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Comparison Nasosy plus Garden-DSP9-5.5/0.75PD vs Nasosy plus DSP-550PD

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Nasosy plus Garden-DSP9-5.5/0.75PD
Nasosy plus DSP-550PD
Nasosy plus Garden-DSP9-5.5/0.75PDNasosy plus DSP-550PD
from $48.45 up to $57.92
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from $35.69 up to $45.71
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Main
Ceramic face seal. Quiet work. Universal fitting.
Suitable forwaste waterwaste water
Specs
Maximum performance17200 L/h11500 L/h
Maximum head8.1 m7.5 m
Pump typecentrifugalcentrifugal
Maximum immersion depth5 m
Maximum particle size35 mm30 mm
Mechanical impurities3000 g/m³3000 g/m³
Maximum liquid temperature35 °С35 °С
pH value5 – 95 – 9
Dry run protection
Float switch
Suction systemsingle-stagesingle-stage
Outlet size1", 1 1/4" and 1 1/2"1", 1 1/4" and 1 1/2"
Engine
Maximum power750 W550 W
Power sourceelectricelectric
Mains voltage230 V230 V
Engine typeasynchronousasynchronous
General specs
Protection class (IP)X8X8
Country of originUkraineUkraine
Pump housing materialplasticplastic
Impeller / auger materialplasticplastic
Dimensions370x215x175 mm163x345 mm
Weight5.4 kg5.1 kg
Added to E-Catalognovember 2014october 2014

Maximum performance

The maximum volume of water that the device can pump in a certain amount of time. It is one of the key specs of any pump because characterizes the volume of water with which the device can work. At the same time, it does not always make sense to pursue maximum performance — after all, it significantly affects the dimensions and weight of the unit.

Some formulas allow you to derive optimal performance values for different situations. So, if the pump is designed to supply water to water intake points, its minimum required performance should not be lower than the highest total flow rate; if desired, a margin of 20-30% can be added to this value. And for sewer models (see "Suitable for"), everything will depend on the volume of wastewater. More detailed recommendations for choosing a pump depending on performance can be found in special sources.

Maximum head

The maximum head generated by the pump. This parameter is most often indicated in meters, by the height of the water column that the unit can create — in other words, by the height to which it can supply water. You can estimate the pressure created by the pump using a simple formula: every 10 m of head corresponds to a pressure of 1 bar.

It is worth choosing a pump according to this parameter, taking into account the height to which it should supply water, as well as adjusting for losses and the need for pressure in the water supply. To do this, it is necessary to determine the difference in height between the water level and the highest point of water intake, add another 10 to 30 m to this figure (depending on the pressure that needs to be obtained in the water supply), and multiply the result by 1.1 — this will be the minimum pressure required.

Maximum immersion depth

The maximum depth at which a submersible pump can be placed without the risk of failure or breakdown. It is usually indicated for fresh water, so in fact it is advisable not to lower the pump to the maximum depth level — after all, the density of the pumped liquid may be greater, which will create off-design loads on the structure.

Maximum particle size

The largest particle size that the pump can handle without problems. This size is the main indicator that determines the purpose of the device (see above); and in general, the larger it is, the more reliable the device, the lower the risk of damage if a foreign object enters the suction line. If the risk of the appearance of too large mechanical impurities is still high, additional protection can be provided with filters or grids at the inlet. However, such a measure should be considered only as a last resort, because from constant exposure to solid particles, the grids become clogged and deformed, which can lead to both clogging of the line and filter breakthrough.

Maximum power

Rated power of the pump motor. The more powerful the engine, the higher the performance of the unit, usually, the greater the pressure, suction height, etc. Of course, these parameters largely depend on other features (primarily the pump type, see above); but models similar in design can be compared in terms of power.

Note that high power, usually, increases the size, weight and cost of the pump, and also implies high costs of electricity or fuel (see "Power source"). Therefore, it is worth choosing a pump according to this parameter taking into account the specific situation; more detailed recommendations can be found in special sources.
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