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Comparison Asus X570UD [X570UD-E4250R] vs Asus TUF Gaming FX504GD [FX504GD-E4038]

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Asus X570UD (X570UD-E4250R)
Asus TUF Gaming FX504GD (FX504GD-E4038)
Asus X570UD [X570UD-E4250R]Asus TUF Gaming FX504GD [FX504GD-E4038]
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Typelaptoplaptop
Screen
Screen size15.6 "15.6 "
Screen typeIPSIPS
Surface treatmentanti-glareanti-glare
Screen resolution1920x1080 (16:9)1920x1080 (16:9)
Refresh rate60 Hz60 Hz
Brightness230 nit
Contrast1040 :1
Colour gamut (sRGB)58 %
Colour gamut (Adobe RGB)37 %
CPU
SeriesCore i5Core i5
Model8250U8300H
Processor cores44
Total threads8 threads
CPU speed1.6 GHz2.3 GHz
TurboBoost / TurboCore frequency3.4 GHz4 GHz
L2 cache1024 KB1024 KB
L3 cache6 MB8 MB
3DMark066063 score(s)
Passmark CPU Mark7660 score(s)9423 score(s)
SuperPI 1M11.03 sec9.41 sec
RAM
RAM8 GB8 GB
Max. RAM16 GB32 GB
RAM typeDDR4DDR4
RAM speed2400 MHz2666 MHz
Slots22
Graphics card
Graphics card typededicateddedicated
Graphics card seriesNVIDIA GeForceNVIDIA GeForce
Graphics card modelGTX 1050GTX 1050
Video memory2 GB2 GB
Memory typeGDDR5GDDR5
3DMark0626422 score(s)26422 score(s)
3DMark Vantage P26560 score(s)26560 score(s)
FPS in games
GTA 5 High Full HD65 fps65 fps
GTA 5 Ultra Full HD18 fps18 fps
Witcher 3 High Full HD38 fps38 fps
Witcher 3 Ultra Full HD21 fps21 fps
Storage
Drive typeSSD M.2HDD+SSD M.2
Drive capacity256 GB1000 GB
HDD speed5400 rpm
2nd drive capacity128 GB
Additional 2.5" slot
Connections
Connection ports
HDMI
 
HDMI
v 1.4
Card reader
 /microSD/
USB 2.021 pc
USB 3.2 gen11 pc2
USB C 3.2 gen11 pc
Alternate Mode
LAN (RJ-45)1 Gbps1 Gbps
Multimedia
Webcam640x480 (VGA)1280x720 (HD)
Camera shutter
Speakers22
Security
fingerprint scanner
kensington / Noble lock
TPM
 
kensington / Noble lock
 
Keyboard
Backlightwhitered
Key designisland typeisland type
Num block
Input devicetouchpadtouchpad
Battery
Battery capacity48 W*h48 W*h
Number of battery cells33
Operating time10 h
Powered by USB-C (Power Delivery)
Fast charge
 /60% in 49 minutes/
General
Preinstalled OSWindows 10 ProDOS
Materialmatte plasticaluminium / plastic
Dimensions (WxDxT)374.6x256x21.9 mm384x262x25 mm
Weight1.9 kg2.3 kg
Color
Added to E-Catalogmay 2018may 2018

Brightness

The maximum brightness that a laptop screen can provide.

The brighter the ambient light, the brighter the laptop screen should be, otherwise the image on it may be difficult to read. And vice versa: in dim ambient light, high brightness is unnecessary — it greatly burdens the eyes (however, in this case, modern laptops provide brightness control). Thus, the higher this indicator, the more versatile the screen is, the wider the range of conditions in which it can be effectively used. The downside of these benefits is an increase in price and energy consumption.

As for specific values, many modern laptops have a brightness of 250 – 300 cd / m2 and even lower. This is quite enough for working under artificial lighting of medium intensity, but in bright natural light, visibility may already be a problem. For use in sunny weather (especially outdoors), it is desirable to have a brightness margin of at least 300 – 350 cd / m2. And in the most advanced models, this parameter can be 350 – 400 cd / m2 and even more.

Contrast

The contrast of the screen installed in the laptop.

Contrast is the largest difference in brightness between the lightest white and darkest black that can be achieved on a single screen. It is written as a fraction, for example, 560:1; while the larger the first number, the higher the contrast, the more advanced the screen is and the better the image quality can be achieved on it. This is especially noticeable with large differences in brightness within a single frame: with low contrast, individual details located in the darkest or brightest parts of the picture may be lost, increasing the contrast allows you to eliminate this phenomenon to a certain extent. The flip side of these benefits is an increase in cost.

Separately, we emphasize that in this case only static contrast is indicated — the difference provided within one frame in normal operation, at constant brightness and without the use of special technologies. For advertising purposes, some manufacturers may also provide data on the so-called dynamic contrast — it can be measured in very impressive numbers (seven-digit or more). However, you should focus primarily on static contrast — this is the basic characteristic of any display.

As for specific values, even in the most advanced screens, this indicator does not exceed 2000: 1. But in general, modern laptops have a rather low contrast ratio — it is assumed that for tasks that require more advanced image characteristics, it is more...reasonable to use an external screen (monitor or TV).

Colour gamut (sRGB)

The colour gamut of the laptop matrix according to the Rec.709 colour model or according to sRGB.

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, sRGB and Rec.709 are the most popular of today's colour models; they have the same range and differ only in the scope (sRGB is used in computers, Rec. 709 is used in HDTV). Therefore, the closer the colour gamut is to 100%, the more accurately the colours on the screen will match the colours that were originally intended by the creator of the film, game, etc. At the same time, note that such accuracy is not particularly needed in everyday use — it critical only for professional work with colour; and even in such cases, it is more convenient to buy a separate monitor with a wide colour gamut for a laptop, rather than looking for a laptop with a high-quality (and, accordingly, expensive) matrix.

Colour gamut (Adobe RGB)

The colour gamut of the laptop matrix according to the Adobe RGB 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.

The Adobe RGB colour model was originally developed for print applications; the range of colours covered by it corresponds to the capabilities of professional printing equipment. Therefore, theoretically, the extensive coverage of this model will be useful to those involved in the design and layout of high-end printed products. However most laptop screens have very limited Adobe RGB values, rarely exceeding 74%; however, you can also find high-end models where this figure approaches 100%. Of course, the cost of such laptops will also be appropriate; therefore, it makes sense to pay attention to them, first of all, when the ability to work with colour “on the go” is of key importance. If this is to be done in one place, it may be more justified to buy a separate monitor with a wide colour gamut (especially since a monitor with such characteristics is easier to find than a laptop).

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.

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).

CPU speed

The clock speed of the processor installed in the laptop (for multi-core processors, the frequency of each individual core).

Theoretically, a higher clock speed has a positive effect on performance, as it allows the processor to perform more operations per unit of time. However, in fact, the capabilities of the CPU depend on a number of other characteristics — primarily on the series to which it belongs (see above). It even happens that of the two chips, the more performant in the overall result is the slower one. With this in mind, it makes sense to compare by clock frequency only processors of the same series, and ideally, also of the same generation; and the laptop as a whole should be judged by the complex characteristics of the system, as well as by the results of tests (see below).

TurboBoost / TurboCore frequency

Processor clock speed achieved in TurboBoost or TurboCore "overclocking" mode.

Turbo Boost and Turbo Core technologies are used by different manufacturers (Intel and AMD, respectively), but they have the same principle of operation: load distribution from more loaded processor cores to less loaded ones to improve performance. The "overclocking" mode is characterized by an increased clock frequency, and it is indicated in this case.

For more information about clock speed in general, see the relevant paragraph above.

L3 cache

The amount of cache memory level 3 (L3) 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). Level 3 cache has the lowest performance and the largest volume — in laptop processors it can reach 16 MB.
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