Abstract:
An energy conditioner structure comprising a first electrode (120), a second electrode (80), and a shield structure (70, 110, 150) provides improved energy conditioning in electrical circuits. The structures may exist as discrete components or part of an integrated circuit. The shield structure in the energy conditioner structure does not electrically connect to any circuit element.
Abstract:
The invention provides electrical filters, circuits including the filters, connectors including the filters, and methods of making and using the same wherein the filter includes a G conductor, an A conductor; and a B conductor, and wherein the three conductors are conductively isolated from one another when said filter is not connected in a circuit.
Abstract:
Compact and integral arrangemetns for an energy-conditioning arrangement (800q) having various predetermined pathways (813a, 813b) utilized in part for the purpose of conditioning energies of either one or multiple of circuitry that would otherwise detrimentally effect a predetermined application having a single or multiple, circuitry systems. Some energy-conditioning variants can be operable to provide multiple-conditioning operations.
Abstract:
Compact and integral arrangements for an energy-conditioning arrangement having various predetermined energy pathways 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.
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 energy conditioner structure comprising a first electrode, a second electrode, and a shield structure provides improved energy conditioning in electrical circuits. The structures may exist as discrete components, as part of an interposer or a first level interconnects, or a part of an integrated circuit. The shield structure in the energy conditioner structure does not electrically connect to any circuit element.
Abstract:
A structure (300) comprising a first electrode (304), a second electrode (305), a shielding electrode (307) provides improved energy conditioning when used in electrical circuits. The structures (300) may exist as discrete components, as part of an interposer or a first level interconnects (40, 50), or a part of an integrated circuit (20).
Abstract:
The invention provides electrical energy conditioners particularly useful for power applications. Internai structure of the energy conditioners may be included as components of connectors or electrical devices.
Abstract:
The present invention relates to a layered universal, multi-functional, common conductive shield structure with conductive pathways for energy and EMI conditioning and protection (800D) that also possesses a commonly shared and centrally positioned conductive pathway or electrode (809) of the structure that can simultaneously shield and allow smooth energy interaction between grouped and energized conductive pathway electrodes (805). The invention, when energized, will allow the contained conductive pathways or electrodes to operate with respect to one another harmoniously, yet in an oppositely phased or charged manner, respectively.