Combined washing
and sterilization
In high-potent manufacturing, isolator-based aseptic processing and space-constrained facilities, contamination control extends beyond removing residues from components. Materials often need to move between classified environments while preserving the conditions required for safe transfer.
The challenge is that contamination removal does not restore the sterile boundary. Before components can be transferred, contamination must be removed and transfer integrity re-established through a governed process.
REMOVING CONTAMINATION IS EXPECTED. RESTORING TRANSFER INTEGRITY AFTERWARDS DETERMINES WHETHER THE PROCESS CAN CONTINUE SAFELY.
Fedegari governs contamination removal and sterile boundary restoration as a single contamination-control process.
By integrating washing, drying, sterilization and transfer preparation within one controlled environment, critical contamination-control decisions can be executed without moving loads between separate technologies or classified areas.
The result is restored transfer integrity, minimized contamination exposure and lower facility complexity.

MINIMIZED OPERATOR EXPOSURE
Contaminated components remain contained until decontamination, drying and sterilization have been completed.
REDUCED FACILITY COMPLEXITY
The same controlled environment reduces the infrastructure, validation and maintenance requirements associated with separate technologies.
REDUCED DRYING TIME
The pressure vessel is used to perform vacuum-assisted drying after washing, accelerating moisture removal by up to 30%.
emerge sterile, dry and ready for immediate use.
DEDICATED PROCESS CONTROL FUNCTIONS
Fedegari's process control architecture governs contamination removal, drying, sterilization and transfer preparation through dedicated monitoring and recording functions.
Key process functions include:
- Washing phase management
- Vacuum-assisted drying control
- Sterilization phase control
- Continuous recording of temperatures, pressures, alarms and process transitions
Together, these functions provide documented evidence that each contamination-control objective has been achieved according to predefined process conditions.
HIGH-POTENT EXIT FLOWS
Where contaminated components must leave a classified environment and contamination spread must be controlled.
DIRECT GRADE A TRANSFER
Where components must move toward isolators or Grade A environments without intermediate handling or sterile barrier preparation.
FACILITY OPTIMIZATION
Where limited space, low throughput or facility constraints make separate contamination-control technologies difficult to justify.
Why is contamination removal not sufficient for safe transfer?
Because removing contamination does not automatically restore the sterile boundary required for movement between classified environments.
Why is this approach particularly relevant for high-potent manufacturing?
It helps contain contamination until transfer conditions have been restored, minimizing contamination spread beyond the originating environment.
Can components be transferred directly toward aseptic processing?
Yes. The process supports transfer pathways toward isolators and Grade A environments while maintaining contamination-control objectives.
How is operator exposure minimized?
Contaminated components remain within a governed process sequence until contamination removal and sterile boundary restoration have been completed.
Why is drying integrated into the process?
Drying is part of transfer preparation. Integrating it into the contamination-control sequence reduces process complexity and preparation time.
When is this technology most valuable?
When contamination control, sterile transfer requirements and facility constraints must be managed within the same workflow.
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