Patents by Inventor Jen-Chun Yeh

Jen-Chun Yeh 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: 20240065390
    Abstract: Bands for wearable devices include multiple band retainers used to maintain engagement between an assembly (e.g., a pair) of bands. Some band retainers may be permanently affixed with the band at a certain location of the band, while other band retainers can be removable. The removable band retainers can be moved to different locations of the band, thus allowing the band retainer to retain another band at different locations. As a result, the assembly of bands can be used with different users, and in particular, users with different wrist sizes. Moreover, using multiple band retainers can provide an engagement force between the bands to withstand higher-impact events, such as swimming and diving. Additionally, bands and band retainers may include one or more liquid-resistant and corrosion-resistant materials.
    Type: Application
    Filed: August 18, 2023
    Publication date: February 29, 2024
    Inventors: Nicholas S. Brodine, Molly J. Anderson, Clement C. Tissandier, Osamu Yabe, Mengxi Zhao, Timothy S. Lui, Chia Tse Yeh, Kai-Yu Chung, Jen-Chun Hsu, Tatsuya Sano, Peng Li
  • Patent number: 8310398
    Abstract: To meet the requirements including dual-band, a high gain, and a broadside radiation formation, a dual band planar micro-strip antenna utilizing antenna array is provided. One array element includes a rectangle-shaped micro-strip antenna and an arrow-shaped micro-strip antenna. A first resonant frequency is determined by a length of the rectangle-shaped micro-strip antenna. Slots are dug for satisfying a second resonance frequency. Curved surfaces of the arrow-shaped micro-strip antenna designed according to an ellipse equation so that a frequency resonance is reached under both the first resonant frequency and a second resonant frequency, and a broadside radiation formation is thus generated. A T-shaped jointer distributes power between antenna elements according to the output impedances of the antenna elements. An L-shaped band-stop filter located on the T-shaped jointer is utilized to suppress frequency resonance resulted from multiples of the first resonant frequency.
    Type: Grant
    Filed: November 1, 2009
    Date of Patent: November 13, 2012
    Assignee: RichWave Technology Corp.
    Inventors: Wei-Kung Deng, Shau-Gang Mao, Shiou-Li Chen, Min-Sou Wu, Yu-Zhi Chueh, Jen-Chun Yeh
  • Patent number: 7889136
    Abstract: A micro-strip antenna includes an L-shaped coupler, a set of micro-strip antennas, and an L-shaped band-stop filter. The set of micro-strip antennas includes at least one rectangular micro-strip antenna unit and a micro-strip line. The rectangular micro-strip antenna unit is coupled to the micro-strip line. The micro-strip line is coupled to the first end of the coupler. The band-stop filter is disposed along a corner of the rectangular micro-strip antenna unit, and is disposed between the antenna unit and the coupler without being physically connected to the antenna unit and the coupler. The width, length, and position of the L-shaped band-stop filter can be determined for the specific band-stop frequency and to optimize its coupling extent with the L-shaped coupler.
    Type: Grant
    Filed: May 30, 2008
    Date of Patent: February 15, 2011
    Assignee: RichWave Technology Corp.
    Inventors: Shau-Gang Mao, Shiou-Li Chen, Min-Shou Wu, Yu-Chih Chueh, Jen-Chun Yeh, Wei-Kung Deng
  • Publication number: 20100238084
    Abstract: To meet the requirements including dual-band, a high gain, and a broadside radiation formation, a dual band planar micro-strip antenna utilizing antenna array is provided. One array element includes a rectangle-shaped micro-strip antenna and an arrow-shaped micro-strip antenna. A first resonant frequency is determined by a length of the rectangle-shaped micro-strip antenna. Slots are dug for satisfying a second resonance frequency. Curved surfaces of the arrow-shaped micro-strip antenna designed according to an ellipse equation so that a frequency resonance is reached under both the first resonant frequency and a second resonant frequency, and a broadside radiation formation is thus generated. A T-shaped jointer distributes power between antenna elements according to the output impedances of the antenna elements. An L-shaped band-stop filter located on the T-shaped jointer is utilized to suppress frequency resonance resulted from multiples of the first resonant frequency.
    Type: Application
    Filed: November 1, 2009
    Publication date: September 23, 2010
    Inventors: Wei-Kung Deng, Shau-Gang Mao, Shiou-Li Chen, Min-Sou Wu, Yu-Zhi Chueh, Jen-Chun Yeh
  • Publication number: 20090002239
    Abstract: A micro-strip antenna includes an L-shaped coupler, a set of micro-strip antennas, and an L-shaped band-stop filter. The set of micro-strip antennas includes at least one rectangular micro-strip antenna unit and a micro-strip line. The rectangular micro-strip antenna unit is coupled to the micro-strip line. The micro-strip line is coupled to the first end of the coupler. The band-stop filter is disposed along a corner of the rectangular micro-strip antenna unit, and is disposed between the antenna unit and the coupler without being physically connected to the antenna unit and the coupler. The width, length, and position of the L-shaped band-stop filter can be determined for the specific band-stop frequency and to optimize its coupling extent with the L-shaped coupler.
    Type: Application
    Filed: May 30, 2008
    Publication date: January 1, 2009
    Inventors: Shau-Gang Mao, Shiou-Li Chen, Min-Shou Wu, Yu-Chih Chueh, Jen-Chun Yeh, Wei-Kung Deng