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Electrical transmission or interconnection systems

Patent class list (only not empty are listed)

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Class / Patent application numberDescriptionNumber of patent applications / Date published
307043000 PLURAL SUPPLY CIRCUITS OR SOURCES 2688
307104000 ELECTROMAGNET OR HIGHLY INDUCTIVE SYSTEMS 2161
307011000 PLURAL LOAD CIRCUIT SYSTEMS 1900
307900100 VEHICLE MOUNTED SYSTEMS 1646
307112000 SWITCHING SYSTEMS 1023
307149000 MISCELLANEOUS SYSTEMS 237
307001000 SUPERIMPOSED UNLIKE CURRENTS 131
307326000 PERSONNEL SAFETY OR LIMIT CONTROL FEATURES 110
307109000 CAPACITOR 104
307106000 WAVE FORM OR WAVE SHAPE DETERMINATIVE OR PULSE-PRODUCING SYSTEMS 62
307147000 CONDUCTOR ARRANGEMENTS OR STRUCTURE 34
307105000 WITH HARMONIC FILTER OR NEUTRALIZER 33
307098000 COMBINED IMPEDANCE AND SWITCH SYSTEMS 20
307089000 ANTI-INDUCTION OR COUPLING TO OTHER SYSTEMS 18
307145000 WITH CURRENT COLLECTION OR TRANSFER 14
307400000 ELECTRETS 13
307102000 STABILIZED, ANTI-HUNTING OR ANTIOSCILLATION SYSTEMS 12
307103000 WITH LINE DROP COMPENSATION 11
307100000 SHUNTING OR SHORT CIRCUITING SYSTEMS 5
20100102638SYSTEMS AND METHODS FOR DISCHARGING BUS VOLTAGE USING SEMICONDUCTOR DEVICES - Systems and methods are provided for discharging a high-voltage bus using semiconductor devices. A discharge system for a first voltage rail and a second voltage rail comprises a first semiconductor device coupled to a first voltage rail and a second semiconductor device coupled between the first semiconductor device and a second voltage rail. A control circuit is coupled to the first semiconductor device and the second semiconductor device. In response to a discharge condition, the control circuit is configured to activate the first semiconductor device and gradually activate the second semiconductor device, such that the energy potential between the first voltage rail and the second voltage rail is gradually dissipated through the semiconductor devices.04-29-2010
20100194205Isolation circuitry and method for hiding a power consumption characteristic of an associated processing circuit - An isolation circuitry and method are provided for coupling between a power supply and processing circuitry in order to provide power to the processing circuitry whilst hiding a power consumption characteristic of that processing circuitry. The isolation circuitry comprises a plurality of sub-circuits, with each sub-circuit comprising a capacitor, a first switch configured to provide a first connection between the capacitor and the power supply, a second switch configured to provide a second connection between the capacitor and the processing circuitry, and a third switch configured to provide a third connection across the capacitor to partially discharge the capacitor. Control circuitry controls the plurality of sub-circuits, such that within each sub-circuit the first switch, second switch and third switch are placed in an active state in a repeating sequence. Each of the plurality of sub-circuits further comprises a comparator configured to place the third switch in an open state when a predetermined non-zero voltage difference across the capacitor is reached during the active state of the third switch. By such an approach, it is ensured that the voltage across the comparator at the end of the discharge operation is always the same irrespective of the voltage present at the start of the discharge operation. As a result, the power consumption characteristic of the processing circuitry is entirely hidden by the isolation circuitry. Further, the isolation circuitry of the present invention provides a particular power efficient mechanism for hiding the power consumption characteristic of the processing circuitry.08-05-2010
20130015717Method and Apparatus for Transistor Switch IsolationAANM Dykstra; Jeffrey A.AACI PalatineAAST ILAACO USAAGP Dykstra; Jeffrey A. Palatine IL US - A transistor switch that provides isolation is described. The transistor switch is adapted to receive an input signal at an input terminal and either transmit the input signal to an output terminal when the transistor switch is in a first state or ground the input signal when the transistor switch is in a second state. The transistor switch comprises series switches, which couple the input terminal to the output terminal when the transistor switch is in the first state; shunt switches, which couple the input terminal to ground when the transistor switch is in the second state; and filters to provide isolation between the input terminal and the output terminal.01-17-2013
20130221755Circuit Arrangement for Setting a Potential of a Photovoltaic Generator - A circuit arrangement for setting a potential of a photovoltaic generator with respect to a ground potential (GND) includes at least one first resistance connected between a negative output of the photovoltaic generator and a ground connection, and a series circuit including at least one second resistance and a breakdown diode connected in series between a positive output of the photovoltaic generator and the ground connection to which the ground potential (GND) is applied. Alternatively, the circuit arrangement includes at least one first resistance connected between a positive output of the photovoltaic generator and a ground connection, and a series circuit including at least one second resistance and a breakdown diode connected in series between a negative output of the photovoltaic generator and the ground connection to which the ground potential (GND) is applied.08-29-2013
20140152113DISCHARGE CIRCUIT - A discharge circuit includes a power supply unit, a connector, and a jumper. The connector includes a number of pins defined in two rows with one of the pin is coupled to a power terminal provided by the power supply unit. The jumper is connected between the pin coupled to the power terminal and another pin connected to ground, to make the power terminal to discharge.06-05-2014
307650000 WITH NONSWITCHING MEANS RESPONSIVE TO EXTERNAL NONELECTRICAL CONDITION 5
20130293033METHOD OF CONTROLLING A POWER FEED AND APPARATUS - A method of controlling a power feed to a load (L), wherein the load (L) can be connected to an apparatus (11-07-2013
20130234537ELECTRO-MECHANICAL INTERFACE - An embodiment of the invention extends to an interface for converting rotational motion to electrical signals comprising a mechanical actuator which is rotationally moveable in a first direction and in a second direction, and a first and a second electrical component connected to the actuator and arranged so that rotation of the actuator in the first direction causes changes in electrical properties of the first electrical component and rotation of the actuator in the second direction causes changes in electrical properties of the second electrical component. The first and the second electrical components are connected to one or more electrical circuits so that rotation of the actuator in the first and the second directions causes changes in the one or more electrical circuits.09-12-2013
20130342031Method Of Controlling Electronic Device And Electronic Device - A control method and an electronic device are described. The method is applied in an electronic device which includes a first body, a second body and a rotary apparatus. On at least one body of the first body and the second body, there are provided M number of input apparatuses; the first body and the second body are rotatably connected together, where M is an integer greater than or equal to 1. The state-information of the first body and/or the second body is detected, to obtain a detection result; when the detection result indicates that the first body and/or the second body are/is in a motion state, a disable command is generated; the disable command is executed, so that N number of input apparatuses from the M number of input apparatuses are in a disabled state, where N is an integer less than or equal to M.12-26-2013
20140049121SELF-CAPACITIVE TOUCH PANEL - A self-capacitive touch panel including a border electrode and a central electrode is provided. The border electrode has a first centroid. The central electrode has a second centroid A first average distance from the first centroid to all possible touch points in the border electrode is smaller than a second average distance from the second centroid to all possible touch points in the central electrode.02-20-2014
20160161568Identification of a Unique Attribute of a Power Adapter Based on an Adjust Pin - Examples disclose a power system comprising a powered circuit to measure a voltage from an adjust pin associated with a power adapter. The voltage indicates a unique attribute of the power adapter. The power system also comprises a controller to identify the unique attribute of the power adapter based on the voltage.06-09-2016
307401000 NONLINEAR REACTOR SYSTEMS (E.G., SATURABLE) 4
20080246345Semiconductor Switch Arrangement and an Electronic Device - A semiconductor switch arrangement (10-09-2008
20090001821Chip Attack Protection - A system for protecting a chip with an integrated circuit disposed on a first surface, the system including, disposed on the first surface, a first antenna, signal analyzer, chip controller and a signal generator which is operative to supply an outbound signal for transmission by the first antenna, a circuit arrangement, disposed on a second surface of the chip, including a shielding arrangement and a second antenna to receive the outbound signal, the circuit arrangement being operative to transmit a return signal from the second antenna to the first antenna, such that a breach in the shielding arrangement results in a change in, or cessation of, the return signal for detection by the signal analyzer, and a chip controller disposed on the first surface being operative to perform an action on the integrated circuit in response to the detection of the breach. Related apparatus and methods also included.01-01-2009
20110050004POWER TRANSMISSION SYSTEM - The invention relates to a power transmission system for transmitting electrical power from a power source to a load. The system comprises a capacitive and lossy transmission line or cable and a transformer device (03-03-2011
20110089770SELF POWER-ACQUIRING QUICK-RESPONSIVE CONTROLLABLE REACTOR - This invention relates to a self power-acquiring quickly responsive controllable reactor whose coil of the main body portion contains a control winding (04-21-2011
307096000 INTERMITTENT REGULATORY INTERRUPTION OF SYSTEM 3
20120038218POWER TRANSMISSION SYSTEM - A power transmission system a power transmission apparatus, a center frequency acquiring unit, and a control unit. The power transmission apparatus includes a primary-side coupling electrode electrically configured to couple to a secondary-side coupling electrode and connected load circuit of a power receiving apparatus, a high-frequency voltage generating circuit configured to generate and apply a high-frequency voltage to the primary-side coupling electrode, and a driving power circuit that supplies driving power to the high-frequency voltage generating circuit. The center frequency acquiring unit acquires a center frequency at which a high-frequency high voltage applied to coupling electrode is minimized in a state in which a low load is applied to the secondary-side coupling electrode of the power receiving apparatus and the frequency of the generated high-frequency voltage is varied. The control unit sets a driving frequency of the high-frequency voltage generating circuit at or near the center frequency to supply power to the power receiving apparatus.02-16-2012
20120299387DIAGNOSTICS OF INTEGRATED SOLAR POWER - A method for detecting faults in a solar cell includes measuring at least one operational parameter of a solar cell, measuring an output of the solar cell, identifying differences between the measured output of the solar cell and estimated outputs of a first and second model of operating modes of the solar cell, generating probabilities corresponding to the likelihood that each model corresponds to the actual operating mode of the solar call based on the identified differences, and disconnecting the output of the solar cell from a load in response to the identified current operating mode being the operating mode of the second model.11-29-2012
20150371799BLINKING DEVICE - The blinking device includes multiple power terminals, multiple load terminals, multiple contact switches, a control circuit, and multiple mounting substrates, and a case in a box shape for accommodating these therein. The multiple contact switches are individually associated with multiple power supply paths individually connected to multiple pairs each defined as a pair of one power terminal of the multiple power terminals and one load terminal of the multiple load terminals. At least one power supply path of the multiple power supply paths is formed on at least one of a front face, where at least one contact switch is mounted, and a rear face, where no contact switch is mounted, of each of the multiple mounting substrates. The case is configured to accommodate the multiple mounting substrates so that the multiple mounting substrates are stacked in a thickness direction.12-24-2015
307095000 ANTI-ELECTROLYSIS 1
20110080049Corrosion Reducing Two-Wire Control Systems - A control system for a two-wire power and communication system is described herein. A gateway connects to an irrigation controller and at least two wires that are further connected to a plurality of decoders. The gateway includes an H-bridge circuit that creates an alternating potential at the same potential or lower than the nearby ground. In this respect, when one of the at least two communication wires are damaged, little or no wire corrosion will occur.04-07-2011
307101000 RESIDUAL OR REMANENT MAGNETISM CONTROL 1
20140285025DEVICE AND METHOD FOR GENERATING A CORRECTIVE MAGNETIC FIELD FOR FERRITE-BASED CIRCUITS - A demagnetizing device includes, in one embodiment, a demagnetizer. The demagnetizer is operable to generate a corrective magnetic field. The corrective magnetic field is operable to act upon a ferrite-based core to maintain suitable performance of a network-connected device which includes such core.09-25-2014
307146000 UNIDIRECTIONAL CONDUCTOR SYSTEMS 1
20120280577METHOD AND APPARATUS FOR TRANSMITTING DISCONTINUOUS MONOPOLARIZED ELECTRICAL ENERGY - Method and apparatus for periodical transmission of electrical energy, with a high level of effectiveness, at low cost, with zero voltage times and heat dissipation times, using one or more alternating polarization electrical energy supply sources, to one or multiple destinations, with a form of electrical energy constituted by discontinuous monopolarized periodic sections, known as discontinuous transmission current, transmitted via transmission lines with zero voltage times and exclusive heat dissipation times, via electrical wires, for each polarity, across a transmission distance, with subsequent addition of the various discontinuous monopolarized sections, in direct form with no control, with no alteration to the qualities of the waveform and with no loss of energy or of the properties thereof in terms of the direct addition and delivery thereof, as alternating polarization periodic energy applicable to every type of voltage level, electric current density, alternating polarity waveforms and transmission length and frequency conditions.11-08-2012

Patent applications in class Electrical transmission or interconnection systems

Patent applications in all subclasses Electrical transmission or interconnection systems

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