Patents by Inventor Yafei Bi

Yafei Bi 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: 8055345
    Abstract: Various aspects of the present invention enable robust, reliable control functionality for effectors present on intraluminal, e.g., vascular leads, as well as other types of implantable devices. Aspects of the invention include implantable integrated circuits that have self-referencing and self-clocking signal encoding, and are capable of bidirectional communication. Also provided by the invention are effector assemblies that include the integrated circuits, as well as implantable medical devices, e.g., pulse generators that include the same, as well as systems and kits thereof and methods of using the same, e.g., in pacing applications, including cardiac resynchronization therapy (CRT) applications.
    Type: Grant
    Filed: August 29, 2008
    Date of Patent: November 8, 2011
    Assignee: Proteus Biomedical, Inc.
    Inventors: Haifeng Li, Mark Zdeblick, Lawrence Arne, Yafei Bi, Nilay Jani, Jonathan Withrington
  • Publication number: 20110034964
    Abstract: Apparatus and methods enable robust, reliable control for implantable medical devices, including cardiac pacemakers, defibrillators and cardiac resynchronization devices. Integrated circuits in the devices have minimized interfaces, can derive power from the interface signals, and have high voltage and latch-up protection. A device lead has a power generation circuit and a switching circuit using cascaded PMOS transistors for operating with a stable voltage despite fluctuations in the supplied voltage. The lead has control electronics that provide a very low impedance between an electrode and a lead conductor during most of the duration of a pacing pulse, but during a brief initial portion of the pacing pulse, provide a very high impedance to permit charging up a power supply that is local to the control electronics. A method of stabilizing the external impedance and a system for fault detection and fault recovery for an implantable device are also provided.
    Type: Application
    Filed: February 27, 2009
    Publication date: February 10, 2011
    Inventors: Yafei Bi, Haifeng Li, Mark Zdeblick, Todd Thompson, Robert Leichner
  • Publication number: 20100204766
    Abstract: Embodiments of the present invention enable robust, reliable control functionality for effectors present on intraluminal, e.g., vascular leads, as well as other types of implantable devices. Embodiments of the invention enable the required functionality for accurate long term control of effectors units, even ones present on multiplex carrier configurations, while provide for low power consumption. Aspects of the invention include implantable integrated circuits that have power extraction; energy storage; communication; and device configuration functional blocks, where these functional blocks are all present in a single integrated circuit on an intraluminal-sized support. Also provided by the invention are effector assemblies that include the integrated circuits, as well as implantable medical devices, e.g., pulse generators that include the same, as well as systems and kits thereof and methods of using the same, e.g., in pacing applications, including cardiac resynchronization therapy (CRT) applications.
    Type: Application
    Filed: December 22, 2006
    Publication date: August 12, 2010
    Inventors: Mark Zdeblick, Robert Leichner, Behrad Aria, Nilay Jani, Haifeng Li, Todd Thompson, Lawrence Arne, Timothy Robertson, Yafei Bi, Vladimier Gelfandbein
  • Publication number: 20090062879
    Abstract: Various aspects of the present invention enable robust, reliable control functionality for effectors present on intraluminal, e.g., vascular leads, as well as other types of implantable devices. Aspects of the invention include implantable integrated circuits that have self-referencing and self-clocking signal encoding, and are capable of bidirectional communication. Also provided by the invention are effector assemblies that include the integrated circuits, as well as implantable medical devices, e.g., pulse generators that include the same, as well as systems and kits thereof and methods of using the same, e.g., in pacing applications, including cardiac resynchronization therapy (CRT) applications.
    Type: Application
    Filed: August 29, 2008
    Publication date: March 5, 2009
    Inventors: Haifeng Li, Mark Zdeblick, Lawrence Arne, Yafei Bi, Nilay Jani, Jonathan Withrington
  • Publication number: 20090062880
    Abstract: Various aspects of the present invention enable robust, reliable control functionality for effectors present on intraluminal, e.g., vascular leads, as well as other types of implantable devices. Aspects of the invention include implantable integrated circuits that have self-referencing and self-clocking signal encoding, and are capable of bidirectional communication. Also provided by the invention are effector assemblies that include the integrated circuits, as well as implantable medical devices, e.g., pulse generators that include the same, as well as systems and kits thereof and methods of using the same, e.g., in pacing applications, including cardiac resynchronization therapy (CRT) applications.
    Type: Application
    Filed: August 29, 2008
    Publication date: March 5, 2009
    Inventors: Haifeng Li, Mark Zdeblick, Lawrence Arne, Yafei Bi, Nilay Jani, Jonathan Withrington
  • Patent number: 7038482
    Abstract: An automatic transistor threshold measuring circuit (100) can include a current source circuit (102) that can provide increasing amounts of current to a measured transistor (N1) according to current setting values (ICODE). When a gate-to-source voltage of measured transistor (N1) essentially equals a first reference voltage (Vref1), the current setting values (ICODE) is stored. The process is repeated with a second reference voltage (Vref1) to acquire a second current setting value (ICODE) A threshold voltage for the measured transistor (N1) can be calculated according to the reference voltages (Vref1 and Vref2) and stored current setting values (ICODE).
    Type: Grant
    Filed: January 21, 2005
    Date of Patent: May 2, 2006
    Assignee: Cypress Semiconductor Corporation
    Inventor: Yafei Bi