Patents by Inventor Heinrich Schroeder
Heinrich Schroeder has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20250047283Abstract: An electrical circuit and a method of operating the electrical circuit can include a group of transistors including one or more of a first transistor and a second transistor, wherein the first transistor is electronically connected to an input and an output of the electrical circuit, and the second transistor is electronically connected to the first transistor and the output. The electrical circuit can also include a group of resistors including a first base resistor and a second base resistor, wherein the first base resistor is electronically connected to a voltage supply, the first transistor, the second base resistor and one or more diodes. The electrical circuit may also include one or more capacitors electronically connected to the input, the first transistor, the second transistor, and the diode(s) and the output, such that an output voltage at the output is approximately double the supply voltage of the electrical circuit.Type: ApplicationFiled: August 2, 2023Publication date: February 6, 2025Inventor: Ralf Heinrich Schröder genannt Berghegger
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Publication number: 20240183697Abstract: A method and system for determining a time-of-flight in an integrated flow meter, can include a housing including an inlet port and an outlet port, and a group of flow tubes connected in parallel to each other. Each flow tube among the group of flow tubes can include two or more transducers that can measure upstream and downstream time-of-flight. Each flow tube can further include one or more outlets connected to the outlet port of the housing via an outlet channel. A controller can be connected electronically to the transducers, wherein the controller is operable to measure the time-of-flight in a flow tube for a predetermined time using the transducers, toggle between the transducers of each flow tube to measure the remaining flow tubes within a predetermined time and determine the overall flow rate of the group of flow tubes in the integrated flow meter.Type: ApplicationFiled: December 2, 2022Publication date: June 6, 2024Inventors: Christian Lampe-Jürgens, Ralf Heinrich Schröder genannt Berghegger, Tobias Meimberg, Andreas Wuchrer, Juri Singer
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Patent number: 11906338Abstract: Methods and systems for flow measurement can involve calculating an absolute-time-of-flight with respect to a flow of a fluid in a flow channel by reflected signals, reflected and unreflected signals, or a pulse train, determining a delta-time-of-flight with a cross correlation of two signals with respect to the flow of the fluid in the flow channel, and calculating the flow rate of the flow of the fluid in the flow channel based on the absolute-time-of-flight and the cross correlation of the delta-time-of-flight.Type: GrantFiled: March 1, 2021Date of Patent: February 20, 2024Assignee: Honeywell International Inc.Inventors: Tobias Meimberg, Christian Lampe-Jürgens, Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer
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Patent number: 11725968Abstract: A method and system for measuring a time of flight can involve correlating a signal comprising a reflected signal from a first transducer to a second transducer, or a subsequent reflected signal at the first transducer or the second transducer, with a previously received signal to produce a correlation for a measurement of a time of flight. The signal(s) can include one or more of a pulse train, acoustic sound; ultrasonic sound; or light, and the previously received signal can be a signal that has been reflected one or more times.Type: GrantFiled: March 29, 2021Date of Patent: August 15, 2023Assignee: Honeywell International Inc.Inventors: Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer, Tobias Meimberg, Christian Lampe-Jürgens, Norbert Flerage
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Patent number: 11415434Abstract: An apparatus for energy and data transfer, can include a first inductor and a second inductor, wherein the first inductor can be magnetically coupled to the second inductor, and a gap configured between the first inductor and second inductor, wherein the first inductor and the second inductor can transfer energy and data between a white meter and an electronic index. The white meter may be implemented as a flow meter. The electronic index can include an electronic display unit that can be attached to the white meter. The electronic display can include one or more of a display unit, a communications unit, or a combination of a display unit and the communications unit.Type: GrantFiled: January 22, 2021Date of Patent: August 16, 2022Assignee: Honeywell International Inc.Inventors: Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer, Patrick Flacke
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Publication number: 20220236080Abstract: An apparatus for energy and data transfer, can include a first inductor and a second inductor, wherein the first inductor can be magnetically coupled to the second inductor, and a gap configured between the first inductor and second inductor, wherein the first inductor and the second inductor can transfer energy and data between a white meter and an electronic index. The white meter may be implemented as a flow meter. The electronic index can include an electronic display unit that can be attached to the white meter. The electronic display can include one or more of a display unit, a communications unit, or a combination of a display unit and the communications unit.Type: ApplicationFiled: January 22, 2021Publication date: July 28, 2022Inventors: Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer, Patrick Flacke
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Publication number: 20210381863Abstract: Methods and systems for flow measurement can involve calculating an absolute-time-of-flight with respect to a flow of a fluid in a flow channel by reflected signals, reflected and unreflected signals, or a pulse train, determining a delta-time-of-flight with a cross correlation of two signals with respect to the flow of the fluid in the flow channel, and calculating the flow rate of the flow of the fluid in the flow channel based on the absolute-time-of-flight and the cross correlation of the delta-time-of-flight.Type: ApplicationFiled: March 1, 2021Publication date: December 9, 2021Inventors: Tobias Meimberg, Christian Lampe-Jürgens, Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer
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Publication number: 20210381864Abstract: A method and system for measuring a time of flight can involve correlating a signal comprising a reflected signal from a first transducer to a second transducer, or a subsequent reflected signal at the first transducer or the second transducer, with a previously received signal to produce a correlation for a measurement of a time of flight. The signal(s) can include one or more of a pulse train, acoustic sound; ultrasonic sound; or light, and the previously received signal can be a signal that has been reflected one or more times.Type: ApplicationFiled: March 29, 2021Publication date: December 9, 2021Inventors: Ralf Heinrich Schröder genannt Berghegger, Andreas Wuchrer, Tobias Meimberg, Christian Lampe-Jürgens, Norbert Flerage
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Patent number: 8087576Abstract: A data storage device comprises a memory in which a collection of prostate cancer screening data is stored. The screening data is obtained from a selection of the general male population without medical pre-selection. A device for indicating a risk for a disease of an individual, comprises an indicator for indicating a determined value for said risk. The indicator comprises a risk scale representing a range of values of said risk, and at least one dialler for entering a value of a diagnostic parameter of an individual. The dialler comprises a parameter scale representing a range of values of said diagnostic parameter. The dialler is movable with respect to said indicator such that when a parameter value on said parameter scale is selected, an associated risk value is indicated on said risk scale according to a predetermined mathematical relationship.Type: GrantFiled: January 20, 2006Date of Patent: January 3, 2012Assignee: Stichting Wetenschappelijk Onderzoek Prostaatkanker (SWOP)Inventors: Ewout Steyerberg, Monica Joanne Roobol-Bouts, Marinus Kranse, Fritz Heinrich Schröder
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Patent number: 6805757Abstract: A method of the production and processing of alloyed casting material for a working part of an indefinite chill roll, a corresponding casting material and a composite indefinite chill roll incorporating the casting material. The method comprises providing a melt of a certain composition, casting the melt and subjecting the resultant body to a heat treatment. The composition of the melt is adjusted so as to afford a certain graphite and carbide distribution.Type: GrantFiled: November 13, 2001Date of Patent: October 19, 2004Assignee: Eisenwerk Sulzau-Werfen R. & E. Weinberger AGInventors: Michael Windhager, Bernhard Feistritzer, Karl-Heinrich Schröder, Karl-Heinz Ziehenberger
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Patent number: 5891410Abstract: A process is disclosed for the purification of an off-gas which originates from the oxidation of xylene with air in the Witten process for the preparation of dimethyl terephthalate by subjecting the off-gas to a partial condensation step to remove constituents such as dimethyl terephthalate and xylene; then contacting the off-gas with a solvent such as para-toluic acid or a mixture of para-toluic acid and methyl benzoate so as to remove contaminants such as para-xylene out of the off-gas; then contacting the off-gas with a solvent such as methyl benzoate to remove contaminants such as methyl para-toluate out of the off-gas; then contacting the off-gas with water so as to remove contaminants such as methanol out of the off-gas, and then combusting the off-gas.Type: GrantFiled: February 24, 1993Date of Patent: April 6, 1999Assignee: Huls AktiengesellschaftInventors: Rudolf Modic, Hermann-Josef Korte, Anton Schoengen, Johann-Heinrich Schroeder, Jorg Porschen
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Patent number: 5614159Abstract: In the purification of an off-gas stream originating from a process of oxidizing a liquid mixture of para-xylene with methyl para-toluate with an oxygen-containing gas under pressure, the off-gas being contaminated with at least one of an aliphatic and an aromatic impurity, which comprises expanding the off-gas stream in an expansion turbine for generating mechanical or electrical energy so as to obtain an at least partial recovery of the energy contained in the off-gas, the improvement comprising subjecting the off-gas to at least one absorption step under pressure to remove at least one component from the off-gas and subjecting the resultant off-gas stream to combustion under a pressure of more than 3 bar prior to expanding the off-gas stream in the expansion turbine.Type: GrantFiled: April 10, 1995Date of Patent: March 25, 1997Assignee: Huls Aktiengesellschaft, Werk TroisdorfInventors: Rudolf Modic, Hermann-Josef Korte, Anton Schoengen, Johann-Heinrich Schroeder, J org Porschen
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Patent number: 4269805Abstract: A multi-stage reactor for the oxidation of alkyl aromatics, e.g. a mixture of p-xylene and methyl p-toluate in a liquid phase reaction mixture with oxygen-containing gases, e.g. air, under elevated pressure and at an elevated temperature in the presence of an oxidation catalyst is in the form of an elongated closed tank with a multiplicity of neighboring reaction chambers arranged successively from one end to the other end of the tank for containing the liquid reaction mixture at predetermined levels in each chamber. The reactor is provided with an oxidizing gas feed system for introducing an oxidizing gas into each chamber, feed means for introducing at least one alkyl aromatic reactant and an oxidation catalyst into at least one of the reaction chambers, a vapor-collecting conduit means in communication with each of said chambers for removing reaction gas from each of said chambers, and a discharge means for removing the oxidized product from the reactor tank.Type: GrantFiled: February 12, 1979Date of Patent: May 26, 1981Assignee: Dynamit Nobel AktiengesellschaftInventors: Anton Schoengen, Heinrich Schroeder