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PET Film Laser Cutting Machine

Polyester Film Laser Processing/ Precision PET Film Cutting & Drilling/ PET Insulation Film Laser Cutting

Chanxan PET film laser cutting machine is engineered for high-precision cutting, drilling, window opening, and contour processing of PET films, polyester films, BoPET films, insulating films, protective films, laminated films, and other thin flexible polymer materials. It delivers clean edges, minimal heat affected zone, and stable non-contact processing for electronics, electrical insulation, labels, packaging, and industrial film converting applications.

  • Product Description
CW-6050PZ PET Film Laser Cutting Machine | Chanxan Laser

Precision Laser Processing for PET and Polyester Films

PET (polyethylene terephthalate) film is the most widely used type of polyester film and is widely applied in electrical insulation, protective layers, labels, display materials, laminated structures, and flexible industrial components due to its dimensional stability, dielectric performance, transparency, and cost efficiency. In many industrial applications, biaxially oriented PET films are also referred to as BoPET or Mylar® film.

Chanxan's PET film laser cutting machine uses high-precision laser processing to achieve clean cutting, drilling, slotting, and window opening on PET and polyester films with minimal thermal impact. It enables manufacturers to produce finer patterns, smoother edges, and more consistent quality while reducing tooling costs and improving flexibility for short-run, customized, and high-mix production.

PET Film Laser Cutting vs Die Cutting

Laser Cutting

  • No die tooling cost for prototypes, custom parts, or frequent design changes

  • Clean cutting for thin PET films with reduced mechanical stress

  • Small holes, narrow slots, windows, and complex contours

  • Fast sample turnaround and shorter lead time for new projects

  • Flexible production for small batches or multiple SKUs

  • Processing of adhesive PET films or laminated polyester films

Die Cutting

  • Very high-volume production of the same fixed part

  • Simple shapes with minimal design changes

  • Lowest unit cost at large scale after tooling is already amortized

  • A process dedicated to long-run, standardized PET film parts

Industrial Applications

Electrical Insulation Films

Electrical Insulation & Electronic Components

Used for precision cutting of PET insulation films, dielectric barriers, spacers, and protective layers in motors, transformers, battery packs, sensors, and compact electronic assemblies.

Medical & Diagnostic Consumables

Medical & Diagnostic Consumables

Applicable to selected PET film components used in medical disposables, diagnostic cartridges, laminated film layers, and precision-cut polymer parts requiring clean non-contact processing.

Battery & Energy Storage

Battery & Energy Storage

Suitable for PET insulating films, protective separators, barrier layers, and precision-cut thin-film components used in battery modules, consumer batteries, and energy storage assemblies.

Labels, Nameplates & Panel Films

Labels, Nameplates & Panel Films

Supports precision contour cutting, slotting, and window opening of PET labels, membrane panels, graphic overlays, and functional panel films where dimensional consistency and clean edges are critical.

Precision Sample Gallery

Micro-hole Drilling
PET Micro-hole Drilling
Contour Cutting
PET Film Contour Cutting
Window Opening
Window Opening & Slot Cutting
Insulation Trimming
Insulation Film Precision Trimming

Compatible Materials

PET Film / Polyester Film
BoPET Film
Mylar®-type polyester film
Transparent PET Film
Matte or Black PET Film
Insulation PET Film
Adhesive PET Film
Protective PET Film
Release Film / Backing Film
Laminated Functional Film
Label Stock and Thin Polymer Film
Thin Flexible Electrical Insulation Films
PI film
PEN film
Selected composite insulation films
Coated polymer films

Core Values & Key Components

CCD Vision

CCD Vision

Precision Positioning: Supports precise positioning of printed marks, laminated structures, transparent films, and adhesive-backed PET materials for stable, repeatable processing accuracy.

Picosecond Laser

Picosecond Laser

Energy Control: Provides high-precision energy control for clean cutting, drilling, and window opening of thin PET and polyester films with reduced thermal impact and improved edge quality.

Linear Motors

Linear Motors & Marble Base

High-Speed Stability: Ensures stable high-speed movement, vibration suppression, and micron-level positioning for delicate flexible film converting applications.

Key Features

Clean Cutting for Thin PET and Polyester Films

Enables smooth contour cutting with reduced burrs, edge deformation, and thermal damage on delicate film materials.

Flexible Processing Without Die Tooling

Supports rapid design changes, short production runs, and complex shapes without the tooling cost and lead time of conventional die cutting.

Precision Window Opening and Hole Drilling

Suitable for slots, windows, apertures, and fine hole patterns in insulation films, protective films, and laminated polyester structures.

Stable High-Speed Film Processing

Combines precision motion, vacuum adsorption, and vision alignment for repeatable quality in industrial film converting applications.

Technical Parameters

FeaturesParameters
ModelCW-6050PZ
Machine TypePET Film Laser Cutting Machine
Laser SourcePicosecond UV / Green / IR
Laser Power30W
Motion SystemX/Y/Z Precision Motion Platform
Working Area500 × 500 mm / 600 × 900 mm
Vacuum Adsorption Table1200 × 700 mm (Customizable)
Recommended Material Thickness≤3 mm
Max Processing Speed≤3000 mm/s
Processing Accuracy≤30 μm
Positioning Accuracy±1 μm
Repeatability±1 μm
Vision AlignmentHigh-resolution CCD
SoftwareChanxan Self-developed Control Software
Supported FormatsPLT, BMP, DXF, DWG, AI, LAS, etc.
Supply Voltage380V ±10%, 50Hz

PET Film Laser Cutting FAQ

1. Can PET film be laser cut cleanly without severe melting?
Yes. PET film can be laser cut with high precision when the laser wavelength, pulse duration, power settings, and motion parameters are properly configured. A suitable laser setup helps minimize melting, burrs, edge deformation, and excessive heat affected zones, which is especially important for thin insulation films, protective films, and laminated PET structures.
2. Can your machine process BoPET or Mylar film?
Yes. BoPET film and Mylar®-type polyester films fall within the PET / polyester film material family. The machine can be configured for precision cutting, drilling, slotting, and window opening of these materials depending on thickness, coating, adhesive layers, and required edge quality.
3. Is laser cutting better than die cutting for PET film?
It depends on production volume and part complexity. Laser cutting is often a better choice for prototypes, short runs, complex geometries, frequent product revisions, and fine-feature processing because it eliminates die tooling, reduces changeover time, and offers more flexibility. Die cutting may still be suitable for very high-volume, highly standardized parts where tooling cost can be amortized.
4. Can the machine cut adhesive PET films or laminated PET materials?
Yes. The system can be used for adhesive-backed PET films, release-liner structures, and laminated polyester materials, but the optimal process depends on the adhesive type, layer stack-up, total thickness, and edge quality requirements. Sample testing is recommended to determine the best laser parameters.
5. Can transparent PET film be processed accurately?
Yes. Transparent PET films can be processed, but the actual cutting effect depends on the laser wavelength, film thickness, coating conditions, and required feature size. For transparent or highly reflective layered materials, process validation through sample testing is strongly recommended.
6. What thickness of PET film can be processed?
The processable thickness range depends on the film structure, laser type, required edge quality, and production speed target. In practical projects, thin PET films, laminated PET structures, and selected thicker polyester sheets can all be evaluated. The best approach is to provide material thickness, layer details, and part drawings for sample testing.
Chanxan Laser | Professional B2B Service & Support

Committed to Your Success

Empowering global manufacturing with 14+ years of expertise, dual CE & ISO certified quality, over 100 national patents, and a comprehensive Technical Training Service designed for your operational success.

14+Years Expertise
80,000m²Production Hub
10,000+Global Clients
100+National Patents

Technical Training Service

  • Systematic Training: Comprehensive full-process skill coverage.

  • Expert Support: Continuous project follow-up by senior engineers.

  • Multiple Formats: Flexible learning modes to maximize operational efficiency.

  • Outcome Driven: Empowering clients from "knowing" to "mastering" technology.

After-Sales Service System

  • 24H Fast Response: Technical diagnosis and solutions within 24 hours.

  • Warranty Policy: 1-year machine warranty with lifetime technical support.

  • Global Parts Supply: Rapid delivery of original parts via global network.

  • Lifecycle Care: From installation to long-term maintenance and software upgrades.

Cooperation Process
STEP 01

Consultation

In-depth analysis of your specific material and performance requirements.

STEP 02

Free Sampling

Precision laser sampling to verify the feasibility of the technical solution.

STEP 03

Production

Bespoke manufacturing under ISO9001 quality management systems.

STEP 04

Delivery

Final testing, professional wooden packing, and secure global shipment.

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