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CALL US FOR SPECIAL PRICING! 866-383-7258

Aqua Control Evolution 1/2 HP Aerating Pond Fountain

★★★★★ (2)

  • Aerates up to 1/2 acre
  • 2 spray pattern nozzles included
  • Simple plug & play mechanism
  • Zero maintenance motor

$1,879.00
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Aqua Control Evolution Series 1/2 HP Fountain

The Aqua Evolution Fountain with 1/2 HP power is the ideal solution for smaller water bodies spanning up to 1/2 acre, striking the perfect balance between beauty, function, and convenience. This fountain can be effortlessly installed by simply plugging it in and can function in water levels as shallow as 20 inches. The Evolution Fountain is furnished with all the necessary components for easy installation including a control panel equipped with GFCI, a timer, a photocell, an underwater cable with a quick disconnect feature, 100 feet of mooring rope, and two mooring stakes. You can enjoy two types of water displays, one featuring a disc that produces a high volume, white boil of highly aerated water and the other featuring a single spray nozzle that creates a classic V-shaped tornado spray pattern.

In addition, this fountain offers a range of stunning spray patterns that can be purchased separately. You also have the option to include a 4 LED lights kit, available in either a Single color or a Color changing variant.

You have the choice of purchasing additional spray pattern nozzles, including the Arum Nozzle, Cluster Arch Nozzle, Fleur De Lis Nozzle, Spider & Arch Nozzle, Metro Nozzle, and Tiara Nozzle.

Spray Pattern Nozzles Details

Tornado Nozzle Pattern for Aqua Control Evolution Series Fountain On Water
Arum Nozzle Pattern for Aqua Control Evolution Series Fountain On Water
Tornado (Included) Torrent (Included) Arum (Optional) Cluster (Optional)
Height: 6'
Width: 15'
Height: 1.5'
Width: 3'
Height: 6'
Width: 21'
Height: 6'
Width: 16'
Fleur De Lis (Optional) Spider & Arch (Optional) Tiara (Optional) Metro (Optional)
Height: 7'
Width: 18'
Height: 5.5'
Width: 18'
Height: 7'
Width: 15'
Height: 6'
Width: 8'

Package Includes

  • 1/2 HP, single-phase fountain (floating or stationary)
  • Power cord with quick disconnect
  • 100’ mooring rope and 2 mooring stakes
  • Controller (60Hz only)
  • Tornado and Torrent spray patterns

Technical Specifications

Motor 1/2 HP
Voltage 115V
Gallons Per Minute (GPM) 134
Running Amps 7
Wattage 805W
Minimum Operating Depth 20 Inches
Maximum Spray Height 7 Feet
Water Displays Included Tornado & Torrent 
Mooring Ropes Included (1) 100' Rope & 2 Stakes
Control Panel Includes Timer, GFI & Photocell
Power Cord Options Available 50', 75', 100', 125', 150', 175', 200'
Warranty 2-Year
Daily Operating Cost (8 hours/day)* $0.64 (estimated)

Manuals
FAQ

Aqua Control Evolution ½ HP Aerating Fountain: FAQ’s

How long is the warranty?

Aqua Control comes with a 2-year warranty.

What is the minimum depth for operating in?

The aqua control needs a minimum of 20” of water to operate in.

What are the electrical requirements for the control/timer box?

The timing control box requires a 20 amp circuit breaker.

Electrical FAQ

Can I power more than one unit off of a single control panel?

Yes. Aqua Control calls this a multi-panel.  The combination of two control panels in any power supply can usually be achieved with a minimal upcharge.  Combining the components of more than two control panels normally requires a larger enclosure, so the upcharge is much greater. Multi-panels also increase the production time, because these custom panels are built to order as opposed to our stocked panels.

How do I size the supply breaker from the power source to the control panel?

Pump Amps + Light Amps x 1.5 = Supply Breaker Required

How do I determine the operating cost of a unit?

For the pump:

  1. Look up the kW usage based on the HP (“Power Use” in the brochure).
  2. Multiply that number (step #1) by the number of hours per day that the pump will operate.
  3. Multiply that number (step #2) by the number of days per month that the pump will operate.
  4. Multiply that number (step #3) by your cost per kW hour.
  5. This is your monthly cost of operation.

For the lights:

  1. Multiply the total number of lights by the wattage of a light.
  2. Divide that number (step #1) by 1000 to derive kW.
  3. Multiply that number (step #2) by the number of hours per day that the lights will operate.
  4. Multiply that number (step #3) by the number of days per month that the lights will operate.
  5. Multiply that number (step #4) by your cost per kW hour.
  6. This is your monthly cost of operation.

How do I winterize my fountain?

Access the winterization and maintenance guide by clicking here. 

★★★★★
★★★★★
★★★★★
★★★★★

Aqua Control Evolution Series 1/2 HP Fountain

The Aqua Evolution Fountain with 1/2 HP power is the ideal solution for smaller water bodies spanning up to 1/2 acre, striking the perfect balance between beauty, function, and convenience. This fountain can be effortlessly installed by simply plugging it in and can function in water levels as shallow as 20 inches. The Evolution Fountain is furnished with all the necessary components for easy installation including a control panel equipped with GFCI, a timer, a photocell, an underwater cable with a quick disconnect feature, 100 feet of mooring rope, and two mooring stakes. You can enjoy two types of water displays, one featuring a disc that produces a high volume, white boil of highly aerated water and the other featuring a single spray nozzle that creates a classic V-shaped tornado spray pattern.

In addition, this fountain offers a range of stunning spray patterns that can be purchased separately. You also have the option to include a 4 LED lights kit, available in either a Single color or a Color changing variant.

You have the choice of purchasing additional spray pattern nozzles, including the Arum Nozzle, Cluster Arch Nozzle, Fleur De Lis Nozzle, Spider & Arch Nozzle, Metro Nozzle, and Tiara Nozzle.

Spray Pattern Nozzles Details

Tornado Nozzle Pattern for Aqua Control Evolution Series Fountain On Water Arum Nozzle Pattern for Aqua Control Evolution Series Fountain On Water
Tornado (Included) Torrent (Included) Arum (Optional) Cluster (Optional)
Height: 6'
Width: 15'
Height: 1.5'
Width: 3'
Height: 6'
Width: 21'
Height: 6'
Width: 16'
Fleur De Lis (Optional) Spider & Arch (Optional) Tiara (Optional) Metro (Optional)
Height: 7'
Width: 18'
Height: 5.5'
Width: 18'
Height: 7'
Width: 15'
Height: 6'
Width: 8'

Package Includes

  • 1/2 HP, single-phase fountain (floating or stationary)
  • Power cord with quick disconnect
  • 100’ mooring rope and 2 mooring stakes
  • Controller (60Hz only)
  • Tornado and Torrent spray patterns

Technical Specifications

Motor 1/2 HP
Voltage 115V
Gallons Per Minute (GPM) 134
Running Amps 7
Wattage 805W
Minimum Operating Depth 20 Inches
Maximum Spray Height 7 Feet
Water Displays Included Tornado & Torrent 
Mooring Ropes Included (1) 100' Rope & 2 Stakes
Control Panel Includes Timer, GFI & Photocell
Power Cord Options Available 50', 75', 100', 125', 150', 175', 200'
Warranty 2-Year
Daily Operating Cost (8 hours/day)* $0.64 (estimated)

Aqua Control Evolution ½ HP Aerating Fountain: FAQ’s

How long is the warranty?

Aqua Control comes with a 2-year warranty.

What is the minimum depth for operating in?

The aqua control needs a minimum of 20” of water to operate in.

What are the electrical requirements for the control/timer box?

The timing control box requires a 20 amp circuit breaker.

Electrical FAQ

Can I power more than one unit off of a single control panel?

Yes. Aqua Control calls this a multi-panel.  The combination of two control panels in any power supply can usually be achieved with a minimal upcharge.  Combining the components of more than two control panels normally requires a larger enclosure, so the upcharge is much greater. Multi-panels also increase the production time, because these custom panels are built to order as opposed to our stocked panels.

How do I size the supply breaker from the power source to the control panel?

Pump Amps + Light Amps x 1.5 = Supply Breaker Required

How do I determine the operating cost of a unit?

For the pump:

  1. Look up the kW usage based on the HP (“Power Use” in the brochure).
  2. Multiply that number (step #1) by the number of hours per day that the pump will operate.
  3. Multiply that number (step #2) by the number of days per month that the pump will operate.
  4. Multiply that number (step #3) by your cost per kW hour.
  5. This is your monthly cost of operation.

For the lights:

  1. Multiply the total number of lights by the wattage of a light.
  2. Divide that number (step #1) by 1000 to derive kW.
  3. Multiply that number (step #2) by the number of hours per day that the lights will operate.
  4. Multiply that number (step #3) by the number of days per month that the lights will operate.
  5. Multiply that number (step #4) by your cost per kW hour.
  6. This is your monthly cost of operation.

How do I winterize my fountain?

Access the winterization and maintenance guide by clicking here. 

Shipping is fast & free throughout the USA. 

Current shipping time for Winter/Spring 2024: 2-3 business days

Find our full shipping policy here.

(During summer and spring peak seasons, shipping may take as long as 2 weeks.)

We offer 30 Day Easy Returns.

Don't need your product? We'll take it back if it is in original and re-saleable condition. Email support@everbluepond.com to let us know. Find our full Returns policy here.

We get it. You've got a lot of choices when it comes to online retailers. Here's why we think you should shop with us at Everblue Pond.

  • Free Shipping Across The United States. No extra charges. Ever.
  • Price Match Guarantee. Best prices online guaranteed. 
  • 30 Day Easy Returns. Not happy with your product, we'll take it back no questions asked. 
  • Great Service. We pride ourselves on the best service, anywhere. 

What is the difference between a fountain and a display aerator?

There has been much confusion in the industry regarding the definition of an Aerator. The Aqua Control definition is very specific: only high pumping rate, axial (propeller) pumps are called Aerators. Good aeration is achieved with high pumping rates. Our Display Aerators deliver high flow rates relative to the horsepower while creating very attractive patterns (Shorter pattern height, higher volume, thicker, more wind-resistant streams).

 Fountains, on the other hand, are created with centrifugal pumps which produce higher patterns, but with much lower flow rates. ACI believes that these pumps should not be called Aerators or even Aerating Fountains even though their splash does create some aeration (Taller pattern height, lower volume, thin streams).

Where can I find my ACI Motor Serial Number?

The ACI Motor Serial Number is a unique number assigned by ACI to identify a specific motor. This number can be found etched into the body of the motor towards the end with the motor shaft extension.  It can also be located on either a plate or sticker affixed to the PVC lower tube and written in indelible marker on the motor body. 

This number is usually a minimum of 8 digits. The first number dictates the brand of motor. The next three numbers indicate the date of purchase by ACI. The last four numbers use an internal coding system.

Can I power more than one unit off of a single control panel?

Yes. Aqua Control calls this a multi-panel.  The combination of two control panels in any power supply can usually be achieved with a minimal upcharge.  Combining the components of more than two control panels normally requires a larger enclosure, so the upcharge is much greater. Multi-panels also increase the production time, because these custom panels are built to order as opposed to our stocked panels.

Why do I lose my UL Rating if I upgrade to a 30ma Equipment Protection GFCI to eliminate nuisance tripping?

Our UL Listing for control panels requires a Class A GFCI for all circuits. For a Class A, human-rated GFCI, UL requires a trip level no greater than 6mA. The use of a 30mA, equipment-protection GFCI is five times less sensitive and not considered human protection.

If I need UL Rating, what other option(s) do I have to prevent nuisance tripping?

Move the control panel closer to the shoreline and/or move the unit closer to the shoreline.  If you shorten the cable run between the unit and control panel to less than 200’, nuisance tripping is rarely an issue.  Contrary to popular belief, increasing the cable gauge will not eliminate nuisance tripping.

How do I size the supply breaker from the power source to the control panel?

Pump Amps + Light Amps x 1.5 = Supply Breaker Required

How do I determine the operating cost of a unit?

For the pump:

  1. Look up the kW usage based on the HP (“Power Use” in the brochure).
  2. Multiply that number (step #1) by the number of hours per day that the pump will operate.
  3. Multiply that number (step #2) by the number of days per month that the pump will operate.
  4. Multiply that number (step #3) by your cost per kW hour.
  5. This is your monthly cost of operation.

For the lights:

  1. Multiply the total number of lights by the wattage of a light.
  2. Divide that number (step #1) by 1000 to derive kW.
  3. Multiply that number (step #2) by the number of hours per day that the lights will operate.
  4. Multiply that number (step #3) by the number of days per month that the lights will operate.
  5. Multiply that number (step #4) by your cost per kW hour.
  6. This is your monthly cost of operation.

Why are some motors rated by HP and others by KW?

Domestically we rate motors based on HP.  Overseas motors are rated by KW.  The conversion is HP x ¾ = KW for the motor rating.  The motor rating is not equal to the power usage.  The KW listed in ACI Specifications are representative of power consumption as opposed to motor rating.

How is amperage determined?

Lights – Amps = Watts divided by Volts

Motors – Amps = Watts divided by Volts divided by a power factor of .39

Compressors – Amps = Watts divided by Volts divided by a power factor of .42

What does voltage drop mean?

There is a slight drop in voltage along cable from the power source to the unit.  For example, a 5HP, 230V, 1P unit that has 230V at the power source will deliver approximately 223V through 150’ of 8g wire. This voltage loss is based on amperage (load), cable length, cable gauge, voltage and phase. ACI’s cable sizing in the price book is based on this voltage drop not exceeding 5% and the ampacity of the cable.

Ampacity refers to the maximum current (amps) that a conductor can carry without damaging the cable. The cable from the power source to the control panel is typically direct burial or aerial cable.  The acceptable voltage drop over this cable is 3%.  The cable from the control panel to the unit is usually either SOOW or SJOW submersible cable.  The acceptable voltage drop over this cable is 5%. A pumps nominal voltage, e.g. 230V, has a +/- 10% variance. In this case allowable voltage is between 208V and 253V. If your voltage is 208V or lower at the unit, a boost transformer will be required. 

What causes a GFCI to trip?

First, to clear up a few misconceptions: 1.) A GFCI does not trip due to high amps; 2. Increasing wire gauge does not significantly reduce GFCI tripping; 2.) Replacing a GFCI should be the last option, not the first. GFCIs trip for a variety of reasons. The most common cause is a leak-to-Ground. A leak-to-Ground is the result of a breakdown in insulation in the cord or motor, resulting in electricity leaking into the water. This can be the result of an animal bite or abrasion to the pump cord or a faulty motor. A damaged electrical component or loose wiring in the control panel can also cause a GFCI to trip. Other factors that can contribute to GFCI tripping are voltage spikes or surges, electrical storms and variable frequency drives.

One other situation causes a GFCI to trip is nuisance tripping. This occurs when there is no measureable leak-to-Ground but the GFCI trips periodically. Usually, GFCI nuisance tripping occurs when the power available is 230/240 volt, single phase and the pump cord length is 200 feet or more. Megging the pump cable reveals no leak-to-Ground (200+ mOhms). Based on this, the GFCI should not trip. The solutions to this are either, changing to three phase power, reducing the cord length to less than 200 feet or using an equipment-protection GFCI.

What causes an overload to trip?

An overload is designed to trip when the motor draws higher amps than expected. This is usually the result of mechanical issues. Mechanical problems can result from motor bearing issues, something wrapped around the motor shaft, a clogged suction screen or nozzle, or something broken in the pump or motor.

Electrical issues such as low voltage, bad capacitors or loss of phase can also increase amperage. Overloads in motor control boxes (single-phase motors only) are susceptible to ambient heat. They cannot differentiate between high amps and high temperature. If your control panel is in direct sunlight, the overloads may trip. If voltage is low, a buck boost transformer may correct the problem.