Patents by Inventor Hiroji Hanawa

Hiroji Hanawa 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: 20080178913
    Abstract: A process is provided for removing polymer from a backside of a workpiece. The process includes supporting the workpiece on the backside in a vacuum chamber while leaving at least a peripheral annular portion of the backside exposed. The process further includes confining gas flow at the edge of the workpiece within a gap at the edge of the workpiece on the order of about 1% of the diameter of the chamber, the gap defining a boundary between an upper process zone containing the wafer front side and a lower process zone containing the wafer backside. The process also includes providing a polymer etch precursor gas underneath the backside edge of the workpiece and applying RF power to a region underlying the backside edge of the workpiece to generate a first plasma of polymer etch species concentrated in an annular ring concentric with and underneath the backside edge of the workpiece.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorow, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080179011
    Abstract: A plasma reactor includes an electrostatic chuck in the chamber for supporting the workpiece, a ceiling electrode facing the electrostatic chuck and an ESC electrode in the electrostatic chuck with an electrostatic clamping voltage supply coupled to the ESC electrode. The reactor further includes at least a first RF bias source of an LF or HF frequency coupled to the pedestal electrode, and first and second VHF power sources of different frequencies coupled to the same or to different ones of the electrodes. The first and second VHF power sources are of sufficiently high and sufficiently low frequencies, respectively, to produce center-high and center-low plasma distribution non-uniformities, respectively, in the chamber.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080179289
    Abstract: A process is provided for removing polymer from a backside of a workpiece. The process includes supporting the workpiece on the backside in a vacuum chamber while leaving a peripheral annular portion of the backside exposed. The process further includes confining gas flow at an edge of the workpiece within a gap at the edge of the workpiece on the order of about 1% of the diameter of the chamber, the gap defining a boundary between an upper process zone containing the front side and a lower process zone containing the backside. A first plasma is generated in a local plasma chamber from a polymer etch precursor gas. The process includes directing a localized stream of an etchant by-product from the first plasma onto a target portion of the backside of the workpiece, the target portion having a diameter corresponding to a diameter of the stream, while rotating the workpiece.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorov, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080179288
    Abstract: A process is provided for removing polymer from a backside of a workpiece. The process includes supporting the workpiece on the backside in a vacuum chamber while leaving a peripheral annular portion of the backside exposed. The process further includes confining gas flow at the edge of the workpiece within a gap at the edge of the workpiece on the order of about 1% of the diameter of the chamber, the gap defining a boundary between an upper process zone containing the front side and a lower process zone containing the backside. A first plasma is generated in a lower external chamber from a polymer etch precursor gas, and an etchant by-product is introduced from the first plasma into the lower process zone. A second plasma is generated in an upper external plasma chamber from a precursor gas of a scavenger of the etchant by-product, and scavenger species are introduced from the second plasma into the upper process zone.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorow, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080178803
    Abstract: A plasma reactor includes a ceiling electrode facing a workpiece support pedestal and a pedestal electrode in the pedestal and first and second VHF power sources of different frequencies coupled to the same or to different ones of the ceiling electrode and the pedestal electrode. The first and second VHF power sources are of sufficiently high and sufficiently low frequencies, respectively, to produce center-high and center-low plasma distribution non-uniformities, respectively, in the chamber. The reactor further includes a controller programmed to change the relative output power levels of the first and second VHF power sources to: (a) increase the relative output power level of the first VHF power source whenever plasma ion distribution has a predominantly edge-high non-uniformity, and (b) increase the relative output power level of the second VHF power source whenever plasma ion distribution has a predominantly center-high non-uniformity.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080179290
    Abstract: A workpiece is supported on the backside in a vacuum chamber while leaving at least a peripheral annular portion of a backside of the workpiece exposed. The process first increases the temperature of the workpiece starting at a temperature below about 200 degrees C. The edge of the workpiece is confined so as to establish a gap at the edge on the order of about 1% of the diameter of the chamber, the gap corresponding to a boundary between an upper process zone containing the front side and a lower process zone containing the backside. Before the workpiece temperature exceeds about 200 degrees C., backside polymer is removed using a first plasma containing polymer etch species in the lower process zone. After the workpiece temperature reaches about 300 degrees C., photoresist is stripped from the workpiece front side using by-products of a second plasma containing a photoresist strip species in the upper process zone.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorow, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080179007
    Abstract: A reactor is provided for removing polymer from a backside of a workpiece. The reactor includes a vacuum chamber having a ceiling, a floor and a cylindrical side wall. The reactor further includes workpiece support apparatus within the chamber configured for a workpiece to be placed thereon with its front side facing the ceiling. The support apparatus is configured to leave at least an annular periphery of the backside of the workpiece exposed. A confinement member defines a narrow gap with an outer edge of the workpiece, the narrow gap being on the order of about 1% of the workpiece diameter, the narrow gap corresponding to a boundary dividing the chamber between an upper process zone and a lower process zone, the reactor further comprising a vacuum pump coupled to the lower process zone.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorow, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080180028
    Abstract: A method is provided for processing a workpiece in a plasma reactor chamber. The method includes coupling, to a plasma in the chamber, power of an RF frequency via a ceiling electrode and coupling, to the plasma, power of at least approximately the same RF frequency via a workpiece support electrode. The method also includes providing an edge ground return path. The method further includes adjusting the proportion between (a) current flow between said electrodes and (b) current flow to the edge ground return path from said electrodes, to control plasma ion density distribution uniformity over the workpiece.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080182417
    Abstract: In a plasma reactor chamber a ceiling electrode and a workpiece support electrode, respective RF power sources of respective VHF frequencies f1 and f2 are coupled to either respective ones of the electrodes or to a common one of the electrodes, where f1 is sufficiently high to produce a center-high non-uniform plasma ion distribution and f2 is sufficiently low to produce a center-low non-uniform plasma ion distribution. Respective center ground return paths are provided for RF current passing directly between the ceiling electrode and the workpiece support electrode for the frequencies f1 and f2, and an edge ground return path is provided for each of the frequencies f1 and f2. The impedance of at least one of the ground return paths is adjusted so as to control the uniformity of the plasma ion density distribution.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080179181
    Abstract: A method for processing a workpiece in a plasma reactor chamber includes coupling RF power at a first VHF frequency f1 to a plasma via one of the electrodes of the chamber, and providing a center ground return path for RF current passing directly between the ceiling electrode and the workpiece support electrode for the frequency f1. The method further includes providing a variable height edge ground annular element and providing a ground return path through the edge ground annular element for the frequency f1. The method controls the uniformity of plasma ion density distribution by controlling the distance between the variable height edge ground annular element and one of: (a) height of ceiling electrode or (b) height of workpiece support electrode.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: KENNETH S. COLLINS, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080179008
    Abstract: A reactor is provided for removing polymer from a backside of a workpiece. The reactor includes a vacuum chamber having a ceiling, a floor and a cylindrical side wall. A workpiece support apparatus within the chamber is configured to support a workpiece thereon, so that the workpiece has its front side facing the ceiling. The support apparatus leaves at least an annular periphery of the backside of the workpiece exposed. A confinement member defines a narrow gap with the outer edge of the workpiece, the narrow gap being on the order of about 1% of workpiece diameter, the narrow gap corresponding to a boundary dividing the chamber between an upper process zone and a lower process zone. A vacuum pump is coupled to the lower process zone. A lower external plasma-generating chamber introduces a plasma by-product into the lower process zone and a supply of a polymer etch precursor gas coupled to the lower external plasma-generating chamber.
    Type: Application
    Filed: March 14, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Andrew Nguyen, Ajit Balakrishna, David Palagashvili, James P. Cruse, Jennifer Y. Sun, Valentin N. Todorov, Shahid Rauf, Kartik Ramaswamy, Gerhard M. Schneider, Imad Yousif, Martin Jeffrey Salinas
  • Publication number: 20080182416
    Abstract: A method is provided for processing a workpiece in a plasma reactor chamber having electrodes including at least a ceiling electrode and a workpiece support electrode. The method includes coupling respective RF power sources of respective VHF frequencies f1 and f2 to either (a) respective ones of the electrodes or (b) a common one of the electrodes, where f1 is sufficiently high to produce a center-high non-uniform plasma ion distribution and f2 is sufficiently low to produce a center-low non-uniform plasma ion distribution. The method further includes adjusting a ratio of an RF parameter at the f1 frequency to the RF parameter at the f2 frequency so as to control plasma ion density distribution, the RF parameter being any one of RF power, RF voltage or RF current.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080182418
    Abstract: A method of processing a workpiece in a plasma reactor chamber includes coupling RF power via an electrode to plasma in the chamber, the RF power being of a variable frequency in a frequency range that includes a fundamental frequency f. The method also includes coupling the electrode to a resonator having a resonant VHF frequency F which is a harmonic of the fundamental frequency f, so as to produce VHF power at the harmonic. The method controls the ratio of power near the fundamental f to power at harmonic F, by controlling the proportion of power from the generator that is up-converted from f to F, so as to control plasma ion density distribution.
    Type: Application
    Filed: April 11, 2007
    Publication date: July 31, 2008
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Kartik Ramaswamy, Douglas A. Buchberger, Shahid Rauf, Kallol Bera, Lawrence Wong, Walter R. Merry, Matthew L. Miller, Steven C. Shannon, Andrew Nguyen, James P. Cruse, James Carducci, Troy S. Detrick, Subhash Deshmukh, Jennifer Y. Sun
  • Publication number: 20080173237
    Abstract: Embodiments described herein generally provide a toroidal plasma source, a plasma channeling device, a showerhead, and a substrate support assembly for use in a plasma chamber. The toroidal plasma source, plasma channeling device, showerhead, and substrate support assembly are adapted to improve the usable lifetime of the plasma chamber, as well as reduce assembly cost, increase the plasma chamber reliability, and improve device yield on the processed substrates.
    Type: Application
    Filed: January 18, 2008
    Publication date: July 24, 2008
    Inventors: Kenneth S. Collins, Andrew N. Nguyen, Kartik Ramaswamy, Hiroji Hanawa, Douglas A. Buchberger, Daniel J. Hoffman, Amir Al-Bayati
  • Patent number: 7393765
    Abstract: Device-enhancing coatings are deposited on CMOS devices by successively masking with photoresist each one of the sets of N-channel and P-channel devices while unmasking or leaving unmasked the other set, and after each step of successively masking one of the sets of devices, carrying out low temperature CVD steps with a toroidal RF plasma current while applying an RF plasma bias voltage. The temperature of the workpiece is held below a threshold photoresist removal temperature. The RF bias voltage is held at a level at which the coating is deposited with a first stress when the unmasked set consists of the P-channel devices and with a second stress when the unmasked set consists of N-channel devices.
    Type: Grant
    Filed: April 19, 2007
    Date of Patent: July 1, 2008
    Assignee: Applied Materials, Inc.
    Inventors: Hiroji Hanawa, Kartik Ramaswamy, Kenneth S. Collins, Amir Al-Bayati, Biagio Gallo, Andrew Nguyen
  • Patent number: 7335611
    Abstract: A method of forming a conductor in a thin film structure on a semiconductor substrate includes forming high aspect ratio openings in a base layer having vertical side walls, depositing a dielectric barrier layer comprising a dielectric compound of a barrier metal on the surfaces of the high aspect ratio openings including the vertical side walls, depositing a metal barrier layer comprising the barrier metal on the first barrier layer, depositing a main conductor species seed layer on the metal barrier layer and depositing a main conductor layer. The method further includes annealing the main conductor layer by (a) directing light from an array of continuous wave lasers into a line of light extending at least partially across the thin film structure, and (b) translating the line of light relative to the thin film structure in a direction transverse to the line of light.
    Type: Grant
    Filed: August 8, 2005
    Date of Patent: February 26, 2008
    Assignee: Applied Materials, Inc.
    Inventors: Kartik Ramaswamy, Hiroji Hanawa, Biagio Gallo, Kenneth S. Collins, Kai Ma, Vijay Parihar, Dean Jennings, Abhilash J. Mayur, Amir Al-Bayati, Andrew Nguyen
  • Publication number: 20080044960
    Abstract: A process for conformally doping through the vertical and horizontal surfaces of a 3-dimensional vertical transistor in a semiconductor-on-insulator structure employs an RF oscillating torroidal plasma current to perform either conformal ion implantation, or conformal deposition of a dopant-containing film which can then be heated to drive the dopants into the transistor. Some embodiments employ both conformal ion implantation and conformal deposition of dopant containing films, and in those embodiments in which the dopant containing film is a pure dopant, the ion implantation and film deposition can be performed simultaneously.
    Type: Application
    Filed: September 18, 2007
    Publication date: February 21, 2008
    Inventors: Amir Al-Bayati, Kenneth Collins, Hiroji Hanawa, Kartik Ramaswamy, Biagio Gallo, Andrew Nguyen
  • Patent number: 7323401
    Abstract: A method of processing a thin film structure on a semiconductor substrate using an optically writable mask includes placing the substrate in a reactor chamber, the substrate having on its surface a target layer to be etched in accordance with a predetermined pattern, and depositing a carbon-containing hard mask layer on the substrate by (a) introducing a carbon-containing process gas into the chamber, (b) generating a reentrant toroidal RF plasma current in a reentrant path that includes a process zone overlying the workpiece by coupling plasma RF source power to an external portion of the reentrant path, and (c) coupling RF plasma bias power or bias voltage to the workpiece. The method further includes photolithographically defining the predetermined pattern in the carbon-containing hard mask layer, and etching the target layer in the presence of the hard mask layer.
    Type: Grant
    Filed: August 8, 2005
    Date of Patent: January 29, 2008
    Assignee: Applied Materials, Inc.
    Inventors: Kartik Ramaswamy, Hiroji Hanawa, Biagio Gallo, Kenneth S. Collins, Kai Ma, Vijay Parihar, Dean Jennings, Abhilash J. Mayur, Amir Al-Bayati, Andrew Nguyen
  • Patent number: 7320734
    Abstract: A system for processing a workpiece includes a plasma immersion ion implantation reactor with an enclosure having a side wall and a ceiling and defining a chamber, and a workpiece support pedestal within the chamber having a workpiece support surface facing the ceiling and defining a process region extending generally across the wafer support pedestal and confined laterally by the side wall and axially between the workpiece support pedestal and the ceiling. The enclosure has at least a first pair of openings at generally opposite sides of the process region, and a first hollow conduit outside the chamber having first and second ends connected to respective ones of the first pair of openings, so as to provide a first reentrant path extending through the conduit and across the process region.
    Type: Grant
    Filed: August 22, 2003
    Date of Patent: January 22, 2008
    Assignee: Applied Materials, Inc.
    Inventors: Kenneth S. Collins, Hiroji Hanawa, Kartik Ramaswamy, Andrew Nguyen, Amir Al-Bayati, Biagio Gallo, Gonzalo Antonio Monroy
  • Patent number: 7312148
    Abstract: A method of forming a barrier layer for a thin film structure on a semiconductor substrate includes forming high aspect ratio openings in a base layer having vertical side walls, depositing a dielectric barrier layer comprising a dielectric compound of a barrier metal on the surfaces of the high aspect ratio openings including the vertical side walls and depositing a metal barrier layer comprising the barrier metal on the first barrier layer. The method further includes reflowing the metal barrier layer by (a) directing light from an array of continuous wave lasers into a line of light extending at least partially across the thin film structure, and (b) translating the line of light relative to the thin film structure in a direction transverse to the line of light.
    Type: Grant
    Filed: August 8, 2005
    Date of Patent: December 25, 2007
    Assignee: Applied Materials, Inc.
    Inventors: Kartik Ramaswamy, Hiroji Hanawa, Biagio Gallo, Kenneth S Collins, Kai Ma, Vijay Parihar, Dean Jennings, Abhilash J. Mayur, Amir Al-Bayati, Andrew Nguyen