Patents Examined by Rafael O De Leon Domenech
  • Patent number: 11251719
    Abstract: Switched capacitor multilevel inverter (SCMLI) configuration for high-frequency medium voltage applications is presented. A 5L-SCMLI basic configuration is further extended to 9L operation with a reduced number of active switches having self voltage boosting and balancing ability. Further, the proposed 9L-SCMLI is extended up to n level being considered as the basic configuration for the extension of horizontal extension (HE) and vertical extension (VE). A generalized switching table is provided for the proposed extensions. Design of the size of capacitor demonstrated for the proposed 9L-SCMLI.
    Type: Grant
    Filed: December 23, 2020
    Date of Patent: February 15, 2022
    Assignee: KING ABDULAZIZ UNIVERSITY
    Inventors: M. Jagabar Sathik, Kaustubh Bhatnagar, Yam P. Siwakoti, Hussain M. Bassi, Muhyaddin Rawa, N. Sandeep
  • Patent number: 11251702
    Abstract: A method may include operating a DC-DC switch converter in a forced continuous conduction mode in which for each switching cycle of the switch converter during the forced continuous conduction mode, the switch converter operates in a series of phases including: a first phase in which an inductor current flowing in an inductor of the switch converter increases from zero to a controlled positive current magnitude with respect to a first terminal and a second terminal of the inductor; a second phase in which the inductor current decreases from the controlled positive current magnitude to approximately zero; a third phase in which the inductor current decreases from approximately zero to a controlled negative current magnitude with respect to a first terminal and a second terminal of the inductor; and a fourth phase in which the inductor current increases from the controlled negative current magnitude to approximately zero.
    Type: Grant
    Filed: February 14, 2017
    Date of Patent: February 15, 2022
    Assignee: Cirrus Logic, Inc.
    Inventors: Sarang Vadnerkar, Ullas Pazhayaveetil, Eric J. King
  • Patent number: 11240929
    Abstract: The invention is concerned with an inhibitor module arrangement, a shielding arrangement comprising an inhibitor module and a converter station comprising a converter and a shielding arrangement. The inhibitor module arrangement comprises a first string, a second string, and at least one first inhibitor module (30), where the first string comprises resistors (R1), the second string comprises capacitors (C1, C2, C3), the first string is physically separated from and electrically connected in parallel with the second string and the at least one first inhibitor module (30) comprises a first electrical connection terminal (32) at a first end for connection to a piece of high voltage equipment, a second electric connection terminal (34) at a second end for connection to a first shield element for this piece and a closed interior comprising at least one of the strings electrically connected between the first and the second electrical connection terminals (32, 34).
    Type: Grant
    Filed: September 27, 2018
    Date of Patent: February 1, 2022
    Assignee: ABB Power Grids Switzerland AG
    Inventors: Mats Larsson, Christer Tornkvist, Liliana Arevalo, Dong Wu
  • Patent number: 11233453
    Abstract: The power conversion device includes a multilevel boosting circuit and a smoothing capacitor for smoothing output voltage of the multilevel boosting circuit. The multilevel boosting circuit includes: a leg portion in which four semiconductor elements, i.e., a first diode, a second diode, a first switching element, and a second switching element are connected in series; and an intermediate capacitor connected between a connection point of the first diode and the second diode, and a connection point of the first switching element and the second switching element. When voltage of the smoothing capacitor becomes a reference voltage value or more, the control unit executes a protection mode to fix the first switching element and the second switching element in OFF states.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: January 25, 2022
    Assignee: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Shuta Ishikawa, Akihiko Iwata, Tatsuki Matsunaga, Koyo Matsuzaki
  • Patent number: 11228237
    Abstract: The present invention is directed toward a switching power supply and improvements thereof. In accordance with an embodiment, a switching power supply is provided. The switching power supply comprises: a first power supply stage that forms an intermediate regulated voltage; and a second power supply stage configured to accept the intermediate regulated voltage and configured to form a regulated output voltage, wherein the intermediate voltage is set to an initial target level upon start-up of the power supply and wherein the intermediate regulated voltage is set to a second target level during steady-state operation of the power supply.
    Type: Grant
    Filed: April 3, 2018
    Date of Patent: January 18, 2022
    Assignee: Champion Microelectronic Corporation
    Inventor: Jeffrey Hwang
  • Patent number: 11228236
    Abstract: There is provided a driving system configured to control an input current of a boost converter when temperature of a reactor becomes higher than a temperature reference value that is lower than a heatproof temperature of the reactor, compared with the input current when the temperature of the reactor is equal to or lower than the temperature reference value. A first temperature is set to the temperature reference value when ambient temperature is equal to or higher than a predetermined temperature. A second temperature that is higher than the first temperature is set to the temperature reference value when the ambient temperature is lower than the predetermined temperature.
    Type: Grant
    Filed: May 6, 2020
    Date of Patent: January 18, 2022
    Assignee: DENSO CORPORATION
    Inventor: Hajime Kushima
  • Patent number: 11223281
    Abstract: The present disclosure, in an aspect thereof, has an object to effectively reduce transient current in a rectifier circuit. In a rectifier circuit, a current flows from a power supply to a coil when a transistor is turned on. Then, when the transistor is turned off, a second rectifier current flows from the coil to a second rectifier.
    Type: Grant
    Filed: February 11, 2020
    Date of Patent: January 11, 2022
    Assignee: SHARP KABUSHIKI KAISHA
    Inventor: Takeshi Shiomi
  • Patent number: 11223277
    Abstract: The present document describes a power converter configured to provide energy at an output based on energy provided at an input. The power converter comprises a first switch, wherein a first node is coupled to the input and wherein a second node is coupled to an intermediate point, a second switch, wherein a first node is coupled to the intermediate point and wherein a second node is coupled to an inductor point, a capacitor, wherein a first node of the capacitor is coupled to the intermediate point, a first diode element, wherein a first node is coupled to a second node of the capacitor and wherein a second node is coupled to the inductor point, a second diode element, wherein a first node is coupled to a reference port, and wherein a second node is coupled to the second node of the capacitor; and an inductor, wherein a first node is coupled to the inductor point and wherein a second node is coupled to the output.
    Type: Grant
    Filed: September 12, 2019
    Date of Patent: January 11, 2022
    Assignee: Dialog Semiconductor (UK) Limited
    Inventors: Ambreesh Bhattad, Horst Knoedgen, James T. Doyle, Milan Dragojevic
  • Patent number: 11196349
    Abstract: The subject matter of the invention is a three-phase resonant DC-DC voltage converter, notably for an electric or hybrid vehicle, said converter including a plurality of resonant circuits. First inductive elements of the resonant circuits are coupled together and primary windings of the transformers of each resonant circuit are coupled together.
    Type: Grant
    Filed: July 30, 2019
    Date of Patent: December 7, 2021
    Assignee: Valeo Siemens eAutomotive Norway AS
    Inventor: Boris Bouchez
  • Patent number: 11189720
    Abstract: In an SiC-MOSFET with a built-in Schottky diode, a bipolar current may be passed in a second well region formed at a terminal part to reduce the breakdown voltage of the terminal part. In the SiC-MOSFET with the built-in Schottky diode, a source electrode forming non-ohmic connection such as Schottky connection with the second well region is provided on the second well region formed below a gate pad in the terminal part. By the absence of ohmic connection between the second well region and the source electrode, reduction in breakdown voltage is suppressed at the terminal part.
    Type: Grant
    Filed: February 22, 2018
    Date of Patent: November 30, 2021
    Assignee: MITSUBISHI ELECTRIC CORPORATION
    Inventors: Hideyuki Hatta, Shiro Hino, Koji Sadamatsu, Yuichi Nagahisa
  • Patent number: 11183835
    Abstract: A gate driver circuit is provided that includes a high-side power transistor; a low-side power transistor coupled to the high-side power transistor, where an output voltage is generated at a load node coupled between the low-side power transistor and the high-side power transistor; a gate driver configured to receive a high-side control signal and a low-side control signal, drive the high-side power transistor based on the high-side control signal, and drive the low-side power transistor based on the low-side control signal; and a short circuit detection circuit configured to monitor for short circuit events at the high-side power transistor and at the low-side power transistor based on the high-side control signal, the low-side control signal, and the output voltage, and, generate a fault signal in response to detecting a short circuit event at either of the high-side power transistor or the low-side power transistor.
    Type: Grant
    Filed: July 16, 2019
    Date of Patent: November 23, 2021
    Inventors: Minsub Lee, Junbae Lee
  • Patent number: 11183933
    Abstract: A control device has a first control part and a second control part. The control device is applied to a DC-DC converter. The control device selects a first switch turning-on instruction or a first switch turning-off instruction generated by the first control part during a voltage boost control period, and transmits the selected first switch turning-on instruction or the selected first switch turning-off instruction to a first switch in the DC-DC converter. The control device selects a second switch turning-on instruction or a second switch turning-off instruction generated by the second control part during a voltage step-down control period, and transmits the selected second switch turning-on instruction or the selected second switch turning-off instruction to a second switch in the DC-DC converter.
    Type: Grant
    Filed: January 16, 2020
    Date of Patent: November 23, 2021
    Assignee: DENSO CORPORATION
    Inventors: Mitsutaka Ito, Sadahiro Akama
  • Patent number: 11183942
    Abstract: A power conversion apparatus connectable in parallel to a second power conversion apparatus includes circuitry that generates a carrier wave, generates a pulse signal synchronized with the carrier wave, generates power that is based on a width of the pulse signal, obtains a monitor value corresponding to a circulating current circulating between the power conversion apparatus and the second power conversion apparatus, and based on the monitor value obtained while the power conversion circuitry is generating driving power, changes a period of the carrier wave to decrease the circulating current.
    Type: Grant
    Filed: November 1, 2019
    Date of Patent: November 23, 2021
    Assignee: KABUSHIKI KAISHA YASKAWA DENKI
    Inventors: Kentaro Inomata, Akira Yamazaki, Masato Higuchi, Hidenori Hara
  • Patent number: 11183836
    Abstract: An electronic circuit includes: a first series-connection of DC link capacitors (CA1, . . . , CAm) and a second series-connection of DC link capacitors (CB1, . . . , CBn) connected in parallel between DC bus bars (DC+, DC?), wherein the first series has a first node (A) between the DC link capacitors thereof and the second series has a second node (B) between the DC link capacitors thereof; and a short-circuit module (301; 401, 407) configured to receive a voltage difference (UM) between the first node and the second node and to cause the DC bus bars short circuited in response to the received voltage difference being greater than a predetermined threshold.
    Type: Grant
    Filed: May 29, 2019
    Date of Patent: November 23, 2021
    Assignee: Vacon Oy
    Inventors: Tommi Keski-Kujala, Ari Ristimäki, Pekka Hemminki, Jani Matti Perkiö
  • Patent number: 11177801
    Abstract: A radio frequency switching device includes: a first series switching circuit connected between a first terminal and a second terminal; a first shunt switching circuit connected between one end of the first series switching circuit and a ground; a voltage generation circuit configured to generate a first gate voltage to be output to the first series switching circuit, to generate a second gate voltage to be output to the first shunt switching circuit, and to generate a bias voltage higher than the second gate voltage to control the first shunt switching circuit to enter an off state; a first resistance circuit connected between a signal line between the first terminal and the second terminal, and a bias voltage terminal of the voltage generation circuit; and a second resistance circuit connected between the bias voltage terminal of the voltage generation circuit and a ground terminal of the first shunt switching circuit.
    Type: Grant
    Filed: February 20, 2019
    Date of Patent: November 16, 2021
    Assignee: Samsung Electro-Mechanics Co., Ltd.
    Inventors: Byeong Hak Jo, Hyun Paek, Jeong Hoon Kim
  • Patent number: 11165249
    Abstract: A signal switching apparatus includes a signal control switch, a switch circuit, a blocking capacitor and a surge current dissipating circuit. The signal control switch coupled between a first signal transceiving end and a second signal transceiving end is turned on or turned off according to a first control signal. The switch circuit having at least one first transistor is controlled by a second control signal to be turned on or off, and a first end of the switch circuit is coupled to the first signal transceiving end. The blocking capacitor is coupled between a second end of the switch circuit and a reference voltage terminal. The surge current dissipating circuit having at least one second transistor is coupled between the second end of the switch circuit and the reference voltage terminal. The second transistor is configured to dissipate a surge current and also turned off when operated normally.
    Type: Grant
    Filed: July 17, 2019
    Date of Patent: November 2, 2021
    Assignee: RichWave Technology Corp.
    Inventors: Chih-Sheng Chen, Tsung-Han Lee, Chuan-Chen Chao
  • Patent number: 11165348
    Abstract: A boost converter includes a first inductor, a power switch element, a tuning circuit, and an output stage circuit. The first inductor is configured to receive an input voltage. A parasitic capacitor is built in the power switch element. The power switch element selectively couples the first inductor to a ground voltage according to a clock voltage. The output stage circuit is configured to generate an output voltage. The tuning circuit includes a second inductor, a third inductor, and a current-limiting path. The second inductor is coupled to the first inductor and the power switch element. The third inductor is coupled through the current-limiting path to the output stage circuit. The first inductor, the second inductor, and the third inductor are mutually coupled to each other, so as to form an equivalent transformer.
    Type: Grant
    Filed: March 27, 2020
    Date of Patent: November 2, 2021
    Assignee: ACER INCORPORATED
    Inventor: Tzu-Tseng Chan
  • Patent number: 11146254
    Abstract: To provide a technique to complement overcurrent protection and short circuit protection. An LVIC includes an overcurrent detector configured to detect whether or not a first current flowing through a load and a semiconductor switching element is abnormal and a short-circuit detector configured to detect whether or not a second current flowing not through the load but through the semiconductor switching element is abnormal. The LVIC interrupts the semiconductor switching element based on a detection result of the overcurrent detector and a detection result of the short-circuit detector.
    Type: Grant
    Filed: February 1, 2019
    Date of Patent: October 12, 2021
    Assignee: Mitsubishi Electric Corporation
    Inventor: Shinji Sakai
  • Patent number: 11143130
    Abstract: An injection controller has a voltage applicator that applies a voltage to a driving coil of an injection valve. After a voltage is applied to the driving coil with a peak current for opening the injection valve, the voltage applicator applies a power supply voltage to the driving coil in an ON-OFF manner, to supply the driving coil with a less-than-peak current. A comparator detects whether a terminal voltage at a terminal of the coil is less than a predetermined threshold voltage. Upon detecting that the terminal voltage is less than the threshold voltage, a discharge switch applies a boosted voltage to the driving coil.
    Type: Grant
    Filed: December 4, 2018
    Date of Patent: October 12, 2021
    Assignee: DENSO CORPORATION
    Inventor: Toshio Nishimura
  • Patent number: 11146172
    Abstract: A circuit includes a rectifier, a charge pump, and a clamp control circuit. The rectifier has an input configured to be coupled to an alternating current (AC) power source. The rectifier rectifies an AC signal from the AC power source to produce a rectified voltage on a first voltage node. The rectifier includes a first transistor coupled to a ground node and to the input. The first switch has a first control input. The charge pump is coupled to the first voltage node. The charge pump is configured to generate a second voltage on a second voltage node. The voltage regulator is coupled to the second voltage node. The clamp control circuit is coupled to the first and second voltage nodes and has an output node coupled to the first control input.
    Type: Grant
    Filed: July 10, 2019
    Date of Patent: October 12, 2021
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventor: BoQiang Xiao