The Effect of MRET Noise Field Generator on SAR Values of RF Phones
نویسنده
چکیده
This article is related to the experimental data regarding the ability of MRET Noise Field Generator (MRET NFG) placed at the distance of 7 feet from “phantom head” exposed to RF phones radiation to reduce specific absorption rate (SAR) of the water based solution inside “phantom head”. The core part of Generator is MRET polymer compound. Due to the fractal geometry structure of MRET polymer compound and the phenomenon of piezoelectricity, this polymer generates subtle, low frequency, noncoherent electromagnetic oscillations (composite noise field) that can modify RF signals as a result of superposition phenomenon. The superposition of composite noise field generated by MRET Generator on RF microwave signals leads to amplitude modulation of RF signals where random low frequency signal generated by MRET Generator is a modulating signal and original microwave signal is a modulated one. The low frequency, non-coherent electromagnetic oscillations (noise field) can affect the hydrogen lattice of the molecular structure of water and subsequently modify the electrodynamics properties of water [Smirnov 2008]. The increase of dielectric permittivity of water finally leads to reduction of the absorption rate of electromagnetic field (SAR) of the water-based jelly which simulates living tissue. The reduction of SAR values is confirmed by the research conducted at FCC certified RF Exposure Laboratory, Escondido, California. The influence of MRET Noise Field Generator signals on RF phones in this experiment does not change location of “Hot Spot”. The “Hot Spots” remain in the same location as without the influence of generator, and their amplitudes decrease in 80% of data points. This test also confirmed that the placement of MRET Generator at the distance of 7 feet from “phantom head” exposed to RF phones does not significantly affect the air measurements of RF phone signals and subsequently does not lead to any significant distortion of transmitted RF signals [Moulton 2007].
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