ISBM Machines by Application

One-step injection stretch blow molding machines engineered for six distinct container markets — from cosmetic bottles requiring optical clarity and fine surface detail, to GMP-grade pharmaceutical vials, edible oil jugs with integrated handles, and wide-mouth food jars demanding structural rigidity. Each machine configuration is matched to the specific material, geometry, and regulatory requirement of its target container.

1 ml – 1,000 ml
Container volume range
20+ Resins
PET, PETG, PP, PC, Tritan, PPSU...
4-Station
Fully integrated one-step cycle
ASB Compatible
Japanese mold interchangeable
Core Application Categories

Select the machine built for your container type

Packaging requirements differ fundamentally by industry — surface gloss for cosmetics, neck-finish precision for child-resistant closures, autoclave clearance for pharma, and integrated handle geometry for oil jugs. The six product lines below address each with application-specific mold designs, material profiles, and process parameters.

Cosmetic Containers

Cosmetic Containers & Bottles

PETG • PC • Tritan • SAN — 5 ml to 500 ml

Produces lotion bottles, serum vials, perfume flacons, and pump-neck containers from PETG, PC, and Tritan. The one-step process eliminates post-mold reheating, preserving surface gloss and dimensional consistency across multi-cavity runs. Wall thickness variation is held within ±0.05 mm.

Complex shoulder geometry Embossed surface Fine-thread neck Flat/oval forms
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Food Jars

Food Jars & Wide-Mouth Containers

PET • PETG • PP — 50 ml to 1,000 ml

Handles wide-mouth jar geometries (neck opening ≥38 mm) in a single cycle, including honey jars, peanut butter containers, dry food canisters, and condiment pots. The injection stage precisely controls preform wall distribution so the finished jar base carries full structural load.

Wide-mouth one-shot Food-grade resin only Leak-proof neck thread Stackable base
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PET Bottles

PET Water, Beverage & Chemical Bottles

PET • PETG • PP — 100 ml to 2 L

High-throughput production of PET bottles for mineral water, CSD beverages, agrochemical concentrates, and industrial chemical packaging. Biaxial molecular orientation achieved during the stretch-blow stage raises tensile strength by 25–35% versus injection-only PP.

CSD pressure-rated Agrochemical duty Lightweight wall Hot-fill option
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Edible Oil Jugs

Edible Oil Jugs with Integrated Handles

HGA Series • PP • PETG — 1 L to 5 L

The HGA Series is configured specifically for handle-bottle geometries — a container format that conventional two-step ISBM cannot produce without secondary assembly. The handle is formed integrally within the blow mold in the same cycle, eliminating adhesive bonding steps.

One-piece handle No secondary bonding Food-grade PP 5 kg fill-rated
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Pharmaceutical Bottles

Pharmaceutical & Medicine Bottles

HGA Series • PP • PE • PC — 10 ml to 500 ml

The HGA Series pharmaceutical configuration operates in a closed-loop, minimal-operator-intervention cycle suited for GMP cleanroom environments. The preform never leaves the mold carrier between injection and blow stations, eliminating exposure to ambient particulates.

Closed-loop preform carry Child-resistant neck No ambient exposure HDPE/PP barrier liner
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PP Baby Bottles

PP Baby Bottles & Special-Shaped Containers

PP • PPSU • Tritan (BPA-free) — 80 ml to 360 ml

Produces feeding bottles and specialty ergonomic containers from BPA-free PP, PPSU, and Tritan. PP baby bottles require the stretch rod to operate under tight axial load control to avoid whitening in high-stretch regions.

BPA-free certified Anti-colic geometry Waisted profile Asymmetric forms
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Material Compatibility Reference

Resin-to-application selection matrix

Material choice drives tooling design, conditioning temperature, blow pressure, and regulatory status. The table below shows which resins are qualified per application category. All listed combinations have been validated on production machines — contact us for materials not shown.

ResinCosmeticFood JarPET BottleOil JugPharmaBaby / Special
PELIHARAAN
PETG
PP (food / pharma grade)
Komputer
Tritan (BPA-free copolyester)
PPSU
SAN / AS
COC (cyclic olefin)
Engineering Capabilities

What one-step ISBM solves that two-step cannot

Two-stage processes require a separate preform re-heating cycle, which creates thermal history variation, surface oxidation risk, and an additional material-handling step. The one-step architecture avoids these at the cost of lower output per machine — a trade-off that suits specialty, high-margin, and regulatory-sensitive containers.

Buyer Guidance

Matching machine configuration to production requirements

The right ISBM configuration depends on four variables: container geometry complexity, resin type, required output rate, and regulatory environment. The notes below cover the most common decision points across the six application lines.

OUTPUT VS. VARIETY

Two-step SBM delivers higher bph at lower cost per bottle for single SKUs above 500 mL. One-step ISBM becomes the correct choice where cavity count is low (1–8), SKU count is high, or container geometry prevents preform re-heating (handles, wide mouths, asymmetric profiles).

REGULATORY CLEARANCE

Pharmaceutical buyers operating under EU GMP Annex 1 or FDA 21 CFR Part 211 should specify the HGA Series pharma configuration with documented IQ/OQ/PQ support. Standard ISBM machines are not configured for cleanroom integration without additional HEPA plenum and surface treatment packages.

MOLD INVESTMENT

New container projects can enter with 1–2 cavity prototype molds. Production molds (4–8 cavity) are fabricated in S136H or H13 hardened steel with a quoted tooling life of 500,000–2,000,000 cycles depending on resin abrasiveness. ASB-compatible mold prints are accepted directly.

SAMPLE & PILOT PRODUCTION

Factory trials can be arranged for container samples before tooling commitment. Submit a 3D STEP file or physical sample with wall-thickness callouts, resin specification, and required thread standard (SP, GPI, or DIN). Typical pre-production sample lead time is 30–45 days from mold order placement.

Questions buyers ask before ordering

The following covers the most common technical and commercial questions received from packaging manufacturers, brand procurement teams, and distributor partners evaluating ISBM equipment.

What is the standard lead time for machine and mold delivery, and how are custom container shapes handled?

Standard machine lead time is 60–90 days from order confirmation and deposit receipt. Mold fabrication runs in parallel for most configurations and adds 30–45 days to first production sample readiness. For custom container profiles — irregular shoulders, embossed logos, asymmetric cross-sections — the mold design review adds approximately 5–10 working days before tooling steel is cut.

Customers provide container geometry via 3D STEP file or physical sample. The engineering team returns a DFM (Design for Manufacturability) report identifying any preform distribution challenges, stretch-ratio limits, or minimum wall-thickness concerns before tool order is placed.

Is there a minimum order quantity (MOQ) for machines and tooling?

There is no minimum quantity on machines — single-unit orders are accepted. Tooling (molds) is quoted per cavity set; there is no minimum cavity count requirement. A 1-cavity prototype mold is available for first-article verification before committing to a full production cavity set.

Spare parts orders have a minimum value threshold of USD 500 per shipment to cover logistics cost. For distributor and agent partners in specific territories, volume-based pricing tiers are available — contact the sales team with your territory and expected annual unit projection.

Can the ISBM machine process existing molds from Aoki, ASB, or other Japanese OEM platforms?

Yes. The machine platform is dimensionally compatible with Aoki and Nissei ASB mold interfaces, specifically the ASB-12M and ASB-50 mold plate formats. Before transferring an existing mold, submit the original mold drawing or a set of interface measurements (preform mold PCD, blow mold pitch, core rod diameter) for a compatibility verification check — this is completed at no charge within 5 working days.

Molds designed for SIPA, Husky, or custom non-standard interfaces require an adapter plate to be machined. The adapter adds 10–15 days to first-production readiness but allows the customer to avoid re-cutting expensive blow molds. Compatibility cannot be guaranteed without dimensional confirmation on a case-by-case basis.

What documentation and testing are provided for pharmaceutical and food-contact applications?

Standard machine documentation includes CE Declaration of Conformity, factory acceptance test (FAT) report, electrical panel wiring diagrams, PLC program backup, and operation/maintenance manuals in English. Material-contact parts are supplied with material certificates confirming food-grade or medical-grade compliance of any steel or polymer component in the melt or bottle pathway.

For pharmaceutical buyers:

  • IQ (Installation Qualification) and OQ (Operational Qualification) protocol templates are available upon request.
  • PQ (Performance Qualification) support can be provided by a qualified application engineer during site commissioning at additional cost.
  • Change control documentation covering any modifications to the machine after FAT is provided in line with GMP record-keeping requirements.

Food-contact applications: migration test reports for mold steel alloys and hot-runner components are available. Third-party testing against EU Regulation 10/2011 or FDA 21 CFR 177 can be arranged at the buyer’s request and cost.

Submit a container specification or request a catalog download

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