Comparison Lenovo Legion 7 16IAX10 [83KY0001US] vs Lenovo Legion 5 15IAX10 [83F0001UUS]
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|---|---|---|
| Lenovo Legion 7 16IAX10 [83KY0001US] | Lenovo Legion 5 15IAX10 [83F0001UUS] | |
| Expecting restock | Expecting restock | |
| User reviews | ||
| TOP sellers | ||
| Type | laptop | laptop |
Screen | ||
| Screen size | 16 " | 15.1 " |
| Screen type | OLED | OLED |
| Surface treatment | glossy | glossy |
| Screen resolution | 2560x1600 (16:10) | 2560x1600 (16:10) |
| Refresh rate | 240 Hz | 165 Hz |
| Brightness | 500 nt | 500 nt |
| HDR Brightness | 1100 nit | |
| Contrast | 1000000 :1 | 1000000 :1 |
| Colour gamut (DCI-P3) | 100 % | 100 % |
| TÜV Rheinland certificate | ||
| HDR | HDR10, Dolby Vision | HDR10 |
| VESA DisplayHDR Certification | DisplayHDR 1000 True Black | DisplayHDR 600 True Black |
| NVIDIA G-Sync | ||
CPU | ||
| Series | Core Ultra 9 | Core Ultra 9 |
| Model | 275HX | 275HX |
| Processor code name | Arrow Lake (Series 2) | Arrow Lake (Series 2) |
| Processor cores | 24 (8P+16E) | 24 (8P+16E) |
| Total threads | 24 | 24 |
| CPU speed | 2.1 GHz | 2.1 GHz |
| TurboBoost / TurboCore frequency | 5.4 GHz | 5.4 GHz |
| CPU TDP | 55 W | 55 W |
| Test Passmark CPU Mark | 56196 points | 56196 points |
RAM | ||
| RAM | 32 GB | 32 GB |
| Maximum installed RAM capacity | 96 GB | 32 GB |
| RAM type | DDR5 | DDR5 |
| RAM memory frequency | 5600 MHz | 5600 MHz |
| Amount of RAM slots | 2 | 2 |
Graphics card | ||
| Graphics card type | dedicated | dedicated |
| Graphics card series | NVIDIA GeForce | NVIDIA GeForce |
| Graphics card model | RTX 5070 | RTX 5070 |
| Video memory | 8 GB | 8 GB |
| Video card memory type | GDDR7 | GDDR7 |
| GPU TDP | 115 W | 115 W |
| Advanced Optimus | ||
| VR | ||
Storage | ||
| Drive type | SSD M.2 NVMe | SSD M.2 NVMe |
| Drive capacity | 1 TB | 1 TB |
| M.2 drive interface | PCIe 4.0 4x | PCIe 4.0 4x |
| M.2 drive size | 22x42 mm | 22x42 mm |
| Additional M.2 connector | 1 | 1 |
| Addittional M.2 connectors interface | PCI-E 4.0 4x | PCI-E 4.0 4x |
| Additional M.2 drive size | 22x80 mm | 22x80 mm |
Connections | ||
| Connection ports | HDMI v2.1 | HDMI v2.1 |
| Card reader | ||
| USB-A 5Gbps | 2 pcs | 3 pcs |
| USB-C 10Gbps | 1 pcs | 1 pcs |
| USB-C 40G (USB4) | 1 pcs | 1 pcs |
| Thunderbolt interface | x1 v4 | x1 v4 |
| Alternate Mode | ||
| Monitors connection | 3 | 2 |
| LAN (RJ-45) | 1 Gbps | |
| Wi-Fi | Wi-Fi 7 (802.11be) | Wi-Fi 7 (802.11be) |
| Bluetooth | v5.4 | v5.4 |
Multimedia | ||
| Webcam | 2560x1920 (Quad HD) | 2560x1920 (Quad HD) |
| Camera shutter | ||
| Speakers | 2 pcs | 2 pcs |
| Sound power | 2x2 W | 2x2 W |
| Brand acoustics | Harman | Harman |
| Security | 3D face scanner | |
Keyboard | ||
| Backlight | RGB per key | RGB 24 zone |
| Key design | island type | island type |
| Num block | ||
| Additional keys | 1 | |
| Input device | touchpad | touchpad |
Battery | ||
| Battery capacity | 84 W*h | 80 W*h |
| Operating time | 7 h | 4.4 h |
| Power Delivery via USB-C | ||
| Power Delivery | 100 W | |
| Fast charge | ||
| Charging time | 50% in 30 min | 70% in 30 min |
| Power supply Included | 245 W | 245 W |
General | ||
| Preinstalled OS | Win 11 Home | Win 11 Home |
| Material | aluminum | aluminium / plastic |
| Dimensions (WxDxT) | 362x263x18 mm | 345x255x20 mm |
| Weight | 2 kg | 1.9 kg |
| Color | ||
| Added to E-Catalog | april 2026 | january 2026 |
Compare Lenovo Legion 7 16IAX10 and Legion 5 15IAX10
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Glossary
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.
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.
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.
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.
HDR Brightness
HDR brightness in laptops indicates how brightly the screen can display content with an extended dynamic range, where both very bright and dark areas of the frame are important at the same time. This parameter is especially noticeable in movies, games, and HDR videos: highlights, sunlight, lights, reflections, and other bright details look more expressive and realistic than on a standard screen. Unlike standard display brightness, which describes everyday work in SDR, HDR brightness specifically relates to the playback of HDR content and better reveals the capabilities of the matrix. The higher this indicator, the more impressive the compatible content looks, although contrast, matrix type, and local dimming are also important for the full result. In practice, a laptop with good HDR brightness is more enjoyable for watching Netflix, YouTube HDR, or modern games with extended range support.
HDR
HDR technology format supported by the laptop.
This technology is designed to expand the range of brightness reproduced by the laptop screen; Simply put, an HDR screen will display brighter whites and darker blacks than a regular matrix. In fact, this can significantly improve image quality. First, the expansion of the dynamic range contributes to the brightness and fidelity of colours on the screen; secondly, the visibility of individual details in very bright or very dark areas of the frame is preserved (whereas on a normal screen such details often “sink” in solid white or black).
Note that in order to fully use this function, you need not only a laptop with HDR, but also the corresponding content (video files recorded in HDR, games where this technology is implemented, etc.). In addition, the laptop must support the HDR format used by the content being played. Nowadays, you can find such options:
— HDR10. Historically the first of the consumer HDR formats, less advanced than those described below, but extremely widespread. In particular, HDR10 is supported by almost all streaming services that provide HDR content at all, and it is also common for Blu-ray discs. Allows you to work with a colour depth of 10 bits (hence the name). At the same time, devices of this format are also compatible with content in HDR10 +, although its quality will be limited by the capabilities of the original HDR10.
...— HDR10+. An improved version of HDR10. With the same colour depth (10 bits), it uses the so-called dynamic metadata, which allows transmitting information about the colour depth not only for groups of several frames, but also for individual frames. This results in an additional improvement in colour reproduction.
Dolby Vision. An advanced standard used particularly in professional cinematography. Allows you to achieve a colour depth of 12 bits, uses the dynamic metadata described above, and also makes it possible to transmit two image options at once in one video stream — HDR and normal (SDR). At the same time, Dolby Vision is based on the same technology as HDR10, so in laptops it is almost guaranteed to be combined with at least HDR10, and even with HDR10 +.
This technology is designed to expand the range of brightness reproduced by the laptop screen; Simply put, an HDR screen will display brighter whites and darker blacks than a regular matrix. In fact, this can significantly improve image quality. First, the expansion of the dynamic range contributes to the brightness and fidelity of colours on the screen; secondly, the visibility of individual details in very bright or very dark areas of the frame is preserved (whereas on a normal screen such details often “sink” in solid white or black).
Note that in order to fully use this function, you need not only a laptop with HDR, but also the corresponding content (video files recorded in HDR, games where this technology is implemented, etc.). In addition, the laptop must support the HDR format used by the content being played. Nowadays, you can find such options:
— HDR10. Historically the first of the consumer HDR formats, less advanced than those described below, but extremely widespread. In particular, HDR10 is supported by almost all streaming services that provide HDR content at all, and it is also common for Blu-ray discs. Allows you to work with a colour depth of 10 bits (hence the name). At the same time, devices of this format are also compatible with content in HDR10 +, although its quality will be limited by the capabilities of the original HDR10.
...— HDR10+. An improved version of HDR10. With the same colour depth (10 bits), it uses the so-called dynamic metadata, which allows transmitting information about the colour depth not only for groups of several frames, but also for individual frames. This results in an additional improvement in colour reproduction.
Dolby Vision. An advanced standard used particularly in professional cinematography. Allows you to achieve a colour depth of 12 bits, uses the dynamic metadata described above, and also makes it possible to transmit two image options at once in one video stream — HDR and normal (SDR). At the same time, Dolby Vision is based on the same technology as HDR10, so in laptops it is almost guaranteed to be combined with at least HDR10, and even with HDR10 +.
VESA DisplayHDR Certification
VESA DisplayHDR certified, which corresponds to a screen that supports HDR technology.
See above for more details on this technology. And VESA DisplayHDR is an open standard that defines the overall image quality on an HDR screen by a number of parameters — brightness, colour depth, etc. Based on the test results, a screen that meets the required parameters is assigned a certain certificate with a numerical designation. So, the minimum level is DisplayHDR 400, the maximum is DisplayHDR 1400 (although in laptops, as of the end of 2020, there are no screens higher than DisplayHDR 1000). The number in such a designation is indicated by the brightness that the screen must provide: for example, DisplayHDR 400 must produce at least 400 cd / m2. Accordingly, a higher number denotes more extensive display capabilities and more advanced HDR performance.
A separate case is the DisplayHDR True Black certifications. This standard was specifically created for so-called emissive displays such as OLED (see "Matrix type"), which are capable of displaying very deep blacks. The native brightness of such displays is not very high — in particular, the current DisplayHDR 400 True Black and DisplayHDR 500 True Black provide a total screen brightness of only 250 and 300 cd / m2, respectively (against 400 and 500 cd / m2 in the original standards, without the addition " True Black"). However, in terms of black transmission efficiency, such di...splays surpass conventional HDR counterparts by orders of magnitude, which gives a noticeable increase in image quality — in particular, the mentioned True Black standards with indexes 400 and 500 win even when compared with conventional DisplayHDR 1000. However, it should be taken into account that that this advantage is most noticeable in relatively dim ambient light.
See above for more details on this technology. And VESA DisplayHDR is an open standard that defines the overall image quality on an HDR screen by a number of parameters — brightness, colour depth, etc. Based on the test results, a screen that meets the required parameters is assigned a certain certificate with a numerical designation. So, the minimum level is DisplayHDR 400, the maximum is DisplayHDR 1400 (although in laptops, as of the end of 2020, there are no screens higher than DisplayHDR 1000). The number in such a designation is indicated by the brightness that the screen must provide: for example, DisplayHDR 400 must produce at least 400 cd / m2. Accordingly, a higher number denotes more extensive display capabilities and more advanced HDR performance.
A separate case is the DisplayHDR True Black certifications. This standard was specifically created for so-called emissive displays such as OLED (see "Matrix type"), which are capable of displaying very deep blacks. The native brightness of such displays is not very high — in particular, the current DisplayHDR 400 True Black and DisplayHDR 500 True Black provide a total screen brightness of only 250 and 300 cd / m2, respectively (against 400 and 500 cd / m2 in the original standards, without the addition " True Black"). However, in terms of black transmission efficiency, such di...splays surpass conventional HDR counterparts by orders of magnitude, which gives a noticeable increase in image quality — in particular, the mentioned True Black standards with indexes 400 and 500 win even when compared with conventional DisplayHDR 1000. However, it should be taken into account that that this advantage is most noticeable in relatively dim ambient light.
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.
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.
Maximum installed RAM capacity
The maximum amount of RAM that can be installed on a laptop. It depends, in particular, on the type of memory modules used, as well as on the number of slots for them. Paying attention to this parameter makes sense, first of all, if the laptop is bought with the expectation of and the amount of actually installed memory in it is noticeably less than the maximum available. So laptops can be upgraded in RAM to 16 GB, 24 GB a>, 32 GB, 48 GB, 64 GB and even more - 128 GB.
Advanced Optimus
In laptops, the image processed by a discrete video card first passes through the graphics built into the CPU, and only then is transmitted to the display. The MUX Switch on the motherboard of gaming laptop models allows you to choose between using integrated or discrete graphics. One of its advanced varieties is the Advanced Optimus intelligent system, which works in conjunction with video adapters from NVIDIA. It allows you to literally choose on the fly the most suitable GPU for data processing, depending on the intensity of the tasks being performed.
Card reader
A device for working with removable memory cards. Usually, it looks like a characteristic slot right on the laptop case, into which the media is inserted. There are different standards for memory cards, a list of compatible standards is indicated in the note to this item. It is worth noting here that for modern laptops it is almost mandatory to support the SD format and its modifications — SD HC, often also SD XC; other options may also be envisaged, but they have not received such distribution. Anyway, this feature is convenient because memory cards are widely used in other types of electronics: for example, SD is the generally accepted standard in digital cameras, and microSD (compatible with SD slots through simple adapters) is used in smartphones. Accordingly, the presence of a card reader greatly facilitates the exchange of data between a laptop and external devices.



