HIGH PERFORMANCE COMPUTING

STORAGE

We design and develop solutions in data storage. To do this, we advise the client on the most suitable model (SAN, NAS, DAS) and the most suitable file system according to its needs. We have experience in parallel file systems, allowing us to obtain easily scalable solutions, both in space and in bandwidth and IOPS.

We provide technical support for the most common parallel file systems used on supercomputers, such as BeeGFS, Lustre, and GPFS.

Whether in HPC systems or high availability clusters, this is a critical component in achieving high performance. Therefore, we advise on the most suitable file system for the customer’s needs and take care of its installation and optimization in order to get the maximum performance.

We design, provide, install, and maintain all necessary hardware and software to run a storage system. Some examples of the solutions we propose are:

Scalable Storage for High-Performance Computing

Selecting the right file system is critical to achieving optimal storage performance. We offer expertise in parallel file systems, providing scalable solutions that handle both large volumes of data and high bandwidth needs. Our solutions are designed to meet the performance demands of HPC environments while ensuring maximum scalability for your data storage needs.

HARDWARE

Servers and storage, FC and SAN switches, NAS systems.

PARALLEL FILE SYSTEM

We offer technical support and expertise in deploying widely used parallel file systems, including:

  • BeeGFS

  • Lustre

  • GPFS

  • GlusterFS

  • Ceph

  • HDFS

These systems are ideal for HPC clusters and high-availability infrastructures, ensuring that your storage environment delivers unmatched performance.

FILE SYSTEM

From traditional NFS to modern cloud-native options like S3, our team assists in choosing and implementing the best-fit file systems for your specific use cases. We handle the entire lifecycle—from installation and configuration to ongoing optimization, ensuring high-performance data access.