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Comparison Gigabyte Ultra Durable PG5 UD750GM PG5 vs Gigabyte Ultra Durable GM UD750GM

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Gigabyte Ultra Durable PG5 UD750GM PG5
Gigabyte Ultra Durable GM UD750GM
Gigabyte Ultra Durable PG5 UD750GM PG5Gigabyte Ultra Durable GM UD750GM
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Power750 W750 W
Form factorATXATX
Specs
PFCactiveactive
Efficiency90 %90 %
Cooling systemsemi-passive (fan off)active (fan)
Fan size120 mm120 mm
Fan bearinghydrodynamichydrodynamic
Certification80+ Gold80+ Gold
ATX12V version32.31
Power connectors
MB/CPU power supply24+8+8(4+4) pin24+8+8(4+4) pin
SATA88
MOLEX33
PCI-E 8pin (6+2)44
PCI-E 16pin1
Floppy
Cable systemmodularmodular
Cable length
MB610 mm610 mm
CPU600 mm600 mm
SATA600 mm600 mm
MOLEX500 mm500 mm
PCI-E600 mm600 mm
Max. power
+3.3V20 А20 А
+5V20 А20 А
+12V162.5 А61 А
-12V0.3 А0.3 А
+5Vsb3 А3 А
+12V750 W732 W
+3.3V +5V105 W105 W
-12V3.6 W3.6 W
+5Vsb15 W15 W
General
Over voltage protection (OVP)
Over power protection (OPP)
Short circuit protection (SCP)
ProtectionUVP, OCP, OTPUVP, OCP, OTP
Manufacturer's warranty5 years5 years
Dimensions (HxWxD)86x150x140 mm86x150x140 mm
Added to E-Catalogdecember 2023june 2022
Glossary

Cooling system

Active cooling system. Uses a fan that constantly operates to remove heat from internal components. Unlike passive cooling, the active system provides better heat dissipation and stability under high loads, preventing overheating. However, it creates noise. To eliminate this, fans in such power supplies can have dynamic speed control (AFC – Automatic Fan Control), reducing speed at low power consumption.

Semi-passive. Active cooling systems with automatic fan shutdown in situations where the load on the power supply is low and heat generation is reduced. Let us remind you that systems of this type are more efficient than passive ones, but they consume additional energy and create noise during operation. Accordingly, at low loads, when intensive cooling is not required, it is wiser to turn off the fans — this saves energy and reduces the noise level.

Passive(radiators). Compared to fans, radiators have a number of advantages: for example, they do not create any noise and do not require their own power supply (thus reducing overall energy consumption). On the other hand, they are significantly less efficient, as a result — the power of power supplies with passive cooling does not exceed 600 W. In addition, such power supplies are quite expensive.

ATX12V version

A standard for power supplies that supplements the ATX specifications regarding power supply along the 12 V line. Introduced into use since the time of the Intel Pentium 4 processor. In the first series of the standard, the +5 V line was mainly used; from version 2.0, the +12 V line was introduced to fully power the components computer. Also in the second generation, a 24-pin power connector appeared, used in most modern motherboards.

PCI-E 16pin

the 16-pin PCI-E power connector is designed to replace the existing 8-pin counterparts. It consists of twelve lines for current supply and four more for data transmission. The connector provides up to 600 W of additional power, which is a fourfold increase in power compared to 8-pin versions of the interface. Additional PCI-E connectors of all formats are used to power those types of internal peripherals that are no longer enough with 75 W supplied directly through the PCI-E socket on the motherboard.

Floppy

The presence of at least one Floppy power connector in the PSU.

Initially, this connector was intended to power floppy disk drives, hence the name. It is also known under the designation "mini-Molex". Anyway, this standard is generally considered obsolete, but it is still used by some specific types of components, and therefore continues to be used in power supplies.

+12V1

The maximum current that the PSU is capable of delivering to the first power line is + 12V.

For more information about power lines in general, see "+3.3V". Here it is worth mentioning that 12 V is the most popular voltage among computer power connectors. It is used in almost all such connectors (with a few exceptions), and some plugs (for example, additional PCI-E power for 6 or 8 connectors) use only 12-volt lines — and in the + 12V format. And the division of + 12V power into several separate lines is used for safety purposes — in order to reduce the current flowing through each individual wire, and thus prevent excessive load and overheating of the wiring. However, some manufacturers do not specify the maximum current for individual + 12V lines and give only a general value in the characteristics; in such cases, this number is indicated in this paragraph.

+12V

The maximum power that the PSU is capable of delivering to the + 12V power line.

See "Maximum current and power" for details on power lines in general. Here it is worth mentioning that 12 V is the most popular voltage among computer power connectors. It is used in almost all such connectors (with a few exceptions), and some plugs (for example, additional PCI-E power for 6 or 8 connectors) use only 12-volt lines — and in the + 12V format. So this indicator is one of the most important characteristics of any PSU.

Note that many power supplies have several separate + 12V power lines. In such cases, the total power is indicated here, which, usually, is divided equally between the lines.
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