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Designing a Solar Pumping System

There are many aspects of designing a solar pumping system. This guide 
provides the information to correctly select a pump, controller, sensors, solar 
array, wiring, and pipe. The process is broken down into the following steps:

STEP 1

- Estimate the amount of water needed per day (~GPM x 360).

STEP 2

- Calculate the TOTAL DYNAMIC HEAD (TDH).

STEP 3

- Determine the Solar Resource for your location. (See page 15)

STEP 4

- Select the pump, controller, mounting method and array.

STEP 5

- Select the correct pump cable.

STEP 6

- Select the appropriate accessories.

EXAMPLE

System Conditions

Desired TOTAL DAILY OUTPUT:

7000 liters per day (1847 gallons per day)

TOTAL DYNAMIC HEAD:

10 meters (33 feet)

Location Provides:

6-7 Sun Hours On Tilt 

(See page 15)

Well Diameter:

15.2 cm (6 inches)

Water Condition:

sandy

1. Select a pump that will provide the most water at the TOTAL DYNAMIC HEAD. The SD 12-30 will provide the most water.

2. Consider the sand shroud. This pump will require a sand shroud because the well is sandy.

3. Consider the diameters. The SD 12-30 with a sand shroud requires a well with a minimum diameter of 15.2 cm.

The SD 12-30, with a sand shroud, will fit in this application.

4. Using the SD 12-30 PERFORMANCE GRAPH (marked "EXAMPLE"), locate the desired liters per day (TOTAL DAILY OUTPUT)  

on the lower left side of the graph, point A.

5. The system TDH equals 10 meters. Draw a line to the right until it crosses the "10 meter TOTAL DYNAMIC HEAD" line, point B.

6. The system SUN HOURS ON TILT equals 6-7. From point B, draw a vertical line upward until it crosses the 

"6-7 SUN HOURS ON TILT" line, point C.

7. Draw a horizontal line through point C. Point D shows the required array wattage and point E shows the quantity and model

of Kyocera modules that will provide required amount of water. This system will provide the desired amount of water with 
two KC80 solar modules. If point E does not directly intersect an array configuration, the next largest array should be selected.

IMPORTANT NOTES:

1. The array wattage listed on the graph is the total of the nameplate wattage ratings of the solar modules at STC (STANDARD 

TEST CONDITIONS). The performance charts are corrected for operation in a hot climate, such as Phoenix, Arizona. In cooler 
climates actual performance will be better.

2. Under no circumstances should more than 2 modules be placed in any series string. The MAXIMUM INPUT VOLTAGE for the 

CD 300 Pump Controller is 50 Volts. Under certain conditions, a solar module can produce almost 25 Volts.

NOTE: The pump performance shown on the following charts represents actual system output in real applications. The performance has been 
de-rated for dirt and temperature losses on the solar modules, power losses in wiring, and other system losses. Other manufactures may not take
these factors into consideration when advertising their pumps or systems. This makes comparison to other pumps difficult. These charts are 
provided so that you can design a system that performs up to the expectations of the customer. In most cases, the actual system will perform 
better than the charts suggest.

*For approximation purposes only. For more accurate sizing, see sizing software at www.kyocerasolar.com/products/waterpump.htm

Elevation

Standing

Water Level

Draw

Down

Rack

Solar
Modules

Pump
Controller

Float
Switch

SD Drop Kit

• Submersible Cable
• Poly Tube
• Safety Rope

Submersible Cable

SS Series
Water Sensor

SD Pump
SC Motor and Wet End

Sand Shroud (SD only)

Storage
Tank

TDH 

=

Standing Water Level 

+

Draw Down 

+

Elevation 

+

2.3 

x

Tank Pressure 

+

Friction 

Summary of Contents for 85221

Page 1: ...Solar Water Pumping Products Catalog...

Page 2: ...rs 100 Feet Flow at Full Depth 12 0 lpm 3 15 gpm CC 2000 CONTROLLER Maximum Solar Input Voltage 300 Volts Maximum Output Current 14 Amps Maximum Output Power 2000 Watts SS 100 WA TER SENSOR Corrosion...

Page 3: ...ble because our technical breakthroughs have increased pump efficiency to record levels decreasing the power wattage of solar modules necessary to deliver the required water thereby lowering your tota...

Page 4: ...ollution free corrosion resistant and quiet It is the ideal way to provide water for livestock remote homes campsites small farms or any other need beyond the commercial power grid Model SD 3 70 P N 8...

Page 5: ...an be used as long as the total Open Circuit Voltage VOC does not exceed 50 Volts Modules can be wired in parallel to maximize daily water production Highest efficiencies 94 98 will be attained when t...

Page 6: ...ut the use of specialized tools The SC series pumps can be installed below the water level in a well lake river or cistern They can be used to fill open tanks or used to pressurize water systems with...

Page 7: ...solar modules The pump controller s microprocessor constantly monitors the incoming solar power and boosts current to operate the solar modules at their peak power point and maximize pump output The c...

Page 8: ...4 UL listed 6 inch cell modules Low iron tempered glass EVA encapsulant and anodized aluminum frame construction 25 year output warranty Interconnects An important part of system wiring is proper modu...

Page 9: ...120 6 0 in pipe P N 20392 For sixteen KC60 KC70 or KC80 modules Note Vertical pipe is not included Fixed Racks Mounts are steel construction for pole gimbal and strong back tubing Solar module attachm...

Page 10: ...m2 P N 43453 SS Series Water Sensor Splice Kit Used for splicing SS Series water sensor cable P N 43397 18 AWG 22 AWG 0 50 mm2 0 75 mm2 Includes butt splices and adhesive lined shrink tube SS Series W...

Page 11: ...Pumping Products Catalog SD Series Splice Kit Used for splicing pump cable 10 AWG 12 AWG 4 0 mm2 6 0 mm2 Includes butt splices and adhesive lined shrink tube SD Series Splice Kit P N 85946 SC Series S...

Page 12: ...nt C Point D shows the required array wattage and point E shows the quantity and model of Kyocera modules that will provide required amount of water This system will provide the desired amount of wate...

Page 13: ...ower For approximation purposes only For more accurate sizing see sizing software at www kyocerasolar com products waterpump htm SD 12 30 PERFORMANCE GRAPH 300 250 200 150 100 50 1000 2000 3000 4000 5...

Page 14: ...tion purposes only For more accurate sizing see sizing software at www kyocerasolar com products waterpump htm SD 12 30 PERFORMANCE GRAPH 300 250 200 150 100 50 1000 2000 3000 4000 5000 6000 7000 8000...

Page 15: ...approximation purposes only For more accurate sizing see sizing software at www kyocerasolar com products waterpump htm 200 150 100 50 500 2000 3000 4000 5000 6000 LITERS PER DAY 1583 1451 1319 1187...

Page 16: ...imation purposes only For more accurate sizing see sizing software at www kyocerasolar com products waterpump htm 200 150 100 50 500 1000 1500 2000 2500 LITERS PER DAY 792 660 528 396 264 132 0 GALLON...

Page 17: ...00 W 90 W 80 W 70 W 60 W 50 W Latitude Optimum Tilt Angle Longtitude December 85 FS 80 FS 75 FS 70 FS 65 FS 60 FS 55 FS 50 FS 45 FS 40 FS 35 FS 70 65 60 55 50 45 40 35 30 25 20 140 W 130 W 120 W 110 W...

Page 18: ...erial or visible damage to merchandise the receiving party must note any damage or shortage on the carrier s delivery receipt Please notify Kyocera Solar Inc Customer Service immediately at 1 800 223...

Page 19: ......

Page 20: ...7812 East Acoma Drive Scottsdale AZ 85260 USA 480 951 6330 FAX 480 951 6329 800 544 6466 www kyocerasolar com...

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