This submersible pump is designed for reliability and ultra-quiet operation to provide years of service. It is anti-corrosive, acid-resisting and durable. This submersible water pump is great for fresh/salt water aquarium, fountains, spout and hydroponic systems.

1.Completely submersible pump.
2.Extremely quiet operation.
3.Adjustable flow rate.
4.Suction cups to fit any aquariums.
5.Long lasting wear proof stainless steel shaft.
6.Suitable for fresh and sea water aquarium.
7.Saving Power and durable.
8.Safety and corrosion preventive
9.Max permitted fluid temperature:35℃
10.Plug: 110V 50hz

1.Flow Rate Max : 3000L/H
2.Power: 24W
3.Head Hmax: 9.8ft (3.0m)
4.Weight:1.8lb. (810g)
5.dimension:4.1x3.5x2.6 inch (10.5*8.5*6.5cm)

1 x Water pump
1 x US Plug(4.4ft Cable)
1 x Connector length:0.7 inch (18mm)
1 x Connector length:0.59 inch (15mm)
1 x Connector length:0.51 inch (13mm)
1 x User Manual
  • ★Powerful Speed Flow: Max Flow Rate: 800 GPH per hour(3000L/H), Max Lift Height: up to 10 Feet.(Length of power cord:4.4ft)
  • ★Ultra Quiet: This water pump is designed for reliability and ultra-quiet operation to provide years of service, energy-saving and low power consumption.(Power: 24 W,Voltage: 110V)
  • ★Perfect size: This profile size water pump is great to hide or disguise (Dimensions: 4.1"(H)*3.5"(L)*2.6"(W)).With no seals or messy oils ,the suction cups mounting feet for either vertical or horizontal mounting.
  • ★3 Outlet Adapters: Equipped with 3 Outlet Adapters(13,15,18mm diameters), providing a different water flow as you desired.This submersible pump is ideal for fresh-water, salt-water, can be applied in aquarium, fountains, spout, hydroponic and pond.
  • ★Detachable and Cleanable: The water pump is easy to detach to clean. [NOTE: pump metric threaded fit for vinyl tubing, need a 13mm metric to 0.5" NPT Adapter to fit for standard 1/2" threaded PVC fitting]

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PEDY 800GPH (3000L/H) Submersible Water Pump Pond, Aquarium, Fish Tank Fountain Water Quiet Pump Hydroponics, 24W

  • Brand: PEDY
  • Product Code: 43349-337
  • Availability: 20
  • $33.99
  • $29.99

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Dynamic Head

The effect of the Earths gravity on the "lift" or head pressure is fairly simple; for every vertical foot of distance the pump moves the water you are adding one foot of head pressure so the ratio is a 1:1 ratio. The effects of the friction, caused by water as it travels through your hose or pipes, on the total head pressure is a little more difficult to calculate especially as there are slight variations in pipe friction in different hose materials and the smoothness of the inner bore. Basically. for every ten feet of pipe through which the water has to travel travel horizontally will contribute 1 foot of head height; the ratio of the pipe friction loss is a 10:1 ratio.

Plumbing fixtures and bends and corners in your hose also increase the total head you must calculate to ensure the proper final volume from your pump. Every corner with a 90 degree elbow in your plumbing will add 1 foot of head pressure  with a 1:1 ratio. 45 degree elbows, tees and even insert couplers can all have an impact on the final flow.

If you install a pump 40 feet away from the top of your waterfall which is 6 feet above the pump and the tubing is a single run of 40 feet horizontally then you add 4 feet of head for the tubing length (the 10:1 ratio) to the 6 foot differnetial between the pump location and the final height of the waterfall so your final total dynamic head calculation would be 10 feet. This means your final volume of water flow in this water feature or application would be the volume of flow on the performance curve that equaled the gallons per hour at 16 feet. This volume will certainly be much less than the initial volume the pump can move at an open flow or a zero head.

If in the above example your 40 feet of horizontal tubing run also required 3 elbows of 90 degrees then an additional 3 feet of theoretical head would be added and your final flow result would be at 19 feet on the performance curve of the pump. In this example you would want to choose a pump that has the desired GPH rating at 9 feet of head pressure.  Tubing size is also an important factor in accounting for head pressure loss, in general you should never reduce the diameter of the tubing below what the output size of the pump is, this will drastically increase head pressure, and reduce pump performance.  For maximum pump performance, using the largest tubing that is practical is the best choice. A best practice is to use a hose with an inner diameter that is the same as your pumps outlet fitting.