这些处理器可以用在单插槽或双插槽配置中,并采用 32 纳米(5600 系列)和 45 纳米(5500 系列)处理技术。此平台提供最适用于计算密集型通信应用的性能、内存、I/O 功能以及散热框架。
- 英特尔® 快速通道互联技术: 为数据密集型应用提供改进的带宽。
- 英特尔® 高级加密标准新指令: 提供更快,更高效的加密性能(仅限 5600 系列)。
- 集成功率门限: 允许将闲置内核的耗电量降至接近零。
- 灵活的虚拟化: 处理器对硬件协助虚拟化的支持以及芯片组针对直接 I/O(VT-d)的英特尔® 虚拟化技术。
交互式结构图

应用注释
| 序号 | 描述 | |
|---|---|---|
| 1 | White Paper: Interfacing I²C Devices to Intel's SMBus Controller | White Paper: Interfacing I²C Devices to Intel's SMBus Controller |
| 2 | White Paper: Accessing PCI Express* Registers When Using Intel® Chipsets | White Paper: Accessing PCI Express* Registers When Using Intel® Chipsets |
| 3 | White Paper: Choosing the Right Storage Solution for Your Embedded Application | White Paper: Choosing the Right Storage Solution for Your Embedded Application |
| 4 | White Paper: Consolidating Communications and Networking Workloads onto One Architecture | White Paper: Consolidating Communications and Networking Workloads onto One Architecture |
| 5 | White Paper: DDR Signal Integrity (SI) Simulation Process for Intel® Architecture Platforms | White Paper: DDR Signal Integrity (SI) Simulation Process for Intel® Architecture Platforms |
| 6 | White Paper: Debugging Machine Check Exceptions on Embedded IA Platforms | White Paper: Debugging Machine Check Exceptions on Embedded IA Platforms |
| 7 | White Paper: Designing Real-Time Solutions on Embedded Intel® Architecture Processors | White Paper: Designing Real-Time Solutions on Embedded Intel® Architecture Processors |
| 8 | White Paper: Designing Systems without a Suspend Supply | White Paper: Designing Systems without a Suspend Supply |
| 9 | White Paper: Embedded Intel® Architecture and High Speed Digital Design Principles | White Paper: Embedded Intel® Architecture and High Speed Digital Design Principles |
| 10 | White Paper: First the Tick, Now the Tock: Next Generation Intel® Microarchitecture (Nehalem) | White Paper: First the Tick, Now the Tock: Next Generation Intel® Microarchitecture (Nehalem) |
| 11 | White Paper: High Performance Storage Encryption on Intel® Architecture Processors | White Paper: High Performance Storage Encryption on Intel® Architecture Processors |
| 12 | White Paper: Improving OpenSSL* Performance | White Paper: Improving OpenSSL* Performance |
| 13 | White Paper: JTAG 101 | White Paper: JTAG 101 |
| 14 | White Paper: PCB Stackup Overview for Intel® Architecture Platforms—Layout and Signal Integrity Cons | White Paper: PCB Stackup Overview for Intel® Architecture Platforms—Layout and Signal Integrity Considerations |
| 15 | White Paper: Platform Software Optimization for Multi-Core Architecture Processors | White Paper: Platform Software Optimization for Multi-Core Architecture Processors |
| 16 | White Paper: Platform-Level error Handling Strategies for Intel® Systems | White Paper: Platform-Level error Handling Strategies for Intel® Systems |
| 17 | White Paper: Reducing Interrupt Latency in Embedded Systems through Message Signaled Interrupts | White Paper: Reducing Interrupt Latency in Embedded Systems through Message Signaled Interrupts |
| 18 | White Paper: Signal Integrity Pitfalls When You Deviate from Intel Design Guidelines | White Paper: Signal Integrity Pitfalls When You Deviate from Intel Design Guidelines |
| 19 | White Paper: The New Intel® Xeon® Processor 5500 Series Catapults Processor Performance, Scalability | White Paper: The New Intel® Xeon® Processor 5500 Series Catapults Processor Performance, Scalability, and Efficiency–A Huge Win for the Storage Industry |
| 20 | White Paper: Using Intel® AES New Instructions and PCLMULQDQ to Significantly Improve IPSec Performa | White Paper: Using Intel® AES New Instructions and PCLMULQDQ to Significantly Improve IPSec Performance on Linux* |
| 21 | Application Note: Designing Embedded Systems for Testability | Application Note: Designing Embedded Systems for Testability |
| 22 | Case Study: Migrating the Ericsson* Operations Support System: RISC or Intel® based Servers | Case Study: Migrating the Ericsson* Operations Support System: RISC or Intel® based Servers |
| 23 | Case Study: Putting VoIP Calls to the Test | Case Study: Putting VoIP Calls to the Test |
| 24 | Application Note: Data Plane Packet Processing on Embedded Intel® Architecture Platforms | Application Note: Data Plane Packet Processing on Embedded Intel® Architecture Platforms |
| 25 | Solution Brief: Integrating Services at the Edge: Test Results Show that One Intel® Xeon® Processor | Solution Brief: Integrating Services at the Edge: Test Results Show that One Intel® Xeon® Processor 5500 Series with Quad-core technology can forward traffic at 20 Gbps |
| 26 | Solution Brief: The Right Computing Platform for Real-World Testing | Solution Brief: The Right Computing Platform for Real-World Testing |
散热和机械
| 序号 | 描述 | |
|---|---|---|
| 1 | Thermal & Mechanical Design Guidelines: Intel® 5520 and Intel® 5500 Chipsets | Thermal & Mechanical Design Guidelines: Intel® 5520 and Intel® 5500 Chipsets |
性能指标评测
| 序号 | 描述 | |
|---|---|---|
| 1 | White Paper: Layer 3 Forwarding and IPSec Measurement and Optimization | White Paper: Layer 3 Forwarding and IPSec Measurement and Optimization |
产品简介
| 序号 | 描述 | |
|---|---|---|
| 1 | 面向嵌入式计算的英特尔® 至强® 5600/5500 系列平台 | 面向嵌入式计算的英特尔® 至强® 5600/5500 系列平台 |
| 2 | Product Brief: Intel® 82576 Gigabit Ethernet Controller | Product Brief: Intel® 82576 Gigabit Ethernet Controller |
| 3 | Product Brief: Intel® 82599 10 Gigabit Ethernet Controller (Network Connectivity) | Product Brief: Intel® 82599 10 Gigabit Ethernet Controller (Network Connectivity) |
设计计算器和清单
| 序号 | 描述 | |
|---|---|---|
| 1 | Design Guide: Voltage Regulator Module (VRM) and Enterprise Voltage Regulator-Down (EVRD) 11.1 | Design Guide: Voltage Regulator Module (VRM) and Enterprise Voltage Regulator-Down (EVRD) 11.1 |
数据表和规格更新
| 序号 | 描述 | |
|---|---|---|
| 1 | Datasheet: Intel® 5520 Chipset and Intel® 5500 Chipset | Datasheet: Intel® 5520 Chipset and Intel® 5500 Chipset |
| 2 | Datasheet: Intel® 82576 Gigabit Ethernet (GbE) Controller | Datasheet: Intel® 82576 Gigabit Ethernet (GbE) Controller |
| 3 | Datasheet: Intel® 82599 10 Gigabit Ethernet (GbE) Controller | Datasheet: Intel® 82599 10 Gigabit Ethernet (GbE) Controller |
| 4 | Datasheet: Intel® I/O Controller Hub 10 (ICH10) Family | Datasheet: Intel® I/O Controller Hub 10 (ICH10) Family |
| 5 | Datasheet: Intel® Xeon® Processor 5500 Series, Volume 1 | Datasheet: Intel® Xeon® Processor 5500 Series, Volume 1 |
| 6 | Datasheet: Intel® Xeon® Processor 5500 Series, Volume 2 | Datasheet: Intel® Xeon® Processor 5500 Series, Volume 2 |
| 7 | Specification Update: Intel® 5520 Chipset and Intel® 5500 Chipsets | Specification Update: Intel® 5520 Chipset and Intel® 5500 Chipsets |
| 8 | Specification Update: Intel® 82576 Gigabit Ethernet Controller | Specification Update: Intel® 82576 Gigabit Ethernet Controller |
| 9 | Specification Update: Intel® Xeon® Processor 5500 Series | Specification Update: Intel® Xeon® Processor 5500 Series |
以太网控制器
| 序号 | 描述 | |
|---|---|---|
| 1 | Datasheet: Intel® 82576 Gigabit Ethernet (GbE) Controller | Datasheet: Intel® 82576 Gigabit Ethernet (GbE) Controller |
| 2 | Datasheet: Intel® 82599 10 Gigabit Ethernet (GbE) Controller | Datasheet: Intel® 82599 10 Gigabit Ethernet (GbE) Controller |
| 3 | Product Brief: Intel® 82576 Gigabit Ethernet Controller | Product Brief: Intel® 82576 Gigabit Ethernet Controller |
| 4 | Product Brief: Intel® 82599 10 Gigabit Ethernet Controller (Network Connectivity) | Product Brief: Intel® 82599 10 Gigabit Ethernet Controller (Network Connectivity) |
| 5 | Specification Update: Intel® 82576 Gigabit Ethernet Controller | Specification Update: Intel® 82576 Gigabit Ethernet Controller |
