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AMD Ryzen 7 9800X3D: Top “gaming” CPU with MT perf boost

Video 1/2: Adobe Premiere Pro

High gaming performance is something that is kind of expected from the AMD R7 9800X3D. Compared to its predecessor (R7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The R7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU more versatile – better able to handle multiple usage scenarios.

AMD Ryzen 7 9800X3D in detail

In short, the Ryzen 7 9800X3D can be said to be a Ryzen 7 7800X3D that has had its Zen 4 cores swapped out for ones with the newer Zen 5 architecture. What has remained unchanged from the previous model (R7 7800X3D) of the Ryzen 7 9800X3D processor is the large (96 MB) cache, which is the source of the famed gaming performance. However, there is one important difference regarding how this cache is constituted.

Instead of the chiplet with 3D V-Cache being placed on top of the chiplet with the CPU cores (which was previously on the bottom), it is now the other way around. This means that the chiplet with the CPU cores is fitted on top, while the cache is the underlying layer underneath. A detailed description of the situation can be found in this article. The new layout has a positive impact on the operating characteristics, thanks to which the processor can be better cooled and AMD also allows overclocking for the first time in a processor with 3D V-Cache.

The aforementioned layer swap does not directly affect the performance that the processor has at a certain fixed clock frequency (or the so-called IPC), but there is an indirect effect after a boost is engaged. Thanks to better heat dissipation, the processor can boost more aggressively and can afford higher power consumption during demanding tasks (this allows the processor to run at higher CPU core clock speeds) than the Ryzen 7 7800X3D, which is harder to cool.

In games, with typically lower consumption, this effect will be less pronounced. The improved heat dissipation capability of the R7 9800X3D is behind the increase in official CPU core clock speeds. The specs list a 500-megahertz increase in base clock speed across generations (4.7GHz vs. 4.2GHz). But in practice, the all-core boost is faster, operating at higher clock speeds.

There was also an increase (by 200 MHz) at the SC boost level for single-threaded loads. Here again, the better cooling capabilities mean it is easier to achieve SC boost, for example even with cheaper coolers. You can explore everything in detail in our detailed tests within the following chapters of the article.

Now, for the sake of completeness, on the basics: the Ryzen 7 9800X3D is a processor that has one active chiplet – completely so. This means 8 cores (AMD Zen 5) in 16 threads, as it supports SMT (two threads per core).
Please note: The article continues in the following chapters.

ManufacturerAMDAMDIntel
LineRyzen 7Ryzen 7Core i7
SKU9800X3D7800X3D14700K
CodenameGranite RidgeRaphaelRaptor Lake Refresh
CPU microarchitectureZen 5Zen 4Golden Cove (P) + Gracemont (E)
Manufacturing node4 nm + 6 nm + ? nm5 nm + 6 nm + 7 nm7 nm („Intel 7 Ultra“)
SocketAM5AM5LGA 1700
Launch date11/07/202404/06/202310/17/2023
Launch price479 USD449 USD409 USD
Core count888+12
Thread count161628
Base frequency4.7 GHz4.2 GHz3.4 GHz (P)/2.5 GHz (E)
Max. Boost (1 core)5.2 GHz (unofficially 5,25 GHz)5.0 GHz (unofficially 5.05 GHz)5.6 GHz (P)/4.3 GHz (E)
Max. boost (all-core)N/AN/A5.5 GHz (P)/4.3 GHz (E)
Typ boostuPB 2.0PB 2.0TBM 3.0
L1i cache 32 kB/core32 kB/core32 kB/core (P), 64 kB/core (E)
L1d cache 48 kB/core32 kB/core48 kB/core (P), 32 kB/core (E)
L2 cache 1 MB/core1 MB/core2 MB/core (P), 3× 4 MB/4 cores (E)
L3 cache 1× 96 MB1× 96 MB1× 33 MB
TDP120 W120 W125 W
Max. power draw during boost170 W (PPT)162 W (PPT)253 W (PL2)
Overclocking supportYesNoYes
Memory (RAM) support DDR5-5600DDR5-5200DDR5-5600/DDR4-3200
Memory channel count2× 64 bit2× 64 bit2× 64 bit
RAM bandwidth89.6 GB/s83.2 GB/s89.6 GB/s/51.2 GB/s
ECC RAM support Yes (depends on motherboard support)Yes (depends on motherboard support)Yes (with vPro/W680)
PCI Express support 5.05.05.0/4.0
PCI Express lanes×16 + ×4 + ×4×16 + ×4 + ×4×16 (5.0) + ×4 (4.0)
Chipset downlinkPCIe 4.0 ×4PCIe 4.0 ×4DMI 4.0 ×8
Chipset downlink bandwidth8.0 GB/s duplex8,0 GB/s duplex16.0 GB/s duplex
BCLK100 MHz100 MHz100 MHz
Die size70.6 mm² + 118 mm² + ? mm²66,3 + 118 + 36 mm²~257 mm²
Transistor count8,16 + 3,37 + ? mld.6,57 + 3,37 + 4,7 mld.? mld.
TIM used under IHSSolderSolderSolder
Boxed cooler in packageNoNoNo
Instruction set extensionsSSE4.2, AVX2, FMA, SHA, VAES (256-bit), AVX-512, VNNISSE4.2, AVX2, FMA, SHA, VAES (256-bit), AVX-512, VNNISSE4.2, AVX2, FMA, SHA, VNNI (256-bit), GNA 3.0, VAES (256-bit), vPro
VirtualizationAMD-V, IOMMU, NPTAMD-V, IOMMU, NPTVT-x, VT-d, EPT
Integrated GPUAMD RadeonAMD RadeonUHD 770
GPU architectureRDNA 2RDNA 2Xe LP (Gen. 12)
GPU: shader count128128256
GPU: TMU count8816
GPU: ROP count448
GPU frequency400–2200 MHz400–2200 MHz300–1600 MHz
Display outputsDP 2.0, HDMI 2.1DP 2.0, HDMI 2.1DP 1.4a, HDMI 2.1
Max. resolution3840 × 2160 px (60 Hz)? *3840 × 2160 px (60 Hz)7680 × 4320 (60 Hz)
HW video encodeHEVC, VP9HEVC, VP9HEVC, VP9
HW video decodeAV1, HEVC, VP9AV1, HEVC, VP9AV1, HEVC, VP9
/* Here you can add custom CSS for the current table */ /* Lean more about CSS: https://en.wikipedia.org/wiki/Cascading_Style_Sheets */ /* To prevent the use of styles to other tables use "#supsystic-table-3336" as a base selector for example: #supsystic-table-3336 { ... } #supsystic-table-3336 tbody { ... } #supsystic-table-3336 tbody tr { ... } */
* We do not have certainty on this parameter. AMD does not specify the maximum resolution and maximum refresh rate in publicly available materials. However, it is possible that it will be the same as for Ryzen 7000s, i.e. 3840 × 2160 px (60 Hz).;



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Gaming tests

We test performance in games in four resolutions with different graphics settings. To warm up, there is more or less a theoretical resolution of 1280 × 720 px. We had been tweaking graphics settings for this resolution for a long time. We finally decided to go for the lowest possible (Low, Lowest, Ultra Low, …) settings that a game allows.

One could argue that a processor does not calculate how many objects are drawn in such settings (so-called draw calls). However, with high detail at this very low resolution, there was not much difference in performance compared to FHD (which we also test). On the contrary, the GPU load was clearly higher, and this impractical setting should demonstrate the performance of a processor with the lowest possible participation of a graphics card.

At higher resolutions, high settings (for FHD and QHD) and highest (for UHD) are used. In Full HD it’s usually with Anti-Aliasing turned off, but overall, these are relatively practical settings that are commonly used.

The selection of games was made considering the diversity of genres, player popularity and processor performance requirements. For a complete list, see Chapters 7–16. A built-in benchmark is used when a game has one, otherwise we have created our own scenes, which we always repeat with each processor in the same way. We use OCAT to record fps, or the times of individual frames, from which fps are then calculated, and FLAT to analyze CSV. Both were developed by the author of articles (and videos) from GPUreport.cz. For the highest possible accuracy, all runs are repeated three times and the average values of average and minimum fps are drawn in the graphs. These multiple repetitions also apply to non-gaming tests.

Computing tests

Let’s start lightly with PCMark 10, which tests more than sixty sub-tasks in various applications as part of a complete set of “benchmarks for a modern office”. It then sorts them into fewer thematic categories and for the best possible overview we include the gained points from them in the graphs. Lighter test tasks are also represented by tests in a web browser – Speedometer and Octane. Other tests usually represent higher load or are aimed at advanced users.

We test the 3D rendering performance in Cinebench. In R20, where the results are more widespread, but mainly in R23. Rendering in this version takes longer with each processor, cycles of at least ten minutes. We also test 3D rendering in Blender, with the Cycles render in the BMW and Classroom projects. You can also compare the latter with the test results of graphics cards (contains the same number of tiles).

We test how processors perform in video editing in Adobe Premiere Pro and DaVinci Resolve Studio 17. We use a PugetBench plugin, which deals with all the tasks you may encounter when editing videos. We also use PugetBench services in Adobe After Effects, where the performance of creating graphic effects is tested. Some subtasks use GPU acceleration, but we never turn it off, as no one will do it in practice. Some things don’t even work without GPU acceleration, but on the contrary, it’s interesting to see that the performance in the tasks accelerated by the graphics card also varies as some operations are still serviced by the CPU.

We test video encoding in HandBrake and benchmarks (x264 HD and HWBot x265). The x264 HD benchmark works in 32-bit mode (we did not manage to run 64-bit consistently on W10 and in general on newer OSs it may be unstable and show errors in video). In HandBrake we use the x264 processor encoder for AVC and x265 for HEVC. Detailed settings of individual profiles can be found in the corresponding chapter 25. In addition to video, we also encode audio, where all the details are also stated in the chapter of these tests. Gamers who record their gameplay on video can also have to do with the performance of processor encoders. Therefore, we also test the performance of “processor broadcasting” in two popular applications OBS Studio and Xsplit.

We also have two chapters dedicated to photo editing performance. Adobe has a separate one, where we test Photoshop via PugetBench. However, we do not use PugetBench in Lightroom, because it requires various OS modifications for stable operation, and overall we rather avoided it (due to the higher risk of complications) and create our own test scenes. Both are CPU intensive, whether it’s exporting RAW files to 16-bit TIFF with ProPhotoRGB color space or generating 1:1 thumbnails of 42 lossless CR2 photos.

However, we also have several alternative photo editing applications in which we test CPU performance. These include Affinity Photo, in which we use a built-in benchmark, or XnViewMP for batch photo editing or ZPS X. Of the truly modern ones, there are three Topaz Labz applications that use AI algorithms. DeNoise AI, Gigapixel AI and Sharpen AI. Topaz Labs often and happily compares its results with Adobe applications (Photoshop and Lightroom) and boasts of better results. So we’ll see, maybe we’ll get into it from the image point of view sometime. In processor tests, however, we are primarily focused on performance.

We test compression and decompression performance in WinRAR, 7-Zip and Aida64 (Zlib) benchmarks, decryption in TrueCrypt and Aida64, where in addition to AES there are also SHA3 tests. In Aida64, we also test FPU in the chapter of mathematical calculations. From this category you may also be interested in the results of Stockfish 13 and the number of chess combinations achieved per unit time. We perform many tests that can be included in the category of mathematics in SPECworkstation 3.1. It is a set of professional applications extending to various simulations, such as LAMMPS or NAMD, which are molecular simulators. A detailed description of the tests from SPECworkstation 3.1 can be found at spec.org. We do not test 7-zip, Blender and HandBrake from the list for redundancy, because we test performance in them separately in applications. A detailed listing of SPECWS results usually represents times or fps, but we graph “SPEC ratio”, which represents gained points—higher means better.

Processor settings…

We test processors in the default settings, without active PBO2 (AMD) or ABT (Intel) technologies, but naturally with active XMP 2.0.

… and app updates

The tests should also take into account that, over time, individual updates may affect performance comparisons. Some applications are used in portable versions, which are not updated or can be kept on a stable version, but this is not the case for some others. Typically, games update over time. On the other hand, even intentional obsolescence (and testing something out of date that already behaves differently) would not be entirely the way to go.

In short, just take into account that the accuracy of the results you are comparing decreases a bit over time. To make this analysis easier for you, we indicate when each processor was tested. You can find this in the dialog box, where there is information about the test date of each processor. This dialog box appears in interactive graphs, just hover the mouse cursor over any bar.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Methodology: how we measure power draw

Measuring CPU power consumption is relatively simple, much easier than with graphics cards. All power goes through one or two EPS cables. We also use two to increase the cross-section, which is suitable for high performance AMD processors up to sTR(X)4 or for Intel HEDT, and in fact almost for mainstream processors as well. We have Prova 15 current probes to measure current directly on the wires. This is a much more accurate and reliable way of measuring than relying on internal sensors.

The only limitation of our current probes may be when testing the most powerful processors. These already exceed the maximum range of 30 A, at which high accuracy is guaranteed. For most processors, the range is optimal (even for measuring a lower load, when the probes can be switched to a lower and more accurate range of 4 A), but we will test models with power consumption over 360 W on our own device, a prototype of which we have already built. Its measuring range will no longer be limiting, but for the time being we will be using the Prova probes in the near future.

The clamps are properly reset before each measurement and connected to a Keysight U1231A multimeter, which samples the current values during the tests via the IR-USB interface and logs them to a spreadsheet at one-second intervals. From this we can then create line graphs of power draw curves. However, we always write the average values in the bar graphs. Measurements are taken in different load modes. The lowest one is idle Windows 10 on the desktop. This measurement takes place on a well “cooled down” system.

   

Audio encoding (FLAC) represents a higher load, but processors use only one core or one thread for this. Higher loads, where more cores are involved, are games. We test power consumption in F1 2020, Shadow of the Tomb Raider and Total War Saga: Troy in 1920 × 1080 px. In this resolution, the power consumption is usually the highest or at least similar to that in lower or higher resolutions, where in most cases the CPU power draw rather decreases due to its lower utilization.

Like most motherboard manufacturers, we too ignore the time limit for “Tau”, after which the power consumption is to be reduced from the PL2 boost limit (when it exceeds the TDP) to the TDP/PL1 value, recommended by Intel, in our tests. This means that neither the power draw nor the clock speed after 56 seconds of higher load does not decrease and the performance is kept stable with just small fluctuations. We had been considering whether or not to respect the Tau. In the end, we decided not to because the vast majority of users won’t either, and therefore the results and comparisons would be relatively uninteresting. The solution would be to test with and without a power limit, but this is no longer possible due to time requirements. We will pay more attention to the behavior of PL2 in motherboard tests, where it makes more sense.

We always use motherboards with extremely robust, efficient VRM, so that the losses on MOSFETs distort the measured results as little as possible and the test setups are powered by a high-end 1200 W BeQuiet! Dark Power Pro 12 power supply. It is strong enough to supply every processor, even with a fully loaded GeForce RTX 3080, and at the same time achieves above-standard efficiency even at lower load. For a complete overview of test setup components, see Chapter 5 of this article.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Methodology: temperature and clock speed tests

When choosing a cooler, we eventually opted for Noctua NH-U14S. It has a high performance and at the same time there is also the TR4-SP3 variant designed for Threadripper processors. It differs only by the base, the radiator is otherwise the same, so it will be possible to test and compare all processors under the same conditions. The fan on the NH-U14S cooler is set to a maximum speed of 1,535 rpm during all tests.

Measurements always take place on a bench-wall in a wind tunnel which simulates a computer case, with the difference that we have more control over it.

System cooling consists of four Noctua NF-S12A PWM fans, which are in an equilibrium ratio of two at the inlet and two at the outlet. Their speed is set at a fixed 535 rpm, which is a relatively practical speed that is not needed to be exceeded. In short, this should be the optimal configuration based on our tests of various system cooling settings.

It is also important to maintain the same air temperature around the processors. Of course, this also changes with regard to how much heat a particular processor produces, but at the inlet of the tunnel it must always be the same for accurate comparisons. In our air-conditioned test lab, it is currently in the range of 21–21.3 °C.

Maintaining a constant inlet temperature is necessary not only for a proper comparison of processor temperatures, but especially for unbiased performance comparisons. Trend of clock speed and especially single-core boost depends on the temperature. In the summer at higher temperatures, processors may be slower in living spaces than in the winter.

For Intel processors, we register the maximum core temperature for each test, usually of all cores. These maximum values are then averaged and the result is represented by the final value in the graph. From the outputs of single-threaded load, we only pick the registered values from active cores (these are usually two and alternate during the test). It’s a little different with AMD processors. They don’t have temperature sensors for every core. In order for the procedure to be as methodically as possible similar to that applied on Intel processors, the average temperature of all cores is defined by the highest value reported by the CPU Tdie sensor (average). For single-threaded load, however, we already use a CPU sensor (Tctl/Tdie), which usually reports a slightly higher value, which better corresponds to the hotspots of one or two cores. But these values as well as the values from all internal sensors must be taken with a grain of salt, the accuracy of the sensors varies across processors.

Clock speed evaluation is more accurate, each core has its own sensor even on AMD processors. Unlike temperatures, we plot average clock speed values during tests in graphs. We monitor the temperature and clock speed of the processor cores in the same tests, in which we also measure the power consumption. And thus, gradually from the lowest load level on the desktop of idle Windows 10, through audio encoding (single-threaded load), gaming load in three games (F1 2020, Shadow of the Tomb Raider and Total War Saga: Troy), to a 10-minute load in Cinebench R23 and the most demanding video encoding with the x264 encoder in HandBrake.

To record the temperatures and clock speed of the processor cores, we use HWiNFO, in which sampling is set to two seconds. With the exception of audio encoding, the graphs always show the averages of all processor cores in terms of temperatures and clock speed. During audio encoding, the values from the loaded core are given.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Test setup

Noctua NH-U14S cooler
G.Skill Trident Z5 Neo memory (2× 16 GB, 6000 MHz/CL30)
MSI RTX 3080 Gaming X Trio graphics card
2× SSD Patriot Viper VPN100 (512 GB + 2 TB)
BeQuiet! Dark Power Pro 12 power supply with 1200 W

Test configuration
CPU coolerNoctua NH-U14S@12 V
Thermal compoundNoctua NT-H2
Motherboard *Acc. to processor: ASRock X870E Taichi, Gigabyte B650E Aorus Pro X USB4, ASRock B650E Taichi, MSI MEG X670E Ace, Asus ROG Strix Z790-E Gaming WiFi, MEG X570 Ace, MEG Z690 Unify, MAG Z690 Tomahawk WiFi DDR4, Z590 Ace, MSI MEG X570 Ace or MSI MEG Z490 Ace
Memory (RAM)Acc. to platform: z DDR5 G.Skill Trident Z5 Neo (2× 16 GB, 6000 MHz/CL30) a Kingston Fury Beast (2× 16 GB, 5200 MHz/CL40) a DDR4 Patriot Blackout, (4× 8 GB, 3600 MHz/CL18)
Graphics cardMSI RTX 3080 Gaming X Trio w/o Resizable BAR
SSD2× Patriot Viper VPN100 (512 GB + 2 TB)
PSUBeQuiet! Dark Power Pro 12 (1200 W)
/* Here you can add custom CSS for the current table */ /* Lean more about CSS: https://en.wikipedia.org/wiki/Cascading_Style_Sheets */ /* To prevent the use of styles to other tables use "#supsystic-table-3338" as a base selector for example: #supsystic-table-3338 { ... } #supsystic-table-3338 tbody { ... } #supsystic-table-3338 tbody tr { ... } */
* We use the following BIOSes on motherboards. For ASrock X870E Taichi v3.10, for the B650E Aorus Pro X USB4 we use F4c, for the Asus ROG Strix Z790-E Gaming WiFi we use v0502, for the MSI MEG X670E Ace we use v1.10NPRP, for the MEG X570 Ace we use v1E, for the MEG Z690 Unify we use v10, for the MAG Z690 Tomahawk WiFi DDR4 we use v11, for the MEG Z590 Ace we use v1.14 and for the MEG Z490 Ace we use v17.

Note: The graphics drivers we use are Nvidia GeForce 466.77 and the Windows 10 OS build is 19045 (22H2) at the time of testing.

Processors from other platforms are tested on the motherboards MSI MEG Z690 Unify, MAG Z490 Tomahawk WiFi DDR4, Z590 Ace a Z490 Ace, MEG Z690 Unify (all Intel) and MEG X570 Ace, MEG X670E Ace, ASRock X870E Taichi (AMD). (AMD).

         

         

On platforms supporting DDR5 memory, we use two different sets of modules. For more powerful processors with “X” (AMD) or “K” (Intel) in the name, the faster G.Skill Trident Z5 Neo (2×16 GB, 6000 MHz/CL30) memory. In the case of cheaper processors (without X or K at the end of the name), the slower Kingston Fury Beast (2×16 GB, 5200 MHz/CL40) modules. But this is more or less just symbolism, the bandwidth is very high for both kits, it is not a bottleneck, and the difference in processor performance is very small, practically negligible, across the differently fast memory kits.


High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

3DMark

For our tests, we use 3DMark Professional, and of the specific tests we use: Night Raid (DirectX 12), Fire Strike (DirectX 11) and Time Spy (DirectX 12). In the graphs you will find partial CPU scores, combined scores, but also graphics scores. You can find out to what extent the given processor limits the graphics card.









High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API DirectX 12; no extra settings; test scene: built-in benchmark.

   



Test environment: resolution 1920 × 1080 px; graphics settings preset Low; API DirectX 12; extra settings Anti-Aliasing: low; test scene: built-in benchmark.

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: built-in benchmark.



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra High; API DirectX 12; no extra settings; test scene: built-in benchmark.

   


High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Borderlands 3

Test environment: resolution 1280 × 720 px; graphics settings preset Very Low; API DirectX 12; no extra settings; test scene: built-in benchmark.

   



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 12; extra settings Anti-Aliasing: None; test scene: built-in benchmark.



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: built-in benchmark.

   



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra; API DirectX 12; no extra settings; test scene: built-in benchmark.

   




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Counter-Strike: GO

Test environment: resolution 1280 × 720 px; lowest graphics settings and w/o Anti-Aliasing, API DirectX 9; test platform script with Dust 2 map tour.

   



Test environment: resolution 1920 × 1080 px; high graphics settings and w/o Anti-Aliasing, API DirectX 9; test platform script with Dust 2 map tour.

   



Test environment: resolution 2560 × 1440 px; high graphics settings; 4× MSAA, API DirectX 9; test platform script with Dust 2 map tour.



Test environment: resolution 3840 × 2160 px; very high graphics settings; 4× MSAA, API DirectX 9; test platform script with Dust 2 map tour.

   




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Cyberpunk 2077

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API DirectX 12; no extra settings; test scene: custom (Little China).

   



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: custom (Little China).

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: custom (Little China).



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra; API DirectX 12; no extra settings; test scene: custom (Little China).

   




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

DOOM Eternal

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API Vulkan; extra settings Present From Compute: off, Motion Blur: Low, Depth of Field Anti-Aliasing: off; test scene: custom.

   



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API Vulkan; extra settings Present From Compute: on, Motion Blur: High, Depth of Field Anti-Aliasing: off; test scene: custom.

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API Vulkan; extra settings Present From Compute: on, Motion Blur: High, Depth of Field Anti-Aliasing: on; test scene: custom.



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra Nightmare; API Vulkan; extra settings Present From Compute: on, Motion Blur: High, Depth of Field Anti-Aliasing: on; test scene: custom.

   




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

F1 2020

Test environment: resolution 1280 × 720 px; graphics settings preset Ultra Low; API DirectX 12; extra settings Anti-Aliasing: off, Anisotropic Filtering: off; test scene: built-in benchmark (Australia, Clear/Dry, Cycle).

   



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 12; extra settings Anti-Aliasing: off, Skidmarks Blending: off; test scene: built-in benchmark (Australia, Clear/Dry, Cycle).

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; extra settings Anti-Aliasing: TAA, Skidmarks Blending: off; test scene: built-in benchmark (Australia, Clear/Dry, Cycle).



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra High; API DirectX 12; extra settings Anti-Aliasing: TAA, Skidmarks Blending: off; test scene: built-in benchmark (Australia, Clear/Dry, Cycle).




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Metro Exodus

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API DirectX 12; no extra settings test scene: built-in benchmark.



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: built-in benchmark.



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; no extra settings; test scene: built-in benchmark.



Test environment: resolution 3840 × 2160 px; graphics settings preset Extreme; API DirectX 12; no extra settings; test scene: built-in benchmark.


High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Microsoft Flight Simulator

Disclaimer: The performance of this game changes and improves frequently due to continuous updates. We verify the consistency of the results by re-testing the Ryzen 7 5900X processor before each measurement. In case of significant deviations, we discard the older results and start building the database from scratch. Due to the incompleteness of the MFS results, we do not use MFS to calculate the average gaming performance of the processors.

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API DirectX 11; extra settings Anti-Aliasing: off; test scene: custom (Paris-Charles de Gaulle, Air Traffic: AI, February 14, 9:00) autopilot: from 1000 m until hitting the terrain.

   



Test environment: resolution 1920 × 1080 px; graphics settings preset Low; API DirectX 11; extra settings Anti-Aliasing: off; test scene: custom (Paris-Charles de Gaulle, Air Traffic: AI, February 14, 9:00) autopilot: from 1000 m until hitting the terrain.

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 11; extra settings Anti-Aliasing: TAA; test scene: custom (Paris-Charles de Gaulle, Air Traffic: AI, February 14, 9:00) autopilot: from 1000 m until hitting the terrain.



Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra; API DirectX 11; extra settings Anti-Aliasing: TAA; test scene: custom (Paris-Charles de Gaulle, Air Traffic: AI, February 14, 9:00) autopilot: from 1000 m until hitting the terrain.

   




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Shadow of the Tomb Raider

Test environment: resolution 1280 × 720 px; graphics settings preset Lowest; API DirectX 12; extra settings Anti-Aliasing: off; test scene: built-in benchmark.

   



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 12; extra settings Anti-Aliasing: off; test scene: built-in benchmark.

   



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 12; extra settings Anti-Aliasing: TAA; test scene: built-in benchmark.



Test environment: resolution 3840 × 2160 px; graphics settings preset Highest; API DirectX 12; extra settings Anti-Aliasing: TAA; test scene: built-in benchmark.




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Total War Saga: Troy

Test environment: resolution 1280 × 720 px; graphics settings preset Low; API DirectX 11; no extra settings; test scene: built-in benchmark.



Test environment: resolution 1920 × 1080 px; graphics settings preset High; API DirectX 11; no extra settings; test scene: built-in benchmark.



Test environment: resolution 2560 × 1440 px; graphics settings preset High; API DirectX 11; no extra settings; test scene: built-in benchmark.



strong>Test environment: resolution 3840 × 2160 px; graphics settings preset Ultra; API DirectX 11; no extra settings; test scene: built-in benchmark.




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Overall gaming performance

To calculate average gaming performance, we normalized the Intel Core i7-11900K processor. The percentage differences of all other processors are based on this, with each of the games contributing an equal weight to the final result. To see exactly what the formula we use to arrive at each value looks like, see „New average CPU score measuring method“.










High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Gaming performance per euro






High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

PCMark








Geekbench




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Speedometer (2.0) and Octane (2.0)

Test environment: We’re using a portable version of Google Chrome (91.0.472.101) 64-bit so that real-time results are not affected by browser updates. GPU hardware acceleration is enabled as each user has in the default settings.



Note: The values in the graphs represent the average of the points obtained in the subtasks, which are grouped according to their nature into seven categories (Core language features, Memory and GC, Strings and arrays, Virtual machine and GC, Loading and Parsing, Bit and Math operations and Compiler and GC latency).









High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Cinebench R20


Cinebench R23



Blender@Cycles

Test environment: We use well-known projects BMW (510 tiles) and Classroom (2040 tiles) and renderer Cycles. Render settings are set to None, with which all the work falls on the CPU.



LuxRender (SPECworkstation 3.1)



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Adobe Premiere Pro (PugetBench)

Test environment: set of PugetBench tests. App version of Adobe Premiere Pro is 15.2.






























Disclaimer: Processor results from older tests are missing from the graphs due to inconsistencies with more recent measurements. A large comparison from Core i9-14900K/Ryzen 9 7950X to Intel Comet Lake/Core 10th Generation or AMD Ryzen 3000/Mattise processors can be found archived in this link.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

DaVinci Resolve Studio (PugetBench)

Test environment: set of PugetBench tests, test type: standard. We keep the version of the application (DaVinci Resolve Studio) at 19.0.0.69. Optimized for the neural engine (with support for the tensor cores of the GeForce RTX 3080). Exclusively in these tests, Nvidia 560.81 Studio graphics drivers are used.





























High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Graphics effects: Adobe After Effects

Test environment: set of PugetBench tests. App version of Adobe After Effects is 18.2.1.
































Disclaimer: Processor results from older tests are missing from the graphs due to inconsistencies with more recent measurements. A large comparison from Core i9-14900K/Ryzen 9 7950X to Intel Comet Lake/Core 10th Generation or AMD Ryzen 3000/Mattise processors can be found archived in this link.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

HandBrake

   

Test environment: For video conversion we’re using a 4K video LG Demo Snowboard with a 43,9 Mb/s bitrate. AVC (x264) and HEVC (x265) profiles are set for high quality and encoder profiles are “slow”. HandBrake version is 1.3.3 (2020061300).

Disclaimer: For big.LITTLE-based processors, the result is missing in some tests. This is because they didn’t scale properly with P cores and the achieved performance was too low. In such cases it is indeed possible to force performance on all cores, but this does not happen by default at the user level. To avoid creating the illusion in some cases that measured results such as those presented in the graphs are normally achieved, we omit them. However, these are a negligible fraction of the total set of test results.

x264 and x265 benchmarks




SVT-AV1

Test environment: We are encoding a short, publicly available sample park_joy_2160p50.y4m: uncompressed video 4096 × 2160 px, 8bit, 50 fps. Length is 500 frames with encoding quality set to 6 which makes the encoding still relatively slow. This test can make use of the AVX2 i AVX-512 instructions.

Version: SVT-AV1 Encoder Lib v0.8.7-61-g685afb2d via FFMpeg N-104429-g069f7831a2-20211026 (64bit)
Build from: https://github.com/BtbN/FFmpeg-Builds/releases
Command line: ffmpeg.exe -i “park_joy_2160p50.y4m” -c:v libsvtav1 -rc 0 -qp 55 -preset 6 -f null output.webm



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Audio encoding

Test environment: Audio encoding is done using command line encoders, we measure the time it takes for the conversion to finish. The same 42-minute long 16-bit WAV file (stereo) with 44.1 kHz is always used (Love Over Gold by Dire Straits album rip in a single audio file).

Encoder settings are selected to achieve maximum or near maximum compression. The bitrate is relatively high, with the exception of lossless FLAC of about 200 kb/s.

Note: These tests measure single-thread performance.

FLAC: reference encoder 1.3.2, 64-bit build. Launch options: flac.exe -s -8 -m -e -p -f

MP3: encoder lame3.100.1, 64-bit build (Intel 19 Compiler) from RareWares. Launch options: lame.exe -S -V 0 -q 0

AAC: uses Apple QuickTime libraries, invoked through the application from the command line, QAAC 2.72, 64-bit build, Intel 19 Compiler (does not require installation of the whole Apple package). Launch options: qaac64.exe -V 100 -s -q 2

Opus: reference encoder 1.3.1, Launch options: opusenc.exe –comp 10 –quiet –vbr –bitrate 192



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Broadcasting

Test environment: Applications OBS Studio and Xsplit. We’re using the built-in benchmark (scene Australia, Clear/Dry, Cycle) in F1 2020, in a resolution of 2560 × 1440 px and the same graphics settings, as with standard game performance tests. Thanks to this, we can measure the performance decrease if you record your gameplay with the x264 software encoder while playing. The output is 2560 × 1440 px at 60 fps.






High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Adobe Photoshop (PugetBench)

Test environment: set of PugetBench tests. App version of Adobe Photoshop is 22.4.2.



















Adobe Lightroom Classic

Test environment: With the settings above, we export 42 uncompressed .CR2 (RAW Canon) photos with a size of 20 Mpx. Then we create 1:1 previews from them, which also represent one of the most processor intensive tasks in Lightroom. The version of Adobe Lightroom Classic is 10.3.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Affinity Photo (benchmark)

Test environment: built-in benchmark.





Topaz Labs AI apps

Topaz DeNoise AI, Gigapixel AI and Sharpen AI. These single-purpose applications are used for restoration of low-quality photos. Whether it is high noise (caused by higher ISO), raster level (typically after cropping) or when something needs extra sharpening. AI performance is always used.

Test settings for Topaz Labs applications. DeNoise AI, Gigapixel AI and Sharpen AI, left to right. Each application has one of the three windows

Test environment: As part of batch editing, 42 photos with a lower resolution of 1920 × 1280 px are processed, with the settings from the images above. DeNoise AI is in version 3.1.2, Gigapixel in 5.5.2 and Sharpen AI in 3.1.2.



The processor is used for acceleration (and high RAM allocation), but you can also switch to the GPU

XnViewMP

Test environment: XnViewMP is finally a photo-editor for which you don’t have to pay. At the same time, it uses hardware very efficiently. In order to achieve more reasonable comparison times, we had to create an archive of up to 1024 photos, where we reduce the original resolution of 5472 × 3648 px to 1980 × 1280 px and filters with automatic contrast enhancement and noise reduction are also being applied during this process. We use 64-bit portable version 0.98.4.

Zoner Photo Studio X

Test environment: In Zoner Photo Studio X we convert 42 .CR2 (RAW Canon) photos to JPEG while keeping the original resolution (5472 × 3648 px) at the lowest possible compression, with the ZPS X profile ”high quality for archival”.



UHigh gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

WinRAR 6.01

7-Zip 19.00






High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

TrueCrypt 7.1a






Aida64 (AES, SHA3)




High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Disclaimer: For big.LITTLE-based processors, the result is missing in some tests. This is because they didn’t scale properly with P cores and the achieved performance was too low. In such cases it is indeed possible to force performance on all cores, but this does not happen by default at the user level. To avoid creating the illusion in some cases that measured results such as those presented in the graphs are normally achieved, we omit them. However, these are a negligible fraction of the total set of test results.

Y-cruncher



Stockfish 13

Test environment: Host for the Stockfish 13 engine is a chess app Arena 2.0.1, build 2399.


Aida64, FPU tests




FSI (SPECworkstation 3.1)



Kirchhoff migration (SPECworkstation 3.1)

Python36 (SPECworkstation 3.1)



SRMP (SPECworkstation 3.1)

Octave (SPECworkstation 3.1)


FFTW (SPECworkstation 3.1)



Convolution (SPECworkstation 3.1)

CalculiX (SPECworkstation 3.1)

Note: If a processor is missing a SPECworkstation test result, it is because the application failed to execute it for some reason. In this case, “error” is written to the chart instead of a numeric value.



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

RodiniaLifeSci (SPECworkstation 3.1)





WPCcfd (SPECworkstation 3.1)

Poisson (SPECworkstation 3.1)

LAMMPS (SPECworkstation 3.1)





NAMD (SPECworkstation 3.1)





High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Memory tests…




… and cache tests (L1, L2, L3)












Note: The L3 cache results, at least with our component configuration, could not be measured in AIDA64, the corresponding application windows remained empty. Tested with older versions as well as with the latest one (6.60.5900).



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Processor power draw curve



High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Disclaimer: For big.LITTLE-based processors, the result is missing in some tests. This is because they didn’t scale properly with P cores and the achieved performance was too low. In such cases it is indeed possible to force performance on all cores, but this does not happen by default at the user level. To avoid creating the illusion in some cases that measured results such as those presented in the graphs are normally achieved, we omit them. However, these are a negligible fraction of the total set of test results.

Average processor power draw









High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Performance per watt





High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Disclaimer: For big.LITTLE-based processors, the result is missing in some tests. This is because they didn’t scale properly with P cores and the achieved performance was too low. In such cases it is indeed possible to force performance on all cores, but this does not happen by default at the user level. To avoid creating the illusion in some cases that measured results such as those presented in the graphs are normally achieved, we omit them. However, these are a negligible fraction of the total set of test results.

Achieved CPU clock speed








High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Disclaimer: For big.LITTLE-based processors, the result is missing in some tests. This is because they didn’t scale properly with P cores and the achieved performance was too low. In such cases it is indeed possible to force performance on all cores, but this does not happen by default at the user level. To avoid creating the illusion in some cases that measured results such as those presented in the graphs are normally achieved, we omit them. However, these are a negligible fraction of the total set of test results.

CPU temperature









High gaming performance is something that is kind of expected from the AMD Ryzen 7 9800X3D. Compared to its predecessor (Ryzen 7 7800X3D), however, the cooling options have been greatly improved, paving the way for higher clock speeds. The Ryzen 7 9800X3D has thus advanced especially in terms of multithreaded, but also single-threaded performance. This makes this CPU with 3D V-Cache more versatile – better able to handle multiple usage scenarios.

Conclusion

In terms of gaming usage, not much has changed with the Ryzen 7 9800X3D compared to the Ryzen 7 7800X3D. But that doesn’t mean there is anything wrong. It’s still the case that the Ryzen 7 9800X3D (as well as the R7 7800X3D) is an elite processor for a gaming PC. Highest gaming performance at simultaneously nearly the lowest power consumption.

The power efficiency in games is absolutely top-notch. It’s at a level that Intel’s Raptor Lake Refresh generation processors can’t compete with. What the situation will look like in the case of Intel Arrow Lake, or more specifically, the Core Ultra 7 265K processor, you will find out soon. As we add their tests to the database. At the moment, however, we can state that the Ryzen 7 9800X3D is at the very top in gaming tests. At extremely low resolution (720p) with virtually complete elimination of the contribution of a graphics card, it’s in first place, just above the Ryzen 7 7800X3D. At higher resolutions, the impact of the processor is diminished to the point of being completely negligible. But this is true for all processors – high-resolution gaming performance is determined by the capabilities of the graphics card.

Gaming performance is one thing, and then there’s something that makes a processor a processor – compute performance. This increased by up to 30–35% under heavy load compared to the R7 7800X3D. It’s mainly due to significantly higher clock speeds being reached. These are possible because of better cooling options, and with comparable temperature, the Ryzen 7 9800X3D has about 60W more power consumption. Naturally, this is also reflected in the compute performance, which is therefore higher. In terms of gaming performance, the performance benefits won’t show up that much, as in both cases the processors (both the R7 9800X3D and the R7 7800X3D) are at very low power consumption, well below both temperature and power limits. Anyway, you can keep the new Ryzen 7 9800X3D at the same noise level with a cheaper cooler than it was in the past (for the Ryzen 7 7800X3D).

But with regards to the Ryzen 7 9800X3D, it still can’t be said to be a suitable processor for multi-threaded performance.The latter may have increased significantly, but it’s still in the realm of just eight cores within a single chiplet. There is also some improvement compared to the Ryzen 7 9700X (but this is mainly at the expense of higher power consumption), the Ryzen 7 9800X3D cannot be compared to Ryzen 9s in this respect (multi-threaded performance). Not even with Ryzen 7000s. It’s only the old Ryzen 9 5900X that’s outperformed.

However, when it comes to single-threaded workloads, the Ryzen 7 9800X3D already excels and outperforms even the Ryzen 9 7000s. The discipline in which the predecessor (R7 7800X3D) of this processor lagged behind is one of the strengths for the Ryzen 7 9800X3D. It can also benefit from the very high single-threaded performance in non-gaming, routine use in web or office environments. The Ryzen 7 9800X3D is very snappy here, snappier than the Ryzen 7 7800X3D. Again, mainly due to the higher single-core boost clock speeds, which can now be cooled more easily.

So not just a single-purpose processor for a gaming PC, but pretty good all-purpose hardware that’s ready for other tasks as well. For multi-threaded use, the competing Intel CPUs will still be faster in this price segment for most cases (because more cores…), but the Ryzen 7 9800X3D is definitely not helpless anymore either. Its capabilities are mostly enough for casual use, but even that is better than nothing.

Above all, the Ryzen 7 9800X3D is a top-of-the-line gaming processor that is… well, let’s see if it’s unrivaled (after we finish measuring the Intel Core Ultra 200S processor). You’ll have to wait a tiny bit longer.

English translation and edit by Jozef Dudáš

AMD Ryzen 7 9800X3D
+ Large 3D V-Cache with 96 MB
+ Highest performance for a gaming PC currently available...
+ ... and at the same time with extremely low power consumption
+ Relatively good cooling now for a processor with 3D V-Cache as well
+ Significantly more power-efficient than competing Intel processors
+ Due to its low power consumption, also suitable for really cheap A620 motherboards
+ Top-notch efficiency...
+ ... even in non-gaming environments (multi-threaded or single-threaded workloads)
+ High and higher multithreaded performance than the older model with 3D V-Cache (R7 7800X3D)...
+ ... the same goes for single-threaded performance. It is absolutely top-notch
+ Very high performance per clock (IPC)
+ Modern 4nm manufacturing process node
+ DisplayPort 2.0 support
- Weaker price/multi-threaded performance ratio. In this respect, it clearly lags behind even the Core i7-14700K
Approximate retail price: 479 EUR
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We would like to thank the Datacomp e-shop for their cooperation in providing the tested hardware

Special thanks also to Blackmagic Design (for DaVinci Resolve Studio license), Topaz Labs (for licenses to DeNoise AI, Gigapixel AI and Sharpen AI) and Zoner (for Photo Studio X license)