Patents by Inventor Gerhard Lohmeier

Gerhard Lohmeier 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).

  • Patent number: 10955442
    Abstract: Elastic sleeve (1) for electrically insulating a HV/MV power conductor in a power network, comprising a) a shrinkable or expandable elastic sleeve body (10); b) a receiving space (20) in the sleeve body, for receiving the power conductor; c) a cavity (30) formed in the sleeve body; and d) a divider assembly (40), arranged, at least partially, in the cavity and comprising a plurality of discrete impedance elements, operable as a voltage divider for sensing a voltage of an inner conductor of the power conductor.
    Type: Grant
    Filed: December 23, 2016
    Date of Patent: March 23, 2021
    Assignee: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Mark Gravermann, Gunther A. J. Stollwerck, Michael H. Stalder, Gerhard Lohmeier, Bernd Schubert, Rainer Reeken, Jens Weichold
  • Patent number: 10345340
    Abstract: The invention relates to a voltage sensing device for a high and/or medium-voltage power-carrying conductor, the voltages sensing device comprising: • a carrier element (3) with a passageway for receiving the power-carrying conductor, • wherein the carrier element comprises an electrode (4) extending in an axial direction of the passageway of the carrier element and operable as a first electrode of the voltage sensing device, wherein • a conductor (1) of the power cable is operable as the second electrode of the voltage sensing device and wherein • the carrier element has a coefficient of thermal expansion that is less than 5×10^?6 1/K at 20 C.
    Type: Grant
    Filed: December 16, 2014
    Date of Patent: July 9, 2019
    Assignee: 3M Innovative Properties Company
    Inventors: Mark Gravermann, Friedrich A. Busemann, Bernd Schubert, Gerhard Lohmeier, Andreea Sabo, Rainer Reeken, Michael H. Stalder, Christian Weinmann, Sebastian Eggert, Dipankar Ghosh, Myungchan Kang, Christopher D. Sebesta
  • Publication number: 20190086444
    Abstract: Elastic sleeve (1) for electrically insulating a HV/MV power conductor in a power network, comprising a) a shrinkable or expandable elastic sleeve body (10); b) a receiving space (20) in the sleeve body, for receiving the power conductor; c) a cavity (30) formed in the sleeve body; and d) a divider assembly (40), arranged, at least partially, in the cavity and comprising a plurality of discrete impedance elements, operable as a voltage divider for sensing a voltage of an inner conductor of the power conductor.
    Type: Application
    Filed: December 23, 2016
    Publication date: March 21, 2019
    Inventors: Mark Gravermann, Gunther A.J. Stollwerck, Michael H. Stalder, Gerhard Lohmeier, Bernd Schubert, Rainer Reeken, Jens Weichold
  • Patent number: 10215778
    Abstract: Voltage sensor (1) for a high- or medium-voltage power-carrying conductor for a power network, such as an inner conductor of a power cable or a cable connector or a bus bar. The voltage sensor has a tubular shape and an axial passageway (40), which can receive the conductor. The voltage sensing device comprises a) a radially-inner electrode (20), operable as a first sensing electrode of a sensing capacitor for sensing the voltage of the power-carrying conductor, b) a radially-outer electrode (30), operable as a second sensing electrode of the sensing capacitor, and c) a solid carrier element (10), at least a first portion of which is arranged between the inner electrode and the outer electrode, the first portion being operable as a dielectric of the sensing capacitor. The sensor can be accommodated in a cable accessory. The carrier element may comprise ceramic material to increase accuracy.
    Type: Grant
    Filed: December 16, 2014
    Date of Patent: February 26, 2019
    Assignee: 3M Innovative Properties Company
    Inventors: Mark Gravermann, Sebastian Eggert, Michael Petry, Werner Roehling, Friedrich A. Busemann, Bernd Schubert, Gerhard Lohmeier, Michael H. Stalder, Jens Weichold, Rainer Reeken, Andreea Sabo, Christian Weinmann, Dipankar Ghosh, Myungchan Kang, Christopher D. Sebesta
  • Patent number: 10027071
    Abstract: Cable connection device for connecting a power cable to an electrical installation of a power network, comprising a conductor element having a first end portion, a second end portion, and a middle portion disposed between the first and the second end portion. The conductor element comprises a connector socket arranged at the first end portion, for mating with a cable plug. The connector socket is integrally formed with the middle portion.
    Type: Grant
    Filed: June 19, 2014
    Date of Patent: July 17, 2018
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Giuliano Bolcato, Werner Roehling, Michael Petry
  • Patent number: 9739805
    Abstract: A conductor assembly for a power network includes an inner conductor defining radial and axial directions, an insulating layer arranged around at least an axial section of the inner conductor, and a sensing electrode arranged radially outward of the insulating layer. The sensing electrode is operable as a first electrode of a sensing capacitor of a capacitive voltage sensor, in which sensing capacitor the inner conductor is operable as a second electrode. The conductor assembly further includes an electrically insulating spacer element arranged radially between the insulating layer and the sensing electrode.
    Type: Grant
    Filed: June 19, 2014
    Date of Patent: August 22, 2017
    Assignee: 3M Innovative Properties Company
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Michael H. Stalder, Pasquale Zanoli, Giuliano Bolcato
  • Patent number: 9739820
    Abstract: A conductor assembly for a power network includes an inner conductor, an insulating layer arranged concentrically around the inner conductor, and a sensing electrode, arranged radially outward of the insulating layer, and operable as a first electrode of a sensing capacitor of a voltage sensor. The conductor assembly further includes a voltage pickup element having electrically conductive major surfaces, the first major surface being in a surface contact with the sensing electrode. The conductor assembly further includes an electrode wire, in electrical and mechanical contact with the voltage pickup element, for electrically connecting the voltage pickup element with an electric or electronic component disposed remote from the sensing electrode.
    Type: Grant
    Filed: June 19, 2014
    Date of Patent: August 22, 2017
    Assignee: 3M Innovative Properties Company
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Michael H. Stalder, Pasquale Zanoli, Giuliano Bolcato
  • Patent number: 9739804
    Abstract: Closure (1) for receiving a section of a conductor assembly (71), comprising a housing (25) closable around the conductor assembly (71), and an electrode assembly (200), which comprises a movable portion comprising a contact surface (150) for mechanically contacting the conductor assembly (71), and a sensing electrode (140), operable as a first capacitor electrode of a sensing capacitor for sensing a voltage of the conductor (80). The closure further comprises urging means (160) for urging the movable portion of the electrode assembly (200) towards the conductor assembly (71) for establishing a mechanical surface contact between the contact surface (150) and the conductor assembly (71), when the housing (25) is closed around the conductor assembly (71).
    Type: Grant
    Filed: May 8, 2014
    Date of Patent: August 22, 2017
    Assignee: 3M Innovative Properties Company
    Inventors: Friedrich A. Busemann, Gerhard Lohmeier, Mark Gravermann
  • Publication number: 20170030946
    Abstract: Voltage sensor (1) for a high- or medium-voltage power-carrying conductor for a power network, such as an inner conductor of a power cable or a cable connector or a bus bar. The voltage sensor has a tubular shape and an axial passageway (40), which can receive the conductor. The voltage sensing device comprises a) a radially-inner electrode (20), operable as a first sensing electrode of a sensing capacitor for sensing the voltage of the power-carrying conductor, b) a radially-outer electrode (30), operable as a second sensing electrode of the sensing capacitor, and c) a solid carrier element (10), at least a first portion of which is arranged between the inner electrode and the outer electrode, the first portion being operable as a dielectric of the sensing capacitor. The sensor can be accommodated in a cable accessory. The carrier element may comprise ceramic material to increase accuracy.
    Type: Application
    Filed: December 16, 2014
    Publication date: February 2, 2017
    Inventors: Mark Gravermann, Sebastian Eggert, Michael Petry, Werner Roehling, Friedrich A. Busemann, Bernd Schubert, Gerhard Lohmeier, Michael H. Stalder, Jens Weichold, Rainer Reeken, Andreea Sabo, Christian Weinmann, Dipankar Ghosh, Myungchan Kang, Christopher D. Sebesta
  • Publication number: 20160341768
    Abstract: The invention relates to a voltage sensing device for a high and/or medium-voltage power-carrying conductor, the voltages sensing device comprising: • a carrier element (3) with a passageway for receiving the power-carrying conductor, • wherein the carrier element comprises an electrode (4) extending in an axial direction of the passageway of the carrier element and operable as a first electrode of the voltage sensing device, wherein • a conductor (1) of the power cable is operable as the second electrode of the voltage sensing device and wherein • the carrier element has a coefficient of thermal expansion that is less than 5x10??6 1/K at 20 C.
    Type: Application
    Filed: December 16, 2014
    Publication date: November 24, 2016
    Inventors: Mark Gravermann, Friedrich A. Busemann, Bernd Schubert, Gerhard Lohmeier, Andreea Sabo, Rainer Reeken, Michael H. Stalder, Christian Weinmann, Sebastian Eggert, Dipankar Ghosh, Myungchan Kang, Christopher D. Sebesta
  • Patent number: 9460832
    Abstract: Sleeve (1) for a high- or medium-voltage power cable (120) having an inner conductor (130). The sleeve comprises (i) a tubular sleeve body (10) having an electrically conductive or semiconductive first axial electrode section (60), and (ii) a circuit board (30). The sleeve is radially expandable or shrinkable. It can be arranged radially outward of the inner conductor, such hat the first axial electrode section is radially separated from the inner conductor by at least an electrically insulating spacer layer (140). The circuit board is at least partially arranged radially outward of the sleeve body and comprises an electrical contact (100) which is electrically connected with the first axial electrode section.
    Type: Grant
    Filed: January 29, 2014
    Date of Patent: October 4, 2016
    Assignee: 3M Innovative Properties Company
    Inventors: Mark Gravermann, Gerhard Lohmeier, Michael Stalder, Friedrich Busemann, Jens Weichold, Bernd Schubert
  • Publication number: 20160139181
    Abstract: Conductor assembly (1) for a power network, which comprises—an inner conductor (5) defining radial and axial directions,—an insulating layer (10) arranged around at least an axial section of the inner conductor, and—a sensing electrode (40), arranged radially outward of the insulating layer, and operable as a first electrode of a sensing capacitor of a capacitive voltage sensor, in which sensing capacitor the inner conductor is operable as a second electrode. The conductor assembly further comprises an electrically insulating spacer element (25), arranged radially between the insulating layer and the sensing electrode.
    Type: Application
    Filed: June 19, 2014
    Publication date: May 19, 2016
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Michael H. Stalder, Pasquale Zanoli, Giuliano Bolcato
  • Publication number: 20160134065
    Abstract: Cable connection device (2) for connecting a power cable to an electrical installation of a power network, comprising a conductor element (11) having a first end portion (21), a second end portion (31), and a middle portion (41) disposed between the first and the second end portion. The conductor element comprises a connector socket (50), arranged at the first end portion, for mating with a cable plug. The connector socket is integrally formed with the middle portion.
    Type: Application
    Filed: June 19, 2014
    Publication date: May 12, 2016
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Giuliano Bolcato, Werner Roehling, Michael Petry
  • Publication number: 20160124035
    Abstract: Conductor assembly (1) for a power network, comprising an inner conductor (5), an insulating layer (10) arranged concentrically around the inner conductor (5), and a sensing electrode (40), arranged radially outward of the insulating layer (10), and operable as a first electrode of a sensing capacitor of a voltage sensor. The conductor assembly (1) further comprises a voltage pickup element (70), comprising electrically conductive major surfaces (71, 72), the first major surface (71) being in a surface contact with the sensing electrode (40, 40). The conductor assembly further comprises an electrode wire (80), in electrical and mechanical contact with the voltage pickup element (70), for electrically connecting the voltage pickup element (70) with an electric or electronic component disposed remote from the sensing electrode (40).
    Type: Application
    Filed: June 19, 2014
    Publication date: May 5, 2016
    Inventors: Mark Gravermann, Friedrich A. Busemann, Gerhard Lohmeier, Jens Weichold, Bernd Schubert, Michael H. Stalder, Pasquale Zanoli, Giuliano Bolcato
  • Publication number: 20160084888
    Abstract: Closure (1) for receiving a section of a conductor assembly (71), comprising a housing (25) closable around the conductor assembly (71), and an electrode assembly (200), which comprises a movable portion comprising a contact surface (150) for mechanically contacting the conductor assembly (71), and a sensing electrode (140), operable as a first capacitor electrode of a sensing capacitor for sensing a voltage of the conductor (80). The closure further comprises urging means (160) for urging the movable portion of the electrode assembly (200) towards the conductor assembly (71) for establishing a mechanical surface contact between the contact surface (150) and the conductor assembly (71), when the housing (25) is closed around the conductor assembly (71).
    Type: Application
    Filed: May 8, 2014
    Publication date: March 24, 2016
    Inventors: Friedrich A. Busemann, Gerhard Lohmeier, Mark Gravermann
  • Publication number: 20160005511
    Abstract: Sleeve (1) for a high- or medium-voltage power cable (120) having an inner conductor (130). The sleeve comprises (i) a tubular sleeve body (10) having an electrically conductive or semiconductive first axial electrode section (60), and (ii) a circuit board (30). The sleeve is radially expandable or shrinkable. It can be arranged radially outward of the inner conductor, such hat the first axial electrode section is radially separated from the inner conductor by at least an electrically insulating spacer layer (140). The circuit board is at least partially arranged radially outward of the sleeve body and comprises an electrical contact (100) which is electrically connected with the first axial electrode section.
    Type: Application
    Filed: January 29, 2014
    Publication date: January 7, 2016
    Applicant: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Mark Gravermann, Gerhard Lohmeier, Michael Stalder, Friedrich Busemann, Jens Weichold, Bernd Schubert
  • Patent number: 8137423
    Abstract: A method of making an abrasive article comprising an abrasive disc (1) of non-woven fibres having a central shaft (3) and a hub (2) securing the shaft (3) to the abrasive disc (1). The method comprising forming the hub (3) by injecting molten thermoplastic material into the abrasive disc (1), and allowing the thermoplastic material to cool and solidify such that the shaft (3) is secured to the abrasive disc (1). The invention provides a simple, economical and effective method of securing a shaft to a disc.
    Type: Grant
    Filed: July 18, 2005
    Date of Patent: March 20, 2012
    Assignee: 3m Innovative Properties Company
    Inventors: Jonathan M. Lise, Jean Le Normand, Gerhard Lohmeier
  • Patent number: 7767909
    Abstract: The tubular terminal for a cable, in particular a medium or high voltage cable, comprises a first connector having at least one terminal end for connecting to at least one mating second connector adapted to be connected to a cable and engaged with the first connector for making electrical contact therewith upon connection of the second connector to the at least one terminal end of the first connector. Furthermore, the tubular terminal comprises a shrinkable sleeve having a first tubular portion and a second tubular portion extending from the first tubular portion. The first tubular portion of the shrinkable sleeve is fixedly arranged around the first connector. The second tubular portion of the shrinkable sleeve is adapted to extend beyond the at least one terminal end of the first connector for covering a mating second connector and cable attached thereto when the second connector is connected to the at least one terminal end of the first connector.
    Type: Grant
    Filed: April 23, 2007
    Date of Patent: August 3, 2010
    Assignee: 3M Innovative Properties Company
    Inventors: Raymond Krabs, Gerhard Lohmeier, Attila Z. Kis, Jens Weichold, Michael Petry, Giuliano Bolcato, Bernd Schubert, Friedrich A. Busemann, Thomas Herdtle
  • Publication number: 20090023366
    Abstract: A method of making an abrasive article comprising an abrasive disc (1) of non-woven fibres having a central shaft (3) and a hub (2) securing the shaft (3) to the abrasive disc (1). The method comprising forming the hub (3) by injecting molten thermoplastic material into the abrasive disc (1) , and allowing the thermoplastic material to cool and solidify such that the shaft (3) is secured to the abrasive disc (1). The invention provides a simple, economical and effective method of securing a shaft to a disc.
    Type: Application
    Filed: July 18, 2005
    Publication date: January 22, 2009
    Inventors: Jonathan M. Lise, Jean Le Normand, Gerhard Lohmeier
  • Publication number: 20080258331
    Abstract: A method for making an abrasive article is disclosed. An exemplary embodiment comprises positioning particles of abrasive agglomerate (10) in at least a portion (8) of an abrasive article mould (2), injecting molten thermoplastic binder resin into the abrasive article mould (2) and allowing the thermoplastic binder resin to cool such that the particles or abrasive agglomerate (10) are secured within the thermoplastic binder resin.
    Type: Application
    Filed: April 8, 2005
    Publication date: October 23, 2008
    Applicant: 3M INNOVATIVE PROPERTIES COMPANY
    Inventors: Jean Le Normand, Jonathan M. Lise, Gerhard Lohmeier, Pierre M. Congard