Deleted member 272
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- Mar 9, 2026
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Feedback welcome if anyone has tried anything similiar.
My control pod will have two circulation pumps, controlled by a flip flop module, allowing the flow to alternate, this requires a bypass, using solenoid valves on a 2ch smart wifi controller.
This allows flow to maintain unrestricted bue to 2 pumps installed in the control pod.( without the bypass the second pump would restrict flow on its return to the control pod)
Ive also got a smart EC probe, plus magnetic stirrers and dosing pumps.
Rule being. EC drops below a set value. Mag stirrers start to mix ferts A and B for a set duration.
Fert A is dosed for X amount of time, delay for X amount of time, the fert B is dosed for X amount of time. Delay for X amount of time, EC measured again, cycle repeated if required EC not achieved. Smart pod connected to a larger clean water res on a float valve and a low water level smart sensor advices if pod water level starts to drop, indicating larger clean res empty(as i can't connect the system to mains water).
My control pod will have two circulation pumps, controlled by a flip flop module, allowing the flow to alternate, this requires a bypass, using solenoid valves on a 2ch smart wifi controller.
This allows flow to maintain unrestricted bue to 2 pumps installed in the control pod.( without the bypass the second pump would restrict flow on its return to the control pod)
Ive also got a smart EC probe, plus magnetic stirrers and dosing pumps.
Rule being. EC drops below a set value. Mag stirrers start to mix ferts A and B for a set duration.
Fert A is dosed for X amount of time, delay for X amount of time, the fert B is dosed for X amount of time. Delay for X amount of time, EC measured again, cycle repeated if required EC not achieved. Smart pod connected to a larger clean water res on a float valve and a low water level smart sensor advices if pod water level starts to drop, indicating larger clean res empty(as i can't connect the system to mains water).