Patents by Inventor Byoung-Kuk Lee

Byoung-Kuk Lee 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).

  • Publication number: 20190221363
    Abstract: A wireless charging pad for transferring wireless power to an electric vehicle (EV) may comprise a plate type ferrite; and a coil disposed on an upper part of the plate type ferrite, the plate type ferrite may comprise a first ferrite member occupying an inside of a region defined by an inner surface of the coil and a second ferrite member occupying an outside of a region defined by an outer surface of the coil, and the second ferrite member has a wall shape surrounding the outer surface of the coil. Accordingly, safety can be improved by using the ferrite structure having excellent EMI characteristics in the wireless recharging pad, and the WPT efficiency can also be enhanced by using the ferrite structure having excellent electromagnetic characteristics in the wireless charging pad.
    Type: Application
    Filed: November 30, 2018
    Publication date: July 18, 2019
    Inventors: Gyu Yeong CHOE, Jae Eun CHA, Woo Young LEE, Dong Sup AHN, Byoung Kuk LEE, Min Kook KIM, Jong Eun BYUN, Sang Joon ANN
  • Patent number: 10276344
    Abstract: A power supply apparatus able to control an output current for maintaining plasma in a plasma generator includes: a switching power supply including a rectifier, an inverter, and a phase shifter; a plasma source connected to the switching power supply and generating the plasma in the plasma generator; a resonance network connected between the switching power supply and the plasma source and including a resonance inductor connected to a primary winding in series and a resonance capacitor connected to the plasma source in parallel and connected to the resonance inductor in series; and a control unit controlling the switching power supply in order to phase-shift a voltage and a current provided to the resonance network.
    Type: Grant
    Filed: July 31, 2017
    Date of Patent: April 30, 2019
    Assignee: NEW POWER PLASMA CO., LTD.
    Inventors: Won Yong Sung, Keun Wan Koo, Byoung Kuk Lee, Seung Hee Ryu, Chang Seob Lim, Hong Kweon Moon
  • Publication number: 20190074731
    Abstract: A method for detecting a foreign object between a transmission pad and a reception pad for wireless power transfer (WPT) may comprise steps of performing a zero phase angle (ZPA) control for a power transfer converter included in or connected to the transmission pad; detecting a characteristic parameter with respect to at least one of an input current and a switching frequency of the power transfer converter; and determining whether or not a foreign object exists between the transmission pad and the reception pad according to whether the characteristic parameter with respect to at least one of the input current and the switching frequency deviates from an allowable range.
    Type: Application
    Filed: February 26, 2018
    Publication date: March 7, 2019
    Inventors: Woo Young LEE, Gyu Yeong CHOE, Jae Eun CHA, Byoung Kuk LEE, Min Kook KIM, Min Jung KIM, Dong Myoung JOO, Jong Eun BYUN
  • Publication number: 20190052126
    Abstract: A method for detecting a foreign object between a transmission pad and a reception pad for wireless power transfer (WPT) may comprise: performing, by a processor, a zero phase angle (ZPA) control for a power transfer converter included in or connected to the transmission pad; detecting, by the processor, a phase difference between an input current and an input voltage of the power transfer converter; and determining, by the processor, whether or not the foreign object exists between the transmission pad and the reception pad by comparing the phase difference with a reference value.
    Type: Application
    Filed: March 8, 2018
    Publication date: February 14, 2019
    Inventors: Woo Young LEE, Gyu Yeong CHOE, Jae Eun CHA, Min Jung KIM, Byoung Kuk LEE, Min Kook KIM, Sang Joon ANN, Jong Eun BYUN
  • Publication number: 20190023134
    Abstract: A method for selectively performing a full bridge control and a half bridge control in a WPT system using an LCCL-S resonant network may include: performing the full bridge control by controlling the switches not connected in series of the full bridge inverter to operate simultaneously; calculating a coupling coefficient of the WPT system; determining whether it is possible to switch the full bridge control to the half bridge control based on the calculated coupling coefficient; in response to determining that it is possible to switch the full bridge control to the half bridge control, calculating a load of the WPT system; and performing the half bridge control for the full bridge inverter based on the calculated load.
    Type: Application
    Filed: July 18, 2018
    Publication date: January 24, 2019
    Inventors: Jae Eun Cha, Gyu Yeong Choe, Woo Young Lee, Jong Eun Byun, Min Kook Kim, Sang Joon Ann, Byoung Kuk Lee, Dong Myoung Joo
  • Patent number: 10171022
    Abstract: A motor driving device is disclosed. The motor driving device includes: a rectifier rectifying alternating current (AC) power into direct current (DC) power to output an input voltage; a first buck-boost converter including a plurality of switches for converting the input voltage and having a buck mode of stepping down the input voltage and a boost mode of stepping up the input voltage; an inverter converting a DC-link voltage transformed from the first buck-boost converter into an AC voltage and transferring the AC voltage to a motor; and a controller receiving motor information related to driving of the motor, comparing magnitudes of a desired DC-link voltage depending on the received motor information and the input voltage with each other, and performing a control to switch only any one of the plurality of switches so that the first buck-boost converter is operated in the buck mode or the boost mode.
    Type: Grant
    Filed: November 19, 2015
    Date of Patent: January 1, 2019
    Assignees: SAMSUNG ELECTRONICS CO., LTD., RESEARCH BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY
    Inventors: Jin-han Kim, Byoung-kuk Lee, Min-kook Kim, Sun-jin Kim, Hyun-soo Park, Dong-gyun Woo
  • Patent number: 10085607
    Abstract: Disclosed herein are a power supply apparatus, and an electric apparatus and a vacuum cleaner having the power supply apparatus. According to an aspect of the present disclosure, the power supply apparatus includes: a first power converter configured to convert a first Alternating Current (AC) voltage into a Direct Current (DC) voltage; a second power converter configured to drop the DC voltage output from the first power converter and transfer the dropped DC voltage to a power storage unit, and to boost a DC voltage of the power storage unit and output the boosted DC voltage; and a third power converter configured to convert a DC voltage among the DC voltage output from the first power converter and the boosted DC voltage output from the second power converter, into a second AC voltage, and to transfer the second AC voltage to a load.
    Type: Grant
    Filed: September 12, 2016
    Date of Patent: October 2, 2018
    Assignees: RESEARCH & BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY, SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Young Jae Park, Min Jung Kim, Dong-Myoung Joo, Min Jae Kim, Hyo Won Sin, Dong-Hyun Lee, Byoung-Kuk Lee
  • Publication number: 20180247794
    Abstract: A power supply apparatus having a passive element for plasma ignition in a plasma generator includes: a switching power supply including a rectifier and an inverter; a transformer including a primary winding and a ferrite core around which the primary winding is wound; and a resonance network connected between the switching power supply and the primary winding and including a resonance inductor connected to the primary winding in series and a resonance capacitor connected to the primary winding in parallel and connected to the resonance inductor in series, wherein the resonance network includes the passive element having one end connected to the resonance capacitor in series and the other end connected to a ground, and magnitudes of a voltage and a current of the inverter are adjusted by the passive element.
    Type: Application
    Filed: July 31, 2017
    Publication date: August 30, 2018
    Inventors: Won Yong SUNG, Keun Wan KOO, Byoung Kuk LEE, Seung Hee RYU, Chang Seob LIM, Hong Kweon MOON
  • Publication number: 20180247791
    Abstract: A power supply apparatus able to control an output current for maintaining plasma in a plasma generator includes: a switching power supply including a rectifier, an inverter, and a phase shifter; a plasma source connected to the switching power supply and generating the plasma in the plasma generator; a resonance network connected between the switching power supply and the plasma source and including a resonance inductor connected to a primary winding in series and a resonance capacitor connected to the plasma source in parallel and connected to the resonance inductor in series; and a control unit controlling the switching power supply in order to phase-shift a voltage and a current provided to the resonance network.
    Type: Application
    Filed: July 31, 2017
    Publication date: August 30, 2018
    Inventors: Won Yong SUNG, Keun Wan KOO, Byoung Kuk LEE, Seung Hee RYU, Chang Seob LIM, Hong Kweon MOON
  • Publication number: 20180191204
    Abstract: A foreign object detection apparatus using a mobile laser in a wireless power transfer (WPT) system may comprise a laser transmitting part installed on one side of an upper portion of a transmission pad to generate a laser; a laser receiving part installed on an opposite side to the one side, and receiving the laser generated by the laser transmitting part; and a laser moving part for moving the laser transmitting part and the laser receiving part along the one side or the opposite side of the transmission pad.
    Type: Application
    Filed: January 2, 2018
    Publication date: July 5, 2018
    Inventors: Jae Eun CHA, Gyu Yeong CHOE, Woo Young LEE, Byoung Kuk LEE, Min Jung KIM, Min Kook KIM, Jong Eun BYUN, Sang Joon ANN
  • Publication number: 20180191203
    Abstract: A foreign object detection apparatus using reflected or refracted laser in a wireless power transfer (WPT) system may comprise a laser transmitter disposed on one side of an upper portion of a transmission pad to generate a laser; at least one laser guiding block disposed on one side or the other side of the upper portion of the transmission pad for receiving the laser generated by the laser transmitter and reflecting or refracting the received laser; and a laser receiver for sensing the laser through the at least one laser guiding block.
    Type: Application
    Filed: December 29, 2017
    Publication date: July 5, 2018
    Inventors: Jae Eun CHA, Gyu Yeong CHOE, Woo Young LEE, Byoung Kuk LEE, Min Jung KIM, Dong Myoung JOO, Jong Eun BYUN, Sang Joon ANN
  • Publication number: 20180141443
    Abstract: A vehicle charging system includes a power transmitter including at least one voltage converter configured to allow a vehicle charging mode to be changed by a plurality of switches and a magnetic field generator configured to generate a magnetic field corresponding to a voltage converted by the voltage converter; and a power receiver including a current inductor configured to allow an electrical signal to be induced by the magnetic field generated by the magnetic field generator, a rectifier configured to rectify the induced electrical signal and a battery configured to be charged by the electrical signal rectified by the rectifier.
    Type: Application
    Filed: December 16, 2016
    Publication date: May 24, 2018
    Inventors: Woo Young LEE, Byeong Seob SONG, JaeEun CHA, Gyu Yeong CHOE, Minjung KIM, Jongeun BYUN, Minkook KIM, Dongmyoung JOO, Sangjoon ANN, Byoung Kuk LEE
  • Publication number: 20180109292
    Abstract: A reception pad for a wireless power transfer (WPT) system includes: a plate-shaped ferrite; an insulating layer disposed on one side of the ferrite; a first coil layer disposed on the insulating layer; an interlayer insulating layer disposed on the first coil layer; and a second coil layer disposed on the interlayer insulating layer. The insulating layer at least partially surrounds the first coil layer and the second coil layer, the first coil layer and the second coil layer at least partially overlap each other and are arranged in a rectangular ring form on the one side of the ferrite, and a ratio of a width which is larger between a first width of the first coil layer and a second width of the second coil layer to a first length of the ferrite in a width direction corresponding to the first width or the second width is 0.14 to 0.15.
    Type: Application
    Filed: October 12, 2017
    Publication date: April 19, 2018
    Inventors: Woo Young Lee, Gyu Yeong Choe, Min Jung Kim, Min Kook Kim, Jong Eun Byeon, Min Hyuck Kang, Dong Gyun Woo, Byoung Kuk Lee, Dong Myoung Joo
  • Publication number: 20180070578
    Abstract: A wireless power transfer (WPT) control method using an object detection sensor, performed at a WPT apparatus, may include detecting whether or not an object exists between a transmission pad and a reception pad mounted on an electric vehicle (EV) using an object detection sensor; in response to detecting that an object does not exist between the transmission pad and the reception pad, controlling the transmission pad to perform WPT to the reception pad; and in response to detecting that an object exists between the transmission pad and the reception pad, generating ultrasonic waves using an ultrasonic wave generator.
    Type: Application
    Filed: September 7, 2017
    Publication date: March 15, 2018
    Applicants: Hyundai Motor Company, Kia Motors Corporation, Research & Business Foundation Sungkyunkwan University
    Inventors: Gyu Yeong CHOE, Woo Young Lee, Min Kook Kim, Min Jung Kim, Byoung Kuk Lee
  • Publication number: 20180034403
    Abstract: A motor driving device is disclosed. The motor driving device includes: a rectifier rectifying alternating current (AC) power into direct current (DC) power to output an input voltage; a first buck-boost converter including a plurality of switches for converting the input voltage and having a buck mode of stepping down the input voltage and a boost mode of stepping up the input voltage; an inverter converting a DC-link voltage transformed from the first buck-boost converter into an AC voltage and transferring the AC voltage to a motor; and a controller receiving motor information related to driving of the motor, comparing magnitudes of a desired DC-link voltage depending on the received motor information and the input voltage with each other, and performing a control to switch only any one of the plurality of switches so that the first buck-boost converter is operated in the buck mode or the boost mode.
    Type: Application
    Filed: November 19, 2015
    Publication date: February 1, 2018
    Applicants: Samsung Electronics Co., Ltd., RESEARCH BUSINESS FOUNDATION SUNGKYUNKWAN UNIVERSITY
    Inventors: Jin-han KIM, Byoung-kuk LEE, Min-kook KIM, Sun-jin KIM, Hyun-soo PARK, Dong-gyum WOO
  • Publication number: 20170327103
    Abstract: A charging device according to an exemplary embodiment of the present invention may include: a battery adapted and configured to store a DC voltage, first and second motors adapted and configured to operate as a motor or a generator, first and second inverters adapted and configured to operate the first and second motors, a voltage transformer adapted and configured to boost the DC voltage of the battery to supply it to the first and second inverters and boosts the DC voltage of the inverter to supply it to the battery, and a charging controller adapted and configured to operate the first and second inverters as a booster or operate the voltage transformer as a buck booster according to a voltage that is input through a neutral point of the first and second motors and the voltage of the battery.
    Type: Application
    Filed: August 4, 2017
    Publication date: November 16, 2017
    Inventors: Seong Yeop Lim, Gu Bae Kang, Jeongbin Yim, Byungsoon Min, Byoung-Kuk Lee, Seung-Min Shin, Dong-Hee Kim, Dong-Gyun Woo
  • Publication number: 20170279309
    Abstract: A primary coil circuit of a ground assembly for wirelessly transferring power to a secondary coil includes: a primary coil magnetically coupled to the secondary coil and having a first terminal and a second terminal; a second capacitor having a first terminal and a second terminal connected to the first terminal of the primary coil; a first inductor having a first terminal coupled to a first input terminal of a power source and a second terminal coupled to the first terminal of the second capacitor; and a first capacitor having a first terminal coupled commonly to the second terminal of the first inductor and the first terminal of the second capacitor and a second terminal coupled commonly to the second terminal of the primary coil and a second input terminal of the power source.
    Type: Application
    Filed: March 16, 2017
    Publication date: September 28, 2017
    Inventors: Woo Young Lee, Gyu Yeong Choe, Min Jung Kim, Min Kook Kim, Jong Eun Byeon, Min Hyuck Kang, Dong Gyun Woo, Byoung Kuk Lee, Dong Myoung Joo
  • Publication number: 20170264143
    Abstract: A wireless power transmission pad for transmitting wireless power to a reception pad including a secondary coil includes: a rectangular-shaped primary coil having an X-width defined in an x-direction and a Y-width defined in a y-direction and having a central space; a ferrite coupled to the primary coil; and a housing supporting the primary coil and the ferrite. A first cross-sectional area of a first portion including the X-width of the primary coil is smaller than a second cross-sectional area of a second portion including the Y-width of the primary coil.
    Type: Application
    Filed: March 7, 2017
    Publication date: September 14, 2017
    Inventors: Woo Young Lee, Gyu Yeong Choe, Byoung Kuk Lee, Min Kook Kim, Dong Myoung Joo, Jong Eun Byeon, Min Hyuck Kang, Dong Gyun Woo, Min Jung Kim
  • Patent number: 9725001
    Abstract: A charging device according to an exemplary embodiment of the present invention may include: a battery adapted and configured to store a DC voltage, first and second motors adapted and configured to operate as a motor or a generator, first and second inverters adapted and configured to operate the first and second motors, a voltage transformer adapted and configured to boost the DC voltage of the battery to supply it to the first and second inverters and boosts the DC voltage of the inverter to supply it to the battery, and a charging controller adapted and configured to operate the first and second inverters as a booster or operate the voltage transformer as a buck booster according to a voltage that is input through a neutral point of the first and second motors and the voltage of the battery.
    Type: Grant
    Filed: April 14, 2015
    Date of Patent: August 8, 2017
    Assignees: Hyundai Motor Company, Research & Business Foundation Sungkyunkwan University
    Inventors: Seong Yeop Lim, Gu Bae Kang, Jeongbin Yim, Byungsoon Min, Byoung-Kuk Lee, Seung-Min Shin, Dong-Hee Kim, Dong-Gyun Woo
  • Publication number: 20170150860
    Abstract: Disclosed herein are a power supply apparatus, and an electric apparatus and a vacuum cleaner having the power supply apparatus. According to an aspect of the present disclosure, the power supply apparatus includes: a first power converter configured to convert a first Alternating Current (AC) voltage into a Direct Current (DC) voltage; a second power converter configured to drop the DC voltage output from the first power converter and transfer the dropped DC voltage to a power storage unit, and to boost a DC voltage of the power storage unit and output the boosted DC voltage; and a third power converter configured to convert a DC voltage among the DC voltage output from the first power converter and the boosted DC voltage output from the second power converter, into a second AC voltage, and to transfer the second AC voltage to a load.
    Type: Application
    Filed: September 12, 2016
    Publication date: June 1, 2017
    Applicants: SAMSUNG ELECTRONICS CO., LTD., Research & Business Foundation SungKyunKwan University
    Inventors: Young Jae PARK, Min Jung Kim, Dong-Myoung Joo, Min Jae Kim, Hyo Won Sin, Dong-Hyun Lee, Byoung-Kuk Lee