good work
Hey Green,
Keep up the posts on your progression with this set up and do you
have a method for measuring the HHO production vs the frequency?
(Was wondering if you can obtain varying results with this?)
I have read/watched the Meyers research and the tubes
(larger surface area) produced more efficient results with PWM.
N8 was correct with the NOH as a superior electrolyte and have you tried
making a circuit with a larger cap bank to pulse the 40V you said was
on scope when using rods in early test?
I would love to see a pic of the set-up and input/output mA's
Regards
Zero
dR-Green wrote:
Hmm, I'm sure there was another reply by someone here but it's now gone? I wanted to check out the video they posted and then I forgot to reply sorry, whoever it was.
Anyway this whole thing with water hasn't gone very far yet because I've been busy starting building Tesla coils, making a workbench to work on instead of my bed, and playing with transformers connected to the SG output. But it has led to a thing that relates to the HHO cell, now I'm curious as to how what is connected to the SG output affects how the whole thing works, how the SG effectively adjusts itself according to the load.
Not to mention CFLs on the output, connected through a 240v to 12v transformer connected in reverse, at certain frequencies/SG trigger resistance, only lights brightly when I touch it or place conductive objects near it, such as tin foil or wires. If I place this conductive "antennae" close to the CFL but not quite close enough to make it light, non-conductive objects such as a piece of pine wood makes up the difference; when I touch the CFL with the piece of pine, the CFL lightsI'm also rectifying the transformer output so the 11w 240v AC CFL is working off pulsed DC (110mA 12v SG input). But the CFL won't stay on constantly, it's more like a strobe. My theory at the moment is that I'm using an off the shelf standard mains step down transformer so it's designed for that purpose, and this acts as a limit that the SG can't overcome because it's not a brute force system.
Hey Green,
Keep up the posts on your progression with this set up and do you
have a method for measuring the HHO production vs the frequency?
(Was wondering if you can obtain varying results with this?)
I have read/watched the Meyers research and the tubes
(larger surface area) produced more efficient results with PWM.
N8 was correct with the NOH as a superior electrolyte and have you tried
making a circuit with a larger cap bank to pulse the 40V you said was
on scope when using rods in early test?
I would love to see a pic of the set-up and input/output mA's
Regards
Zero
I'm also rectifying the transformer output so the 11w 240v AC CFL is working off pulsed DC (110mA 12v SG input). But the CFL won't stay on constantly, it's more like a strobe. My theory at the moment is that I'm using an off the shelf standard mains step down transformer so it's designed for that purpose, and this acts as a limit that the SG can't overcome because it's not a brute force system. 