CNC Oscillating Knife Cutting Machine 1625 | Model Selection

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Description

Tool head matched to material — oscillating, creasing and V-groove heads specified per flute, foam density and edge requirement before the 1625 is built, not swapped as an afterthought.

Technical Specifications

Parameter Value
Product Type CNC Oscillating Knife Cutting Machine for Packaging
Model 1625
Working Area 1600 × 2500 mm
Cutting Speed 0–1500 mm/s
Cutting Thickness Up to 40 mm
Cutting Accuracy ±0.1 mm
Vacuum Pump 9 kW
Vacuum Table Aluminum bellows vacuum table
Voltage Options 110 V / 220 V / 380 V
Control System PLC control panel with multi-language display
Software & File Formats PLT, DXF, AI, PDF; dedicated packaging box structure design software
Tool Head Options Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife, CCD camera
Safety Device Infrared sensor device and emergency stop device
Machine Size 3300 × 2100 × 1350 mm
Language Options English, Russian, Italian, Chinese (additional languages customizable)
Certification CE

Application Suitability

Application Material or Output
Packaging sample making Corrugated cardboard (E-flute, B-flute, BC-flute), greyboard, art paper
Short-run carton production Cardstock, specialty paper, adhesive-backed laminates
Protective packaging inserts EVA foam, EPE foam, PU foam, Coroplast
Gasket and industrial die-cutting Rubber mats, composite materials, thin PVC and PET sheets
Textile and leather prototyping Velvet, fleece, non-woven fabric, leather, synthetic leather

Why "Working Area Only" Specifications Fail on the Shop Floor

A 1600 × 2500 mm table cuts nothing cleanly if the tool head and vacuum zoning are not matched to the actual flute count and foam density you run.

I have seen buyers specify a CNC oscillating knife cutting machine purely on bed size, then discover on the first production day that the oscillating knife cannot shear through double-wall BC-flute at full speed, or that small carton blanks lift off the table because the vacuum zones are too coarse. The cutting area is just a footprint; the real configuration lives in the tool head selection, vacuum zoning and software workflow. [NEED_CITE: vacuum holding force requirements for corrugated substrates]

1625 CNC oscillating knife cutting machine for packaging with interchangeable tool heads

Matching the Tool Head to the Flute and the Fold

The 1625 supports eight interchangeable tool heads, and the right choice depends on what happens after the cut. An oscillating knife shears through corrugated and foam cleanly, but a folding carton also needs a creasing wheel to score fold lines without crushing the flute structure. For V-groove channels in thick greyboard — common in rigid box production — a dedicated V groove knife removes material to leave a sharp 90-degree fold. Specifying these heads at the order stage, rather than retrofitting them later, keeps the tooling calibrated to the machine’s motion system from day one.

Vacuum Zoning and Small-Part Holding

Corrugated sample cutting often produces small tabs, glue flaps and ventilation cutouts that weigh only a few grams. A single-zone vacuum table pulls evenly across the full 1600 × 2500 mm surface, but once the knife penetrates the sheet, air rushes through the kerf and small parts can shift or lift. The aluminum bellows vacuum table on this unit allows segmented zoning so suction concentrates under the active cutting area, holding light cardstock and thin E-flute blanks in place without requiring a full-sheet sacrificial overlay. [NEED_CITE: vacuum table zoning practices for flatbed digital cutters]

Reading the Specs That Actually Matter for Packaging Workflows

The 0–1500 mm/s cutting speed range is the travel envelope; actual throughput depends on the contour complexity of your box template and the flute resistance. A simple four-flap carton outline in B-flute runs faster than a locked-bottom design with dozens of internal cutouts in BC-flute. The 9 kW vacuum pump is sized to maintain suction across the bellows table at sustained production speed, not just at idle. File format support — PLT, DXF, AI, PDF — plus the dedicated packaging box structure design software means a sample maker can import structural templates directly without redrawing in a third-party CAD package. The PLC control panel with selectable display language removes the barrier of an operator reading error codes in an unfamiliar script.

PLC control panel and tool head carriage on the 1625 flatbed cutting table

The Hidden Cost of a Misconfigured Flatbed

When vacuum zoning is insufficient for the part size you actually cut, operators spend time taping material to the table or running a second pass to finish parts that shifted mid-cut. When a CCD camera is specified for printed contour work but not tested on your substrate’s ink density and mark contrast, registration drifts at production speed and the output becomes waste. [NEED_CITE: CCD registration accuracy on pre-printed corrugated sheets] These problems do not show up in a showroom demo; they surface on the first full day of real orders.

Why Source This Cutter from the Jinan Production Floor

The design team covers both knife and laser cutting technologies, so the cutting method is matched to the material rather than forced into one process. Tool head and table configurations are specified per material type and production volume before the order is locked. CCD camera positioning is validated for printed contour work on your actual substrate. Software compatibility with your existing file formats is confirmed before the machine ships. Sample cutting on your own corrugated, foam or greyboard stock runs before commitment, so the configuration is proven rather than promised.

Documentation & Verification

  • Machine specification sheet listing every installed tool head and its calibrated parameters
  • Electrical schematic confirming voltage, plug type and circuit requirements for your facility
  • Sample cutting report on your corrugated or foam material at production speed
  • Tool head and table configuration list matched to your flute count and sheet thickness
  • Software licence and file format compatibility note for your design workflow
  • Packing photographs documenting the machine condition before crate closure

Installation, Commissioning & Support

  • 9 kW vacuum pump requires a dedicated circuit; confirm amperage matches your local voltage option (110/220/380 V)
  • Machine footprint of 3300 × 2100 mm plus operator clearance defines the minimum workshop bay
  • PLC control panel language set during commissioning to match your operator team
  • First-article test cuts run on your packaging stock to validate tool head selection and vacuum zoning
  • Spare oscillating knife blades, creasing wheels and vacuum seals included in the initial kit

What to Include with Your Inquiry

Send the specific corrugated flute type, greyboard grammage or foam density you cut most often, along with a representative box template file in your preferred format. Confirm your facility voltage and frequency, and note the display language your operators need. If your workflow relies on CCD contour recognition, provide a printed sample so the camera can be tested against your actual ink and mark contrast before the configuration is finalized.

Frequently Asked Questions

Q: How is cutting thickness verified for different corrugated flutes and foam densities?
A: Sample cuts are run on your specific material — E-flute, BC-flute, EVA or EPE foam — at production speed before the order is confirmed. The cutting thickness rating of up to 40 mm is validated against your actual substrate, not a generic test piece, and the result is documented in a sample cutting report.

Q: Which tool head is specified for my material, and why?
A: The choice depends on both the material and the finished edge or fold you need. Oscillating knives shear corrugated and foam; creasing wheels score fold lines; V groove knives remove material for rigid box channels. The tool head list is locked during configuration based on your product range.

Q: Does the CCD camera track printed marks at full production speed?
A: The CCD camera option is tested on your pre-printed substrate before shipment. Ink density, mark size and contrast all affect recognition reliability, so validation runs at the speed you will actually use rather than at a reduced test pace.

Q: How are vacuum zones configured to prevent small parts from lifting?
A: The aluminum bellows table allows segmented zoning so suction concentrates under the active cutting area. Zone layout is planned around your typical carton template dimensions so small flaps and tabs stay pinned during the cut cycle.

Q: What voltage, language and file formats are confirmed before shipment?
A: Voltage (110/220/380 V), plug type and PLC display language are documented in the electrical schematic before production. Software compatibility with PLT, DXF, AI and PDF files is verified against your existing design workflow and noted in the compatibility documentation.