| NZXT Player Three Prime (i9-13900KF / RTX 4090 / 128GB RAM / 5TB SSD) | NZXT Player Three Prime (i9-13900KF / RTX 4090 / 64GB RAM / 5TB SSD) | Corsair Vengeance i7400 (i9-13900K / RTX 4090 / 64GB RAM / 2TB SSD) | MSI MPG Infinite X2 13F (i9-13900K / RTX 4090 / 64GB / 2TB SSD) | Yeyian Odachi (i9-13900KF / RTX 4090 / 32GB RAM / 2TB SSD + 2TB HDD) | Lenovo Legion Tower 7i Gen 8 (i9-13900KF / RTX 4090 / 64GB RAM / 2TB SSD) | Yeyian Odachi (R9 7950X3D / RTX 4090 / 32GB RAM / 2TB SSD + 2TB HDD) | Corsair Vengeance i8100 (i9-13900KS / RTX 4090 / 64GB RAM / 2TB SSD + 2TB SSD) | Yeyian Odachi (R9 7950X / RTX 4090 / 32GB RAM / 2TB SSD) | Corsair Vengeance a7300 (R9 7900X / RTX 4090 / 64GB RAM / 2TB SSD) |
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Best price |
Best price | | | | | | | | | | |
General info |
SSD storage capacityThe amount of internal storage available on the Solid State Drive (SSD). SSDs use flash memory, which typically has better performance than HDD memory. |
SSD storage capacityThe amount of internal storage available on the Solid State Drive (SSD). SSDs use flash memory, which typically has better performance than HDD memory. | 5000GB | 5000GB | 2000GB | 2000GB | 2000GB | 2000GB | 2000GB | 4000GB | 2000GB | 2000GB |
HDD storage capacityThe amount of internal storage available on the Hard Disk Drive (HDD). HDDs use magnetic recording to store and read data. |
HDD storage capacityThe amount of internal storage available on the Hard Disk Drive (HDD). HDDs use magnetic recording to store and read data. | N.A. | N.A. | N.A. | N.A. | 2000GB | N.A. | 2000GB | N.A. | N.A. | N.A. |
Form factorThe form factor of the motherboard. |
Form factorThe form factor of the motherboard. | ATX | ATX | ATX | | ATX | ATX | ATX | ATX | ATX | ATX |
NVMeNVMe SSDs use the PCIe interface, which has a higher bandwidth than the SATA interface. This results in much faster read/write speeds compared to SSDs which use the SATA interface. |
NVMeNVMe SSDs use the PCIe interface, which has a higher bandwidth than the SATA interface. This results in much faster read/write speeds compared to SSDs which use the SATA interface. | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Flash storageFlash-based storage devices such as SSDs have no mechanical components. Due to this, they are typically faster, run silently, and are more shock resistant than traditional HDDs. |
Flash storageFlash-based storage devices such as SSDs have no mechanical components. Due to this, they are typically faster, run silently, and are more shock resistant than traditional HDDs. | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Total score for "General info" |
Total score for "General info" | | | | | | | | | | |
Graphics card |
Ray tracingRay tracing is an advanced light rendering technique that provides more realistic lighting, shadows, and reflections in games. |
Ray tracingRay tracing is an advanced light rendering technique that provides more realistic lighting, shadows, and reflections in games. | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Supported displaysUsing multiple displays you can create a larger workspace, making it easier to work across multiple apps. |
Supported displaysUsing multiple displays you can create a larger workspace, making it easier to work across multiple apps. | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 | 4 |
Lite Hash Rate (LHR)Nvidia's Lite Hash Rate (LHR) technology limits the ability to use a graphics card for cryptocurrency mining. Gaming performance is unaffected. |
Lite Hash Rate (LHR)Nvidia's Lite Hash Rate (LHR) technology limits the ability to use a graphics card for cryptocurrency mining. Gaming performance is unaffected. | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ |
Double Precision Floating Point (DPFP)Generally, single precision floating point arithmetic deals with 32-bit floating point numbers, whereas double precision deals with 64-bit units, increasing the accuracy of calculations. For GPUs, a double precision floating point (or FP64) is useful for general-purpose computing (GPGPU) such as scientific research, data modeling, as it provides a higher degree of precision when making calculations. |
Double Precision Floating Point (DPFP)Generally, single precision floating point arithmetic deals with 32-bit floating point numbers, whereas double precision deals with 64-bit units, increasing the accuracy of calculations. For GPUs, a double precision floating point (or FP64) is useful for general-purpose computing (GPGPU) such as scientific research, data modeling, as it provides a higher degree of precision when making calculations. | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Support for 3D imagesAllows you to view in 3D (if you have a 3D display and glasses). |
Support for 3D imagesAllows you to view in 3D (if you have a 3D display and glasses). | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Total score for "Graphics card" |
Total score for "Graphics card" | | | | | | | | | | |
CPU |
Integrated graphicsWith integrated graphics you don’t need to buy a separate graphics card. |
Integrated graphicsWith integrated graphics you don’t need to buy a separate graphics card. | ✖ | ✖ | ✔ | ✔ | ✖ | ✖ | ✔ | ✔ | ✔ | ✔ |
L3 cacheA larger L3 cache results in faster CPU and system-wide performance. |
L3 cacheA larger L3 cache results in faster CPU and system-wide performance. | 36MB | 36MB | 36MB | 36MB | 36MB | 36MB | 128MB | 36MB | 64MB | 64MB |
MultithreadingMultithreading technology (such as Intel's Hyperthreading or AMD's Simultaneous Multithreading) provides increased performance by splitting each of the processor's physical cores into virtual cores, also known as threads. This way, each core can run two instruction streams at once. |
MultithreadingMultithreading technology (such as Intel's Hyperthreading or AMD's Simultaneous Multithreading) provides increased performance by splitting each of the processor's physical cores into virtual cores, also known as threads. This way, each core can run two instruction streams at once. | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ | ✔ |
Clock multiplierThe clock multiplier controls the speed of the CPU. |
Clock multiplierThe clock multiplier controls the speed of the CPU. | 30 | 30 | 30 | 30 | 30 | 30 | 42 | 32 | 45 | 47 |
L3 coreMore data can be stored in the L3 cache for access by each core of the CPU. |
L3 coreMore data can be stored in the L3 cache for access by each core of the CPU. | N.A. | N.A. | N.A. | N.A. | N.A. | N.A. | 8MB/core | N.A. | 4MB/core | 5.33MB/core |
Total score for "CPU" |
Total score for "CPU" | | | | | | | | | | |
Benchmarks |
PassMark (G3D) resultThis benchmark measures the graphics performance of a video card. Source: PassMark. |
PassMark (G3D) resultThis benchmark measures the graphics performance of a video card. Source: PassMark. | 39312 | 39312 | 39312 | 39312 | 39312 | 39312 | 39312 | 39312 | 39312 | 39312 |
PassMark resultThis benchmark measures the performance of the CPU using multiple threads. |
PassMark resultThis benchmark measures the performance of the CPU using multiple threads. | 59631 | 59631 | 60060 | 60060 | 59631 | 59631 | 64222 | 62166 | 63502 | 52235 |
PassMark result (single)This benchmark measures the performance of the CPU using a single thread. |
PassMark result (single)This benchmark measures the performance of the CPU using a single thread. | 4692 | 4692 | 4685 | 4685 | 4692 | 4692 | 4267 | 4809 | 4322 | 4324 |
Cinebench R20 (multi) resultCinebench R20 is a benchmark tool that measures a CPU's multi-core performance by rendering a 3D scene. |
Cinebench R20 (multi) resultCinebench R20 is a benchmark tool that measures a CPU's multi-core performance by rendering a 3D scene. | 15350 | 15350 | 15350 | 15350 | 15350 | 15350 | N.A. | 15560 | 15120 | 11572 |
PassMark (DirectCompute) resultThis benchmark measures the general purpose computational power of a graphics card. Source: PassMark. |
PassMark (DirectCompute) resultThis benchmark measures the general purpose computational power of a graphics card. Source: PassMark. | 31988 | 31988 | 31988 | 31988 | 31988 | 31988 | 31988 | 31988 | 31988 | 31988 |
Total score for "Benchmarks" |
Total score for "Benchmarks" | | | | | | | | | | |
Memory |
RAMRandom-access memory (RAM) is a form of volatile memory used to store working data and machine code currently in use. It is a quick-access, temporary virtual storage that can be read and changed in any order, thus enabling fast data processing. |
RAMRandom-access memory (RAM) is a form of volatile memory used to store working data and machine code currently in use. It is a quick-access, temporary virtual storage that can be read and changed in any order, thus enabling fast data processing. | 128GB | 64GB | 64GB | 64GB | 32GB | 64GB | 32GB | 64GB | 32GB | 64GB |
RAM speedIt can support faster memory, which will give quicker system performance. |
RAM speedIt can support faster memory, which will give quicker system performance. | 6000MHz | 6000MHz | 5600MHz | 5600MHz | 5200MHz | 5200MHz | 6000MHz | 5600MHz | 5200MHz | 5600MHz |
DDR memory versionDDR (Double Data Rate) memory is the most common type of RAM. Newer versions of DDR memory support higher maximum speeds and are more energy-efficient. |
DDR memory versionDDR (Double Data Rate) memory is the most common type of RAM. Newer versions of DDR memory support higher maximum speeds and are more energy-efficient. | 5 | 5 | 5 | 5 | 5 | 5 | 5 | 5 | 5 | 5 |
Memory slotsMore memory slots (also known as DIMM slots) allow you to add more RAM to your computer. It is also useful when upgrading, as you can add RAM to an empty slot instead of replacing an existing memory module. |
Memory slotsMore memory slots (also known as DIMM slots) allow you to add more RAM to your computer. It is also useful when upgrading, as you can add RAM to an empty slot instead of replacing an existing memory module. | N.A. | N.A. | N.A. | 4 | N.A. | N.A. | N.A. | 4 | N.A. | N.A. |
Total score for "Memory" |
Total score for "Memory" | | | | | | | | | | |
Connectivity |
USB 3.2 Gen 2x2 portsUSB 3.2 Gen 2x2 was introduced in 2019. It supports speeds of up to 20Gbps and uses the USB-C connector. |
USB 3.2 Gen 2x2 portsUSB 3.2 Gen 2x2 was introduced in 2019. It supports speeds of up to 20Gbps and uses the USB-C connector. | 1 | 1 | 1 | 1 | 1 | 0 | 1 | 0 | 1 | 0 |
DisplayPort outputsAllows you to connect to a display using DisplayPort. |
DisplayPort outputsAllows you to connect to a display using DisplayPort. | 3 | 3 | 4 | 3 | 3 | 3 | 3 | 4 | 3 | 4 |
HDMI versionNewer versions of HDMI support higher bandwidth, which allows for higher resolutions and frame rates. |
HDMI versionNewer versions of HDMI support higher bandwidth, which allows for higher resolutions and frame rates. | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 | HDMI 2.1 |
HDMI portsMore HDMI ports mean that you can simultaneously connect numerous devices, such as video game consoles and set-top boxes. |
HDMI portsMore HDMI ports mean that you can simultaneously connect numerous devices, such as video game consoles and set-top boxes. | 1 | 1 | 2 | 1 | 1 | 1 | 1 | 2 | 1 | 2 |
External memory slotThe device has a standard memory slot (such as an SD or micro SD card slot) that enables you to extend the built-in internal storage with affordable memory modules, or easily retrieve data, such as photographs, from the memory card. |
External memory slotThe device has a standard memory slot (such as an SD or micro SD card slot) that enables you to extend the built-in internal storage with affordable memory modules, or easily retrieve data, such as photographs, from the memory card. | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ | ✖ |
Total score for "Connectivity" |
Total score for "Connectivity" | | | | | | | | | | |