Patents by Inventor Markus Forster
Markus Forster 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: 20210115921Abstract: The present invention relates to a fixed displacement pump for use for conveying a hydraulic fluid in a closed hydraulic circuit, a closed hydraulic circuit, a construction machine and a method for operating a fixed displacement pump in a closed hydraulic circuit.Type: ApplicationFiled: October 12, 2020Publication date: April 22, 2021Inventor: Markus Forster
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Patent number: 10779975Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and a pull member. The outer sheath may include a first layer and a reinforcement layer that are laminated together, a portion of the pull member captured radially between the first layer and the reinforcement layer. At least a partial length of the captured portion of the pull member may be formed with a varying radial profile.Type: GrantFiled: July 5, 2017Date of Patent: September 22, 2020Assignee: C. R. Bard, Inc.Inventors: Jurgen Dorn, Markus Forster, Daniel Dietrich, Alexander Maurer, Erhard Elsässer
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Patent number: 10555824Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and an inner catheter extending axially and radially within a lumen of the stent device. The inner catheter provides a stent bed upon which the stent device is located so that a radially inner surface of the stent device engages a radially outer surface of the stent bed. The stent bed may define an inwardly tapering profile, narrowing in radius from a distal portion of the stent device to a proximal portion of the stent device.Type: GrantFiled: July 3, 2017Date of Patent: February 11, 2020Assignee: C. R. Bard, Inc.Inventors: Jurgen Dorn, Daniel Dietrich, Markus Forster, Jeldrik zum Gahr
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Patent number: 10449072Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The outer sheath may include a first layer of polymeric material and a reinforcement layer of polymeric material that are laminated together.Type: GrantFiled: February 17, 2017Date of Patent: October 22, 2019Assignee: C.R. Bard, Inc.Inventors: Jurgen Dorn, Markus Forster, Daniel Dietrich
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Patent number: 10278845Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The system also includes a pull member for pulling proximally on to retract the outer sheath, wherein a portion of the outer sheath is heat shrunk radially onto a relatively heat shrink resistant support member in order to capture a distal portion of the pull member radially between the outer sheath and the heat shrink resistant support member.Type: GrantFiled: December 1, 2010Date of Patent: May 7, 2019Assignee: C. R. Bard, Inc.Inventors: Jürgen Dorn, Markus Forster, Daniel Dietrich
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Publication number: 20170296368Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and a pull member. The outer sheath may include a first layer and a reinforcement layer that are laminated together, a portion of the pull member captured radially between the first layer and the reinforcement layer. At least a partial length of the captured portion of the pull member may be formed with a varying radial profile.Type: ApplicationFiled: July 5, 2017Publication date: October 19, 2017Applicant: C. R. Bard, Inc.Inventors: Jurgen Dorn, Markus Forster, Daniel Dietrich, Alexander Maurer, Erhard Elsässer
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Publication number: 20170296367Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and an inner catheter extending axially and radially within a lumen of the stent device. The inner catheter provides a stent bed upon which the stent device is located so that a radially inner surface of the stent device engages a radially outer surface of the stent bed. The stent bed may define an inwardly tapering profile, narrowing in radius from a distal portion of the stent device to a proximal portion of the stent device.Type: ApplicationFiled: July 3, 2017Publication date: October 19, 2017Applicant: C. R. Bard, Inc.Inventors: Jurgen Dorn, Daniel Dietrich, Markus Forster, Jeldrik zum Gahr
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Patent number: 9724216Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and an inner catheter extending axially and radially within a lumen of the stent device. The inner catheter provides a stent bed upon which the stent device is located so that a radially inner surface of the stent device engages a radially outer surface of the stent bed. The stent bed may define an inwardly tapering profile, narrowing in radius from a distal portion of the stent device to a proximal portion of the stent device.Type: GrantFiled: December 1, 2010Date of Patent: August 8, 2017Assignee: C. R. Bard, Inc.Inventors: Jurgen Dorn, Daniel Dietrich, Markus Forster, Jeldrik zum Gahr
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Patent number: 9717612Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and a pull member. The outer sheath may include a first layer and a reinforcement layer that are laminated together, a portion of the pull member captured radially between the first layer and the reinforcement layer. At least a partial length of the captured portion of the pull member may be formed with a varying radial profile.Type: GrantFiled: December 1, 2010Date of Patent: August 1, 2017Assignee: C.R. Bard, Inc.Inventors: Jürgen Dorn, Markus Forster, Daniel Dietrich, Alexander Maurer, Erhard Elsässer
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Patent number: 9687369Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The outer sheath may include a first layer of polymeric material and a reinforcement layer of polymeric material that are laminated together.Type: GrantFiled: December 1, 2010Date of Patent: June 27, 2017Assignee: C.R. Bard, Inc.Inventors: Jurgen Dorn, Markus Forster, Daniel Dietrich
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Publication number: 20170156905Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The outer sheath may include a first layer of polymeric material and a reinforcement layer of polymeric material that are laminated together.Type: ApplicationFiled: February 17, 2017Publication date: June 8, 2017Applicant: C. R. Bard, Inc.Inventors: Jurgen Dorn, Markus Forster, Daniel Dietrich
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Publication number: 20110137401Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The outer sheath may include a first layer of polymeric material and a reinforcement layer of polymeric material that are laminated together.Type: ApplicationFiled: December 1, 2010Publication date: June 9, 2011Applicant: C. R. Bard, Inc.Inventors: Jürgen Dorn, Markus Forster, Daniel Dietrich
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Publication number: 20110137400Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and a pull member. The outer sheath may include a first layer and a reinforcement layer that are laminated together, a portion of the pull member captured radially between the first layer and the reinforcement layer. At least a partial length of the captured portion of the pull member may be formed with a varying radial profile.Type: ApplicationFiled: December 1, 2010Publication date: June 9, 2011Applicant: C. R. Bard, Inc.Inventors: Jürgen Dorn, Markus Forster, Daniel Dietrich, Alexander Maurer, Erhard Elsasser
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Publication number: 20110137396Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device, an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device, and an inner catheter extending axially and radially within a lumen of the stent device. The inner catheter provides a stent bed upon which the stent device is located so that a radially inner surface of the stent device engages a radially outer surface of the stent bed. The stent bed may define an inwardly tapering profile, narrowing in radius from a distal portion of the stent device to a proximal portion of the stent device.Type: ApplicationFiled: December 1, 2010Publication date: June 9, 2011Applicant: C. R. Bard, Inc.Inventors: Jürgen Dorn, Daniel Dietrich, Markus Forster, Jeldrik zum Gahr
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Publication number: 20110137402Abstract: A stent device delivery system and method of making. The stent device delivery system includes a stent device and an outer sheath overlaying the stent device in a radially compact, delivery configuration of the stent device. The system also includes a pull member for pulling proximally on to retract the outer sheath, wherein a portion of the outer sheath is heat shrunk radially onto a relatively heat shrink resistant support member in order to capture a distal portion of the pull member radially between the outer sheath and the heat shrink resistant support member.Type: ApplicationFiled: December 1, 2010Publication date: June 9, 2011Applicant: C. R. Bard, Inc.Inventors: Jürgen Dorn, Markus Forster, Daniel Dietrich
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Publication number: 20090142498Abstract: A layer or coating which counteracts crystalline deposits on a substrate includes a matrix composed of a binder system and ceramic particles, and also boron nitride in particle form, wherein the boron nitride particles are incorporated into the matrix and are distributed essentially homogeneously therein.Type: ApplicationFiled: March 9, 2007Publication date: June 4, 2009Inventors: Stefan Faber, Bernhard Schillo, Olaf Binkle, Ralph Nonninger, Dimitrina Lang, Jurgen Hopf, Frank Kleine Jager, Bernd Rumpf, Markus Forster
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Patent number: 4837437Abstract: A method for reducing the background count rate in radioactivity measurements with a coincidence-anticoincidence evaluation, in which pulses from a detector and pulses from a shield counter device are amplified and compared based on a time relationship, reduces the zero sample counter rate of the detector by supplying the amplified pulses to analog/digital converters which convert the pulses to digital values at a predetermined clock frequency. When a detection pulse is identified, digital values are transferred to a PC system. In the PC system the height, shape, or slope of the detector pulses is compared to the height, shape, or slope of any contemporaneous pulse from the shield counter device. Circuitry for performing the method is also disclosed.Type: GrantFiled: October 19, 1987Date of Patent: June 6, 1989Assignee: Gesellschaft fur Strahlen-und Umweltforschung GmbHInventors: Markus Forster, Peter Maier, Harald Gaudlitz, Richard Hefka