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Sustainability

Performance without the footprint.

Efficient AMD Epyc silicon, hydropowered data centers, and a hardware lifecycle that favors reuse over replace.

Energy source
100% hydropowered
Silicon
AMD Epyc
Lifecycle
Extended 3-5 yrs
Policy
Reuse first
Our approach

Responsible by design, not by marketing.

Sustainability isn't a buzzword here — it's baked into how we choose hardware and run the fleet.

Energy-efficient silicon

AMD Epyc processors deliver more compute per watt. Fewer boxes, less heat, less power.

Extended lifecycles

Enterprise-grade refurbished hardware gets a second life in the fleet — with the same SLAs.

Hydropowered footprint

Our Norwegian facilities run on clean hydroelectric power. The grid does most of the heavy lifting.

AMD Epyc

Efficiency benefits, measured.

Our choice of silicon is practical, not aesthetic. Here is what it actually gets us.

Energy Efficiency

AMD Epyc processors deliver up to 40% better energy efficiency compared to comparable alternatives, reducing power consumption while maintaining performance.

  • Superior performance-per-watt
  • Intelligent power management
  • Lower datacenter draw

Density Optimization

Higher core counts mean fewer physical servers required, reducing overall datacenter footprint and associated environmental impact.

  • More workloads per rack
  • Reduced hardware count
  • Smaller physical footprint

Thermal Management

Advanced thermal design reduces cooling requirements, further decreasing energy consumption in our data centers.

  • Lower cooling demand
  • Stable under load
  • Optimized PUE
Refurbished hardware

Reuse before replace.

Enterprise-grade components get a second life — tested, certified, and deployed with the same reliability guarantees.

Extended Lifecycle

By refurbishing and redeploying enterprise-grade hardware, we extend equipment lifecycle by 3-5 years beyond typical industry standards.

Reduced E-Waste

Our refurbishment program prevents hundreds of server components from entering the waste stream annually.

Resource Conservation

Reusing hardware conserves the raw materials and energy that would otherwise be required for manufacturing new equipment.

Our initiatives

Programs that actually move the number.

A short list of programs we run — not slides, actual work.

Hardware Lifecycle Management

Our comprehensive approach to extending hardware lifecycles through strategic refurbishment and component reuse.

  • Professional refurbishment of enterprise-grade server equipment
  • Component-level repair and reuse where possible
  • Responsible recycling partnerships for end-of-life components
  • Detailed tracking of environmental impact metrics

Energy Optimization

Strategic initiatives to minimize energy consumption across our infrastructure and operations.

  • Deployment of AMD Epyc processors for superior performance-per-watt
  • Dynamic resource allocation to maximize efficiency
  • Advanced cooling technologies to reduce HVAC energy requirements
  • Continuous monitoring and optimization of PUE

Carbon Footprint Reduction

Ongoing efforts to measure, report, and reduce our overall carbon footprint.

  • Annual carbon footprint assessment and reporting
  • Strategic partnerships with renewable energy providers
  • Implementation of carbon offset programs
  • Remote-first work policy to reduce commuting emissions
Impact metrics

Numbers, not narratives.

Where we are today. Updated as the fleet grows.

35%

Power reduction

5+ tons

E-waste diverted

3-5 yrs

Hardware lifecycle

1.2

Primary DC PUE

FAQ

Common questions, answered.

Frequently Asked Questions

Common questions

Find answers to your most common questions here.

Sustainable technology without compromise.

Experience how our environmentally responsible approach delivers both exceptional performance and value.