Great salmon everywhere

Great salmon everywhere

Scaling high-tech salmon production globally through AI, simulations, and real-world systems.

Scaling high-tech salmon production globally through AI, simulations, and real-world systems.

BACKED BY GLOBAL BRANDS AND LEADING AQUACULTURE LABS

BACKED BY GLOBAL BRANDS AND LEADING AQUACULTURE LABS

THE PROBLEM

$6B burned anually

Commercial fishing is broken. They rely on century-old methods that are uncontrollable, environmentally taxing, and prone to massive biological failure. The result is billions in annual losses and inconsistent product quality.

THE SOLUTION

Harvest over hunt

We treat salmon production as a precision engineering problem. By combining biological data with automated infrastructure, we move away from "hunting" and toward a controlled, scalable production model that ensures high-quality fish everywhere.

The next generation of craftsmanship for Aquaculture

The Physical Farm

We operate our own scaled-down RAS. This is our living laboratory. We use it to stress-test designs, identify failure points in real time, and validate every solution before it enters the production line.

The Physical Farm

We operate our own scaled-down RAS. This is our living laboratory. We use it to stress-test designs, identify failure points in real time, and validate every solution before it enters the production line.

The Intelligence Layer

Our AI models translate raw data into operational autonomy. We use these models to manage growth cycles, predict biological stressors, and automate the daily management of the system.

The Intelligence Layer

Our AI models translate raw data into operational autonomy. We use these models to manage growth cycles, predict biological stressors, and automate the daily management of the system.

The Simulation

We use simulations to model biological outcomes and stress-test our AI. It allows us to iterate on solutions and train our models against years of "what-if" scenarios before we ever touch a physical valve.

The Simulation

We use simulations to model biological outcomes and stress-test our AI. It allows us to iterate on solutions and train our models against years of "what-if" scenarios before we ever touch a physical valve.

01

Observe

We monitor everything. By tracking every biological and environmental variable, we gain total visibility into the life of the fish.

02

Discover

We identify the flaws, inefficiencies, and hidden patterns that legacy farming misses. This is how we turn raw data into a clear path for improvement.

03

Engineer

We build the solutions. By controlling the entire system we make the production of the world’s best salmon a predictable, efficient reality.

01

01

Observe

Observe

We monitor everything. By tracking every biological and environmental variable, we gain total visibility into the life of the fish.

We monitor everything. By tracking every biological and environmental variable, we gain total visibility into the life of the fish.

02

02

Discover

Discover

We identify the flaws, inefficiencies, and hidden patterns that legacy farming misses. This is how we turn raw data into a clear path for improvement.

We identify the flaws, inefficiencies, and hidden patterns that legacy farming misses. This is how we turn raw data into a clear path for improvement.

03

03

Engineer

Engineer

We build the solutions. By controlling the entire system we make the production of the world’s best salmon a predictable, efficient reality.

We build the solutions. By controlling the entire system we make the production of the world’s best salmon a predictable, efficient reality.

Contact Us

This is early. The lab is running, and the first systems are being tested. If you are someone who thinks aquaculture needs a change, we want to hear from you.

EMAIL

info@zeila.com

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