Patents Examined by Htet Z Kyaw
  • Patent number: 11392155
    Abstract: A voltage generator circuit can be structured to provide an output voltage having a substantially flat temperature coefficient by use of a circuit loop having transistors and a resistor arranged such that, in operation, current through the resistor has a signed temperature coefficient. The current behavior can be controlled by an output transistor coupled to another transistor, which is coupled to the circuit loop, with this other transistor sized such that, in operation, a voltage of this other transistor has a signed temperature coefficient that is opposite in sign to the signed temperature coefficient of the current through the resistor. Embodiments of voltage generator circuits can also include additional components to trim output voltage, to provide unconditional stability, or other features for the respective voltage generator circuit. In various embodiments, a voltage generator circuit can be implemented as a low drop-out (LDO) voltage regulator.
    Type: Grant
    Filed: August 9, 2019
    Date of Patent: July 19, 2022
    Assignee: Analog Devices International Unlimited Company
    Inventor: Gerard Mora-Puchalt
  • Patent number: 11374484
    Abstract: A multi-phase power supply includes a plurality of phase controllers each driving a first terminal of a respective inductor alternatively between an input voltage and a ground voltage to regulate an output voltage in a work mode, keeping the first terminal of the respective inductor in a high impedance state during a non-work mode, having an input for receiving an enable signal for selecting between the work mode and the non-work mode, and generating a current monitor signal to represent a current through the respective inductor during both the work mode and the non-work mode, and a controller coupled to each phase controller for selectively enabling respective ones of the phase controllers in response to a load demand, receiving the current monitor signal from each phase controller, and selectively shutting down the multi-phase power supply when a total of current monitor signals from the phase controller exceeds a threshold.
    Type: Grant
    Filed: December 2, 2020
    Date of Patent: June 28, 2022
    Assignee: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
    Inventors: Enzhu Liang, Kaiwei Yao, Ming Gu
  • Patent number: 11362599
    Abstract: A controlling method is for a single-phase bidirectional inverter. The single-phase bidirectional inverter includes a switch and an inductor. The controlling method for the single-phase bidirectional inverter includes an extracting step, a calculating step, and an integrating step. In the extracting step, a current command is inputted to the switch and obtaining a current through the inductor. The current is piecewisely linearized to extract a magnetizing inductance and a demagnetizing inductance of the inductor. In the calculating step, a duty ratio of the switch is used to calculate a variation of the current of the magnetizing inductance and a variation of the current of the demagnetizing inductance. In the integrating step, the variation of the current of the magnetizing inductance and the variation of the current of the demagnetizing inductance are integrated to obtain another duty ratio of the switch in the next cycle.
    Type: Grant
    Filed: June 21, 2020
    Date of Patent: June 14, 2022
    Assignee: NATIONAL TSING HUA UNIVERSITY
    Inventors: Tsai-Fu Wu, Temir Sakavov, Yen-Hsiang Huang, Yun-Tsung Liu
  • Patent number: 11342813
    Abstract: The present disclosure relates to an axial flux motor for a reaction wheel, and method of using and making the same. The motor includes a stator and a rotor. The stator comprises a printed circuit board (PCB) including a first motor coil. The rotor is coupled to a first ring-shaped magnet having an alternating pole arrangement. In a further embodiment, the rotor includes permanent magnets, and the stator PCB includes a first motor coil, and a first high thermal conductivity element.
    Type: Grant
    Filed: November 22, 2016
    Date of Patent: May 24, 2022
    Assignee: Blue Canyon Technologies Inc.
    Inventors: Stephen Steg, Matthew James Carton, Bryce Allen Peters
  • Patent number: 11323028
    Abstract: A voltage converting apparatus includes a comparison circuit, a compensation signal generator, and a voltage converter. The comparison circuit generates a comparison result according to an output voltage, an input voltage, and a compensated feedback signal. The compensation signal generator provides a compensation signal held to be equal to a reference voltage at a first time interval in an enable period in a working cycle and sets the compensation signal to be a ramp signal at a second time interval in the enable period. The compensation signal generator generates the compensated feedback signal according to a feedback signal and the compensation signal. The voltage converter generates a control signal according to the comparison result, performs a voltage converting operation through an inductor according to the control signal, and generates the output voltage. The feedback signal is generated according to a current on the inductor.
    Type: Grant
    Filed: January 16, 2020
    Date of Patent: May 3, 2022
    Assignee: Nuvoton Technology Corporation
    Inventor: Cheng-Tao Li
  • Patent number: 11316444
    Abstract: An inverter circuit arrangement that connects an IO-link master with a slave includes an AB class transistor circuit of which the currents are replicated by a current mirror to a terminal of the slave. A bias circuit provides bias voltages to the AB class transistors. A comparator forms a feedback between the master and slave terminals. The circuit provides for a bidirectional inversion to make a slave device IO-link compatible.
    Type: Grant
    Filed: March 27, 2019
    Date of Patent: April 26, 2022
    Assignee: AMSAG
    Inventor: Juan Miguel Gavillero
  • Patent number: 11309803
    Abstract: A converter circuitry between a first network, which may be either a poly-phase medium-voltage alternating current (AC) network, at least one polyphase low-voltage AC network or at least one direct-current (DC) network, and a second network, which may be either a polyphase medium-voltage AC network or a medium-voltage DC network, wherein the converter circuitry comprises at least one power bus and low-voltage power cells both at the first and at the second network side such that each power cell is connected to a power bus via a transformer. Each power bus is connected to a low-voltage power unit, which is able to supply pre-charging power via the power bus to all power cell intermediate DC-link filtering capacitors before the converter is started. The low-voltage power unit is also able to take care of a resistor braking in case the first network cannot take the power supplied by the load connected to the second network.
    Type: Grant
    Filed: May 20, 2020
    Date of Patent: April 19, 2022
    Assignee: Vacon Oy
    Inventors: Stefan Schroeder, Dan Isaksson, Risto Komulainen, Stefan Strandberg
  • Patent number: 11309787
    Abstract: A power conversion device includes a conversion circuit constituted of a plurality of arm circuits and a bypass circuit. The bypass circuit includes a full-wave rectification circuit, a positive-side connection arm, and a negative-side connection arm. The full-wave rectification circuit is connected between a plurality of AC connections, a positive-side intermediate node, and a negative-side intermediate node, and configured to convert AC voltages generated at the plurality of AC connections into a DC voltage across the positive-side intermediate node and the negative-side intermediate node and output the DC voltage. The positive-side connection arm blocks a current in a direction from a positive-side DC terminal toward the positive-side intermediate node. The negative-side connection arm is connected between the negative-side intermediate node and a negative-side DC terminal and blocks a current in a direction from the negative-side intermediate node toward a negative-side DC terminal.
    Type: Grant
    Filed: June 5, 2018
    Date of Patent: April 19, 2022
    Assignee: MITSUBISHII ELECTRIC CORPORATION
    Inventors: Yoshiyuki Kono, Shuhei Fujiwara, Ryosuke Uda, Shigeo Hayashi
  • Patent number: 11292507
    Abstract: A motor includes a shaft to rotate about a central axis extending in a vertical direction, a metal heat sink including a through-hole through which the shaft extends, a substrate disposed at an upper side of the heat sink through a gap, a sensor magnet fixed to an upper end of the shaft, a rotation sensor located at an upper side of the sensor magnet, and a heat dissipating material located in a gap between the substrate and the heat sink. The heat sink includes a heat sink main body portion and a wall portion located between the substrate and the heat sink main body portion and between the heat dissipating material and the through-hole when viewed from the vertical direction.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: April 5, 2022
    Assignee: NIDEC CORPORATION
    Inventor: Tomoyuki Takada
  • Patent number: 11283373
    Abstract: A piezoelectric power apparatus wherein piezoelectric material forms one wall of a liquid-filled container. Water pressure within the container is made to rapidly vary either by a cam operated piston or a motor operated ball valve acting on a pressurized liquid flow. The piston reciprocates through a wall of the container to alternately increase and decrease the pressure in the liquid. The ball valve periodically interrupts the pressurized liquid flow to alternately increase and decrease the pressure in the liquid. In either case, the alternate increase and decrease in the pressure in the liquid creates pressure variations in the piezoelectric material.
    Type: Grant
    Filed: May 5, 2021
    Date of Patent: March 22, 2022
    Inventor: Edwin Steven Newman
  • Patent number: 11283354
    Abstract: A multi-level boost apparatus. Voltage allocation among N first switches is achieved by arranging the N voltage dividing modules. It is prevented that the second one to the N-th one of the first switches break down and fail due to overvoltage. By arranging an (i?1)-th clamp branch at a common node between an (i?1)-th second switch and an i-th second switch, a voltage bore by the i-th second switch is clamped at a difference between a voltage across the fourth branch (namely, an output voltage of the multi-level boost apparatus) and a voltage across the corresponding clamp branch. The risk is avoided that a second one to the N-th one of the second switches break down due to overvoltage at an instant of being powered, in a case that the input voltage is low.
    Type: Grant
    Filed: August 12, 2019
    Date of Patent: March 22, 2022
    Assignee: SUNGROW POWER SUPPLY CO., LTD.
    Inventors: Jiacai Zhuang, Jun Xu, Bing Zhang, Peng Wang, Peng Wen
  • Patent number: 11271495
    Abstract: A power converter arrangement includes a first converter and a second converter which include each an intermediate voltage circuit and a load-side converter. The intermediate voltage circuit of the first converter is connected electrically to the intermediate voltage circuit of the second converter by a connecting line. The connecting line is connected to a node point either with three partial connecting lines when the load-side power converters include two half-bridges, or with four partial connecting lines when the load-side power converters includes three half-bridges. Each of the partial connecting lines has at least one semiconductor component for generating a voltage drop.
    Type: Grant
    Filed: August 28, 2018
    Date of Patent: March 8, 2022
    Assignee: SIEMENS AKTIENGESELLSCHAFT
    Inventors: Robert Lange, Holger Strobelt
  • Patent number: 11251358
    Abstract: The present invention relates to a holder (5) for a piezoelectric component (1), having a clamping device (6) and two contact elements (8) which contain a conductive rubber material, wherein the clamping device (6) is designed to clamp the piezoelectric component (1) between the contact elements (8) in a closed state, and wherein the contact elements (8) are in electrical contact with the piezoelectric component (1) in the closed state of the clamping device (6).
    Type: Grant
    Filed: June 27, 2016
    Date of Patent: February 15, 2022
    Assignee: EPCOS AG
    Inventors: Bernhard Doellgast, Markus Puff, Pavol Kudela
  • Patent number: 11228299
    Abstract: A piezoelectric thin film resonator includes: a substrate; a piezoelectric film located on the substrate; a lower electrode and an upper electrode facing each other across at least a part of the piezoelectric film; and an insertion film that is inserted between the lower electrode and the upper electrode, is located in an outer peripheral region within a resonance region where the lower electrode and the upper electrode face each other across the piezoelectric film, is located in a region that is located outside the resonance region and surrounds the resonance region, is not located in a center region of the resonance region, and includes a first part, which is located in the resonance region and has a first film thickness, and a second part, which is located outside the resonance region and has a second film thickness, the first film thickness being less than the second film thickness.
    Type: Grant
    Filed: January 22, 2018
    Date of Patent: January 18, 2022
    Assignee: TAIYO YUDEN CO., LTD.
    Inventors: Jiansong Liu, Tokihiro Nishihara, Tsuyoshi Yokoyama, Shinji Taniguchi, Taisei Irieda
  • Patent number: 11211873
    Abstract: A power conversion device is provided. The power conversion device includes a main transformer circuit, a power switch, an auxiliary transformer, a resonant circuit, and a switch circuit. When the power switch is turned on, the switch circuit is enabled according to energy stored in an output capacitor of the main transformer circuit, so that energy associated with a secondary side of a main transformer is coupled to the resonant circuit via the auxiliary transformer so the resonant circuit obtains coupling energy. When the power switch is turned off, the resonant circuit and a parasitic capacitor of the power switch form a resonant tank coupled to a grounding terminal of a power supply side based on the coupling energy.
    Type: Grant
    Filed: August 11, 2019
    Date of Patent: December 28, 2021
    Assignee: Acer Incorporated
    Inventor: Tzu-Tseng Chan
  • Patent number: 11211842
    Abstract: An inner-rotor motor including: an armature assembly including a rotating shaft, an armature unit coupled to the rotating shaft and a pressing unit; a frame assembly including a frame housing the armature unit, a first bearing unit located on one side with respect to the armature unit in an axial direction, and a second bearing unit located on another side with respect to the armature unit in the axial direction; and an urging structure that urges the rotating shaft in a direction away from the second bearing unit and that presses the pressing unit toward the first bearing unit.
    Type: Grant
    Filed: March 23, 2020
    Date of Patent: December 28, 2021
    Assignee: MINEBEA MITSUMI Inc.
    Inventors: Hiroaki Mochizuki, Minoru Kuroda
  • Patent number: 11205931
    Abstract: Various embodiments include a rotor for an electric machine comprising: a laminated rotor core; a filler body comprising an aluminum die-cast alloy cast onto the laminated rotor core; a first shaft journal having an air inlet opening; a second shaft journal having an air outlet opening; and a ventilation unit. The filler body connects the laminated rotor core rotationally conjointly to the shaft journals. The laminated rotor core includes a central axial bore partially filled by the filler body forming an axial cooling channel for cooling air within the central axial bore. The shaft journals drive the ventilation unit. Rotation of the ventilation unit draws an air stream in via the air inlet opening, conveys said air stream through the axial cooling channel, and discharges said air stream via the air outlet opening.
    Type: Grant
    Filed: December 13, 2017
    Date of Patent: December 21, 2021
    Assignee: VITESCO TECHNOLOGIES GMBH
    Inventors: Holger Fröhlich, Isao Fukumoto
  • Patent number: 11190070
    Abstract: A rotor for a rotating electrical machine, the rotor including: a rotor core having a plurality of magnetic poles; and a plurality of permanent magnets arranged in the rotor core, wherein: in each of the plurality of magnetic poles, the rotor core has a plurality of holes including a first hole and a second hole in each of which a respective permanent magnet of the plurality of permanent magnets having a planar magnetic pole surface is arranged.
    Type: Grant
    Filed: December 18, 2017
    Date of Patent: November 30, 2021
    Assignee: AISIN AW CO., LTD.
    Inventors: Naoto Saito, Masayuki Ikemoto, Tsuyoshi Miyaji
  • Patent number: 11190062
    Abstract: The moldability of the stator of an axial gap type rotating electric machine improved. The axial gap type rotating electric machine has: a stator comprising core members disposed about a rotating shaft in a ring shape with a predetermined space from adjacent core members, said core members each having a core around which a coil is wound, the number of the turns of the coil being less on the outer perimeter side than on the inner perimeter side, the core members being molded with mold material; and a rotor facing an end surface of the core in the shaft direction through a predetermined gap. The core members comprise: a first core member in which the number of coil winding layers on one side in the shaft direction is larger than the number of winding layers on the other side; and a second core member in which the number of coil winding layers on one side in the shaft direction is less than the number of winding layers on the other side.
    Type: Grant
    Filed: March 4, 2015
    Date of Patent: November 30, 2021
    Assignee: Hitachi Industrial Equipment Systems Co., Ltd.
    Inventors: Toru Sakai, Tomonori Kawagoe, Daisuke Kitajima, Katsuyuki Yamazaki, Toshifumi Suzuki, Shuuichi Takahashi, Hirooki Tokoi
  • Patent number: 11165312
    Abstract: This invention reduces the shaft voltage of an axial-air-gap dynamo-electric machine while ensuring high output and high efficiency. Said axial-air-gap dynamo-electric machine comprises the following: a stator comprising a plurality of stator cores, each of which comprises a core and a coil, arranged in a circle around a shaft; a housing, the inside surface of which faces the stator radially; and at least one rotor, the surface of which faces the surface of the stator with a prescribed air gap interposed therebetween in the radial direction of the shaft. The rotor has, on the outside thereof, a conductive section comprising a conductive member. This axial-air-gap dynamo-electric machine has a first region where the inside surface of the housing faces the aforementioned conductive section radially and a second region, closer to the stator than the first region is, that extends to the coil side surfaces that face the rotor.
    Type: Grant
    Filed: April 14, 2014
    Date of Patent: November 2, 2021
    Assignee: Hitachi Industrial Equipment Systems Co., Ltd.
    Inventors: Hirooki Tokoi, Shuuichi Takahashi, Yasuei Yoneoka, Toshifumi Suzuki, Toru Sakai, Katsuyuki Yamazaki, Norihisa Iwasaki, Ryousou Masaki, Yuji Enomoto