This is a QEG sysnopsis and update (2015) written by James Robitaille for engineers working on the device. Development is far along in 2016 so please check our Updates & Reports page for the latest news.
Original Publish Date: Februrary 2015
PDF Link:https://hopegirl2012.files.wordpress.com/2015/03/qeg-synopsis-and-call-for-experiments-technical-report-resonance-and-additional-feedback-coils.pdf
Excerpt from QEG Synopsis Technical Report:
…the first thing that has to happen once the machine is in resonance, is the conditioning of the core using the exciter coil. This will increase the voltage in the core to the point where we will have enough power to run the motor (self-loop) and power additional loads. This is the ‘Quantum Energy’ effect of the QEG. Resulting from this research, we also see that finding the ‘sweet spot’ during the basic generator tuning (RPM/frequency where we get the most output for the least amount of input) is best done after the core is conditioned. Finding the ‘sweet spot’ indicates the point where the steel is selfresonant (without the expensive lab testing), but there is not enough power in the secondary to do this effectively until after the core is conditioned, and that’s why none of our teams has been able to find it yet. Also, the generator output frequency can be changed to whatever you like after the core is conditioned (I like the mechanical setup with output around 160Hz/167nF/2450 RPM), however, maximum output would be at the frequency of the steel’s self-resonance. But keep in mind that the steel’s self-resonant frequency may be anywhere from say 150Hz up through the low kHz range, so we may have to tune to a lower harmonic of the fundamental frequency, in order to run within the mechanical speed range of the generator. The precise generator output frequency of 400Hz / 200Hz is only important during the exciter coil tuning. This is because the generator has to drive the exciter coil into resonance…
