Intel Xeon Gold (4th Gen) 6430 Dotriaconta-core (32 Core) 2.10 GHz Processor

IntelSKU: 7130830

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Sale price$1,858.55

Description

Intel Xeon Gold (4th Gen) 6430 Dotriaconta-core (32 Core) 2.10 GHz Processor

The Intel Xeon Gold 6430, a 4th Gen Xeon Gold processor, is built for the most demanding enterprise workloads. With a formidable 32-core design and a steady 2.10 GHz base clock, this processor delivers sustained performance across virtualization, in-database analytics, and large-scale cloud services. It is engineered to accelerate data center operations with enhanced reliability, robust security, and the ability to scale across four sockets, making it a top choice for mission-critical servers and intelligent workloads. Optimized for higher memory speeds and expanded memory capacity, the 6430 helps remove bottlenecks and accelerate modern, data-driven applications without compromising reliability or security. Whether you’re architecting a private cloud, supporting virtual machines, or building a high-performance database cluster, this processor is designed to meet and exceed the standards of enterprise computing.

  • 32-core compute powerhouse enabling extensive parallelism for virtualization, databases, and AI-like workloads, delivering faster multi-threaded performance across dense virtualized environments.
  • 2.10 GHz base frequency combined with intelligent Turbo Boosting to maximize throughput when workloads demand higher clock speeds, while maintaining energy efficiency during lighter tasks.
  • Support for higher memory speeds and enhanced memory capacity reduces latency in memory-intensive operations, accelerating real-time analytics, in-memory databases, and large-scale data processing.
  • Four-socket scalability enables expansive server farms and multi-processor configurations, giving data centers the flexibility to grow without migrating to entirely new platforms.
  • Hardware-enhanced security and advanced reliability features protect sensitive workloads and improve uptime, helping to safeguard enterprise data and streamline compliance in complex environments.

Technical Details of Intel Xeon Gold 6430

  • Cores: 32 — a dense compute engine designed for parallel workloads, virtualization hosts, and data-centric applications.
  • Base Clock: 2.10 GHz — steady performance across core workloads with room to scale via Turbo Boost in burst scenarios.
  • Memory Support: Higher memory speeds and increased capacity — engineered to remove bandwidth bottlenecks in memory-intensive tasks and analytics pipelines.
  • Scalability: Four-socket capable — ideal for large enterprise servers and scalable data center deployments that require multiple CPUs in a single chassis.
  • Reliability & Security: Hardware-enhanced security features and enterprise-grade reliability designed to protect workloads and maintain service levels in demanding environments.

how to install Intel Xeon Gold 6430

  • Before you begin, verify motherboard compatibility for a 4th Gen Xeon Gold processor and ensure the server board supports four-socket configurations if you plan to deploy a multi-processor system.
  • Power down the system completely, disconnect power cables, and discharge static electricity to protect delicate processor contacts and motherboard sockets.
  • Open the processor socket cover, align the notches or keys with the socket, and place the CPU into the socket with even pressure to avoid pin or contact damage.
  • Engage the locking mechanism per the motherboard manual, ensuring the processor is seated securely and there is no lateral movement.
  • Apply a thin, even layer of compatible thermal interface material if your cooler requires it, then install the cooling solution per the cooler’s instructions to ensure optimal heat transfer.
  • Install memory modules in the recommended slots and configure memory profiles in the BIOS (e.g., XMP/EOCP) if applicable to your platform to achieve the intended memory speeds.
  • Update the motherboard BIOS to the latest version prior to full deployment to maximize compatibility with the 4th Gen Xeon Gold family and to unlock any performance or security improvements.
  • Power on, enter the BIOS, and verify CPU recognition, memory detection, and thermal monitoring. Run a short POST test and initial benchmarks to confirm proper operation before production use.

Frequently asked questions

  • Q: What workloads is the Intel Xeon Gold 6430 best suited for? A: It excels in virtualization hosts, large-scale databases, in-memory analytics, AI inference tasks, cloud service platforms, and other memory- and compute-intensive workloads that require consistent performance and reliability.
  • Q: How does four-socket scalability benefit a data center? A: Four-socket scalability allows you to expand compute capacity within a single chassis, reducing the need for separate servers, simplifying management, and enabling larger, more flexible clusters for enterprise workloads.
  • Q: Does this processor support ECC memory? A: Yes. Xeon processors are designed to work with ECC memory, delivering higher reliability and error correction capabilities crucial for mission-critical systems.
  • Q: What memory configurations are recommended? A: Use supported memory modules at the highest reliable speeds your platform allows, populate the recommended slots, and enable appropriate memory profiles in BIOS to maximize bandwidth and capacity for heavy workloads.
  • Q: How can I maximize performance while maintaining reliability? A: Pair this processor with a compatible, enterprise-grade motherboard, ensure BIOS is up to date, use quality cooling, monitor temperatures, and enable features such as Turbo Boost where appropriate while respecting warranty terms.
  • Q: Is this processor suitable for virtualization-heavy environments? A: Absolutely. The 32 cores and large cache, combined with memory bandwidth improvements, make it well-suited for running multiple virtual machines, virtual desktop infrastructure, and containerized workloads efficiently.
  • Q: What are the security advantages of Xeon Gold 6430? A: Hardware-enhanced security features protect against common attack surfaces at the firmware and CPU level, providing a more secure foundation for enterprise applications and data workloads.

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