Comparison Deepcool LE720 White vs Deepcool LS720 White
Add to comparison | ||
|---|---|---|
| Deepcool LE720 White | Deepcool LS720 White | |
from $135.96 | from $37.00 | |
| User reviews | ||
| TOP sellers | ||
Main specs | ||
| Features | for CPU | for CPU |
| Product type | liquid cooling | liquid cooling |
Fan | ||
| Number of fans | 3 | 3 |
| Fan size | 120 mm | 120 mm |
| Fan thickness | 25 mm | |
| Bearing | hydrodynamic | hydrodynamic |
| Min. RPM | 500 rpm | 500 rpm |
| Max. RPM | 2250 rpm | 2250 rpm |
| Speed controller | auto (PWM) | auto (PWM) |
| Max. air flow | 85.85 CFM | 85.85 CFM |
| Static pressure | 3.27 mm H2O | |
| replaceable | ||
| Noise level | 33 dB | 33 dB |
| Power source | 4-pin | 4-pin |
Radiator | ||
| Heatsink material | aluminum | aluminum |
| Plate material | copper | copper |
| Socket | AMD AM4 AMD AM5 Intel 1150 Intel 1155/1156 Intel 1151 / 1151 v2 Intel 1200 Intel 1700 / 1851 | AMD AM2/AM3/FM1/FM2 AMD AM4 AMD AM5 AMD TR4/TRX4 Intel 1150 Intel 1155/1156 Intel 2011 / 2011 v3 Intel 2066 Intel 1151 / 1151 v2 Intel 1200 Intel 1700 / 1851 |
Liquid cooling | ||
| Heatsink size | 360 mm | 360 mm |
| Pump size | 91x80x52 mm | 86x74x57 mm |
| Pump rotation speed | 2400 rpm | 3100 rpm |
| Pipe length | 410 mm | 410 mm |
| Pump power source | 3-pin | 3-pin |
General | ||
| Lighting | ||
| Lighting colour | ARGB | ARGB |
| Lighting sync | multi compatibility | multi compatibility |
| Mount type | bilateral (backplate) | bilateral (backplate) |
| Manufacturer's warranty | 3 years | 3 years |
| Dimensions | 402x120x27 mm | 402x120x27 mm |
| Weight | 1570 g | 1607 g |
| Added to E-Catalog | august 2023 | july 2022 |
Compare Deepcool LE720 White and LS720 White
Comparing Deepcool LE720 White and Deepcool LS720 White, it can be noted that both devices are intended for CPU water cooling and have similar fan specifications, including 3 fans with a diameter of 120 mm with a maximum speed of 2250 RPM and a noise level of 33 dB. However, the LS720 has a higher pump rotation speed — 3100 RPM compared to 2400 RPM for the LE720, which can provide better cooling performance. It should also be noted that the LS720 supports a larger number of sockets, including AMD TR4/TRX4 and Intel 2011/2011 v3, while the LE720 is limited to older sockets. Both devices have ARGB lighting and a 3-year warranty.
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Glossary
Fan thickness
This parameter must be considered in the context of whether the fan will fit into the computer case. Standard case fans are available in the order of 25 mm in thickness. Low-profile coolers with a thickness of about 15 mm are designed for small-sized cases, where saving space is extremely important. Fans of large thickness (30-40 mm) boast high cooling efficiency due to the increased impeller dimensions. However, they are noisier than standard models at the same speed and do not always fit into the case normally, sometimes touching other components.
Static pressure
The maximum static air pressure generated by the fan during operation.
This parameter is measured as follows: if the fan is installed on a blind pipe, from which there is no air outlet, and turned on for blowing, then the pressure reached in the pipe will correspond to the static one. In fact, this parameter determines the overall efficiency of the fan: the higher the static pressure (ceteris paribus), the easier it is for the fan to “push” the required amount of air through a space with high resistance, for example, through narrow slots of a radiator or through a case full of components.
Also, this parameter is used for some specific calculations, however, these calculations are quite complex and, usually, are not necessary for an ordinary user — they are associated with nuances that are relevant mainly for computer enthusiasts. You can read more about this in special sources.
This parameter is measured as follows: if the fan is installed on a blind pipe, from which there is no air outlet, and turned on for blowing, then the pressure reached in the pipe will correspond to the static one. In fact, this parameter determines the overall efficiency of the fan: the higher the static pressure (ceteris paribus), the easier it is for the fan to “push” the required amount of air through a space with high resistance, for example, through narrow slots of a radiator or through a case full of components.
Also, this parameter is used for some specific calculations, however, these calculations are quite complex and, usually, are not necessary for an ordinary user — they are associated with nuances that are relevant mainly for computer enthusiasts. You can read more about this in special sources.
Socket
Pump size
The dimensions of the pump that the water cooling system is equipped with.
Most often, this parameter is indicated for all three dimensions: length, width and thickness (height). These dimensions determine two points: the space required to install the pump, and the diameter of its working part. With the first, everything is quite obvious; we only note that in some systems the pump simultaneously plays the role of a water block and is installed directly on the cooled component of the system, and it is there that there should be enough space. The diameter approximately corresponds to the length and width of the pump (or the smaller of these dimensions if they are not the same — for example, 55 mm in the model 60x55x43 mm). Some operating features depend on this parameter. So, the large diameter of the pump allows you to achieve the required performance at a relatively low rotation speed; the latter, in turn, reduces the noise level and increases the overall reliability of the structure. On the other hand, a large pump costs more and takes up more space.
Most often, this parameter is indicated for all three dimensions: length, width and thickness (height). These dimensions determine two points: the space required to install the pump, and the diameter of its working part. With the first, everything is quite obvious; we only note that in some systems the pump simultaneously plays the role of a water block and is installed directly on the cooled component of the system, and it is there that there should be enough space. The diameter approximately corresponds to the length and width of the pump (or the smaller of these dimensions if they are not the same — for example, 55 mm in the model 60x55x43 mm). Some operating features depend on this parameter. So, the large diameter of the pump allows you to achieve the required performance at a relatively low rotation speed; the latter, in turn, reduces the noise level and increases the overall reliability of the structure. On the other hand, a large pump costs more and takes up more space.
Pump rotation speed
The speed at which the working part of the pump rotates, which is nominally provided in the water cooling system.
High speed, on the one hand, has a positive effect on performance, on the other hand, it increases the noise level and reduces the time between failures. Therefore, with the same performance, relatively “slow” pumps are considered more advanced, in which the necessary pumping volumes are achieved due to the large diameter of the working part, and not due to speed.
High speed, on the one hand, has a positive effect on performance, on the other hand, it increases the noise level and reduces the time between failures. Therefore, with the same performance, relatively “slow” pumps are considered more advanced, in which the necessary pumping volumes are achieved due to the large diameter of the working part, and not due to speed.



