Intel Xeon Platinum 8180 Intel Xeon Platinum 8180
AMD A10-7890K AMD A10-7890K
VS

Comparision Intel Xeon Platinum 8180 vs AMD A10-7890K

Intel Xeon Platinum 8180

WINNER
Intel Xeon Platinum 8180

Rating: 33 points
AMD A10-7890K

AMD A10-7890K

Rating: 3 points
Grade
Intel Xeon Platinum 8180
AMD A10-7890K
Test results
3
0
Technology
4
3
Performance
5
5
Memory specification
4
3
Interfaces and communications
3
2
Main characteristics
4
4

Top specs and features

Passmark test

Intel Xeon Platinum 8180: 34786 AMD A10-7890K: 3329

Power Consumption (TDP)

Intel Xeon Platinum 8180: 205 W AMD A10-7890K: 95 W

Technological process

Intel Xeon Platinum 8180: 14 nm AMD A10-7890K: 28 nm

L1 cache size

Intel Xeon Platinum 8180: 1792 KB AMD A10-7890K: 256 KB

L2 cache size

Intel Xeon Platinum 8180: 28 MB AMD A10-7890K: 4 MB

Description

The Intel Xeon Platinum 8180 processor runs at 2.5 Hz, the other AMD A10-7890K runs at 4.1 Hz. Intel Xeon Platinum 8180 is able to accelerate to 3.8 Hz , and the second to 4.3 Hz. The maximum power consumption for the first processor is 205 W, and for AMD A10-7890K 95 W.

In terms of architecture, Intel Xeon Platinum 8180 is built using 14 nm technology. AMD A10-7890K on the 28 nm architecture.

Relative to processor memory. Intel Xeon Platinum 8180 can support DDR4. The maximum supported size is 768 MB. It should be noted that the maximum memory bandwidth is There is no data. The second processor AMD A10-7890K is capable of supporting DDR3. The throughput is 34.1. And the maximum amount of supported RAM is There is no data MB.

Graphics. Intel Xeon Platinum 8180 has a graphics engine There is no data. The frequency of which is - There is no data MHz. AMD A10-7890K received video core AMD Radeon R7 Graphics. Here the frequency is 866 MHz.

How processors perform in benchmarks. In the PassMark benchmark, Intel Xeon Platinum 8180 scored 34786. And AMD A10-7890K scored 3329 points.

Why Intel Xeon Platinum 8180 is better than AMD A10-7890K

  • Passmark test 34786 против 3329 , more on 945%
  • Technological process 14 nm против 28 nm, less by -50%
  • L1 cache size 1792 KB против 256 KB, more on 600%
  • L2 cache size 28 MB против 4 MB, more on 600%
  • Memory frequency 2666 MHz против 2133 MHz, more on 25%
  • Max. number of memory channels 6 против 2 , more on 200%

Intel Xeon Platinum 8180 vs AMD A10-7890K: highlights

Intel Xeon Platinum 8180
Intel Xeon Platinum 8180
AMD A10-7890K
AMD A10-7890K
Test results
Passmark test
The PassMark test considers read speed, write speed, and seek time when testing SSD performance.
34786
max 104648
Average: 6033.5
3329
max 104648
Average: 6033.5
Technology
AES
Commands designed to speed up encryption and decryption operations using the AES algorithm. They allow processors to process data faster and more efficiently, improving the performance of cryptographic operations. This is especially useful in security systems, network communications and data storage. Show more
Available
Available
Support for Intel Optane memory
A memory technology and type developed by Intel that combines the benefits of fast flash memory with the high capacity of a hard drive.
Not available
There is no data
Intel Trusted Execution Technology
A technology that protects the system from malicious software and unauthorized access.
Available
There is no data
Supports hardware virtualization technology
Hardware virtualization makes it much easier to get high quality images.
Available
Available
Performance
Number of threads
The more threads, the higher the performance of the processor will be, and it will be able to perform several tasks at the same time.
56
max 256
Average: 10.7
max 256
Average: 10.7
L1 cache size
large amount of L1 memory accelerates results in the CPU and system performance settings
1792 KB
max 6144
Average: 299.3 KB
256 KB
max 6144
Average: 299.3 KB
L2 cache size
An L2 cache with a large amount of scratchpad memory allows you to increase the speed of the processor and the overall performance of the system.
28 MB
max 512
Average: 4.5 MB
4 MB
max 512
Average: 4.5 MB
L3 cache size
A large amount of L3 memory accelerates results in the CPU and system performance settings
39 MB
max 768
Average: 16.3 MB
MB
max 768
Average: 16.3 MB
Maximum processor frequency
When the processor's speed drops below its limit, it can jump to a higher clock speed to improve performance.
3.8 GHz
max 5.7
Average: 3.2 GHz
4.3 GHz
max 5.7
Average: 3.2 GHz
Number of Cores
The number of cores in processors indicates the number of independent computing units that can execute tasks in parallel. More cores allow the processor to handle more tasks at once, which improves overall performance and the ability to handle multi-threaded applications. Show more
28
max 72
Average: 5.8
4
max 72
Average: 5.8
CPU base clock speed
2.5 GHz
max 4.7
Average: 2.5 GHz
4.1 GHz
max 4.7
Average: 2.5 GHz
Number of UPI channels
The number of communication links for data transfer between multiple processors. More UPI links provide higher throughput and ability to transfer data between processors, which can improve performance and scalability in multi-core systems. Show more
3
max 6
Average: 2.9
max 6
Average: 2.9
Maximum memory speed
2666 MHz
max 4267
Average: 2720 MHz
MHz
max 4267
Average: 2720 MHz
Max. number of PCI Express lanes
The more channels, the greater the bandwidth and the possibility of data transfer between the components of the system. This affects the speed and performance of connected devices such as graphics cards or network adapters. Show more
48
max 64
Average: 22.7
max 64
Average: 22.7
Multiplier unlocked
Some processors have an unlocked multiplier, thanks to which they work faster and improve the quality in games and other applications.
Not available
Available
The turbo boost version is newer
Turbo Boost is a technology that allows the processor to operate at a frequency higher than the maximum. This increases its productivity (including when performing complex tasks) Show more
2
max 2
Average: 1.9
max 2
Average: 1.9
Turbo Boost Max 3.0
Not available
There is no data
RAM types
Various versions of DDR, such as DDR2, DDR3, DDR4, and DDR5, offer improved features and performance over previous versions, allowing you to work more efficiently with data and improve overall system performance. Show more
4
max 5
Average: 3.5
3
max 5
Average: 3.5
Memory specification
Memory frequency
RAM may be faster to increase system performance.
2666 MHz
max 4800
Average: 2106.2 MHz
2133 MHz
max 4800
Average: 2106.2 MHz
Max. number of memory channels
The more their number, the higher the data transfer rate from memory to processor
6
max 16
Average: 2.9
2
max 16
Average: 2.9
Max. Memory
The largest amount of RAM memory.
768 GB
max 6000
Average: 404.4 GB
GB
max 6000
Average: 404.4 GB
ECC memory support
The memory debugging code is used when it is necessary to avoid data corruption during scientific computing or server startup. It finds possible errors and repairs data corruption. Show more
Available
There is no data
Interfaces and communications
vPro
set of technologies to improve the security and manageability of business computers.
Available
There is no data
Enhanced SpeedStep (EIST)
technology in Intel processors that dynamically adjusts clock speed and voltage to optimize power consumption and performance.
Available
There is no data
Intel® AES-NI Commands
AES is needed to speed up encryption and decryption.
Available
Available
Has f16c
The F16C lets you speed up tasks like adjusting the volume or adjusting the contrast.
Available
Available
Has avx
AVX allows you to increase the speed of calculations in multimedia, financial and scientific applications, and it also improves the performance of Linux RAID. Show more
Available
Available
Has mmx
MMX is needed to speed up tasks such as adjusting the volume and adjusting the contrast.
Available
Available
Has fma3
FMA3 is needed to speed up tasks such as adjusting photo contrast or adjusting sound.
Available
Available
Socket
Connector on the motherboard for installing the processor.
FCLGA3647
FM2+
Speed Shift
technology that allows the processor to dynamically adjust its clock speed to optimize performance and power consumption.
Available
There is no data
TSX
A technology for efficiently synchronizing threads of execution through the use of transactional memory.
Available
There is no data
TXT
A technology for creating a secure and isolated runtime environment that protects your system and data from malware and attacks.
Available
There is no data
EDB
technology used in processors to improve system security. It prevents malicious code from executing by blocking its execution in memory and protecting the computer from attacks such as buffer overflow attacks. EDB helps prevent the introduction and spread of malicious software, providing better data and system protection. Show more
Available
There is no data
uses multithreading
The ability to handle multiple tasks at the same time to improve productivity.
Available
There is no data
Main characteristics
Technological process
The small size of semiconductors means that this is a new generation chip.
14 nm
Average: 36.8 nm
28 nm
Average: 36.8 nm
Power Consumption (TDP)
The heat dissipation requirement (TDP) is the maximum amount of energy that can be dissipated by the cooling system. The lower the TDP, the less power will be consumed. Show more
205 W
Average: 67.6 W
95 W
Average: 67.6 W
PCI Express Edition
High-speed bus for connecting peripherals to a computer. Different versions determine the data transfer rate, and the number (x1, x4, x8, x16) indicates the number of logical lines for data transfer and determines the throughput and capabilities of the devices. Show more
3
max 5
Average: 2.9
max 5
Average: 2.9
Embedded options available
Not available
There is no data
Supports 64-bit system
64-bit system, unlike a 32-bit one, can support more than 4 GB of RAM. This increases productivity. It also allows you to run 64-bit applications.
Available
There is no data
Maximum temperature for processors
If the maximum temperature at which the processor operates is exceeded, a reset may occur.
84 °C
max 110
Average: 96 °C
72.4 °C
max 110
Average: 96 °C
Height
56.5 mm
Average: 47.1 mm
mm
Average: 47.1 mm
Width
76 mm
Average: 49.1 mm
mm
Average: 49.1 mm
Architecture codename
Skylake
Godaveri
Maximum Case Temperature (TCase)
Maximum allowable processor case temperature
84 °C
max 105
Average: 75.1 °C
74 °C
max 105
Average: 75.1 °C
Appointment
Server
Boxed Processor

FAQ

Can Intel Xeon Platinum 8180 and AMD A10-7890K work in 4K mode?

Intel Xeon Platinum 8180 - There is no data. AMD A10-7890K - There is no data.

How many PCIe lanes

Intel Xeon Platinum 8180 - 48. AMD A10-7890K - There is no data.

How much RAM does it support?

Intel Xeon Platinum 8180 supports 768 GB. AMD A10-7890K supports There is no dataGB.

How fast are the processors?

Intel Xeon Platinum 8180 operates on 2.5 GHz.1 GHz.

How many cores does the processor have?

Intel Xeon Platinum 8180 has 28 cores. AMD A10-7890K has 4 cores.

Do processors support ECC memory?

Intel Xeon Platinum 8180 - has. AMD A10-7890K - There is no data.

Does Intel Xeon Platinum 8180 have embedded graphics?

Intel Xeon Platinum 8180 - There is no data. AMD A10-7890K - AMD Radeon R7 Graphics

What kind of RAM is supported

Intel Xeon Platinum 8180 supports DDR4. AMD A10-7890K supports DDR3.

What is the socket of the processors?

Using FCLGA3647 to set Intel Xeon Platinum 8180. FM2+ is used to set AMD A10-7890K.

What architecture do they use?

Intel Xeon Platinum 8180 is built on the Skylake architecture. AMD A10-7890K is built on the Godaveri architecture.

Is the Intel Xeon Platinum 8180 CPU multiplier unlocked?

Intel Xeon Platinum 8180 - doesn't have. AMD A10-7890K - has.

How do processors perform in benchmarks?

According to PassMark, Intel Xeon Platinum 8180 scored 34786 points. AMD A10-7890K scored 3329 points.

What is the maximum frequency of processors?

Intel Xeon Platinum 8180 has a maximum frequency of 3.8 Hz. The maximum frequency of AMD A10-7890K reaches 4.3 Hz.

How much energy do they consume?

The power consumption of Intel Xeon Platinum 8180 can be up to 205 Watts. AMD A10-7890K has up to 205 Watts.