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Comparison ASRock B550M Pro4 vs Gigabyte B550M DS3H

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ASRock B550M Pro4
Gigabyte B550M DS3H
ASRock B550M Pro4Gigabyte B550M DS3H
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Featuresgaminggaming
SocketAMD AM4AMD AM4
Form factormicro-ATXmicro-ATX
Power phases88
VRM heatsink
Size (HxW)244x244 mm244x244 mm
Chipset
ChipsetAMD B550AMD B550
BIOSAmiAmi
UEFI BIOS
RAM
DDR44 slot(s)4 slot(s)
Memory moduleDIMMDIMM
Operation mode2 channel2 channel
Max. clock frequency4733 MHz4000 MHz
Max. memory128 GB128 GB
XMP
Drive interface
SATA 3 (6Gbps)64
M.2 connector22
M.21xSATA/PCI-E 2x, 1xPCI-E 4x1xSATA/PCI-E 4x, 1xPCI-E 2x
M.2 SSD cooling
Integrated RAID controller
Expansion slots
1x PCI-E slots11
PCI-E 16x slots22
PCI Modes16x/4x16x/4x
PCI Express4.04.0
Steel PCI-E connectors
Internal connections
TPM connector
USB A 2.02 pcs1 pcs
USB A 5Gbps (3.2 gen1)2 pcs1 pcs
ARGB LED strip2
RGB LED strip2
Video outputs
D-Sub output (VGA)
DVI outputDVI-D
HDMI output
HDMI versionv.2.1v.2.1
DisplayPort
DisplayPort versionv.1.4
Integrated audio
AudiochipRealtek ALC1200Realtek ALC887
Sound (channels)7.17.1
Network interfaces
LAN (RJ-45)1 Gbps1 Gbps
LAN ports11
LAN controllerRealtek RTL8111HRealtek GbE
External connections
USB 2.024
USB A 5Gbps (3.2 gen1)4 pcs4 pcs
USB A 10Gbps (3.2 gen2)1 pcs
USB C 10Gbps (3.2 gen2)1 pcs
PS/211
Power connectors
Main power socket24-pin24-pin
CPU power8-pin8-pin
Fan power connectors63
CPU Fan 4-pin1
CPU/Water Pump Fan 4-pin1
Chassis/Water Pump Fan 4-pin4
Added to E-Catalogmay 2020may 2020
Brief conclusions of the comparison motherboards

Price graph
ASRock B550M Pro4 often compared
Gigabyte B550M DS3H often compared
Glossary

Max. clock frequency

The maximum RAM clock speed supported by the motherboard. The actual clock frequency of the installed RAM modules should not exceed this indicator — otherwise, malfunctions are possible, and the capabilities of the “RAM” cannot be used to the fullest.

For modern PCs, a RAM frequency of 1500 – 2000 MHz or less is considered very low, 2000 – 2500 MHz is modest, 2500 – 3000 MHz is average, 3000 – 3500 MHz is above average, and the most advanced boards can support frequencies of 3500 – 4000 MHz and even more than 4000 MHz.

SATA 3 (6Gbps)

Number of SATA 3 ports on the motherboard.

SATA is now the standard interface for connecting internal drives (mainly HDDs) and optical drives. One device is connected to one such connector, so the number of SATA ports corresponds to the number of internal drives / drives that can be connected to the motherboard through such an interface. A large number ( 6 SATA ports and more) is necessary in case of active use of several hard drives and other peripherals. For domestic use, 4 is enough. SATA 3, as the name suggests, is the third version of this interface, operating at a total speed of about 6 Gbps; the useful speed, taking into account the redundancy of the transmitted data, is about 4.8 Mbps (600 MB / s) — that is, twice as much as in SATA 2.

Note that different SATA standards are quite compatible with each other in both directions: older drives can be connected to newer ports, and vice versa. The only thing is that the data transfer rate will be limited by the capabilities of the slower version, and in some cases it may be necessary to reconfigure the drives with hardware (switches, jumpers) or software. It is also worth saying that SATA 3 is the newest and most advanced variation of SATA today, but the capabilities of this standard are not enough to unlock the full potential of high-speed SSDs. Therefore, SATA 3 is mainly used for hard drives and low-cost SSDs, faster drives ar...e connected to specially designed connectors like M.2 or U.2 (see below).

M.2

Electrical (logical) interfaces implemented through physical M.2 connectors on the motherboard.

See above for more details on such connectors. Here we note that they can work with two types of interfaces:
  • SATA is a standard originally created for hard drives. M.2 usually supports the newest version, SATA 3; however, even it is noticeably inferior to PCI-E in terms of speed (600 MB / s) and functionality (only drives);
  • PCI-E is the most common modern interface for connecting internal peripherals (otherwise NVMe). Suitable for both expansion cards (such as wireless adapters) and drives, while PCI-E speeds allow you to fully realize the potential of modern SSDs. The maximum communication speed depends on the version of this interface and on the number of lines. In modern M.2 connectors, you can find PCI-E versions 3.0 and 4.0, with speeds of about 1 GB / s and 2 GB / s per lane, respectively; and the number of lanes can be 1, 2 or 4 (PCI-E 1x, 2x and 4x respectively)
Specifically, the M.2 interface in the characteristics of motherboards is indicated by the number of connectors themselves and by the type of interfaces provided for in each of them. For example, the entry "3xSATA / PCI-E 4x" means three connectors that can work both in SATA format and in PCI-E 4x format; and the designation "1xSATA / PCI-E 4x, 1xPCI-E 2x" means two connectors, one of which works as SATA or PCI-E 4x, and the second — only as PCI-E 2x.

M.2 SSD cooling

Motherboard-integrated cooling for M.2 SSD drives.

This connector allows you to achieve high speed, however, for the same reason, many M.2 SSDs have high heat dissipation, and additional cooling may be required to avoid overheating. Most often, the simplest radiator in the form of a metal plate is responsible for such cooling — in the case of an SSD, this is quite enough.

Steel PCI-E connectors

The presence of reinforced steel PCI-E connectors on the "motherboard".

Such connectors are found mainly in gaming (see "In the direction") and other advanced varieties of motherboards, designed to use powerful graphics adapters. Steel slots are usually made PCI-E 16x, just designed for such video cards; in addition to the slot itself, its attachment to the board also has a reinforced design.

This feature offers two key advantages over traditional plastic connectors. Firstly, it allows you to install even large and heavy video cards as reliably as possible, without the risk of damaging the slot or board. Secondly, the metal connector plays the role of a protective screen and reduces the likelihood of interference; this is especially useful when using multiple video cards installed side by side.

USB A 2.0

Number of USB 2.0 connectors provided on the motherboard.

USB connectors (of all versions) are used to connect USB ports located on the front panel of the case to the "motherboard". A special cable connects such a port to the connector, with one connector typically working with just one port. In other words, the number of connectors on the motherboard corresponds to the maximum number of front-facing USB ports that can be used with it.

Specifically, USB 2.0 is the oldest version widely used today. It provides a data transfer rate of up to 480 Mbps, is considered obsolete, and is gradually being replaced by more advanced standards, primarily USB 3.2 gen1 (formerly USB 3.0). Nevertheless, quite a bit of peripherals are still produced for the USB 2.0 interface, as its capabilities are quite sufficient for most devices that do not require high connection speeds.

USB A 5Gbps (3.2 gen1)

The number of USB 3.2 gen1 connectors provided on the motherboard.

USB connectors (of all versions) are used to connect USB ports located on the external side of the case to the "motherboard" (usually on the front panel, less often on the top or side). Such a port is connected to the connector with a special cable, and usually, one connector works only with one port. In other words, the number of connectors on the motherboard corresponds to the maximum number of USB ports that can be used with it. It should be noted that in this case we are talking about traditional USB A ports; connectors for the newer USB C are mentioned separately in the specifications.

As for the specific version USB 3.2 gen1 (previously known as USB 3.1 gen1 and USB 3.0), it provides a data transfer speed of up to 4.8 Gb/s and higher power delivery than the earlier USB 2.0 standard. At the same time, USB Power Delivery technology, allowing for power delivery up to 100 W, is generally not supported by connectors of this version for USB A (although it may be implemented in connectors for USB C).

ARGB LED strip

Connector for connecting an ARGB LED strip as a decorative lighting for a computer case. This type of "smart" tape is based on special LEDs, each of which consists of an LED light and a built-in controller, which allows you to flexibly control the luminosity using a special digital protocol and create amazing effects.

RGB LED strip

Connector for connecting a decorative LED strip and other devices with LED indication. Allows you to control the backlight of the case through the motherboard and customize the glow for your tasks, including synchronize it with other components.