Patents by Inventor Hartmut Kuehl

Hartmut Kuehl 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).

  • Publication number: 20170033255
    Abstract: An integrated thin-film lateral multi-junction solar device and fabrication method are provided. The device includes, for instance, a substrate, and a plurality of stacks extending vertically from the substrate. Each stack may include layers, and be electrically isolated against another stack. Each stack may also include an energy storage device above the substrate, a solar cell above the energy storage device, a transparent medium above the solar cell, and a micro-optic layer of spectrally dispersive and concentrating optical devices above the transparent medium. Furthermore, the device may include a first power converter connected between the energy storage device and a power bus, and a second power converter connected between the solar cell and the power bus. Further, different solar cells of different stacks may have different absorption characteristics.
    Type: Application
    Filed: October 14, 2016
    Publication date: February 2, 2017
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20160380133
    Abstract: Photovoltaic cells, photovoltaic devices, and methods of fabrication are provided. The photovoltaic cells include a transparent substrate to allow light to enter the photovoltaic cell through the substrate, and a light absorption layer associated with the substrate. The light absorption layer has opposite first and second surfaces, with the first surface being closer to the transparent substrate than the second surface. A passivation layer is disposed over the second surface of the light absorption layer, and a plurality of first discrete contacts and a plurality of second discrete contacts are provided within the passivation layer to facilitate electrical coupling to the light absorption layer. A first electrode and a second electrode are disposed over the passivation layer to contact the plurality of first discrete contacts and the plurality of second discrete contacts, respectively. The first and second electrodes include a photon-reflective material.
    Type: Application
    Filed: June 26, 2015
    Publication date: December 29, 2016
    Inventors: Hans-Juergen EICKELMANN, Ruediger KELLMANN, Hartmut KUEHL, Markus SCHMIDT
  • Publication number: 20160380139
    Abstract: Photovoltaic cells, photovoltaic devices, and methods of fabrication are provided. The photovoltaic cells include a transparent substrate to allow light to enter the photovoltaic cell through the substrate, and a light absorption layer associated with the substrate. The light absorption layer has opposite first and second surfaces, with the first surface being closer to the transparent substrate than the second surface. A passivation layer is disposed over the second surface of the light absorption layer, and a plurality of first discrete contacts and a plurality of second discrete contacts are provided within the passivation layer to facilitate electrical coupling to the light absorption layer. A first electrode and a second electrode are disposed over the passivation layer to contact the plurality of first discrete contacts and the plurality of second discrete contacts, respectively. The first and second electrodes include a photon-reflective material.
    Type: Application
    Filed: September 30, 2015
    Publication date: December 29, 2016
    Inventors: Hans-Juergen EICKELMANN, Ruediger KELLMANN, Hartmut KUEHL, Markus SCHMIDT
  • Publication number: 20160372613
    Abstract: Embodiments of the invention related to a method for manufacturing a thin film solar cell backside contact. Prior to application of materials, a planar substrate is provided and an associated backside of the substrate is modified to form one or more pedestals. The modified substrate is layered with multiple layers of material, including a conducting layer, a reflective layer, and a passivation layer. The layered backside substrate is polished to expose portions of the conducting layer at discrete locations on the backside of the substrate. The exposed portions of the conducting layer maintain direct electrical communication between an absorber layer deposited on the layered backside substrate and the conducting layer.
    Type: Application
    Filed: June 22, 2015
    Publication date: December 22, 2016
    Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATION
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20160372617
    Abstract: Embodiments relate to a thin film solar cell backside contact. A planar substrate is provided and an associated backside of the substrate is modified to form one or more pedestals. The modified substrate is layered with multiple layers of material, including a conducting layer, a reflective layer, and a passivation layer. The layered backside substrate is polished to expose portions of the conducting layer at discrete locations on the backside of the substrate. The exposed portions of the conducting layer maintain direct electrical communication between an absorber layer deposited on the layered backside substrate and the conducting layer.
    Type: Application
    Filed: August 29, 2016
    Publication date: December 22, 2016
    Applicant: International Business Machines Corporation
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20160359066
    Abstract: An energy harvesting device includes prefabricated thin film energy absorption sheets that are each tuned to absorb electromagnetic energy of a corresponding wavelength. The energy harvesting device can include a prefabricated thin film converter sheet to convert the electromagnetic energy into electrical power. The energy harvesting device can include a prefabricated thin film battery sheet to store the electrical power. Each thin film energy absorption sheet can be fabricated using a roll-to-roll process. The energy harvesting device can be fabricated using a roll-to-sheet process from rolls of the thin film energy absorption sheets.
    Type: Application
    Filed: June 2, 2015
    Publication date: December 8, 2016
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellman, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20160359067
    Abstract: An energy harvesting device includes prefabricated thin film energy absorption sheets that are each tuned to absorb electromagnetic energy of a corresponding wavelength. The energy harvesting device can include a prefabricated thin film converter sheet to convert the electromagnetic energy into electrical power. The energy harvesting device can include a prefabricated thin film battery sheet to store the electrical power. Each thin film energy absorption sheet can be fabricated using a roll-to-roll process. The energy harvesting device can be fabricated using a roll-to-sheet process from rolls of the thin film energy absorption sheets.
    Type: Application
    Filed: October 8, 2015
    Publication date: December 8, 2016
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellman, Hartmut Kuehl, Markus Schmidt
  • Patent number: 9397251
    Abstract: Embodiments of the present invention include a method for manufacturing, and a structure for a thin film solar module. The method of manufacturing includes fabricating a thin film solar cell and fabricating an electronic conversion unit (ECU) on a single substrate. The thin film solar cell has at least one solar cell diode on a substrate. The ECU has at least one transistor on the substrate. The ECU may further comprise a capacitor and an inductor. The ECU is integrated on the substrate monolithically and electrically connected with the thin film solar cell. The ECU and the thin film solar cell interconnect to form a circuit on the substrate. The ECU is electrically connected to a microcontroller on the solar cell module.
    Type: Grant
    Filed: January 17, 2014
    Date of Patent: July 19, 2016
    Assignee: GLOBALFOUNDRIES INC.
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellman, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20160099369
    Abstract: An integrated thin-film lateral multi junction solar device and fabrication method are provided. The device includes, for instance, a substrate, and a plurality of stacks extending vertically from the substrate. Each stack may include layers, and be electrically isolated against another stack. Each stack may also include an energy storage device above the substrate, a solar cell above the energy storage device, a transparent medium above the solar cell, and a micro-optic layer of spectrally dispersive and concentrating optical devices above the transparent medium. Furthermore, the device may include a first power converter connected between the energy storage device and a power bus, and a second power converter connected between the solar cell and the power bus. Further, different solar cells of different stacks may have different absorption characteristics.
    Type: Application
    Filed: July 22, 2015
    Publication date: April 7, 2016
    Inventors: Hans-Juergen EICKELMANN, Ruediger KELLMANN, Hartmut KUEHL, Markus SCHMIDT
  • Publication number: 20150207017
    Abstract: Embodiments of the present invention include a method for manufacturing, and a structure for a thin film solar module. The method of manufacturing includes fabricating a thin film solar cell and fabricating an electronic conversion unit (ECU) on a single substrate. The thin film solar cell has at least one solar cell diode on a substrate. The ECU has at least one transistor on the substrate. The ECU may further comprise a capacitor and an inductor. The ECU is integrated on the substrate monolithically and electrically connected with the thin film solar cell. The ECU and the thin film solar cell interconnect to form a circuit on the substrate. The ECU is electrically connected to a microcontroller on the solar cell module.
    Type: Application
    Filed: January 17, 2014
    Publication date: July 23, 2015
    Applicant: International Business Machines Corporation
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellman, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20150200311
    Abstract: A thin-film monolithically integrated solar module with a solar cell, an integrated energy storage device, and a controller may be provided. It may comprise a thin-film solar cell, having at least one solar diode, on a transparent substrate, a thin-film energy storage device, and an electronic controller comprising at least one thin-film transistor above the thin-film energy storage device. The electronic controller may be electrically connected to the thin-film solar cell and the thin-film energy storage device by vias. The named functional units may build a monolithically integrated device on one substrate.
    Type: Application
    Filed: January 5, 2015
    Publication date: July 16, 2015
    Inventors: Johann H. Bredel, Hans-Juergen Eickelmann, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20150096176
    Abstract: An absorber device comprises a substrate; one or more thin film radiation absorbers arranged on the substrate; an integrated optical system, comprising at least one first optical element; a cover medium arranged above the substrate and the one or more radiation absorbers. The at least one first optical element and at least one corresponding one of the one or more radiation absorbers are aligned with respect to their optical axis, such that an incoming radiation is directed onto the one or more radiation absorbers by the optical system. A method of manufacturing an absorber device is also provided.
    Type: Application
    Filed: October 20, 2014
    Publication date: April 9, 2015
    Inventors: Hans-Juergen Eickelmann, Harold J. Hovel, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt, Steven E. Steen
  • Publication number: 20150047686
    Abstract: Embodiments of the present invention include a method for manufacturing, and a structure for a thin film solar module. The method of manufacturing includes fabricating a thin film solar cell and fabricating an electronic conversion unit (ECU) on a single substrate. The thin film solar cell has at least one solar cell diode on a substrate. The ECU has at least one transistor on the substrate. The ECU may further comprise a capacitor and an inductor. The ECU is integrated on the substrate monolithically and electrically connected with the thin film solar cell. The ECU and the thin film solar cell interconnect to form a circuit on the substrate. The ECU is electrically connected to a microcontroller on the solar cell module.
    Type: Application
    Filed: August 14, 2013
    Publication date: February 19, 2015
    Applicant: International Business Machines Corporation
    Inventors: Hans-Juergen Eickelmann, Ruediger Kellman, Hartmut Kuehl, Markus Schmidt
  • Publication number: 20150030283
    Abstract: An absorber device comprises a substrate; one or more thin film radiation absorbers arranged on the substrate; an integrated optical system, comprising at least one first optical element; a cover medium arranged above the substrate and the one or more radiation absorbers. The at least one first optical element and at least one corresponding one of the one or more radiation absorbers are aligned with respect to their optical axis, such that an incoming radiation is directed onto the one or more radiation absorbers by the optical system. A method of manufacturing an absorber device is also provided.
    Type: Application
    Filed: July 1, 2014
    Publication date: January 29, 2015
    Inventors: Hans-Juergen Eickelmann, Harold J. Hovel, Ruediger Kellmann, Hartmut Kuehl, Markus Schmidt, Steven E. Steen
  • Patent number: 8368519
    Abstract: Embodiments embed at least one Radio Frequency Identification (RFID) tag into the mold. The mold may comprise a cavity adapted to the geometrical form of the RFID tag. In some embodiments, the cavity is marginally bigger than the RFID tag. In many embodiments, the cavity with the embedded the RFID tag is covered by glue. Thus, the mold, the RFID tag and the glue may be suitable for temperatures up to, e.g., 400° C. Further the mold and the glue may be resistant to concentrated sulfuric acid and formic acid. The serial number of the mold may be stored in the RFID tag. The RFID tag may detect characteristic data during the transfer of the solder from the mold to the wafer. In one embodiment, the RFID tag may detect the temperature. In another embodiment, a plurality of RFID tags may detect various temperatures for controlling the packaging process.
    Type: Grant
    Filed: October 9, 2008
    Date of Patent: February 5, 2013
    Assignee: International Business Machines Corporation
    Inventors: Hartmut Kuehl, Joerg Weyerhaeuser, Johannes Windeln
  • Publication number: 20090096589
    Abstract: Embodiments embed at least one Radio Frequency Identification (RFID) tag into the mold. The mold may comprise a cavity adapted to the geometrical form of the RFID tag. In some embodiments, the cavity is marginally bigger than the RFID tag. In many embodiments, the cavity with the embedded the RFID tag is covered by glue. Thus, the mold, the RFID tag and the glue may be suitable for temperatures up to, e.g., 400° C. Further the mold and the glue may be resistant to concentrated sulfuric acid and formic acid. The serial number of the mold may be stored in the RFID tag. The RFID tag may detect characteristic data during the transfer of the solder from the mold to the wafer. In one embodiment, the RFID tag may detect the temperature. In another embodiment, a plurality of RFID tags may detect various temperatures for controlling the packaging process.
    Type: Application
    Filed: October 9, 2008
    Publication date: April 16, 2009
    Applicant: International Business Machines Corporation
    Inventors: Hartmut Kuehl, Joerg Weyerhaeuser, Johannes Windeln