gigaRAM
Memory cloud

The DRAM shortage is no longer your problem. Flash that works like memory.

gigaRAM is memory as a service: inexpensive flash works like DRAM. We replace up to 50% of expensive memory with no code changes and no loss of performance — and cut your infrastructure cost.

The market situation

DRAM shortage and rising prices

Demand for memory is growing faster than it can be produced. Shortage and high DRAM prices will persist through 2030 — and they hit infrastructure budgets.

DRAM prices have doubled

In Q1 2026, memory contract prices rose 105–110% versus the end of 2025. The driver is demand from AI and cloud (Reuters, TrendForce).

The shortage is structural

Per IDC, DRAM output will grow just 16% in 2026 — below market demand. The shortage in consumer and server segments persists into 2027–2030 (IDC · TrendForce).

Data centers are hitting the ceiling

Utilization in major data-center hubs has topped 95%, with new grid connections paused for years. Memory and capacity are scarce at the same time (Data Center Dynamics).

In the press

The memory crisis isn't a forecast — it's a fact

Leading business and industry outlets are documenting the shortage and rising prices of memory and compute capacity across the data-center market.

The memory shortage is covered by

+105–110%

DRAM price growth in Q1 2026 vs Q4 2025

TrendForce

>95%

capacity utilization in major data-center hubs

DCD

+16%

DRAM output growth in 2026 — below demand

IDC

to 2027

memory shortage persists in retail and data centers

IDC

What this means for you

When buying more memory is expensive or impossible, the winner is whoever uses what they already have more efficiently.

gigaRAM solves this in software: inexpensive NVMe flash works like DRAM and replaces up to 50% of expensive memory with no code changes. You expand memory and cut infrastructure cost without waiting for the DRAM market to recover.

The solution

gigaRAM makes flash work like DRAM

gigaRAM embeds a layer below the operating system and attaches inexpensive NVMe flash as a RAM extension. The OS sees 2–4× more RAM — transparently to applications.

01

A layer below the application

gigaRAM runs a layer below the operating system as an extra memory tier. Applications need no changes at all.

02

Flash behaves like DRAM

Inexpensive NVMe flash is attached as a RAM extension. A predictive engine keeps hot data in DRAM.

03

The OS sees more memory

The operating system sees 2–4× more available RAM. Transparent to databases, virtualization and analytics.

−50%
Expensive DRAM

Replaced by managed memory on NVMe — with no code changes.

+5.6%
Redis RPS

Real load test when replacing 50% of RAM.

97.6%
Prediction accuracy

The predictive engine keeps hot pages in DRAM.

Demonstration

Memory efficiency in action

Using a Redis application as an example: gigaRAM frees half of physical memory via NVMe swap, losing only 5% of performance.

Grafana · Memory / Redis
Step 1 · Baseline

Redis: 500 GB physical RAM

Memory usage, GB
Physical DRAM · 500 GB
Throughput
Throughput: 100%p99 latency: +0%
100%
Physical RAM
0%
RAM freed
−0%
Performance

A Redis app keeps its entire working set in expensive physical memory — 500 GB of DRAM at 100% utilization.

Let's talk

We'll show how gigaRAM delivers 2–4× more memory at half the cost — with no infrastructure swap. Let's discuss your workload and run a pilot.

Contact us