Patents Assigned to Applied Material Inc.
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Publication number: 20250069884Abstract: Exemplary semiconductor processing methods may include providing a first silicon-containing precursor and a second silicon-containing precursor to a processing region of a semiconductor processing chamber. A substrate may be disposed within the processing region of the semiconductor processing chamber. The first silicon-containing precursors may include Si—O bonding. The methods may include forming a plasma of the first silicon-containing precursor and the second silicon-containing precursor in the processing region. The methods may include forming a layer of silicon-containing material on the substrate. The layer of silicon-containing material may be characterized by a dielectric constant less than or about 3.0.Type: ApplicationFiled: August 25, 2023Publication date: February 27, 2025Applicant: Applied Materials, Inc.Inventors: Rui Lu, Bo Xie, Kent Zhao, Shanshan Yao, Xiaobo Li, Chi-I Lang, Li-Qun Xia, Shankar Venkataraman
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Publication number: 20250069857Abstract: Exemplary methods of coating a metal-containing component are described. The methods are developed to increase corrosion resistance and improve coating adhesion to a metal substrate. The methods include forming a bonding layer on a metal substrate, where the bonding layer includes an oxide of a metal in the metal substrate. The coating methods further include depositing a stress buffer layer on the bonding layer, where the stress buffer layer is characterized by a stress buffer layer coefficient of thermal expansion (CTE) that is less than a metal substrate CTE and a bonding layer CTE. The coating methods also include depositing an environmental barrier layer on the stress buffer layer, where a ratio of the metal substrate CTE to an environmental barrier layer CTE is greater than or about 20:1, and where the environmental barrier layer includes silicon oxide. The metal-containing components may be used in fabrication equipment for electronic devices.Type: ApplicationFiled: November 13, 2024Publication date: February 27, 2025Applicant: Applied Materials, Inc.Inventors: Amir H. Tavakoli, Tony S. Kaushal, Peter Reimer, David Jorgensen
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Patent number: 12237406Abstract: Techniques are disclosed for methods of post-treating an etch stop or a passivation layer in a thin film transistor to increase the stability behavior of the thin film transistor.Type: GrantFiled: October 28, 2020Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Soo Young Choi, Beom Soo Park, Yi Cui, Tae Kyung Won, Dong-Kil Yim
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Patent number: 12236575Abstract: Embodiments of the present disclosure relate to optical devices for augmented, virtual, and/or mixed reality applications. In one or more embodiments, an optical device metrology system is configured to measure a plurality of first metrics and one or more second metrics for optical devices, the one or more second metrics including a display leakage metric.Type: GrantFiled: October 4, 2021Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Yangyang Sun, Jinxin Fu, Kazuya Daito, Ludovic Godet
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Patent number: 12237149Abstract: Embodiments of the present disclosure generally relate to a system used in a semiconductor device manufacturing process. More specifically, embodiments provided herein generally include apparatus and methods for synchronizing and controlling the delivery of an RF bias signal and a pulsed voltage waveform to one or more electrodes within a plasma processing chamber. The apparatus and methods disclosed herein can be useful to at least minimize or eliminate a microloading effect created while processing small dimension features that have differing densities across various regions of a substrate. The plasma processing methods and apparatus described herein are configured to improve the control of various characteristics of the generated plasma and control an ion energy distribution (IED) of the plasma generated ions that interact with a surface of a substrate during plasma processing.Type: GrantFiled: November 10, 2022Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Deyang Li, Sunil Srinivasan, Yi-Chuan Chou, Shahid Rauf, Kuan-Ting Liu, Jason A. Kenney, Chung Liu, Olivier P. Joubert, Shreeram Jyoti Dash, Aaron Eppler, Michael Thomas Nichols
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Patent number: 12233169Abstract: A method of preparing an abuse deterrent pharmaceutical composition having a drug-containing core enclosed by one or more metal oxide materials is provided. The method includes the sequential steps of (a) loading the particles comprising the drug into a reactor, (b) applying a vaporous or gaseous metal precursor to the particles in the reactor, (c) performing one or more pump-purge cycles of the reactor using inert gas, (d) applying a vaporous or gaseous oxidant to the particles in the reactor, and (e) performing one or more pump-purge cycles of the reactor using inert gas. This produces an abuse deterrent pharmaceutical composition comprising a drug containing core enclosed by one or more metal oxide materials.Type: GrantFiled: August 27, 2020Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventor: Colin C. Neikirk
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Patent number: 12234549Abstract: Methods for in situ seasoning of process chamber components, such as electrodes are described. In an embodiment, the method includes depositing a silicon oxide film over the process chamber component and converting the silicon oxide film to a silicon-carbon-containing film. The silicon-carbon-containing film forms a protective film over the process chamber components and is resistant to plasma processing and/or dry etch cleaning. The coatings has high density, good emissivity control, and reduces risk of device property drift.Type: GrantFiled: May 5, 2023Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Sarah Michelle Bobek, Abdul Aziz Khaja, Ratsamee Limdulpaiboon, Kwangduk Douglas Lee
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Patent number: 12233505Abstract: A polishing pad includes a sensor assembly surrounded by a lower portion of the polishing pad, and an upper portion including a pad portion disposed on the assembly and at least a portion of a polishing layer disposed on the lower portion. The sensor assembly includes a lower body having a first pair of electrodes formed thereon, a polymer body having a second pair of electrodes formed thereon and aligned with the first pair of electrodes, and a pair of gaps between the first pair of electrodes and the second pair of electrodes.Type: GrantFiled: May 10, 2023Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Nicholas A. Wiswell, Chih Chung Chou, Dominic J. Benvegnu
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Patent number: 12237158Abstract: A substrate processing system comprises an etch chamber configured to perform an etch process on a substrate, the etch chamber comprising an optical sensor to generate one or more optical measurements of a film on the substrate during and/or after the etch process. The system further comprises a computing device operatively connected to the etch chamber, wherein the computing device is to: receive the one or more optical measurements of the film; determine, for each optical measurement of the one or more optical measurements, a film thickness of the film; determine an etch rate of the film based on the one or more optical measurements using the determined film thickness of each optical measurement of the one or more optical measurements; and determine a process parameter value of at least one process parameter for a previously performed process that was performed on the substrate based on the etch rate.Type: GrantFiled: November 24, 2020Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Priyadarshi Panda, Lei Lian, Leonard Michael Tedeschi
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Patent number: 12235624Abstract: An electronic device manufacturing system capable of obtaining metrology data generated using metrology equipment located within a process chamber that performs a deposition process on a substrate according to a process recipe, wherein the process recipe comprises a plurality of setting parameters, and wherein the deposition process generates a plurality of film layers on a surface of the substrate. The manufacturing system can further generate a correction profile based on the metrology data. The manufacturing system can further generate an updated process recipe by applying the correction profile to the process recipe. The manufacturing system can further cause an etch process to be performed on the substrate according to the updated process recipe.Type: GrantFiled: December 21, 2021Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Chunlei Zhang, Tao Zhang, Jairaj Payyapilly
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Patent number: 12235144Abstract: Disclosed herein are embodiments of a sensor device, systems incorporating the same, and methods of fabricating the same. In one embodiment, a sensor device comprises a free-standing sensing element, such as a micro-electromechanical system (MEMS) device. The sensor device further comprises a metallic band to facilitate mounting the MEMS device to a mounting plate. The sensor device further comprises a conformal coating on a least a portion of a sensor region of the sensor device.Type: GrantFiled: September 14, 2021Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.—RoboticsInventors: Nir Merry, Ming Xu
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Patent number: 12237148Abstract: Embodiments of the disclosure provided herein include an apparatus and method for the plasma processing of a substrate in a processing chamber. More specifically, embodiments of this disclosure describe a biasing scheme that is configured to provide a pulsed-voltage (PV) waveform delivered from one or more pulsed-voltage (PV) generators to the one or more electrodes within the processing chamber. The plasma process(es) disclosed herein can be used to control the shape of an ion energy distribution function (IEDF) and the interaction of the plasma with a surface of a substrate during plasma processing.Type: GrantFiled: October 2, 2023Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Leonid Dorf, Rajinder Dhindsa, James Rogers, Daniel Sang Byun, Evgeny Kamenetskiy, Yue Guo, Kartik Ramaswamy, Valentin N. Todorow, Olivier Luere, Linying Cui
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Patent number: 12237445Abstract: A method of fabricating a multi-color display includes forming a host matrix over a display having an array of light emitting diodes. The host matrix is sensitive to ultraviolet light. A first plurality of light emitting diodes in a first plurality of wells are activated to illuminate a portion of the host matrix to cause the portion of the host matrix to develop internal porous structures. A first photo-curable fluid including a first color conversion agent is dispensed. The first plurality of light emitting diodes in the first plurality of wells are activated to illuminate and cure the first photo-curable fluid to form a first color conversion layer over each of the first plurality of light emitting diodes, and an uncured remainder of the first photo-curable fluid is removed.Type: GrantFiled: March 10, 2022Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Hou T. Ng, Nag B. Patibandla, Giorgio Cellere, Daihua Zhang
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Patent number: 12236077Abstract: An electronic device manufacturing system configured to receive, by a processor, input data reflecting a feature related to a manufacturing process of a substrate. The manufacturing system is further configured to train a machine-learning model based on the input data reflecting the feature. The manufacturing system is further configured to modify the machine-learning model in view of the virtual knob for the feature.Type: GrantFiled: April 25, 2022Date of Patent: February 25, 2025Assignee: Applied Materials, Inc.Inventors: Jui-Che Lin, Yan-Jhu Chen, Chao-Hsien Lee, Shauh-Teh Juang, Pengyu Han, Wallace Wang
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Publication number: 20250062117Abstract: Exemplary semiconductor processing methods may include providing deposition precursors to a processing region of a semiconductor processing chamber. The deposition precursors may include a silicon-oxygen-and-carbon-containing precursor. A substrate may be disposed within the processing region. The methods may include forming plasma effluents of the deposition precursors. The methods may include depositing a layer of silicon-oxygen—and—carbon-containing material on the substrate. The layer of silicon-oxygen—and—carbon-containing material may be characterized by a dielectric constant of less than or about 4.5. The layer of silicon-oxygen—and—carbon-containing material may be characterized by a density of greater than or about 2.0 g/cm3.Type: ApplicationFiled: August 15, 2023Publication date: February 20, 2025Applicant: Applied Materials, Inc.Inventors: Shanshan Yao, Bo Xie, Chi-I Lang, Li-Qun Xia
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Publication number: 20250062131Abstract: Methods of semiconductor processing may include forming plasma effluents of a plurality of precursors (e.g., an etchant precursor, an oxygen-containing precursor, and a silicon-and-fluorine-containing precursor like silicon tetrafluoride). The plasma effluents may then contact a silicon-containing material and a mask material on a substrate in a processing region of a semiconductor processing chamber. The mask material may have one or more apertures therein that allow the plasma effluents access to the silicon-containing material. Contacting the silicon-containing material and the mask material with the plasma effluents may cause (i) etching the silicon-containing material with the plasma effluents to form and/or deepen one or more features in the silicon-containing material and (ii) simultaneously etching the mask material and depositing a silicon-and-oxygen-containing material on the mask material with the plasma effluents.Type: ApplicationFiled: August 16, 2023Publication date: February 20, 2025Applicant: Applied Materials, Inc.Inventors: Hanbyul Jin, Sangjun Park, Menghui Li, Xiawan Yang, Sunil Srinivasan, Meishen Liu, Andrew Butler, Qian Fu
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Patent number: 12230479Abstract: Provided is a processing chamber configured to contain a semiconductor substrate in a processing region of the chamber. The processing chamber includes a remote plasma unit and a direct plasma unit, wherein one of the remote plasma unit or the direct plasma unit generates a remote plasma and the other of the remote plasma unit or the direct plasma unit generates a direct plasma. The combination of a remote plasma unit and a direct plasma unit is used to remove, etch, clean, or treat residue on a substrate from previous processing and/or from native oxide formation. The combination of a remote plasma unit and direct plasma unit is used to deposit thin films on a substrate.Type: GrantFiled: March 8, 2024Date of Patent: February 18, 2025Assignee: Applied Materials, Inc.Inventors: Kazuya Daito, Yi Xu, Yu Lei, Takashi Kuratomi, Jallepally Ravi, Pingyan Lei, Dien-Yeh Wu
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Patent number: 12228905Abstract: Technologies directed to an eco-efficiency monitoring and exploration platform for semiconductor manufacturing. One method includes receiving, by a processing device, first data indicating an update to a substrate fabrication system having a first configuration of manufacturing equipment and operating to one or more process procedures. The method further includes determining, by the processing device, using the first data with a digital replica, environmental resource data. The digital replica includes a digital reproduction of the substrate fabrication system. The environmental resource usage data indicates an environment resource consumption that corresponds to performing the one or more process procedures by the substrate fabrication system incorporating the update. The method further includes providing, by the processing device, the environmental resource usage data for display on a graphical user interface (GUI).Type: GrantFiled: December 10, 2021Date of Patent: February 18, 2025Assignee: Applied Materials, Inc.Inventors: Ala Moradian, Umesh Madhav Kelkar, Elizabeth Neville, Orlando Trejo, Sergey Meirovich, Kartik B. Shah, Shreyas Suresh Kher
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Patent number: 12228534Abstract: Embodiments disclosed herein include gas concentration sensors, and methods of using such gas concentration sensors. In an embodiment, a gas concentration sensor comprises a first electrode. In an embodiment the first electrode comprises first fingers. In an embodiment, the gas concentration sensor further comprises a second electrode. In an embodiment, the second electrode comprises second fingers that are interdigitated with the first fingers.Type: GrantFiled: March 13, 2024Date of Patent: February 18, 2025Assignee: Applied Materials, Inc.Inventors: Xiaopu Li, Kallol Bera, Yaoling Pan, Kelvin Chan, Amir Bayati, Philip Allan Kraus, Kenric T. Choi, William John Durand
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Patent number: 12229940Abstract: Embodiments of the present disclosure relate to optical devices for augmented, virtual, and/or mixed reality applications. In one or more embodiments, an optical device metrology system is configured to measure a plurality of first metrics and one or more second metrics for optical devices, the one or more second metrics including a display leakage metric.Type: GrantFiled: October 4, 2021Date of Patent: February 18, 2025Assignee: Applied Materials, Inc.Inventors: Yangyang Sun, Jinxin Fu, Kazuya Daito, Ludovic Godet