shifting boundaries
of computing with
vertical innovation

shifting
boundaries
of computing
with vertical innovation

redefining compute.
boldly.

redefining
compute.
boldly.

AI is everywhere.
But the chips running it?
Hit the memory wall.

Some vision models can run on-chip.
But small or large Language Models ?
They’re too big. Too demanding.

They rely on continuous data transfers
between memory and compute chips
— billions of times per second.

Some vision models can run on-chip.
But small or large Language Models ?
They’re too big. Too demanding.

They rely on continuous data transfers
between memory and compute chips
— billions of times per second.

Issues

LATENCY & bandwidth
Energy waste
SKY-HIGH COSTS
Only in data centers
Data privacy concerns

a new playground
for AI computing.

a new playground
for AI computing.

The increasing demand for
high-performance computing
in Gen AI, Agentic AI, Physical AI
requires semiconductor chip
architectures that ingest massive
amounts of data quickly
and efficiently.

At Vertical Compute, we create a new paradigm on how to build an efficient compute system. Our technology blends vertical memory concepts with nano-magnetism. AI algorithms and data are seamlessly integrated into a chip ; creating ultra-dense, energy-efficient architectures that slash the distance between data and processing.

No more shuttling information.
No more bottlenecks.

At Vertical Compute, we create a new paradigm on how to build an efficient compute system. Our technology blends vertical memory concepts with nano-magnetism. AI algorithms and data are seamlessly integrated into a chip ; creating ultra-dense, energy-efficient architectures that slash the distance between data and processing.

No more shuttling information.
No more bottlenecks.

Benefits

Instant & High performance
Drastic energy savings
Affordable cost structure
Available on device & cloud

vertical by design,
disruptive by nature.

vertical by design,
disruptive by nature.

Vertical Compute breaks this cycle.
We enable vertical columns of data
directly integrated with the logic cores
— on the same chip. Right where datais
needed. Instantly.

Vertical Compute’s technology leverages the 3rd dimension to integrate magnetic bit strings vertically, directly above transistors. This enables larger than DRAM (> Gb/mm2) data density while maintaining ~ns SRAM-like access latency. Direct CMOS integration in the transistor back-end means no data-bus: no bandwidth bottleneck and much lower system power. Combined with high performance transistors, such architecture will become the ultimate efficiency in-memory compute platform capable of LLM inference processing on a single chip.

Vertical Compute’s technology leverages the 3rd dimension to integrate magnetic bit strings vertically, directly above transistors. This enables larger than DRAM (> Gb/mm2) data density while maintaining ~ns SRAM-like access latency. Direct CMOS integration in the transistor back-end means no data-bus: no bandwidth bottleneck and much lower system power. Combined with high performance transistors, such architecture will become the ultimate efficiency in-memory compute platform capable of LLM inference processing on a single chip.

Benefits

GB/MM2
10ns latency
< pj/bit
Unlimited endurance

vertical compute is not just
a technology provider,

it is an enabler of an ecosystem
that redefines computing
for the future.

vertical compute
is not just a
technology provider,

it is an enabler
of an ecosystem
that redefines
computing
for the future.

a trusted partner
in high-performance
computing.
it is designed
to scale with the ambitions
of the AI era.

a trusted partner
in high-performance
computing.
it is
designed to scale
with the ambitions
of the AI era.

By integrating seamlessly into the existing supply chain, our technology not only becomes an enabler of the future for compute, but can also be adaptable to wide needs.

1 —

Enterprises
& innovators

We provide the building blocks for AI-driven businesses, ensuring they can scale without compromise.

We provide the building blocks
for AI-driven businesses, ensuring
they can scale without
compromise.

2 —

Advanced
research institutions

Advanced research
institutions

We collaborate to explore new frontiers in high-performance computing and applied AI.

We collaborate to explore new
frontiers in high-performance
computing and applied AI.

3 —

Semiconductor foundries
& memory chip vendors

We work with leading technology providers to push the boundaries of next-gen memory and compute architectures.

We work with leading technology
providers to push the boundaries
of next-gen memory and compute
architectures.

4 —

AI hardware
& cloud providers

Our innovations power cutting-edge accelerators & optimize data center efficiency.

Our innovations power cutting-
edge accelerators & optimize data
center efficiency.

The VIM™ technology is capable of redefining the memory and logic chip architectures and unlocking new possibilities in the global semiconductor supply chain that were previously impossible.

welcome to the
new playground.

Our technology doesn’t just add power
& and memory density. It unlocks
possibilities — for developers,
researchers, and AI-driven enterprises.
At Vertical Compute, we’re not following
the roadmap. We’re rewriting it.

The future isn’t just faster.
It’s vertical.

Discover our solutions

a unique & strong
differentiator

a unique & strong
differentiator

1

We pioneer a radical
shift
in the way we
store, move and
compute data.

We pioneer a radical shiftin the way we store, move and compute data.

2

Our technology blends
vertical memory
structures
in the back
end of standard
semiconductor
processes.

Our technology blends vertical memory structures in the back end of standard semiconductor processes.

3

Manufacturable by
standard
semiconductor
foundries, vertical
columns of data are
directly connected
to
processing cores.

Manufacturable by standard semiconductor foundries, vertical columns of data are directly connected to processing cores.

4

High density banks
of data can be written
and read by magnetic
forces
, always available
for energy-efficient
computing.

High density banks of data can be written and read by magnetic forces, always available for energy-efficient computing.

Curious about the technical specifics behind our technology?

Curious about the
technical specifics behind
our technology?

Contact Us

Join us
be part of
the computing
revolution

Be part of
the computing
revolution

Vertical Compute isn’t just building
a better chip ; we’re enabling a smarter
ecosystem.
As the trusted partner of AI
architects, tech disruptors and industry
leaders, we power the next era of AI and
data-driven innovation.

Whether you’re scaling models, building
infrastructure or transforming industries,
our solution is built to empower your vision.

Vertical Compute isn’t just building a better chip ; we’re enabling a smarter ecosystem. Whether you’re scaling models, building infrastructure or transforming industries, our solution is built to empower your vision.

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