Belloni
Alberto Belloni, Genova IT
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20080314387 | Second Stage Of A Regulator For Scuba Breathing Apparatus - A second stage of a regulator for scuba breathing apparatus which comprises a body having an extension sleeve for delivering a breathing gas mixture to a user and a replaceable mouthpiece element comprising a connecting sleeve, which connecting sleeve of the mouthpiece is elastically deformable and may be fitted on said delivery sleeve of the second stage. According to an embodiment of the invention, there are provided separate and independent pull-out resistant means for mechanically locking the mouthpiece element to the delivery sleeve and separate and independent means for providing a hermetic seal between the mouthpiece element and the delivery sleeve. | 12-25-2008 |
Alessandra Belloni, Cerro Al Lambro IT
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20130209527 | PROCESS FOR THE PREPARATION OF WATER-IN-OIL AND OIL-IN-WATER NANOEMULSIONS - Process for the preparation of a water-in-oil or oil-in-water nanoemulsion wherein the dispersed phase is distributed in the dispersing phase in the form of droplets having a diameter ranging from 1 to 500 nm, comprising: | 08-15-2013 |
Alessandra Belloni, Cerro Al Lambro (milano) IT
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20120261120 | PROCESS FOR THE RECOVERY OF HEAVY OIL FROM AN UNDERGROUND RESERVOIR - A process for the recovery of heavy oil from an underground reservoir, comprising: injecting an oil-in-water nanoemulsion into one or more injection wells; recovering said heavy oil from one or more production wells. Said process is particularly advantageous for enhancing the recovery of heavy oils from underground reservoirs within the range of technologies for tertiary recovery, usually known as “EOR” (Enhanced Oil Recovery”). | 10-18-2012 |
20130079255 | PROCESS FOR THE REMOVAL OF DEPOSITS FROM AN OIL OR GAS WELL, AND/OR FROM THE SURFACE STRUCTURES, AND/OR FROM THE EQUIPMENT CONNECTED THEREWITH, AND/OR FROM HYDROCARBON BEARING FORMATIONS - Process for the removal of deposits from an oil or gas well, and/or from surface structures, and/or from the equipment connected therewith, and/or from hydrocarbon-bearing formations, comprising: —injecting at least one oil-in-water nanoemulsion into said oil or gas well, and/or surface structures, and/or equipment connected therewith, and/or hydrocarbon bearing formations; leaving said nanoemulsion in said oil or gas well, and/or surface structures, and/or equipment connected therewith, and/or hydrocarbon bearing formations, for a predetermined time. | 03-28-2013 |
Alessandra Belloni, Milan IT
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20090118380 | PROCESS FOR THE PREPARATION OF WATER-IN-OIL AND OIL-IN-WATER NANOEMULSIONS - Process for the preparation of a water-in-oil or oil-in-water nanoemulsion wherein the dispersed phase is distributed in the dispersing phase in the form of droplets having a diameter ranging from 1 to 500 nm, comprising: 1) the preparation of a homogeneous water/oil blend (I) characterized by an interface tension lower than 1 mN/m, comprising water in an amount of 30 to 70% by weight, at least two surface-active agents having a different HLB, selected from non-ionic, anionic, polymeric surface-active agents, said surface-active agents being present in such a quantity as to make the blend homogeneous; 2) the dilution of the blend (I) in a dispersing phase consisting of oil or water with the addition of a surface-active agent, selected from non-ionic, anionic, polymeric surface-active agents, the quantity of the dispersing phase and surface-active agent being such as to obtain a nanoemulsion having a HLB different from that of the blend (I). | 05-07-2009 |
Alessandra Belloni, Cerro Al Lambro (mi) IT
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20120199517 | PROCESS FOR THE RECOVERY OF OILS FROM A SOLID MATRIX - Process for the recovery of oils from a solid matrix comprising: subjecting said solid matrix to extraction by mixing with an oil-in-water nanoemulsion, obtaining a solid- liquid mixture; subjecting said solid- liquid mixture to separation, obtaining a liquid phase comprising said oils and a solid phase comprising said solid matrix; recovering said oils from said liquid phase. Said process is particularly advantageous for the recovery of oils from water wet oil sands (or water wet tar sands), oil wet sands (or oil wet tar sands), oil rocks, oil shales, more specifically from oil wet sands (or oil wet tar sands). | 08-09-2012 |
Antonio Belloni, Lodi IT
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20100084377 | Method for Girth Welding Metallic Pipes - A method for girth welding of metallic pipes consists in beveling one pipe end in order that, when it is aligned with an identically beveled pipe end on another pipe, results in a bevel of a “cruet” design with a rounded bottom part larger than an upper part with parallel walls. The diameter of the welding wire used for the welding method is within 1.2 and 1.4 mm and the wire contains low levels of impurity including sulfur and phosphorus. The welding technique used is a “strip” technique which does not provide employ weaving or oscillation of the welding torch. | 04-08-2010 |
Antonio Belloni, Codogno IT
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20100255335 | Configuration of and welding procedures applied to cruet shaped bevels in objects to be welded - Metallic objects such as steel pipes and shipbuilding plates are welded using complemental bevels in the faces to be welded which, when abutted, define a channel of cruet shaped cross-section. The cruet shaped channel allows the filling weld passes to be performed using a welding instrument oscillated only at tolerance amplitudes in a range of 1.5 mm±0.5 mm rather than bevel width amplitudes. The process can be used in single or double side welding applications. | 10-07-2010 |
Clarissa Sara Katharina Belloni, Oxford GB
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20110289941 | BRAYTON CYCLE REGASIFICATION OF LIQUIEFIED NATURAL GAS - A power plant including an apparatus for regasification of liquefied natural gas (LNG) is provided. The apparatus includes a compressor configured to pressurize a working fluid and a heat recovery system configured to provide heat to a working fluid. A turbine is configured to generate work utilizing the heated working fluid. One or more heat exchangers are configured to transfer heat from the working fluid to a first stage liquefied natural gas at a first pressure and at least one of a second stage liquefied natural gas at a second pressure, and a compressed working fluid. | 12-01-2011 |
20110308576 | HYBRID PHOTOVOLTAIC SYSTEM AND METHOD THEREOF - A hybrid system includes a photovoltaic system configured to receive solar energy and convert the solar energy into electrical energy. A cooling system is coupled to the photovoltaic system and configured to circulate a cooling fluid through the cooling system so as to remove heat from the photovoltaic system to cool the photovoltaic system. A first device is coupled to the cooling system via a temperature booster and configured to receive the heated cooling fluid from the cooling system. The temperature booster is configured to substantially increase the temperature of the heated cooling fluid fed from the cooling system to the first device from a first temperature to a second temperature. The first device includes a waste heat recovery system configured to generate electric power, a vapor absorption machine configured to cool a second device, a hot water supply unit, a water distillation unit, a water desalination unit, or combinations thereof. | 12-22-2011 |
20130081395 | SYSTEM AND METHOD FOR GENERATING ELECTRIC POWER - A system includes a gas turbine system, a thermal energy storage device, and a heat recovery system. The gas turbine system is powered by solar energy to generate a first amount of electric power. The thermal energy storage device is coupled to the gas turbine system. The thermal energy storage device is configured to selectively receive expanded exhaust gas from the gas turbine system and store heat of the expanded exhaust gas. The heat recovery system is coupled to the gas turbine system and the thermal energy storage device. The heat recovery system is selectively powered by at least one of the gas turbine system and the thermal energy storage device to generate a second amount of electric power. | 04-04-2013 |
Clarissa S.k. Belloni, Oxford GB
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20110100010 | ADIABATIC COMPRESSED AIR ENERGY STORAGE SYSTEM WITH LIQUID THERMAL ENERGY STORAGE - An adiabatic compressed air energy storage (ACAES) system includes a compressor system, an air storage unit, and a turbine system. The ACAES system further includes a thermal energy storage (TES) system that includes a container, a plurality of heat exchangers, a liquid TES medium conduit system fluidly coupling the container to the plurality of heat exchangers, and a liquid TES medium stored within the container. The TES system also includes a plurality of pumps coupled to the liquid TES medium conduit system and configured to transport the liquid TES medium between the plurality of heat exchangers and the container, and a thermal separation system positioned within the container configured to thermally isolate a first portion of the liquid TES medium at a lower temperature from a second portion of the liquid TES medium at a higher temperature. | 05-05-2011 |
20110100213 | SYSTEM AND METHOD FOR REDUCING MOISTURE IN A COMPRESSED AIR ENERGY STORAGE SYSTEM - A method, system, and apparatus including a compressed air energy storage system that includes an ambient air intake configured to intake a quantity of ambient air for storage in a compressed air storage volume, a compression system having a compression path that is configured to convey air compressed by the compression system through the compression system, a first path configured to convey ambient air to the compression system, a second path proceeding from the compression system to the compressed air storage volume and configured to convey compressed air to the compressed air storage volume, and a dehumidifying system. The dehumidifying system is coupleable to at least one of the first path that proceeds from the ambient air intake to the compression system, the compression path, and the second path. The dehumidifying system includes a dehumidifying component configured to remove moisture from the ambient air and/or the compressed air. | 05-05-2011 |
20110100583 | REINFORCED THERMAL ENERGY STORAGE PRESSURE VESSEL FOR AN ADIABATIC COMPRESSED AIR ENERGY STORAGE SYSTEM - A thermal energy storage system comprises a pressure vessel configured to withstand a first pressure, wherein the pressure vessel has a wall comprising an outer surface and an inner surface surrounding an interior volume of the pressure vessel. The interior volume of the pressure vessel has a first end in fluid communication with one or more compressors and one or more turbines, and a second end in fluid communication with at least one compressed air storage component. A thermal storage medium is positioned in the interior volume, and at least one reinforcement structure is affixed to the outer surface of the wall, wherein the at least one reinforcement structure configured to reinforce the wall to withstand a second pressure greater than the first pressure. | 05-05-2011 |
Clarissa S.k. Belloni, Oxford DE
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20110127004 | REGENERATIVE THERMAL ENERGY STORAGE APPARATUS FOR AN ADIABATIC COMPRESSED AIR ENERGY STORAGE SYSTEM - A system and method for a thermal energy storage system is disclosed, the thermal energy storage system comprising a plurality of pressure vessels arranged in close proximity to one another, each of the pressure vessels having a wall comprising an outer surface and an inner surface spaced from the outer surface by a respective wall thickness and surrounding an interior volume of the pressure vessel. The interior volume has a first end in fluid communication with one or more compressors and one or more turbines and a second end in fluid communication with at least one of one or more additional compressors, one or more additional turbines, and at least one compressed air storage component. The thermal energy storage system further comprises a thermal storage medium positioned in the interior volume of each of the plurality of pressure vessels. | 06-02-2011 |
Damon Belloni, Lakewood, CO US
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20150157365 | BONE FASTENER ASSEMBLY - A bone fastener assembly for connecting a bone to a stabilizing construct includes a connecting member, a fastener seat, and a bone fastener. The connecting member includes a connecting member axis, a first opening, a second opening, and a first spherical surface. The connecting member axis extends from a proximal end to a distal end. The first opening is adjacent the proximal end. The second opening is adjacent the distal end. The fastener seat includes a first end, a second end, a passageway, and a second spherical surface. The passageway extends from the first end to the second end along a seat axis. The second spherical surface is configured to slidably engage the first spherical surface. The bone fastener includes a shank and a head. The shank extends though the passageway. The head engages a head-mating surface of the fastener seat. | 06-11-2015 |
Eric Belloni, Charenton Le Pont FR
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20110066276 | METHOD FOR GENERATING A TRIMMING SETPOINT FOR AN OPHTALMIC LENS - A method for generating a trimming setpoint for an ophthalmic lens for it to be mounted in a surround of a spectacle frame, includes: | 03-17-2011 |
20110149234 | METHOD FOR GENERATING A TRIMMING SETPOINT FOR AN OPHTALMIC LENS - A method for generating a trimming setpoint for an ophthalmic lens to be fitted in a surround of a spectacle frame, includes: | 06-23-2011 |
20120108144 | PREDICTIVE CALCULATION METHOD FOR CALCULATING A SIMULATED SHAPE OF AN ENGAGEMENT RIDGE TO BE ARRANGED ON THE EDGE FACE OF AN OPHTHALMIC LENS OF A PAIR OF EYEGLASSES, AND A METHOD OF BEVELING - A predictive calculation method for calculating the shape of a cross-section of an engagement ridge of an ophthalmic lens obtained by beveling the lens with a beveling grindwheel driven in accordance with an initial path setting. The method includes the following steps: | 05-03-2012 |
20120133886 | METHOD OF CALCULATING A SETPOINT FOR BEVELING OR GROOVING AN OPHTHALMIC LENS - A method of calculating a shaping setpoint for an ophthalmic lens along a longitudinal profile includes: | 05-31-2012 |
Fabio Belloni, Espoo FI
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20100277363 | USER-EXECUTABLE ANTENNA ARRAY CALIBRATION - A system used for calibrating a direction-finding system. A device may include a signal receiver array. The signal receiver array may be utilized to determine the direction of arrival for signals emitted by other devices, and therefore, may be used to resolve the direction towards another device using the received signal. For example, an external tag may be utilized to emit a wireless signal usable inducing a response in each signal receiver of the signal receiver array. The device may also include one or more sensors usable in determining device orientation and/or a change in device orientation. The combined signal receiver response information and orientation information may be recorded at various instants as the device is moved for use in calibrating the antenna array. | 11-04-2010 |
20120188128 | Orientation - An apparatus, a method and a computer program are provided. The apparatus comprises: determination circuitry configured to determine a first bearing from a first location to a radio transmitter at a second location, using at least one radio signal received from the radio transmitter; and orientation circuitry configured to control orientation of an electronic map, to align the first bearing with a second bearing of the electronic map, from the first location to the radio transmitter. | 07-26-2012 |
20120274516 | Positioning - A positioning method comprising: solving a geometric algebraic expression that relates: position vectors for a plurality of antennas relative to a shared origin, a putative position vector for the shared origin and phase information measured at each of the plurality of antennas, to determine a position vector for the shared origin; and positioning an apparatus using the determined position vector for the shared origin. | 11-01-2012 |
20120326929 | Method, and Apparatus for Determining the Position Using Radio Signals - A method, comprising: detecting, at an apparatus, one or more radio signals from a first location; using the one or more detected radio signals to estimate a bearing from the first location; and using the bearing estimate to determine whether further detection of one or more radio signals is required before positioning the apparatus; and positioning of the apparatus using a bearing and constraint information. | 12-27-2012 |
20130096861 | Method and Apparatus for Testing Received Signals in a Radio Signal Positioning System - A method including receiving signals associated with multiple antenna elements; obtaining a parameter of the received signals for at least some of the multiple antenna elements; testing the obtained parameters; if the test fails, rejecting the received signals for use in positioning the apparatus; if the test passes, using the received signals for positioning the apparatus. | 04-18-2013 |
20130295954 | METHOD AND APPARATUS FOR TOPOLOGY MAP DETERMINATION - A method for topology map determination comprises detecting at least one remote apparatus by a first apparatus, wherein each of the at least one remote apparatus and the first apparatus is identified by an identification information. The method further comprises determining a local distance information between the first apparatus and at least one of the at least one remote apparatus and receiving at least one distance measurement report from any one or each one of the at least one remote apparatus. The at least one distance measurement report comprises at least one peer identification information of at least one peer apparatus and an associated peer distance information between the remote apparatus and the at least one peer apparatus, and the method further comprises determining a topology map. | 11-07-2013 |
20130315353 | Processing Samples of a Received RF Signal - Apparatus comprises: means configured to obtain a set of plural samples of signals, the set comprising at least one sample for each of L antenna elements of a receiver, where L is an integer greater than two and where the samples are of an RF signal that has been downconverted by a downconversion frequency; means configured, for each antenna element, to perform autocorrelation on the samples relating to that antenna element; means configured to sum the results of autocorrelation for all antenna elements; means configured to convert the summed results into the frequency domain; means configured to determine a maximum value of the summed results in the frequency domain; and means configured to use the determined maximum value to provide an output indicative of an offset between a carrier of the RF signal and the downconversion frequency. Another apparatus comprises: means configured to obtain a set of plural samples of signals, the set comprising k samples for each of L antenna elements of a receiver, where L is an integer greater than two and where the samples are of an RF signal that has been downconverted by a downconversion frequency; means configured, for each antenna element, to convert vectors provided by the samples relating to that antenna element into frequency domain vectors and to square the frequency domain vectors; means configured to sum the squared frequency domain vectors for all antenna elements; means configured to determine a maximum value of the summed results in the frequency domain; and means configured to use the determined maximum value to provide an output indicative of an offset between a carrier of the RF signal and the downconversion frequency. | 11-28-2013 |
20130321209 | METHOD, APPARATUS, AND COMPUTER PROGRAM PRODUCT FOR HIGH ACCURACY LOCATION DETERMINATION - Method, apparatus, and computer program product example embodiments provide short-range communication based location finding. According to an example embodiment of the invention, a method comprises receiving, by a first transceiver of an apparatus mounted on a moveable platform, from a remote device, one or more wireless packets including information packets containing angle of arrival information from the remote device, wherein the moveable platform is in motion relative to the remote device; determining in the apparatus, at least a first angle of arrival from the received angle of arrival information; and generating distance estimation data in the apparatus relative to the remote device, based on the determined first angle of arrival. | 12-05-2013 |
20130331120 | POSITIONING - An exemplary method includes: receiving at each of at least three antenna elements of a positioning device a wireless signal having modulated thereon an identifier relating to a transmitting device; obtaining complex signal parameters of a signal received at each of the at least three antenna elements; determining a measure of a strength of the received wireless signal; comparing the measure to a threshold associated with the identifier; if the measure exceeds the threshold, processing the complex signal parameters to determine a bearing of the transmitting device from the positioning device; and if the measure does not exceed the threshold, discarding the complex signal parameters without processing them to determine a bearing. An exemplary apparatus and computer readable medium configured to perform the method are also disclosed. | 12-12-2013 |
20130335272 | CALCULATING A LOCATION - Apparatus comprises one or more processors in communication with one or more memories. The one or memories have stored therein one or more computer programs that include computer code configured such as when executed to cause the processor to: receive data derived from a multi-element antenna direction finding arrangement; process the received data to provide elevation and azimuth vector data; determining whether the elevation data meets a reliability criterion. On a positive determination the elevation and azimuth data is used to calculate a location. On a negative determination, the data is processed to provide one-dimensional azimuth vector data; and the one-dimensional azimuth vector data is used in conjunction with other vector data to calculate a location. | 12-19-2013 |
20130336375 | HANDLING COMPLEX SIGNAL PARAMETERS - Apparatus, the apparatus having at least one processor and at least one memory having computer-readable code stored thereon which when executed controls the at least one processor to perform a method comprising: obtaining in-phase and quadrature samples of a received radio signal at least first and second discrete instances in time; processing the samples to provide information relating to the amplitude and/or phase of the received radio signal at the first and second instances in time; using the amplitude and/or phase information of the received radio signal at the first and second instances in time to determine whether interference is present on the received radio signal; forwarding the complex signal parameters for processing if interference is determined not to be present; and discarding the complex signal parameters without forwarding them for processing if interference is determined to be present. | 12-19-2013 |
20140031002 | EMERGENCY BEACONS - A portable battery-powered communications device is configured to operate in a bidirectional communications mode in which voice and/or data is communicated in a bidirectional manner using a bi-directional communications protocol; and to operate in an emergency beacon mode. When the device is in the emergency beacon mode the device is configured periodically to transmit an emergency positioning message at maximum power using the bi-directional communications protocol, transmission of the emergency positioning message defining a beacon transmit period; optionally, to listen for transmissions using the bi-directional communications protocol in a beacon response period immediately following the beacon transmit period; and to refrain from powering transmit and receive circuitry of the device other than during the beacon transmit period and the beacon response period. | 01-30-2014 |
20140051461 | POSITIONING - An exemplary method includes: obtaining I and Q complex signal parameters of signals received from a mobile tag at each of at least three antenna elements forming part of a positioning device; extracting an identifier modulated onto the signals received from the mobile tag; and transmitting the I and Q complex signal parameters and the identifier-to allow a position calculating device to calculate a bearing of the mobile tag from the positioning device, wherein transmitting the I and Q complex signal parameters and the identifier comprises the positioning device wirelessly broadcasting the I and Q complex signal parameters and the identifier. An exemplary apparatus and computer readable medium configured to perform the method are also disclosed. | 02-20-2014 |
20140194141 | Directional Positioning Augmented By Proximity Information - A system for estimating apparatus position based on different types of positioning information. In at least one example implementation, an apparatus may sense wireless signals ( | 07-10-2014 |
20140206411 | TRANSMITTING POSITIONING PACKETS - Apparatus comprises means for monitoring at least one criterion for an adjustment of a transmit power of a positioning packet by a mobile apparatus, the positioning packet enabling a determination of a position of the mobile apparatus to be made; and means for, when it is detected that the at least one criterion is met, causing an adjustment of the transmit power of positioning packets at the mobile apparatus. | 07-24-2014 |
20140295880 | Data Routing For Positioning - A system for implementing a positioning functionality. An apparatus (e.g. a directional transceiver) ( | 10-02-2014 |
20140355503 | TRANSMITTING SERVICE ADVERTISEMENTS - Apparatus ( | 12-04-2014 |
20150160329 | DETERMINING LOCATION AND ORIENTATION OF DIRECTIONAL TRANCEIVERS - A method comprises using a first directional transceiver ( | 06-11-2015 |
Francesco Belloni, Bergamo IT
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20130248338 | ELECTRIC SWITCHING DEVICE AND RELATED ELECTRIC APPARATUS - An electric switching device for an electric circuit, including at least one electric phase having at least one circuit breaking unit associated with a disconnector unit. The circuit breaker unit including a circuit breaker movable contact configured to be actuated between a closed position and an open position with respect to a corresponding circuit breaker fixed contact. The disconnector unit includes at least one disconnector movable contact configured to be actuated between a connection position and a disconnection position with respect to a corresponding disconnector fixed contact. A casing that includes an insulating shell coupled to a metal shell. The casing houses at least the circuit breaker unit and the associated disconnector unit of said at least one electric phase. | 09-26-2013 |
Giovanni Belloni, Terni IT
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20140322466 | MICROFIBROUS PRODUCT AND THE USE THEREOF FOR THE PREPARATION OF COVERS AND CASES - The invention refers to a process for the preparation of a microfibrous non-woven fabric based on polyester or polyamide microfibres immersed in a polyurethane matrix, and having a thickness equal to or less than 0.65 mm, a flat or slightly mottled appearance and a nap length of less than 350 μm. The non-woven fabric is used for the preparation of coverings for consumer goods, particularly for the preparation of covers and cases for electronic products. | 10-30-2014 |
Marco Belloni, Lodi IT
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20100084377 | Method for Girth Welding Metallic Pipes - A method for girth welding of metallic pipes consists in beveling one pipe end in order that, when it is aligned with an identically beveled pipe end on another pipe, results in a bevel of a “cruet” design with a rounded bottom part larger than an upper part with parallel walls. The diameter of the welding wire used for the welding method is within 1.2 and 1.4 mm and the wire contains low levels of impurity including sulfur and phosphorus. The welding technique used is a “strip” technique which does not provide employ weaving or oscillation of the welding torch. | 04-08-2010 |
Massimiliano Belloni, Pavia IT
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20130070796 | SCALABLE BUCK-BOOST DC-DC CONVERTER - A DC-DC converter is disclosed having an input configured to receive an input signal and an output configured to present an output signal at a different voltage than the input signal. The converter also includes at least one inductor and at least one capacitor. Two or more transistors fingers are provided such that at least one of the two or more transistor fingers comprises two or more switching transistors, each of which has an input, an output, a control input. An activation controller connect to at least one of the two or more switching transistors, the activation controller to configured to control whether the at least one of the two or more switching transistors is active or non-active. Also disclosed is a buck-boost converter with numerous controlled switches that establish the converter in either buck-boost mode, buck mode or boost mode. | 03-21-2013 |
Paolo Belloni, Torino IT
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20100015958 | METHOD AND APPARATUSES FOR THE PROVISION OF NETWORK SERVICES OFFERED THROUGH A SET OF SERVERS IN AN IMS NETWORK - A method for managing the provision of services in a telecommunication network, wherein the services are offered through a set of servers and the telecommunication network includes at least one first network entity and a plurality of second network entities, each second network entity being adapted to access a sub-set of the servers. The method includes: 1) receiving at the first network entity a request for a predetermined service from user equipment; and 2) at the predetermined first network entity, identifying, based on the service requested by the user equipment, the second network entity which, among the plurality of second network entities, has access to the server that, among the set of servers, allows meeting the request for the predetermined service. | 01-21-2010 |
Ross Julian Belloni, Brownsburg, IN US
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20100215483 | ACTUATOR - In one embodiment a system is disclosed that includes an actuation device coupled with a turbomachinery mechanism. The actuation device can include multiple fluid pathways and a valve to alternatively place each of these pathways in fluid communication with a supply port while another of the pathways is in fluid communication with a return port to selectively move an actuation member along a range of travel. A brake valve may also be included to provide pressurized fluid to the actuation member when the actuation device is in an on condition and divert at least a portion of the pressurized fluid away from the actuation member through another pathway when the actuation device is in an off condition. A fluid-powered brake is coupled to this further pathway to selectively apply braking force to the actuation member in response to the diverted pressurized fluid. | 08-26-2010 |