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Comparison Lenovo IdeaPad 1 15AMN7 [82VG00XDRA] vs Asus Vivobook Go 15 OLED E1504FA [E1504FA-BQ522]

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Lenovo IdeaPad 1 15AMN7 (82VG00XDRA)
Asus Vivobook Go 15 OLED E1504FA (E1504FA-BQ522)
Lenovo IdeaPad 1 15AMN7 [82VG00XDRA]Asus Vivobook Go 15 OLED E1504FA [E1504FA-BQ522]
Outdated ProductOutdated Product
TOP sellers
Typelaptoplaptop
Screen
Screen size15.6 "15.6 "
Screen typeIPSIPS
Surface treatmentanti-glareanti-glare
Screen resolution1920x1080 (16:9)1920x1080 (16:9)
Refresh rate60 Hz60 Hz
Brightness250 nt250 nt
Contrast700 :1
Colour gamut (NTSC)45 %45 %
TÜV Rheinland certificate
CPU
SeriesRyzen 3Ryzen 5
Model7320U7520U
Processor code nameMendocino (Zen 2)Mendocino (Zen 2)
Processor cores44
Total threads88
CPU speed2.4 GHz2.8 GHz
TurboBoost / TurboCore frequency4.1 GHz4.3 GHz
CPU TDP15 W15 W
Test Passmark CPU Mark9274 points9802 points
RAM
RAM16 GB16 GB
RAM typeLPDDR5LPDDR5
RAM memory frequency5500 MHz5500 MHz
Amount of RAM slotsbuilt-inbuilt-in
Graphics card
Graphics card typeintegratedintegrated
Graphics card seriesAMD RadeonAMD Radeon
Graphics card modelRadeon 610MRadeon 610M
Test 3DMark0613875 points13875 points
Test 3DMark Vantage P7833 points7833 points
Storage
Drive typeSSD M.2 NVMeSSD M.2 NVMe
Drive capacity512 GB512 GB
M.2 drive interfacePCIe 4.0 4xPCIe 3.0
M.2 connector interfacePCI-E 3.0 2x
M.2 drive size22x42 mm22x80 mm
Connections
Connection ports
HDMI
v1.4b
HDMI
v1.4
Card reader
USB-A 2.01 pcs1 pcs
USB-A 5Gbps1 pcs1 pcs
USB-C 5Gbps1 pcs1 pcs
Alternate Mode
Monitors connection11
Wi-FiWi-Fi 6 (802.11ax)Wi-Fi 6E (802.11ax)
Bluetoothv5.2v5.3
Multimedia
Webcam1280x720 (HD)1280x720 (HD)
Camera shutter
Speakers2 pcs2 pcs
Keyboard
Backlightin absentin absent
Key designisland typeisland type
Num block
Additional keys4
Input devicetouchpadtouchpad
Battery
Battery capacity42 W*h42 W*h
Operating time17.35 h
Power Delivery via USB-C
Fast charge
Charging time15 minutes will provide 2 hours of work60% in 49 min
Power supply Included65 W45 W
General
Preinstalled OSwithout OSwithout OS
MIL-STD-810 Military Standard
Materialmatte plasticmatte plastic
Dimensions (WxDxT)360x236x18 mm360x233x18 mm
Weight1.58 kg1.63 kg
Color
Added to E-Catalognovember 2025march 2024
Compare Lenovo 82VG00XDRA and Asus E1504FA-BQ522 Lenovo IdeaPad 1 15AMN7 и Asus Vivobook Go 15 OLED E1504FA?
Lenovo IdeaPad 1 15AMN7 often compared
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Glossary

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).

TÜV Rheinland certificate

Laptop display certification for safe blue light emission levels and panel flicker rates. The presence of a TÜV Rheinland certificate confirms that the screen is comfortable for the eyes.

TÜV Rheinland is a large international concern headquartered in Cologne, Germany, providing a wide range of audit services. The company's specialists have developed and approved a number of tests for the compliance of the screens of mobile devices, monitors and TVs with the required level of eye protection from the harmful effects of display radiation on the user's vision on the other side of the screen. The authoritative opinion of TÜV Rheinland is respected in the tech community. Certificates from this body are issued to successfully tested electronics for the implementation of blue light filtering and screen flicker suppression technologies.

Series

Each series combines chips that are similar in general level, purpose, and often also in individual specific features. At the same time, most series include processors of several generations at once, which can differ significantly in actual characteristics. It is worth noting that until recently, laptops were almost exclusively equipped with processors from AMD or Intel - until in 2020, Apple introduced its own chip Apple M1(with updated versions of Apple M1 Pro and Apple M1 Max), Apple M2(2022) with productive chips M2 Pro, M2 Max and Apple M3, M3 Pro, M3 Max(2023). Then Qualcomm entered the arena with its Snapdragon processors.

At the moment, the following series are mainly relevant in laptops:

AMD Ryzen 3. The cheapest series of AMD chips in the Ryzen family (Ryzen 3, Ryzen 5, Ryzen 7, Ryzen 9 and Ryzen AI), using the Zen microarchitecture. In ter...ms of general design, Ryzen 3 is similar to its older brothers, but half of the computing cores are deactivated. Nevertheless, it is quite advanced and is even found in ultrabooks.

— Ryzen 5. The second series on the Zen architecture is a more affordable alternative to the Ryzen 7 chips. Ryzen 5 chips have slightly more limited performance characteristics (in particular, a lower clock frequency and, in some models, L3 cache volume). Otherwise, they are completely similar to the "sevens" and are also positioned as high-performance chips for gaming and workstations. For more details, see "Ryzen 7" below.

— Ryzen 7. The first series of processors from AMD, built on the Zen microarchitecture. It was introduced in March 2017. In general, Ryzen chips (of all series) are promoted as high-end solutions for gamers, developers, graphic designers and video editors. One of the main differences between Zen and previous microarchitectures was the use of simultaneous multithreading, due to which the number of operations per clock was significantly increased at the same clock frequency. In addition, each core received its own floating-point calculation unit, the speed of the first-level cache memory increased, and the L3 cache volume in Ryzen 7 chips is 16 MB by default.

— Ryzen 9. AMD Ryzen 9 processors on the Zen microarchitecture debuted in 2019. The series became the top among all Ryzens, displacing Ryzen 7 from this position. First of all, the CPU line is usually used for professional tasks (design, video editing, 3D rendering), games, streaming and other high-load applications. The first Ryzen 9 models had 12 cores and 24 threads, in later ones this number was increased to 16 and 32, respectively.

— Ryzen AI. The Ryzen series of processors with artificial intelligence was launched in 2024. The first in the lineup was the AMD Ryzen AI 300 subfamily. It introduces the new Zen 5 computing core architecture, has integrated RDNA 3.5 graphics, and a powerful XDNA 2 neural processor with a performance of up to 50 TOPS (trillion operations per second). The Ryzen AI chips are perfect for a wide range of tasks — from everyday work to complex calculations using AI algorithms.

— Atom. Processors specially developed by Intel for mobile devices (including smartphones). Used mainly in ultra-compact laptops.

— Core M. Processors designed for portable devices (in particular, ultra-compact laptops) and featuring extremely low heat generation, allowing the use of passive cooling systems. They were introduced in 2014 as the first serial chips using the 14 nm process technology.

Celeron. The most budget series in the modern line of desktop processors from Intel. However, the latest generations are equipped with integrated graphics.

Pentium. Budget desktop processors from Intel, slightly superior in characteristics to Celeron, but not up to the Core i3. Also have integrated graphics.

Processor. A line of entry-level processors that precedes the Core i3 family in Intel's modern hierarchy. These chipsets are found in entry-level laptops designed for everyday home or office use, as well as undemanding games.

Intel Core i3 / Core 3. A series of entry-level and mid-range processors, the most budget-friendly in the Core family. However, in terms of characteristics and computing power, the processors of this line are superior to the Pentium and Celeron series (see above).

Intel Core i5 / Core 5. A line of mid-range processors — both in general and by the standards of the Core family in particular. Most often, the processors of the series contain from 4 to 10 cores, and in terms of performance, they are between the relatively inexpensive i3 (Core 3) and the powerful i7 (Core 7).

Intel Core i7 / Core 7. A series of high-performance processors from Intel. Before the i9, it was the most advanced in the Core family, but then it gave way to the "nine". Core 7 chips have at least 4 cores and integrated graphics.

Core i9. Top-end processors released in 2017; the most powerful line of consumer-grade notebook processors at the time of their release, displacing Core i7 chips from this position. They have 6 cores and a large L3 cache.

Core Ultra 5. A transformation of the popular series of mobile processors of the strong mid-range Intel Core i5, which received the Ultra prefix since the end of 2023 — when the Meteor Lake generation of chipsets debuted. The main feature of the Core Ultra 5 processors is a separate NPU, which gives advantages when working with AI models.

Core Ultra 7. A pre-top series of high-performance mobile processors from Intel, which replaced the Core i7 family at the end of 2023 (with the advent of the new generation of Meteor Lake chipsets). A mandatory attribute of the Ultra models has become a neural coprocessor, responsible for accelerating the operation of artificial intelligence algorithms.

Core Ultra 9. The most powerful line of laptop processors from Intel, released to replace the Core i9 family at the end of 2023. The premiere of models with the Ultra addition took place in the Meteor Lake chipset generation. A distinctive feature of Intel Core Ultra 9 is the presence of a separate NPU to improve the efficiency of using artificial intelligence models.

— Apple. A series of processors from Apple, which debuted in November 2020 with the release of the next generations of MacBook, MacBook Air and MacBook Pro. In the initial configurations, they are equipped with 8 cores - 4 productive and 4 economical; the latter, according to the creators, consume 10 times less energy than the former. This, combined with the 5 nm process technology, made it possible to achieve very high energy efficiency and, at the same time, performance. It is also worth noting that the processors of this series are made according to the system-on-chip scheme: a single module combines a CPU, a graphics adapter, RAM (in the first models - 8 or 16 GB), a solid-state NVMe drive and some other components (in particular, Thunderbolt 4 controllers).

— Snapdragon. Snapdragon processors are essentially mobile solutions — they are traditionally installed in smartphones and tablets. Separate lines of Snapdragon chips have been released specifically for laptops (for example, X Elite on ARM architecture). Many laptops based on such processors are equipped with built-in LTE or even 5G modules. Their advantage is also high energy efficiency.

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.

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.

Test 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).

M.2 drive interface

The connection interface used by the SSD module installed in the laptop with an M.2 connector (see "Drive Type").

One of the features of the M.2 connector and drives designed for it is that they can use two different connection interfaces: PCIe (in one form or another) or SATA. It should be noted that this section specifies the data for the SSD module; the connector itself may provide for other interface options, including more advanced ones—see "M.2 Connector Interface" (for example, a drive with PCIe 3.0 connection can be placed in a socket that also supports the faster PCIe 4.0). However, in any case, the connection socket usually allows for the full capabilities of the installed drive, so this section can reliably assess the potential capabilities of the standard M.2 module.

Regarding specific interfaces, nowadays the most common options are:

— SATA 3. The SATA interface was initially created for traditional hard drives. The third version of this interface is the latest; it provides data transfer speeds up to 600 MB/s. This is significantly less than PCIe and is generally quite low by SSD standards. Therefore, M.2 connection using SATA is mainly characteristic of inexpensive entry-level modules. Nevertheless, even such drives generally operate faster than most HDDs.

— PCIe. A universal interface for connecting internal peripherals. It provides generally higher...speeds than SATA, making it better suited for SSD modules: PCIe can theoretically realize the full potential of solid-state drives, even the fastest ones. In practice, however, the supported data transfer speed can vary depending on the interface version and the number of lanes (data transfer channels). Here are the options most relevant for modern laptops:
  • PCIe 3.0 2x. Connection using 2 PCIe version 3.0 lanes. This version provides a speed of about 1 GB/s per lane; consequently, two lanes yield a maximum of just under 2 GB/s.
  • PCIe 3.0 4x. Connection using 4 PCIe version 3.0 lanes. Provides a maximum speed of about 4 GB/s.
  • PCIe 4.0 4x. Connection using 4 PCIe version 4.0 lanes. In this version, the bandwidth has been doubled compared to PCIe 3.0—thus, 4 lanes give a maximum speed of about 8 GB/s.
  • PCIe 5.0 4x has twice the bandwidth compared to PCIe 4.0 4x—4 GB/s per lane. And 4 lanes allow for a speed of 16 GB/s.
Note that in the case of M.2 connectors, different variations of PCIe are usually fully compatible with each other—except that the connection speed when working with a "non-native" connector will be limited by the capabilities of the slowest component. For example, when connecting a PCIe 3.0 4x SSD module to a PCIe 3.0 2x slot, the speed will correspond to the slot's capabilities, and when connected to PCIe 4.0 4x, to the capabilities of the drive.

M.2 connector interface

The interface of the main M.2 connector provided in the laptop.

In this case, the main slot is considered to be the one in which the SSD M.2 drive is installed (see "Drive type"). The interface of the drive itself is indicated separately (see above), and the interface of the connector is specified if the connector supports a more advanced type of connection than the device installed in it. An example is the following situation: the device itself works according to the SATA or PCIe 3.0 2x standard (see "M.2 drive interface" above), and the connector on the board is capable of working with the PCIe 3.0 4x interface.

Such information will be useful, first of all, for evaluating the possibilities for upgrading a laptop (with replacing a standard SSD module with a faster one). Nowadays, in this paragraph, you can mainly find the following options:

— PCIe 3.0 2x. In fact, the most modest PCIe standard found in M.2 ports of modern laptops: connection using 2 lanes of PCIe version 3.0. This version provides speeds of about 1 GB/s per line; respectively, two lines give a maximum of just under 2 GB / s.

— PCIe 3.0 4x. Connection using 4 lanes PCIe version 3.0. Provides a maximum speed of about 4 GB / s.

— PCIe 4.0 4x. Connection using 4 lanes PCIe version 4.0. In this version, the bandwidth, compared to PCIe 3.0, has been doubled — thus, 4 lines give a maximum speed of about 8 GB / s.

— PCIe. Connection via PCIe, f...or which the manufacturer did not specify the details (version and number of lines).

Recall that in the case of M.2 connectors, different PCIe options are quite compatible with each other — except that the speed will be limited by the capabilities of a slower component. In fact, this means that, for example, in an M.2 connector with a PCIe 3.0 4x interface, it is quite possible to connect a drive for PCIe 3.0 2x or PCIe 4.0 4x; in the first case, the speed will be limited by the capabilities of the drive, in the second, by the capabilities of the connector.