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Modern Storage Meets Cyber Resilience: The Rubrik and Pure Storage Solution Architecture for Unstructured Data

Pure Storage

Pure Storage and Rubrik are expanding their partnership to offer a holistic and secure reference architecture that tackles the challenges of managing and securing unstructured data at scale. It ensures high availability with advanced data recovery and protection features, preventing performance bottlenecks.

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Considerations for Disaster Recovery – Part 2: Compute

Zerto

Being able to choose between different compute architectures, such as Intel and AMD, is essential for maintaining flexibility in your DR strategy. Invest in Reliability : Opt for compute resources that offer high availability and redundancy to minimize the risk of downtime during a disaster.

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FlashBlade//EXA Has Arrived – The Data Storage Platform to Transform Large-scale AI and HPC

Pure Storage

Traditional high-performance storage architectures have been built on parallel file systems and were designed and optimized for traditional, dedicated high-performance computing (HPC) environments. Traditional architectures, built for sequential access, cant keep up.

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Unlocking the Secrets of Uninterrupted IT Operations: Demystifying High Availability and Disaster Recovery

Zerto

In the challenging landscape of keeping your IT operations online all the time, understanding the contrasting methodologies of high availability (HA) and disaster recovery (DR) is paramount. What Is High Availability? While this architecture can ensure that the application is always online, it comes at a cost.

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Journey to Adopt Cloud-Native Architecture Series: #3 – Improved Resilience and Standardized Observability

AWS Disaster Recovery

In this blog, we talk about architecture patterns to improve system resiliency, why observability matters, and how to build a holistic observability solution. Due to its monolithic architecture, the application didn’t scale quickly with sudden increases in traffic because of its high bootstrap time. Predictive scaling for EC2.

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Disaster Recovery (DR) Architecture on AWS, Part IV: Multi-site Active/Active

AWS Disaster Recovery

The architecture in Figure 2 shows you how to use AWS Regions as your active sites, creating a multi-Region active/active architecture. Each Region hosts a highly available, multi- Availability Zone (AZ) workload stack. I use Amazon DynamoDB for the example architecture in Figure 2. DR strategies.

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Disaster Recovery (DR) Architecture on AWS, Part II: Backup and Restore with Rapid Recovery

AWS Disaster Recovery

Every AWS Region consists of multiple Availability Zones (AZs). A Multi-AZ strategy, which replicates resources across AZs, is necessary to provide high availability (HA). In Figure 5, we show a possible architecture for detecting and responding to events that impact your workload availability. Related information.