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Comparison AMD Ryzen 7 Vermeer 5700X OEM vs AMD Ryzen 7 Cezanne 5700G OEM

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AMD Ryzen 7 Vermeer 5700X OEM
AMD Ryzen 7 Cezanne 5700G OEM
AMD Ryzen 7 Vermeer 5700X OEMAMD Ryzen 7 Cezanne 5700G OEM
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Main
PCI-E 4.0 interface support. 32 MB L3 cache.
SeriesRyzen 7Ryzen 7
Code nameVermeer (Zen 3)Cezanne (Zen 3)
SocketAMD AM4AMD AM4
Lithography7 nm7 nm
In boxOEMOEM
Cores and Threads
Cores8 cores8 cores
Threads16 threads16 threads
Multithreading
Speed
Clock speed3.4 GHz3.8 GHz
TurboBoost / TurboCore4.6 GHz4.6 GHz
Cache
L1 cache512 KB
L2 cache4096 KB4096 KB
L3 cache32 MB16 MB
Specs
IGPis absentRadeon Vega 8
TDP65 W65 W
Multiplier34
Free multiplier
PCI Express4.03.0
Max. operating temperature90 °С95 °С
Passmark CPU Mark26786 score(s)24689 score(s)
Memory
Max. DDR4 speed3200 MHz3200 MHz
Channels2
Added to E-Catalogmay 2022september 2021

Code name

This parameter characterizes, firstly, the technical process (see above), and secondly, some features of the internal structure of processors. A new (or at least updated) codename is introduced to the market with each new CPU generation; chips of the same architecture are "coevals", but may belong to different series (see above). At the same time, one generation can include both one and several code names.

Here are the most common Intel codenames today: Cascade Lake-X (10th gen), Comet Lake (10th gen), Comet Lake Refresh (10th generation), Rocket Lake (11th generation), Alder Lake (12th generation), Raptor Lake (13th generation), Raptor Lake Refresh (14th generation).

For AMD, this list includes Zen+ Picasso, Zen2 Matisse, Zen2 Renoir, Zen3 Vermeer, Zen3 Cezanne, Zen4 Raphael and Zen4 Phoenix.

Clock speed

The number of cycles per second that the processor produces in its normal operating mode. A clock is a single electrical impulse used to process data and synchronize the processor with the rest of the computer system. Different operations may require fractions of a clock or several clocks, but anyway, the clock frequency is one of the main parameters characterizing the performance and speed of the processor — all other things being equal, a processor with a higher clock frequency will work faster and better cope with significant loads. At the same time, it should be taken into account that the actual performance of the chip is determined not only by the clock frequency, but also by a number of other characteristics — from the series and architecture (see the relevant paragraphs) to the number of cores and support for special instructions. So it makes sense to compare by clock frequency only chips with similar characteristics belonging to the same series and generation.

L1 cache

The amount of Level 1 (L1) cache provided by the processor.

Cache is an intermediate memory buffer into which the most frequently used data from RAM is written when the processor is running. This speeds up access to them and has a positive effect on system performance. The larger the cache, the more data can be stored in it for quick access and the higher the performance. Level 1 cache has the highest performance and the smallest volume — up to 128 KB. It is an integral part of any processor.

L3 cache

The amount of cache level 3 (L3) provided in the processor.

Cache is an intermediate memory buffer into which the most frequently used data from RAM is written when the processor is running. This speeds up access to them and has a positive effect on system performance. The larger the cache, the more data can be stored in it for quick access and the higher the performance.

IGP

Model of the integrated video core installed in the processor. See "Integrated Graphics" for details on the core itself. And knowing the name of the graphics chip model, you can find its detailed characteristics and clarify the performance of the processor when working with video.

In terms of specific models, Intel processors use HD Graphics, specifically 510, 530, 610, 630 and UHD Graphics with models 610, 630, 730, 750, 770. AMD chips, in turn, can carry Radeon Graphics, Radeon R5 series, Radeon R7 series, and Radeon RX Vega graphics cards.

At the same time, processors without a graphics core are appropriate for purchase if you plan to fully assemble a PC with a graphics card. In this case, overpaying for a processor with a graphics core does not make sense.

Multiplier

The coefficient on the basis of which the value of the processor clock frequency is displayed. The latter is calculated by multiplying the multiplier by the system bus frequency (see System bus frequency). For example, with a system bus frequency of 533 MHz and a multiplier of 4, the processor clock speed will be approximately 2.1 GHz.

Free multiplier

The ability to change the value of the multiplier (see Multiplier) of the processor at will. Unlike overclocking ("overclocking") in its classical sense, often associated with hacking processor settings, a free multiplier makes it possible to "legally" and quite easily change the processor clock frequency — most often this is implemented through BIOS settings. At the same time, do not forget that the increased frequency of the processor requires the appropriate efficiency of the cooling system.

PCI Express

Universal interface for connecting internal peripherals. Provides generally higher speeds than SATA. In fact, the supported data transfer rate may be different — depending on the version of the interface and the number of lines (data transmission channels). Version 3.0 provides speeds of about 1 GB/s per lane, PCI-E 4.0 about 2 GB/s per lane, and 5.0 up to 4 GB/s per lane.

Max. operating temperature

The maximum temperature at which the processor is able to effectively continue to work — when heated above this temperature, most modern processors are turned off in order to avoid the unpleasant consequences of overheating (up to the burning of the chip). The higher the maximum operating temperature, the less demanding the processor is on the cooling system, however, the cooling power anyway should not be lower than TDP (see Heat Dissipation (TDP)).
AMD Ryzen 7 Vermeer often compared
AMD Ryzen 7 Cezanne often compared