 kW vacuum pump circuit requirements are specified for your electrician’s planning.
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