Little Giant PondWorks Statuary Pond & Fountain
PES Series Wet Rotor, Adjustable Flow
Submersible Pumps 45 to 1150 GPH

Little Giant PondWorks Statuary Pond & Fountain Wet Rotor Submersible Pumps 45 to 1150  GPH <br>

Little Giant PondWorks Wet Rotor (Hysteresis), Adjustable Flow Statuary Pond & Fountain Submersible Water Pumps 45 to 1150 GPH. Little Giant Pumps PondWorks PES series includes pumps for table top displays, small and large statuary, ponds and fountains, waterfalls and streams and all water gardening applications. Wet rotor design with a fully adjustable flow control. Wet-Rotor (Hysteresis) Pumps - The wet-rotor pumps, often mistaken as magnetic drive pumps, utilize an epoxy-encapsulated motor and plastic housing. A permanent magnet is attached to the impeller. The magnet acts as the rotor would in a conventional motor. The water being pumped surrounds the rotor, thus the term "wet-rotor". They are seal-less and oil-less. These pumps work well in water garden, statuary, and some industrial applications. They are the most compact and energy efficient type of pump

Capacity Table In Gallons Per Hour For Oil-less PES Series Submersible Pumps
Model Head In Feet
1' 3' 5' 10' Shut-off
Gallons Per Hour (GPH)
PES-40-PW (566713) 45 - - - 2.1'
PES-80-PW (566714) 77 20 - - 3.5'
PES-130-PW (566716) 130 85 - - 5.5'
PES-290-PW (566717) 300 180 115 - 7.25'
PES-380-PW (566718) 350 285 180 - 7'
PES-700-PW (566720) 725 560 400 - 8.25'
PES-800-PW (566721) 875 750 625 175 11.75'
PES-1000-PW (566722) 1150 965 775 200 11.75'

LGI-PMP-PES-40-PW-Statuary-Bulletin.pdf
LGI-PMP-PES-PondWork-Series-Manual.pdf
LGI-PMP-PES-80-PW-Statuary-Bulletin.pdf
LGI-PMP-PES-PondWork-Series-Manual.pdf
LGI-PMP-PES-PondWork-Series-Bulletin.pdf
LGI-PMP-PES-PondWork-Series-Manual.pdf
LGI-PMP-PES-380-PW-Statuary-Bulletin.pdf
LGI-PMP-PES-380-800-PW-Statuary-Manual.pdf
LGI-PMP-PES-700-PW-WG-Bulletin.pdf
LGI-PMP-PES-700-PW-WG-Manual.pdf
LGI-PMP-PES-800-PW-Statuary-Bulletin.pdf
LGI-PMP-PES-380-800-PW-Statuary-Manual.pdf
LGI-PMP-PES-1000-PW-Statuary-Bulletin.pdf
LGI-PMP-PES-1000-PW-Statuary-Manual.pdf

Little Giant Statuary Submersible Pump 45 GPH # PES-40-PW (566713) (CC)<br>

Little Giant Statuary Sub. Pump 45 GPH # PES-40-PW (566713), Little Giant Statuary, Pond & Fountain Submersible Water Pump. Energy efficient compact wet rotor (magnetic drive) pump design, made with corrosion resistant plastic. Ideal for table-top fountains.Operates submersed only. Built-in adjustable flow control valve.

Little Giant Statuary Submersible Pump 77 GPH # PES-80-PW (566714) (D)<br>

Little Giant Statuary Submersible Pump 77 GPH # PES-80-PW (566714). Replaces discontinued PES-A-PW (566603)and PES-70-PW (566602) Little Giant Statuary, Pond & Fountain Submersible Water Pump. Energy efficient compact wet rotor pump (magnetic drive) design, made with corrosion resistant plastic. Ideal for table-top fountains. Operates submersed only.

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LGI-PMP-PES-80-PW (566714)
Little Giant Statuary Submersible Pump 130 GPH # PES-130-PW (566716) (D)<br>

Little Giant Statuary Submersible Pump 130 GPH # PES-130-PW (566716), magnetic drive fountain pump. Magnetic drive pumps are the most energy-efficient type of pump. Compact in design and made with corrosion-resistant plastic. Ideal for table-top fountains. Operates submersed only. Built-in adjustable flow control valve.

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LGI-PMP-PES-130-PW (566716)
Little Giant Submersible Pump 300 GPH # PES-290-PW (566717) (D)<br>

Little Giant Submersible Pump 300 GPH # PES-290-PW (566717). Replaces 240 GPH # PES-230-PW (565293). Little Giant Sub. Little Giant Statuary, Pond & Fountain Submersible Water Pump. Energy efficient compact wet rotor pump (magnetic drive) design, made with corrosion resistant plastic. Ideal for table-top fountains. Operates submersed only.

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LGI-PMP-PES-290-PW (566717)
Little Giant Sub. Pump 350 GPH # PES-380-PW (566718) (D)<br>

Little Giant Sub. Pump 350 GPH # PES-380-PW (566718), Little Giant statuary & fountain pump. Ideal for powering fountain nozzles, pond ornaments, fountains, filters, waterfalls, streams and circulating ponds up to 400 gallons. Compact in design and made with corrosion-resistant plastic. Operates submersed only.

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LGI-PMP-PES-380-PW (566718)
Little Giant Sub. Pump 725 GPH # PES-700-PW (566720) (D) <br>

Little Giant Submersible Pump 725 GPH # PES-700-PW (566720). Replaces PES-700-PW (566657). Little Giant statuary and fountain pump. Ideal for powering fountain nozzles, pond ornaments, fountains, filters, waterfalls, streams and circulating ponds up to 800 gallons. Compact in design and made with corrosion-resistant plastic. Operates submersed only.

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LGI-PMP-PES-700-PW (566720)
Little Giant Submersible Pump 875 GPH # PES-800-PW (566721) (D) <br>

Little Giant statuary and fountain pump. Ideal for powering fountain nozzles, pond ornaments, fountains, filters, waterfalls, streams and circulating ponds up to 875 gallons. Compact in design and made with corrosion-resistant plastic. Operates submersed only.

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LGI-PMP-PES-800-PW (566721)
Little Giant Submersible Pump 1150 GPH # PES-1000-PW (566722) (CC)<br>

Little Giant submersible fountain pump 1150 GPH # PES-1000-PW (566722) for ponds up to 1150 gallons. Replaces # PES-1000-PW (56629) Ideal for powering fountain nozzles, pond ornaments, fountains, filters, waterfalls, streams and circulating ponds up to 1200 gallons. Compact in design and made with corrosion-resistant plastic. Operates submersed only.

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LGI-PMP-PES-1000-PW (566722)

Questions & Answers

How do I chose the pond pump?
For Fountains (Indoor or Outdoor) - When choosing a pump for your fountain there are two terms that you will see when looking for your pump. GPH (gallons per hour) and "lift" or "head". To calculate the capacity required figure to circulate the water in the pond at least once an hour. If you have a 500 gallon pond you would need a pump that moves 500 gallons per hour at the height of the discharge. The lift or head (height of the discharge) is the term for the vertical height the pump raises water above the surface of the pond. You will need a pump that lifts higher than that measurement because every 10’ of tubing equals 1’ of lift). If that distance is 24", than you will need a pump that lifts at least 36" high. The "maximum lift" means the maximum height that the pump will lift the water. So you will get "0" flow at the maximum lift.
Can I use a sump pump for my waterfall, koi pond, or garden pond aeration?
No. Sump pumps are designed for short periods of operation. Running a sump pump for too long can cause the pump to overheat. It is also oil-filled. If fish waste attacks the pump seals, or it overheats, that oil can be discharged into your water feature. That will kill the fish and plants. When it cools, it will draw water up inside the pump motor which will kill the pump. Using a sump pump any place where water recirculates is not recommended and will void the warranty.
What are permanent split capacitor pond pumps?
Large Volume Plastic pumps - These pumps utilize a permanent split capacitor (PSC) motor sealed in a Stainless Steel Housing, which in turn, is surrounded by a plastic case. The PCS motor allows these pumps to use less energy than other pumps of similar flow capacity. The motor also produces less heat ; therefore, the pump does not require oil internally. These pumps are ideal for use in waterfall and stream applications, found in water gardens.
What are Epoxy Encapsulated (Potted) pond pumps?
Epoxy Encapsulated (Potted) Pumps - These pumps feature an epoxy-encapsulated motor, plastic housing, and radial lip seal on the motor shaft. They provide enough power to effectively operate a water garden, statuary or tabletop fountain. Algae build-up does not effect these small, powerful workhorses. In fact, they may even be used in some harsh, industrial-type applications. These "potted" pumps are usually more compact in size than an oil-filled pump of equal flow capacity.
What are Wet-Rotor (Hysteresis) pond pumps?
Wet-Rotor (Hysteresis) Pumps - The wet-rotor pumps, often mistaken as magnetic drive pumps, utilize an epoxy-encapsulated motor and plastic housing. A permanent magnet is attached to the impeller. The magnet acts as the rotor would in a conventional motor. The water being pumped surrounds the rotor, thus the term "wet-rotor". They are seal-less and oil-less. These pumps work well in water garden, statuary, and some industrial applications. They are the most compact and energy efficient type of pump
How do you calculate the approximate Gallons of Water in a in a circulat pond?
Circular pond: 3.14 X diameter X average depth X 7.5
How do you calculate the approximate Gallons of Water in a in an irregular pond?
Irregular Pond: length X width X average depth X 7.5
How do you size a pond liner?
Use the same formula for both the width and the depth of the liner: The length of liner = max length of pond + (2 times max depth) + minimum of 2' overlap. The width of liner = max width of pond + (2 times max depth) + minimum of 2' overlap.
How do you calculate how many gallons in a pond?
Length x Width x Depth x 7.48 = Gallons
What size pump should I use in my pond?
By turning over the water at least once an hour through the filtration system you will reduce the amount of maintenance required. A 3,000 gallon pond will require products that can handle at least 3,000 gallons per hour of flow.
How many GPH should the pump deliver to make a stream flow look natural?
Stream flow to appear natural= Width of stream (waterfall) ft x 1,200
How do I figure the head required by the pump?
Measure thr vertical distance from top of water level to discharge point (top of waterfall) and add 1 foot for every 10 feet of elevation
Should I use an external or a submersible pump for my pond?
In both the external and in the submersible pumps, the mechanism is simply: a set of turning blades that pressurize the pond water and force it into motion. Submersible pond pumps are easier to use than external pond pumps. They sit directly on the water and are inexpensive, unlike external pumps that you must place outside the pond. Submersible pumps are easy to install and run without priming. They can be used to power all but the largest water features.
What size tubing should I use to maintain an adequate flow in my fountain?
To maintain adequate flow, use a larger diameter tubing. Make the tubing as short and straight as practical, and be sure it doesn’t kink during installation. Minimum tubing sizes are: 1/2-inch diameter for flows up to 120 gph; 3/4-inch diameter for flows up to 350 gph ;1-inch diameter for flows up to 1000 gph ; 1 1/4 inch for flows up to 1500 gph ; 1 1/2 inch for flows up to 3000 gph You can “telescope” together a series of incrementally larger sizes to make the transition. Vinyl hose comes in increments of ¼” in inside diameter (ID) and has about 1/16” wall thickness. The smaller tubing will fit snugly inside the next consecutive bigger size.
My outlet only has two slots; can I remove the third prong from the pump cord?
DO NOT REMOVE the third prong from the plug . These pumps are supplied with a 3-prong electrical plug, the third prong is to ground the pump to prevent possible electrical shock hazard. A separate branch circuit is recommended.
The pump cord is too short; can I use an electrical extension?
Do not use an extension cord. If there is no outlet near, we suggest that you have a ground fault circuit interrupter (GFCI) outlet installed there by a professional electrician.
The cord is too long; can I cut it?
Do not cut plug from the cord. If the plug is cut or the cord is shortened, then this action will void the warranty.
Can I plug in the pump in any 115 volt outlet?
No…….The National Electric Code requires that a ground fault circuit interrupter (GFCI) be used in the branch circuit supplying fountain pumps and other pond equipment. We suggest that you have a ground fault circuit interrupter (GFCI) outlet installed there by a professional electrician.
How high can the fountain spray be?
The height of the fountainhead should be not more than half the width of the basin to minimize over-spray and wind-carried mist.
How wide should my basin be to minimize fountainhead over-spray?
The width of your fountain's catch basin should be more than twice the height of the fountainhead to avoid most water overspray and wind-carried mist.
I have no leaks in my basin; Why is my pond losing water?
If you recently cleaned your fountain, waterfall, or the pump filter, you may be losing water in your pond due to over-spray. A pump running more efficiently will produce more pressure that can cause intense splashing and over-spray. Over time the splashing will decrease the pond water level. Examine rocks and other decorative elements around your water feature for any signs of significant dampness or splashing, and adjust your pump capacity accordingly.

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