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Comparison Asus ROG Zephyrus GX501VI [GX501VI-GZ030R] vs Acer Predator 17X GX-792 [GX-792-703D]

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Asus ROG Zephyrus GX501VI (GX501VI-GZ030R)
Acer Predator 17X GX-792 (GX-792-703D)
Asus ROG Zephyrus GX501VI [GX501VI-GZ030R]Acer Predator 17X GX-792 [GX-792-703D]
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Main
This laptop is equipped with a graphics card using Max-Q technology, which allows you to use powerful graphics solutions in a thin design. But because of this, in turn, performance is slightly reduced compared to the reference design.
Typelaptoplaptop
Screen
Screen size15.6 "17.3 "
Screen typeIPSIPS
Surface treatmentanti-glarematte
Screen resolution1920x1080 (16:9)1920x1080 (16:9)
Refresh rate120 Hz60 Hz
Brightness305 nt360 nt
Contrast1310 :11020 :1
NVIDIA G-Sync
CPU
SeriesCore i7Core i7
Model7700HQ7820HK
Processor cores44
Total threads8
CPU speed2.8 GHz2.9 GHz
TurboBoost / TurboCore frequency3.8 GHz3.9 GHz
3DMark067684 score(s)
Passmark CPU Mark8882 score(s)10311 score(s)
SuperPI 1M10 с9.82 с
RAM
RAM24 GB32 GB
Max. RAM24 GB64 GB
RAM typeDDR4DDR4
RAM speed2400 MHz2400 MHz
Slotsbuilt-in + 1 slot4
Graphics card
Graphics card typededicateddedicated
Graphics card seriesNVIDIA GeForceNVIDIA GeForce
Graphics card modelGTX 1080 Max-QGTX 1080
Video memory8 GB8 GB
Memory typeGDDR5XGDDR5X
VR
3DMark0631555 points36927 points
3DMark Vantage P39562 points48874 points
Storage
Drive typeSSD M.2 NVMeHDD+SSD
Drive capacity512 GB
1000 GB /HDD/
2nd drive capacity
512 GB /SSD M.2/
Connections
Connection ports
HDMI
v 2.0
 
HDMI
 
DisplayPort
Card reader
 /SD/
USB 3.2 gen144
USB C 3.2 gen11 pc
USB C 3.2 gen21 pc
Thunderbolt interfacex1 v3
Alternate Mode
LAN (RJ-45)
1 Gbps /through an adapter/
1 Gbps
Multimedia
Webcam1280x720 (HD)1280x720 (HD)
Camera shutter
Speakers26
Security
kensington / Noble lock
kensington / Noble lock
Keyboard
BacklightRGBis absent
Lighthing syncAsus Aura Sync
Key designisland typeisland type
Num block
Additional keys27
Input devicetouchpad / NumberPadtouchpad
Battery
Battery capacity3255 mAh6000 mAh
Battery capacity50 W*h88 W*h
Battery voltage15.4 V
Operating time2 h3 h
Powered by USB-C (Power Delivery)
Fast charge
General
Preinstalled OSWindows 10 ProWindows 10 Home
In box
uSB-A to LAN adapter
 
Materialaluminiumaluminium / plastic
Dimensions (WxDxT)379x262x17.9 mm424.2x322.6x25.4 mm
Weight2.25 kg4.55 kg
Color
Added to E-Catalogmarch 2018may 2017

Screen size

Diagonal size of laptop display.

The larger the screen, the more convenient the laptop for watching high-definition movies, modern games, working with large-format graphic materials, etc. Large screens are especially important for multimedia and gaming models. On the other hand, the diagonal of the display directly affects the size and cost of the entire device. So if portability is key, it makes sense to pay attention to relatively small solutions; especially since most modern laptops have video outputs like HDMI or DisplayPort and allow connection of large-format external monitors.

In light of all this, the actual maximum for laptops these days is 17"(17.3"); however larger devices (18") reappeared at the beginning of 2023. The standard option for general purpose laptops is 15"(15.6"), less often 16", a diagonal of 13"(13.3") or 14" is considered small by the standards of such And smaller screens can be found mainly in specific compact varieties of laptops — ultrabooks, 2 in 1, transformers, netbooks; among such devices there are solutions for 12 ", 11" and even 10" or less.

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.

Refresh rate

The frame rate supported by the laptop screen. In fact, in this case we are talking about the maximum frequency; the actual frame rate may be lower than this value, depending on the content being displayed — but not higher.

Theoretically, the higher the frame rate, the smoother the movement on the screen will look, the less moving objects will be blurred. In fact, the situation is such that even in relatively modest modern laptops, 60 Hz matrices are installed — in general, this is quite enough for the human eye, since a further increase in speed ( 90 Hz and higher) does not significantly improve the visible “picture”. However, in high-end gaming and multimedia models designed for demanding users, higher values — 120 Hz, 144 Hz, 165 Hz and even higher, namely 240 Hz and 300 Hz.

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 nt 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 nt. And in the most advanced models, this parameter can be 350 – 400 nt 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).

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.
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