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Ampoule Filling Machine
Created with Pixso. Servo ±0.5% Precision Filling 10ml Ampoule Washing Sterilizing Filling Sealing Line, 30000 pcs/h Tool-Free CIP AGF-14S

Servo ±0.5% Precision Filling 10ml Ampoule Washing Sterilizing Filling Sealing Line, 30000 pcs/h Tool-Free CIP AGF-14S

Brand Name: ECER
Model Number: AGF-10-30000
MOQ: 1 Set
Price: USD 45000-120000 / Set
Delivery Time: 45-60 Working Days
Payment Terms: T/T,L/C
Detail Information
Place of Origin:
China
Certification:
CE, ISO 9001, GMP
Ampoule Size Range:
10ml
Production Speed:
30000 Pcs/h
Washing Method:
Vertical Ultrasonic + Independent Water/air
Sterilization:
Dry-heat 310-325°C Laminar Flow
Filling Heads:
8 Ceramic Piston Pumps
Filling Accuracy:
±0.5% - ±2%
Sealing Method:
Oxygen-natural Gas Flame Pull-seal
Clarity Rate:
>99%
Breakage Rate:
≤1%
Control System:
PLC + 10-inch HMI Touchscreen
Power Supply:
380V / 50Hz, 3-phase (customizable)
Main Material:
316L Stainless Steel Contact Parts
Packaging Details:
Fumigated Plywood Export Crate with VCI Film
Supply Ability:
10 Sets per Month
Highlight:

Precision ampoule filling machine 30000 pcs/h

,

Tool-free CIP ampoule sealing line

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10ml ampoule washing sterilizing machine

Product Description
Problem

Undetected ampoule jams in the infeed starwheel of 10ml processing lines cascade into multi-ampoule collisions that generate glass splinters requiring complete line clearance and sanitization. With no automatic jam detection or root-cause diagnostics, operators spend 25-40 minutes per incident on investigation and recovery in aseptic gowning conditions.

Cause

Standard photoelectric sensors used for ampoule presence detection have a 2-5ms response time with a detection beam diameter of 1.5mm, creating blind zones between closely spaced ampoules at starwheel pitch distances of 25-30mm. At 15000 pcs/h (240ms per ampoule), a single missed detection allows a jam to propagate to 3-4 ampoules before the safety interlock engages, generating glass contamination.

Solution

Multi-sensor jam detection in our 10ml line combines through-beam photoelectric sensors (0.1ms response), inductive pocket occupancy sensors and high-speed camera frame-difference analysis (200 fps) to detect abnormal ampoule positioning within 3ms. Upon jam detection, the affected starwheel section executes an emergency stop within 0.5 rotation degrees while adjacent sections continue processing, localizing the incident to 3-5 ampoules and enabling 10-minute recovery.

Key Features
  • Automatic Ampoule Feeding and Transfer: Servo-driven starwheel with individual spring-loaded 3-point centering pockets self-adjusts to actual ampoule diameter (±0.5mm tolerance). Inductive proximity sensors detect missing or misaligned ampoules within 5ms at the transfer point.
  • HMI Integrated Line Control: S7-1500 PLC with 10-inch color touchscreen stores 50 product recipes. OPC-UA server capability logs all critical process parameters at 10Hz to an onboard SQL database with auto-generated 21 CFR Part 11 compliant electronic batch records.
  • Automatic Fault Display and Diagnostics: Multi-sensor jam detection combining photoelectric sensors (0.1ms), inductive pocket sensors and 200fps camera frame-difference analysis triggers localized emergency stop within 3ms. HMI displays root-cause diagnostics with guided recovery procedures.
  • Whole-Line Breakage Rate ≤1%: Hardened 316L stainless steel (Rockwell C 40-45) with electropolished Ra ≤0.4μm finish on all glass-contact surfaces prevents fragment embedding. Validated ≤1% breakage rate across 1,000,000+ ampoule production qualification runs.
  • Compact Monoblock Architecture: All utilities integrated within the machine chassis at 10500mm * 1800mm footprint—40-50% floor space reduction versus separate machines. Pre-plumbed internal water, gas and electrical distribution eliminates cleanroom utility trenches.
  • Continuous Environmental Monitoring: Integrated 1 CFM laser particle counter (0.5μm and 5.0μm channels) and active microbial air sampler stream data at 1Hz to the line PLC. Configurable alert limits with automatic filling suspension if Grade A action limits are exceeded per EU GMP Annex 1.
Technical Specifications
ParameterSpecification
Ampoule Compatibility10ml (GB 2637 / ISO 9187 Type I borosilicate glass)
Production Capacity30000 ampoules per hour
Washing MethodVertical ultrasonic (31kHz) + independent WFI water/air rinsing
Sterilization Temperature310-325°C, laminar-flow HEPA H14 filtered
Filling Accuracy±0.5% (servo ceramic piston, 10ml fill volume)
Filling Heads8 ceramic piston pumps, individually servo-driven
Sealing MethodOxygen-natural gas flame, synchronized pull-seal with IR pyrometer feedback
Clarity Rate>99% (post-wash inline camera inspection, 360° rotation capture)
Breakage Rate≤1% (whole-line, validated across 1M+ ampoules)
Control System S7-1500 PLC + 10-inch HMI touchscreen, 50-recipe storage
Power Supply380V / 50Hz, 3-phase (60Hz / 440V customizable)
Line Footprint10500 x 1,800 x 2,200 mm (L x W x H)
Cleanroom ClassificationISO 7 (Class 10,000) room; filling zone ISO 5 (Class 100) laminar
Selection Guide

For 10ml ampoule production at 30000 pcs/h, this model suits facilities producing 240-480k ampoules per single/double shift. Select this capacity tier when your annual demand falls between 60-120 million ampoules. For start-up or clinical trial supply with lower initial volumes, consider our 20000 pcs/h variant. For high-volume commercial manufacturing, step up to the 40000 pcs/h model. Verify ampoule dimensional conformance to GB 2637 or ISO 9187, and confirm your product viscosity is <200 cP at filling temperature for optimal ±0.5% accuracy.

Applications

Suitable for pharmaceutical injectable products requiring aseptic processing in 10ml ampoule format. Ideal for hospital pharmacy sterile compounding centers, contract manufacturing organizations (CMOs) serving generic injectable markets, veterinary pharmaceutical manufacturers, and research institutions producing clinical trial materials under GMP conditions. Compatible with aqueous solutions, oil-based formulations, and suspensions with viscosity below 200 cP at filling temperature.

FAQ

Q: Can the line process amber or colored glass ampoules?
A: Yes. Optical inspection parameters and IR pyrometer emissivity settings are adjustable for amber glass (ε ≈ 0.85) versus clear borosilicate (ε ≈ 0.65). Pre-production trials with your specific glass vendor are recommended to optimize flame-sealing torch parameters for different glass thermal absorption characteristics.

Q: What preventive maintenance is required?
A: Daily: clean ultrasonic bath and rinse nozzles, verify HEPA differential pressure. Weekly: calibrate filling pumps against certified reference weights, inspect flame-seal burner tips for carbon deposits. Monthly: validate HEPA filter integrity via DOP testing, check starwheel bearing play. Annual: full mechanical overhaul including replacement of all dynamic seals and servo motor encoder verification.

Q: Is the line compatible with CIP/SIP systems?
A: The product-contact fluid path (ceramic pistons, 316L manifolds, silicone tubing and filling needles) supports Clean-in-Place with automated wash cycles using 75°C WFI. All product-contact components are designed for tool-free disassembly in under 5 minutes for manual cleaning and autoclave sterilization at 121°C for 30 minutes.

Q: What glass particulate control measures are in place?
A: Five-layer defense: (1) dual-frequency ultrasonic washing removes >99.5% of particles; (2) inline camera inspection rejects ampoules with residual contamination; (3) all glass-contact surfaces are hardened 316L with Ra ≤0.4μm to prevent fragment embedding; (4) ISO 5 laminar flow prevents airborne recontamination post-wash; (5) 100% vacuum decay seal testing ensures no glass migration post-sealing.