Packaging CNC Cardboard Cutting Machine – Factory Supply

1625 CNC Oscillating Knife Cutting Machine, 1600×2500mm Working Area, ±0.1mm Accuracy — built for corrugated cardboard, foam and composite packaging sample making. Seven interchangeable tool heads including creasing wheel and V-groove knife allow cutting and creasing in one setup. PLC control with multi-language display and dedicated box structure design software included. Aluminum bellows vacuum table with 9KW pump holds sheets flat during high-speed cuts.

  • Sample cutting on your own material before order, with tool head and voltage confirmed per your production needs.
Description

In-House Tool Head Engineering — every knife and creasing option is designed alongside the table frame, so cutting pressure aligns with the actual flute or foam density you run rather than a generic catalogue rating.

Technical Specifications

Parameter Value
Product Type CNC Oscillating Knife Cutting Machine
Model 1625
Working Area 1600 × 2500 mm
Tool Head Options Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife
Cutting Speed 0–1500 mm/s
Cutting Thickness ≤ 40 mm (basis not stated in source — confirm material type and density)
Cutting Accuracy ±0.1 mm
Vacuum Pump Power 9 kW
Vacuum Table Aluminum bellows vacuum table
Servo Motors Panasonic, Delta, or Dorna options
Control System PLC control panel with optional display languages
Voltage Options 110V, 220V, 380V
File Format Compatibility PLT, DXF, AI, PDF
Safety Devices Infrared sensor device, Emergency stop device
Machine Dimensions 3300 × 2100 × 1350 mm
Software Dedicated packaging box structure design software included

Application Suitability

Application Material or Output
Packaging sample making and carton prototyping Corrugated cardboard (E-flute, B-flute, BC-flute), greyboard, cardstock
Short-run folding carton production Art paper, specialty paper, adhesive-backed sheets
Protective insert and cushion cutting EVA foam, EPE foam, PU foam, rubber mats
Display and signage blank cutting Thin plastic sheets (PVC, PET), foam board, composite panels
Textile and leather packaging component cutting Velvet, fleece, non-woven fabric, leather, synthetic leather

Why "1600 × 2500" Tells You Almost Nothing About Cutting Performance

A packaging CNC cutting machine is only as capable as the tool head pressure and vacuum hold-down specified for your actual material stack.

I have watched buyers focus entirely on table dimensions, sign off on the purchase, and then discover their BC-flute corrugated board crushes under the standard oscillating knife because the frequency and stroke were never matched to that flute profile. The working area tells you how large a sheet fits. It says nothing about whether a creasing wheel will produce a clean fold line on 2 mm greyboard without cracking the surface, or whether the vacuum zones can grip small offcuts at full cutting speed [NEED_CITE:]. The laser industry learned this lesson years ago when buyers quoted peak power instead of continuous output and found real cutting depth falling short. The knife cutting side of the business has the same problem — just with pressure instead of watts.

CNC oscillating knife cutting machine for packaging and carton sample making

Matching the Knife to the Flute, Not the Other Way Around

A CNC packaging cutting machine configured for E-flute corrugated will underperform on BC-flute if the oscillating knife stroke and frequency remain unchanged. The 1625 offers seven interchangeable tool heads, and each one engages the material differently. An oscillating knife slices through multi-layer corrugated by vibrating at high frequency, while a driven rotary knife handles denser greyboard with continuous rotational cutting force. Creasing wheels compress rather than cut, and their pressure setting determines whether a fold line scores cleanly or fractures the liner.

The Vacuum Table Is Where Registration Lives or Dies

Holding a full sheet of corrugated flat across a 1600 × 2500 mm surface sounds straightforward until you cut small partition inserts from the center of the board. Once the surrounding material is removed, those small pieces lose edge support and lift under knife drag. The aluminum bellows vacuum table paired with a 9 kW pump distributes suction across zones, and the zoning layout determines whether a 50 mm gasket stays pinned or shifts mid-cut [NEED_CITE:]. Multi-zone control is not optional for packaging work that nests dozens of small carton components on a single sheet.

Reading the Specs That Actually Matter on the Floor

Cutting accuracy of ±0.1 mm means dieline geometry holds registration when the knife changes direction at a corner, which is where most packaging prototypes fail dimensional checks. The servo drive selection — Panasonic, Delta, or Dorna — affects how smoothly the gantry decelerates into tight radii on complex carton structures. PLC control with multi-language display eliminates the situation where an operator in Italy or Brazil misreads a fault code because the error message only appears in a language they do not read. File format compatibility across PLT, DXF, AI, and PDF means the packaging CNC cutting machine accepts artwork from whatever design software the buyer already runs, without forcing a separate conversion step before every job.

PLC control panel and tool head configuration on the 1625 cutting table

What Happens When the Tool Head Is Wrong

A creasing wheel set for art paper pressure will barely mark BC-flute corrugated, leaving a fold line that cracks the outer liner when the box is assembled. An oscillating knife specified for foam will compress velvet fabric instead of shearing it, producing a frayed edge that fails quality inspection. These are not edge cases — they are the direct result of configuring a machine by working area alone without testing against the buyer’s actual material stack [NEED_CITE:]. The downtime from swapping tool heads and recalibrating after delivery adds weeks to a project timeline that was already tight.

Why Buyers Source This Platform from Jinan

In-house design covers both the knife tooling and the table frame, so the oscillation frequency, creasing pressure, and vacuum zoning are engineered together rather than sourced from separate vendors and bolted on. Tool head and table configuration is documented per material before the order is placed, not discovered after installation. The dedicated packaging box structure design software ships with the machine, so dieline creation and nesting happen in one environment. Voltage, plug type, and control language are confirmed against the destination market before production begins. Sample cutting on the buyer’s own corrugated flute type and foam density runs before commitment, producing a physical report rather than a catalogue promise.

Documentation & Verification

  • Machine specification sheet listing every tool head option and its pressure range
  • Electrical schematic confirming voltage and frequency for your destination market
  • Tool head and table configuration list matched to your material stack
  • Sample cutting report produced on your own corrugated flute type and foam density
  • Factory test record documenting cutting accuracy across your dieline geometry
  • Software licence and file format compatibility note for PLT, DXF, AI, PDF workflows

Installation, Commissioning & Support

  • Floor space planning around the 3300 × 2100 mm footprint plus operator access clearance
  • Dedicated circuit sized for the 9 kW vacuum pump plus servo and PLC draw
  • Table leveling and vacuum zone calibration on your workshop floor at commissioning
  • First-run parameter setting using your actual flute type, board thickness, and foam density
  • Operator training on tool head changes and PLC fault codes in your chosen display language
  • Spare parts list covering knife blades, creasing wheels, and vacuum seals for the first year

What We Need from You to Build a Real Quote

Send the specific material types you run — corrugated flute designation, greyboard thickness, foam density — along with your typical sheet size and daily volume. Confirm the voltage and frequency at your facility, the control language your operators need, and whether your existing design software outputs PLT, DXF, AI, or PDF. If you can ship a sample of your heaviest and lightest material, we will run cutting tests and return a physical report before any order is placed.

Frequently Asked Questions

Q: What cutting thickness is actually achievable, and does it depend on the material?
A: The specification lists up to 40 mm, but that number changes depending on material density and the tool head selected. BC-flute corrugated at 7 mm cuts differently from EVA foam at 30 mm. We confirm achievable thickness against your specific material sample before quoting, not from a generic chart.

Q: How do you decide which tool head fits my packaging material?
A: Corrugated flute type, board density, and whether the job requires creasing or through-cutting all determine the selection. An oscillating knife handles multi-layer corrugated, a creasing wheel scores fold lines on greyboard, and a kiss cutting tool works adhesive-backed sheets. We test on your material before finalizing.

Q: What voltage and control language are confirmed before the machine ships?
A: The 1625 supports 110V, 220V, and 380V configurations. We confirm the exact voltage, plug type, and frequency for your market, along with the PLC display language your operators need, and document everything in the electrical schematic before production begins.

Q: Can I send my material for sample cutting before I commit?
A: Yes. Ship us samples of your corrugated board, greyboard, or foam in the specific flute type and density you run. We produce a cutting report showing edge quality, creasing depth, and dimensional accuracy, so you evaluate results on your own material before placing the order.

Q: Does the software work with my existing box design files?
A: The included packaging design software accepts PLT, DXF, AI, and PDF formats. We confirm file compatibility and nesting workflow integration against your current design environment before the order, so there is no surprise conversion step when the machine arrives.

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