Users

Run workloads on distributed compute infrastructure.

Access growing network capacity with transparent execution and real visibility.

ZeroMine gives users access to distributed compute capacity for AI, rendering, container workloads, and batch execution — with transparent usage tracking, real-time job visibility, and expanding infrastructure built beyond traditional data centres.

Free in testing Distributed compute Growing capacity Real-time visibility
Testing Phase Open to approved users
Platform access Free
Marketplace pricing Later
Current platform focus
Workload testing Active
Capacity growth Expanding
User onboarding In waves
Why ZeroMine

Compute built on a different infrastructure model

ZeroMine connects compute demand to new sources of energy-backed infrastructure, expanding capacity beyond traditional data centres and preparing for broader marketplace access.

Free platform access now

Approved users can access the platform during the current testing phase while compute classes, workload support, and pricing models continue to mature.

New compute supply

ZeroMine unlocks additional capacity from distributed energy-backed systems, creating a new path for scalable compute growth.

Transparent execution

Track workloads, usage, and job flow through a more visible and operationally understandable compute environment.

How It Works

Request access. Submit workloads. Grow with the network.

ZeroMine is building a simple path from approved access to distributed compute execution.

01

Request access

Apply for early access and receive platform credit to begin exploring the network.

02

Submit workloads

Bring AI, rendering, container, or batch jobs into the platform during testing.

03

Track execution

Monitor progress, usage, and workload activity through a clear dashboard flow.

04

Scale over time

As network capacity and marketplace classes expand, broader workload access follows.

Workload Categories

Built for the workloads the platform is growing toward

ZeroMine is shaping the platform around real compute demand across current and future categories.

AI & GPU Workloads

Training, inference, fine-tuning, and GPU-intensive compute tasks.

Rendering & Media

Rendering, visual pipelines, and future image, audio, and video workload support.

Batch, Data & Future Robotics

Containerised jobs, data-heavy pipelines, and future robotics and simulation categories.

Marketplace Direction

Free now. Market pricing later.

During the current testing phase, approved users can access the platform without compute charges. Marketplace pricing will be introduced later as capacity, workload categories, and system classes mature.

This gives users a practical way to explore the platform now while helping shape how the marketplace evolves.

What this means today

  • Free platform access for approved users
  • Marketplace classes visible as the network grows
  • Pricing introduced later, not forced too early
  • Better alignment between supply, demand, and actual usage
User Dashboard

Track jobs and usage in real time

Monitor job execution, workload state, and platform activity through a clean operational dashboard designed for visibility and control.

  • Live job and queue visibility
  • Usage tracking and workload monitoring
  • Simple execution flow
  • Growing access to distributed compute
ZeroMine user dashboard preview
Network Advantage

Infrastructure that scales differently

Unlike centralised data centres, ZeroMine expands by deploying compute where energy is available — enabling broader distribution and growing capacity over time.

As the network grows, users benefit from increased availability, improved workload matching, and future regional execution opportunities.

What this unlocks

  • Growing compute availability
  • Reduced infrastructure bottlenecks
  • Improved workload distribution
  • Future regional execution advantages
Start Running Jobs

Access the platform during testing

Join early access to explore distributed compute infrastructure now while the marketplace, workload categories, and network capacity continue to evolve.