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Asearis

Asearis provides a distributed cloud platform that aggregates idle compute and storage capacity from existing devices, delivering faster, more reliable services than traditional centralized data centers. By leveraging surplus hardware, the platform reduces energy consumption, lowers carbon emissions, and offers scalable APIs for enterprises and developers seeking sustainable, high‑performance cloud resources.

San Francisco, United StatesFounded 2022101K+ followers
Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Traditional cloud infrastructure relies on large, energy‑intensive data centers, leading to high operational costs, significant carbon emissions, and limited accessibility in regions with scarce infrastructure.

Solution

Asearis offers a distributed cloud platform that aggregates unused compute and storage capacity from a wide range of existing devices, creating a decentralized network of resources. By orchestrating this latent capacity, the platform delivers compute services that are faster and more reliable than conventional centralized clouds while consuming less energy. The architecture is designed for sustainability, reusing existing hardware to lower the need for new data‑center construction and reducing overall carbon footprints. Asearis also provides APIs and tooling that enable developers and organizations to deploy applications on this network without managing physical infrastructure. The result is a cloud service that expands digital access, cuts electricity and water usage, and supports environmentally conscious workloads.

Target Audience

Primary customers are enterprises, SaaS providers, and nonprofit organizations that require scalable compute resources while prioritizing cost efficiency, performance, and environmental impact, especially those operating in regions with limited data‑center infrastructure.

Features

  • Utilizes idle processing power and storage from existing devices, turning surplus capacity into usable cloud resources
  • Decentralized architecture reduces latency and improves reliability compared to single‑site data centers
  • Built‑in sustainability metrics track electricity, water savings, and CO₂ emission reductions for each workload
  • Scalable API layer allows seamless integration of compute, storage, and networking services into existing applications
  • Dynamic workload placement optimizes performance while minimizing energy consumption across the distributed network
  • Supports edge‑focused deployments, improving access to cloud services in developing regions and remote locations
This profile is AI-generated and may contain inaccuracies.