Patents Assigned to Empower Semiconductor, Inc.
  • Patent number: 11962242
    Abstract: A buck voltage converter is disclosed. The buck voltage generator includes a controller configured to generate one or more pulse width modulation (PWM) signals, and a plurality of serially connected switches configured to receive the PWM signals and to generate an output voltage signal at an output terminal based on the received PWM signals. The output voltage signal has an average voltage corresponding with a duty cycle of the PWM signals, a first switch of the plurality of serially connected switches has a first breakdown voltage and a second switch of the plurality of serially connected switches has a second breakdown voltage, and the first breakdown voltage is less than the second breakdown voltage.
    Type: Grant
    Filed: April 21, 2023
    Date of Patent: April 16, 2024
    Assignee: EMPOWER SEMICONDUCTOR, INC.
    Inventor: Timothy Alan Phillips
  • Patent number: 11870348
    Abstract: An integrated circuit device includes: an input stage configured to receive first and a second input signals and generate a first voltage based on the first input signal and generate a second voltage based on the second input signal; an amplification stage configured to generate a first output current based on the first voltage and a second output current based on the second voltage; a bias stage configured to generate a bias voltage for the amplification stage based on the first and second voltages; a load stage configured to output a differential voltage signal proportional to a current through a device for which current is sensed based on a comparison of the first and second output currents; and an output stage configured to output a signal to control a duty cycle of the device for which current is sensed.
    Type: Grant
    Filed: August 19, 2021
    Date of Patent: January 9, 2024
    Assignee: Empower Semiconductor, Inc.
    Inventors: Narendra Nath Gaddam, Trey Roessig
  • Patent number: 11870343
    Abstract: A converter circuit. In one aspect, the converter circuit includes an input terminal, a first output terminal and a second output terminal, and first, second, third and fourth capacitors coupled to a plurality of switches, where the plurality of switches are arranged to repetitively cycle the first, second, third and fourth capacitors between a first state and a second state to generate first and a second output voltages, where in the first state, the first and second capacitors are connected in parallel with each other and in series with a third capacitor to apply a first fraction of an input voltage at the first output terminal, and in the second state, the first and second capacitors are connected in series with each other and in parallel with the fourth capacitor to apply a second fraction of the input voltage at the second output terminal.
    Type: Grant
    Filed: December 14, 2022
    Date of Patent: January 9, 2024
    Assignee: Empower Semiconductor, Inc.
    Inventor: Trey Roessig
  • Patent number: 11855535
    Abstract: A power converter is disclosed. The power converter includes a positive power supply, an output node, first, second, and third high side transistors serially connected between the positive power supply and the output node, and a high side bias voltage generator configured to generate a high side bias voltage. A gate of the second high side transistor is connected to the high side bias voltage generator. The power converter also includes a signal driver configured to selectively connect a gate of the first transistor to either the positive power supply or the high side bias voltage generator, a switch configured to selectively connect a gate of the third transistor to the high side bias voltage generator, and a capacitor connected to the gate of the third transistor and to a source of the second high side transistor.
    Type: Grant
    Filed: August 27, 2021
    Date of Patent: December 26, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventors: Bai Nguyen, Haritha Chanda
  • Patent number: 11848613
    Abstract: A multiphase switching converter includes: a plurality of phases, an output capacitor, and a control loop. Each phase includes: a current detection device, a pulse width modulator, a set of switching devices, and an inductor. The control loop is configured to generate a first current signal to the current detection device of each phase of the plurality of phases. The first current signal is proportional to an average current generated by the plurality of phases. The current detection device of each phase provides a signal to a corresponding PWM to control a duty cycle of the set of switching devices to equalize the current generated by each phase and maintain a charge balance on the output capacitor.
    Type: Grant
    Filed: August 24, 2021
    Date of Patent: December 19, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventors: Narendra Nath Gaddam, Trey Roessig
  • Patent number: 11799377
    Abstract: A system is disclosed. The system includes a substrate, and a first chip on the substrate, where a load circuit is integrated on the first chip. The system also includes a second chip on the substrate, where a power delivery circuit is configured to deliver current to the load circuit according to a regulated voltage at a node. The power delivery circuit includes a first circuit configured to generate an error signal based at least in part on the regulated voltage, and a voltage generator including power switches configured to modify the regulated voltage according to the error signal, where the first circuit of the power delivery circuit is integrated on the first chip, and where at least a portion of the power switches of the power delivery circuit are integrated on the second chip.
    Type: Grant
    Filed: February 2, 2023
    Date of Patent: October 24, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventor: David Lidsky
  • Publication number: 20230280811
    Abstract: An electronic system includes a circuit board including a power plane. An integrated circuit (e.g., processor) is attached to a first side of the circuit board and is arranged to receive power from the power plane. A plurality of DC-to-DC converters are attached to a second side of the circuit board and are arranged to transfer power to the power plane. Each DC-to-DC converter includes a respective voltage sense input that is electrically connected to a separate location on the power plane. A telemetry circuit is coupled to each of the plurality of DC-to-DC converters and is configured to detect a quantity of power transferred to the common power plane from each of the plurality of power conversion devices.
    Type: Application
    Filed: March 2, 2023
    Publication date: September 7, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Trey Roessig, Timothy Alan Phillips, David Lidsky, Gerhard Schrom, Yali Xiong, Artin Der Minassians
  • Publication number: 20230283182
    Abstract: A circuit. In one aspect, the circuit includes a power input terminal and an output terminal, a high-side circuit coupled between the power input terminal and the output terminal, where the high-side circuit includes a first plurality of serially connected switches, and a low-side circuit coupled between the output terminal and a ground, where the low-side circuit includes a second plurality of serially connected switches, where a first voltage between the power input terminal and the output terminal is distributed across the first plurality of serially connected switches, where a second voltage between the output terminal and the ground is distributed across the second plurality of serially connected switches. In another aspect, the high-side and low-side circuits are arranged to limit a maximum voltage applied to each of the first plurality of switches and second plurality of switches to a fraction of a voltage at the power input terminal.
    Type: Application
    Filed: March 6, 2023
    Publication date: September 7, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventor: Bai Nguyen
  • Publication number: 20230261576
    Abstract: A buck voltage converter is disclosed. The buck voltage generator includes a controller configured to generate one or more pulse width modulation (PWM) signals, and a plurality of serially connected switches configured to receive the PWM signals and to generate an output voltage signal at an output terminal based on the received PWM signals. The output voltage signal has an average voltage corresponding with a duty cycle of the PWM signals, a first switch of the plurality of serially connected switches has a first breakdown voltage and a second switch of the plurality of serially connected switches has a second breakdown voltage, and the first breakdown voltage is less than the second breakdown voltage.
    Type: Application
    Filed: April 21, 2023
    Publication date: August 17, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventor: Timothy Alan Phillips
  • Publication number: 20230216414
    Abstract: A system is disclosed. The system includes a substrate, and a first chip on the substrate, where a load circuit is integrated on the first chip. The system also includes a second chip on the substrate, where a power delivery circuit is configured to deliver current to the load circuit according to a regulated voltage at a node. The power delivery circuit includes a first circuit configured to generate an error signal based at least in part on the regulated voltage, and a voltage generator including power switches configured to modify the regulated voltage according to the error signal, where the first circuit of the power delivery circuit is integrated on the first chip, and where at least a portion of the power switches of the power delivery circuit are integrated on the second chip.
    Type: Application
    Filed: February 2, 2023
    Publication date: July 6, 2023
    Applicant: EMPOWER SEMICONDUCTOR, INC.
    Inventor: David Lidsky
  • Publication number: 20230215821
    Abstract: A configurable capacitance device includes a semiconductor substrate including a plurality of integrally formed capacitors; and a separate interconnect structure coupled to the semiconductor substrate, wherein the separate interconnect structure is configurable to electrically couple two or more of the plurality of integrally formed capacitors together in a parallel configuration.
    Type: Application
    Filed: October 4, 2022
    Publication date: July 6, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Parag Oak, Timothy Alan Phillips, Trey Roessig, Peter Huang
  • Publication number: 20230198388
    Abstract: A circuit. In one aspect, the circuit includes a first power stage including a first switch having a first gate terminal, a first drain terminal and a first source terminal, and a second switch having a second gate terminal, a second drain terminal and a second source terminal, the first source terminal coupled to the second drain terminal, and a second power stage including a third switch having a third gate terminal, a third drain terminal and a third source terminal, and a fourth switch having a fourth gate terminal, a fourth drain terminal and a fourth source terminal, the third source terminal coupled to the fourth drain terminal, where the second power stage is coupled in parallel to the first power stage such that the first drain terminal is couped to the third drain terminal and the second source terminal is connected to the fourth source terminal.
    Type: Application
    Filed: December 15, 2022
    Publication date: June 22, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Richard Nicholson, Feng Yuan
  • Publication number: 20230198406
    Abstract: A power converter circuit. In one aspect, the power converter circuit includes a first buck converter coupled in series to a second buck converter at a junction, and a control circuit coupled to each of the first and second buck converters. In another aspect, the control circuit is arranged to sense a voltage at the junction, compare the sensed voltage to a first threshold voltage and in response to the sensed voltage being at a voltage lower than the first threshold voltage, the control circuit operates the first buck converter and disables the second buck converter. In yet another aspect, the control circuit is arranged to compare the sensed voltage to a second threshold voltage and in response to the sensed voltage being at a voltage higher than the second threshold voltage, the control circuit operates the second buck converter and disables the first buck converter.
    Type: Application
    Filed: December 15, 2022
    Publication date: June 22, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Richard Nicholson, Timothy Alan Phillips
  • Publication number: 20230198390
    Abstract: A power converter circuit. In one aspect, the power converter circuit includes a first buck converter coupled in series to a second buck converter at a junction, and a control circuit coupled to each of the first and second buck converters. In another aspect, the control circuit is arranged to continuously operate the first buck converter, sense a voltage at the junction, compare the sensed voltage to a first threshold voltage and in response to the sensed voltage being at a voltage lower than the first threshold voltage disables the second buck converter. In yet another aspect, the control circuit is arranged to continuously operate the first buck converter, compare the sensed voltage to a second threshold voltage and in response to the sensed voltage being at a voltage higher than the second threshold voltage, the control circuit operates the second buck converter.
    Type: Application
    Filed: December 15, 2022
    Publication date: June 22, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventor: Richard Nicholson
  • Patent number: 11677320
    Abstract: Boot-strapping systems and techniques for circuits are described. One or more solid-state switches of a switched regulation circuit may be implemented using core transistors and the boot-strapping systems, rather than I/O transistors.
    Type: Grant
    Filed: November 9, 2020
    Date of Patent: June 13, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventors: Parag Oak, Timothy A. Phillips
  • Patent number: 11664730
    Abstract: A buck voltage converter is disclosed. The buck voltage generator includes a controller configured to generate one or more pulse width modulation (PWM) signals, and a plurality of serially connected switches configured to receive the PWM signals and to generate an output voltage signal at an output terminal based on the received PWM signals. The output voltage signal has an average voltage corresponding with a duty cycle of the PWM signals, a first switch of the plurality of serially connected switches has a first breakdown voltage and a second switch of the plurality of serially connected switches has a second breakdown voltage, and the first breakdown voltage is less than the second breakdown voltage.
    Type: Grant
    Filed: October 22, 2021
    Date of Patent: May 30, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventor: Timothy Alan Phillips
  • Publication number: 20230124931
    Abstract: A capacitance device includes: a semiconductor substrate; a capacitor disposed on the semiconductor substrate and including first and second positive terminals and first and second negative terminals; a passivation layer formed over the capacitor, the first and second positive terminals and the first and second negative terminals, the passivation layer defining first and second openings over the first and second positive terminals, respectively, a third opening over the first negative terminal and a fourth opening over the second negative terminal; a first metallic bump disposed on the passivation layer and including first extending portions that extend through each of the first and second openings, electrically coupling the first and second positive terminals; and a second metallic bump disposed on the passivation layer and including second extending portions that extend through each of the third and fourth openings, electrically coupling the first and second negative terminals.
    Type: Application
    Filed: October 20, 2021
    Publication date: April 20, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Parag Oak, Timothy Alan Phillips, Trey Roessig, Peter Huang, Artin Der Minassians
  • Publication number: 20230114632
    Abstract: A switched-mode power regulator circuit has four solid-state switches connected in series and a capacitor and an inductor that regulate power delivered to a load. The solid-state switches are operated such that a voltage at the load is regulated by repetitively (1) prefluxing the inductor then charging the capacitor causing an increased current to flow in the inductor and (2) prefluxing the inductor then discharging the capacitor causing increased current to flow in the inductor. The inductor prefluxing steps enable the circuit to provide increased output voltage and/or increased output current.
    Type: Application
    Filed: December 13, 2022
    Publication date: April 13, 2023
    Applicant: EMPOWER SEMICONDUCTOR, INC.
    Inventors: David Lidsky, Timothy Alan Phillips, Parag Oak
  • Publication number: 20230057337
    Abstract: A power converter circuit is disclosed. In one aspect, the power converter circuit includes a first top buck converter circuit coupled in parallel to a second top buck converter circuit at a first connection node and at a second connection node, and a bottom buck converter circuit coupled in series to each of the first and second top buck converter circuits at the second connection node, a power input terminal coupled to the first and second top buck converter circuits, and a power output terminal coupled to the bottom buck converter circuit and to the first connection node.
    Type: Application
    Filed: August 19, 2022
    Publication date: February 23, 2023
    Applicant: Empower Semiconductor, Inc.
    Inventors: Richard Nicholson, Xiaogang Feng
  • Patent number: 11557970
    Abstract: A switched-mode power regulator circuit has four solid-state switches connected in series and a capacitor and an inductor that regulate power delivered to a load. The solid-state switches are operated such that a voltage at the load is regulated by repetitively (1) prefluxing the inductor then charging the capacitor causing an increased current to flow in the inductor and (2) prefluxing the inductor then discharging the capacitor causing increased current to flow in the inductor. The inductor prefluxing steps enable the circuit to provide increased output voltage and/or increased output current.
    Type: Grant
    Filed: July 16, 2019
    Date of Patent: January 17, 2023
    Assignee: Empower Semiconductor, Inc.
    Inventors: David Lidsky, Timothy Alan Phillips, Parag Oak