Modular ULT storage for modern pharma facilities
Built on proven performance
Explore the engineering foundation behind cold storage infrastructure designed for proven performance, controlled execution and lifecycle durability, when GMP timelines are fixed and long-term performance is non-negotiable.
Simplify pharmaceutical ULT deployment
Planning a pharmaceutical ULT storage project involves more than selecting the right equipment. Infrastructure, supplier coordination, installation planning and long-term operations all influence project success.
This guide explains how different deployment models impact project complexity and demonstrates how an integrated delivery approach can reduce supplier interfaces, simplify coordination and support more predictable project execution—from planning through commissioning.
Inside the guide you will learn:
✓ Which deployment model fits your facility
✓ How supplier interfaces impact project complexity
✓ What to consider before installation starts
✓ How to simplify commissioning
✓ How integrated delivery supports long-term operation
Access our Engineering Library
All technical specifications and documentation in one place
Our Engineering Library provide engineers with direct access to all our technical materials needed for ULT storage evaluation and project planning.
You can explore datasheets, technical specifications, layout drawings and dimensions, deployment documentation, and other engineering resources related to large-scale ULT storage infrastructure here.
Technical resources for planning pharmaceutical ULT storage projects
Inside the Engineering Library you will find:
✔ Product datasheets and technical specifications
✔ Layout drawings and dimensions
✔ Infrastructure and facility planning documentation
✔ Deployment and installation guides
✔ Application examples and storage configurations
✔ Lifecycle and operational planning resources
✔ Engineering articles and technical insights
Rethinking ULT Storage Architecture
Design simplicity through integrated and modular ULT infrastructure
Scaling ULT storage is often approached by adding more upright freezers. While this increases capacity, it also introduces additional operational complexity.
Large-scale ULT storage can instead be engineered as a single integrated system. This architecture allows capacity to scale by adding modules, without increasing system complexity, while continuing to operate as one unified solution.
The concept video below illustrates how this approach simplifies scalable cold storage.
ULT Storage Architecture Comparison
Documented Performance Benchmarks
Benchmark comparison between conventional upright freezer installations and integrated large-scale ULT architecture based on equivalent storage capacity.
35 upright freezers vs. 1 LSSU module
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Not sure wether large-scale ULT storage makes sense for your facility?
Send us your questions - we are happy to review your setup and share technical guidance.
No obligation, just data and technical guidance.
OPErational advantages
of a large-scale ULT architecture
Handles a wide variety of materials with adjustable set points down to –80°C.
While ensuring high temperature uniformity with minimal deviationprotecting, this solution is ideal for ultra-sensitive biologics.
The LSSU is designed for highly temperature-sensitive biologics that tolerate zero temperature excursions. Our efficient cooling technology and organized storage layout maintain product temperatures within ±1 °C, ensuring exceptional stability and protection.
Energy consumption is reduced by up to 66% through optimized cooling technology and an integrated large-scale storage design.
Redundant cooling architecture ensures continuous operation and protects stored products from temperature risk, even if a component fails.
A single turnkey partner for design, manufacturing, and deployment reduces coordination complexity and project risk.