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Oracle SPARC T8-2 Server Factory Suppliers in China - High-Performance, Secure, Cost-Effective Solutions

The Oracle SPARC T8-2 server is a robust, two-processor system designed to meet the evolving IT demands of organizations with exceptional security and performance, all at a competitive price point. This server is particularly well-suited for a diverse array of enterprise-class workloads, including databases, applications, Java, and middleware, especially in cloud environments. Powered by the SPARC M8 processor and utilizing Oracle's cutting-edge Software in Silicon technology, this system stands out among China suppliers and factory offerings.

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Oracle’s SPARC servers are meticulously co-engineered with Oracle software to deliver unmatched performance, efficiency, and security for enterprise applications, OLTP, and analytics. Offering up to 2x better performance compared to competitor products, Oracle's SPARC servers empower IT organizations to maximize their investments in Java applications and database software, making them a preferred choice for businesses seeking reliable solutions in the competitive Chinese market.

USD 18000

    Product Description

    Software in Silicon technology is a breakthrough in microprocessor and server design, enabling databases and applications to run faster and with unprecedented security and reliability. Now in its second generation, this innovative Software in Silicon design includes Data Analytics Accelerator (DAX) engines designed directly into the SPARC M8 processor silicon to handle SQL primitives, such as those used by Oracle Database In-Memory in Oracle Database 12c. The DAX units can also be leveraged by Java applications operating on streams of data through the use of open APIs. The accelerators operate on data at full memory speeds, taking advantage of the very high memory bandwidth of the processor. This produces extreme acceleration of in-memory queries and analytics operations while processor cores are freed up to do other useful work. In addition, the ability of the DAX units to handle compressed data on the fly means that larger databases can be kept in memory, or that less server memory needs to be configured for a given database size. Lastly, the SPARC M8 processor introduces Oracle Numbers units, which greatly accelerate Oracle Database operations involving floating point data. Consider the result: you can run fast in-memory analytics on your database, using much less memory than the size of your data, without significantly increasing server utilization rates or affecting your OLTP operations.
    The Silicon Secured Memory feature of the SPARC M8 processor provides the capability of detecting and preventing invalid operations on application data, through hardware monitoring of software access to memory. This can stop malware from exploiting software vulnerabilities, such as buffer overflows. The hardware approach of Silicon Secured Memory is much faster than traditional software-based detection tools, meaning that security checks can be done in production without significant impact to performance. In addition, each processor core contains the fastest cryptographic acceleration in the industry, allowing IT organizations to deliver end-to-end data encryption and secure transactions with near-zero performance impact. In summary: you can easily activate data protection and encryption security, by default, without additional hardware investment.

    Key Benefits

    Up to 2x faster performance than competitor systems for Java software, databases, and enterprise applications.

    Extreme acceleration of Oracle Database In-Memory queries, especially for compressed databases.

    Ability to accelerate analytics on OLTP databases and Java applications, enabling real-time insight on transactional data.

    Unique protection of application data from memory attacks or exploits of software vulnerabilities.

    End-to-end encryption of data with near-zero performance impact.

    Easy compliance management of application environments throughout their lifecycles, ensuring the security of cloud infrastructure.

    Near-zero overhead virtualization for deploying more than 100 virtual machines per processor, lowering the cost per virtual machine.

    Advanced design that enables this dual-processor system to outperform competitive four-processor systems, lowering IT cost.

    Frequently Asked Questions

    What is Software in Silicon technology?

    Software in Silicon technology is a breakthrough design in microprocessors and servers that integrates features like Data Analytics Accelerator (DAX) engines directly into the processor silicon. This allows databases and applications to run significantly faster with enhanced security and reliability.

    How does the Data Analytics Accelerator (DAX) improve performance?

    DAX engines handle SQL primitives directly at full memory speeds, utilizing the high memory bandwidth of the processor. This accelerates in-memory queries and analytics operations while freeing up the main processor cores to perform other critical tasks.

    What is Silicon Secured Memory and how does it protect data?

    Silicon Secured Memory is a hardware-based security feature that monitors software access to memory. It detects and prevents invalid operations, such as buffer overflows, stopping malware from exploiting software vulnerabilities without affecting production performance.

    Does the SPARC M8 processor support data encryption?

    Yes. Each processor core features industry-leading cryptographic acceleration, allowing organizations to run end-to-end data encryption and secure transactions with near-zero impact on overall system performance.

    How does this technology optimize memory usage for large databases?

    The DAX units can decompress data on the fly, allowing larger databases to be kept in memory or reducing the amount of physical server memory required for a specific database size.

    What cost benefits does the SPARC M8 processor design offer?

    It provides near-zero overhead virtualization (supporting over 100 VMs per processor) and features an advanced dual-processor design that can outperform competitive four-processor systems, lowering overall IT infrastructure costs.

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