How gigaRAM turns flash into memory
gigaRAM operates one layer below the operating system: it attaches low-cost NVMe flash as an extension of RAM and keeps “hot” data in DRAM. The OS sees 2–4× more RAM — transparently to your applications.
How it works
Four layers of the mechanism
A memory layer below the OS
gigaRAM plugs in as a memory-management tier beneath the operating system. Applications and databases keep running unchanged.
Flash as an extension of RAM
Low-cost NVMe flash is used as a large memory pool. Available memory grows 2–4× without buying more DRAM.
Predictive placement
The engine predicts “hot” pages and keeps them in DRAM, while “cold” pages move to flash — minimal latency at maximum capacity.
Transparent to the OS
The operating system sees the expanded memory as ordinary RAM. No need to rewrite or reconfigure your applications.
Properties
What it delivers in practice
Deploys in under 5 minutes
Rolls out on a running server with no infrastructure rebuild and no downtime.
Memory at near-DRAM speed
Hot data is served from DRAM, so latency stays close to native memory.
Sovereignty and control
Deploys on-premise and in isolated environments. Your data stays within your perimeter.
Runs on your hardware
Standard servers and NVMe drives — no specialized equipment required.
Want to see it on your workload?
We will run a gigaRAM pilot on your server and show the memory gains and savings in real numbers.