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Comparison Razer Blade 16 2023 [RZ09-0483UEJ4-R3U1] vs MSI Titan GT77HX 13VI [GT77HX 13VI-086RO]

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Razer Blade 16 2023 (RZ09-0483UEJ4-R3U1)
MSI Titan GT77HX 13VI (GT77HX 13VI-086RO)
Razer Blade 16 2023 [RZ09-0483UEJ4-R3U1]MSI Titan GT77HX 13VI [GT77HX 13VI-086RO]
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Main
The laptop has a dual-mode display. The first mode is UHD+ with a resolution of 3840x2400 pixels and a frame rate of 120Hz, and the second is FHD+ 1920x1200 240Hz.
Mechanical keyboard Cherry MX Ultra Low Profile.
Typelaptoplaptop
Screen
Screen size16 "17.3 "
Screen typeminiLEDminiLED
Surface treatmentanti-glareanti-glare
Screen resolution3840x2400 (16:10)3840x2160 (16:9)
Response time3 ms
Refresh rate120 Hz144 Hz
Brightness
600 nt /HDR 1000 кд/м²/
1000 nt
Contrast1000000 :1
Colour gamut (DCI P3)100 %100 %
CalMAN certification
HDRHDR10HDR10
VESA DisplayHDR CertificationDisplayHDR 1000DisplayHDR 1000
NVIDIA G-Sync
CPU
SeriesCore i9Core i9
Model13950HX13980HX
Code nameRaptor Lake (13th Gen)Raptor Lake (13th Gen)
Processor cores24 (8P+16E)24 (8P+16E)
Total threads3232
CPU speed1.6 GHz1.6 GHz
TurboBoost / TurboCore frequency5.5 GHz5.6 GHz
CPU TDP55 W55 W
3DMark0619311 score(s)19734 score(s)
Passmark CPU Mark36415 score(s)48112 score(s)
SuperPI 1M6.2 с7.42 с
RAM
RAM32 GB32 GB
Max. RAM64 GB128 GB
RAM typeDDR5DDR5
RAM speed5600 MHz5600 MHz
Slots24
Graphics card
Graphics card typededicateddedicated
Graphics card seriesNVIDIA GeForceNVIDIA GeForce
Graphics card modelRTX 4090RTX 4090
Video memory16 GB16 GB
Memory typeGDDR6GDDR6
GPU TDP175 W175 W
VR
3DMark0667814 points67814 points
3DMark Vantage P113387 points113387 points
Storage
Drive typeSSD M.2 NVMeSSD M.2 NVMe
Drive capacity
2048 GB /2x1024 GB/
4096 GB /2x2048 GB/
M.2 drive interfacePCI-E 4.0 4xPCI-E 4.0 4x
M.2 drive size22x80 mm22x80 mm
Additional M.2 connector1
Addittional M.2 connectors interfacePCI-E 5.0
Additional M.2 drive size22x80 mm
Connections
Connection ports
HDMI
v 2.1
 
 
HDMI
v 2.1
miniDisplayPort
v 1.4
Card reader
 /SD/
 /SD/
USB 3.2 gen233
USB C 3.2 gen21 pc
USB412
Thunderbolt interfacex1 v4x2 v4
Alternate Mode
Monitors connection34
LAN (RJ-45)2.5 Gbps
Wi-FiWi-Fi 6E (802.11ax)Wi-Fi 6E (802.11ax)
Bluetoothv 5.2v 5.3
Multimedia
Webcam1920x1080 (Full HD)1280x720 (HD)
Camera shutter
Speakers44
Brand acousticsDynaudio
Audio decodersTHX
Security
 
3D face scanner
kensington / Noble lock
fingerprint scanner
3D face scanner
 
Keyboard
BacklightRGB per keyRGB per key
Lighthing syncRazer ChromaMSI Mystic Light Sync
Key designisland typeisland type
Num block
Input deviceglass touchpadtouchpad
Battery
Battery capacity6182 mAh
Battery capacity95 W*h100 W*h
Battery voltage15.4 V
Powered by USB-C (Power Delivery)
Fast charge
Power supply Included330 W330 W
General
Preinstalled OSWindows 11 HomeWindows 11 Home
Materialaluminiumaluminium
Dimensions (WxDxT)355x244x22 mm397x330x23 mm
Weight2.45 kg3.3 kg
Color
Added to E-Catalogfebruary 2023february 2023

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.

Screen resolution

The resolution of the screen installed in the laptop — that is, the size of the screen in pixels horizontally and vertically.

Higher resolution, on the one hand, gives a sharper, more detailed image; on the other hand, it increases the cost of the laptop. The latter is connected not only with the cost of the displays themselves, but also with the fact that in order to work effectively at high resolutions, you need the appropriate filling (primarily a graphics card). This is especially true in games; so if you are looking for a laptop with a high-resolution screen that can effectively "run" modern games — you should pay attention not only to the characteristics of the display, but also to other data (the type and parameters of the graphics card, test results, the ability to work with certain games — see everything below). On the other hand, if the device is planned to be used for simple tasks such as working with documents, surfing the Internet and watching videos, you can not pay much attention to the “hardware” parameters: anyway, they are selected so that the laptop is guaranteed to be able to cope with such tasks on full resolution of the "native" screen.

As for specific numbers, the resolution options that are relevant today can be divided into 4 groups: HD (720), Full HD (1080), Quad HD and UltraHD 4K. Here is a mor...e detailed description of them:

— HD (720). This category includes all displays that have a vertical size of less than 1080 pixels. The most popular HD resolution in modern laptops is 1366x768; in devices larger than 15.6 ", 1600x900 is also often found. Other values quite exotic and are rarely used. In general, screens of this standard are now typical mainly for entry-level laptops.

— Full HD (1080). Initially, the Full HD standard provides a frame size of 1920x1080, and it is this resolution that is most often used in laptop screens from this category. However, in addition to this, other resolution options are also included in this format, where the vertical size is at least 1080 pixels, but does not reach 1440 pixels. Examples include 1920x1200 and 2560x1080. In general, Full HD displays provide a good balance between cost, image quality and laptop hardware requirements. Because of this, nowadays they are extremely widespread; matrices of this standard can be found even in low-cost devices, although they are mainly used in more advanced technology.

— Quad HD. A transitional option between the popular Full HD 1080 (see above) and the high-end and expensive UltraHD 4K. The vertical size of such screens starts from 1440 pixels and can reach 2000 pixels. Note that QuadHD resolutions are especially popular in Apple laptops; most often, such devices have 2560x1600 screens, although there are other options.

— Ultra HD 4K. The most advanced standard used in modern laptops. The vertical size of such screens is at least 2160 dots (up to 2400 in some configurations); the classic resolution of a modern UltraHD matrix is 3840x2160, but there are other values. Anyway, a 4K display allows for high image quality, however, it costs accordingly — including due to the corresponding requirements for a graphics adapter; in addition, to work with high resolutions, it can be more convenient to connect an external monitor to the laptop. Thus, such screens are used relatively rarely, and mainly among premium laptops.

Response time

Screen response time to a control signal — in other words, the time between the receipt of such a signal on the matrix and the switching of pixels to a given mode.

Theoretically, the lower the response time, the better the screen handles with dynamic scenes, the higher the frame rate on it can be achieved. At the same time, it is worth noting that almost all modern matrices have sufficient response speed to effectively process the classic frame rate of 60 Hz — and, recall, it is quite enough for most cases. So paying attention to this parameter makes sense, first of all, if you are purchasing an advanced gaming model, the screen of which operates at a frame rate of more than 60 Hz. In other cases, the response time is often not indicated at all.

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).

CalMAN certification

The laptop display has a CalMAN Verified certificate. This certification is given to high-quality screens after they have been tested and calibrated using CalMAN, a professional suite of software tools used for colour manipulation and sensor colour adjustment. The accuracy of these tools is such that even Hollywood filmmakers use them; and in the case of laptops, CalMAN certification is an additional sign of high quality — it means that the colours on such a screen will be displayed as faithfully as possible. Such models are intended for professionals working with colour, as well as for connoisseurs of high-quality video content.

NVIDIA G-Sync

Laptop support for NVIDIA G-Sync technology.

This feature is only found on models equipped with discrete NVIDIA graphics cards. It is used to match the frame rate of the screen and the frame rate of the signal arriving at it — so that these frequencies match. This avoids flickering, twitching, and other image artifacts that can occur due to out-of-sync. This feature is especially useful for games where the frame rate of the video signal can "float" depending on the load on the graphics core; in fact, most laptops with G-Sync are specifically for gaming.

A similar solution for AMD video cards is called FreeSync.

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.