Intel(R) 处理器产品型号/CPUID标识/签名对照表 (Family — Model)

                                                   CPUID Signature Values of DisplayFamily_DisplayModel

DisplayFamily_DisplayModelProcessor Families/Processor Number Series
06_85HIntel® Xeon Phi™ Processor 7215, 7285, 7295 Series based on Knights Mill microarchitecture
06_57HIntel® Xeon Phi™ Processor 3200, 5200, 7200 Series based on Knights Landing microarchitecture
06_7DH, 06_7EH Future Intel® Core™ processors based on Ice Lake microarchitecture
06_66H Intel® Core™ processors based on Cannon Lake microarchitecture
06_8EH, 06_9EH7th generation Intel® Core™ processors based on Kaby Lake microarchitecture, 8th and 9th generation Intel® Core™ processors based on Coffee Lake microarchitecture, Intel® Xeon® E processors based on Coffee Lake microarchitecture
06_6AH, 06_6CH Future Intel® Xeon® processors based on Ice Lake microarchitecture
06_55H Intel® Xeon® Processor Scalable Family based on Skylake microarchitecture, 2nd generation Intel®
Xeon® Processor Scalable Family based on Cascade Lake product, and future Cooper Lake product
06_4EH, 06_5EH 6th generation Intel Core processors and Intel Xeon processor E3-1500m v5 product family and E3-
1200 v5 product family based on Skylake microarchitecture
06_56HIntel Xeon processor D-1500 product family based on Broadwell microarchitecture
06_4FH Intel Xeon processor E5 v4 Family based on Broadwell microarchitecture, Intel Xeon processor E7 v4 Family, Intel Core i7-69xx Processor Extreme Edition
06_47H 5th generation Intel Core processors, Intel Xeon processor E3-1200 v4 product family based on Broadwell microarchitecture
06_3DH Intel Core M-5xxx Processor, 5th generation Intel Core processors based on Broadwell microarchitecture
06_3FH Intel Xeon processor E5-4600/2600/1600 v3 product families, Intel Xeon processor E7 v3 product
families based on Haswell-E microarchitecture, Intel Core i7-59xx Processor Extreme Edition
06_3CH, 06_45H, 06_46H 4th Generation Intel Core processor and Intel Xeon processor E3-1200 v3 product family based on
Haswell microarchitecture
06_3EH Intel Xeon processor E7-8800/4800/2800 v2 product families based on Ivy Bridge-E microarchitecture
06_3EH Intel Xeon processor E5-2600/1600 v2 product families and Intel Xeon processor E5-2400 v2
product family based on Ivy Bridge-E microarchitecture, Intel Core i7-49xx Processor Extreme Edition
06_3AH 3rd Generation Intel Core Processor and Intel Xeon processor E3-1200 v2 product family based on Ivy Bridge microarchitecture
06_2DH Intel Xeon processor E5 Family based on Intel microarchitecture code name Sandy Bridge, Intel Core i7-39xx Processor Extreme Edition
06_2FH Intel Xeon Processor E7 Family
06_2AH Intel Xeon processor E3-1200 product family; 2nd Generation Intel Core i7, i5, i3 Processors 2xxx
Series
06_2EHIntel Xeon processor 7500, 6500 series
06_25H, 06_2CH Intel Xeon processors 3600, 5600 series, Intel Core i7, i5 and i3 Processors
06_1EH, 06_1FH Intel Core i7 and i5 Processors
06_1AH Intel Core i7 Processor, Intel Xeon processor 3400, 3500, 5500 series
06_1DH Intel Xeon processor MP 7400 series
06_17H Intel Xeon processor 3100, 3300, 5200, 5400 series, Intel Core 2 Quad processors 8000, 9000 series
06_0FH Intel Xeon processor 3000, 3200, 5100, 5300, 7300 series, Intel Core 2 Quad processor 6000 series,
Intel Core 2 Extreme 6000 series, Intel Core 2 Duo 4000, 5000, 6000, 7000 series processors, Intel
Pentium dual-core processors
06_0EH Intel Core Duo, Intel Core Solo processors
06_0DH Intel Pentium M processor
06_86HIntel® Atom™ processors based on Tremont Microarchitecture
06_7AH Intel Atom processors based on Goldmont Plus Microarchitecture
06_5FHIntel Atom processors based on Goldmont Microarchitecture (code name Denverton)
06_5CH Intel Atom processors based on Goldmont Microarchitecture
06_4CH Intel Atom processor X7-Z8000 and X5-Z8000 series based on Airmont Microarchitecture
06_5DH Intel Atom processor X3-C3000 based on Silvermont Microarchitecture
06_5AH Intel Atom processor Z3500 series
06_4AHIntel Atom processor Z3400 series
06_37HIntel Atom processor E3000 series, Z3600 series, Z3700 series
06_4DH Intel Atom processor C2000 series
06_36H Intel Atom processor S1000 Series
06_1CH, 06_26H, 06_27H,
06_35H, 06_36H
Intel Atom processor family, Intel Atom processor D2000, N2000, E2000, Z2000, C1000 series
0F_06H Intel Xeon processor 7100, 5000 Series, Intel Xeon Processor MP, Intel Pentium 4, Pentium D
processors
0F_03H, 0F_04H Intel Xeon processor, Intel Xeon processor MP, Intel Pentium 4, Pentium D processors
06_09H Intel Pentium M processor
0F_02H Intel Xeon Processor, Intel Xeon processor MP, Intel Pentium 4 processors
0F_0H, 0F_01H Intel Xeon Processor, Intel Xeon processor MP, Intel Pentium 4 processors
06_7H, 06_08H, 06_0AH,
06_0BH
Intel Pentium  III Xeon processor, Intel Pentium  III processor
06_03H, 06_05H Intel Pentium  II Xeon processor, Intel Pentium  II processor
06_01H Intel Pentium Pro processor
05_01H, 05_02H, 05_04H Intel Pentium processor, Intel Pentium processor with MMX Technology

The Intel® Quark™ SoC X1000 processor can be identified by the signature of DisplayFamily_DisplayModel = 05_09H  and SteppingID = 0

   ——列表引用自   May 2019版《Intel® 64 and IA-32 Architectures Software Developer’s Manual》

   ——详细目录:Volume 4:Model-Specific Registers   //  1.4  Related Literature  //  Table 2-1

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

在当今数字化教育蓬勃发展的背景下,校园网络作为教学与科研的关键基础设施,其重要性日益凸显。本文旨在探讨小型校园网络的规划与设计,以满足网络实验教学的需求,为相关专业师生提供一个高效、稳定且功能完备的网络实验环境,助力教学活动顺利开展,提升学生的实践能力和创新思维。 网络实验教学要求校园网络具备高度的灵活性与可扩展性。学生需在实验过程中模拟各种网络拓扑结构、配置不同网络设备参数,这就要求网络能够快速调整资源分配,适应多样化的实验场景。同时,为保证实验数据的准确性和实验过程的稳定性,网络的高可靠性与低延迟特性不可或缺。此外,考虑到校园内多用户同时接入的场景,网络还需具备良好的并发处理能力,确保每位用户都能流畅地进行实验操作。 采用层次化结构构建小型校园网络,分为核心层、汇聚层与接入层。核心层选用高性能交换机,负责高速数据转发与关键路由决策,保障网络主干的稳定运行;汇聚层连接不同教学区域,实现数据的汇聚与初步处理,通过划分虚拟局域网(VLAN)对不同专业或班级的实验流量进行隔离,避免相互干扰;接入层则直接连接学生终端设备,提供充足的接入端口,满足大量用户同时接入的需求,并通过端口安全策略限制非法设备接入,保障网络安全。 在设备选型上,核心层交换机需具备高吞吐量、低延迟以及丰富的路由协议支持能力,以满足复杂网络流量的转发需求;汇聚层交换机则注重VLAN划分与管理功能,以及对链路聚合的支持,提升网络的可靠性和带宽利用率;接入层交换机则需具备高密度端口、灵活的端口配置以及完善的用户认证功能。配置方面,通过静态路由与动态路由协议相结合的方式,确保网络路径的最优选择;在汇聚层与接入层设备上启用VLAN Trunk技术,实现不同VLAN间的数据交换;同时,利用网络管理软件对设备进行集中监控与管理,实时掌握网络运行状态,及时发现并解决潜在问题。 网络安全是校园网络规划的关键环节。在接入层设置严
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