
If your cloud bill has become harder to predict than your revenue, OpenMetal is worth a look.
We provide hosted private cloud and dedicated bare metal infrastructure as a service. Our private cloud is built on OpenStack and Ceph, with fully managed hardware, and priced on a flat-rate model that doesn't punish you for growth. No per-resource metering, no egress surprises, no bill that requires a spreadsheet to decode.
Our private cloud platform gives organizations dedicated hardware and full OpenStack access without the overhead of building or maintaining their own infrastructure. Deploy a private cloud in under an hour, integrate with your existing tools, and hand the operational burden to us.
For teams that need raw compute power without virtualization overhead, our bare metal servers offer dedicated hardware with the same transparent pricing and fast deployment. Run standalone or connect directly to an OpenMetal private cloud for a flexible hybrid setup.
OpenMetal is a practical choice for organizations running compute-intensive or latency-sensitive workloads including blockchain validators, AI and machine learning pipelines, high-frequency applications, and regulated industries where data residency and compliance requirements rule out shared public cloud environments.
If you're managing infrastructure costs at scale, moving workloads off a hyperscaler, or simply need dedicated hardware that performs consistently, OpenMetal gives you a straightforward path to get there without building everything yourself.
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Servers.com by Nexcess specializes in hybrid bare metal cloud infrastructure that combines dedicated server performance with the flexibility of modern cloud environments. The company offers multiple hosting solutions, including Scalable Bare Metal, Enterprise Bare Metal, AI Compute, and Managed Kubernetes, allowing businesses to choose the resources that best fit their workloads. Its platform is designed to simplify infrastructure management while delivering the reliability required for business-critical applications. With access to a globally distributed network of data centers, organizations can improve application delivery and reduce latency for customers in key markets worldwide. Servers.com supports a broad range of industries, including gaming, fintech, adtech, streaming, iGaming, SaaS, and Web3. The infrastructure is optimized to accommodate both predictable workloads and sudden increases in demand. Dedicated bare metal resources provide enhanced performance, security, and workload isolation compared to shared environments. GPU-powered computing options enable organizations to support artificial intelligence and machine learning initiatives with greater efficiency. Managed Kubernetes services help businesses deploy and manage containerized applications without the complexity of maintaining underlying infrastructure. High-capacity networking and direct carrier connectivity contribute to consistent application performance and availability. By combining scalability, customization, and global reach, Servers.com helps organizations build infrastructure capable of supporting long-term growth and evolving technical requirements.
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Cruz Software Lifecycle Orchestrator
Managing software releases across various locations can be challenging, costly, and fraught with risks. The Cruz Software Lifecycle Orchestrator streamlines this process by integrating lifecycle management for bare metal, operating systems, Physical Network Functions (PNF), Virtual Network Functions (VNF), and virtual machines. This tool allows for the deployment of essential operating software and BIOS across both physical and virtual environments, while enabling update management through zero-touch methods, manual interventions, scheduled tasks, and automated upgrades. Additionally, it facilitates the oversight of VNF/Network Service (NS) libraries and deployment records, along with Virtual Infrastructure Managers. Utilizing comprehensive libraries of network device configuration procedures, compliance checks, and backup and recovery processes, users can effectively manage both physical and virtual network functions. A central verified repository of software images for all branch and remote site software instances helps maintain configuration uniformity. Furthermore, the creation of target groups allows for efficient bulk resource updates, while the system also streamlines resource preparation and restoration processes for site updates. This holistic approach to lifecycle management significantly mitigates the complexities often associated with software deployment and maintenance.
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Axe Compute
Axe Compute provides a robust bare-metal GPU infrastructure designed specifically for enterprise-level AI and machine learning needs, ensuring widespread global reach, dedicated clusters, and dependable accessibility. In approximately 48 hours, teams can obtain dedicated GPU clusters from a network spanning over 200 locations, enabling them to choose from various regions, GPU types, fabrics, interconnects, and topologies. This solution effectively addresses the frequently underestimated challenges of scaling AI, such as provisioning delays, cloud availability limitations, quota restrictions, rigid economic structures from providers, expenses related to data transfer, and performance issues that arise from virtualization. By offering unadulterated bare-metal access without virtualization overhead or interference from other users, Axe empowers teams to proficiently manage LLM training, inference, diffusion, fine-tuning, enterprise deployment, and a multitude of other AI-driven activities with greater control. Furthermore, its geographically distributed GPU infrastructure guarantees low-latency access that is in close proximity to both users and data, significantly reducing the need to shift data to centralized cloud locations, which in turn optimizes operations for teams engaged in intricate AI projects. This comprehensive approach not only boosts performance but also enhances the overall efficiency of AI workflows, making Axe Compute a valuable partner in the evolution of artificial intelligence.
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