1625 CNC Auto Feed Roller Cutter for Cloth Cutting – Specifications
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Description
Precision Tooling Configuration — matching oscillating knife, driven rotary, and pneumatic heads to your exact fabric stack rather than forcing a single blade through incompatible layers.
Technical Specifications
| Parameter | Value |
|---|---|
| Product Type | CNC Oscillating Knife Cutting Machine with Auto Feed System |
| 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 | 0–2000 mm/s |
| Cutting Thickness | Up to 30 mm (basis not stated in source — confirm material type and layer count) |
| Positioning Accuracy | ±0.1 mm |
| Vacuum Pump Power | 9 kW |
| Vacuum Table | Aluminum bellows vacuum table (zone count to be confirmed) |
| Control System | PLC control panel with intuitive interface |
| Voltage Options | 110V / 220V / 380V (frequency to be confirmed) |
| Servo Drive Options | Panasonic, Delta, Dorna (standard vs. optional to be confirmed) |
| File Format Compatibility | PLT, DXF, AI, PDF |
| Safety Devices | Infrared sensor device, Emergency stop device |
| Machine Dimensions (L×W×H) | 3300×2100×1350 mm |
| Language Options | English, Russian, Italian, Chinese (custom languages available) |
Application Suitability
| Application | Material or Output |
|---|---|
| Apparel manufacturing | Suits, knitwear, lace, complex pattern-matching fabrics in multi-layer stacks |
| Automotive interiors | Seat fabrics, carpets, PVC mats requiring burr-free edges |
| Home textiles | Sofa fabrics, curtains, rugs cut in multi-layer batches |
| Composite materials | Carbon fiber prepreg, aramid, specialty flexible materials |
| General soft material processing | Fabric, cardboard, carton, mats, PVC, EVA, leather, acrylic, foam, PTFE, rubber |
What "5–6× Manual Cutting" Actually Depends On
The claimed productivity multiplier only holds when fabric type, layer count, and pattern complexity align with the selected tool head and vacuum configuration.
I have watched fabric buyers receive a CNC oscillating knife cutting machine specifications sheet quoting 1200–2000 mm/s cutting speed, then discover on their first production day that their specific knit or woven material shifts under the blade at those rates. The real variable is never just speed — it is whether the vacuum zoning holds your smallest pattern piece flat while the oscillating knife completes its stroke. Without that confirmation, throughput claims remain theoretical [NEED_CITE: material holding requirements for high-speed digital cutting].
Tool Head Selection Determines Edge Quality More Than Speed Does
The 1625 platform supports seven interchangeable tool heads, and choosing the correct one for your material is the single most consequential decision in the CNC oscillating knife cutting machine specifications review. An oscillating knife handles woven fabric and leather cleanly, while a driven rotary knife suits knits and stretch materials that would otherwise fray under vertical blade strokes. Pneumatic knife heads address thicker foam and gasket stacks where blade drag would compress the material before severing it.
Vacuum Zoning and Small-Piece Holding
A 9 kW vacuum pump generates substantial holding force across the aluminum bellows table, but total suction matters less than how that suction is distributed. If your nesting layout includes small collar pieces or narrow strip components, insufficient zone segmentation lets air bleed through uncovered areas, weakening grip exactly where you need it most. Confirming zone count and small-part holding behavior against your actual pattern file prevents the most common production-day disappointment in cloth CNC cutting [NEED_CITE: vacuum table zoning standards for digital cutting equipment].
Reading the Specs That Actually Affect Your Output
The ±0.1 mm positioning accuracy depends on the selected servo drive — Panasonic, Delta, and Dorna options each carry different encoder resolutions and response characteristics that influence long-run repeatability. The 30 mm cutting thickness rating requires confirmation against your specific material density and layer count, because thirty millimeters of loosely woven cotton compresses very differently from thirty millimeters of dense automotive carpet. File format compatibility with PLT, DXF, AI, and PDF ensures your existing nesting workflow transfers without re-drawing patterns, but verifying software licence terms and nesting algorithm behavior with defect avoidance before shipment avoids integration delays on the factory floor.
The Hidden Cost of Skipping Material-Specific Testing
Buyers who specify a cloth CNC cutting machine based on working area alone frequently encounter problems that only surface during sustained production. Ragged edges on knit fabrics, crushed foam cores, and pattern drift on printed textiles all trace back to tool head and vacuum mismatches that a sample cut on standard material would not reveal. Sending your own production roll for testing — including the exact backing, adhesive layer, or coating your supplier uses — costs a week of shipping time but prevents months of parameter troubleshooting after installation [NEED_CITE: sample testing protocols for industrial cutting equipment procurement].
Why Source This Configuration Here
In-house design and production covering both knife and laser cutting technologies means the cutting method is matched to your material rather than forced into a single-platform compromise. Tool head and table configuration is specified per your material type and daily production volume, not pulled from a default catalogue row. CCD camera positioning is available for printed contour work where registration marks must be tracked at speed. Software compatibility is confirmed against your file formats before order placement. Voltage, control language, and plug type are verified against your facility’s electrical standard before the machine leaves the factory.
Documentation & Verification
- Machine specification sheet confirming your selected tool head and vacuum zone layout
- Electrical schematic with voltage, frequency, and plug type matched to your facility
- Sample cutting report produced on your own fabric roll with edge quality photographs
- Factory test record documenting positioning accuracy and cutting depth on your material
- Software licence and file format compatibility note for your nesting workflow
- Spare parts list covering blades, knife holders, and vacuum seal consumables
Installation, Commissioning & Support
- 3300×2100 mm footprint requires level concrete floor with clearance for auto-feed roller entry
- 9 kW vacuum pump plus servo drives need dedicated circuit matching confirmed voltage option
- Machine ships partially assembled; frame leveling and belt tensioning completed on site
- First-run parameter calibration performed across your material stack thickness range
- Operator training covers tool head changeover, nesting import, and PLC interface navigation
- Wear parts inventory includes oscillating blades, rotary discs, and vacuum table seals
What to Prepare Before Requesting a Quote
Provide your fabric type, typical layer count, maximum sheet width, and daily cutting volume so the correct tool head and feed configuration can be specified. Confirm your facility voltage, frequency, and preferred control language to prevent electrical mismatches. If you run printed textiles requiring contour recognition, share a sample file so CCD tracking capability can be evaluated against your registration mark style.
Frequently Asked Questions
Q: How is the 1200–2000 mm/s cutting speed verified for my specific fabric?
A: That speed range is measured under controlled conditions, but actual achievable speed depends on your fabric weave, layer count, and pattern geometry. Request a sample cutting test on your own material roll — the resulting report documents the speed, tool head, and edge quality achieved so you can evaluate real throughput before committing.
Q: Which tool head should I choose for my material mix?
A: Oscillating knives suit woven fabrics and leather, driven rotary knives handle knits and stretch materials, and pneumatic knives manage thicker foam stacks. If your production spans multiple material families, the platform supports quick-change tool head swapping so one machine covers your full range.
Q: How are voltage and plug type confirmed before shipment?
A: During order confirmation, your facility’s voltage, frequency, and plug standard are recorded and reflected in the electrical schematic. The machine is wired and tested at the specified voltage before dispatch, and the schematic is included in your documentation package.
Q: Can the machine work with my existing nesting software and DXF files?
A: The control system accepts PLT, DXF, AI, and PDF inputs for direct path generation. Before order, your file format and nesting workflow are tested for compatibility, and a software licence document confirms ongoing access without additional licensing surprises.
Q: What does sending my material for sample testing involve?
A: Ship a roll or sheet of your actual production material including any backing or coating. The sample cutting report documents tool head used, cutting speed, layer count, edge quality photographs, and vacuum holding performance — giving you a factual basis for configuration decisions before purchase.

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