Servers for creating classical, cloud and hyperconverged infrastructures
DEPO Storm 1000 single-socket servers
DEPO Storm 1000 are high-performance energy-efficient single-socket servers for equipping regional offices and small branch offices. This server equipment is available in 1U and 2U cases and tower models. The single-socket server configurator allows you to choose a model for optimal placement of key infrastructure applications and services.
The entry-level 1U single-socket server is designed for dedicated hosting of business applications and services with precise configuration options for your specific application.
The entry-level 2U single-socket server is optimal for mail servers, databases and file archives in small companies and branch offices.
Up to 128 GB RAM
2.5″ and 3.5″ drives
DEPO Storm 3000 dual-socket servers
Fault-tolerant servers for building infrastructure with a high density of computing resources. The servers are optimized for virtualization, VDI, terminal access and HPC workloads. Servers from this lineup are produced for modern office, in particular, on the basis of domestic DEPO platform, which makes them an optimal option for import substitution programs. The DEPO Storm 3000 lineup also includes cost-effective sollutions. If you are primarily interested in such solutions, pay attention to the 3400 and 3500 series.
A fault-tolerant dual-socket storage server built using C621 chipset and proprietary DEPO motherboard. Designed for standalone use with optional rackable chassis.
High-performance dual- socket server in a 2U form factor focused on use in corporate and government IT systems with increased requirements for fault tolerance.
A unique fault-tolerant dual-socket storage server with optional rackable chassis and cyber security tools compatibility.
Up to 2 CPUs
2.5″ drives
RAM up to 2 TB
DEPO Storm 4000 four-socket servers
Powerful servers that allow you to place the maximum number of CPUs and RAM per unit. Designed for building virtualization farms, computing clusters and solving complex computational problems.