1625 Multilayer Pants Garment CNC Cutting Machine – Automatic

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Description

Tool-to-Material Match — Seven interchangeable cutting heads configured per fabric stack density and edge quality requirement, ensuring your material dictates the setup rather than the machine dictating the outcome.

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 Up to 30 mm (basis not stated in source — confirm material, density, and layer count)
Multi-layer Cutting Capacity 30–50 mm thickness (basis not stated in source — confirm fabric type and compression state)
Cutting Accuracy ±0.1 mm
Repeat 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
Applicable Materials Fabric, Cardboard, Carton, Mats, PVC, EVA, Leather, Acrylic, Foam, PTFE, Rubber
Vacuum Table Aluminum bellows vacuum table
Vacuum Pump 9 kW
Control System PLC control panel
Servo Motors Panasonic, Delta, or Dorna (rated or peak not specified)
File Formats Supported PLT, DXF, AI, PDF
Nesting Software Intelligent nesting system included
Safety Devices Infrared sensor device, Emergency stop device
Voltage Options 110V, 220V, 380V
Display Language Options English, Russian, Italian, Chinese (custom languages available)
Machine Size 3300×2100×1350 mm
Certification CE

Application Suitability

Application Material or Output
Apparel Manufacturing Suits, knitwear, lace, complex woven and stretch fabrics with pattern-matching layouts
Automotive Interiors Seat fabrics, carpets, PVC floor mats requiring burr-free edge quality
Home Textiles Sofa fabrics, curtains, rugs, and multi-layer upholstery stacks
Composite Processing Carbon fiber prepreg, aramid, and specialty layered materials cut without delamination
Signage and Packaging Cardboard, carton sample making, and PVC signage materials

Why the Tool Head Question Matters More Than the Working Area

A cutting table specified by working area alone will still fail if the tool head cannot handle the material thickness or density on your production floor. Matching the knife type to the fabric stack before locking the configuration is the single most important decision in the CNC oscillating knife cutting machine specifications review.

I once watched a garment factory run stretch knit through an oscillating head that was fine for woven cotton, only to find the blade dragging fibers and leaving ragged edges on every third layer. The machine was not at fault — the setup was. Fabric composition changes between sample rolls and bulk production runs, and even a small shift in elastane content alters how the material behaves under the knife [NEED_CITE: fabric composition variance between sample and production batches]. Buyers who skip material trials end up absorbing the cost in rework and missed delivery windows.

1625 CNC oscillating knife cutting machine for fabric and flexible material processing

Oscillating and Rotary Knife Selection for Fabric Stacks

The 1625 offers oscillating knife, driven rotary knife, and pneumatic knife among its seven tool head options, each suited to different material behaviors. Oscillating blades work well on dense, compressed multi-layer stacks where clean vertical cuts are needed. Driven rotary knives handle continuous single-ply or low-ply runs where speed matters more than depth. The CNC oscillating knife cutting machine specifications should always list which heads are available and which materials each one covers, so the buyer can plan for future product lines without changing machines.

Vacuum Hold-Down and Edge Integrity on Cut Panels

The aluminum bellows vacuum table paired with a 9 kW pump provides full-surface material hold-down across the 1600×2500 mm working area. Without sufficient vacuum zoning, small garment panels lift during cutting, producing dimensional inaccuracy that shows up later at the sewing line [NEED_CITE: vacuum table zoning requirements for small garment pattern pieces]. The aluminum bellows design maintains suction consistency even when cutting porous fabrics that tend to leak air through the weave.

Reading the Numbers That Actually Affect Your Output

Cutting speed is listed at 0–2000 mm/s, but real throughput depends on material density, layer count, and the complexity of the nesting layout. A simple rectangular panel cut at full speed will produce very different daily output than a complex pattern-matched suit layout with notches and internal cutouts. The ±0.1 mm cutting accuracy and repeat positioning accuracy eliminate the need for secondary trimming on most garment applications, which is where actual production time gets consumed. The intelligent nesting system included with the machine helps maximize material yield, but file compatibility with your existing DXF, PLT, AI, or PDF workflow determines how quickly operators can load and run jobs.

PLC control panel and servo motor configuration on the 1625 cutting table

What Happens When Configuration Is Skipped

A buyer who selects a vacuum pump rated too low for the table area will experience panel lift on small pieces, especially near the table edges. Choosing the wrong servo motor grade for high-speed contour cutting introduces positioning drift over long production runs. Skipping voltage confirmation before shipment means the machine arrives with a 380V setup destined for a 220V workshop, requiring an external transformer that adds heat and failure points to the electrical system [NEED_CITE: industrial voltage mismatch consequences on servo-driven equipment]. These are not theoretical risks — they are recurring patterns in post-installation troubleshooting.

Why Buyers Source This Configuration Here

In-house design covers both knife cutting and laser technologies, so the cutting method is matched to the material rather than forced into one approach. Tool head and table configuration are specified per material type and production volume, not sold as a fixed package. CCD camera positioning is available for printed contour work where fabric patterns must align to cut lines. Software compatibility is confirmed against your existing file formats before the order is placed, not after delivery. Sample cutting on your own material runs before commitment, which is how I learned to insist on this step after watching a mismatched setup cost a factory an entire week of production.

Documentation & Verification

  • Machine specification sheet listing all seven tool head options with material compatibility notes
  • Electrical schematic with confirmed voltage, plug type, and frequency for your facility
  • Sample cutting report produced on your actual fabric stack before order placement
  • Software licence and file format compatibility note for DXF, PLT, AI, and PDF workflows
  • Factory test record documenting accuracy verification at your specified cutting speed and material
  • Spare parts list covering blades, vacuum seals, and wear items specific to your tool head selection

Installation, Commissioning & Support

  • Floor space allocation based on 3300×2100 mm machine footprint plus operator clearance on all sides
  • Dedicated electrical circuit matching confirmed 110V, 220V, or 380V supply with correct phase configuration
  • Aluminum bellows vacuum table leveling and 9 kW pump commissioning for uniform suction across the full area
  • PLC control panel language set to your operator preference from available English, Russian, Italian, or Chinese options
  • Tool head calibration for your specific material thickness and cutting accuracy verification at ±0.1 mm
  • Operator training on intelligent nesting system file import and tool head changeover procedures

What to Include in Your Inquiry

Provide the fabric type, composition, and layer count you intend to cut, along with the sheet dimensions and your target daily panel output. Confirm your facility voltage, frequency, and the control panel language your operators require. If you are running printed fabrics that need contour alignment, specify the registration mark format so camera positioning can be evaluated before quotation.

Frequently Asked Questions

Q: How do I choose between oscillating knife and driven rotary knife for my fabric?
A: Oscillating knives cut through compressed multi-layer stacks with clean vertical edges, making them suited for woven and dense materials. Driven rotary knives handle single-ply or low-ply continuous runs at higher speed. The correct choice depends on your layer count, fabric density, and edge quality requirement. Request sample cutting on your actual material before finalizing the tool head.

Q: What vacuum coverage do I need for small garment pattern pieces?
A: Small panels are more prone to lifting because they cover less surface area on the table. The aluminum bellows vacuum table on this machine provides full-surface suction with the 9 kW pump. Zoning configuration should be matched to your typical panel size so that open areas do not bleed suction away from the material being cut.

Q: How do I verify the real cutting thickness for my specific fabric stack?
A: The listed capacity of up to 30–50 mm depends on fabric type and compression state. A stack of dense denim compresses differently than loose-knit fleece at the same nominal thickness. Send your production fabric for sample cutting so the actual layer count and cutting quality can be documented before the machine configuration is locked.

Q: Can the nesting software import my existing DXF and PLT files?
A: The intelligent nesting system supports PLT, DXF, AI, and PDF file formats. Compatibility should be verified against your specific CAD output before order placement. Provide sample files during the inquiry stage so the software workflow can be tested against your actual pattern library and nesting requirements.

Q: What electrical and language details must be confirmed before shipment?
A: Voltage must match your facility supply from the available 110V, 220V, or 380V options, with correct plug type and frequency. The PLC control panel language should be set to your operator preference — English, Russian, Italian, Chinese, or a custom language if available. These details are confirmed in writing before production begins.