1625 Cloth CNC Cutting Machine – Technical Guide

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Description

Tool Head Matched to Material — seven interchangeable options specified per fabric stack height and edge requirement, avoiding forced compromises on cut quality.

Technical Specifications

Parameter Value
Model 1625
Product Type CNC Oscillating Knife Cutting Machine
Working Area 1600×2500 mm
Cutting Speed 0–2000 mm/s
Cutting Thickness ≤ 30 mm (basis not stated in source — confirm material type and layer count)
Positioning Accuracy ±0.1 mm
Tool Head Options Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife
Vacuum Table Aluminum bellows construction with high flatness and sealing
Vacuum Pump Power 9 kW
Servo Drive Options Panasonic, Delta, Dorna (source value — verify against manufacturer catalog)
Control System PLC control panel with optional display languages
Software & File Formats PLT, DXF, AI, PDF; dedicated packaging box structure design software included
Voltage Options 110V, 220V, 380V (frequency not specified in source)
Language Options English, Russian, Italian, Chinese; special languages customizable
Safety Device Infrared sensor device and emergency stop device
Machine Dimensions (L×W×H) 3300×2100×1350 mm
Standards CE (inferred from certifications section; specific standard numbers not stated in source)

Application Suitability

Application Material or Output
Apparel manufacturing Suits, knitwear, lace, complex fabrics with pattern-matching requirements
Automotive interiors Seat fabrics, carpets, PVC mats requiring burr-free edges
Home textiles Sofa fabrics, curtains, rugs in single or multi-layer stacks
Composite material processing Carbon fiber prepreg, aramid, specialty materials without delamination or thermal deformation

Why Vacuum Zoning Decides Cut Quality on Small Pattern Pieces

A 1600×2500 mm table that cannot hold a 50 mm collar piece flat is a liability, not an asset.

Many cloth CNC cutting machine buyers focus on bed size and cutting speed while overlooking vacuum hold-down behavior on small nested parts. During high-speed oscillating knife cuts, lightweight fabric pieces can lift at the edges if the vacuum zone is too broad or underpowered for the part footprint. The 1625 CNC oscillating knife cutting machine specifications include an aluminum bellows vacuum table designed for consistent sealing across the full bed area, but the actual zone layout must be confirmed against your nesting patterns before the machine ships. [NEED_CITE:]

1625 CNC oscillating knife cutting machine working area and vacuum table layout

Tool Head Selection Dictates Edge Quality

The 1625 CNC oscillating knife cutting machine specifications list seven interchangeable tool heads — oscillating knife, driven rotary knife, creasing wheel, kiss cutting tool, pneumatic knife, milling tool, and V groove knife. Each produces a fundamentally different edge finish depending on the material. Oscillating knives suit woven fabrics and foams where a clean shear is needed; driven rotary knives handle knits and stretch materials that would otherwise distort under a reciprocating blade. Selecting the wrong head for your fabric type means ragged edges, crushed foam cores, or delaminated composite layers — defects that only become visible after the cut is complete.

Software Compatibility Confirmed Before Shipment

The system accepts PLT, DXF, AI, and PDF files, with dedicated packaging box structure design software included. For garment and automotive interior producers already running nesting workflows, the real question is whether the software imports your existing files without conversion loss or nesting distortion. File format compatibility is confirmed during the pre-order stage so that your production files run correctly on first power-up rather than requiring days of reformatting. [NEED_CITE:]

Reading the Specs That Matter for Fabric Cutting

Positioning accuracy of ±0.1 mm matters directly when cutting multi-layer fabric stacks for tailored garments or automotive seat panels — a cumulative drift across a long cut path translates into misaligned pattern pieces downstream. The 9 kW vacuum pump provides the suction needed for the aluminum bellows table, but effective hold-down also depends on the table’s flatness and the seal integrity of the bellows material. Servo drive selection across Panasonic, Delta, and Dorna options affects acceleration behavior and positional repeatability under load, particularly when cutting dense composite materials where the blade encounters variable resistance through the stack. The PLC control panel supports multiple display languages, reducing operator error in multilingual workshop environments.

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

The Hidden Cost of Underspecifying Consumables

When a cloth CNC cutting machine is quoted without a clear consumables plan, the first sign of trouble is a production halt. Blades wear at rates that depend entirely on your material — carbon fiber prepreg dulls an oscillating knife far faster than cotton knitwear, and running a worn blade produces frayed edges that fail quality inspection. Buyers who do not confirm spare blade quantities and changeover intervals before shipment risk extended downtime waiting for replacement parts. The tool head configuration list should include recommended consumable quantities matched to your daily volume and material type. [NEED_CITE:]

Why Production Teams Choose This Configuration

The 1625 is designed and built in-house, covering both knife cutting technologies so buyers match the method to the material rather than adapt to a single-tool limitation. Tool head and vacuum table configurations are specified per material and production volume, not sold as a fixed package. The aluminum bellows vacuum table construction provides the flatness and sealing required for repeatable cuts across the full 1600×2500 mm bed. Voltage, plug type, control language, and software format are all confirmed before the machine enters production. Sample cutting on the buyer’s own material is conducted before commitment, producing a documented report on edge quality and cycle behavior. [NEED_CITE:]

Documentation & Verification

  • Machine specification sheet confirming tool head and table configuration per your material
  • Electrical schematic with voltage, frequency, and plug type for your facility
  • Sample cutting report on your fabric stack with edge quality and dimensional accuracy documented
  • Software licence with file format compatibility note for your existing DXF and PLT workflows
  • Factory test record showing positioning accuracy and vacuum hold-down performance before dispatch
  • Spare parts list matched to your material type and projected daily cutting volume

Installation, Commissioning & Support

  • Foundation must accommodate 3300×2100×1350 mm footprint with level access for the aluminum bellows table
  • Dedicated circuit required for 9 kW vacuum pump plus servo drives at confirmed voltage and frequency
  • Machine ships fully assembled; verify doorway and overhead clearance before delivery
  • First-run calibration covers positioning accuracy verification and vacuum zone testing across the 1600×2500 mm bed
  • Operator training includes tool head changeover procedures and PLC control panel navigation in your confirmed language
  • Consumable blade inventory specified per your material type to prevent unplanned downtime

What We Need to Specify Your Machine Correctly

To configure the 1625 for your production line, share the fabric or composite material type, single-ply thickness, and maximum stack height you intend to cut. Confirm your daily cutting volume and the smallest nested part dimension so we can verify vacuum zone layout. Provide your facility voltage, frequency, and preferred control language so electrical and software specifications are locked before production begins.

Frequently Asked Questions

Q: How is the cutting thickness of ≤ 30 mm verified, and on which material?
A: The stated thickness is a general reference and must be confirmed against your specific material and layer count. We run sample cuts on your actual fabric stack — whether single-ply woven, multi-layer knit, or composite prepreg — and document achievable thickness with edge quality results before the order is finalized.

Q: Which tool head should I specify for my material, and what edge quality results?
A: Tool head selection depends on material composition and structure. Oscillating knives suit woven fabrics and foams; driven rotary knives handle stretch knits without distortion. We recommend and test the appropriate head on your material during the sample stage, documenting edge finish so you know what to expect in production.

Q: Will the vacuum table hold my smallest nested pattern pieces at full cutting speed?
A: The aluminum bellows vacuum table provides consistent suction across the 1600×2500 mm bed, but hold-down effectiveness depends on zone layout relative to your part sizes. Share your nesting layout so we confirm that even the smallest pieces remain flat during high-speed oscillating knife cuts.

Q: Can the software import my existing DXF and PLT nesting files without rework?
A: The system supports PLT, DXF, AI, and PDF imports. We verify compatibility with your specific nesting software and file versions before shipment, providing a compatibility note so your existing workflow transfers to the 1625 without format conversion or nesting distortion.

Q: What voltage, frequency, and control language are confirmed before the machine ships?
A: Voltage options include 110V, 220V, and 380V, but frequency and plug type must match your local supply. The PLC control panel supports English, Russian, Italian, Chinese, and customizable languages. All electrical and interface specifications are confirmed and documented in the schematic before production begins.