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JOULESTEEM Voltage Reservoir Tests - Post #16

What cute blessings!!! Three cute puppies to add to the pack. Their trademark dot at the forehead clearly indicates a border collie ancestry for both their parents Barsa and Finch……...

WHY DO WE NEED TO TEST THE VOLTAGE RESERVOIR CAPABILITIES

For a thorough understanding on this post as it relates to my previous rundown post, just read the link to the said post below.

Why did I even bother giving myself headaches to be able to charge the two caps in series as per the JOULESTEEM circuit? If the JOULESTEEM circuit already lights up the LED bulb and charges the charge battery at the same time, is there any good use?

I have actually three good purposes for both of the series caps, and these are:

-To be able to “scavenge” any energy that are just wasted while the JOULESTEEM is in operation

-To be able to “prove” the type of energy that is long described about by the great Nikola Tesla, even a very faint voltage is already eureka for a lowly backyard experimenter as me

-To be able to have an “extra” boost just in case the charge battery can not replace the source battery in a 1-to-1 drain-to-charge ratio

With these three heavy reasons, we can easily conclude that these two caps in series will give us lots of good use. Let me describe in advance that even if a capacitor discharges in an instant (as in micro to milli seconds instance), the current being released from a cap is very high, making it the best candidate for charging any battery “if the need arises”.

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THE APPROACH

We need to test the voltage usability of the series caps in the following areas:

-Another 220 volt 3 watt LED bulb; this will at least give us a quick feel of its real power, as even a 3 watt bulb is also a load in itself

-The capability of the combined voltages if dumped into a battery for charging purposes; we need to remember that this is already another charger as far as the JOULESTEEM circuit is concerned

-The capability of the combined voltages if “looped back” to the source battery, preferably through another oscillating circuit in which the output is “magnetically separated” so that no electrical short circuit will affect the JOULESTEEM circuit when looping back

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THE EXPECTATIONS

As far as the JOULESTEEM circuit is concerned, I expect for the voltage reserves to do the following:

-The voltage of both caps (CAP1 and CAP2) will be able to light the 220 volts LED bulb

-The voltage of both caps (CAP1 and CAP2), if exceeding the 90 volts mark, will surely charge any battery as long as it is lower in voltage than the voltages of the two caps combined in series

-The voltage of both caps (CAP1 and CAP2) can be looped back to charge the source battery in any intensity as long as the output of the second stage circuit is “magnetically isolated”; any amount of voltage charging back the source can be very useful to the overall operation of the JOULESTEEM circuit since it will at least prolong the operation of the source battery while the charge battery is being charged slowly but surely

Previous Posts Link:
https://steemit.com/offgrid/@lightingmacsteem/nt1bm-lighting-for-everyone-the-steemit-way

“If Your Hate Could Be Turned Into Electricity, It Will Light Up The Whole World. -Nikola Tesla”

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