AMD Athlon II X3 405e vs Intel Xeon D-1714

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CPU comparison with benchmarks

-VS-

CPU lineage

AMD Athlon II X3 405e or AMD Athlon II X3 405e – 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 AMD Athlon II X3 405e features 3 processor cores and has the capability to manage 3 threads concurrently.
It was released in Q3/2009 and belongs to the 1 generation of the AMD Athlon II series.
To use the AMD Athlon II X3 405e, you'll need a motherboard with a AM3 socket.
The Intel Xeon D-1714 features 4 processor cores and has the capability to manage 8 threads concurrently.
It was released in Q1/2022 and belongs to the 4 generation of the Intel Xeon D series.
To use the Intel Xeon D-1714, you'll need a motherboard with a BGA 2227 socket.
AMD Athlon II Family Intel Xeon D
AMD Athlon II X3 (Rana) Group Intel Xeon D-1700
1 Generation 4
Desktop / Server Segment Desktop / Server
AMD Athlon II X3 405e Name Intel Xeon D-1714
 
 

CPU Cores and Base Frequency

The AMD Athlon II X3 405e has 3 CPU cores and can calculate 3 threads in parallel.
The clock frequency of the AMD Athlon II X3 405e is 2.3 GHz
The Intel Xeon D-1714 has 4 CPU cores and can calculate 8 threads in parallel.
The clock frequency of the Intel Xeon D-1714 is 2.3 GHz
and turbo frequency for one core is 3.4 GHz.
3 Threads 8
None None 2.5 GHz
3 CPU Cores 4
2.3 GHz Frequency 2.3 GHz
No Overclocking No
normal Core architecture normal
3x Cores 4x Sunny Cove
No Hyperthreading Yes
None None 3.4 GHz
 
 

Internal Graphics

The AMD Athlon II X3 405e does not have integrated graphics.
The Intel Xeon D-1714 does not have integrated graphics.
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GPU name
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0 bytes Max. GPU Memory 0 bytes
 
 

Artificial Intelligence and Machine Learning

-- AI hardware --
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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.
-- JPEG --
-- VP9 --
-- h264 --
-- h265 / HEVC (10 bit) --
-- VP8 --
-- h265 / HEVC (8 bit) --
-- AVC --
-- VC-1 --
-- AV1 --
 
 

Memory & PCIe

The processor supports a maximum memory capacity of 16.0 GB distributed across 2 memory channels. It offers a peak memory bandwidth of 21.3 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 256.0 GB distributed across 2 memory channels. It offers a peak memory bandwidth of 42.7 GB/s. Both the type and quantity of memory can have a substantial impact on the overall system performance.
No AES-NI Yes
pci PCIe pci
DDR3-1333 Memory type DDR4-2666
2 Memory channels 2
21.3 GB/s Bandwidth 42.7 GB/s
No ECC Yes
16.0 GB Max. Memory 256.0 GB
 
 

Thermal Management

The processor has a thermal design power (TDP) of 45 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 38 W watts.
-- Tjunction max --
45 W TDP (PL1 / PBP) 38 W
 
 

Technical details

The AMD Athlon II X3 405e is manufactured using a 45 nm process.
A smaller manufacturing process indicates a more contemporary and energy-efficient CPU.
A substantial cache can significantly enhance the processor's performance, particularly in scenarios like gaming.
The Intel Xeon D-1714 is manufactured using a 10 nm process.
AMD-V Virtualization VT-x, VT-x EPT, VT-d
SSE3, SSE4a, MMX, 3DNow! ISA extensions SSE4.1, SSE4.2, AVX2, AVX-512
Q3/2009 Release date Q1/2022
-- Part Number --
x86-64 (64 bit) Instruction set (ISA) x86-64 (64 bit)
Windows 10, Linux Operating systems Windows 10, Linux
45 nm Technology 10 nm
1.5 MB L2-Cache 10.0 MB
-- Chip design Monolithic
Rana Architecture Ice Lake
0 bytes L3-Cache 0 bytes
AM3 Socket BGA 2227
Technical data sheet Documents Technical data sheet
-- Release price 216 $