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Comparison Vinga Wolverine D60 Wolverine D6012 vs Artline Gaming X36 X36v16Win

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Vinga Wolverine D60 (Wolverine D6012)
Artline Gaming X36 (X36v16Win)
Vinga Wolverine D60 Wolverine D6012Artline Gaming X36 X36v16Win
Expecting restockExpecting restock
TOP sellers
Product typegaminggaming
Form factorMidi TowerMini Tower
CPU
ChipsetIntel H610Intel H410
Typedesktopdesktop
SeriesCore i5Core i5
Model12400F10400F
Code nameAlder Lake (12th Gen)Comet Lake (10th Gen)
Cores66
Threads1212
Speed2.5 GHz2.9 GHz
TurboBoost / TurboCore4.4 GHz4.3 GHz
Passmark CPU Mark19665 score(s)12439 score(s)
Geekbench 422957 score(s)
Cinebench R151341 score(s)
Memory
RAM16 GB16 GB
Memory typeDDR4DDR4
Speed3200 MHz2666 MHz
Number of slots22
Max. memory support64 GB32 GB
Graphics card
Graphics card typededicateddedicated
Graphics card modelGeForce RTX 3050Radeon RX 6600 XT
Graphics memory8 GB8 GB
Memory typeGDDR6GDDR6
VR
3DMark6206 score(s)
Passmark G3D Mark12986 score(s)15469 score(s)
Storage
Drive typeSSDHDD+SSD
Drive capacity480 GB1000 GB
2nd drive capacity240 GB
NVMe
M.2 connector
Internal 3.5" compartments2
Internal 2.5" compartments3
Back panel
Connectors
 
HDMI output 2 pcs
DisplayPort /2/
DVI
HDMI output
DisplayPort
USB 2.042
USB 3.2 gen124
Monitors connection4
Front Panel
Optical driveis absentis absent
mini-Jack (3.5 mm)
USB 2.022
USB 3.2 gen121
Card reader
Multimedia
LAN (RJ-45)1 Gbps1 Gbps
Wi-Fiis absentis absent
Sound7.17.1
AudiochipRealtek ALC887
General
Lighting typebacklit fanbacklit fan
Lighting colourwhiteRGB
PSU power600 W500 W
Preinstalled OSWindows 11 HomeWindows 11 Home
Materialsteelsteel
Dimensions (HxWxD)466x230x473 mm410x192x450 mm
Weight10 kg
Color
Added to E-Catalogoctober 2023january 2022

Form factor

The form factor of a computer case characterizes, first of all, the internal volume. Main PC Form Factors:

Midi Tower. A representative of the tower family (tower cases) of medium size — about 45 cm in height with a width of 15-20 cm, with the number of external bays from 2 to 4. Most popular for middle-class home PCs.

Mini Tower. The most compact "vertical" case type, with a width of 15-20 cm, has a height of about 35 cm and (usually) less than 2 compartments with external access. Used mainly for office PCs that do not require high performance.

Full Tower. The tower case is one of the largest form factors for PCs today: 15-20 cm wide, 50-60 cm high, with up to 10 externally accessible bays. Most often in this form factor running advanced high performance PCs

Desktop. Enclosures designed for installation directly on the desktop. They often have the possibility of horizontal installation — in such a way that a monitor can be placed on top of the case — although there are also models that are installed strictly vertically. Anyway, "desktop" models are relatively small.

Cube Case. Cases having a cubic or close to it shape. They can have different sizes and are intended for different types of motherboards, this point in each case should be clar...ified separately. Anyway, such cases have a rather original appearance, different from traditional "towers" and "desktops".

Chipset

The model of the chipset used in the standard configuration of the PC.

A chipset can be described as a set of chips that provides the combined operation of the central processor, RAM, I / O devices, etc. It is this chipset that underlies any motherboard. Knowing the chipset model, you can find and evaluate its detailed characteristics; most users do not need such information, but for specialists it can be very useful.

Model

The specific model of the processor installed in the PC, or rather, its index within its series (see "Processor"). The full model name consists of the series name and this index — for example, Intel Core i3 3220; knowing this name, you can find detailed information about the processor (characteristics, reviews, etc.) and determine how suitable it is for your purposes.

Code name

The code name for CPU that the PC is equipped with.

This parameter characterizes, first of all, the generation to which the processor belongs, and the microarchitecture used in it. At the same time, chips with different code names can belong to the same microarchitecture/generation; in such cases, they differ in other parameters — general positioning, belonging to certain series (see above), the presence / absence of certain specific functions, etc.

Nowadays, chips with the following code names are relevant among Intel processors: Coffee Lake (8th generation), Coffee Lake (9th generation), Comet Lake (10th generation) and Rocket Lake (11th generation), Alder Lake (12th generation), Raptor Lake (13th generation), Raptor Lake-S (14th generation). For AMD, the list looks like this: Zen+ Picasso (3rd gen), Zen2 Matisse (3rd gen), Zen2 Renoir (4th gen), Zen 3 Cezanne (5th gen), Zen 3 Vermeer (5th gen), Zen 4 Raphael (6th gen).

Speed

Clock speed of the CPU installed in the PC.

In theory, higher clock speeds have a positive effect on performance because they allow the CPU to perform more operations per unit of time. However, this indicator is rather weakly related to real productivity. The fact is that the actual capabilities of the CPU strongly depend on a number of other factors - the overall architecture, cache size, number of cores, support for special instructions, etc. As a result, you can compare by this indicator only chips from the same or similar series (see “CPU”), and ideally, also from the same generation. And that's pretty approximate.

TurboBoost / TurboCore

Processor clock speed when running in TurboBoost or TurboCore mode.

Turbo Boost technology is used in Intel processors, Turbo Core — AMD. The essence of this technology is the same both there and there: if some of the cores work under high load, and some are idle, then some tasks are transferred from more loaded cores to less loaded ones, which improves performance. This usually increases the clock frequency of the processor; this value is indicated in this paragraph. See above for more information on clock speed in general.

Passmark CPU Mark

The result shown by the PC processor in the test (benchmark) Passmark CPU Mark.

Passmark CPU Mark is a comprehensive test that allows you to evaluate CPU performance in various modes and with a different number of processed threads. The results are displayed in points; the more points, the higher the overall performance of the processor. For comparison: as of 2020, in low-cost solutions, the results are measured in hundreds of points, in mid-range models they range from 800 – 900 to more than 6,000 points, and individual top-end chips are capable of showing 40,000 points or more.

Geekbench 4

The result shown by the PC processor in the test (benchmark) Geekbench 4.

Geekbench 4 is a comprehensive cross-platform test that allows, among other things, to determine the efficiency of the processor in various modes. At the same time, according to the developers, the verification modes are as close as possible to various real tasks that the processor has to solve. The result is indicated in points: the more points — the more powerful the CPU, while the difference in numbers corresponds to the actual difference in performance ("twice the result — twice the power").

Note that the benchmark in Geekbench 4 is the Intel Core i7-6600U processor with a clock frequency of 2.6 GHz. Its power is estimated at 4000 points, and the performance of other tested CPUs is already compared with it.

Cinebench R15

The result shown by the PC processor in the test (benchmark) Cinebench R15.

Cinebench is a test designed to test the capabilities of the processor and graphics card. The creator of this benchmark, Maxon, is also known as the developer of the Cinema 4D 3D editor; this determined the features of testing. So, in addition to purely mathematical tasks, when using Cinebench R15, the processor is loaded with processing high-quality three-dimensional graphics. Another interesting feature is the extensive support for multithreading — the test allows you to fully check the power of chips that process up to 256 threads at a time.

Traditionally, for CPU benchmarks, the test results are indicated in points (more precisely, points — PTS). The more points scored by the CPU, the higher its performance.