AC Solar Water Pump System Used for Irrigation

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Solartech China Solar Water Pump is the pumping facility driven by solar energy, which consists of a solar pumping inverter and a pump. Solar water pumps kit is called  solar pumping system combining with solar arrays designed according to different head and daily water flow for application. System is widely utilized for agriculture irrigation,desert control,pasture animal husbandry,city landscaping,daily water supply, etc.


In recent years, with the development of photovoltaic products from city application to huge demands of agriculture,pasture,desert areas, Solartech Solar Pond Pump has become the leading products combining photovoltaic industry with traditional industry such as agriculture water conservancy,desert control,daily water supply,city landscaping, etc.


Solartech Solar Pump driven by infinite solar energy, works from sunrise, and stops at sunset, need no connection to grid power nor diesel oil and battery. System can irrigate directly or store water instead of electricity in a reservoir. Solartech Solar fountain Pumps works with sprinkling irrigation, drip irrigation and infiltrating irrigation facilities, can be more efficient for water saving and dramatically lower the cost of using fossil energy.

Technical Features

Solar Water Pump is a pumping device powered by solar energy, consists of a solar pumping inverter and a deeo well pump, mainly used for agriculture irrigation, desert control, pasture animal husbandry, city waterscape, seawater desalination, living water supply and so on.

Use solar energy, need no connection to grid.         Automatically operation, maintenance free.
Easy to install and move, high universality.              Clean and green, high economic benefits.

Solartech solar pump kit also named solar water pumps, solar pond pump, solar borehole pump, solar funtain pumps, solar powered water pump, solar irrigation pump, solar deep well pump, and solar submersible pump.

Product Specifications

Model

Pump Spec.

Adapting Water Head

Daily Water Supply

Outlet internal Dia.

Adapting well Dia.

Recommended Open Circuit Voltage

Recommended MPP Voltage

SPA4370010

3PH 220V 50Hz

47-32m

1-10 m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4370020

3PH 220V 50Hz

29-20m

10-20m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4550010

3PH 220V 50Hz

70-48m

1-10m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4550020

3PH 220V 50Hz

40-28m

10-20m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4550040

3PH 220V 50Hz

23-15m

20-40m3

40mm

1"1/2

100 mm

350-450VDC

280-350VDC

SPA4750010

3PH 220V 50Hz

81-56m

1-10m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4750020

3PH 220V 50Hz

60-41m

10-20m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA4750040

3PH 220V 50Hz

29-19m

20-40m3

40mm

1"1/2

100 mm

350-450VDC

280-350VDC

SPA4750060

3PH 220V 50Hz

15-8m

40-60m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA4750100

3PH 220V 50Hz

7-6m

60-100m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA41K1010

3PH 220V 50Hz

93-63m

1-10m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA41K1020

3PH 220V 50Hz

79-54m

10-20m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA41K1040

3PH 220V 50Hz

43-27m

20-40m3

40mm

1"1/2

100 mm

350-450VDC

280-350VDC

SPA41K1060

3PH 220V 50Hz

23-12m

40-60m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA41K1100

3PH 220V 50Hz

12-8m

60-100m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA41K5010

3PH 220V 50Hz

128-87m

1-10m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA41K5020

3PH 220V 50Hz

99-68m

10-20m3

30mm

1"1/4

100 mm

350-450VDC

280-350VDC

SPA41K5040

3PH 220V 50Hz

51-33m

20-40m3

40mm

1"1/2

100 mm

350-450VDC

280-350VDC

SPA41K5041

3PH 220V 50Hz

60-39m

20-40m3

40mm

1"1/2

100 mm

350-450VDC

280-350VDC

SPA41K5060

3PH 220V 50Hz

29-15m

40-60m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA41K5130

3PH 220V 50Hz

10-7m

100-130m3

50mm

2"

100 mm

350-450VDC

280-350VDC

SPA41K5100

3PH 220V 50Hz

20-12m

60-100m3

65mm

2"1/2

150 mm

350-450VDC

280-350VDC

SPA42K2010

3PH 380V 50Hz

163-111m

1-10m3

30mm

1"1/4

100 mm

625-750VDC

500-600VDC

SPA42K2020

3PH 380V 50Hz

145-90m

10-20m3

30mm

1"1/4

100 mm

625-750VDC

500-600VDC

SPA42K2040

3PH 380V 50Hz

79-51m

20-40m3

40mm

1"1/2

100 mm

625-750VDC

500-600VDC

SPA42K2060

3PH 380V 50Hz

50-27m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA42K2130

3PH 380V 50Hz

17-12m

100-130m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA42K2100

3PH 380V 50Hz

30-18m

60-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA43K0020

3PH 380V 50Hz

187-114m

10-20m3

30mm

1"1/4

100 mm

625-750VDC

500-600VDC

SPA43K0040

3PH 380V 50Hz

105-65m

20-40m3

40mm

1"1/2

100 mm

625-750VDC

500-600VDC

SPA43K0060

3PH 380V 50Hz

67-37m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA43K0061

3PH 380V 50Hz

79-43m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA63K0100

3PH 380V 50Hz

40-24m

60-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA63K0130

3PH 380V 50Hz

23-16m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA63K0250

3PH 380V 50Hz

18-9m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA44K0020

3PH 380V 50Hz

225-149m

10-20m3

30mm

1"1/4

100 mm

625-750VDC

500-600VDC

SPA44K0040

3PH 380V 50Hz

145-89m

20-40m3

40mm

1"1/2

100 mm

625-750VDC

500-600VDC

SPA44K0060

3PH 380V 50Hz

94-55m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA44K0100

3PH 380V 50Hz

50-32m

60-100m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA64K0100

3PH 380V 50Hz

56-36m

60-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA64K0130

3PH 380V 50Hz

30-22m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA64K0131

3PH 380V 50Hz

37-27m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA64K0250

3PH 380V 50Hz

26-13m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB64K0500

3PH 380V 51Hz

17-6m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA45K5040

3PH 380V 50Hz

172-111m

20-40m3

40mm

1"1/2

100 mm

625-750VDC

500-600VDC

SPA45K5060

3PH 380V 50Hz

113-62m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA45K5100

3PH 380V 50Hz

67-44m

60-100m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA65K5100

3PH 380V 50Hz

75-48m

60-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA65K5130

3PH 380V 50Hz

53-39m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA65K5250

3PH 380V 50Hz

35-21m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB65K5500

3PH 380V 50Hz

25-10m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA47K5040

3PH 380V 50Hz

237-147m

20-40m3

40mm

1"1/2

100 mm

625-750VDC

500-600VDC

SPA47K5060

3PH 380V 50Hz

137-75m

40-60m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA47K5100

3PH 380V 50Hz

87-57m

60-100m3

50mm

2"

100 mm

625-750VDC

500-600VDC

SPA67K5100

3PH 380V 50Hz

114-67m

60-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA67K5130

3PH 380V 50Hz

67-50m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA67K5250

3PH 380V 50Hz

44-25m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA67K5251

3PH 380V 50Hz

52-30 m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB67K5500

3PH 380V 50Hz

33-15m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA69K2100

3PH 380V 50Hz

140-85m

40-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA69K2103

3PH 380V 50Hz

83-60m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA69K2250

3PH 380V 50Hz

62-40m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB69K2500

3PH 380V 50Hz

42-20m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA611K100

3PH 380V 50Hz

159-97m

40-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA611K130

3PH 380V 50Hz

105-77m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA611K250

3PH 380V 50Hz

72-46m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB611K500

3PH 380V 50Hz

50-23m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA613K100

3PH 380V 50Hz

189-115m

40-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA613K130

3PH 380V 50Hz

120-88m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA613K250

3PH 380V 50Hz

81-52m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB613K500

3PH 380V 50Hz

59-27m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA615K100

3PH 380V 50Hz

208-127m

40-100m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA615K130

3PH 380V 50Hz

135-99m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA615K250

3PH 380V 50Hz

88-58m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB615K500

3PH 380V 50Hz

67-31m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPA618K130

3PH 380V 50Hz

143-109m

100-130m3

65mm

2"1/2

150 mm

625-750VDC

500-600VDC

SPA618K250

3PH 380V 50Hz

101-63m

130-250m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPB618K500

3PH 380V 50Hz

83-39m

150-500m3

76mm

3"

150 mm

625-750VDC

500-600VDC

SPC822K270

3PH 380V 50Hz

86-70m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC822K330

3PH 380V 50Hz

70-55m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC822K420

3PH 380V 50Hz

55-48m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC822K540

3PH 380V 50Hz

48-36m

420-540m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC822K700

3PH 380V 50Hz

36-25m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC826K270

3PH 380V 50Hz

105-85m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC826K330

3PH 380V 50Hz

85-65m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC826K420

3PH 380V 50Hz

65-55m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC826K700

3PH 380V 50Hz

44-30m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC830K270

3PH 380V 50Hz

125-105m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC830K330

3PH 380V 50Hz

105-85m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC830K420

3PH 380V 50Hz

85-70m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC830K540

3PH 380V 50Hz

70-52m

420-540m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC830K700

3PH 380V 50Hz

52-35m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC837K270

3PH 380V 50Hz

150-125m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC837K330

3PH 380V 50Hz

125-100m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC837K420

3PH 380V 50Hz

100-80m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC837K540

3PH 380V 50Hz

80-60m

420-540m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC837K700

3PH 380V 50Hz

60-40m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC845K270

3PH 380V 50Hz

180-145m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC845K330

3PH 380V 50Hz

145-120m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC845K420

3PH 380V 50Hz

120-98m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC845K540

3PH 380V 50Hz

98-72m

420-540m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC845K700

3PH 380V 50Hz

72-50m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC855K270

3PH 380V 50Hz

200-170m

210-270m³

65mm

2.5"

250-300mm

625-750VDC

500-600VDC

SPC855K330

3PH 380V 50Hz

170-155m

270-330m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC855K420

3PH 380V 50Hz

155-125m

330-420m³

76mm

3"

250-300mm

625-750VDC

500-600VDC

SPC855K540

3PH 380V 50Hz

125-95m

420-540m³

100mm

4"

250-300mm

625-750VDC

500-600VDC

SPC855K700

3PH 380V 50Hz

95-65m

540-700m³

100mm

4"

250-300mm

625-750VDC

500-600VDC


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Q:My car is overheating could it be a bad water pump?
Water pumps have no protection so over time they rust, as do other underhood parts. NEVER replace any part 'till you KNOW the problem. You need to visit a RADIATOR SHOP and have your radiator looked at. Water pumps don't cause overheating, radiators do.
Q:What is the influence of the speed of the pump motor on the pump?
Low speed, the pump has a certain wear and tear
Q:What causes a water pump on a car to go bad?????
Bearing siezes/ Housing leaks/ Seals wear out. All do to use, expanding/contracting due to heat and cool down, and time also. Just a side note for Bryan K a car being FWD or RWD has no bearing on how much room you have for the waterpump or vice versa. This is a generalized statement that holds no truth. I'll give you one example that makes that statement false : when replacing a timing belt/water pump 96-01 Audi A4 1.8t 4cyl the entire front bumper and support must be removed in order to gain access to the timing belt and water pump. However this method is true for both FWD/AWD models. 99.5 to 2004 volkswagens have the same 1.8t engine but they are not longitudinally orientated the water pump and timing belt can be accessed fairly easy a lot less labor than the audi and the jetta is also available in FWD and AWD. Before someone contradicts the AWD jetta look up 4motion volkswagens. There are not alot in the states but they exist. Thanks for allowing me to throw inmy two cents in correcting generalized truths that are not true.
Q:how do i use a water pump from a car or truck to pump water from a small creek?
a car water pump is run off a belt like your alternator etc so you would really be able to use its not a pump that u can just stick anywhere. if it is only to feed 25 chooks then it wouldnt hurt to just fetch them a bucket of water of every morning that would do.
Q:Water well pump, always on??
In the first place the pump should be able to run constantly without a problem, they're made to do this. In the second place go check your tank, see what the pressure is. You must have a water logged tank First: unplug the electric to the pump and then drain the tank completely. Once this is done make sure the tank is drained, plug it back in, wait and see where it stops at, the pressure. It should be about 55 to 65 pounds. When it stops have someone flush the toilet, it should slowly go down, it may settle without turning on, some do. If so, flush it again. Watch it again. When it starts up, keep your eye on it, it should go back to where it was to start with. If it doesn't then the volume control on the end of the tank, with the small tubing coming from it to the switch is out and should be replaced. You have to turn it all off again, drain the tank and replace the volume control. If the switch doesn't stop but, it comes to the end and doesn't open to stop and keeps running, then your switch control is shot and you'll have to replace that. If you have a bladder tank, it should say on the side, then you should empty the tank, as in the upper questions and then using an air pump put in about 38 pounds or whatever the tank says to put in the bladder, then fill it with water again. See if that's the problem.
Q:does anyone know how to remove the water pump on an 84 corvette?
The easiest way is from underneath the car . Loosen the nuts on the pulley first then remove the belt and the rest should be easy from there .
Q:What do you call this? A water pump?
A portable water pump. They come in a variety of sizes depending on your needs. A friend of mine runs a window cleaning service from the back of his truck. I don't know what size pump he has but I do know he also has a permanent water tank fitted as well as all the other fittings accoutrements for the job.
Q:how to install a main pipe water pump to service the community?
Installation of water pump is very easy, any certified plumber and electrician can install electric water pump. Your question maybe is, how to design water pump water system to service the community? To determine the correct rating of water pump to be used and to design a water system, here are the steps : 1) Determine the safe discharge yield of your well for your water source, by series of tests. This will enable you to know discharge rate of well and the draw back time of water after pumping. This data will be used for designing a pump (its discharge capacity). Note that pump discharge capacity should be lower than well safe yield capacity in order not to drain the well. 2) Determine the suction lift or height of water table in the well by measuring the height from water table up to the top of the well. This data will be used for pump design (its suction lift/height capacity). Pumps suction lift varies depends on its Horsepower capacity and the type of pump (submersibble or centrifugal). 3) Determine number of households in the community. This data will be used for the design of reservoir (tank) for your water system and the number of hours for the pump to operate to fill the tank. Note that the average usage of water is 120 liters per day per capita. So the more the number of population, the bigger the tank and the longer the pumping time in order to meet the per capita usage. 4) Determine the elevations from your water source towards the community to be served. Use survey instrument to determine the elevations. This data will be used to design a height of the tank and the sizes of service pipes towards the community. The higher the difference in elevation from your source towards community, the lower the height of the tank and the smaller the sizes of service pipes. Sizes of service pipes can be determined by hydraulic heads (heights). By following these steps, I gues you can now design and construct a water system.
Q:Does the lift of pump relate to the water level of import and export?
Pump head refers to the inlet and outlet pressure head, that is to say, the entrance resistance greatly affects the pump lift, of course, this inlet resistance has a degree, too large water pump does not bring water or cause water pump cavitation. If the water level at the pump inlet is the same height, the inlet flow resistance of the pump may not be considered.
Q:well water pump questions...thanks?
too much pressure in your pressure tank bleed some air out. reset pressure.

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Range  
Reference  
Validity Period  

3. Manufacturer Capability

a)Trade Capacity  
Nearest Port
Export Percentage
No.of Employees in Trade Department
Language Spoken:
b)Factory Information  
Factory Size:
No. of Production Lines
Contract Manufacturing
Product Price Range