Patents by Inventor Steve Arendt
Steve Arendt 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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Patent number: 10367577Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: GrantFiled: September 26, 2018Date of Patent: July 30, 2019Assignee: Cable Television Laboratories, Inc.Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Steve Arendt, Belal Hamzeh, Eric Winkelman
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Publication number: 20190215058Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: March 14, 2019Publication date: July 11, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Steve Arendt, Belal Hamzeh
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Publication number: 20190199429Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: June 27, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190199430Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: June 27, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190173571Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: June 6, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190165855Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: May 30, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190165854Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: May 30, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190165853Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: January 31, 2019Publication date: May 30, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Publication number: 20190120969Abstract: A communication system, includes a satellite receiver in operable communication with a central server, a cellular node configured to operate within a proximity of the satellite receiver, and at least one mobile communication device configured to communicate (i) with the cellular node, (ii) within the proximity of the satellite receiver, and (iii) using a transmission signal capable of causing interference to the satellite receiver. The satellite receiver is configured to detect a repeating portion of the transmission signal and determine a potential for interference from the at least one mobile communication device based on the detected repeating portion.Type: ApplicationFiled: November 14, 2018Publication date: April 25, 2019Inventors: Belal Hamzeh, Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Steve Arendt
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Publication number: 20190028182Abstract: A communication system includes an earth station configured to receive a downlink transmission from a satellite and transmit an uplink transmission to the satellite. The communication system further includes a server in operable communication with the earth station, a beacon detector in operable communication with the server, an access point configured to operate within a proximity of the earth station, and a beacon transmitter disposed within close proximity to the access point. The beacon transmitter is configured to transmit a beacon signal to one or more of the server and the beacon detector. The beacon signal uniquely identifies the access point. The server is configured to implement a measurement-based protection scheme with respect to at least one of the downlink transmission and the uplink transmission.Type: ApplicationFiled: September 26, 2018Publication date: January 24, 2019Inventors: Peter Paul Smyth, Lin Cheng, Jim O'Connor, Eric Winkelman, Thomas H. Williams, Belal Hamzeh, Steve Arendt
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Patent number: 6994037Abstract: A rabble arm for a furnace includes an elongated metallic support core, at least one rabble tooth having a rabble portion and a fixing portion and a fixing device co-operating with the fixing portion for fixing the rabble tooth to the elongated metallic support core. The fixing portion includes a through hole through which the elongated metallic support core axially passes. The fixing device co-operates with the fixing portion around the through hole for fixing the rabble tooth to the elongated metallic support core.Type: GrantFiled: April 19, 2002Date of Patent: February 7, 2006Assignee: Paul Wurth S.A.Inventors: Patrick Hutmacher, Serge Streitz, Steve Arendt, Emile Lonardi, Edgar Kraemer
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Patent number: 6832564Abstract: A method of operating a multiple hearth furnace with a plurality of vertically aligned hearth floors includes feeding a first material onto the uppermost hearth floor and moving it over the hearth floor before it falls through a drop hole onto the next lower hearth floor. The first material is processed in this way from hearth floor to hearth floor to the lowermost hearth floor. A second material is fed onto one of the hearth floors to be mixed into the first material. This second material is moved separately from the first material in a separate annular zone of the hearth floor onto which it is fed before it is mixed into the first material, providing an efficient thermal preconditioning of the second material prior to mixing it with the first material without requiring any supplemental equipment.Type: GrantFiled: October 24, 2003Date of Patent: December 21, 2004Assignee: Paul Wurth S.A.Inventors: Patrick Hutmacher, Pascal Ferretti, Steve Arendt, Emile Lonardi
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Publication number: 20040134394Abstract: A rabble arm for a furnace, as e.g. a multiple hearth furnace, comprises an elongated metallic support core (10), at least one rabble tooth having a rabble portion and a fixing portion and fixing means co-operating with the fixing portion for fixing the rabble tooth (14) to the elongated metallic support core. The fixing portion (48) includes a through hole through (50) which said elongated metallic support core axially passes; and the fixing means co-operates with the fixing portion (48) around the through hole for fixing said rabble tooth (14) to said elongated metallic support core (10).Type: ApplicationFiled: February 26, 2004Publication date: July 15, 2004Inventors: Patrick Hutmacher, Serge Streitz, Steve Arendt, Emile Lonardi, Edgar Kraemer
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Publication number: 20040123785Abstract: A method of operating multiple hearth furnace (10) with a plurality of vertically aligned hearth floors (361, 362, 363, 364, 365), comprises in particular following steps. A first material is fed onto the uppermost hearth floor and moved over this uppermost hearth floor (361) before it falls through a drop hole (40) onto the next lower hearth floor. This first material is processed in this way from hearth floor to hearth floor down to the lowermost hearth floor (366). A second material is fed onto one of the hearth floors to be mixed into the first material. This second material (64) is moved separately from the first material in a separate annular zone (68) of the hearth floor onto which it is fed before it is mixed into the first material. The method allows to provide an efficient thermal preconditioning of the second material prior to mixing it into the first material without requiring any supplementary equipment therefore.Type: ApplicationFiled: October 24, 2003Publication date: July 1, 2004Inventors: Patrick Hutmacher, Pascal Ferretti, Steve Arendt, Emile Lonardi