This weekend I was busy with analog input connector and ph module integration with it.. the basic integration is now done, but there’s more work needed for making it useful with the ph board. This includes converting raw analog voltage values to ph and incorporating the calibration logic. That will be my next focus...
while not coding , I got busy with building (more like rebuilding) a controller for raffle for our local club in upcoming local coral farmers market . The idea is to change one of my old build with simplified circuit and more probes. Aiming for a pi 3 based build, with three temperature sensor, two ato sensors, one db9 connector for power strip, two spst buttons (one for power and the other is unused) and plenty of empty room in the enclosure for future improvements (ph board or display etc). This time I measured electricity consumption very carefully in each step , with individual components. Here is a rundown of the observations for the curious minds:
My measurements are taken using kill a watt, connected to an AC 110v, 60Hz house hold power line. The reef-pi build is powered by a 12 v , 1a dc wall wart (ul listed, and regulated ). I ran various equipment against a 5.5g tank.
- just the controller :0.03 A
- Power head (12w) : 0.02 A
- light (12w): 0.03A
- heater (25w): 0.17A
Tank water was at garage temperature at 64F, and I preset it to 79F. The heater was able to increase 2F per hour in the first 4 hours , followed by 1.5 F per hour and then plagues at 1.3/0.7 F per hour. I was very excited to see the graphs and note down the numbers , I have many ideas after runnng this. I think having an ability to specify the expected usage and monitor the ongoing usage will be tremendously useful. I am also think probably it’s not required to have multiple independent monitoring of current to get the bulk of benefits ...thoughts ?