Your Vial Filling Line Provider — Liquid & Powder Injectable Vials

Complete linked vial line: washing → depyrogenation → filling → capping
Two routes: liquid vial filling & sterile powder vial filling
IQ/OQ/PQ validation, GMP & CE, 21 CFR Part 11 & GAMP5

AIPAK ENGINEERING Vial Filling Line

AIPAK Engineering vial filling line is a complete linked system for glass vials, integrating ultrasonic washing, depyrogenation tunnel sterilization, filling, and aluminum-cap crimping into one continuous line. Depending on the product, the same platform is configured for two routes — liquid injectable (water-for-injection) filling and sterile powder filling — processing vials from 2 ml up to 30 ml under GMP conditions.

Both routes run the full sequence — ultrasonic non-contact washing, hot-air tunnel depyrogenation (endotoxin reduction ≥ 3 log), precision filling, and crimp sealing — under Siemens PLC control, with Class 100 laminar flow over the sterile zone, 316L product-contact surfaces, and 21 CFR Part 11 / GAMP5 data integrity.

AIPAK Engineering delivers the vial line as a linked turnkey system under one contract, with IQ/OQ/PQ validation protocols, FAT/SAT, and GMP & CE certificates.

vial filling powder

Vial Filling Line

Liquid Vial (Water-for-Injection) Filling Line

For liquid injectables in glass vials. The line fills with 12 ceramic pumps and servo-tracked needles, performs vacuum semi-stoppering, and crimp-seals aluminum-plastic caps. Up to 300 vials/min (10 ml), filling accuracy ≤ ±1%, stoppering & capping pass rate ≥ 99.9%.

12 ceramic pumps, filling accuracy ≤ ±1%

Servo XY-tracking fill, liquid-level-following needles

Up to 300 vials/min (10 ml), breakage ≤ 0.01%

Automatic Lyophilized Powder for Injection Vial Filling Line

AIPAK ENGINEERING lyophilized powder for injection vial filling line is a specialized pharmaceutical manufacturing system designed to accurately dose sterile powder formulations into vials and prepare them for lyophilization (freeze-drying). The process typically involves vial washing, sterilizing, precise powder dosing using auger or vacuum-based systems, partial stoppering to allow for freeze-drying, lyophilization to remove moisture while preserving product stability, and final capping to ensure a secure seal. 

High degree of automation

Few operators required

No-bottle-no-filling, no bottle no stoppering, no bottle no capping and squeeze stop functions

Sterile Powder Vial Filling Line (Magnetic-Levitation, 100% In-Process Weighing)

For sterile powder injectables (e.g. antibiotic / cephalosporin powder) in glass vials. Vials ride on magnetic-levitation trolleys through weigh–fill–weigh stations: empty vials are weighed (station A), screw-filled by servo-driven dispensing screws, then weighed again (station B) for 100% in-process weight check (IPC). Out-of-spec vials are automatically rejected; qualified vials proceed to nitrogen filling, stoppering and capping.

Magnetic-levitation positioning + 100% in-process weighing (IPC)

Servo screw filling 0.5–5.0 g, fill difference ±4%, weighing error ≤ ±5–8 mg

Up to 400 vials/min (10 ml), nitrogen filling (O₂ ≤ 3%), no-vial-no-fill

What a Complete Vial Line Includes

AIPAK Engineering delivers the vial line as one linked system. The washing, depyrogenation and capping platform is shared across both routes; only the filling stage differs — ceramic-pump filling for liquid vials, magnetic-levitation screw filling for powder vials.

STEP 1

Washing-2

Washing

Vertical ultrasonic non-contact washing removes dirt from inner and outer walls, followed by alternating rinses of recycled water, WFI and sterile compressed air.

STEP 2

Depyrogenation-2

Depyrogenation

Hot-air laminar-flow tunnel with preheating, high-temperature and cooling zones dries and depyrogenates vials — endotoxin reduction ≥ 3 log, FH ≥ 1365.

STEP 3

Filling-3

Filling

Liquid route — 12 ceramic pumps with servo-tracked needles. Powder route — magnetic-levitation trolleys with servo screw filling and 100% in-process weighing.

STEP 4

Capping-3

Capping

Single-roller crimper seals aluminum-plastic caps, with no-stopper and no-cap detection and automatic rejection

*One contract, one linked line — washing, depyrogenation, filling and capping.

Vial Line — Technical Specification

Item Liquid Powder
Applicable vial size 2–10 ml 7–30 ml
Line speed (10 ml) 300 vials/min ≥ 400 vials/min (design ≥ 420)
Filling principle 12 ceramic pumps, time-pressure Servo screw, magnetic-levitation
Filling accuracy / difference ≤ ±1% fill difference ±4%, IPC error ≤ ±5–8 mg
Fill range liquid (WFI) powder 0.5–5.0 g
Weight check — 100% in-process weighing (A/B stations)
Nitrogen filling optional yes, O₂ ≤ 3%
Stoppering / capping pass rate ≥ 99.9% auto-reject no-stopper / no-cap
Vial breakage rate ≤ 0.01% ≤ 0.01%
Tunnel 150–350 °C, endotoxin ≥ 3 log, FH ≥ 1365 ≤ 350 °C (±2 °C), FH ≥ 1365, 325 °C ≥ 5 min
Sterile environment Class 100 laminar flow Class 100 laminar flow
Product-contact material 316L 316L
Data integrity 21 CFR Part 11 21 CFR Part 11, GAMP5, IEC-61131
Key configuration Siemens, Camfil, ABB, Fujikin, IGUS Siemens, ceramic bearings, Cognex vision (opt.)

Individual Machine Specifications

Each machine can be supplied as part of the linked line or individually. Below are the key specifications for both the liquid and powder vial configurations.

Liquid Vial Line — Machine Specifications

Machine Dimensions (mm) Weight Installed Power
BLC-80 Ultrasonic Vial Washer 2410 × 2310 × 1500 2,800 kg ≤ 12 kW
HXSR900-4000 Depyrogenation Tunnel 4000 × 2100 × 2400 4,000 kg 75 kW
GZ-12 Filling & Stoppering Machine 5300 × 1600 × 2500 ≤ 2,500 kg ≤ 12 kW
ZG-16 Crimping (Capping) Machine 2200 × 1100 × 2500 ≤ 1,500 kg ≤ 5 kW

Powder Vial Line — Machine Specifications

Machine Model Key Data Weight Installed Power
Ultrasonic Vial Washer (fully servo) QCK-60 / 80 ≥ 400 vials/min (10 ml) 3,500 kg ~ 8 kW
Depyrogenation Tunnel GMS800-4350 / GMS1200-5100 Mesh belt 1250 mm, ultrasonic 1000 W, 150–350 °C 7,000 kg 170 kW
Magnetic-Levitation Screw Filling Machine KFG-3F / 4F-CZ 3-head / 4-head, 100% in-process weighing, 0.5–5.0 g Refer to drawing Refer to drawing
Crimping (Capping) Machine KGL-12 / 16 12-head / 16-head Refer to drawing Refer to drawing

Vial Filling Line Applications

AIPAK ENGINEERING Vial Filling Line is a fully automated, high-precision solution designed to meet the demanding needs of modern pharmaceutical manufacturing. It is widely used in:

Injectable-Pharmaceuticals

Injectable Pharmaceuticals

Ideal for sterile solutions, suspensions, and vaccines.

Maintains strict sterility throughout washing, filling, and capping.

Sensitive biologics

Biopharmaceutical & Sensitive biologics

Perfect for sensitive biologics, monoclonal antibodies, and other oxygen-sensitive formulations.

Gentle handling ensures product integrity and minimizes shear stress.

Nutraceuticals

Cosmetics & Nutraceuticals

Suitable for serum, essential oils, and liquid supplements.

Flexible volume options accommodate small and large-scale production.

Laboratory Solutions

Chemical & Laboratory Solutions

Can handle corrosive, viscous, or reactive liquids safely.

Compatible with peristaltic and ceramic pumps for precise dosing.

AIPAK Engineering Vial Filling Line Videos

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Download Our Latest Catelogue

Discover our full range of pharmaceutical liquid solutions. Download the catalogue to explore specifications, features, and applicatons.

  • Full product range
  • Detailed technical specs
  • Industry applications

Vial Filling Machine FAQ

Q1: What types of vials can this filling line handle?

AIPAK ENGINEERING Vial Filling Line is compatible with a wide range of vial types, including glass and plastic vials, with volumes from 2 ml to 50 ml. Custom sizes can also be accommodated.

Q2: What is the production capacity of the Vial Filling Line?

Depending on the configuration, AIPAK ENGINEERING vial filling line can achieve production speeds of up to 6,000 vials per hour, ensuring high-efficiency operation for large-scale pharmaceutical production.

Q3: How is sterility maintained during the filling process?

Sterility is ensured through a combination of vertical ultrasonic bottle washing, hot air sterilization tunnel, and a fully enclosed filling and capping system, preventing contamination throughout the process.

Q4: Can the filling and capping parameters be adjusted?

Yes, the linear filling machine allows precise adjustment of liquid volume, and the vial capping machine provides adjustable rotation speed and number of turns to ensure consistent crimping quality.

Q5: How does the system prevent bottle tipping or breakage?

AIPAK ENGINEERING Vial Filling Line uses spiral bottle feeding, stable star wheel positioning, and anti-gap devices on the capping machine, minimizing the risk of tipping, cracking, or breakage during high-speed operation.

Q6: What type of pumps are used for liquid transfer?

AIPAK ENGINEERING vial filling line can be equipped with peristaltic pumps for sterile, contamination-free filling, or ceramic piston pumps for high-precision, chemically resistant applications.

Q7: Is the system easy to clean and maintain?

Yes, the design emphasizes ease of maintenance, with minimal valves and seals, quick tubing replacement for peristaltic pumps, and CNC-machined capping assemblies for consistent performance.

Q8: Can the line handle different liquid types?

The system can process various liquids, including aqueous solutions, suspensions, corrosive liquids, oxygen-sensitive formulations, and viscous materials, depending on the selected pump and configuration.

Q9: Does the vial filling line comply with international standards?

Absolutely. AIPAK ENGINEERING Vial Filling Line is designed to meet GMP, ISO, and FDA requirements, ensuring pharmaceutical-grade quality and regulatory compliance.

Q10: Can the line be customized for specific production needs?

Yes, the modular design allows customization of production speed, vial size, filling volume, and additional features like automated stopper/cap inspection, making it suitable for diverse manufacturing requirements.

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