Patents by Inventor Jian-Yu Li

Jian-Yu 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: 20240119213
    Abstract: A method includes designing a plurality of cells for a semiconductor device, wherein designing the plurality of cells comprises reserving a routing track of a plurality of routing tracks within each of the plurality of cells, wherein each of the plurality of cells comprises signal lines, and the reserved routing track is free of the signal lines. The method includes placing a first cell and a second cell of the plurality of cells in a layout of the semiconductor device. The method includes determining whether any power rails overlap with any of the plurality of routing tracks other than the reserved routing track in the second cell. The method includes adjusting a distance between the first cell and the second cell in response to a determination that at least one power rail overlaps with at least one routing track other than the reserved routing track.
    Type: Application
    Filed: December 19, 2023
    Publication date: April 11, 2024
    Inventors: Jian-Sing LI, Jung-Chan YANG, Ting Yu CHEN, Ting-Wei CHIANG
  • Publication number: 20240088126
    Abstract: A method includes creating a layout design of the integrated circuit after determining a difference between the poly extension effect of a p-type transistor and the poly extension effect of an n-type transistor. Creating the layout design includes forming first-type active zone patterns, forming second-type active zone patterns, generating a gate-strip pattern, and positioning the gate-strip pattern over the first-type active zone patterns and the second-type active zone patterns. Creating the layout design also includes determining whether to generate one or more poly cut patterns that intersect the gate-strip, based on the difference between the poly extension effect of a p-type transistor and the poly extension effect of an n-type transistor.
    Type: Application
    Filed: November 22, 2023
    Publication date: March 14, 2024
    Inventors: Jian-Sing LI, Chi-Yu LU, Hui-Zhong ZHUANG, Chih-Liang CHEN
  • Patent number: 8971388
    Abstract: An RF receiver/transmitter apparatus for carrier aggregation is disclosed, to provide a routing circuitry formed by a plurality of mixer modules for achieving both the function of carrier aggregation and the mixing frequency process of signals. This architecture allows sharing an RF front-end, improving degree of integration, and reducing hardware cost and circuitry power consumption. In addition, in the process of reception and transmission, the apparatus may perform different processing and configuration for each sub-channel to increase circuit design flexibility. The receiver apparatus includes at least one antenna, a first signal processing unit, a routing mixer device, a second signal processing unit and a digital signal processor (DSP); and the routing mixer device includes a plurality of mixer module and a plurality of current/voltage adders to achieve signal routing control through opening or closing of the mixer, switching the signal transmission path or switching the signal synthesizer.
    Type: Grant
    Filed: April 26, 2013
    Date of Patent: March 3, 2015
    Assignee: Industrial Technology Research Institute
    Inventors: Chia-Hao Tu, Chang-Ming Lai, Jian-Yu Li
  • Publication number: 20140169418
    Abstract: An RF receiver/transmitter apparatus for carrier aggregation is disclosed, to provide a routing circuitry formed by a plurality of mixer modules for achieving both the function of carrier aggregation and the mixing frequency process of signals. This architecture allows sharing an RF front-end, improving degree of integration, and reducing hardware cost and circuitry power consumption. In addition, in the process of reception and transmission, the apparatus may perform different processing and configuration for each sub-channel to increase circuit design flexibility. The receiver apparatus includes at least one antenna, a first signal processing unit, a routing mixer device, a second signal processing unit and a digital signal processor (DSP); and the routing mixer device includes a plurality of mixer module and a plurality of current/voltage adders to achieve signal routing control through opening or closing of the mixer, switching the signal transmission path or switching the signal synthesizer.
    Type: Application
    Filed: April 26, 2013
    Publication date: June 19, 2014
    Applicant: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    Inventors: Chia-Hao TU, Chang-Ming Lai, Jian-Yu Li
  • Patent number: 8422539
    Abstract: A multi-carrier receiver, multi-carrier transmitter and a multi-carrier transceiver system are provided. The multi-carrier receiver includes a first processing unit, a router and a second processing unit. The first processing unit has M first processing paths, applies intensity processing on at least a RF signal for outputting sub-carrier signals. The router has M input terminals and N output terminals, where the M input terminals are respectively coupled to the M first processing paths and receive the sub-carrier signals. The router outputs the sub-carrier signals to the N output terminals and the received signal at each output terminal of the router includes the sub-carrier signal at each input terminal. The second processing unit has N second processing paths respectively coupled to the N output terminals for demodulating the sub-carrier signals and applies an analog-to-digital conversion on the demodulated signals for generating digital signals, where M and N are greater than 0.
    Type: Grant
    Filed: July 1, 2011
    Date of Patent: April 16, 2013
    Assignee: Industrial Technology Research Institute
    Inventors: Chang-Ming Lai, Ping-Hsun Wu, Jian-Yu Li
  • Patent number: 8396099
    Abstract: A multi-carrier receiver, multi-carrier transmitter and a multi-carrier transceiver system are provided. The multi-carrier receiver includes at least a first processing unit, a routed switch and a second processing unit. The first processing unit has M first processing paths, performs intensity processing to at least one RF signal for outputting sub-carrier signals. The routed switch has M input terminals and N output terminals, where the M input terminals are respectively coupled to the M first processing paths and receive the sub-carrier signals. The routed switch connects each input terminal to at least one output terminal or none of the output terminals according to a control signal. The second processing unit has N second processing paths respectively coupled to the N output terminals for demodulating the sub-carrier signals and performing an analog-to-digital conversion to the demodulated signals for generating digital signals, where M and N are greater than 0.
    Type: Grant
    Filed: September 24, 2010
    Date of Patent: March 12, 2013
    Assignee: Industrial Technology Research Institute
    Inventors: Chang-Ming Lai, Ping-Hsun Wu, Jian-Yu Li
  • Publication number: 20120044976
    Abstract: A multi-carrier receiver, multi-carrier transmitter and a multi-carrier transceiver system are provided. The multi-carrier receiver includes a first processing unit, a router and a second processing unit. The first processing unit has M first processing paths, applies intensity processing on at least a RF signal for outputting sub-carrier signals. The router has M input terminals and N output terminals, where the M input terminals are respectively coupled to the M first processing paths and receive the sub-carrier signals. The router outputs the sub-carrier signals to the N output terminals and the received signal at each output terminal of the router includes the sub-carrier signal at each input terminal. The second processing unit has N second processing paths respectively coupled to the N output terminals for demodulating the sub-carrier signals and applies an analog-to-digital conversion on the demodulated signals for generating digital signals, where M and N are greater than 0.
    Type: Application
    Filed: July 1, 2011
    Publication date: February 23, 2012
    Applicant: Industrial Technology Research Institute
    Inventors: Chang-Ming Lai, Ping-Hsun Wu, Jian-Yu Li
  • Publication number: 20120044975
    Abstract: A multi-carrier receiver, multi-carrier transmitter and a multi-carrier transceiver system are provided. The multi-carrier receiver includes at least a first processing unit, a routed switch and a second processing unit. The first processing unit has M first processing paths, performs intensity processing to at least one RF signal for outputting sub-carrier signals. The routed switch has M input terminals and N output terminals, where the M input terminals are respectively coupled to the M first processing paths and receive the sub-carrier signals. The routed switch connects each input terminal to at least one output terminal or none of the output terminals according to a control signal. The second processing unit has N second processing paths respectively coupled to the N output terminals for demodulating the sub-carrier signals and performing an analog-to-digital conversion to the demodulated signals for generating digital signals, where M and N are greater than 0.
    Type: Application
    Filed: September 24, 2010
    Publication date: February 23, 2012
    Applicant: INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    Inventors: Chang-Ming Lai, Ping-Hsun Wu, Jian-Yu Li
  • Publication number: 20070018718
    Abstract: The microwave transmitter of the present invention can perform two-terminal dynamic modulation with respect to the voltage supply terminal and the RF input terminal of a RF power amplifier. The microwave transmitter of the present invention comprises a first modulator and a second modulator. The first modulator uses the baseband digital delta-sigma modulation technique to process the envelope signal and outputs this signal to the voltage supply terminal of the RF power amplifier as a supply voltage. The second modulator uses the baseband digital pre-distortion technique to process the IQ-modulated carrier and outputs this signal to the RF input terminal of the RF power amplifier as a RF input signal. Thereby, the RF power amplifier can highly efficiently reconstruct the power-amplified RF modulated carrier without distortion at the RF output terminal.
    Type: Application
    Filed: June 19, 2006
    Publication date: January 25, 2007
    Applicants: National Sun Yat-sen University, Industrial Technology Research Institute
    Inventors: Tzyy-Sheng Horng, Yuan Chen, Je-Kuan Jau, Jian-Yu Li, Chang-Ming Lai