Patents by Inventor Hideki Morishige
Hideki Morishige 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).
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Publication number: 20230344528Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: ApplicationFiled: June 27, 2023Publication date: October 26, 2023Applicant: Mitsubishi Electric CorporationInventors: Hideki MORISHIGE, Masayuki NAKAZAWA, Mitsuru MOCHIZUKI, Yoshitaka HARA, Kuniyuki SUZUKI
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Publication number: 20210367685Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: ApplicationFiled: August 6, 2021Publication date: November 25, 2021Applicant: Mitsubishi Electric CorporationInventors: Hideki MORISHIGE, Masayuki NAKAZAWA, Mitsuru MOCHIZUKI, Yoshitaka HARA, Kuniyuki SUZUKI
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Patent number: 11128389Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: GrantFiled: January 24, 2020Date of Patent: September 21, 2021Assignee: Mitsubishi Electric CorporationInventors: Hideki Morishige, Masayuki Nakazawa, Mitsuru Mochizuki, Yoshitaka Hara, Kuniyuki Suzuki
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Patent number: 10964631Abstract: A semiconductor package includes a package main body. The package main body includes: a lead frame that includes first terminals and a die pad; two or more integrated circuit chips that are disposed on the die pad; one or more electrically conductive members that are disposed on the die pad; wires that connect the first terminals and the integrated circuit chips electrically; and a molded member that seals the lead frame, the integrated circuit chips, the electrically conductive member, and the wires. An upper surface, a bottom surface, and side surfaces of the package main body are formed by the molded member. The electrically conductive member is exposed through the upper surface of the package main body, and the die pad is exposed through the bottom surface of the package main body.Type: GrantFiled: February 25, 2016Date of Patent: March 30, 2021Assignee: MITSUBISHI ELECTRIC CORPORATIONInventors: Hideharu Yoshioka, Akimichi Hirota, Naofumi Yoneda, Hidenori Ishibashi, Shintaro Shinjo, Kiyoshi Ishida, Hideki Morishige
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Publication number: 20200162173Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: ApplicationFiled: January 24, 2020Publication date: May 21, 2020Applicant: Mitsubishi Electric CorporationInventors: Hideki MORISHIGE, Masayuki Nakazawa, Mitsuru Mochizuki, Yoshitaka Hara, Kuniyuki Suzuki
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Publication number: 20200126896Abstract: A semiconductor package includes a package main body. The package main body includes: a lead frame that includes first terminals and a die pad; two or more integrated circuit chips that are disposed on the die pad; one or more electrically conductive members that are disposed on the die pad; wires that connect the first terminals and the integrated circuit chips electrically; and a molded member that seals the lead frame, the integrated circuit chips, the electrically conductive member, and the wires. An upper surface, a bottom surface, and side surfaces of the package main body are formed by the molded member. The electrically conductive member is exposed through the upper surface of the package main body, and the die pad is exposed through the bottom surface of the package main body.Type: ApplicationFiled: February 25, 2016Publication date: April 23, 2020Applicant: Mitsubishi Electric CorporationInventors: Hideharu YOSHIOKA, Akimichi HIROTA, Naofumi YONEDA, Hidenori ISHIBASHI, Shintaro SHINJO, Kiyoshi ISHIDA, Hideki MORISHIGE
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Patent number: 10601526Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: GrantFiled: May 21, 2019Date of Patent: March 24, 2020Assignee: Mitsubishi Electric CorporationInventors: Hideki Morishige, Masayuki Nakazawa, Mitsuru Mochizuki, Yoshitaka Hara, Kuniyuki Suzuki
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Patent number: 10516209Abstract: Synthesizers (32, 24) for synthesizing feedback signals output from a plurality of antenna modules (4) are provided. A distortion compensation signal output unit (15) derives, from a difference between a feedback signal synthesized by the synthesizers (32, 24) and a base band signal output from a modulation unit (12), a distortion compensation coefficient that provides, to the base band signal, distortion characteristics opposite to distortion characteristics of a signal radiated from the phased array antenna and outputs a predistortion signal representing the distortion compensation coefficient to a PD unit (13).Type: GrantFiled: April 1, 2016Date of Patent: December 24, 2019Assignee: Mitsubishi Electric CorporationInventors: Hifumi Noto, Nobuhiko Ando, Hideyuki Nakamizo, Morishige Hieda, Hideki Morishige
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Publication number: 20190273565Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: ApplicationFiled: May 21, 2019Publication date: September 5, 2019Applicant: Mitsubishi Electric CorporationInventors: Hideki Morishige, Masayuki Nakazawa, Mitsuru Mochizuki, Yoshitaka Hara, Kuniyuki Suzuki
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Patent number: 10355740Abstract: An array antenna device AAD including: a plurality of element antennas EAs; a transmission/reception module TRM, which is to be connected to one of the EAs, and includes a transmission circuit TC, a reception circuit RC, and a transmission/reception switch; a transmission/reception controller controlling by controlling an amplitude and phase of a signal passing through each TC and RC, and by switching transmission/reception; a distributor distributing a signal from a signal transmitter to each TC to transmit a distributed signal from the each TC; a combiner combining a signal from the each RC; and a receiver receiving the combined signal. A detection signal, which contains a detected amplitude and phase of the signal received by the receiver, is corrected with a piece of interconnection amplitude-phase information about the EAs to obtain a calibration value in calibration of each TRM, and calibration is conducted with the calibration value.Type: GrantFiled: February 21, 2017Date of Patent: July 16, 2019Assignee: MITSUBISHI ELECTRIC CORPORATIONInventors: Satoshi Yamaguchi, Hikaru Watanabe, Tasuku Kuriyama, Takashi Maruyama, Masataka Otsuka, Hideki Morishige
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Patent number: 10348422Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: GrantFiled: April 6, 2016Date of Patent: July 9, 2019Assignee: Mitsubishi Electric CorporationInventors: Hideki Morishige, Masayuki Nakazawa, Mitsuru Mochizuki, Yoshitaka Hara, Kuniyuki Suzuki
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Publication number: 20190131701Abstract: A parallel line formed on the same plane as a patch element, close to the patch element, in a direction that is a magnetic field direction of a patch antenna and parallel to the polarization direction of the patch antenna, and a bent line shaped so as to be bent between adjacent patch elements and configured to connect their parallel lines to each other, form a coupling line, which couples part of an electromagnetic wave excited by one of the patch elements to its adjacent patch antenna, and, in the coupling line, a gap between the parallel line and the patch element and a length of the bent line are set so that an electromagnetic wave coupled from one patch antenna to its adjacent patch antenna via space and an electromagnetic wave coupled from the one patch antenna to the adjacent patch antenna via the coupling line cancel each other.Type: ApplicationFiled: June 14, 2016Publication date: May 2, 2019Applicant: MITSUBISHI ELECTRIC CORPORATIONInventors: Hikaru WATANABE, Satoshi YAMAGUCHI, Masataka OTSUKA, Hideki MORISHIGE
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Publication number: 20190044568Abstract: An array antenna device AAD including: a plurality of element antennas EAs; a transmission/reception module TRM, which is to be connected to one of the EAs, and includes a transmission circuit TC, a reception circuit RC, and a transmission/reception switch; a transmission/reception controller controlling by controlling an amplitude and phase of a signal passing through each TC and RC, and by switching transmission/reception; a distributor distributing a signal from a signal transmitter to each TC to transmit a distributed signal from the each TC; a combiner combining a signal from the each RC; and a receiver receiving the combined signal. A detection signal, which contains a detected amplitude and phase of the signal received by the receiver, is corrected with a piece of interconnection amplitude-phase information about the EAs to obtain a calibration value in calibration of each TRM, and calibration is conducted with the calibration value.Type: ApplicationFiled: February 21, 2017Publication date: February 7, 2019Applicant: MITSUBISHI ELECTRIC CORPORATIONInventors: Satoshi YAMAGUCHI, Hikaru WATANABE, Tasuku KURIYAMA, Takashi MARUYAMA, Masataka OTSUKA, Hideki MORISHIGE
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Publication number: 20180123707Abstract: A signal is transmitted and received between a base station device and a communication terminal device that are included in a communication system, through a multi-element antenna including a plurality of antenna elements. At least one of the base station device and the communication terminal device includes a PHY processing unit that is a calibration unit that performs calibration of phases and amplitudes of beams formed by the antenna elements when the signal is transmitted and received. The PHY processing unit obtains a correction value for the phases and the amplitudes of the beams in the respective antenna elements so that the phases and the amplitudes of the beams are identical among the antenna elements, and performs the calibration based on the obtained correction value.Type: ApplicationFiled: April 6, 2016Publication date: May 3, 2018Applicant: Mitsubishi Electric CorporationInventors: Hideki MORISHIGE, Masayuki NAKAZAWA, Mitsuru MOCHIZUKI, Yoshitaka HARA, Kuniyuki SUZUKI
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Publication number: 20180053997Abstract: Synthesizers (32, 24) for synthesizing feedback signals output from a plurality of antenna modules (4) are provided. A distortion compensation signal output unit (15) derives, from a difference between a feedback signal synthesized by the synthesizers (32, 24) and a base band signal output from a modulation unit (12), a distortion compensation coefficient that provides, to the base band signal, distortion characteristics opposite to distortion characteristics of a signal radiated from the phased array antenna and outputs a predistortion signal representing the distortion compensation coefficient to a PD unit (13).Type: ApplicationFiled: April 1, 2016Publication date: February 22, 2018Applicant: Mitsubishi Electric CorporationInventors: Hifumi NOTO, Nobuhiko ANDO, Hideyuki NAKAMIZO, Morishige HIEDA, Hideki MORISHIGE
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Patent number: 6968159Abstract: The frequency conversion circuit 30 as an element of a radio communication device, the frequency conversion circuit for converting by using a local oscillator 32 the frequency of a signal which is modulated with a reference oscillation signal from a reference oscillator 31. The frequency conversion circuit 30 is provided with a first mixer 36, a change-over switch 35, and a second mixer 33. The first mixer 36 mixes the reference oscillation signal from the reference oscillator 31 and a local oscillation signal from the local oscillator. The change-over switch 35 selects one of a mixed signal from the first mixer 36 and the local oscillation signal from the local oscillator 32. The second mixer 33 mixes the signal modulated with the reference oscillation signal with an output from the change-over switch 35.Type: GrantFiled: February 26, 2001Date of Patent: November 22, 2005Assignee: Mitsubishi Denki Kabushiki KaishaInventor: Hideki Morishige
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Patent number: 6600911Abstract: If a local oscillation wave of a frequency approximately half the received signal frequency is input to a low noise amplifier 2, a dc offset voltage caused by the nonlinearity of the amplifier is produced, thus degrading reception sensitivity. This problem is resolved by disposing before the low noise amplifier 2 a filter means, such as a bandpass filter 12, band-elimination filter 13, or high pass filter 14, with characteristics for passing the received wave and suppressing a frequency band at approximately half the received wave frequency, thus preventing a radiation wave at substantially the same frequency as the local oscillation wave from being input to the low noise amplifier 2. A filter circuit 15 is also provided in the low noise amplifier 2 as a means for eliminating a radiation wave input to the low noise amplifier 2.Type: GrantFiled: May 30, 2000Date of Patent: July 29, 2003Assignee: Mitsubishi Denki Kabushiki KaishaInventors: Hideki Morishige, Hiroshi Ikematsu, Kenji Itoh
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Publication number: 20030114130Abstract: The frequency conversion circuit 30 as an element of a radio communication device, the frequency conversion circuit for converting by using a local oscillator 32 the frequency of a signal which is modulated with a reference oscillation signal from a reference oscillator 31. The frequency conversion circuit 30 is provided with a first mixer 36, a change-over switch 35, and a second mixer 33. The first mixer 36 mixes the reference oscillation signal from the reference oscillator 31 and a local oscillation signal from the local oscillator. The change-over switch 35 selects one of a mixed signal from the first mixer 36 and the local oscillation signal from the local oscillator 32. The second mixer 33 mixes the signal modulated with the reference oscillation signal with an output from the change-over switch 35.Type: ApplicationFiled: October 2, 2002Publication date: June 19, 2003Inventor: Hideki Morishige