Patents by Inventor Yigang Wang

Yigang Wang 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: 11966683
    Abstract: A method and a system for comprehensively evaluating reliability of a multi-chip parallel IGBT module are provided. The method includes: establishing a gate-emitter voltage reliability model of the multi-chip parallel IGBT module, performing a chip fatigue failure test, and selecting a gate-emitter voltage as a failure characteristic quantity; establishing a transconductance reliability model of the multi-chip parallel IGBT module, performing a bonding wire shedding failure test, and selecting a transmission characteristic curve of the module as a failure characteristic quantity; using a Pearson correlation coefficient to characterize a degree of health of the IGBT module, and respectively calculating degrees of health PPMCCC and PPMCCB in different degrees of chip fatigue and bonding wire shedding failure states; and comprehensively evaluating the reliability of the multi-chip parallel IGBT module according to PPMCCC and PPMCCB.
    Type: Grant
    Filed: October 18, 2021
    Date of Patent: April 23, 2024
    Assignee: WUHAN UNIVERSITY
    Inventors: Yigang He, Chenyuan Wang, Lie Li, Bolun Du, Hui Zhang, Liulu He
  • Patent number: 11953538
    Abstract: A method and system for predicting an insulated gate bipolar transistor (IGBT) lifetime based on compound failure mode coupling are provided. First, a simultaneous failure probability model of a bonding wire and a solder layer is calculated. Next, expectancy of the simultaneous failure probability model is calculated and recorded as a lifetime under a coupling effect. A coupling function relation is established. A lifetime of the solder layer and a lifetime of the bonding wire are predicted. An IGBT lifetime prediction model not taking the coupling effect into account is established. An IGBT lifetime prediction model taking the coupling effect into account is established. In the disclosure, the lifetime of the IGBT module under the coupling effect of the solder layer and the bonding wire may be accurately predicted.
    Type: Grant
    Filed: October 8, 2021
    Date of Patent: April 9, 2024
    Assignee: WUHAN UNIVERSITY
    Inventors: Yigang He, Lie Li, Liulu He, Xiao Wang
  • Patent number: 11947233
    Abstract: Various embodiments relate to an electrochromic (EC) device that is structured with surface contour features arranged according to a randomized pattern. For example, one or more conductive layers of an EC device may be structured with such surface ablations. In some embodiments, the randomized ablation pattern may comprise a randomized variation in one or more geometrical characteristics of a group of segments. In some examples, the geometrical characteristic(s) may include a distance characteristic, an orientation characteristic, and/or a shape characteristic, etc. According to various embodiments, the randomized ablation pattern may be configured to reduce diffraction and/or scatter of light incident on the surface ablations as compared to some other ablation patterns.
    Type: Grant
    Filed: December 28, 2020
    Date of Patent: April 2, 2024
    Assignee: SAGE Electrochromics, Inc.
    Inventors: Benjamin Treml, Jean-Christophe Giron, Yigang Wang, Robert Newcomb
  • Patent number: 11947235
    Abstract: A method of operating an electrochromic device comprising: coupling a logic device to the electrochromic device; applying a voltage to the electrochromic device; receiving a current from the electrochromic device in response to the provided voltage; and with the logic device, determining an exact operating condition of the electrochromic device from the received current. A method of operating a plurality of electrochromic devices comprising: adjusting a frequency of voltage applied to the plurality of electrochromic devices, wherein each of the plurality of electrochromic devices is adjusted by a different frequency; measuring a duration of time required to change tint states of each of the electrochromic devices; and identifying a location of each of the plurality of electrochromic devices in response to the measured duration of time required to change the tint states of each of the electrochromic device.
    Type: Grant
    Filed: January 10, 2023
    Date of Patent: April 2, 2024
    Assignee: SAGE ELECTROCHROMICS, INC.
    Inventors: Yigang Wang, Bryan D. Greer, Peter E. Bocek, Jean-Christophe Giron, Thomas Doublein
  • Patent number: 11943105
    Abstract: Embodiments of the present disclosure relate to a method, apparatus, device and computer readable storage media for management of application servers network edge computing device and a method, apparatus, device and computer readable storage media for performing management operation related to application servers network edge computing device. In example embodiments, at a management function module, a calling function deployment command is transmitted to a network edge computing device to deploy a calling function instance thereon, the calling function instance being configured to connect with application servers for respective applications and handle communications between terminal devices and the application server. A management command for application servers on the network edge computing device is transmitted to at least one of the network edge computing device and the calling function instance, in response to a network condition meeting one of predetermined management policies.
    Type: Grant
    Filed: June 15, 2018
    Date of Patent: March 26, 2024
    Assignee: NOKIA TECHNOLOGIES OY
    Inventors: Jiongxuan Chen, Zhi Wang, Yigang Cai
  • Publication number: 20240086244
    Abstract: A scheduling method performed by a computing device that includes a plurality of processors, a type of at least one instruction set of instruction sets supported by at least one of the plurality of processors is different from a type of an instruction set of instruction sets supported by another processor, where the scheduling method includes obtaining a type of an instruction set of an application, selecting a target processor from the plurality of processors, where the type of the instruction set of the application is a subset of types of a plurality of instruction sets of instruction sets supported by the target processor, and allocating the application to the target processor for execution.
    Type: Application
    Filed: November 21, 2023
    Publication date: March 14, 2024
    Inventors: Yigang Zhou, Yongnian Le, Haicheng Li, Kebing Wang
  • Patent number: 11913986
    Abstract: A reliability evaluation method and system for a microgrid inverter IGBT based on segmented long short-term memory (LSTM) is disclosed, including steps as follows. An electrothermal coupling model is constructed to obtain real-time junction temperature data. The original LSTM algorithm is improved to obtain a segmented LSTM prediction network for the aging characteristics of the IGBT. The monitoring value of the IGBT aging parameter is used to perform segmented LSTM prediction to obtain the predicted aging process, and the threshold values of different aging stages are categorized. An aging correction is performed on the aging parameter of the electrothermal coupling model to ensure the accuracy of the junction temperature data. Rainflow-counting algorithm is used to calculate real-time thermal stress load distribution of the IGBT. The fatigue damage theory and the Lesit life prediction model are combined to calculate the real-time cumulative damage and predicted life of the IGBT.
    Type: Grant
    Filed: October 8, 2021
    Date of Patent: February 27, 2024
    Assignee: WUHAN UNIVERSITY
    Inventors: Yigang He, Chuankun Wang, Chenyuan Wang, Lie Li
  • Publication number: 20240003840
    Abstract: A method implemented by a system for manufacturing a device having a coated transparent substrate is provided. The method includes providing the device having a transparent substrate. The method also includes coating the transparent substrate with a first transparent conductive oxide (TCO) layer in accordance with one or more parameters. The coating the transparent substrate comprises performing a physical deposition process on the transparent substrate. The method further includes determining a resistance across the first TCO layer. In addition, the method includes determining whether the resistance across the first TCO layer is within a resistance range. The method also includes in response to determining that the resistance across the first TCO layer is within the resistance range, coating the device with a second TCO layer in accordance with the one or more parameters to provide a resistance across the second TCO layer that is within the resistance range.
    Type: Application
    Filed: June 23, 2023
    Publication date: January 4, 2024
    Applicant: SAGE Electrochromics, Inc.
    Inventors: Yan Wang, Frank McGrogan, Bolei Di, Yigang Wang
  • Patent number: 11675243
    Abstract: An apparatus can include an electrochromic device. When using the apparatus, the electrochromic device can be switched from a first transmission state to a continuously graded state and maintained at continuously graded transmission state. An apparatus can include an active stack with a first transparent conductive layer, a second transparent conductive layer, an anodic electrochemical layer between the first and the second transparent conductive layers, and a cathodic electrochemical layer between the first and the second transparent conductive layers. The apparatus can further include a first bus bar electrically coupled to the first transparent conductive layer, a second bus bar electrically coupled to the second transparent conductive layer, where the second bus bar is generally non-parallel to the first bus bar, and a third bus bar electrically coupled to the first transparent conductive layer, where the third bus bar is generally parallel to the first bus bar.
    Type: Grant
    Filed: July 1, 2022
    Date of Patent: June 13, 2023
    Assignee: SAGE ELECTROCHROMICS, INC.
    Inventors: Yigang Wang, Jean-Christophe Giron, Bryan D. Greer
  • Publication number: 20230168559
    Abstract: Various embodiments disclosed herein relate to techniques for simultaneously designing optical and electrical properties of an electrochromic device by tuning specific parameters of the electrochromic device. One or more models representing respective relationships of the optical and electrical properties with respect to the individual ones of the parameters of the device may be obtained. Given specific values of the optical and/or electrical properties, at least one of the parameters may be adjusted to simultaneously control the optical and electrical properties according to the given specific values.
    Type: Application
    Filed: November 1, 2022
    Publication date: June 1, 2023
    Applicant: SAGE Electrochromics, Inc.
    Inventors: Hannah Leung Ray, Wen Li, Theo Chevallier, Frank McGrogan, Yigang Wang, Chloe Bouard, Amaury Patissier, Elsa Perrin, Shefali Panse, Marie-Caroline Solignac
  • Publication number: 20230161214
    Abstract: A method of operating an electrochromic device comprising: coupling a logic device to the electrochromic device; applying a voltage to the electrochromic device; receiving a current from the electrochromic device in response to the provided voltage; and with the logic device, determining an exact operating condition of the electrochromic device from the received current. A method of operating a plurality of electrochromic devices comprising: adjusting a frequency of voltage applied to the plurality of electrochromic devices, wherein each of the plurality of electrochromic devices is adjusted by a different frequency; measuring a duration of time required to change tint states of each of the electrochromic devices; and identifying a location of each of the plurality of electrochromic devices in response to the measured duration of time required to change the tint states of each of the electrochromic device.
    Type: Application
    Filed: January 10, 2023
    Publication date: May 25, 2023
    Inventors: Yigang WANG, Bryan D. Greer, Peter E. Bocek, Jean-Christophe Giron, Thomas Doublein
  • Publication number: 20230082345
    Abstract: An apparatus can include an electrochromic device configured to be maintained a continuously graded transmission state. When using the apparatus, the electrochromic device can be switched from a first transmission state to a continuously graded transmission state and maintained in the continuously graded transmission state. The current during switching can be higher than current during maintaining the continuously graded transmission state. In an embodiment, the grading can be reversed to provide a mirror image of the grading. In another embodiment, at least 27% and up to 100% of the electrochromic device can be in a continuously graded transmission state. The control device can be located within an insulating glass unit, adjacent to the insulating glass unit, or remotely from the insulating glass unit. In a further embodiment, a gap between bus bars can be used to form a portion of the electrochromic device that can be continuously graded.
    Type: Application
    Filed: October 19, 2022
    Publication date: March 16, 2023
    Inventors: Yigang WANG, Bryan D. GREER
  • Publication number: 20230044646
    Abstract: An apparatus including a substrate with at least three sides and an active stack on the substrate. The active stack can include a first transparent conductive layer, a second transparent conductive layer, an anodic electrochemical layer, and a cathodic electrochemical layer. The apparatus can also include a first bus bar set comprising a plurality of bus bars, wherein each bus bar of the first bus bar set is electrically coupled to the first transparent conductive layer, a second bus bar set comprising a plurality of bus bars, wherein each bus bar of the second bus bar set is electrically coupled to the second transparent conductive layer, and a bus bar arrangement wherein the bus bar arrangement comprises a bus bar from the first bus bar set and a bus bar from the second bus bar set on at least three sides of the substrate.
    Type: Application
    Filed: August 12, 2022
    Publication date: February 9, 2023
    Inventors: Yigang WANG, Cody VanDerVeen, Peter BOCEK
  • Patent number: 11567386
    Abstract: A method of operating an electrochromic device comprising: coupling a logic device to the electrochromic device; applying a voltage to the electrochromic device; receiving a current from the electrochromic device in response to the provided voltage; and with the logic device, determining an exact operating condition of the electrochromic device from the received current. A method of operating a plurality of electrochromic devices comprising: adjusting a frequency of voltage applied to the plurality of electrochromic devices, wherein each of the plurality of electrochromic devices is adjusted by a different frequency; measuring a duration of time required to change tint states of each of the electrochromic devices; and identifying a location of each of the plurality of electrochromic devices in response to the measured duration of time required to change the tint states of each of the electrochromic device.
    Type: Grant
    Filed: October 4, 2019
    Date of Patent: January 31, 2023
    Assignee: SAGE ELECTROCHROMICS, INC.
    Inventors: Yigang Wang, Bryan D. Greer, Peter Bocek, Jean-Christophe Giron, Thomas Doublein
  • Publication number: 20230013577
    Abstract: An electrochemical device and method of forming said device is disclosed. The method can include providing a substrate and stack overlying the substrate. The stack can include a first transparent conductive layer over the substrate, a cathodic electrochemical layer over the first transparent conductive layer, an anodic electrochemical layer over the electrochromic layer, and a second transparent conductive layer overlying the anodic electrochemical layer. The method can include depositing an insulating layer over the stack and determining a first pattern for the second transparent conductive layer. The first pattern can include a first region and a second region. The first region and the second region can be the same material. The method can include patterning the first region of the second transparent conductive layer without removing the material from the first region. The first region can have a first resistivity and the second region can have a second resistivity.
    Type: Application
    Filed: September 22, 2022
    Publication date: January 19, 2023
    Inventors: Yigang Wang, Jean-Christophe Giron, Bryan D. Greer, Sebastian Marius Sarrach, Thomas Doublein
  • Publication number: 20220404676
    Abstract: When transitioning an electrochromic (EC) device between two tint levels, a control unit may repeatedly adjust an applied voltage based on a stack voltage of the EC device. The stack voltage of the EC device may be measured and compared to a reference or target stack voltage. The stack voltage may be measured in any of various methods, such as by measuring it directly, via a measured equivalent series resistance, or via an open circuit voltage measurement. The applied voltage may then be changed or adjusted based on the measured stack voltage and the comparison of the stack voltage to the reference value. This process may be repeated multiple times and may essentially be performed continually until the stack voltage attains the desired level or at least attains a level within a predetermine threshold of the desired level.
    Type: Application
    Filed: May 31, 2022
    Publication date: December 22, 2022
    Applicant: SAGE Electrochromics, Inc.
    Inventors: Yigang Wang, Bolei Di, Louis Jovelet-Laplace
  • Publication number: 20220376499
    Abstract: A system and method for optimizing power grid operations and enhancing the life of switching components therein is provided. Current meteorological information of a region of operation of the power grid is collected during operation thereof, along with historical meteorological data of the region. A plurality of prediction models are executed using the current meteorological information and/or the historical meteorological data and a meteorological parameter of the region is forecast by selectively combining outputs of at least some of the executed prediction models, the meteorological parameter being a parameter that causes a renewable energy source in the power grid to generate power.
    Type: Application
    Filed: December 28, 2020
    Publication date: November 24, 2022
    Inventors: Fiaz Shaik, Aaditya Kurde, Sreejith Chakkalakkal, Yigang Wang
  • Publication number: 20220364090
    Abstract: Inhibitors of miRNA-128 capable of promoting cardiomyocyte mitotic cell proliferation and methods effective for regeneration of heart tissue.
    Type: Application
    Filed: May 17, 2022
    Publication date: November 17, 2022
    Inventors: Yigang Wang, Wei Huang
  • Patent number: 11500258
    Abstract: An apparatus can include an electrochromic device configured to be maintained a continuously graded transmission state. When using the apparatus, the electrochromic device can be switched from a first transmission state to a continuously graded transmission state and maintained in the continuously graded transmission state. The current during switching can be higher than current during maintaining the continuously graded transmission state. In an embodiment, the grading can be reversed to provide a mirror image of the grading. In another embodiment, at least 27% and up to 100% of the electrochromic device can be in a continuously graded transmission state. The control device can be located within an insulating glass unit, adjacent to the insulating glass unit, or remotely from the insulating glass unit. In a further embodiment, a gap between bus bars can be used to form a portion of the electrochromic device that can be continuously graded.
    Type: Grant
    Filed: December 20, 2017
    Date of Patent: November 15, 2022
    Assignee: SAGE ELECTROCHROMICS, INC.
    Inventors: Yigang Wang, Bryan D. Greer
  • Publication number: 20220350216
    Abstract: An apparatus can include an electrochromic device. When using the apparatus, the electrochromic device can be switched from a first transmission state to a continuously graded state and maintained at continuously graded transmission state. An apparatus can include an active stack with a first transparent conductive layer, a second transparent conductive layer, an anodic electrochemical layer between the first and the second transparent conductive layers, and a cathodic electrochemical layer between the first and the second transparent conductive layers. The apparatus can further include a first bus bar electrically coupled to the first transparent conductive layer, a second bus bar electrically coupled to the second transparent conductive layer, where the second bus bar is generally non-parallel to the first bus bar, and a third bus bar electrically coupled to the first transparent conductive layer, where the third bus bar is generally parallel to the first bus bar.
    Type: Application
    Filed: July 1, 2022
    Publication date: November 3, 2022
    Inventors: Yigang WANG, Jean-Christophe GIRON, Bryan D. GREER