Pharmaceutical · Filling & Packaging

Pharmaceutical Filling & Packaging Solutions

Plan equipment around your dosage form, container and quality requirements. Explore oral-liquid filling, ointment tube sealing, capsule filling and tablet counting, with bottle handling, capping and labeling equipment for coordinated production.

Build the process around the medicine.

Consistent packaging starts with defined product, container and quality requirements. Address these four decisions before selecting equipment.

01

Dose consistency

Agree the fill volume, capsule fill weight or tablet count, its allowable deviation and the test method at the intended production speed.

02

Cleaning & changeover

Assess product residues, accessible contact parts, cleaning procedures and format changes across every product in your manufacturing schedule.

03

Container & closure fit

Bottle tolerances, tube material, cap geometry and capsule size determine tooling, positioning and the appropriate closing method.

04

Line balance & inspection

Match feeding, dosing, closing and labeling speeds. Define detection, rejection and restart behavior for the integrated process.

Product portfolio

Equipment for pharmaceutical filling and packaging

Explore all 11 machines in our pharmaceutical portfolio, from the core filling process to bottle preparation and labeling. Specifications below refer to individual models; final suitability and line output require sample trials and an agreed configuration.

GDHP Blister Packaging Machine
Blister Packaging

Blister Packaging Machinery

The equipment is controlled by servo motors, with precise film pulling, accurate standards, and simple and convenient operation. Automatic feeding device for drugs, capsules and other products, high-speed synchronous forming filling heat sealing process.

  • Maximum traction distance40-180mm
  • Air pressure requirements0.6mpa-0.8mpa
  • Maximum molding depth2mm-45mm
  • Production CapacityDesigned to meet your needs
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Pill Tablet Press

Rotary Pill Tablet Press Machine

Pressure regulation, material weight adjustment wheel adopts threaded shape, which saves time and effort in adjustment. Comes with a vacuum cleaner to reduce material dust during film production.

  • Production Capacity70,000-140,000PCS/h
  • Maximum Sheet Diameter4-32mm
  • Maximum Filling Depth15mm Customizable Up to 20mm
  • Maximum Speed25r/min
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Blister Packaging

Oral Liquid Filling & Capping Line

A coordinated bottle-preparation, tracking-fill and servo-capping configuration for oral liquids and syrups. Peristaltic metering and cap detection are selected around the actual formulation and bottle format.

  • MeteringPeristaltic pumps
  • Filling modeTracking filling
  • ClosureServo capping
  • DetectionMissing / misaligned caps
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Ointments & creams

Tube Filling & Sealing Machine

Servo-piston dosing and internal heat sealing for compatible plastic and composite tubes. Evaluate medicinal ointments and creams using the actual formulation, tube material and seal-quality requirements.

  • Fill range20–180 mL/tube
  • Published output40–60 tubes/min
  • Tube diameter16–50 mm
  • Tube materialPlastic / composite
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Powders & granules

Automatic Hard-Capsule Filling Machine

A dosing-disc capsule filler for pharmaceutical powders and granules. Capsule orientation, separation, dosing, rejection and closing are coordinated in one machine; formulation flow and target fill weight guide tooling and trials.

  • Capsule sizes00#–4#
  • FormulationsPowders / granules
  • Dosing systemDosing disc
  • Die holes18
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Solid-dose bottle packing

Tablet, Pill & Capsule Counting Machine

Electronic counting for finished tablets, pills and capsules, including a published range of round and square bottles. Assess dust behavior, pack count and handling during trials; this is a counting process rather than capsule manufacture.

  • Capsule sizes000–5
  • Tablet / pill diameter3–25 mm
  • Bottle capacity10–500 mL
  • Count setting1–9,999 units/bottle
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Solution

Match the filling system to the dosage form

A liquid pump, a tube filler and a capsule dosing system solve different manufacturing problems. We configure the product path, handling and closing sequence around your formulation and packaging samples, then agree the checks needed for factory trials.
Discuss Your Pharmaceutical Project
Peristaltic filling pump

Liquid filling & controlled capping

Process: Peristaltic filling meters product through tubing; ceramic-pump configurations can be assessed for suitable small-dose liquids.

Applications: Oral solutions and syrups, with pump and nozzle selection based on viscosity, foaming, dose and cleaning requirements.

Configuration example: One oral-liquid project specification called for dual ceramic-pump filling and servo capping with touchscreen-adjustable torque. Bottle and cap interlocks were included in the proposed configuration.

Ointment tube filling & sealing

Process: Servo-piston dosing is combined with tube positioning and internal heat sealing for compatible plastic or composite tubes.

Applications: Medicinal ointments and creams, subject to trials with the actual formulation, tube dimensions and tube material.

Checks: Evaluate fill weight, product stringing, the cleanliness of the sealing area and seal quality across the agreed operating range.

Capsule filling & tablet counting

Process: Hard-capsule filling doses powders or granules into capsule shells. Electronic counting dispenses finished tablets, pills or capsules into bottles.

Applications: Select by capsule size or tablet dimensions, formulation flow behavior, dust load and the required pack count.

Checks: Assess capsule fill-weight variation and locking separately from bottle-count accuracy; include rejected units and cleaning access in the acceptance plan.

Selection guide

Choose the line architecture before choosing the model

Choose the architecture around your current process, planned batch sizes and available space. Match the transfer, cleaning and inspection requirements before comparing individual machine speeds.

Focused process upgrade

Standalone equipment

Use when an existing line needs a defined filling, counting, capping or labeling function and its upstream and downstream interfaces can be retained.

  • One defined process task
  • Integration with existing equipment
  • Room for staged expansion
Compact integrated production

Monoblock platform

Use when filling and closing need repeatable transfer on one compact platform. Confirm container access, change parts and the cleaning sequence.

  • Coordinated filling and closing
  • Format-specific tooling
  • Centralized operating controls
Coordinated production

Integrated packaging line

Use when bottle preparation, dosing or counting, closing, inspection and labeling must operate as one coordinated process.

  • Balanced operating speeds
  • Defined transfer and reject interfaces
  • Agreed testing and documentation

Typical process architecture

From empty bottle to identified finished pack

This example describes a bottle-packaging workflow. Liquid filling and solid-dose counting use different equipment at the dosing stage. Tube sealing and capsule manufacture follow their own process sequences.

01Feed & orientBottle unscrambling, guided infeed or format-specific pucks
02Prepare containersAir rinsing or a separately specified washing and treatment process
03Dose or countLiquid metering or electronic counting of finished tablets and capsules
04Close & sealCap placement, torque capping or the specified closure operation
05Check & rejectAgreed fill, count, closure and reject-system checks
06Label & codeLabel application, batch identification and downstream packing

Support from requirements to equipment acceptance

Oral Liquid Filling & Capping Line

01 Product Review & Tooling Design

Start with the formulation, dosage form and representative packaging samples. Review fill or count requirements, container tolerances, cleaning needs and available floor space. Define change parts, utilities and interface responsibilities before the equipment configuration is agreed.

Automatic Hard-Capsule Filling Machine

02 Manufacturing & Factory Acceptance Testing

Set an agreed FAT protocol before factory trials. Use representative products or justified test media and actual packaging samples to assess dosing or counting, closures, alarms, rejection and line transfers. Record results, deviations and required follow-up actions against the agreed acceptance criteria.

Tube Filling & Sealing Machine

03 Installation & Qualification Planning

Agree the installation, SAT and qualification-support scope in the project specification. Confirm utilities and site readiness, then define which drawings, manuals and test records will be supplied. The pharmaceutical manufacturer’s quality team controls qualification approval and process validation.

Servo Capping Machine with Frame

04 Training, Maintenance & Support

Include operator setup, cleaning, format changes and routine fault handling in the training plan. Identify wear parts such as tubing, seals and format tooling, with maintenance intervals and spare-parts needs. Confirm remote or on-site support arrangements for the project.

From dosage form to acceptance

Engineering Guide to Pharmaceutical Filling & Packaging

1. Let the dosage form define the process

Oral solutions and syrups need a metering method matched to viscosity, fill volume and foaming behavior. Suspensions add questions about settling, mixing, particle passage and changes during the planned hold time. Evaluate those conditions with a representative formulation before selecting the product path and pump.

Ointments and creams need controlled feed, a suitable nozzle and a tube-sealing method compatible with the packaging material. Hard-capsule filling handles powders or granules inside capsule shells; tablet and capsule counting handles finished dosage units for bottle packing. Compare the tube filling and sealing machine and tablet and capsule counter against these distinct tasks.

2. Specify the dose and acceptance test together

For liquids, state the nominal fill volume and allowable deviation, and define whether verification uses volume or mass with an appropriate density conversion. For capsule filling, define fill-weight variation and the sampling method. For a counter, define units per bottle, count correctness and how short or overfilled packs are detected and handled.

Equipment dosing repeatability does not by itself establish drug potency or content uniformity. Agree the test material, temperature, sample size, operating speed and start-up conditions. Measure the output of the complete configured line, including closure, inspection and labeling, rather than combining the highest quoted speeds of separate machines.

3. Plan the contact path and cleaning procedure

Identify the parts that contact the formulation: tanks, pumps, tubing, valves, nozzles and seals. Evaluate compatibility with the product and cleaning agents, residue retention, dismantling access and the consequences of tubing or seal wear. A stainless-steel grade alone does not establish compatibility for every formulation.

Define cleaning steps, responsibilities, inspection and records between batches. 21 CFR 211.67 addresses equipment cleaning and maintenance procedures and records. Removable tubing in a peristaltic filling system can simplify access, but it does not eliminate the need to establish a suitable cleaning or replacement strategy. Specify CIP or SIP only when the selected equipment and complete circuit are designed and assessed for that process.

4. Separate cleanliness from aseptic capability

Cleaning removes residues. Disinfection reduces or inactivates microorganisms but may not eliminate bacterial spores; sterilization requires a validated process for eliminating viable microorganisms, including spores. Air rinsing can help remove loose particles from suitable containers, but it is not a sterilization process. A local airflow enclosure is one part of a wider environmental-control strategy and does not alone establish a sterile manufacturing process.

If the medicinal product requires sterile manufacture, identify whether the process uses terminal sterilization or aseptic processing. Assess the facility, personnel, container and closure preparation, transfers, environmental monitoring and process validation as a complete system. Sterile-product requirements require a separate technical review of the proposed equipment and its integration.

5. Match handling and closing to the package

Provide actual bottles, caps, tubes or capsule shells alongside drawings and tolerances. Bottle geometry influences guides, starwheels and pucks. Threaded caps require an agreed torque window; crimped closures require appropriate tooling and setup checks. Plastic or composite tubes require compatible sealing conditions, while hard capsules require correct engagement and locking.

Define the checks relevant to the pack: missing or skewed caps, closure engagement, tube-seal defects, leakage and, where required, container-closure integrity. Sensor presence checks are not a substitute for an agreed integrity test. The servo capping machine is selected against the actual cap and bottle combination, not the nominal cap diameter alone.

6. Protect label identity through every batch change

Confirm which label belongs to each product and pack size, where the batch number and expiry information will be applied, and how their presence and legibility will be checked. Define line clearance, removal of previous-batch materials, label reconciliation where applicable, and documented release before restarting.

For US finished-drug manufacturing, 21 CFR 211.130 addresses packaging and labeling controls, including prevention of mix-ups and documented pre-use inspection. A bottle labeling machine applies labels; coding, vision inspection, serialization, aggregation and electronic records require their own specified hardware, software and verification scope.

7. Turn the URS into an acceptance plan

Write the User Requirements Specification (URS) before the configuration is frozen. Define what the equipment must do, how it will be cleaned and operated, and the evidence needed for acceptance. Assign responsibility for utilities, upstream and downstream interfaces, testing, deviations and document approval.

Factory Acceptance Testing (FAT) checks the agreed configuration at the supplier’s premises; Site Acceptance Testing (SAT) checks it after installation and integration. IQ documents installation against the approved specification, OQ checks operation across defined ranges, and PQ demonstrates performance under the intended production conditions. These activities support an agreed qualification and validation strategy; FAT alone does not validate the pharmaceutical manufacturing process. Use our filling-line FAT checklist to prepare the equipment trial, with the manufacturer’s quality team approving the applicable qualification scope.

  • Dosage form and formulation characteristics
  • Packaging samples, drawings and tolerances
  • Nominal dose or count and acceptance limits
  • Required line output and batch schedule
  • Contact materials and cleaning strategy
  • Utilities, layout and environmental requirements
  • Inspection, rejection and batch identification
  • FAT/SAT, qualification support and deliverables

Frequently asked questions

Pharmaceutical equipment FAQ

Start with the dosage form, formulation properties and package. Oral liquids require a suitable pump and nozzle; ointments need compatible tube filling and sealing; powders or granules in hard capsules need a capsule filler; finished tablets and capsules need a counter for bottle packing. Confirm suitability with samples and an agreed test plan.

Multiple formats can be included when their dimensions and operating requirements are assessed during design. Agree the change parts, guides, pucks, tube holders or capsule tooling needed for each format, along with setup and cleaning procedures. Compatibility should be checked for every proposed format.

Define the target volume, capsule fill weight or bottle count together with allowable deviations and the sampling method. Confirm the formulation or justified test medium and the intended operating speed. Published figures describe a particular model or condition; agreed line output must account for every integrated operation.

Review the complete contact path, residue risks, access for dismantling, tubing and seal replacement, and the intended cleaning agents. Establish procedures and records appropriate to the pharmaceutical process. CIP and SIP are configuration-dependent and must be specified; they are not standard capabilities of every machine.

Provide the dosage form and relevant formulation properties, packaging drawings and representative samples, fill volume or count, output target and available layout and utilities. Include cleaning, environmental, inspection and document requirements. Agree sample-handling and trial arrangements before sending product.

Equipment can support a defined pharmaceutical process, but GMP compliance depends on the installed system, quality procedures, trained personnel, maintenance and appropriate qualification and validation. Agree the supplied documentation and testing support with GDHP; the pharmaceutical manufacturer retains responsibility for quality approval and regulatory compliance.

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