Plural Scrs Patents (Class 327/460)
  • Patent number: 11863062
    Abstract: A capacitor discharge circuit for discharging a capacitor to a discharge load. The discharge circuity includes current level sensing circuitry for producing a control signal circuity response to current passing to the discharge load. The discharge circuity modulates a level of current passing from the capacitor to the discharge load over time between predetermined ranges of current levels in response to the control signal.
    Type: Grant
    Filed: April 27, 2018
    Date of Patent: January 2, 2024
    Assignee: Raytheon Company
    Inventors: Benjamin J. Snyder, Erin K. Nolan, Aline Elad, John D. Walker
  • Patent number: 10491036
    Abstract: A solid-state automatic transfer switch includes a primary rectifier circuit and a secondary rectifier circuit, wherein at least one of the rectifier circuits includes one or more controllable semi-conductor switches. The primary rectifier circuit is electrically coupled to a primary input and an output of the solid-state automatic transfer switch. Also, the secondary rectifier circuit is electrically coupled to a secondary input of the solid-state automatic transfer switch and the output. A controller controls a control state of the controllable semi-conductor switches to allow or prevent electrical power from flowing through the primary or secondary rectifier circuits, thus selectively controlling whether power is fed from the primary input or the secondary input of the solid-state automatic transfer switch to the output of the solid-state automatic transfer switch.
    Type: Grant
    Filed: March 30, 2017
    Date of Patent: November 26, 2019
    Assignee: Amazon Technologies, Inc.
    Inventors: William Mische, Richard Arvel Stevens, Jared Joseph Lee, Mike MacGregor
  • Patent number: 9455247
    Abstract: A semiconductor device for protection from electrostatic discharge includes a number of modules for protection from electrostatic discharge. Each module includes a thyristor having terminals and a gate, and a diode coupled in antiparallel to the terminals of the thyristor. Each module is sized to share a saturation current with neighboring modules when an electrostatic discharge current is received. A resistive network couples modules between two terminals. A triggering circuit includes a common triggering output that is coupled to the gate of the thyristor of each module and a common buried semiconductor layer contacts each module.
    Type: Grant
    Filed: March 31, 2016
    Date of Patent: September 27, 2016
    Assignee: STMicroelectronics SA
    Inventors: Philippe Galy, Jean Jimenez
  • Patent number: 8653693
    Abstract: An integrated exciter-igniter architecture is disclosed that integrates compact, direct-mounted exciter electronics with an aerospace designed igniter to reduce overall ignition system complexity. The integrated exciter-igniter unit hermetically seals exciter electronics within a stainless steel enclosure or housing. The stainless enclosure enables the exciter electronics to remain near atmospheric pressure while the unit is exposed to vacuum conditions. The exciter electronics include a DC-DC converter, timing circuitry, custom-designed PCBs, a custom-designed main power transformer, and a high voltage ignition coil. All of which are packaged together in the stainless steel enclosure. The integrated exciter-igniter unit allows for efficient energy delivery to the spark gap and eliminates the need for a high voltage cable to distribute the high voltage, high energy pulses.
    Type: Grant
    Filed: January 27, 2011
    Date of Patent: February 18, 2014
    Assignee: Alphaport, Inc.
    Inventors: Michael Vincent Aulisio, Greg Scott Tollis, Elmer L. Griebeler, Neil D. Rowe
  • Patent number: 8456201
    Abstract: A transistor driver includes an inductor coupled to a gate terminal of a transistor and a switching circuit coupled to the inductor and configured to charge a capacitance at a gate terminal of the transistor from a source via the inductor responsive to a first state of a control input, to block discharge of the charged capacitance responsive to a voltage at the gate terminal and to return charge from the charged capacitance to the source responsive to transition of the control input to a second state. The switching circuit may include a switch coupled in series with the inductor and the source and configured to conduct responsive to transition of the control input to the first state and a rectifier coupled in series with the inductor and the source and configured to block discharge of the charged capacitance responsive to the voltage at the gate terminal.
    Type: Grant
    Filed: July 6, 2011
    Date of Patent: June 4, 2013
    Assignee: Eaton Corporation
    Inventor: Anthony J. Olivo
  • Patent number: 8178897
    Abstract: A semiconductor device includes an SCR ESD device region disposed within a semiconductor body, and a plurality of first device regions of the first conductivity type disposed on a second device region of the second conductivity type, where the second conductivity type is opposite the first conductivity type. Also included is a plurality of third device regions having a sub-region of the first conductivity type and a sub-region of the second conductivity type disposed on the second device region. The first regions and second regions are distributed such that the third regions are not directly adjacent to each other. A fourth device region of the first conductivity type adjacent to the second device region and a fifth device region of the second conductivity type disposed within the fourth device region are also included.
    Type: Grant
    Filed: August 31, 2010
    Date of Patent: May 15, 2012
    Assignee: Infineon Technologies AG
    Inventors: Krzysztof Domanski, Cornelius Christian Russ, Kai Esmark
  • Patent number: 7259407
    Abstract: A vertical SCR switch to be controlled by a high-frequency signal having at least four main alternated layers. The switch includes a gate terminal and a gate reference terminal connected via integrated capacitors to corresponding areas. In the case of a thyristor, having on its front surface side a main P-type semiconductor area formed in an N-type gate semiconductor area, a first portion of the main area being connected to one of the main areas, a second portion of the main area is connected to one of the control terminals via a first integrated capacitor, and a portion of the gate area being connected to the other of the control terminals via a second integrated capacitor.
    Type: Grant
    Filed: October 12, 2004
    Date of Patent: August 21, 2007
    Assignee: STMicroelectronics S.A.
    Inventors: Samuel Menard, Christophe Mauriac
  • Publication number: 20030067343
    Abstract: An AC transfer switch (ATS) is provided for switching a system load between at least two AC lines. A first bridge rectifier is connected to a first AC line for providing a first full wave rectified AC waveform. A first pair of oppositely poled silicon controlled rectifiers (SCRs) is coupled to the first bridge rectifier and to the system load. A second bridge rectifier is connected to a second AC line for providing a second full wave rectified AC waveform. A second pair of oppositely poled silicon controlled rectifiers (SCRs) coupled to the second bridge rectifier and to the system load. Control logic is coupled to a gate input of the first pair of oppositely poled silicon controlled rectifiers (SCRs) and a gate input of the second pair of oppositely poled silicon controlled rectifiers (SCRs) for applying one of the first full wave rectified AC waveform or the second full wave rectified AC waveform to the system load.
    Type: Application
    Filed: October 10, 2001
    Publication date: April 10, 2003
    Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATION
    Inventors: Timothy Charles Daun-Lindberg, Charles J. Pentek, Steven William Steele, Jon Anton Veer
  • Patent number: 6542023
    Abstract: An AC transfer switch (ATS) is provided for switching a system load between at least two AC lines. A first bridge rectifier is connected to a first AC line for providing a first full wave rectified AC waveform. A first pair of oppositely poled silicon controlled rectifiers (SCRs) is coupled to the first bridge rectifier and to the system load. A second bridge rectifier is connected to a second AC line for providing a second full wave rectified AC waveform. A second pair of oppositely poled silicon controlled rectifiers (SCRs) coupled to the second bridge rectifier and to the system load. Control logic is coupled to a gate input of the first pair of oppositely poled silicon controlled rectifiers (SCRs) and a gate input of the second pair of oppositely poled silicon controlled rectifiers (SCRs) for applying one of the first full wave rectified AC waveform or the second full wave rectified AC waveform to the system load.
    Type: Grant
    Filed: October 10, 2001
    Date of Patent: April 1, 2003
    Assignee: International Business Machines Corporation
    Inventors: Timothy Charles Daun-Lindberg, Charles J. Pentek, Steven William Steele, Jon Anton Veer
  • Patent number: 6542022
    Abstract: An analog voltage pulse generator, including a first break-over component of Shockley diode type to activate a rising edge of a pulse on an output terminal and a second component of thyristor type to block the first component and deactivate the pulse.
    Type: Grant
    Filed: December 20, 2000
    Date of Patent: April 1, 2003
    Assignee: STMicroelectronics S.A.
    Inventors: Laurent Gonthier, Mickael Destouches, Jean Jalade
  • Patent number: 5614771
    Abstract: A high voltage switch in which an extended SCR is built in an insulated polysilicon layer for providing a single structure high voltage switch. The high voltage SCR is built by building unit SCRs comprising a cathode, a gate, an anode and a voltage sustaining area. The unit SCRs are built as horizontal linear devices. The unit SCRs can then be combined to form a large SCR by building each unit SCR so that the anode of one SCR is at least partially contiguous with the cathode of the next unit SCR.
    Type: Grant
    Filed: December 27, 1995
    Date of Patent: March 25, 1997
    Assignee: Xerox Corporation
    Inventors: Iftikhar Ahmed, Steven A. Buhler
  • Patent number: 5585758
    Abstract: A current source gate drive circuit for simultaneous firing of a set of series or parallel thyristors is described. The circuit includes two current loops, each of which serves as a current transformer primary. Electrically insulating tubes enclose the current loops. Current transformer cores, around which are wound a certain number of secondary turns, surround the current loops, thus magnetically coupling the primary current of the current transformer to the secondary turns. Thyristor gate driver circuits are electrically coupled to the current transformer cores. Each of the thyristor gate driver circuits receives and rectifies ac current signals from the current loops and forms a current pulse train firing signal. Each thyristor gate driver circuit has a corresponding thyristor that is fired by the current pulse train firing signal. The thyristors operate at a high voltage, but are electrically isolated from the current loops by the insulating tubes.
    Type: Grant
    Filed: June 29, 1994
    Date of Patent: December 17, 1996
    Assignee: Electric Power Research Institute, Inc.
    Inventors: Frank J. Prines, Ray S. Kemerer, Martin I. Norman