JOULESTEEM DC Augmentation With Loopback To Source - Post #64
This latest JOULESTEEM circuit arrangement offers 2x power out than power in, as illustrated:
CONSUME 5 WATTS TO PRODUCE 10 WATTS
The following behaviors are exhibited on this latest JOULESTEEM circuit:
The 7 watts LED bulb at the loopback end is flickering at about 3x every second, with all components running cold (even the grid DC power supply is very softly warm, not the usual very hot) with no signs of turning hot
The current as consumed at the source end is about 180 milliamps while the current going into the charge battery is about 360 milliamps, with the extra coming from the big capacitor as arranged from the source battery positive and grid DC negative; this is a confirmed run of the 2x overunity as described on the previous JOULESTEEM circuit post #63 (I erroneoously labelled post #62 my apologies)
The frequency of this latest circuit is low, at about 25 Hz to 50 Hz, and yet no noticeable hotness of the transistor; as before, if the frequency gets very low, the transistor will turn hot and eventually gets burned and damaged, but not this time
The charge battery is charged up steady and surely; it is observed that when the charge battery gets a fuller charge, the current consumption at the source end gets lower, but the current as fed tot he charge battery stays as is, which means this latest circuit gets higher efficiencies as the charge battery gets charged
If I turn off the grid DC or remove the source battery positive, the circuit stops oscillating; the inductor (the coil) have “clicks” as emitted sound, very odd a sound for an oscillating circuit
The 7 watts LED bulb at the GI pipe end is lit up very bright, I can observe its light as blinding and is most probably more in intensity when plugged to the 220 volt grid
The rate at which the charge battery charges is much faster as compared to the rate by which the source battery depletes
It is worth mentioning that this is another confirmation and replication of a run in which the JOULESTEEM circuit exhibits 2x power out than power in, clearly in overunity operation.