Lighting For Everyone The STEEMIT Way
Let Us Improve The Joulethief: The Radiant Charger Mod - Post #5
Our puppy Moo-Moo. Most intelligent and the cutest puppy. All dogs I believe will go to Heaven……...
IT IS TIME TO TAKE CARE OF THAT SOURCE BATTERY
In my previous post to kickstart these chapters on the joulethief improvements, I presented a circuit that will light up a 220 volt 3 watts LED bulb using a 12 volt battery source (please see link below on my previous post if you want to review it first before continuing here). But I am not stopping from there, and as far as my intuition and sense of adventure dictates, I really think it will be best if I will be able to keep the source battery charged up so that it can continue on with its job of powering up the whole circuit to light up the 220 volt LED bulb. But how?
OK, so what about if we will charge another battery or set of batteries from this circuit called the joulethief? Let us see if it will be able to charge another battery using the source battery, sort of instead of lighting an LED, why not charge another same sized battery? That sounds brilliant isn’t it? Because if it does charge, then that will solve my problem of keeping the source battery charged up all the time as maybe I can just “replace” the charged one with the “discharged” one. I propose a circuit as illustrated below that may transform the joulethief to become a charger:
If we closely observe, the source voltage is increased to become 24 volts, we do this so that we can insert batteries in between the positive of the source battery and to one side of the primary of the inductor. As electrical laws tell us that the higher voltage will always overflow going into the lower voltage if connected side by side (parallel), this natural phenomenon clearly will charge the two batteries because current as released from the 24 volt batteries (2x in series) will surely flow to the 12 volt batteries (2x in parallel). But there is more to this circuit I tell you, amazing things that until now even the wisest on the offgrid forums can only say “just my opinion”. So here is the radiant charger circuit with the familiar blue and red line current flows:
AT A TIME WHEN THE TRANSISTOR “CLOSES”
At the initial state of the charger’s powering up, the current flow is as indicated:
source battery positive --→ charge battery –→ inductor secondary --→ transistor base / charge battery –→ inductor primary --→ transistor collector –→ source battery negative
This will be a very small current as indicated by the small blue arrow tip followed almost immediately by a huge current as indicated by the big blue arrow tip. If we closely observe, the charge battery is being charged twice during the blue activation cycle, firstly by the small current that needs to go to the transistor base and then almost instantaneously by a huge current that needs to go to the transistor collector as it is now at its “closed” position. At this very moment of the blue line activation cycle, take note that this is still the type of electricity that is written on our textbooks, do remember this comment from me because the next cycle will start the unending journey of your life as an experimenter or if you are really a tinkerer with a sense of adventure like me. Too much electrical mysteries after this point of my daily tutorials haha.
AT A TIME WHEN THE TRANSISTOR “OPENS”
Welcome to the “phantom zone”, I will try to describe this part of the cycle as “dummily” as possible but can’t guarantee if I knew where the energy comes from, so the red deactivation current goes this way:
primary inductor positive --→ flywheel diode –→ charge battery --→ primary inductor negative
You may ask me “So is that it? Where is the overrated phantom description?” Hahaha, I know I know, so let me surprise and tickle you this early because this kind of electricity that flows back to the flywheel diode is capable of this weird (very weird actually!!!) phenomenon:
-If that charge battery turns out to be a “sulfated” and “dead” battery, it will revive such battery!!! Remove the flywheel diode and the dead battery will even boil to its own death never to be revived again; put back the diode, place a dead and sulfated battery, and magic, the charge battery RISES FROM THE DEAD!!! Can somebody please explain, because as what I described earlier, that configuration of the flywheel diode on our university textbooks tells us to put it there because of “dirty” electricity damaging the motor and components, when in fact in my own experiments (I am the first witness believe me I have done this a thousand times maybe) and other experimenters, this flywheel diode is the “conduit” so that it can call back the dead batteries from its grave to live a purposeful life once again. This type of electricity seemingly will traverse the diode, remember the LED on the basic joulethief that lights up even with a measly 1.5 volts source? I am also with the opinion that this is the type of electricity that is able to light the light as per the true light mod as presented in my previous post, traversing the base-collector junction of the transistor and not even damaging it (more on this on later posts). There is still another mysterious behaviour of this type of electricity, but even if I am tempted to divulge it here I am reserving it to the next topics as it will serve another purpose and mod there.
-The second observable effect of this type of electricity is that the transistor will run cold, including the charge battery!!! Try running any electronics, it will always produce heat right? Try charging a battery the usual way using an ordinary charger, it heats up the battery right? But this “unknown energy” seems to have this reverse effect, it gives life to a charged battery instead of killing it slowly by every charge while at the same time it cools electronic components instead of heating it
Just a side note for everyone, the largest hadron collider called CERN located in Switzerland is trying to find an unknown particle, so there are still lots of phenomenon around us that clearly is not yet understood, even at the levels of the experts among the experts. The only difference with CERN to us backyard experimenters is the amount of money that they are funded, but I am not even backing off if this hunger for knowledge and new approaches is the one to be compared.
COUNTING THE CHARGING IMPULSE ON THE CHARGE BATTERY
So if we try to observe the energies that went into this charge battery at this circuit arrangement, it will be these current/voltage combinations:
-small current firstly going to the base of the transistor and passing by the charge battery and the inductor secondary; this is the first charging impulse
-huge current secondly going to the collector and passing by the charge battery and the inductor primary; this is the second charging impulse
-”unknown” type of electricity that heals the charge battery; this is the third charging impulse that not only complements the first two impulses, but it really seems to “reverse” all the damaging effects of the first two and at the same time arranges everything in order in every cycle
Let us be reminded that these three impulses is happening to the charge battery a thousand times in every second, let that sink in please.
IDEAS FOR THE NEXT MODS
At this point of the mods to the joulethief circuit, I have already presented that we can do real and usable lighting and a charger that will charge another set of battery.
But what about a reserve voltage if this circuit is running? As we have already a very mysterious electrical energy phenomenon that revives a dead battery, what if there are other behaviours we can take advantage of about this reviving type of electricity? And if there is, can we at least save it on a reservoir in the form of a voltage?
Stay tuned for the next post.
Previous Post Link:
https://steemit.com/offgrid/@lightingmacsteem/tt2hm-lighting-for-everyone-the-steemit-way



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STOP@lightingmacsteem wow!
Thanks for the nice comment!!! Wait for my next posts.........
Don't forget to tag your future posts at #pilipinas(if written in filipino) and #philippines(if its english post).
OK @themanualbot. Thanks for your upvote.
Register sa steemit.chat sir. Adto ta mag talk. :)
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Thanks man, appreciate, you are one good supporter here.