9310 Computer Processors 8

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Part RoHS Manufacturer Brand Name Product Line Product Model Product Type Processor Generation Number of Monitors Supported Graphics Memory Technology Packing Limited Warranty Bus Speed L3 Cache Product Series Maximum Memory Supported Packaged Quantity Memory Technology HyperTransport Speed (GT/s) Direct Media Interface L2 Cache Model Compatibility Graphics Controller Model Thermal Specification Length Shipping Weight (Approximate) Processor Core Brand Compatibility Product Color Thermal Design Power Cooler Type Processor Technology Processor Manufacturer Intel Optane Memory Ready Environmental Certification Environmentally Friendly Maximum Cache Level Clock Speed Platform Supported Depth Process Technology Width Package Type L1 Cache HyperTransport Speed (MHz) Overclocking Speed Energy Star Processor Socket QuickPath Interconnect Graphics Controller Manufacturer Weight (Approximate) Product Condition 64-bit Processing Input Voltage Front Side Bus Processor Threads Maximum Cache Height HyperTransport Speed (MT/s) Product Name Integrated Graphics Intel Optane Memory Capacity Country of Origin

AH385AR

Hewlett Packard Enterprise

HPE

Itanium 2

9310

Processor Upgrade

10 MB

9300

1.5 MB

88 °C

Dual-core (2 Core)

130 W

Intel

1.6 GHz

6.6 cm

65 nm

6.6 cm

Socket LGA-1248

4.8 GT/s

Yes

Itanium Dual-core 9310 1.6GHz Server Processor Upgrade

AH385A#0D1

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

10 MB

9300

1.5 MB

88 °C

Dual-core (2 Core)

130 W

Hyper-Threading Technology, Virtualization Technology, Demand Based Switching, Thermal Monitoring Technology

Intel

1.6 GHz

PC

6.6 cm

65 nm

6.6 cm

64 KB

Socket LGA-1248

4.8 GT/s

Yes

Itanium Dual-core 9310 1.6GHz Server Processor Upgrade

AH397A

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

10 MB

9300

1

Dual-core (2 Core)

130 W

Virtualization Technology, Turbo Boost Technology, Hyper-Threading Technology

Intel

1.6 GHz

PC

Socket LGA-1248

4.8 GT/s

Yes

Itanium Dual-core 9310 1.6GHz Processor Upgrade

AH385AR#0D1

Hewlett Packard Enterprise

HPE

Itanium 2

9310

Processor Upgrade

10 MB

9300

1.5 MB

88 °C

Dual-core (2 Core)

130 W

Intel

1.6 GHz

6.6 cm

65 nm

6.6 cm

Socket LGA-1248

4.8 GT/s

Refurbished

Yes

Itanium Dual-core 9310 1.6GHz Server Processor Upgrade

AH397AR

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

10 MB

9300

1.5 MB

Dual-core (2 Core)

130 W

Hyper-Threading Technology, Virtualization Technology, Demand Based Switching, Thermal Monitoring Technology

Intel

1.6 GHz

PC

64 KB

Socket LGA-1248

4.8 GT/s

Refurbished

Yes

Itanium Dual-core 9310 1.6GHz Processor Upgrade

AH385A

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

16 MB

9300

Dual-core (2 Core)

155 W

Turbo Boost Technology, Virtualization Technology, Hyper-Threading Technology

Intel

1.6 GHz

PC

Socket LGA-1248

4.8 GT/s

Yes

Itanium Dual-core 9310 1.6GHz Processor Upgrade

AH397A#0D1

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

10 MB

9300

1.5 MB

Dual-core (2 Core)

130 W

Virtualization Technology, Demand Based Switching, Thermal Monitoring Technology, Hyper-Threading Technology

Intel

1.6 GHz

PC

6.6 cm

65 nm

6.6 cm

64 KB

Socket LGA-1248

4.8 GT/s

Yes

Itanium Dual-core 9310 1.6GHz Server Processor Upgrade

AH397AR#0D1

Hewlett Packard Enterprise

HPE

Itanium

9310

Processor Upgrade

10 MB

9300

1.5 MB

Dual-core (2 Core)

130 W

Intel

1.6 GHz

Socket LGA-1248

4.8 GT/s

Refurbished

Yes

Itanium Dual-core 9310 1.6GHz Processor Upgrade

Computer Processors

Computer Processors, often referred to simply as processors or CPUs (Central Processing Units), are silicon chips that serve as the brain of a computing device. These integrated circuits are responsible for executing instructions and performing calculations in computers, smartphones, tablets, and other electronic devices. Microprocessors come in various architectures and designs, each optimized for specific applications and performance requirements. They typically include features such as multiple cores, advanced instruction sets, and power-saving technologies to deliver optimal performance and efficiency.