Hayward Gva-24 Wiring Diagram

Hayward Gva-24 Wiring Diagram – Occasionally your GVA-24 Goldline / Hayward Pool Actuator will not work. This guide will show you how to fix some of the problems that prevent your valve actuator from working properly.

ACTUATOR HANDLE OSCILLATING – If you see the actuator handle oscillating back and forth, the two O-rings on the actuator may not be sufficiently lubricated. See How to Maintain a Goldline/Hayward Pool Valve Actuator for additional instructions.

Hayward Gva-24 Wiring Diagram

Hayward Gva-24 Wiring Diagram

ACTUATOR WORKS BUT VALVE DOESN’T ROTATE – If you see that the actuator motor spins freely but the diverter valve does not turn, the actuator shaft is probably in manual mode and the gear in the actuator is out of gear. To engage the shifter, pull the lever up and rotate the lever until you hear a click. Then turn the lock knob.

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ACTUATOR WILL NOT WORK – If the actuator does not turn, first check that the actuator power switch is in one of the “ON” positions – either ON1 or ON2. Then use a multimeter to check the voltage at the actuator. If the actuator is not powered, check the 24V power supply. If you see power to the actuator, the motor in your actuator may have failed and will need to be replaced.

Bad switches – There are two SS-5GL13T switches that shut off power when the valve reaches the end position. If one of these switches fails, it can prevent the actuator from moving. Replace the faulty switch.. The Goldline / Hayward GVA-24 valve actuator can be mounted on top of a 3-way valve in four different positions relative to the 3 valve ports. If the actuator is mounted in the standard, most common position, the actuator cams do not need to be changed. If the actuator is mounted in one of the other three positions, the actuator cams will need to be reset. This guide identifies the location of the cameras and shows how to adjust them. It also shows you how to synchronize this actuator with other actuators you have installed.

STANDARD MOUNTING A – This photo shows how the Goldline valve actuator would be mounted in the most common standard position. The actuator body will rest over the center port and water will flow into the center port and end ports. The following figure shows a drawing of all four mounting positions.

FOUR MOUNTING OPTIONS – The Goldline Valve Actuator can be mounted on most diverter valve products in one of the four mounting options shown here. Depending on how the water flows into and out of the three connections, the cams in the station will generally need to be modified according to the Cam Settings Table below.

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CAMERA SETUP CHART – This chart is used to determine the camera settings for one of the four drive mounts. As you can see, cam settings are based on both actuator mounting and water flow direction. For example, for mount A, when water enters port 2 (the center port) and flows out of ports 2 and 3 (the end ports), both the lower and upper chambers are set to 12. This is the usual standard setting used in most many installations. clock settings are reported from the small shaft hole. See the image in the next step. Another note. This table shows the setting of the valves used to discharge the water (at the pump). For valves on the suction side of the pump (before the pump), the chart is the same, except that the headings in columns 2 and 4 would be changed. Column 2 would read “DECENT where the water comes from” and column 4 would read “DECENT Where the water comes from”.

CAM CLOCK REFERENCES – All clock references in the table above are made relative to the small hole in the drive shaft, which is always 12 o’clock,

ACTUATOR MOUNTING – For instructions on mounting this actuator, see How to Install a Pool Valve Actuator.

Hayward Gva-24 Wiring Diagram

CAMERA SETUP – The balance of this guide provides some real-life camera setup examples: two for the A-mount – including the Standard position; and two for assembly B.

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DISCONNECT ACTUATOR – Disconnect power to the actuator when connected to the control panel. The actuator switch is located on the bottom of the actuator.

A-MOUNT SETUP – This is the A-Mount setup position as shown in the image above.

Valve Handle Removal – Lift the valve handle. Note the location of the lugs and holes on the handle and shaft. This is how they will line up when you return the handle.

CHECK THE O-RING – The shaft O-ring must fit into the shaft hole in the cap. When it comes to the shaft, remove the shaft and put it in the hole.

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SHAFT COLLAR REMOVAL – There is a spindle collar that holds the cams in place. Slide this collar up off the shaft. Note that the thin part of the collar is up.

REMOVE CAMS – There are two cams at the base of the shaft: a lower cam and an upper cam. Drag the camels up from the tree.

WATER FLOW OVERVIEW FOR OPTION A2 (STANDARD) DISCHARGE – Note the water flow through the valve. For this option, water must flow into the center port and from one or both end ports. The central gate will always be open. Each of the end ports can be closed by the valve. This is a configuration for a discharge valve to the pump. An example of this use is water flowing from the filter to the pool or spa or both.

Hayward Gva-24 Wiring Diagram

WATER FLOW OVERVIEW FOR SUCTION OPTION A2 (STANDARD) – To configure this actuator / valve for the A2 setting on the suction side of the pump, the water flow will be reversed. Water will come from one or both ends and exit the center port. An example of this use is water coming from the pool drain or skimmer or both and going to the pump. When installing, emptying or vacuuming, the location of the chambers will be A2. The common criterion for both settings is that the central gate A2 is always open, regardless of the direction in which the water flows. Only the end gates can be closed.

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CAMERA SETUP FOR OPTION A2 (STANDARD) – According to the camera placement diagram, for Mount A option 2, both cameras should be placed at the 12 o’clock position as shown.

WATER FLOW OVERVIEW FOR OPTION A1 – This option assumes the actuator is still installed in mounting position A, but the water flow through the valve has changed. For discharge, water flows into port 1 and flows through either port 2 or port 3 or both. Gate 1 will always be open.

CAMERA SETTING FOR OPTION A1 – According to the camera placement chart, for Mount A option 1, the lower camera is set at 6 o’clock and the upper camera is set at 9 o’clock as shown in the photo.

MOUNT B VIEW – For the second set of examples, we will install the trigger in the Mount B position as shown. The actuator body is aligned with the tube entering port 1.

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WATER FLOW OVERVIEW FOR OPTION B1 – For configuration B1 (discharge), water will flow into port 1 and discharge into port 2 or port 3 or both.

CAMERA MOUNTS FOR B1 – According to the camera placement diagram, for Mount B option 1, the lower camera is placed at 9 o’clock and the upper camera is placed at 12 o’clock as shown in the picture. Remember that 12 o’clock is positioned on the opening of the small shaft.

WATER FLOW OVERVIEW FOR OPTION B2 – For configuration B2 (discharge), water will flow into port 2 and discharge into port 1 or port 3 or both. You will notice that the water flow is the same as in A2. The cameras must be configured differently because the station rotates 90° from mounting position A when mounted. The control of water flow through the valve is the same for both A2 and B2 (and C2 and D2).

Hayward Gva-24 Wiring Diagram

CAMERA MOUNTED FOR B2 – According to the camera placement diagram, for B-mount option 2, both cameras should be placed at the 3 o’clock position as shown.

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COLLAR REPLACEMENT – After placing the cams in the correct position according to the cam location diagram, begin closing the actuator by sliding the shaft collar on the shaft over the cams – thin wall up.

REPLACE LEVER – Align the tabs on the lever with the holes in the actuator shaft

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