Patents by Inventor Le Li

Le Li 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: 20190382196
    Abstract: The present invention discloses a trash bag assembly, a trash bag fitting device and a smart trash receptacle. The trash bag assembly includes a storage body and a lid. The storage body defines a first opening and an annular trough extending externally around the first opening and configured to receive a trash bag. The lid defines a second opening corresponding to the first opening and is configured to cover an open end of the annular trough so as to form, together with one side wall of the annular trough, a gap serving as a bag exit. The trash bag fitting device is configured to fit a trash bag into a main body of a trash receptacle and includes a vacuum assembly and a motor for driving the vacuum assembly. The vacuum assembly includes an air inlet and an air outlet. The air inlet communicates with an air vent in an inner wall of the main body, with the air outlet in communication with the outside of the main body of the trash receptacle.
    Type: Application
    Filed: November 21, 2018
    Publication date: December 19, 2019
    Applicant: SHANGHAI TOWNEW INTELLIGENT TECHNOLOGY CO., LTD.
    Inventors: Jianxiang LI, Le LI
  • Patent number: 10505452
    Abstract: A frequency control circuit, applied in a switching converter, can be configured to: regulate an off time of a power transistor of the switching converter in one switching cycle according to an on time of the power transistor, or regulate the on time of the power transistor in one switching cycle according to the off time of the power transistor; and maintain an operating frequency of the switching converter to be within a predetermined range.
    Type: Grant
    Filed: November 8, 2018
    Date of Patent: December 10, 2019
    Assignee: Silergy Semiconductor Technology (Hangzhou) LTD
    Inventors: Hao Chen, Le Li, Xinlei Li
  • Publication number: 20190265830
    Abstract: A touch control device with ESD protection includes a touch display panel, a switching unit, a touch electrode and a ground electrode. An ESD protection electrode is provided around at least one periphery of the touch display panel. A scanning period of the ESD protection electrode is divided into touch periods and ESD periods. When the scanning period of the ESD protection electrode is during the touch periods, the ESD protection electrode is used as touch electrodes for sensing touch events made by a user on the touch display panel. When the scanning period of the ESD protection electrode is during the ESD periods, the ESD protection electrode is used as ESD protection electrodes for dissipating ESD on the touch display panel in order to protect signal elements inside the touch display panel. The ESD protection electrode is therefore used for not only ESD protection, but also touch sensing.
    Type: Application
    Filed: February 27, 2018
    Publication date: August 29, 2019
    Inventors: Chien-Hsun Chen, Yung-Cheng Tsai, Chien-Le Li, Shih-Hong Jhang, You-Hong Jhang
  • Patent number: 10312815
    Abstract: A control circuit can include: a blanking time control circuit configured to generate a blanking control signal according to a peak current of a main switch of a power stage circuit of a flyback converter; a sampling time control circuit configured to generate a sampling time control signal according to the blanking control signal and a feedback voltage signal; and a voltage detection circuit configured to receive the feedback voltage signal and the sampling time control signal, and to determine the time of detecting the feedback voltage signal according to the sampling time control signal to obtain a detection signal for controlling the main switch, where the voltage detection circuit stops detecting the feedback voltage signal when the blanking control signal is active, and the period during which the blanking control signal is active is adjustable along with the peak current.
    Type: Grant
    Filed: May 1, 2018
    Date of Patent: June 4, 2019
    Assignee: Silergy Semiconductor Technology (Hangzhou) LTD
    Inventors: Zhiliang Hu, Yongjiang Bai, Qiukai Huang, Le Li
  • Publication number: 20190153502
    Abstract: A system and method for antibiotic susceptibility testing efficiently determines whether bacteria are alive or have been killed by antibiotic treatment. The antibiotic susceptibility testing device includes at least one reservoir into which a bacteria solution is introduced and a microfluidic channel connected to the reservoir, wherein the cross-sectional size of the microfluidic channel is selected to be comparable to the size of the bacterium to be tested. Furthermore, the electrical resistance or voltage signal across the microchannel is monitored as bacteria swim into and out of the channel. Alternatively, a small population of bacteria can be immobilized in the microchannel. The resistance or voltage signal fluctuates when the bacteria are alive and moving in and out of the channel or wiggling on the microchannel walls. If the bacteria are dead, they have limited motility and the signal fluctuations are significantly smaller.
    Type: Application
    Filed: January 17, 2019
    Publication date: May 23, 2019
    Applicant: TRUSTEES OF BOSTON UNIVERSITY
    Inventors: Kamil EKINCI, Le LI, Chuanhua DUAN, Vural KARA, Deborah STEARNS-KUROSAWA
  • Publication number: 20190149046
    Abstract: A frequency control circuit, applied in a switching converter, can be configured to: regulate an off time of a power transistor of the switching converter in one switching cycle according to an on time of the power transistor, or regulate the on time of the power transistor in one switching cycle according to the off time of the power transistor; and maintain an operating frequency of the switching converter to be within a predetermined range.
    Type: Application
    Filed: November 8, 2018
    Publication date: May 16, 2019
    Inventors: Hao Chen, Le Li, Xinlei Li
  • Patent number: 10214763
    Abstract: A system and method for antibiotic susceptibility testing efficiently determines whether bacteria are alive or have been killed by antibiotic treatment. The antibiotic susceptibility testing device includes at least one reservoir into which a bacteria solution is introduced and a microfluidic channel connected to the reservoir, wherein the cross-sectional size of the microfluidic channel is selected to be comparable to the size of the bacterium to be tested. Furthermore, the electrical resistance or voltage signal across the microchannel is monitored as bacteria swim into and out of the channel. Alternatively, a small population of bacteria can be immobilized in the microchannel. The resistance or voltage signal fluctuates when the bacteria are alive and moving in and out of the channel or wiggling on the microchannel walls. If the bacteria are dead, they have limited motility and the signal fluctuations are significantly smaller.
    Type: Grant
    Filed: February 2, 2018
    Date of Patent: February 26, 2019
    Assignee: TRUSTEES OF BOSTON UNIVERSITY
    Inventors: Kamil Ekinci, Le Li, Chuanhua Duan, Vural Kara, Deborah Stearns-Kurosawa
  • Publication number: 20180357787
    Abstract: A method for extracting a center position of an infrared spot is disclosed. The method includes: acquiring, by an electronic device, an image, wherein the image includes an infrared spot; denoising, by the electronic device, the image; binarizing, by the electronic device, the denoised image; extracting, by the electronic device, a connected component of the infrared spot in the binarized image, wherein the connected component includes a plurality of pixel intensities and pixel positions of the infrared spot; and calculating, by the electronic device, the center position of the infrared spot based on the extracted connected component.
    Type: Application
    Filed: August 21, 2018
    Publication date: December 13, 2018
    Inventors: Kun Zhou, Le Li, Zeming Lin
  • Publication number: 20180254702
    Abstract: A control circuit for driving a power switch in a switching power supply can include: a start-up transistor having a drain coupled to a drain of the power switch, and a source coupled to a drain voltage detecting circuit; a gate voltage detecting circuit configured to detect a gate voltage of the power switch, to compare the gate voltage against a first threshold voltage, and to change an on drive current and an off drive current in response thereto; and the drain voltage detecting circuit being configured to detect a drain voltage of the power switch, to compare the drain voltage against a second threshold voltage, and to change the on drive current and the off drive current in response thereto.
    Type: Application
    Filed: May 4, 2018
    Publication date: September 6, 2018
    Inventors: Shaobin Zhang, Le Li, Zhiliang Hu, Yongjiang Bai
  • Publication number: 20180248486
    Abstract: A control circuit can include: a blanking time control circuit configured to generate a blanking control signal according to a peak current of a main switch of a power stage circuit of a flyback converter; a sampling time control circuit configured to generate a sampling time control signal according to the blanking control signal and a feedback voltage signal; and a voltage detection circuit configured to receive the feedback voltage signal and the sampling time control signal, and to determine the time of detecting the feedback voltage signal according to the sampling time control signal to obtain a detection signal for controlling the main switch, where the voltage detection circuit stops detecting the feedback voltage signal when the blanking control signal is active, and the period during which the blanking control signal is active is adjustable along with the peak current.
    Type: Application
    Filed: May 1, 2018
    Publication date: August 30, 2018
    Inventors: Zhiliang Hu, Yongjiang Bai, Qiukai Huang, Le Li
  • Publication number: 20180175321
    Abstract: A transparent organic light emitting diode (OLED) includes a transparent substrate; transparent anodes on the transparent substrate and bridged by an insulating layer; at least an isolation pillar provided above the insulating layer; an organic light emitting layer coated on the surfaces of the transparent anodes and the isolation pillars; and a metal cathode coated on the surfaces of the organic light emitting layer on the transparent anodes. When light passes through the transparent OLED, only the areas where the metal cathode is coated will affect the light transmittance, and the rest of the areas not coated with the metal cathode may maintain a better transmittance. By reducing the coating area of the metal cathode, the transparent OLED is able to increase its transmittance accordingly.
    Type: Application
    Filed: December 14, 2017
    Publication date: June 21, 2018
    Inventors: Chih-Hsien Yuan, I-Hsuan Lin, Chien-Le Li, Yung-Cheng Tsai, Chien-Hsun Chen
  • Publication number: 20180155758
    Abstract: A system and method for antibiotic susceptibility testing efficiently determines whether bacteria are alive or have been killed by antibiotic treatment. The antibiotic susceptibility testing device includes at least one reservoir into which a bacteria solution is introduced and a microfluidic channel connected to the reservoir, wherein the cross-sectional size of the microfluidic channel is selected to be comparable to the size of the bacterium to be tested. Furthermore, the electrical resistance or voltage signal across the microchannel is monitored as bacteria swim into and out of the channel. Alternatively, a small population of bacteria can be immobilized in the microchannel. The resistance or voltage signal fluctuates when the bacteria are alive and moving in and out of the channel or wiggling on the microchannel walls. If the bacteria are dead, they have limited motility and the signal fluctuations are significantly smaller.
    Type: Application
    Filed: February 2, 2018
    Publication date: June 7, 2018
    Applicant: TRUSTEES OF BOSTON UNIVERSITY
    Inventors: Kamil Ekinci, Le Li, Chuanhua Duan, Vural Kara, Deborah Stearns-Kurosawa
  • Patent number: 9985533
    Abstract: A control circuit can include: a blanking time control circuit configured to generate a blanking control signal according to a peak current of a main switch of a power stage circuit of a flyback converter; a sampling time control circuit configured to generate a sampling time control signal according to the blanking control signal and a feedback voltage signal; and a voltage detection circuit configured to receive the feedback voltage signal and the sampling time control signal, and to determine the time of detecting the feedback voltage signal according to the sampling time control signal to obtain a detection signal for controlling the main switch, where the voltage detection circuit stops detecting the feedback voltage signal when the blanking control signal is active, and the period during which the blanking control signal is active is adjustable along with the peak current.
    Type: Grant
    Filed: January 18, 2017
    Date of Patent: May 29, 2018
    Assignee: Silergy Semiconductor Technology (Hangzhou) LTD
    Inventors: Zhiliang Hu, Yongjiang Bai, Qiukai Huang, Le Li
  • Patent number: 9979292
    Abstract: A control circuit for driving a power switch in a switching power supply can include: a start-up transistor having a drain coupled to a drain of the power switch, and a source coupled to a drain voltage detecting circuit; a gate voltage detecting circuit configured to detect a gate voltage of the power switch, to compare the gate voltage against a first threshold voltage, and to change an on drive current and an off drive current in response thereto; and the drain voltage detecting circuit being configured to detect a drain voltage of the power switch, to compare the drain voltage against a second threshold voltage, and to change the on drive current and the off drive current in response thereto.
    Type: Grant
    Filed: November 11, 2016
    Date of Patent: May 22, 2018
    Assignee: Silergy Semiconductor Technology (Hangzhou) LTD
    Inventors: Shaobin Zhang, Le Li, Zhiliang Hu, Yongjiang Bai
  • Patent number: 9966831
    Abstract: The present disclosure relates to a controller and a controlling method of a switching power supply. The controller of the switching power supply is used for turning on and off a power transistor so that inductor current flows through an inductor which is connected in series with the power transistor. The controller includes a frequency-jittering signal generating circuit, a superimpose circuit and a first comparator. The frequency-jittering signal generating circuit generates a frequency-jittering signal variable over time. The superimpose circuit superimposes the frequency-jittering signal on a sampling signal of the inductor current to generate a superimposed signal. The first comparator compares the superimposed signal with a control voltage to generate an OFF signal for turning off the power transistor. The controller of the switching power supply reduces conducted electromagnetic interference by a frequency-jittering control on the sampling signal of the inductor current.
    Type: Grant
    Filed: November 30, 2015
    Date of Patent: May 8, 2018
    Assignee: SILERGY SEMICONDUCTOR TECHNOLOGY (HANGZHOU) LTD.
    Inventors: Dan Zhang, Zhiliang Hu, Qiukai Huang, Yongjiang Bai, Le Li
  • Publication number: 20180051311
    Abstract: A system and method for antibiotic susceptibility testing efficiently determines whether bacteria are alive or have been killed by antibiotic treatment. The antibiotic susceptibility testing device includes at least one reservoir into which a bacteria solution is introduced and a microfluidic channel connected to the reservoir, wherein the cross-sectional size of the microfluidic channel is selected to be comparable to the size of the bacterium to be tested. Furthermore, the electrical resistance or voltage signal across the microchannel is monitored as bacteria swim into and out of the channel. Alternatively, a small population of bacteria can be immobilized in the microchannel. The resistance or voltage signal fluctuates when the bacteria are alive and moving in and out of the channel or wiggling on the microchannel walls. If the bacteria are dead, they have limited motility and the signal fluctuations are significantly smaller.
    Type: Application
    Filed: August 4, 2017
    Publication date: February 22, 2018
    Applicant: TRUSTEES OF BOSTON UNIVERSITY
    Inventors: Kamil Ekinci, Le Li, Chuanhua Duan, Vural Kara, Deborah Stearns-Kurosawa
  • Patent number: 9835914
    Abstract: According to an embodiment, an electrically switchable mirror includes: a first electrically switchable layer of cholesteric liquid crystal material, the first electrically switchable layer having a first state in which right-handed circularly polarized light incident thereon is reflected and left-handed circularly polarized light incident thereon is transmitted and a second state wherein right-handed and left-handed circularly polarized light incident thereon are transmitted; a second electrically switchable layer of cholesteric liquid crystal material, the second electrically switchable layer having a first state in which left-handed circularly polarized light incident thereon is reflected and right-handed circularly polarized light incident thereon is transmitted and a second state wherein right-handed and left-handed circularly polarized light incident thereon are transmitted; and a first electrically switchable wave plate disposed between the first and second electrically switchable layers.
    Type: Grant
    Filed: February 29, 2016
    Date of Patent: December 5, 2017
    Assignee: The Boeing Company
    Inventors: Mark J. Clemen, Jr., John R. Hull, Philip E. Johnson, Rick L. McGann, George A. Perry, Alan F. Stewart, Mark S. Wilenski, Donald V. Drouin, Jr., Le Li, Yongxin Tang, Haiping Yu, Jiangbin Zhao, Jie Yang, Shenggang Wang
  • Patent number: 9762128
    Abstract: Controlling an isolated converter can include: controlling a first voltage signal across the secondary winding according to a wake-up signal to reflect change of an output voltage of the isolated converter; obtaining a second voltage signal representing the first voltage signal at the primary side; controlling the main power switch according to a detection result of the second voltage signal; generating the wake-up signal according to the output voltage and a first threshold voltage when the isolated converter is in a dynamic loading state of a normal operating mode; generating the wake-up signal according to the output voltage and a second threshold voltage when the isolated converter is in a load steady state of a standby operating mode; and generating the wake-up signal according to the output voltage and a third threshold voltage when the isolated converter is in a dynamic loading state of the standby operating mode.
    Type: Grant
    Filed: April 15, 2016
    Date of Patent: September 12, 2017
    Assignee: Silergy Semiconductor Technology (Hangzhou) LTD
    Inventors: Shaobin Zhang, Yongjiang Bai, Zhiliang Hu, Le Li, Jinping Dong
  • Publication number: 20170248811
    Abstract: According to an embodiment, an electrically switchable mirror includes: a first electrically switchable layer of cholesteric liquid crystal material, the first electrically switchable layer having a first state in which right-handed circularly polarized light incident thereon is reflected and left-handed circularly polarized light incident thereon is transmitted and a second state wherein right-handed and left-handed circularly polarized light incident thereon are transmitted; a second electrically switchable layer of cholesteric liquid crystal material, the second electrically switchable layer having a first state in which left-handed circularly polarized light incident thereon is reflected and right-handed circularly polarized light incident thereon is transmitted and a second state wherein right-handed and left-handed circularly polarized light incident thereon are transmitted; and a first electrically switchable wave plate disposed between the first and second electrically switchable layers.
    Type: Application
    Filed: February 29, 2016
    Publication date: August 31, 2017
    Applicant: The Boeing Company
    Inventors: Mark J. Clemen, JR., John R. Hull, Philip E. Johnson, Rick L. McGann, George A. Perry, Alan F. Stewart, Mark S. Wilenski, Donald V. Drouin, JR., Le Li, Yongxin Tang, Haiping Yu, Jiangbin Zhao, Jie Yang, Shenggang Wang
  • Publication number: 20170214326
    Abstract: A control circuit can include: a blanking time control circuit configured to generate a blanking control signal according to a peak current of a main switch of a power stage circuit of a flyback converter; a sampling time control circuit configured to generate a sampling time control signal according to the blanking control signal and a feedback voltage signal; and a voltage detection circuit configured to receive the feedback voltage signal and the sampling time control signal, and to determine the time of detecting the feedback voltage signal according to the sampling time control signal to obtain a detection signal for controlling the main switch, where the voltage detection circuit stops detecting the feedback voltage signal when the blanking control signal is active, and the period during which the blanking control signal is active is adjustable along with the peak current.
    Type: Application
    Filed: January 18, 2017
    Publication date: July 27, 2017
    Inventors: Zhiliang Hu, Yongjiang Bai, Qiukai Huang, Le Li