Skip to content

 

Sterilization
by design 

Navigate the cube by selecting your market and your preferred perspective: application, technology or packaging. Each combination opens a specific dimension of how Fedegari approaches the sterile process.

EXPLORE THE PART OF THE CUBE MOST RELEVANT TO YOU.

What the technology will undergo. How the packaging will respond. 
How the application will behave under sterilization conditions. Where integrity must be preserved and how every detail must be designed to maintain it.

Sterilization by Design is our methodology for making those decisions, starting from sterilization principles, translated into engineering architecture, expressed through the systems that embody the sterile process. Because no two manufacturing environments are the same: each brings its own conditions, its own constraints and its own level of complexity.

Select your market
Small Molecules
Biotech
ATMP - genes, tissues or cells
Medical Devices
Primary packaging
OSD
R&D and LAB centers
Cosmetic

Tech Hub

Scopri le soluzioni digitali messe a disposizione da Fedegari
Scopri di più

Select your driver

By application
By technology
By packaging
Select your driver
By application
By technology
By packaging
Biotech

High temperature for solid loads

In biotech and aseptic fill & finish manufacturing, the sterility of machine parts, tools, empty containers, filters, garments and other critical product-contact components directly impacts process integrity and patient safety.
Discover more
Biotech

High Temperature for Porous loads

Manufacturing components such as stoppers, filters, garments and silicone tubing requires more than achieving sterility.
Discover more
Biotech

Combined washing and sterilization

In high-potent manufacturing, isolator-based aseptic processing and space-constrained facilities, contamination control extends beyond removing residues from components.
Discover more
Biotech

Low Temperature Sterilization

Many products cannot tolerate the temperatures and humidity associated with moist heat sterilization.
Discover more
Biotech

Stopper Treatment

As aseptic filling lines become faster and batch values increase, the transfer of elastomeric closures becomes a critical step in contamination control.
Discover more
Small Molecules

High temperature for solid loads

In biotech and aseptic fill & finish manufacturing, the sterility of machine parts, tools, empty containers, filters, garments and other critical product-contact components directly impacts process integrity and patient safety.
Discover more
Small Molecules

High Temperature for Porous loads

Manufacturing components such as stoppers, filters, garments and silicone tubing requires more than achieving sterility.
Discover more
Small Molecules

Combined washing and sterilization

In high-potent manufacturing, isolator-based aseptic processing and space-constrained facilities, contamination control extends beyond removing residues from components.
Discover more
Small Molecules

Low Temperature Sterilization

Many products cannot tolerate the temperatures and humidity associated with moist heat sterilization.
Discover more
Small Molecules

Stopper Treatment

As aseptic filling lines become faster and batch values increase, the transfer of elastomeric closures becomes a critical step in contamination control.
Discover more
Medical Devices

High Temperature for Porous loads

Manufacturing components such as stoppers, filters, garments and silicone tubing requires more than achieving sterility.
Discover more
Medical Devices

Low Temperature Sterilization

Many products cannot tolerate the temperatures and humidity associated with moist heat sterilization.
Discover more
Primary Packaging

High temperature for solid loads

In biotech and aseptic fill & finish manufacturing, the sterility of machine parts, tools, empty containers, filters, garments and other critical product-contact components directly impacts process integrity and patient safety.
Discover more
Primary Packaging

High Temperature for Porous loads

Manufacturing components such as stoppers, filters, garments and silicone tubing requires more than achieving sterility.
Discover more
Primary Packaging

Low Temperature Sterilization

Many products cannot tolerate the temperatures and humidity associated with moist heat sterilization.
Discover more
Primary Packaging

Stopper Treatment

As aseptic filling lines become faster and batch values increase, the transfer of elastomeric closures becomes a critical step in contamination control.
Discover more
OSD

Combined washing and sterilization

In high-potent manufacturing, isolator-based aseptic processing and space-constrained facilities, contamination control extends beyond removing residues from components.
Discover more
Cosmetics

High temperature for solid loads

In biotech and aseptic fill & finish manufacturing, the sterility of machine parts, tools, empty containers, filters, garments and other critical product-contact components directly impacts process integrity and patient safety.
Discover more
Cosmetics

High Temperature for Porous loads

Manufacturing components such as stoppers, filters, garments and silicone tubing requires more than achieving sterility.
Discover more
Cosmetics

Terminal sterilization for closed liquids

Small molecules continue to account for the majority of sterile pharmaceutical products worldwide. For these formulations, terminal sterilization remains the preferred approach to sterility assurance because it allows the final packaged product to be sterilized after filling.
Discover more
Small Molecules

Terminal sterilization for closed liquids

Small molecules continue to account for the majority of sterile pharmaceutical products worldwide. For these formulations, terminal sterilization remains the preferred approach to sterility assurance because it allows the final packaged product to be sterilized after filling.
Discover more
Primary Packaging

Terminal sterilization for closed liquids

Small molecules continue to account for the majority of sterile pharmaceutical products worldwide. For these formulations, terminal sterilization remains the preferred approach to sterility assurance because it allows the final packaged product to be sterilized after filling.
Discover more
Cosmetics

Terminal sterilization for closed liquids

Small molecules continue to account for the majority of sterile pharmaceutical products worldwide. For these formulations, terminal sterilization remains the preferred approach to sterility assurance because it allows the final packaged product to be sterilized after filling.
Discover more
fedegari-solutions-sterilization-for-application-tecnology-packaging-1

THE CUBE HAS MORE THAN THREE FACES

Explore how Fedegari has approached sterile process challenges across different industries, applications and manufacturing environments.

 

WHITE PAPER AND RESEARCH

Technical depth, documented and made accessible. A growing collection of papers and research contributions developed from real application experience across industries, processes and manufacturing environment.

Search by topic

By application

Every product brings its own sterilization challenge, defined by its behaviour under heat, pressure or chemical exposure and by the sterility assurance level it must achieve.


Navigate by application to find the process approach most relevant to yourspecific manufacturing context.

 

By technology

Sterilization technology is only as effective as the process principles that govern it. Each technology brings its own control strategy, its own validation requirements and its own process boundaries. 

Navigate by technology to explore how we translate sterilization principles into the systems that embody your sterile process.

 

 

By packaging

Packaging is an active element of the sterilization process. Its material, geometry, sealing performance and integrity under sterilization conditions define what the process must achieve and how it must be designed. 

Navigate by packaging to explore how we approach this dimension.