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Showing 1 - 9 of 9 white papers, page 1 of 1.
Composable Systems – The 4th Infrastructure Era - Executive Summary
Understand the difference between Hyperconverged solutions and Cloudistics Composable platform. This executive summary discusses the evolution of infrastructures and how the emergence of superconverged systems will transform the future of IT.
Learn how Ignite goes beyond hyperconverged platforms by delivering a virtualized network and network switch, along with converged all-flash storage, compute, virtualization, and centralized SaaS management into one plug-and-play platform.

The composable infrastructure enables you to:
  • Deliver 5x faster applications than traditional hyperconverged solutions
  • Scale independent network, storage and compute resources for 4x lower costs
  • Eliminate expensive hypervisor costs with our KVM-based hypervisor built-in
The Cloudistics Composable Cloud Platform
Cloudistics delivers the 4th era of IT infrastructures, composable systems, that delivers the agility, scalability and ease of use of the public cloud, with the performance and control of on-premises infrastructure. Learn more from the expert Dr. Jai Menon, IBM Fellow, Dell CTO Emeritus, and Chief Scientist at Cloudistics – on the evolution of infrastructures and how Cloudistics delivers the next generation on-premises cloud.
From hyperconverged infrastructures to the public cloud, IT solutions continue to strive to simplify management and avoid the complexities and headaches of traditional infrastructures. However, infrastructures haven't been able to match the simplicity offered by the public cloud, and the public cloud haven't been able to match the performance of on-premises infrastructures.

Cloudistics delivers the 4th era of IT infrastructures, composable systems, that delivers the agility, scalability and ease of use of the public cloud, with the performance and control of on-premises infrastructure. Learn more from the expert Dr. Jai Menon, IBM Fellow, Dell CTO Emeritus, and Chief Scientist at Cloudistics - on the evolution of infrastructures and how Cloudistics delivers the next generation on-premises cloud.
IT Infrastructure Risk Management
When implementing new IT infrastructure there are always risks. These risks include under-provisioning or over-provisioning, hardware incompatibility, software incompatibility, network issues and outages, migration issues, downtime, disaster recovery, vendor reliability, and unexpected costs. These risks can be inflated when ripping and replacing an entire infrastructure, but that doesn’t have to be the case. Hyperconverged infrastructure solutions like HC3 from Scale Computing can reduce or eve
When implementing new IT infrastructure there are always risks. These risks include under-provisioning or over-provisioning, hardware incompatibility, software incompatibility, network issues and outages, migration issues, downtime, disaster recovery, vendor reliability, and unexpected costs. These risks can be inflated when ripping and replacing an entire infrastructure, but that doesn’t have to be the case. Hyperconverged infrastructure solutions like HC3 from Scale Computing can reduce or even eliminate risks that have become common with traditional virtualization infrastructure.
Hyperconverged Infrastructure: A Brief Introduction
The term hyperconverged infrastructure (HCI) has become an industry buzzword that has been applied to a number of different new computing technologies. The misuse of the term has caused confusion for many IT professionals looking at HCI as an infrastructure solution. In this document we will shed some light on what HCI really means and why it might be the right IT solution for you.
The term hyperconverged infrastructure (HCI) has become an industry buzzword that has been applied to a number of different new computing technologies. The misuse of the term has caused confusion for many IT professionals looking at HCI as an infrastructure solution. In this document we will shed some light on what HCI really means and why it might be the right IT solution for you.
Disaster Recovery Strategies with Scale Computing
Disaster recovery is a concept that asks the question, “How can an organization survive and respond to a wide variety of threats ranging from small hiccups to catastrophic destruction?” The threats to ongoing operations range from human error to malicious attacks to natural disasters. Organizations need to prepare in ways that involve both human and technological response. Technology is an important part of any organization. At Scale Computing, we recognize that in today’s 24/7 marketplace, IT i
Disaster recovery is a concept that asks the question, “How can an organization survive and respond to a wide variety of threats ranging from small hiccups to catastrophic destruction?” The threats to ongoing operations range from human error to malicious attacks to natural disasters. Organizations need to prepare in ways that involve both human and technological response. Technology is an important part of any organization. At Scale Computing, we recognize that in today’s 24/7 marketplace, IT infrastructure must be both resilient and highly available to keep organizations operational.

In our HC3 architecture, keeping in mind our typical simplicity and ease of use, we have built-in a number of disaster recovery capabilities. These allow our users to recover quickly from a variety of disasters that may affect anywhere from a single file to an entire site. Disaster recovery is often planned for and measured in terms of recovery point objective (RPO) and recovery time objective (RTO). HC3 provides features to achieve both RPO and RTO measured in minutes to minimize both downtime and data loss.
How HC3 Lowers the Total Cost of Ownership
When considering a new IT infrastructure solution, the acquisition cost of the hardware and software to standup the infrastructure is only the starting point for cost analysis. It is important to look into the operational costs of deployment, training, licensing, scale out, downtime, and management. All of these considerations contribute to the total cost of ownership (TCO) of the solution.
When considering a new IT infrastructure solution, the acquisition cost of the hardware and software to standup the infrastructure is only the starting point for cost analysis. It is important to look into the operational costs of deployment, training, licensing, scale out, downtime, and management. All of these considerations contribute to the total cost of ownership (TCO) of the solution.

This document will dive into the TCO of the Scale Computing HC3 infrastructure solution and discuss how it compares to traditional architecture models. The combined considerations of different areas of costs will give a broader and more complete picture of how HC3 affects IT costs. With a focus on serving small and midmarket IT, Scale Computing is committed to making virtualization infrastructure both accessible and affordable for any size organization.
HyperCore-Direct: NVMe Optimized Hyperconvergence
Scale Computing’s award winning HC3 solution has long been a leader in the hyperconverged infrastructure space. Now targeting even higher performing workloads, Scale Computing is announcing HyperCore-Direct, the first hyperconverged solution to provide software defined block storage utilizing NVMe over fabrics at near bare-metal performance.
Scale Computing’s award winning HC3 solution has long been a leader in the hyperconverged infrastructure space. Now targeting even higher performing workloads, Scale Computing is announcing HyperCore-Direct, the first hyperconverged solution to provide software defined block storage utilizing NVMe over fabrics at near bare-metal performance. In this whitepaper, we will showcase the performance of a Scale HyperCore-Direct cluster which has been equipped with Intel P3700 NVMe drives, as well as a single-node HyperCore-Direct system with Intel Optane P4800X NVMe drives. Various workloads have been tested using off-the-shelf Linux and Windows virtual machine instances. The results show that HyperCore-Direct’s new NVMe optimized version of SCRIBE, the same software-defined- storage powering every HC3 cluster in production today, is able to offer the lowest latency per IO delivered to virtual machines.
HC3, SCRIBE and HyperCore Theory of Operations
This document is intended to describe the technology, concepts and operating theory behind the Scale Computing HC3 System (Hyper-converged Compute Cluster) and the HyperCore OS that powers it, including the SCRIBE (Scale Computing Reliable Independent Block Engine) storage layer.
This document is intended to describe the technology, concepts and operating theory behind the Scale Computing HC3 System (Hyper-converged Compute Cluster) and the HyperCore OS that powers it, including the SCRIBE (Scale Computing Reliable Independent Block Engine) storage layer.
Information Security with HC3
The security of your information and data is paramount to Scale Computing. In order to be agile in the ever-changing security landscape, all technology platforms must adapt quickly. Threat vectors from new avenues are emerging on a daily basis.
The security of your information and data is paramount to Scale Computing. In order to be agile in the ever-changing security landscape, all technology platforms must adapt quickly. Threat vectors from new avenues are emerging on a daily basis.

Our culture has always been about having an exceptionally efficient and focused engineering team. A tight-knit, highly skilled team of engineers and developers cuts back on the red tape and delay that may be present in other organizations and keeps the focus on what matters in this ever-changing and always demanding landscape: innovation, stability, and security for the customer. In keeping with this culture, we have built the HC3 appliance using our own proprietary software in combination with common building blocks of well-tested open source technologies.