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- Intel 20 Core Xeon Silver 4th Gen 4416+ Scalable Server CPU/Processor Intel 20 Core Xeon Silver 4th Gen 4416+ Scalable Server CPU/Processor
Intel 20 Core Xeon Silver 4th Gen 4416+ Scalable Server CPU/Processor
- Description
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- Warranty
- Reviews
Product Overview
Intel® Advanced Matrix Extensions (Intel® AMX)
Significantly accelerate AI capabilities on the CPU with Intel® Advanced Matrix Extensions (Intel® AMX). Intel AMX is a built-in accelerator that improves the performance of deep learning training and inference on 4th Gen Intel® Xeon® Scalable processors, ideal for workloads like natural language processing, recommendation systems, and image recognition.
Intel® QuickAssist Technology (Intel® QAT) –Intel QAT web page
Help reduce system resource consumption—and TCO—by accelerating cryptography and data compression with Intel® QuickAssist Technology (Intel® QAT). By offloading encryption, decryption, and compression, this built-in accelerator helps free up processor cores so that systems can serve a larger number of clients or use less power. Get the most value when you merge compression and encryption—with Intel QAT, 4th Gen Intel® Xeon® Scalable processors are the highest-performance CPU that can compress and encrypt in a single data flow.
Intel® Data Streaming Accelerator (Intel® DSA)
Drive high performance for storage, networking, and data-intensive workloads by improving streaming data movement and transformation operations. Intel® Data Streaming Accelerator (Intel® DSA) is designed to offload the most common data movement tasks that cause overhead in data centre-scale deployments. Intel DSA helps speed up data movement across the CPU, memory, and caches, as well as all attached memory, storage, and network devices.
Intel® Dynamic Load Balancer (Intel® DLB)
Improve the system performance related to handling network data on multi-core Intel® Xeon® Scalable processors. Intel® Dynamic Load Balancer (Intel® DLB) enables the efficient distribution of network processing across multiple CPU cores/threads and dynamically distributes network data across multiple CPU cores for processing as the system load varies. Intel DLB also restores the order of networking data packets processed simultaneously on CPU cores.
Intel® In-Memory Analytics Accelerator (Intel® IAA)
Run database and analytics workloads faster, with potentially greater power efficiency. Intel® In-Memory Analytics Accelerator (Intel® IAA) increases query throughput and decreases the memory footprint for in-memory database and big data analytics workloads. Intel IAA is ideal for in-memory databases, open source databases, and data stores like RocksDB and ClickHouse.
DDR5
Improve compute performance by overcoming data bottlenecks with higher memory bandwidth. DDR5 offers up to 1.5x bandwidth improvement over DDR4, enabling opportunities to improve performance, capacity, power efficiency, and cost. 4th Gen Intel® Xeon® Scalable processors offer up to 4800 MT/s (1 DPC) or 4400 MT/s (2 DPC) with new DDR5.
PCI Express Gen 5 (PCIe 5.0)
Unlock new I/O speeds with opportunities to enable the highest possible throughput between the CPU and devices. 4th Gen Intel® Xeon® Scalable processors have up to 80 lanes of PCIe 5.0—ideal for fast networking, high-bandwidth accelerators, and high-performance storage devices. PCIe 5.0 doubles the I/O bandwidth from PCIe 4.0, maintains backward compatibility, and provides foundational slots for Compute Express Link (CXL).
Compute Express Link (CXL)
Reduce compute latency in the data centre and lower TCO with Compute Express Link (CXL) 1.1 for next-generation workloads. CXL is an alternate protocol that runs across the standard PCIe physical layer and can support both standard PCIe devices as well as CXL devices on the same link. CXL provides a critical capability to create a unified, coherent memory space between CPUs and accelerators and will revolutionise how data centre server architectures will be built for years to come.
Intel® Control-Flow Enforcement Technology
Intel® Control-Flow Enforcement Technology provides enhanced hardware-based protections against return-oriented and jump/call-oriented programming attacks, two of the most common software-based attack techniques. Using this technology helps shut down an entire class of system memory attacks that long evaded software-only solutions.
Intel® Trust Domain Extension (Intel® TDX)
Intel® Trust Domain Extension (Intel® TDX) is a new capability available through select cloud providers in 2023 that offers increased confidentiality at the virtual machine (VM) level, enhancing privacy and control over your data. Within an Intel TDX confidential VM, the guest OS and VM applications are isolated from access by the cloud host, hypervisor, and other VMs on the platform.
Intel® Advanced Vector Extensions 512 (Intel® AVX-512)
Accelerate performance for scientific simulations, financial analytics, AI/deep learning, 3D modelling and analysis, image and audio/video processing, cryptography, data compression, and other intensive workloads. Intel® Advanced Vector Extensions 512 (Intel® AVX-512) is the latest x86 vector instruction set, with up to two fused-multiply add (FMA) units and other optimisations to accelerate performance for your most demanding computational tasks.
Intel® Software Guard Extensions (Intel® SGX)
Unlock new opportunities for business collaboration and insights—even with sensitive or regulated data. Intel® Software Guard Extensions (Intel® SGX) is the most researched, updated, and deployed confidential computing technology in data centres on the market today, with the smallest trust boundary. Confidential computing improves the isolation of sensitive data with enhanced hardware-based memory protections.
Intel® Total Memory Encryption (Intel® TME)
Intel® Total Memory Encryption (Intel® TME) encrypts the platform’s entire system memory with a single key for added protection against physical attacks. Intel TME, when enabled via BIOS configuration, helps ensure that all memory accessed from the Intel CPU is encrypted, including customer credentials, encryption keys, and other IP or personal information on the external memory bus.
Intel® Virtual RAID on CPU (Intel® VROC)
Intel® Virtual RAID on CPU (Intel® VROC) is a one-of-a-kind integrated RAID solution on 4th Gen Intel® Xeon® Scalable processors that leverages both software and hardware on the CPU to create RAID. Intel VROC improves the storage subsystem reliability by eliminating the need for a traditional RAID host bus adapter (HBA) card. It delivers up to 60% higher IOPS and 39% lower latency, while reducing cost by up to 70% (vs. RAID HBA). Intel VROC helps accelerate demanding applications and workloads performed in the data centre and at the telco edge, such as large, high-performing database applications that require redundancy and data integrity.
Intel® Crypto Acceleration
Intel® Crypto Acceleration reduces the impact of implementing pervasive data encryption and increases the performance of encryption-sensitive workloads, such as for Secure Sockets Layer (SSL) web servers, 5G infrastructure, and VPNs/firewalls.
Model & Type
CPU Type | Intel Xeon Silver |
CPU Model | 4416+ |
Socket | 4677 |
Architecture | Sapphire Rapids |
Manufacturing Process |
Cores & Clocks
No. of Cores | 20 Core |
No. of Threads | 40 |
Core Ratio | |
Clock Speed | 2.0 GHz |
Turbo Speed | 2.9 GHz |
Turbo Boost Max Technology 3.0 Speed | 3.9 GHz |
Unlocked Core Multiplier | No |
Unlocked Full Range Base Clock (B-Clock) | No |
Bus Speeds
FSB Speed | N/A |
QPI Speed | N/A |
UPI Links/Speed | N/A |
DMI Speed | N/A |
Memory Support
Max. Memory Size | 128 GB |
Max. Memory Speed | DDR5 - 4800 |
Max. Memory Channels | |
ECC Memory | |
Intel Optane Memory | No |
Intel Optane DC Persistent Memory | No |
Lanes & Features
Intel Deep Learning Boost Support | No |
Scalability | Upto 2 Sockets/Processors |
Node Controller Support | No |
PCIe Version | 5.0 |
PCIe Lanes | 80 |
Integrated Graphics
Features Integrated Graphics | No |
Integrated Graphics Model/Type | |
iGPU Cores | |
iGPU Base Clock | N/A |
iGPU Boost Clock | N/A |
iGPU Max. Resolution |
CPU Cache
L1 Cache | |
L2 Cache | |
L3 Cache | 37.5MB |
Intel® Smart Cache | N/A |
Thermals & Package
Max. TDP | 165W |
Thermal Specification | |
Heatsink/Cooler Included? | Not Included, Sold Separately |
Package Type | OEM |
Note |
Additional Information
Model Number | PK8071305120201 |
GTIN | 1 |
Warranty
Duration: | 12 months |
Type: | Return to base |
DOA Period: | 28 days |
RTB Period: | 1 months |
Product Overview
Intel® Advanced Matrix Extensions (Intel® AMX)
Significantly accelerate AI capabilities on the CPU with Intel® Advanced Matrix Extensions (Intel® AMX). Intel AMX is a built-in accelerator that improves the performance of deep learning training and inference on 4th Gen Intel® Xeon® Scalable processors, ideal for workloads like natural language processing, recommendation systems, and image recognition.
Intel® QuickAssist Technology (Intel® QAT) –Intel QAT web page
Help reduce system resource consumption—and TCO—by accelerating cryptography and data compression with Intel® QuickAssist Technology (Intel® QAT). By offloading encryption, decryption, and compression, this built-in accelerator helps free up processor cores so that systems can serve a larger number of clients or use less power. Get the most value when you merge compression and encryption—with Intel QAT, 4th Gen Intel® Xeon® Scalable processors are the highest-performance CPU that can compress and encrypt in a single data flow.
Intel® Data Streaming Accelerator (Intel® DSA)
Drive high performance for storage, networking, and data-intensive workloads by improving streaming data movement and transformation operations. Intel® Data Streaming Accelerator (Intel® DSA) is designed to offload the most common data movement tasks that cause overhead in data centre-scale deployments. Intel DSA helps speed up data movement across the CPU, memory, and caches, as well as all attached memory, storage, and network devices.
Intel® Dynamic Load Balancer (Intel® DLB)
Improve the system performance related to handling network data on multi-core Intel® Xeon® Scalable processors. Intel® Dynamic Load Balancer (Intel® DLB) enables the efficient distribution of network processing across multiple CPU cores/threads and dynamically distributes network data across multiple CPU cores for processing as the system load varies. Intel DLB also restores the order of networking data packets processed simultaneously on CPU cores.
Intel® In-Memory Analytics Accelerator (Intel® IAA)
Run database and analytics workloads faster, with potentially greater power efficiency. Intel® In-Memory Analytics Accelerator (Intel® IAA) increases query throughput and decreases the memory footprint for in-memory database and big data analytics workloads. Intel IAA is ideal for in-memory databases, open source databases, and data stores like RocksDB and ClickHouse.
DDR5
Improve compute performance by overcoming data bottlenecks with higher memory bandwidth. DDR5 offers up to 1.5x bandwidth improvement over DDR4, enabling opportunities to improve performance, capacity, power efficiency, and cost. 4th Gen Intel® Xeon® Scalable processors offer up to 4800 MT/s (1 DPC) or 4400 MT/s (2 DPC) with new DDR5.
PCI Express Gen 5 (PCIe 5.0)
Unlock new I/O speeds with opportunities to enable the highest possible throughput between the CPU and devices. 4th Gen Intel® Xeon® Scalable processors have up to 80 lanes of PCIe 5.0—ideal for fast networking, high-bandwidth accelerators, and high-performance storage devices. PCIe 5.0 doubles the I/O bandwidth from PCIe 4.0, maintains backward compatibility, and provides foundational slots for Compute Express Link (CXL).
Compute Express Link (CXL)
Reduce compute latency in the data centre and lower TCO with Compute Express Link (CXL) 1.1 for next-generation workloads. CXL is an alternate protocol that runs across the standard PCIe physical layer and can support both standard PCIe devices as well as CXL devices on the same link. CXL provides a critical capability to create a unified, coherent memory space between CPUs and accelerators and will revolutionise how data centre server architectures will be built for years to come.
Intel® Control-Flow Enforcement Technology
Intel® Control-Flow Enforcement Technology provides enhanced hardware-based protections against return-oriented and jump/call-oriented programming attacks, two of the most common software-based attack techniques. Using this technology helps shut down an entire class of system memory attacks that long evaded software-only solutions.
Intel® Trust Domain Extension (Intel® TDX)
Intel® Trust Domain Extension (Intel® TDX) is a new capability available through select cloud providers in 2023 that offers increased confidentiality at the virtual machine (VM) level, enhancing privacy and control over your data. Within an Intel TDX confidential VM, the guest OS and VM applications are isolated from access by the cloud host, hypervisor, and other VMs on the platform.
Intel® Advanced Vector Extensions 512 (Intel® AVX-512)
Accelerate performance for scientific simulations, financial analytics, AI/deep learning, 3D modelling and analysis, image and audio/video processing, cryptography, data compression, and other intensive workloads. Intel® Advanced Vector Extensions 512 (Intel® AVX-512) is the latest x86 vector instruction set, with up to two fused-multiply add (FMA) units and other optimisations to accelerate performance for your most demanding computational tasks.
Intel® Software Guard Extensions (Intel® SGX)
Unlock new opportunities for business collaboration and insights—even with sensitive or regulated data. Intel® Software Guard Extensions (Intel® SGX) is the most researched, updated, and deployed confidential computing technology in data centres on the market today, with the smallest trust boundary. Confidential computing improves the isolation of sensitive data with enhanced hardware-based memory protections.
Intel® Total Memory Encryption (Intel® TME)
Intel® Total Memory Encryption (Intel® TME) encrypts the platform’s entire system memory with a single key for added protection against physical attacks. Intel TME, when enabled via BIOS configuration, helps ensure that all memory accessed from the Intel CPU is encrypted, including customer credentials, encryption keys, and other IP or personal information on the external memory bus.
Intel® Virtual RAID on CPU (Intel® VROC)
Intel® Virtual RAID on CPU (Intel® VROC) is a one-of-a-kind integrated RAID solution on 4th Gen Intel® Xeon® Scalable processors that leverages both software and hardware on the CPU to create RAID. Intel VROC improves the storage subsystem reliability by eliminating the need for a traditional RAID host bus adapter (HBA) card. It delivers up to 60% higher IOPS and 39% lower latency, while reducing cost by up to 70% (vs. RAID HBA). Intel VROC helps accelerate demanding applications and workloads performed in the data centre and at the telco edge, such as large, high-performing database applications that require redundancy and data integrity.
Intel® Crypto Acceleration
Intel® Crypto Acceleration reduces the impact of implementing pervasive data encryption and increases the performance of encryption-sensitive workloads, such as for Secure Sockets Layer (SSL) web servers, 5G infrastructure, and VPNs/firewalls.
Model & Type
CPU Type | Intel Xeon Silver |
CPU Model | 4416+ |
Socket | 4677 |
Architecture | Sapphire Rapids |
Manufacturing Process |
Cores & Clocks
No. of Cores | 20 Core |
No. of Threads | 40 |
Core Ratio | |
Clock Speed | 2.0 GHz |
Turbo Speed | 2.9 GHz |
Turbo Boost Max Technology 3.0 Speed | 3.9 GHz |
Unlocked Core Multiplier | No |
Unlocked Full Range Base Clock (B-Clock) | No |
Bus Speeds
FSB Speed | N/A |
QPI Speed | N/A |
UPI Links/Speed | N/A |
DMI Speed | N/A |
Memory Support
Max. Memory Size | 128 GB |
Max. Memory Speed | DDR5 - 4800 |
Max. Memory Channels | |
ECC Memory | |
Intel Optane Memory | No |
Intel Optane DC Persistent Memory | No |
Lanes & Features
Intel Deep Learning Boost Support | No |
Scalability | Upto 2 Sockets/Processors |
Node Controller Support | No |
PCIe Version | 5.0 |
PCIe Lanes | 80 |
Integrated Graphics
Features Integrated Graphics | No |
Integrated Graphics Model/Type | |
iGPU Cores | |
iGPU Base Clock | N/A |
iGPU Boost Clock | N/A |
iGPU Max. Resolution |
CPU Cache
L1 Cache | |
L2 Cache | |
L3 Cache | 37.5MB |
Intel® Smart Cache | N/A |
Thermals & Package
Max. TDP | 165W |
Thermal Specification | |
Heatsink/Cooler Included? | Not Included, Sold Separately |
Package Type | OEM |
Note |
Additional Information
Model Number | PK8071305120201 |
GTIN | 1 |
Warranty
Duration: | 12 months |
Type: | Return to base |
DOA Period: | 28 days |
RTB Period: | 1 months |
Product Overview
Intel® Advanced Matrix Extensions (Intel® AMX)
Significantly accelerate AI capabilities on the CPU with Intel® Advanced Matrix Extensions (Intel® AMX). Intel AMX is a built-in accelerator that improves the performance of deep learning training and inference on 4th Gen Intel® Xeon® Scalable processors, ideal for workloads like natural language processing, recommendation systems, and image recognition.
Intel® QuickAssist Technology (Intel® QAT) –Intel QAT web page
Help reduce system resource consumption—and TCO—by accelerating cryptography and data compression with Intel® QuickAssist Technology (Intel® QAT). By offloading encryption, decryption, and compression, this built-in accelerator helps free up processor cores so that systems can serve a larger number of clients or use less power. Get the most value when you merge compression and encryption—with Intel QAT, 4th Gen Intel® Xeon® Scalable processors are the highest-performance CPU that can compress and encrypt in a single data flow.
Intel® Data Streaming Accelerator (Intel® DSA)
Drive high performance for storage, networking, and data-intensive workloads by improving streaming data movement and transformation operations. Intel® Data Streaming Accelerator (Intel® DSA) is designed to offload the most common data movement tasks that cause overhead in data centre-scale deployments. Intel DSA helps speed up data movement across the CPU, memory, and caches, as well as all attached memory, storage, and network devices.
Intel® Dynamic Load Balancer (Intel® DLB)
Improve the system performance related to handling network data on multi-core Intel® Xeon® Scalable processors. Intel® Dynamic Load Balancer (Intel® DLB) enables the efficient distribution of network processing across multiple CPU cores/threads and dynamically distributes network data across multiple CPU cores for processing as the system load varies. Intel DLB also restores the order of networking data packets processed simultaneously on CPU cores.
Intel® In-Memory Analytics Accelerator (Intel® IAA)
Run database and analytics workloads faster, with potentially greater power efficiency. Intel® In-Memory Analytics Accelerator (Intel® IAA) increases query throughput and decreases the memory footprint for in-memory database and big data analytics workloads. Intel IAA is ideal for in-memory databases, open source databases, and data stores like RocksDB and ClickHouse.
DDR5
Improve compute performance by overcoming data bottlenecks with higher memory bandwidth. DDR5 offers up to 1.5x bandwidth improvement over DDR4, enabling opportunities to improve performance, capacity, power efficiency, and cost. 4th Gen Intel® Xeon® Scalable processors offer up to 4800 MT/s (1 DPC) or 4400 MT/s (2 DPC) with new DDR5.
PCI Express Gen 5 (PCIe 5.0)
Unlock new I/O speeds with opportunities to enable the highest possible throughput between the CPU and devices. 4th Gen Intel® Xeon® Scalable processors have up to 80 lanes of PCIe 5.0—ideal for fast networking, high-bandwidth accelerators, and high-performance storage devices. PCIe 5.0 doubles the I/O bandwidth from PCIe 4.0, maintains backward compatibility, and provides foundational slots for Compute Express Link (CXL).
Compute Express Link (CXL)
Reduce compute latency in the data centre and lower TCO with Compute Express Link (CXL) 1.1 for next-generation workloads. CXL is an alternate protocol that runs across the standard PCIe physical layer and can support both standard PCIe devices as well as CXL devices on the same link. CXL provides a critical capability to create a unified, coherent memory space between CPUs and accelerators and will revolutionise how data centre server architectures will be built for years to come.
Intel® Control-Flow Enforcement Technology
Intel® Control-Flow Enforcement Technology provides enhanced hardware-based protections against return-oriented and jump/call-oriented programming attacks, two of the most common software-based attack techniques. Using this technology helps shut down an entire class of system memory attacks that long evaded software-only solutions.
Intel® Trust Domain Extension (Intel® TDX)
Intel® Trust Domain Extension (Intel® TDX) is a new capability available through select cloud providers in 2023 that offers increased confidentiality at the virtual machine (VM) level, enhancing privacy and control over your data. Within an Intel TDX confidential VM, the guest OS and VM applications are isolated from access by the cloud host, hypervisor, and other VMs on the platform.
Intel® Advanced Vector Extensions 512 (Intel® AVX-512)
Accelerate performance for scientific simulations, financial analytics, AI/deep learning, 3D modelling and analysis, image and audio/video processing, cryptography, data compression, and other intensive workloads. Intel® Advanced Vector Extensions 512 (Intel® AVX-512) is the latest x86 vector instruction set, with up to two fused-multiply add (FMA) units and other optimisations to accelerate performance for your most demanding computational tasks.
Intel® Software Guard Extensions (Intel® SGX)
Unlock new opportunities for business collaboration and insights—even with sensitive or regulated data. Intel® Software Guard Extensions (Intel® SGX) is the most researched, updated, and deployed confidential computing technology in data centres on the market today, with the smallest trust boundary. Confidential computing improves the isolation of sensitive data with enhanced hardware-based memory protections.
Intel® Total Memory Encryption (Intel® TME)
Intel® Total Memory Encryption (Intel® TME) encrypts the platform’s entire system memory with a single key for added protection against physical attacks. Intel TME, when enabled via BIOS configuration, helps ensure that all memory accessed from the Intel CPU is encrypted, including customer credentials, encryption keys, and other IP or personal information on the external memory bus.
Intel® Virtual RAID on CPU (Intel® VROC)
Intel® Virtual RAID on CPU (Intel® VROC) is a one-of-a-kind integrated RAID solution on 4th Gen Intel® Xeon® Scalable processors that leverages both software and hardware on the CPU to create RAID. Intel VROC improves the storage subsystem reliability by eliminating the need for a traditional RAID host bus adapter (HBA) card. It delivers up to 60% higher IOPS and 39% lower latency, while reducing cost by up to 70% (vs. RAID HBA). Intel VROC helps accelerate demanding applications and workloads performed in the data centre and at the telco edge, such as large, high-performing database applications that require redundancy and data integrity.
Intel® Crypto Acceleration
Intel® Crypto Acceleration reduces the impact of implementing pervasive data encryption and increases the performance of encryption-sensitive workloads, such as for Secure Sockets Layer (SSL) web servers, 5G infrastructure, and VPNs/firewalls.
Model & Type
CPU Type | Intel Xeon Silver |
CPU Model | 4416+ |
Socket | 4677 |
Architecture | Sapphire Rapids |
Manufacturing Process |
Cores & Clocks
No. of Cores | 20 Core |
No. of Threads | 40 |
Core Ratio | |
Clock Speed | 2.0 GHz |
Turbo Speed | 2.9 GHz |
Turbo Boost Max Technology 3.0 Speed | 3.9 GHz |
Unlocked Core Multiplier | No |
Unlocked Full Range Base Clock (B-Clock) | No |
Bus Speeds
FSB Speed | N/A |
QPI Speed | N/A |
UPI Links/Speed | N/A |
DMI Speed | N/A |
Memory Support
Max. Memory Size | 128 GB |
Max. Memory Speed | DDR5 - 4800 |
Max. Memory Channels | |
ECC Memory | |
Intel Optane Memory | No |
Intel Optane DC Persistent Memory | No |
Lanes & Features
Intel Deep Learning Boost Support | No |
Scalability | Upto 2 Sockets/Processors |
Node Controller Support | No |
PCIe Version | 5.0 |
PCIe Lanes | 80 |
Integrated Graphics
Features Integrated Graphics | No |
Integrated Graphics Model/Type | |
iGPU Cores | |
iGPU Base Clock | N/A |
iGPU Boost Clock | N/A |
iGPU Max. Resolution |
CPU Cache
L1 Cache | |
L2 Cache | |
L3 Cache | 37.5MB |
Intel® Smart Cache | N/A |
Thermals & Package
Max. TDP | 165W |
Thermal Specification | |
Heatsink/Cooler Included? | Not Included, Sold Separately |
Package Type | OEM |
Note |
Additional Information
Model Number | PK8071305120201 |
GTIN | 1 |
Warranty
Duration: | 12 months |
Type: | Return to base |
DOA Period: | 28 days |
RTB Period: | 1 months |