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Comparison MSI Katana 17 B12VFK [B12VFK-634XPL] vs MSI Katana GF76 12UGS [GF76 12UGS-035US]

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MSI Katana 17 B12VFK (B12VFK-634XPL)
MSI Katana GF76 12UGS (GF76 12UGS-035US)
MSI Katana 17 B12VFK [B12VFK-634XPL]MSI Katana GF76 12UGS [GF76 12UGS-035US]
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Typelaptoplaptop
Screen
Screen size17.3 "17.3 "
Screen typeIPSIPS
Surface treatmentmatteanti-glare
Screen resolution1920x1080 (16:9)1920x1080 (16:9)
Refresh rate144 Hz144 Hz
Colour gamut (NTSC)45 %
CPU
SeriesCore i7Core i7
Model12650H12700H
Code nameAlder Lake (12th Gen)Alder Lake (12th Gen)
Processor cores10 (6P+4E)14
Total threads16 threads20 threads
CPU speed1.7 GHz1.7 GHz
TurboBoost / TurboCore frequency4.7 GHz4.7 GHz
L2 cache9728 KB11776 KB
L3 cache24 MB24 MB
CPU TDP45 W45 W
3DMark0616706 score(s)15765 score(s)
Passmark CPU Mark24424 score(s)27184 score(s)
SuperPI 1M7.83 sec
RAM
RAM16 GB16 GB
Max. RAM64 GB64 GB
RAM typeDDR5DDR4
RAM speed4800 MHz3200 MHz
Slots22
Graphics card
Graphics card typededicateddedicated
Graphics card seriesNVIDIA GeForceNVIDIA GeForce
Graphics card modelRTX 4060RTX 3070 Ti
Video memory8 GB8 GB
Memory typeGDDR6GDDR6
GPU TDP105 W105 W
Advanced Optimus
VR
3DMark0649746 score(s)50062 score(s)
3DMark Vantage P90275 score(s)81895 score(s)
FPS in games
GTA 5 High Full HD180 fps171 fps
GTA 5 Ultra Full HD112 fps117 fps
GTA 5 Ultra 4K82 fps77 fps
Witcher 3 High Full HD200 fps
Witcher 3 Ultra Full HD100 fps
The Witcher 3 Ultra 4K75 fps
Cyberpunk 2077 High Full HD85 fps89 fps
Cyberpunk 2077 Ultra Full HD77 fps81 fps
Cyberpunk 2077 Ultra 4K22 fps26 fps
God of War High Full HD88 fps97 fps
God of War Ultra Full HD63 fps68 fps
God of War Ultra 4K34 fps38 fps
Storage
Drive typeSSD M.2SSD M.2
Drive capacity1024 GB1024 GB
M.2 drive interfacePCI-E 4.0 4xPCI-E 4.0 4x
NVMe
M.2 drive size22x80 mm22x80 mm
Additional M.2 connector11
Addittional M.2 connectors interfacePCI-E 4.0 4xPCI-E 4.0 4x
Additional M.2 drive size22x80 mm22x80 mm
Connections
Connection ports
HDMI
v 2.1
HDMI
 
Card reader
USB 2.01 pc1 pc
USB 3.2 gen122
USB C 3.2 gen11 pc1 pc
Alternate Mode
Monitors connection21
LAN (RJ-45)1 Gbps1 Gbps
Wi-FiWi-Fi 6 (802.11ax)Wi-Fi 6 (802.11ax)
Bluetoothv 5.2v 5.2
Multimedia
Smartphone communication
Webcam1280x720 (HD)1280x720 (HD)
Camera shutter
Speakers22
Keyboard
BacklightRGB 4 zonered
Key designisland typeisland type
Num block
Input devicetouchpadtouchpad
Battery
Battery capacity54 W*h53 W*h
Number of battery cells33
Powered by USB-C (Power Delivery)
Fast charge
Power supply Included200 W
General
Preinstalled OSno OSWindows 11 Home
Materialmatte plasticmatte plastic
Dimensions (WxDxT)398x273x25 mm398x273x25 mm
Weight2.6 kg2.6 kg
Color
Added to E-Catalogjuly 2023may 2023

Surface treatment

Glossy. A glossy surface improves the overall picture quality: other things being equal, the picture on such a screen looks brighter and more colorful than on a matte one. On the other hand, pollution is very noticeable on such a surface, and in bright external lighting, a lot of glare appears on it, which can greatly interfere with viewing. Therefore, instead of the classic gloss, laptops are increasingly using an anti-reflective version of such a coating (see below). Nevertheless, this option still does not lose popularity: it is somewhat cheaper than the “anti-glare”, and in soft, relatively dim lighting, it can even provide a more pleasing image to the eye.

Matte. Matte finish is inexpensive and does not form glare even from fairly bright lighting. On the other hand, the picture on such a screen is noticeably dimmer than on a similar glossy display. However, this moment can be compensated by various design solutions (primarily a good margin of brightness); so this option can be found in all categories of modern laptops — from low-cost models for working with documents to top gaming configurations.

Glossy (anti-glare). A variation on the glossy finish described above, designed to reduce glare from external light sources. Such screens really glare noticeably less than traditional glossy ones (or even do not give glare at all); at the same time, in...terms of image quality, they are at least superior to matte ones. So it is this type of coating that is most popular nowadays.

Colour gamut (NTSC)

The colour gamut of the laptop matrix according to the NTSC colour model.

Colour gamut describes the range of colours that can be displayed on the screen. It is indicated as a percentage, but not relative to the entire variety of visible colours, but relative to the conditional colour space (colour model). This is due to the fact that no modern screen is able to display all the colours visible to humans. However, the larger the colour gamut, the wider the screen's capabilities, the better its colour reproduction.

Specifically, NTSC is one of the first colour models created back in 1953 for colour television. It is not used in the production of modern LCD matrices, but is used to describe and compare them. NTSC covers a wider range of colours than sRGB, which is standard in computer technology; therefore, even a small number of percentages in this case corresponds to a fairly wide coverage. For example, a value of 72% or more in NTSC is already considered a good value for use in design and graphics. At the same time, the same NTSC figures on different screens may correspond to different sRGB figures; so if accurate colour reproduction is decisive for you, these details should be clarified before buying.

Also note that among individual monitors, it is easier to find a screen with a wide colour gamut; while it will also cost less than a laptop with similar display characteristics. So choosing a laptop with a h...igh-end screen makes sense mainly when portability is as important to you as high-quality colour reproduction.

Model

The specific model of the processor installed in the laptop, or rather, the processor index within its series (see above). Knowing the full name of the processor (series and model), you can find detailed information on it (up to practical reviews) and clarify its capabilities.

Processor cores

The number of cores in the laptop CPU.

The core is a part of the CPU designed to process one thread of instructions (and sometimes more, for such models, see "Number of threads"). Nowadays, in laptops you can find dual-core, quad-core, six-core, eight-core, ten-core, 12-core, 14-core CPUs. Also note that recently configurations with different types of cores as part of a single CPU are gaining popularity. Such chips are built on a hybrid architecture that combines high performance and energy-efficient cores. They operate at different clock speeds, have different amounts of pre-installed cache memory and are designed to solve different problems. In particular, such CPUs are found in Intel CPUs (from the 12th generation) and Apple.

Theoretically, more cores means higher performance, especially in parallel computing tasks or when processing multiple resource-intensive tasks at the same time. However, in practice this is true only all else being equal – that is, with a similar microarchitecture, clock frequency, cache volumes and other key parameters. Modern CPUs can vary greatly on these parameters – in itself, a greater number of cores does not mean superiority. This is especially true for dual- and quad-core chips: a mobil...e-level CPU (for example, Snapdragon, see "CPU series") with 4 cores may well be inferior in capabilities to a dual-core desktop series chip (like Core i3 or i5, which are often used in universal laptops with the "optimal" set of specifications for different tasks). When evaluating CPUs with two or four cores, it is necessary to look, first of all, at the general set of characteristics. But the presence of six, eight or more cores is almost certainly a sign of a powerful CPU. Such equipment is typical mainly for advanced gaming and professional laptops.

Total threads

The number of threads supported by the laptop processor.

A thread is a sequence of instructions executed by a processor. Initially, each processor core was designed for one such sequence, and the number of threads was equal to the number of cores. However, in modern CPUs, multithreading technologies are increasingly being used, which allow loading each core with two instruction sequences at once. Such technologies have different names for different manufacturers, but the principle of their operation is the same: during the inevitable pauses in the execution of one of the threads, the kernel does not idle, but works with a different sequence. Accordingly, the total number of threads in such processors is twice the number of cores; such a scheme of work significantly increases productivity (although, of course, it also affects the cost).

L2 cache

The amount of cache memory level 2 (L2) provided in the laptop processor.

The cache is a processor's own buffer, which stores the most frequently used data from RAM during operation. This speeds up access to them and has a positive effect on system performance. The cache is divided into several levels; the larger the volume of each level, the more data can be stored in it for quick access and the higher the performance (ceteris paribus). Specifically, the L2 cache occupies an intermediate position between the small and fast L1 cache of the first level and the large, but relatively slow L3 cache. Its capacity can reach 12 MB; however, in laptop processors, it is most often noticeably more modest — about 2 – 4 MB.

3DMark06

The result shown by the laptop processor in 3DMark06.

This test is primarily focused on testing performance in games — in particular, the ability of the processor to process advanced graphics and artificial intelligence elements. Test scores are reported as scores; the higher this number, the higher the performance of the tested chip. Good 3DMark06 results are especially important for gaming laptops.

Passmark CPU Mark

The result shown by the laptop processor in the Passmark CPU Mark test.

Passmark CPU Mark is a comprehensive test that is more detailed and reliable than the popular 3DMark06 (see above). It checks not only the gaming capabilities of the CPU, but also its performance in other modes, based on which it displays the overall score; this score can be used to fairly reliably evaluate the processor as a whole (the more points, the higher the performance).

SuperPI 1M

The result shown by the laptop processor in the SuperPI 1M test.

The essence of this test is to calculate the number "pi" to the millionth decimal place. The time spent on this calculation is the final result. Accordingly, the more powerful the processor, the smaller the result will be (this SuperPI 1M is fundamentally different from many other tests).
MSI Katana 17 B12VFK often compared