• AC Solar Pump For Irrigation System 1
AC Solar Pump For Irrigation

AC Solar Pump For Irrigation

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Supply Capability:
300000 set/month

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Products

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


Q: Ok, here's my problem. My parents bought this house a few years ago. No problems at first, but then during Hurricane Katrina, the basement started to flood from the heavy rains. Now whenever it rains, it floods. We have a half bath down there and the water would drain out in the shower drain. Now no water drains out, and we've already check the drain for clogs. It's clear. We currently have to bucket the water out.I'm looking for a good water pump to get them before I move out. I'm not sure if it has a sump pit or anything.We don't particularly care if we have to pump it out through a window or anything, as we have a pasture next to us. I just need something that could pump out the water when it rains. Preferably something not too expensive but that will still get the job done.Note: This is in Louisiana; lord knows what compelled the people who built this house to build a basement.Any suggestions/advice are much appreciated.
The fact that the water comes only from the drain, (if I understood correctly) and it only began to happen after Katrina caught my attention. You state that the basement was dry before am I correct? And that there is no leaks on the walls and floor. Just the drain. So here's what I think might be happening and I suggest you look into. 1- Your waste water/sewage line might be linked to the city's rainwater drainage system. They used to do that a while ago and if your house is old enough that might be the case. New building codes now strictly forbid it because in case of heavy rain, the rainwater system overflow and cause basements to flood with wastewater, which is a health hazard. If that is the case you will want to disconnect that drain from the discharge line and install a sewage pump to deal specifically with wastewater. 2- The waste water discharge line is clogged or collapsed at some point during when Katrina hit. Again you will want to install a sewage pump. It is not a good idea to rely on gravity drains to get rid of water in below grade structures anyway. That said, considering that you live in a problem region, I'd suggest you also install a good sump pump system, with battery operated backup pump like the SuperSump, separated from the sewage pump, to deal with ground water and heavy rains. In Louisiana I would even consider a TripleSafe system which has 2 powerful backup sump pumps, one of which is battery operated, an automatic switch system and an alarm to let you know when the backup pumps are on the job.
Q: I was looking at a water pump and the specs said 110 Foot Max. Total Head and 20 Foot Max. Suction Lift. Can someone please explain this? Thanks.
I have two ponds, one that is always full and one that is always low. They are 550 ft apart and there is a change in upward elevation of about 35ft. What pump is needed to allow me to transfer water from the lower pond to the upper pond?
Q: My water stopped working and my tank emptied. I replaced the pressure switch and the gauge. It still didn't work. The well is about 110'. I pulled the pump and replaced it (1/2 HP, 10 gpm, 2-wire). It still doesn't work. The old pump was 15 years old. The one before only lasted 7 years. The water has a lot of sediment. I have never done this before, but it seemed straightforward enough. The wires on the pump were not differentiated in any way (same color). Could I have put the wires together incorrectly? Could I have put the switch in wrong? It doesn't click on when the breaker is turned on. What else could be wrong? Could the breaker be bad? It wasn't kicked out.
Sounds like the vertical check valve between the end of the pump line and the pressure tank is bad and allowing the water to go back down the pipe when the pump isn't running. Papaw
Q: Water pump for 98 Venture?
To replace the water pump on the 3.4L Venture calls for 1.3 hours labor (about $130) and the pump is about $30 and it is a good idea to replace the thermostat and flush the cooling system to get maximum life out of the pump and your cooling system about $100 so you would be looking at about $350
Q: About how to calculate the pump installation height?
See the design manual, town water, volume P312This formula is: NPSHA = HgHzhsZs > NPSHRAccording to the actual installation of NPSHA pump cavitation can provideThe pump NPSH provides NPSHR pump samplesAtmospheric pressure Hg pump installation siteHz liquid under certain temperature saturated steam pressure.The head loss of water pipe HsThe installation height of ZsIt is worth pointing out that, with regard to Hz, with temperature related, and some problems are not given temperature, and that value is also very small, in the calculation should be able to ignore (0 degrees C, 0.06mH2O).And atmospheric pressure, we usually use 10mH2O, in fact, and altitude also related. When the altitude is 0, it is 10.3
Q: think the water pump is behind the crank pulley but im not certain I've pulled apart the front end but I'm having a hard time getting the pulley off so I want to make sure the part im trying to pull off is not the wrong one.
Well as far as I can tell you may not have to remove the crankshaft pulley but I could be wrong. You will however have to remove the timing belt and you might as well replace it anyway since you're in this far. I unfortunately I don't have enough details as the one I did was several years ago.
Q: I am trying to evaluate my well water pump and water system to see if the pump is cycling on/off too frequently. What is the optimal quot;ontime? What is the optimal quot;offtime? I have heard the term quot;short cyclingquot;, but no times were attached. I have heard that too frequent cycling can cause a problem, but, again, no times were attached. How can one tell when the system is working within the optimal/normal range, so that no harm is being caused to the system? Thanks.
There is no optimum time. This is dependent on several factors. Assuming you are pumping into a small tank which is pressurized by the inflow of water from the pump (and the pressure also controls the pump) these reasons can be excessive use of water, the air space at the top of your tank has been absorbed into the water over a period of time and the volume of compressed air too small causing the pressure to drop too fast, or you could have leak in your water piping. If there is not enough air space in your tank, the pump will cycle extremely fast. If you don't have a tank, then the above information is incorrect. Good luck.
Q: Hi,My problem is of this automatic water pump ,it is disrupt always I don't no why..I also want to knew what is the function of the pressure air tank??? The picture is here:
WHAT does it is disrupt always really MEAN?? OK, that said... pumps such as this work to maintain a pressure with two set points even though the regulator only has one indicated.. The lower set point which as pressure drops, the pump turns on, and the upper set point where when the pressure rises to that point, the pump shuts off. When the pressure drops to the lower set point, it triggers the pump to run. When the pressure rises to the upper set point, the pump turns off. If the set point is 50 pounds, it may turn on at 47 and off at 53, or the window could be smaller and on at 49 and off at 51. The air bladder works as a shock absorber, just as the shocks work in your car to smooth the ride. When the pump turns ON there is a pressure pulse that without the air space, would promptly turn the pump off again. This is called short cycling and will cause your pump to on-off-on-off-on-off rapidly. The solution is to refill the air bladder. People with well pumps instead of city water have this problem frequently as the air bladder loses the bubble and does not work as a spring or shock absorber. I have city water NOW, but I used to use a well (which is still operational if I choose to use it) and I experienced pump short cycling the very first year I bought the house. The thing IS, I was ignorant. I missed the thing about a well and a septic tank that also uses a pump to an above ground drain field. YES. I was STUPID because I had NOT paid attention. NOW, years later, I have learned, the HARD way mind you, how these sanitary systems WORK in real life in RURAL America....
Q: Level 200 meters distance, elevation 30 meters, how much lift water pump?
Lift is usually used to overcome vertical height and pipe loss. Now you can determine the vertical height of 30 meters, 230 meters long pipeline losses but you lack of data not calculated. With the following conditions can be calculated: 1, flow; 2, pipe diameter; 3; pipeline material; 4, elbow number; 5, valve types and quantities.
Q: 55KW motor driven lift 70M, the displacement of 180 cubic meters per hour of water pump, the configuration should be no problem, but after the start of the current to 170A (rated 100A), off a small valve to the current export half to reach the rated current. Why current will close a small valve instead of small? Will close a small valve will not affect traffic flow can be? To the 180 party?
If the power line is too long or too small, power line is too long or too small will cause excessive current. Valve shut down certainly affect the flow. When the valve is in the semi open state, the water pump out of the water flow down, the power to reduce, so the current drops.

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