CLEAR
The CLEAR™ Cryptosystem is an encryption software development kit (SDK) validated by FIPS-140-3, specifically created to safeguard files, streaming media, databases, and network communications through innovative and programmable encryption technology. It seamlessly integrates with all contemporary computing systems, offering an effective and straightforward solution for embedding advanced encryption into current security infrastructures. With its Post-Quantum Cryptography (PQC) capabilities, CLEAR™ ensures robust defense against future cybersecurity challenges, allowing you to secure your data with the most powerful encryption techniques available. This system not only enhances data protection but also allows for swift access and communication across various platforms.
Key Features:
• PQC Encryption Strength (512bit - 10,240bit)
• Ultra Low-Latency Streaming (< 11µs / Packet)
• Hyperkey™ Technology with embedded ACL
• Multi-Factor / Bio-Metric Symmetric Keys
• Plug-N-Play Entropy - CSRNG, QRNG, HRNG
Benefits:
• Pass cybersecurity audits with best-in-class tools
• Share data securely via Sharepoint, Dropbox, and similar services
• Protect legacy hardware and older network systems
• Extend security to files stored in third-party platforms
• Ensure lasting protection for long-term data archival needs, making it a comprehensive choice for organizations looking to the future.
Learn more
JS7 JobScheduler
JS7 JobScheduler is an open-source workload automation platform engineered for both high performance and durability. It adheres to cutting-edge security protocols, enabling limitless capacity for executing jobs and workflows in parallel. Additionally, JS7 facilitates cross-platform job execution and managed file transfers while supporting intricate dependencies without requiring any programming skills. The JS7 REST-API streamlines automation for inventory management and job oversight, enhancing operational efficiency. Capable of managing thousands of agents simultaneously across diverse platforms, JS7 truly excels in its versatility.
Platforms supported by JS7 range from cloud environments like Docker®, OpenShift®, and Kubernetes® to traditional on-premises setups, accommodating systems such as Windows®, Linux®, AIX®, Solaris®, and macOS®. Moreover, it seamlessly integrates hybrid cloud and on-premises functionalities, making it adaptable to various organizational needs.
The user interface of JS7 features a contemporary GUI that embraces a no-code methodology for managing inventory, monitoring, and controlling operations through web browsers. It provides near-real-time updates, ensuring immediate visibility into status changes and job log outputs. With multi-client support and role-based access management, users can confidently navigate the system, which also includes OIDC authentication and LDAP integration for enhanced security.
In terms of high availability, JS7 guarantees redundancy and resilience through its asynchronous architecture and self-managing agents, while the clustering of all JS7 products enables automatic failover and manual switch-over capabilities, ensuring uninterrupted service. This comprehensive approach positions JS7 as a robust solution for organizations seeking dependable workload automation.
Learn more
IBM Power Servers
IBM Power® empowers organizations to quickly respond to changing business needs, protect their data across on-premises and cloud settings, and improve automation and insights while maintaining dependable sustainability. Its architecture supports the modernization of both applications and infrastructure, providing a hybrid cloud experience that is crucial for business agility. The IBM Power S1014, which is a 1-socket, 4U Power10 server, is specifically designed for critical workloads on platforms such as AIX, IBM I, or Linux. On the other hand, the IBM Power S1024, featuring a 2-socket, 4U Power10 configuration, operates under a pay-as-you-go model, facilitating resource sharing across systems. Advanced memory encryption at the processor level guarantees robust data security, while outstanding reliability and availability reduce the risk of downtime. These innovative solutions are crafted to enable businesses to not only survive but also excel in a competitive environment, ensuring they remain at the forefront of their industries. Furthermore, with a focus on flexibility and scalability, organizations can efficiently manage their growth and adapt to future challenges without significant investments in new infrastructure.
Learn more
Intel Server System D50DNP Family
The capability to achieve outstanding performance and innovation in high-performance computing (HPC) and artificial intelligence (AI) workloads has become a reality. If you are looking to elevate your HPC operations, the Intel® Server D50DNP Family stands out as the ideal solution. Featuring either the 4th Gen Intel® Xeon® Scalable processors or the Intel® Xeon® CPU Max Series, this server family offers remarkable computational power, enhanced AI features, and integrated in-memory analytics acceleration within the processor, all while delivering superior I/O throughput compared to previous server generations. Notably, it introduces a groundbreaking memory bandwidth of 1TB/sec with on-chip High Bandwidth Memory (HBM2e), which is tailored for rigorous memory-intensive applications. Additionally, the Intel® Server D50DNP Family is designed for flexible deployment and can be tailored to meet your dynamic needs. Its compute, management, and accelerator modules allow for seamless scaling of cluster resources to align with fluctuating workload requirements. The innovative AI and in-memory analytics accelerators included in the processor are specifically engineered to significantly enhance HPC workloads, ensuring that your systems are always at the cutting edge of technology. By adopting this platform, you not only address your current computing requirements but also position yourself for future advancements in the field. In essence, this server family equips you to tackle both today’s challenges and tomorrow's opportunities in the realm of computing.
Learn more