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Doypack Film Specifications for HFFS Machines

Updated: August 17, 2026
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With 15+ years in flexible packaging machinery, the INMAYPACK team in Shanghai has delivered doypack, sachet, premade pouch and coffee capsule filling lines to customers in international markets. We don't just sell machines — we study your product, material and target speed, then configure a complete, application-matched packing solution that runs reliably for years. Every article here comes from real factory floors and real customer projects.
Roll-stock specification guide · Published July 27, 2026

A pouch drawing is not a film specification. A roll may have the expected width and still fail on an HFFS line because its winding direction, print repeat, registration mark, surface slip, roll build or sealant layer does not match the forming and sealing process.

Quick answer: specify the finished pouch geometry, laminate structure, thickness measurement method, sealant side, web width and repeat, print orientation, eye-mark position and contrast, winding direction, core and roll limits, coefficient-of-friction test method, splice rules, barrier requirements and heat-seal data. Approve the material only after a representative sample roll runs on the intended machine with the intended product.

Roll-stock doypack film specification map for HFFS machines
The machine supplier, film converter and product manufacturer should approve one controlled specification. A value held only in an email or operator memory is easy to lose at the next film order.

This guide explains what must be agreed. It does not publish universal tolerances because acceptable values depend on the pouch layout, film structure, sensor, roll stand, sealing system, product and target speed.

Geometry first

Translate the finished pouch into a controlled web layout

The purchasing request should begin with the final pouch, but the converter needs a machine-specific web layout. Finished width and height alone do not define the web width, repeat length, gusset material, seal bands, cut position or print-safe area.

Specification field What to define Why the HFFS line needs it
Finished pouch geometry Width, height, bottom-gusset construction, corner or shape profile, zipper/spout position if used Controls forming parts, seal locations, opening space and filler access
Web width Nominal width and the agreed measurement/tolerance on the controlled drawing Determines tracking position, edge trim, overlap and forming geometry
Machine-direction repeat Print repeat, pouch pitch and relationship to the registration mark and cutoff Keeps graphics, seal zones and cut position synchronized
Seal and no-print zones Side, bottom and top seal bands plus areas reserved for sensors, zipper or spout Prevents inks, coatings, folds or components from interfering with sealing and sensing
Artwork orientation Operator-side view, inside/outside print, read direction and left/right orientation Avoids correctly sized film arriving with reversed graphics or sealant orientation
Roll film entering an HFFS pouch forming plow
The same roll becomes several controlled features after it enters the former: pouch faces, folds, gusset geometry, seals and cut edges.

Approval rule: do not calculate web width or repeat from a generic online formula and place the order. Approve the converter’s final layout against the exact machine configuration and physical pouch sample.

Material and machinability

Define the laminate—not only “food-grade film”

The material description should identify each functional layer and which surface faces the product. The outer layer must tolerate printing and the packaging process; the sealant layer must seal to the intended mating surface; barrier and mechanical layers must protect the actual product and distribution route.

Structure and sealant

Record the layer sequence, nominal construction, adhesive or extrusion process where relevant, print location, treatment/coating and product-contact side. A trade name without the layer sequence is difficult to compare between suppliers.

Thickness and profile

State the nominal value, tolerance, sampling plan and measurement method. ISO 4593 covers mechanical-scanning thickness for plastic film and sheeting but is not suitable for embossed film, so the chosen method must match the material.

Stiffness and curl

Record how the web lies after unwinding and forming. Excess curl, uneven gauge or poor flatness can affect tracking, folding, opening and jaw presentation even when average thickness is acceptable.

Surface friction

Define which surfaces are tested, conditioning, direction and method. ASTM D1894-24 and ISO 8295 address film friction, but ASTM states its method is not equivalent to ISO 8295 and the results cannot be compared directly.

Packaging film unwind and tension control rollers on a stand-up pouch HFFS machine
Film behavior is a system result: material surface, roll build, tension control, web path and machine speed interact.

COF is useful, but it is not a complete machinability certificate

Static and kinetic coefficient of friction help compare slip behavior, but one COF result cannot predict every roller, former, seal jaw or speed transition. ISO 8295 describes the method as primarily useful for quality control and not a comprehensive assessment of machinability. Use the agreed test method for incoming control, then confirm performance on the intended line.

Print control and roll build

Specify what the registration sensor actually sees

A registration mark is not just a colored rectangle somewhere near the edge. Its position must be tied to the repeat and cutoff, and it must be presented to the installed sensor with reliable contrast throughout production.

Control item Put on the approved specification Incoming check
Registration mark Size, color, contrast/background, edge distance, pitch relationship and sensor side Compare position and readability against the approved roll and machine sensor
Print repeat Controlled repeat length and relationship between artwork, seal bands and cut line Measure over an agreed number of repeats using the approved method
Winding direction Print in/out, sealant in/out, leading artwork edge and unwind direction shown by diagram Verify before mounting; do not rely only on a handwritten arrow
Core and roll Core inside diameter and width, maximum outside diameter, roll width and permitted roll weight Measure and inspect for core damage, loose winding or telescoping
Splices Permitted count, tape and flagging method, splice angle, prohibited areas and roll-end marking Confirm visibility and that the splice can pass the web path under the site procedure
Automatic roll film unwind reel on an HFFS packaging machine
Core, outside diameter, roll width and weight limits must match the actual unwind—not a generic roll-stock assumption.
Film edge and line position controller on horizontal packaging equipment
Edge control can correct normal variation within its working range; it should not be used to compensate for a badly built or incorrectly specified roll.

Best practice: attach a winding-direction drawing and an approved roll label to every purchase specification. Terms such as “winding 1” or “print outside” can be interpreted differently unless the web path and leading edge are shown.

Performance requirements

Convert product needs into testable film requirements

The laminate should not be approved only because it “runs.” It must also protect the product, create the required seal and meet the applicable market and product-contact requirements. Each claim needs a defined method, condition and acceptance criterion.

Sealability data

Ask the converter for the sealant identification and the available sealing data, including the conditions used. ASTM F2029-16(2021) describes laboratory preparation of heat seals to study heat sealability. ASTM notes that laboratory results are a starting point: production equipment differs in seal area, scale and processing speed, so the production process still requires its own confirmation.

  • Identify sealant-to-sealant and any dissimilar interfaces.
  • Record the test method, jaw configuration, temperature, pressure and dwell used to generate the data.
  • Evaluate seal strength with a controlled method such as ASTM F88 when it is part of the approved quality plan.
  • Confirm hot-product, dusty, oily or wet filling conditions with the actual product; a clean dry laboratory seal does not reproduce every production condition.

Barrier and distribution

Specify oxygen, moisture, light or aroma protection only where the product and shelf-life design require it. Record the test standard, temperature, relative humidity, sample conditioning and units. A barrier number without its test conditions cannot be compared reliably.

Food-contact and printing documentation

For product-contact applications, request declarations and supporting documents appropriate to the destination market and intended conditions of use. Define the product-contact side, use temperature, food type, printing/adhesive location and migration or compliance documentation required by the buyer’s quality system. Do not treat the phrase “food grade” as a complete compliance file.

Keep roles clear: the product manufacturer owns the packaging specification and release criteria. The film converter supplies material data and conformity documents. The machine supplier confirms whether the proposed roll and web layout can be handled and sealed on the intended equipment.

Approval workflow

Approve a specification, a sample roll and a production result

A supplier certificate cannot show whether a specific roll is mounted in the correct direction, tracks through the former, opens consistently or remains stable after the line reaches normal speed. Use documentation and machine testing together.

Before the trial

  • Controlled pouch drawing and converter web layout have matching revision numbers.
  • Film structure, sealant side, thickness method and print location are documented.
  • Registration mark, winding direction, core, outside diameter, roll width and roll weight are confirmed.
  • Target product, fill quantity, product temperature/viscosity where relevant and target speed are defined.
  • Inspection and seal acceptance methods are agreed before the roll is consumed.

During the HFFS trial

  • Record roll identity, machine recipe and starting conditions before adjustments.
  • Observe unwind stability, web tracking, registration sensing, forming, gusset geometry and cutoff.
  • Confirm pouch opening, filler access and clean seal headspace with the intended product.
  • Evaluate seals after the process reaches its normal thermal and speed condition.
  • Record every setting change and keep approved samples linked to the final specification revision.

Incoming inspection after approval

Build a short receiving plan from the risks found during the trial. Typical checks include roll label and revision, width, roll damage, telescoping, core condition, winding direction, splice marking, print/eye-mark position and the material properties identified as critical. Do not add tests that have no decision rule, and do not omit a critical attribute merely because the supplier certificate lists an average.

Pneumatic tension control roller and photoelectric sensor on HFFS packaging equipment
A representative sample roll should be evaluated through the real tension-control and sensing system before the commercial film order is locked.
Application review

Send the film data before ordering the production quantity

The correct time to discover an incompatible core, winding direction, eye mark or sealant layer is during drawing review and sample testing—not after commercial rolls arrive at the factory.

For the machine-side application range, review the roll-stock stand-up pouch machine. Keep the equipment specification and approved film specification linked by revision so a future converter change does not silently change the process.

Request a film-and-machine compatibility review

Send the finished pouch drawing, laminate proposal, web layout, roll dimensions, product details and target speed. If any critical value has not been confirmed, we will mark it for confirmation instead of inventing a tolerance.

Technical references

ASTM International, ASTM D1894-24: Static and Kinetic Coefficients of Friction of Plastic Film and Sheeting.

ASTM International, ASTM F2029-16(2021): Laboratory Heat Seals for Determination of Heat Sealability.

ISO, ISO 4593:1993: Determination of Film and Sheeting Thickness by Mechanical Scanning.

ISO, ISO 8295:1995: Determination of the Coefficients of Friction.

INMAYPACK Engineering Team
Shanghai · Flexible Packaging Machinery

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