Abstract:
PROBLEM TO BE SOLVED: To provide conditioning of energies of either one or multiple of circuitly that would otherwise detrimentally effect a predetermined application having a single or multiple circuitly systems. SOLUTION: The present disclosure relates to compact and integrated arrangements for an energy conditioning arrangement having various predetermined energy pathways, which are mainly used for conditioning energies of one or multiple of circuitly that would otherwise detrimentally effect a predetermined application having a single or multiple circuitly systems. Some variations of the energy conditioning arrangements can function to provide multiple energy conditioning operations. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
A predetermined amalgamation of electrodes (800d) formed or manufactured at least in part, by predetermined, sequential manufacturing operations into a balanced and shielding electrode structure. The balanced total electrode structure also uses a grouping of identically configured shielding electrodes (854).
Abstract:
An amalgamation of selected energy pathways and other elements formed at lea st in-part by sequential manufacturing operations and made operable to be coupl ed and/or formed as part of a predetermined assembly and/or assemblies and/or assembly variations practicable and/or operable for sustaining electrically opposing and/or complementary energy portion confluences that can be themselves made operable by the arrangement amalgam to undergo portions of energy conditioning as a portion of an energized circuit.
Abstract:
The present invention relates to a multi-functional energy conditioner (10) having architecture employed in conjunction with various dielectric and combinations of dielectric materials to provide one or more differential and common mode filters for the suppression of electromagnetic emissions and sur ge protection. The components architecture is dielectric independent and provid es for integration of various electrical characteristics within a single component to perform the functions of filtering, decoupling, fusing and surg e suppression.
Abstract:
An amalgamation of selected energy pathways and other elements formed at least in-part by sequential manufacturing operations and made operable to be coupled and/or formed as part of a predetermined assembly and/or assemblies and/or assembly variations practicable and/or operable for sustaining electrically opposing and/or complementary energy portion confluences that can be themselves made operable by the arrangement amalgam to undergo portions of energy conditioning as a portion of an energized circuit.
Abstract:
A predetermined amalgamation of electrodes (800d) formed or manufactured at least in part, by predetermined, sequential manufacturing operations into a balanced and shielding electrode structure. The balanced total electrode structure also uses a grouping of identically configured shielding electrodes (854).
Abstract:
A predetermined amalgamation of electrodes (800d) formed or manufactured at least in part, by predetermined, sequential manufacturing operations into a balanced and shielding electrode structure. The balanced total electrode structure also uses a grouping of identically configured shielding electrode s (854).
Abstract:
Compact and integral arrangements for an energy-conditioning arrangement (10005) having various predetermined energy pathways (S-L-C2) utilized in part for the purpose of conditioning energies of either one or multiple of circuitry. Some energy-conditioning arrangement variants can be operable to provide multiple, energy-conditioning operations (19200).
Abstract:
A predetermined electrode arrangement ( 1/1, 1/2, 1/3 A, 1/6 ) comprising a plurality of shielded electrodes ( 213, 215 ) and a plurality of shielding electrodes ( 204, 214, 269 A, 269 B,) that together with other conductive ( 799, 206, 208, 207, 203, 218, 216, 217, 218 ) semi-conductive (not shown) and/or non-conductive material elements ( 212 ) are formed into a multi-functional energy condition assembly ( 1 - 1, 1 - 2, 1 - 3 A, 1 - 6 ) or variant to be selectively coupled into circuitry ( 4 - 1, 5 - 1, 1 - 2 ).