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LeadTech-printer-toonaangevende fabrikant in de codering & Markering van de industrie sinds 2011.

No Contact, No Tearing: Coding Thin Films & Foils

BOPP · PET Film · Laminates · Aluminium Foil · Blister Film

Flexible Film & Foil Coding & Marking

Substrates: PE / PET / CPP / BOPP Films · Laminated Films & Foils · Pouches & Vacuum Bags · Recyclable Mono-material Film

Rechnology: Thermal Transfer Overprinting (TTO) (Preferred for HFFS/VFFS) · Continuous Inkjet (CIJ) (High-Speed Complement) · UV Laser (For Recyclable/Mono-Material Films)
Recommended LT Model: LT900 · LT800 Pro / LT810 Pro · UV Series (5 W / 10 W)

The One Constraint: Film distorts under tension, heat sealing, and stretching — the print position drifts. Place coding where the web is stable, and choose a technology that tolerates film movement.

Flexible film and foil packaging is one of the highest-volume coding applications in food manufacturing. TTO is the established high-resolution technology on HFFS and VFFS lines, with CIJ complementing it on high-speed continuous lines. The industry is transitioning from date-only printing toward full traceability codes supporting GS1 and supply-chain management. That raises barcode/2D quality demands — which the physical behavior of film makes hard to hold.



Materials & Substrates
SubstrateKey PropertyCoding Implication
PE / PET / CPP / BOPP FilmCommon flexible packaging substratesTTO primary, CIJ complementary
Laminated FilmMulti-layer barrier; distorts under tension and heat sealingDistortion causes code placement variation
Aluminum FoilBarrier foil for flexible & pharmaceutical packagingTTO/CIJ; good contrast, manage web tension
Recyclable / Mono-material / Colored FilmGrowing sustainability focusUV laser emerging as a fit; low-migration ink where ink is used



Coding Challenges

  • Film distorts under tension changes, heat sealing, and stretching → the printed code shifts from its target position → placement drifts out of the print window and fails inspection. Place coding on a stable web section and choose a distortion-tolerant technology.


  • Food lines carry condensation, oil, and dust → contaminants sit between ink and film → codes smear or fail to read. Use a specialized ink or a non-contact technology suited to the contamination.

  • Food-contact and recyclable film → ink migration → the ink affects food-contact compliance or degrades recyclate. Use low-migration ink, or ink-free UV laser on mono-material film.

  • Transition from date-only to full GS1 traceability → small 2D codes on a moving film web → barcode/2D quality drops at HFFS/VFFS speed. High-resolution TTO, or high-resolution CIJ, holds 2D quality.



Technology Selection
TechnologyFitWhy / Why Not
Thermal Transfer Overprint (TTO)★ Recommended(HFFS/VFFS)Ribbon-based high-resolution printing; crisp variable data and 2D on flexible film in form-fill-seal lines
Continuous Inkjet (CIJ)○  Alternative (High-Speed Continuous Lines)Non-contact high-speed complementary coding on continuous film and pouch lines
UV Laser○ Alternative(Recyclable/Mono-Material Films)Ink-free permanent code on recyclable, mono-material, and colored food film; no migration risk
Fiber Laser- Not recommendedFiber is a metal-marking wavelength; on thin polymer film it burns through with no benefit
Piezoelectric Inkjet (PIJ)- Not recommendedPiezo large-character inkjet is built for porous corrugated board, not thin flexible film

Use TTO on HFFS/VFFS form-fill-seal lines — ribbon printing gives crisp variable data and 2D on film. Use CIJ as a non-contact complement on high-speed continuous film and pouch lines. Recyclable, mono-material, and colored food film move to UV laser — ink-free, no migration risk. Do not use fiber laser (burns through) or PIJ (built for board) on film.

Typical Code Content

No Contact, No Tearing: Coding Thin Films & Foils 1
Production Date
Expiry Date
No Contact, No Tearing: Coding Thin Films & Foils 2
Batch Number
Lot Number
No Contact, No Tearing: Coding Thin Films & Foils 3
GS1 Code
2D Code (DataMatrix Code / QR Code)
包装袋(1) 已修改尺寸
Variable information
Counter
包装袋(1) 已修改尺寸
Supply chain identification
SSCC

Applications

No Contact, No Tearing: Coding Thin Films & Foils 6
×
UV Laser | Ink-Free Permanent Marking on Personal Care Film Packaging
硬塑料封面
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LT810 Continuous Coding on Flexible Film Packaging

Recommended LT Solution

No Contact, No Tearing: Coding Thin Films & Foils 8
LT810 Pro
No Contact, No Tearing: Coding Thin Films & Foils 9
LT900
No Contact, No Tearing: Coding Thin Films & Foils 10
UV Series (5 W / 10 W)
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LT810 Pro

· Max. 344 m/min @5×5

· Ethernet 

· 1–5 lines


Why this one:

On continuous film and pouch lines, LT810 Pro codes date/lot and GS1 data at 344 m/min @5×5 with Ethernet line integration — the high-speed, non-contact complement to TTO.

VIEW

FAQ


1
What's the primary coding technology for flexible film?
TTO (Thermal Transfer Overprint) is the established high-resolution technology for HFFS and VFFS film lines, with CIJ complementing it at high speed.
2
How are recyclable films coded?
UV laser is gaining adoption for recyclable, mono-material, and colored food packaging films; low-migration inks are used where ink is needed.
3
Why does code placement vary on film?
Film distortion from tension changes, heat sealing, and stretching causes placement variation — a recognized engineering challenge managed through line setup and technology choice.
4
Can you keep 2D/barcode quality at HFFS/VFFS speed?
Yes — high-resolution TTO or high-resolution CIJ holds 2D quality; place coding on a stable web section to limit distortion.
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