Patents by Inventor Pai Yang

Pai Yang 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: 8807420
    Abstract: A biochip detecting device for detecting a biochip which has identifying information is provided. The biochip detecting device has a controller, a reader, a storage medium and a detecting module. The reader reading the identifying information, the storage medium saving a detecting information, and the detecting module detecting the biochip are electrically connected to the controller. The controller is suitable for determining the record of the identifying information in the detecting information and modifying the setting of the detecting module automatically according to the identifying information. A biochip detecting method is further provided. A biochip detecting device is used to read identifying information of the biochip to determine whether the biochip could be detected. Besides, the setting of a detecting module is automatically adjusted by a controller. The time for adjusting the setting of the detecting module is saved and the possibility of setup mistake could be reduced.
    Type: Grant
    Filed: March 27, 2012
    Date of Patent: August 19, 2014
    Assignee: Wistron Corporation
    Inventors: Yao-Tsung Chang, Pai-Yang Lin
  • Patent number: 8702009
    Abstract: The present invention discloses a biochip measuring system. The cytometer system includes a biochip and a biochip measuring apparatus. The biochip includes a substrate, for carrying bio-molecule droplet, and a stamp marking area, for receiving or displaying a stamp for identifying whether the biochip is used. The biochip measuring apparatus includes a controller, a driver circuit, a driver interface, a light, a light detector, and a stamp marking unit, for marking the stamp on the stamp marking area of the biochip after the biochip measuring apparatus completes measurement of the biochip.
    Type: Grant
    Filed: August 29, 2012
    Date of Patent: April 22, 2014
    Assignee: Wistron Corporation
    Inventors: Yao-Tsung Chang, Chia-Hsien Li, Ting-Wen Liu, Pai-Yang Lin
  • Publication number: 20130207804
    Abstract: A driver drowsiness prediction system includes a vital signal detection unit, a control unit and a network bridge module. The vital signal detection unit detects vital signals of a driver. The control unit receives the driver's vital signs, and stores at least a feature signal. The feature signal represents the vital signal pattern of losing consciousness. The control unit continuously compares the detected vital signal with the feature signal. When the vital signal is similar to the feature signal, the control unit issues a pre-alarming command. The network bridge module receives the pre-alarming command and is triggered to perform a network connection process. The network bridge module logs into a pre-determined social website according to a login script, and then sends a pre-alarming message thereon, wherein the pre-alarming message includes an event indicating the driver is near unconsciousness.
    Type: Application
    Filed: September 12, 2012
    Publication date: August 15, 2013
    Inventors: Chia-Hsien Li, Yao-Tsung Chang, Pai-Yang Lin
  • Publication number: 20130200141
    Abstract: The present invention discloses a biochip measuring system. The cytometer system includes a biochip and a biochip measuring apparatus. The biochip includes a substrate, for carrying bio-molecule droplet, and a stamp marking area, for receiving or displaying a stamp for identifying whether the biochip is used. The biochip measuring apparatus includes a controller, a driver circuit, a driver interface, a light, a light detector, and a stamp marking unit, for marking the stamp on the stamp marking area of the biochip after the biochip measuring apparatus completes measurement of the biochip.
    Type: Application
    Filed: August 29, 2012
    Publication date: August 8, 2013
    Inventors: Yao-Tsung Chang, Chia-Hsien Li, Ting-Wen Liu, Pai-Yang Lin
  • Publication number: 20130126597
    Abstract: A biochip detecting device for detecting a biochip which has identifying information is provided. The biochip detecting device has a controller, a reader, a storage medium and a detecting module. The reader reading the identifying information, the storage medium saving a detecting information, and the detecting module detecting the biochip are electrically connected to the controller. The controller is suitable for determining the record of the identifying information in the detecting information and modifying the setting of the detecting module automatically according to the identifying information. A biochip detecting method is further provided. A biochip detecting device is used to read identifying information of the biochip to determine whether the biochip could be detected. Besides, the setting of a detecting module is automatically adjusted by a controller. The time for adjusting the setting of the detecting module is saved and the possibility of setup mistake could be reduced.
    Type: Application
    Filed: March 27, 2012
    Publication date: May 23, 2013
    Applicant: WISTRON CORPORATION
    Inventors: Yao-Tsung Chang, Pai-Yang Lin
  • Publication number: 20130104632
    Abstract: A biochip including a chip body, a first electrode and a second electrode is provided. The body has a first accommodating cavity, a second accommodating cavity and a micro-fluid channel. The micro-fluid channel is connected with the first accommodating cavity and the second accommodating cavity. The first electrode has a first end and a second end. The first end is used for contacting a first probe of a detection apparatus. The second end is positioned in the first accommodating cavity. The second electrode has a third end and a forth end. The third end is used for contacting a second probe of the detection apparatus. The forth end is positioned in the second accommodating cavity.
    Type: Application
    Filed: March 27, 2012
    Publication date: May 2, 2013
    Applicant: WISTRON CORPORATION
    Inventors: Pai-Yang Lin, Yih-Far Chen, Chin-Kuan Lin, Hsiang-Chia Chen, Sheng-Hsiung Weng
  • Publication number: 20120302850
    Abstract: A method for measuring a human physiological signal includes: receiving a reminder canceling time range; measuring a human physiological signal by a human physiological signal measuring apparatus; and determining if a measurement-related time for measuring the physiological signal falls within the reminder canceling time range, followed by releasing a reminding device in response to an affirmative determination.
    Type: Application
    Filed: March 8, 2012
    Publication date: November 29, 2012
    Applicant: Wistron Corporation
    Inventors: Shu-Hung LIN, Chia-Hsien Li, Yao-Tsung Chang, Shun-Chi Chung, Pai-Yang Lin
  • Publication number: 20120302851
    Abstract: A physiological signal measuring apparatus and method with identification function are provided. The physiological signal measuring apparatus with identification function includes a measuring module, an identifying module, and a transmitting module. The measuring module obtains a physiological signal and produces a physiological datum according to the physiological signal. The identifying module obtains an identification datum. The transmitting module is electrically connected to the measuring module and the identifying module for transmitting the physiological datum and the identification datum to a computer.
    Type: Application
    Filed: March 15, 2012
    Publication date: November 29, 2012
    Inventors: Shu-Hung Lin, Yao-Tsung Chang, Chia-Hsien Li, Pai-Yang Lin, Shun-Chi Chung
  • Publication number: 20120245480
    Abstract: An electrocardiogram (ECG) signal sensing module is provide. The ECG signal sensing module includes at least one touchpad button, for producing a press signal when being pressed; at least one sensing electrode, mounted on the at least one touchpad button and moving in unison with the at least one touchpad button, for measuring the voltage on the portion thereof touched by a user; an electrocardiogram signal processor, coupled to the at least one sensing electrode, for processing the voltage on the at least one sensing electrode and producing an ECG signal; and a transmission interface, coupled to the at least one touchpad button and the electrocardiogram signal processor, for outputting the press signal and the ECG signal to a computer.
    Type: Application
    Filed: March 20, 2012
    Publication date: September 27, 2012
    Applicant: WISTRON CORP.
    Inventors: Brian-Chua CHONG, Yao-Tsung CHANG, Chia-Hsien LI, Pai-Yang LIN, Shun-Chi CHUNG
  • Publication number: 20120172737
    Abstract: A measurement device for measuring a physiological signal of a testee includes a sensing unit for sensing physiological activities of the testee to generate the physiological signal, a data transmission unit for transmitting data to a host, a storage unit for storing data, and a control unit for deciding to use the data transmission unit to transmit the physiological signal to the host or to use the storage unit to store the physiological signal according to a connection status between the data transmission unit and the host.
    Type: Application
    Filed: November 7, 2011
    Publication date: July 5, 2012
    Inventors: Pai-Yang Lin, Yao-Tsung Chang, Chia-Hsien Li, Shun-Chi Chung, Shu-Hung Lin
  • Publication number: 20050173992
    Abstract: A stage assembly (220) for moving a device (200) includes a stage (208), an attraction-only type actuator pair (426) that moves the stage (208), and a control system (24). In one embodiment, the actuator pair (426) includes a first electromagnet (436F), a first conductor (438F) and a first target (440F) having a first target surface (442F). The actuator pair also includes a second electromagnet (436S), a second conductor (438S) and a second target (440S) having a second target surface (442S). The first electromagnet (436F) is positioned at a first angle ?1 relative to a first target surface (442F) and the second electromagnet (436S) is positioned at a second angle ?2 relative to the second target surface (442S). The control system (24) directs a first current to one or more of the electromagnets based on at least one of the angles ?1, ?2. Further, one or more electromagnets (436) can include a first measurement point and a second measurement point.
    Type: Application
    Filed: February 9, 2004
    Publication date: August 11, 2005
    Inventors: Pai Yang, Tim Teng, Kazuhiro Hirano, Bausan Yuan