Intel Xeon E7-4809 v2 vs Intel Xeon Gold 6126F

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CPU comparison with benchmarks

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CPU lineage

Intel Xeon E7-4809 v2 or Intel Xeon E7-4809 v2 – which processor offers superior performance? In this comparison, we examine disparities and assess which of these two CPUs outperforms the other. We delve into technical specifications and benchmark outcomes.
The Intel Xeon E7-4809 v2 features 6 processor cores and has the capability to manage 12 threads concurrently.
It was released in Q1/2014 and belongs to the 4 generation of the Intel Xeon E7 series.
To use the Intel Xeon E7-4809 v2, you'll need a motherboard with a LGA 2011 socket.
The Intel Xeon Gold 6126F features 12 processor cores and has the capability to manage 24 threads concurrently.
It was released in Q3/2017 and belongs to the 1 generation of the Intel Xeon Gold series.
To use the Intel Xeon Gold 6126F, you'll need a motherboard with a LGA 3647 socket.
4 Generation 1
Intel Xeon E7-4809 v2 Name Intel Xeon Gold 6126F
Desktop / Server Segment Desktop / Server
Intel Xeon E7 v2 Group Intel Xeon Gold 5100/6100
Intel Xeon E7 Family Intel Xeon Gold
 
 

CPU Cores and Base Frequency

The Intel Xeon E7-4809 v2 has 6 CPU cores and can calculate 12 threads in parallel.
The clock frequency of the Intel Xeon E7-4809 v2 is 1.9 GHz
The number of CPU cores greatly affects the speed of the processor and is an important performance indicator.
The Intel Xeon Gold 6126F has 12 CPU cores and can calculate 24 threads in parallel.
The clock frequency of the Intel Xeon Gold 6126F is 2.6 GHz
and turbo frequency for one core is 3.7 GHz.
1.9 GHz Frequency 2.6 GHz
6x Cores 12x
Yes Hyperthreading Yes
No Overclocking No
6 CPU Cores 12
12 Threads 24
normal Core architecture normal
None None 3.7 GHz
 
 

Internal Graphics

The Intel Xeon E7-4809 v2 does not have integrated graphics.
The Intel Xeon Gold 6126F does not have integrated graphics.
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0 bytes Max. GPU Memory 0 bytes
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Artificial Intelligence and Machine Learning

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Hardware codec support

A photo or video codec that is accelerated in hardware can greatly accelerate the working speed of a processor and extend the battery life of notebooks or smartphones when playing videos.
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Memory & PCIe

The processor supports a maximum memory capacity of 1.5 TB distributed across 4 memory channels. It offers a peak memory bandwidth of 42.6 GB/s. Both the type and quantity of memory can have a substantial impact on the overall system performance.
The processor supports a maximum memory capacity of 768.0 GB distributed across 6 memory channels. It offers a peak memory bandwidth of 128.1 GB/s. Both the type and quantity of memory can have a substantial impact on the overall system performance.
Yes ECC Yes
pci PCIe pci
4 Memory channels 6
Yes AES-NI Yes
42.6 GB/s Bandwidth 128.1 GB/s
DDR3-1333 Memory type DDR4-2666
1.5 TB Max. Memory 768.0 GB
 
 

Thermal Management

The processor has a thermal design power (TDP) of 105 W watts.
TDP indicates the cooling solution needed to effectively manage the processor's heat. It generally provides an approximate indication of the actual power consumption of the CPU itself.
The processor has a thermal design power (TDP) of 135 W watts.
-- Tjunction max --
105 W TDP (PL1 / PBP) 135 W
 
 

Technical details

The Intel Xeon E7-4809 v2 is manufactured using a 22 nm process.
A smaller manufacturing process indicates a more contemporary and energy-efficient CPU.
In total, this processor boasts a generous 12.0 MB cache.
A substantial cache can significantly enhance the processor's performance, particularly in scenarios like gaming.
The Intel Xeon Gold 6126F is manufactured using a 14 nm process.
In total, this processor boasts a generous 19.0 MB cache.
12.0 MB L3-Cache 19.0 MB
x86-64 (64 bit) Instruction set (ISA) x86-64 (64 bit)
Q1/2014 Release date Q3/2017
LGA 2011 Socket LGA 3647
VT-x, VT-x EPT, VT-d Virtualization VT-x, VT-x EPT, VT-d
Windows 10, Linux Operating systems Windows 10, Linux
890 $ Release price 1930 $
Ivy Bridge EX Architecture Skylake
SSE4.1, SSE4.2, AVX ISA extensions SSE4.1, SSE4.2, AVX2, AVX-512
22 nm Technology 14 nm
Monolithic Chip design Monolithic
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0 bytes L2-Cache 0 bytes
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