Patents by Inventor Daniel Redfield

Daniel Redfield 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: 10618141
    Abstract: Implementations described herein generally relate to polishing articles and methods of manufacturing polishing articles used in polishing processes and cleaning processes. More particularly, implementations disclosed herein relate to composite polishing articles having graded properties. In one implementation, a polishing article is provided. The polishing article comprises one or more exposed first regions formed from a first material and having a first zeta potential and one or more second exposed regions formed from a second material and having a second zeta potential, wherein the first zeta potential is different from the second zeta potential.
    Type: Grant
    Filed: October 20, 2016
    Date of Patent: April 14, 2020
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Ashwin Chockalingam, Mahendra C. Orilall, Mayu Yamamura, Boyi Fu, Rajeev Bajaj, Daniel Redfield
  • Publication number: 20200101657
    Abstract: A polishing article manufacturing system includes a feed section and a take-up section, the take-up section comprising a supply roll having a polishing article disposed thereon for a chemical mechanical polishing process, a print section comprising a plurality of printheads disposed between the feed section and the take-up section, and a curing section disposed between the feed section and the take-up section, the curing section comprising one or both of a thermal curing device and an electromagnetic curing device.
    Type: Application
    Filed: December 2, 2019
    Publication date: April 2, 2020
    Inventors: Kasiraman KRISHNAN, Daniel REDFIELD, Russell Edward PERRY, Gregory E. MENK, Rajeev BAJAJ, Fred C. REDEKER, Nag B. PATIBANDLA, Mahendra C. ORILALL, Jason G. FUNG
  • Patent number: 10593574
    Abstract: Chemical mechanical polishing (CMP) apparatus and methods for manufacturing CMP apparatus are provided herein. CMP apparatus may include polishing pads, polishing head retaining rings, and polishing head membranes, among others, and the CMP apparatus may be manufactured via additive manufacturing processes, such as three dimensional (3D) printing processes. The CMP apparatus may include wireless communication apparatus components integrated therein. Methods of manufacturing CMP apparatus include 3D printing wireless communication apparatus into a polishing pad and printing a polishing pad with a recess configured to receive a preformed wireless communication apparatus.
    Type: Grant
    Filed: November 6, 2015
    Date of Patent: March 17, 2020
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Jason G. Fung, Rajeev Bajaj, Daniel Redfield, Aniruddh Khanna, Mario Cornejo, Gregory E. Menk, John Watkins
  • Patent number: 10589399
    Abstract: A chemical mechanical polishing system includes a substrate support configured to hold a substrate, a polishing pad assembly include a membrane and a polishing pad portion having a polishing surface, a polishing pad carrier, and a drive system configured to cause relative motion between the substrate support and the polishing pad carrier. The polishing pad portion is joined to the membrane on a side opposite the polishing surface. The polishing surface has a width parallel to the polishing surface at least four times smaller than a diameter of the substrate. An outer surface of the polishing pad portion includes at least one recess and at least one plateau having a top surface that provides the polishing surface. The polishing surface has a plurality of edges defined by intersections between side walls of the at least one recess and a top surface of the at least one plateau.
    Type: Grant
    Filed: March 17, 2017
    Date of Patent: March 17, 2020
    Assignee: Applied Materials, Inc.
    Inventors: Jeonghoon Oh, Edwin C. Suarez, Jason Garcheung Fung, Eric Lau, King Yi Heung, Ashwin Murugappan Chockalingam, Daniel Redfield, Charles C. Garretson, Thomas H. Osterheld
  • Publication number: 20200070302
    Abstract: Methods and formulations for manufacturing polishing articles used in polishing processes are provided. In one implementation, a UV curable resin precursor composition is provided. The UV curable resin precursor comprises a precursor formulation. The precursor formulation comprises a first resin precursor component that comprises a semi-crystalline radiation curable oligomeric material, wherein the semi-crystalline radiation curable oligomeric material is selected from a semi-crystalline aliphatic polyester urethane acrylate, a semi-crystalline aliphatic polycarbonate urethane acrylate, a semi-crystalline aliphatic polyether urethane acrylate, or combinations thereof. The precursor formulation further comprises a second resin precursor component that comprises a monofunctional or multifunctional acrylate monomer.
    Type: Application
    Filed: August 2, 2019
    Publication date: March 5, 2020
    Inventors: Sivapackia GANAPATHIAPPAN, Ankit VORA, Boyi FU, Venkat HARIHARAN, Mayu YAMAMURA, Mario CORNEJO, Igor ABRAMSON, Mo YANG, Daniel REDFIELD, Rajeev BAJAJ, Nag B. PATIBANDLA
  • Publication number: 20200055161
    Abstract: Implementations described herein generally relate to polishing articles and methods of manufacturing polishing articles used in polishing processes and cleaning processes. More particularly, implementations disclosed herein relate to composite polishing articles having graded properties. In one implementation, a polishing article is provided. The polishing article comprises one or more exposed first regions formed from a first material and having a first zeta potential and one or more second exposed regions formed from a second material and having a second zeta potential, wherein the first zeta potential is different from the second zeta potential.
    Type: Application
    Filed: October 23, 2019
    Publication date: February 20, 2020
    Inventors: Ashwin CHOCKALINGHAM, Mahendra C. ORILALL, Mayu YAMAMURA, Boyi FU, Rajeev BAJAJ, Daniel REDFIELD
  • Patent number: 10537973
    Abstract: A method of fabricating a polishing pad using an additive manufacturing system includes receiving data indicative of a desired shape of the polishing pad to be fabricated by droplet ejection. The desired shape defines a profile including a polishing surface and one or more grooves on the polishing pad. Data indicative of a modified pattern of dispensing feed material is generated to at least partially compensate for distortions of the profile caused by the additive manufacturing system, and a plurality of layers of the feed material are dispensed by droplet ejection in accordance to the modified pattern.
    Type: Grant
    Filed: March 9, 2017
    Date of Patent: January 21, 2020
    Assignee: Applied Materials, Inc.
    Inventors: Mayu Felicia Yamamura, Jason Garcheung Fung, Daniel Redfield, Rajeev Bajaj, Hou T. Ng
  • Patent number: 10537974
    Abstract: Embodiments of the disclosure generally provide polishing pads includes a composite pad body and methods for forming the polishing pads. One embodiment provides a polishing pad including a composite pad body. The composite pad body includes one or more first features formed from a first material or a first composition of materials, and one or more second features formed from a second material or a second composition of materials, wherein the one or more first features and the one or more second features are formed by depositing a plurality of layers comprising the first material or first composition of materials and second material or second composition of materials.
    Type: Grant
    Filed: January 22, 2018
    Date of Patent: January 21, 2020
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Rajeev Bajaj, Kasiraman Krishnan, Mahendra C. Orilall, Daniel Redfield, Fred C. Redeker, Nag B. Patibandla, Gregory E. Menk, Jason G. Fung, Russell Edward Perry, Robert E. Davenport
  • Publication number: 20200001433
    Abstract: Embodiments of the present disclosure relate to advanced polishing pads with tunable chemical, material and structural properties, and new methods of manufacturing the same. According to one or more embodiments of the disclosure, it has been discovered that a polishing pad with improved properties may be produced by an additive manufacturing process, such as a three-dimensional (3D) printing process. Embodiments of the present disclosure thus may provide an advanced polishing pad that has discrete features and geometries, formed from at least two different materials that include functional polymers, functional oligomers, reactive diluents, and curing agents. For example, the advanced polishing pad may be formed from a plurality of polymeric layers, by the automated sequential deposition of at least one resin precursor composition followed by at least one curing step, wherein each layer may represent at least one polymer composition, and/or regions of different compositions.
    Type: Application
    Filed: August 15, 2019
    Publication date: January 2, 2020
    Inventors: Rajeev BAJAJ, Daniel REDFIELD, Mahendra C. ORILALL, Boyi FU, Ashwin CHOCKALINGAM, Ashavani KUMAR, Fred C. REDEKER, Nag B. PATIBANDLA
  • Patent number: 10493691
    Abstract: A polishing article manufacturing system includes a feed section and a take-up section, the take-up section comprising a supply roll having a polishing article disposed thereon for a chemical mechanical polishing process, a print section comprising a plurality of printheads disposed between the feed section and the take-up section, and a curing section disposed between the feed section and the take-up section, the curing section comprising one or both of a thermal curing device and an electromagnetic curing device.
    Type: Grant
    Filed: October 2, 2017
    Date of Patent: December 3, 2019
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Kasiraman Krishnan, Daniel Redfield, Russell Edward Perry, Gregory E. Menk, Rajeev Bajaj, Fred C. Redeker, Nag B. Patibandla, Mahendra C. Orilall, Jason G. Fung
  • Publication number: 20190337117
    Abstract: In one implementation, a method of forming a porous polishing pad is provided. The method comprises depositing a plurality of composite layers with a 3D printer to reach a target thickness. Depositing the plurality of composite layers comprises dispensing one or more droplets of a curable resin precursor composition onto a support. Depositing the plurality of composite layers further comprises dispensing one or more droplets of a porosity-forming composition onto the support, wherein at least one component of the porosity-forming composition is removable to form the pores in the porous polishing pad.
    Type: Application
    Filed: April 4, 2019
    Publication date: November 7, 2019
    Inventors: Sivapackia GANAPATHIAPPAN, Boyi FU, Ashwin CHOCKALINGAM, Ankit VORA, Daniel REDFIELD, Rajeev BAJAJ, Nag B. PATIBANDLA, Hou T. NG, Sudhakar MADHUSOODHANAN
  • Patent number: 10456886
    Abstract: Implementations disclosed herein generally relate to polishing articles and methods for manufacturing polishing articles used in polishing processes. More specifically, implementations disclosed herein relate to porous polishing pads produced by processes that yield improved polishing pad properties and performance, including tunable performance. Additive manufacturing processes, such as three-dimensional printing processes provides the ability to make porous polishing pads with unique properties and attributes.
    Type: Grant
    Filed: December 29, 2016
    Date of Patent: October 29, 2019
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Sivapackia Ganapathiappan, Nag B. Patibandla, Rajeev Bajaj, Daniel Redfield, Fred C. Redeker, Mahendra C. Orilall, Boyi Fu, Mayu Yamamura, Ashwin Chockalingam
  • Publication number: 20190299537
    Abstract: Embodiments disclosed herein provide methods of forming bond pad redistribution layers (RDLs) in a fan-out wafer level packaging (FOWLP) scheme using an additive manufacturing process. In one embodiment, a method of forming a redistribution layer includes positioning a carrier substrate on a manufacturing support of an additive manufacturing system, the carrier substrate including a plurality of singulated devices, detecting one or more fiducial features corresponding to each of the plurality of singulated devices, determining actual positions of each of the plurality of singulated devices relative to one or more components of the additive manufacturing system, generating printing instructions for forming a patterned dielectric layer based on the actual positions of each of the plurality of singulated devices, and forming the patterned dielectric layer using the printing instructions.
    Type: Application
    Filed: February 28, 2019
    Publication date: October 3, 2019
    Inventors: William H. MCCLINTOCK, Rajeev BAJAJ, Jason G. FUNG, Daniel REDFIELD
  • Publication number: 20190299357
    Abstract: A method of fabricating a polishing layer of a polishing pad includes successively depositing a plurality of layers with a 3D printer, each layer of the plurality of polishing layers deposited by ejecting a base material from a first nozzle and an additive material from a second nozzle and solidifying the base and additive material to form a solidified pad material.
    Type: Application
    Filed: June 17, 2019
    Publication date: October 3, 2019
    Inventors: Mahendra Christopher ORILALL, Timothy MICHAELSON, Kasiraman KRISHNAN, Rajeev BAJAJ, Nag B. PATIBANDLA, Daniel REDFIELD, Fred C. REDEKER, Gregory E. MENK
  • Patent number: 10399201
    Abstract: Embodiments herein relate to advanced polishing pads with tunable chemical, material and structural properties, and manufacturing methods related thereto. According to one or more embodiments herein, a polishing pad with improved properties may be produced by an additive manufacturing process, such as a three-dimensional (3D) printing process. Embodiments herein thus may provide an advanced polishing pad having discrete features and geometries, formed from at least two different materials that include functional polymers, functional oligomers, reactive diluents, addition polymer precursor compounds, catalysts, and curing agents. For example, the advanced polishing pad may be formed from a plurality of polymeric layers, by the automated sequential deposition of at least one polymer precursor composition followed by at least one curing step, wherein each layer may represent at least one polymer composition, and/or regions of different compositions.
    Type: Grant
    Filed: October 17, 2016
    Date of Patent: September 3, 2019
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Sivapackia Ganapathiappan, Boyi Fu, Ashwin Chockalingam, Daniel Redfield, Rajeev Bajaj, Mahendra C. Orilall, Hou T. Ng, Jason G. Fung, Mayu Yamamura
  • Patent number: 10391605
    Abstract: Embodiments of the present disclosure relate to advanced polishing pads with tunable chemical, material and structural properties, and new methods of manufacturing the same. According to one or more embodiments of the disclosure, it has been discovered that a polishing pad with improved properties may be produced by an additive manufacturing process, such as a three-dimensional (3D) printing process. Embodiments of the present disclosure thus may provide an advanced polishing pad that has discrete features and geometries, formed from at least two different materials that include functional polymers, functional oligomers, reactive diluents, addition polymer precursor compounds, catalysts, and curing agents.
    Type: Grant
    Filed: October 6, 2016
    Date of Patent: August 27, 2019
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Sivapackia Ganapathiappan, Boyi Fu, Ashwin Chockalingam, Daniel Redfield, Rajeev Bajaj, Mahendra C. Orilall, Hou T. Ng, Jason G. Fung, Mayu Yamamura
  • Patent number: 10384330
    Abstract: Embodiments of the present disclosure relate to advanced polishing pads with tunable chemical, material and structural properties, and new methods of manufacturing the same. According to one or more embodiments of the disclosure, it has been discovered that a polishing pad with improved properties may be produced by an additive manufacturing process, such as a three-dimensional (3D) printing process. Embodiments of the present disclosure thus may provide an advanced polishing pad that has discrete features and geometries, formed from at least two different materials that include functional polymers, functional oligomers, reactive diluents, and curing agents. For example, the advanced polishing pad may be formed from a plurality of polymeric layers, by the automated sequential deposition of at least one resin precursor composition followed by at least one curing step, wherein each layer may represent at least one polymer composition, and/or regions of different compositions.
    Type: Grant
    Filed: October 16, 2015
    Date of Patent: August 20, 2019
    Assignee: APPLIED MATERIALS, INC.
    Inventors: Rajeev Bajaj, Daniel Redfield, Mahendra C. Orilall, Boyi Fu, Aniruddh Khanna, Jason G. Fung, Mario Cornejo, Ashwin Chockalingam, Mayu Yamamura, Veera Raghava Reddy Kakireddy, Ashavani Kumar, Venkat Hariharan, Gregory E. Menk, Fred C. Redeker, Nag B. Patibandla, Hou T. Ng, Robert E. Davenport, Amritanshu Sinha
  • Publication number: 20190240802
    Abstract: Embodiments described herein relate to methods of detecting a polishing endpoint using one or more sensors embedded in the polishing material of a polishing pad, the polishing pads, and methods of forming the polishing pads. In one embodiment, a method of polishing a substrate includes urging a to be polished surface of a substrate against a polishing surface of a polishing pad, the polishing pad having one or more sensors embedded in the polishing pad material thereof, wherein the polishing pad is mounted on a polishing platen of a polishing system, detecting a force exerted against a polishing surface of the polishing pad using the one or more sensors, converting the detected force into signal information, wirelessly communicating the signal information received from the one or more sensors to one or more interrogators disposed in the polishing platen, and changing one or more polishing conditions based on the signal information.
    Type: Application
    Filed: January 28, 2019
    Publication date: August 8, 2019
    Inventors: Venkat HARIHARAN, Rajeev BAJAJ, Daniel REDFIELD
  • Publication number: 20190224809
    Abstract: Implementations disclosed herein generally relate to polishing articles and methods for manufacturing polishing articles used in polishing processes. More specifically, implementations disclosed herein relate to porous polishing pads produced by processes that yield improved polishing pad properties and performance, including tunable performance. Additive manufacturing processes, such as three-dimensional printing processes provides the ability to make porous polishing pads with unique properties and attributes.
    Type: Application
    Filed: April 2, 2019
    Publication date: July 25, 2019
    Inventors: Sivapackia GANAPATHIAPPAN, Nag B. PATIBANDLA, Rajeev BAJAJ, Daniel REDFIELD, Fred C. REDEKER, Mahendra C. ORILALL, Boyi FU, Mayu YAMAMURA, Ashwin CHOCKALINGAM
  • Publication number: 20190202024
    Abstract: Embodiments of the present disclosure relate to advanced polishing pads with tunable chemical, material and structural properties, and new methods of manufacturing the same. According to one or more embodiments of the disclosure, it has been discovered that a polishing pad with improved properties may be produced by an additive manufacturing process, such as a three-dimensional (3D) printing process. Embodiments of the present disclosure thus may provide an advanced polishing pad that has discrete features and geometries, formed from at least two different materials that include functional polymers, functional oligomers, reactive diluents, addition polymer precursor compounds, catalysts, and curing agents.
    Type: Application
    Filed: March 11, 2019
    Publication date: July 4, 2019
    Inventors: Sivapackia GANAPATHIAPPAN, Boyi FU, Ashwin CHOCKALINGAM, Daniel REDFIELD, Rajeev BAJAJ, Mahendra C. ORILALL, Hou T. NG, Jason G. FUNG, Mayu YAMAMURA