Patents by Inventor Tetsuo Tateishi
Tetsuo Tateishi 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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Patent number: 12230462Abstract: A pulse control device 10 comprises: a switch output unit 100 which generates a pulse output voltage Vo from a direct-current input voltage Vi and supplies the pulse output voltage Vo to a load (such as a relay coil 21 of a mechanical relay 20); a low-pass filter unit 300 which receives a feedback input of the pulse output voltage Vo and generates a feedback voltage Vfb; and an output feedback control unit 200 which receives an input of the feedback voltage Vfb and controls the switch output unit 100 so that an average value of the pulse output voltage Vo becomes constant. The low-pass filter unit 300 may be configured without a coil.Type: GrantFiled: September 16, 2022Date of Patent: February 18, 2025Assignee: Rohm Co., Ltd.Inventors: Hiroto Oshita, Tetsuo Tateishi, Yosuke Fukumoto, Yuhei Yamaguchi, Yoju Imamura, Genki Tsuruyama
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Publication number: 20240332271Abstract: A semiconductor device includes two semiconductor elements with a respective switching operation being controlled depending on a first driving signal input to a third electrode. A first conductor and a second conductor are electrically interposed between the third electrodes of the two semiconductor elements. The first conductor is electrically connected to a signal terminal. The electrical connection between the third electrodes of the two semiconductor elements includes a first conduction path through the first conductor and a second conduction path through the second conductor. An inductance value of the second conduction path is smaller than an inductance value of the first conduction path. A resistance value of the second conduction path is larger than a resistance value of the first conduction path.Type: ApplicationFiled: June 13, 2024Publication date: October 3, 2024Inventors: Hiroto SAKAI, Yuta OKAWAUCHI, Tetsuo TATEISHI
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Publication number: 20240333157Abstract: A switching power supply device includes a first switch with a first terminal connectable to an application terminal for the input voltage and a second terminal connectable to the first terminal of an inductor; a second switch with a first terminal connectable to the first terminal of the inductor and a second terminal connectable to an application terminal for a voltage lower than the input voltage; a third switch being a GaN semiconductor element and connectable in parallel with the inductor; a detector detecting occurrence or a sign or occurrence of an overshoot in the output voltage; and a controller. The controller produces, after occurrence or a sign of occurrence of an overshoot in the output voltage is detected by the detector until settlement of the overshoot in the output voltage, a control state in which to keep the first and second switches off and the third switch on.Type: ApplicationFiled: June 13, 2024Publication date: October 3, 2024Inventors: Kosuke SATO, Tetsuo TATEISHI, Shingo HASHIGUCHI, Isao TAKOBE, Yuhei YAMAGUCHI
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Patent number: 12047045Abstract: This switching power source 100 has: a switching output circuit 110 which drives an inductor current IL by turning on and off an upper switch 111 and a lower switch 112 and generates an output voltage VOUT from an input voltage PVDD; a lower current detection unit 210 which detects the inductor current IL flowing through the lower switch 112 during an ON-period of the lower switch 112 and acquires lower current feedback information Iinfo; an error amplifier 140 which outputs voltage feedback information Vinfo including information on an error between the output voltage VOUT (feedback voltage FB) and a reference voltage REF; an information synthesis unit 220 that generates synthesis feedback information VIinfo by synthesizing Iinfo with Vinfo; and an information holding unit 230 which samples Vinfo during the ON-period of the lower switch 112.Type: GrantFiled: April 24, 2023Date of Patent: July 23, 2024Assignee: Rohm Co., Ltd.Inventors: Masashi Nagasato, Seiji Takenaka, Tetsuo Tateishi
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Patent number: 12040709Abstract: A switching power supply device includes a first switch with a first terminal connectable to an application terminal for the input voltage and a second terminal connectable to the first terminal of an inductor; a second switch with a first terminal connectable to the first terminal of the inductor and a second terminal connectable to an application terminal for a voltage lower than the input voltage; a third switch with a first terminal connectable to the first terminal of the inductor and a second terminal connectable to the second terminal of the inductor; a detector; and a controller. The controller produces, after occurrence or a sign of occurrence of an overshoot in the output voltage is detected by the detector until settlement of the overshoot in the output voltage, a control state in which to keep the first and second switches off and the third switch on.Type: GrantFiled: June 12, 2020Date of Patent: July 16, 2024Assignee: Rohm Co., Ltd.Inventors: Kosuke Sato, Tetsuo Tateishi, Shingo Hashiguchi, Isao Takobe, Yuhei Yamaguchi
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Patent number: 12034364Abstract: A switching regulator control circuit is used in a switching regulator that converts an input voltage into an output voltage by the switching of a switching device, and generates a switching signal for controlling the ON/OFF operation of the switching device. The switching regulator control circuit has a fault detector and a fault protector. The fault detector detects, based on the duty ratio of the switching signal or a variable correlated to it and included in a control signal used to generate the switching signal, a fault state where the duty ratio falls outside the normal modulation range. The fault protector stops the switching of the switching device when the fault detector detects a fault state.Type: GrantFiled: June 16, 2022Date of Patent: July 9, 2024Assignee: Rohm Co., Ltd.Inventors: Yuhei Yamaguchi, Tetsuo Tateishi
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Publication number: 20230406244Abstract: A linear power supply circuit according to the present invention is provided with: an output transistor provided between an input end to which an input voltage is applied and an output end to which an output voltage is applied; and a driver for driving the output transistor on the basis of the difference between a voltage based on the output voltage and a reference voltage. The driver is provided with: a differential amplifier for outputting a voltage according to the difference between the voltage based on the output voltage and the reference voltage; a capacitor one end of which has an output of the differential amplifier applied thereto and the other end of which has the voltage based on the output voltage applied thereto; a converter for converting a voltage based on the output of the differential amplifier into an electrical current and outputting the electrical current; and an electrical current amplifier for amplifying the electrical current of the output of the converter.Type: ApplicationFiled: September 1, 2023Publication date: December 21, 2023Inventors: Isao Takobe, Yuhei Yamaguchi, Tetsuo Tateishi, Takeshi Nagata
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Patent number: 11772586Abstract: A linear power supply circuit according to the present invention is provided with: an output transistor provided between an input end to which an input voltage is applied and an output end to which an output voltage is applied; and a driver for driving the output transistor on the basis of the difference between a voltage based on the output voltage and a reference voltage. The driver is provided with: a differential amplifier for outputting a voltage according to the difference between the voltage based on the output voltage and the reference voltage; a capacitor one end of which has an output of the differential amplifier applied thereto and the other end of which has the voltage based on the output voltage applied thereto; a converter for converting a voltage based on the output of the differential amplifier into an electrical current and outputting the electrical current; and an electrical current amplifier for amplifying the electrical current of the output of the converter.Type: GrantFiled: April 20, 2022Date of Patent: October 3, 2023Assignee: Rohm Co., Ltd.Inventors: Isao Takobe, Yuhei Yamaguchi, Tetsuo Tateishi, Takeshi Nagata
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Publication number: 20230261625Abstract: This switching power source 100 has: a switching output circuit 110 which drives an inductor current IL by turning on and off an upper switch 111 and a lower switch 112 and generates an output voltage VOUT from an input voltage PVDD; a lower current detection unit 210 which detects the inductor current IL flowing through the lower switch 112 during an ON-period of the lower switch 112 and acquires lower current feedback information Iinfo; an error amplifier 140 which outputs voltage feedback information Vinfo including information on an error between the output voltage VOUT (feedback voltage FB) and a reference voltage REF; an information synthesis unit 220 that generates synthesis feedback information VIinfo by synthesizing Iinfo with Vinfo; and an information holding unit 230 which samples Vinfo during the ON-period of the lower switch 112.Type: ApplicationFiled: April 24, 2023Publication date: August 17, 2023Inventors: Masashi Nagasato, Seiji Takenaka, Tetsuo Tateishi, Daiki YANAGISHIMA
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Patent number: 11664775Abstract: This switching power source 100 has: a switching output circuit 110 which drives an inductor current IL by turning on and off an upper switch 111 and a lower switch 112 and generates an output voltage VOUT from an input voltage PVDD; a lower current detection unit 210 which detects the inductor current IL flowing through the lower switch 112 during an ON-period of the lower switch 112 and acquires lower current feedback information Iinfo; an error amplifier 140 which outputs voltage feedback information Vinfo including information on an error between the output voltage VOUT (feedback voltage FB) and a reference voltage REF; an information synthesis unit 220 that generates synthesis feedback information VIinfo by synthesizing Iinfo with Vinfo; and an information holding unit 230 which samples Vinfo during the ON-period of the lower switch 112.Type: GrantFiled: April 21, 2022Date of Patent: May 30, 2023Assignee: Rohm Co., Ltd.Inventors: Masashi Nagasato, Seiji Takenaka, Tetsuo Tateishi
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Publication number: 20230013839Abstract: A pulse control device 10 comprises: a switch output unit 100 which generates a pulse output voltage Vo from a direct-current input voltage Vi and supplies the pulse output voltage Vo to a load (such as a relay coil 21 of a mechanical relay 20); a low-pass filter unit 300 which receives a feedback input of the pulse output voltage Vo and generates a feedback voltage Vfb; and an output feedback control unit 200 which receives an input of the feedback voltage Vfb and controls the switch output unit 100 so that an average value of the pulse output voltage Vo becomes constant. The low-pass filter unit 300 may be configured without a coil.Type: ApplicationFiled: September 16, 2022Publication date: January 19, 2023Inventors: Hiroto OSHITA, Tetsuo Tateishi, Yosuke Fukumoto, Yuhei Yamaguchi, Yoju IMAMURA, Genki Tsuruyama
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Patent number: 11532449Abstract: A pulse control device 10 comprises: a switch output unit 100 which generates a pulse output voltage Vo from a direct-current input voltage Vi and supplies the pulse output voltage Vo to a load (such as a relay coil 21 of a mechanical relay 20); a low-pass filter unit 300 which receives a feedback input of the pulse output voltage Vo and generates a feedback voltage Vfb; and an output feedback control unit 200 which receives an input of the feedback voltage Vfb and controls the switch output unit 100 so that an average value of the pulse output voltage Vo becomes constant. The low-pass filter unit 300 may be configured without a coil.Type: GrantFiled: January 29, 2018Date of Patent: December 20, 2022Assignee: Rohm Co., Ltd.Inventors: Hiroto Oshita, Tetsuo Tateishi, Yosuke Fukumoto, Yuhei Yamaguchi, Yoju Imamura, Genki Tsuruyama
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Publication number: 20220321007Abstract: A switching power supply device includes a first switch with a first terminal connectable to an application terminal for the input voltage and a second terminal connectable to the first terminal of an inductor; a second switch with a first terminal connectable to the first terminal of the inductor and a second terminal connectable to an application terminal for a voltage lower than the input voltage; a third switch with a first terminal connectable to the first terminal of the inductor and a second terminal connectable to the second terminal of the inductor; a detector; and a controller. The controller produces, after occurrence or a sign of occurrence of an overshoot in the output voltage is detected by the detector until settlement of the overshoot in the output voltage, a control state in which to keep the first and second switches off and the third switch on.Type: ApplicationFiled: June 12, 2020Publication date: October 6, 2022Inventors: Kosuke Sato, Tetsuo Tateishi, Shingo Hashiguchi, Isao Takobe, Yuhei Yamaguchi
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Publication number: 20220311323Abstract: A switching regulator control circuit is used in a switching regulator that converts an input voltage into an output voltage by the switching of a switching device, and generates a switching signal for controlling the ON/OFF operation of the switching device. The switching regulator control circuit has a fault detector and a fault protector. The fault detector detects, based on the duty ratio of the switching signal or a variable correlated to it and included in a control signal used to generate the switching signal, a fault state where the duty ratio falls outside the normal modulation range. The fault protector stops the switching of the switching device when the fault detector detects a fault state.Type: ApplicationFiled: June 16, 2022Publication date: September 29, 2022Inventors: Yuhei Yamaguchi, Tetsuo Tateishi
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Publication number: 20220247371Abstract: This switching power source 100 has: a switching output circuit 110 which drives an inductor current IL by turning on and off an upper switch 111 and a lower switch 112 and generates an output voltage VOUT from an input voltage PVDD; a lower current detection unit 210 which detects the inductor current IL flowing through the lower switch 112 during an ON-period of the lower switch 112 and acquires lower current feedback information Iinfo; an error amplifier 140 which outputs voltage feedback information Vinfo including information on an error between the output voltage VOUT (feedback voltage FB) and a reference voltage REF; an information synthesis unit 220 that generates synthesis feedback information VIinfo by synthesizing Iinfo with Vinfo; and an information holding unit 230 which samples Vinfo during the ON-period of the lower switch 112.Type: ApplicationFiled: April 21, 2022Publication date: August 4, 2022Inventors: Masashi Nagasato, Seiji Takenaka, Tetsuo Tateishi
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Publication number: 20220242340Abstract: A linear power supply circuit according to the present invention is provided with: an output transistor provided between an input end to which an input voltage is applied and an output end to which an output voltage is applied; and a driver for driving the output transistor on the basis of the difference between a voltage based on the output voltage and a reference voltage. The driver is provided with: a differential amplifier for outputting a voltage according to the difference between the voltage based on the output voltage and the reference voltage; a capacitor one end of which has an output of the differential amplifier applied thereto and the other end of which has the voltage based on the output voltage applied thereto; a converter for converting a voltage based on the output of the differential amplifier into an electrical current and outputting the electrical current; and an electrical current amplifier for amplifying the electrical current of the output of the converter.Type: ApplicationFiled: April 20, 2022Publication date: August 4, 2022Inventors: Isao Takobe, Yuhei Yamaguchi, Tetsuo Tateishi, Takeshi Nagata
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Patent number: 11405008Abstract: This switching power source 100 has: a switching output circuit 110 which drives an inductor current IL by turning on and off an upper switch 111 and a lower switch 112 and generates an output voltage VOUT from an input voltage PVDD; a lower current detection unit 210 which detects the inductor current IL flowing through the lower switch 112 during an ON-period of the lower switch 112 and acquires lower current feedback information Iinfo; an error amplifier 140 which outputs voltage feedback information Vinfo including information on an error between the output voltage VOUT (feedback voltage FB) and a reference voltage REF; an information synthesis unit 220 that generates synthesis feedback information VIinfo by synthesizing Iinfo with Vinfo; and an information holding unit 230 which samples Vinfo during the ON-period of the lower switch 112.Type: GrantFiled: December 18, 2018Date of Patent: August 2, 2022Assignee: Rohm Co., Ltd.Inventors: Masashi Nagasato, Seiji Takenaka, Tetsuo Tateishi
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Patent number: 11398771Abstract: A switching regulator control circuit is used in a switching regulator that converts an input voltage into an output voltage by the switching of a switching device, and generates a switching signal for controlling the ON/OFF operation of the switching device. The switching regulator control circuit has a fault detector and a fault protector. The fault detector detects, based on the duty ratio of the switching signal or a variable correlated to it and included in a control signal used to generate the switching signal, a fault state where the duty ratio falls outside the normal modulation range. The fault protector stops the switching of the switching device when the fault detector detects a fault state.Type: GrantFiled: October 30, 2019Date of Patent: July 26, 2022Assignee: Rohm Co., Ltd.Inventors: Yuhei Yamaguchi, Tetsuo Tateishi
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Patent number: 11374556Abstract: A sequence circuit (1) includes a detector (2) that detects an occurrence of an event based on an input signal, an acceptor (4) that accepts the event whose occurrence has been detected by the detector, an inhibitor (4) that inhibits the acceptor from accepting another event for a first period using the acceptance of one event by the acceptor as a trigger, a clock pulse generator (3) that generates one or more clock pulses during a period after a second period shorter than the first period elapses from the start of the first period until the first period ends, a determiner (5) that determines a next state based on a current slate and the event accepted by the acceptor, and a latch (6) that latches the next state using the clock pulse. An output of the latch is the current state.Type: GrantFiled: October 1, 2018Date of Patent: June 28, 2022Assignee: Rohm Co., Ltd.Inventors: Genki Tsuruyama, Tetsuo Tateishi
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Patent number: 11338747Abstract: A linear power supply circuit is provided with: an output transistor; and a driver for driving the output transistor on the basis of the difference between a voltage based on an output voltage and a reference voltage. The driver is provided with: a differential amplifier for outputting a voltage according to the difference between the voltage based on the output voltage and the reference voltage; a capacitor one end of which has an output of the differential amplifier applied thereto and the other end of which has the voltage based on the output voltage applied thereto; a converter for converting a voltage based on the output of the differential amplifier into an electrical current and outputting the electrical current; and a current amplifier for amplifying the electrical current of the output of the converter. The supply voltage of the differential amplifier is a first constant voltage or the input voltage.Type: GrantFiled: October 24, 2019Date of Patent: May 24, 2022Assignee: Rohm Co., Ltd.Inventors: Isao Takobe, Yuhei Yamaguchi, Tetsuo Tateishi, Takeshi Nagata