Patents by Inventor Johannes Jacobus Emile Maria HAGERAATS

Johannes Jacobus Emile Maria HAGERAATS 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: 20200052652
    Abstract: Disclosed herein are signal amplifiers having a plurality of amplifier cores. Individual amplifier cores can be designed for particular gain modes to enhance particular advantages while reducing other disadvantages. The signal amplifier can then switch between amplifier cores when switching gain modes to achieve desired performance characteristics (e.g., improving noise figure or linearity). Examples of signal amplifiers disclosed herein include amplifier architectures with a high gain amplifier core that reduces the noise figure and a linearity boost amplifier core that increases linearity (e.g., for lower gain modes). The disclosed signal amplifiers have a first active core with amplification chains for each of a plurality of inputs and a second active core with a single amplification chain to amplify signals received at the plurality of inputs.
    Type: Application
    Filed: August 20, 2019
    Publication date: February 13, 2020
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Patent number: 10536121
    Abstract: The disclosed technology is related to a radio-frequency (RF) amplifier having a bypass circuit and a resonant structure to improve performance in a bypass mode (e.g., a low gain mode). The disclosed amplifiers have a resonant structure that effectively isolates an amplifier core from a bypass circuit. For example, in a bypass mode, the resonant structure is configured to create an open impedance looking into the amplifier core input. This effectively removes any loading from the amplifier core to the bypass circuit. The disclosed amplifiers with resonant structures improve linearity performance in bypass modes due at least in part to the open impedance to the amplifier core provided by the resonant structure.
    Type: Grant
    Filed: February 28, 2018
    Date of Patent: January 14, 2020
    Assignee: SKYWORKS SOLUTIONS, INC.
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats
  • Publication number: 20200014332
    Abstract: An amplifier circuit is provided that includes an amplifier having a signal input and a signal output, the amplifier being configured to produce an amplified signal at the signal output, a feedback path coupled between the signal output and the signal input, and an amplifier linearity boost circuit positioned in the feedback path. The amplifier linearity boost circuit includes a non-linear current generator and a phase-shifting circuit, the non-linear current generator being configured to provide a non-linear current based on the amplified signal, and the phase-shifting circuit being configured to adjust a phase of the non-linear current to reduce an intermodulation distortion of the amplified signal.
    Type: Application
    Filed: July 3, 2019
    Publication date: January 9, 2020
    Inventors: Johannes Jacobus Emile Maria Hageraats, Junhyung Lee
  • Patent number: 10530412
    Abstract: Described herein are variable gain amplifiers that selectively provide variable or tailored impedances at a degeneration block and/or feedback block depending at least in part on a gain mode of the variable gain amplifier. This advantageously reduces or eliminates performance penalties in one or more gain modes. The variable impedances can be configured to improve linearity of the amplification process in targeted gain modes. The variable gain amplifier can be configured to provide a low-loss bypass mode in a low gain mode to improve signal quality. The degeneration block can be selectively isolated from a reference potential node to improve performance.
    Type: Grant
    Filed: March 12, 2019
    Date of Patent: January 7, 2020
    Assignee: SKYWORKS SOLUTIONS, INC.
    Inventors: Johannes Jacobus Emile Maria Hageraats, Junhyung Lee, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Publication number: 20200007102
    Abstract: Described herein are variable gain amplifiers and multiplexers that embed programmable attenuators into switchable paths to provide variable gain for individual amplifier inputs. The variable gain for an individual input is provided using a amplification stage that is common for each input of the amplifier. A variable attenuation is provided for individual inputs through a combination of a band selection switch and an attenuation selection branch. The attenuation can be tailored for individual inputs and can depend on a gain mode of the amplifier.
    Type: Application
    Filed: July 6, 2019
    Publication date: January 2, 2020
    Inventors: Junhyung LEE, Rimal Deep Singh, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Bipul Agarwal, Aravind Kumar Padyana
  • Patent number: 10476460
    Abstract: Low-noise amplifier having programmable-phase gain stage. In some embodiments, a radio-frequency amplifier can include an input node, an output node, and a programmable-phase gain stage implemented between the input node and the output node. The programmable-phase gain stage can be configured to operate in one of a plurality of gain settings, and to provide a desired phase for a signal at each of the plurality of gain settings.
    Type: Grant
    Filed: August 28, 2017
    Date of Patent: November 12, 2019
    Assignee: Skyworks Solutions, Inc.
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho
  • Patent number: 10389305
    Abstract: Disclosed herein are signal amplifiers having a plurality of amplifier cores. Individual amplifier cores can be designed for particular gain modes to enhance particular advantages while reducing other disadvantages. The signal amplifier can then switch between amplifier cores when switching gain modes to achieve desired performance characteristics (e.g., improving noise figure or linearity). Examples of signal amplifiers disclosed herein include amplifier architectures with a high gain amplifier core that reduces the noise figure and a linearity boost amplifier core that increases linearity (e.g., for lower gain modes). The disclosed signal amplifiers can also have switchable reference biases to provide targeted bias current matching. The disclosed signal amplifiers can also include degeneration switching blocks for individual amplifier cores to improve signal linearity.
    Type: Grant
    Filed: December 20, 2017
    Date of Patent: August 20, 2019
    Assignee: SKYWORKS SOLUTIONS, INC.
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Patent number: 10348262
    Abstract: Described herein are variable gain amplifiers and multiplexers that embed programmable attenuators into switchable paths that allow signals in a high gain mode to bypass attenuation. This advantageously reduces or eliminates performance penalties in the high gain mode. The programmable attenuators can be configured to improve linearity of the amplification process through pre-LNA attenuation in targeted gain modes. In addition, described herein are variable gain amplifiers with embedded attenuators in a switching network. The attenuators can be embedded onto switches and can be configured to have little or no effect on a noise factor in a high gain mode because the switching network can provide an attenuation bypass in a high gain mode and an attenuation in other gain modes. The programmable attenuators can be embedded onto a multi-input LNA architecture.
    Type: Grant
    Filed: August 30, 2017
    Date of Patent: July 9, 2019
    Assignee: SKYWORKS SOLUTIONS, INC.
    Inventors: Junhyung Lee, Rimal Deep Singh, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Bipul Agarwal, Aravind Kumar Padyana
  • Publication number: 20190207639
    Abstract: Described herein are variable gain amplifiers that selectively provide variable or tailored impedances at a degeneration block and/or feedback block depending at least in part on a gain mode of the variable gain amplifier. This advantageously reduces or eliminates performance penalties in one or more gain modes. The variable impedances can be configured to improve linearity of the amplification process in targeted gain modes. The variable gain amplifier can be configured to provide a low-loss bypass mode in a low gain mode to improve signal quality. The degeneration block can be selectively isolated from a reference potential node to improve performance.
    Type: Application
    Filed: March 12, 2019
    Publication date: July 4, 2019
    Inventors: Johannes Jacobus Emile Maria Hageraats, Junhyung Lee, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Patent number: 10230417
    Abstract: Described herein are variable gain amplifiers that selectively provide variable or tailored impedances at a degeneration block and/or feedback block depending at least in part on a gain mode of the variable gain amplifier. This advantageously reduces or eliminates performance penalties in one or more gain modes. The variable impedances can be configured to improve linearity of the amplification process in targeted gain modes. The variable gain amplifier can be configured to provide a low-loss bypass mode in a low gain mode to improve signal quality.
    Type: Grant
    Filed: August 30, 2017
    Date of Patent: March 12, 2019
    Assignee: SKYWORKS SOLUTIONS, INC.
    Inventors: Johannes Jacobus Emile Maria Hageraats, Junhyung Lee, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Publication number: 20180248526
    Abstract: The disclosed technology is related to a radio-frequency (RF) amplifier having a bypass circuit and a resonant structure to improve performance in a bypass mode (e.g., a low gain mode). The disclosed amplifiers have a resonant structure that effectively isolates an amplifier core from a bypass circuit. For example, in a bypass mode, the resonant structure is configured to create an open impedance looking into the amplifier core input. This effectively removes any loading from the amplifier core to the bypass circuit. The disclosed amplifiers with resonant structures improve linearity performance in bypass modes due at least in part to the open impedance to the amplifier core provided by the resonant structure.
    Type: Application
    Filed: February 28, 2018
    Publication date: August 30, 2018
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats
  • Publication number: 20180175797
    Abstract: Disclosed herein are signal amplifiers having a plurality of amplifier cores. Individual amplifier cores can be designed for particular gain modes to enhance particular advantages while reducing other disadvantages. The signal amplifier can then switch between amplifier cores when switching gain modes to achieve desired performance characteristics (e.g., improving noise figure or linearity). Examples of signal amplifiers disclosed herein include amplifier architectures with a high gain amplifier core that reduces the noise figure and a linearity boost amplifier core that increases linearity (e.g., for lower gain modes). The disclosed signal amplifiers can also have switchable reference biases to provide targeted bias current matching. The disclosed signal amplifiers can also include degeneration switching blocks for individual amplifier cores to improve signal linearity.
    Type: Application
    Filed: December 20, 2017
    Publication date: June 21, 2018
    Inventors: Junhyung Lee, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal
  • Publication number: 20180062600
    Abstract: Described herein are variable gain amplifiers and multiplexers that embed programmable attenuators into switchable paths that allow signals in a high gain mode to bypass attenuation. This advantageously reduces or eliminates performance penalties in the high gain mode. The programmable attenuators can be configured to improve linearity of the amplification process through pre-LNA attenuation in targeted gain modes. In addition, described herein are variable gain amplifiers with embedded attenuators in a switching network. The attenuators can be embedded onto switches and can be configured to have little or no effect on a noise factor in a high gain mode because the switching network can provide an attenuation bypass in a high gain mode and an attenuation in other gain modes. The programmable attenuators can be embedded onto a multi-input LNA architecture.
    Type: Application
    Filed: August 30, 2017
    Publication date: March 1, 2018
    Inventors: Junhyung LEE, Rimal Deep Singh, Johannes Jacobus Emile Maria Hageraats, Joshua Haeseok Cho, Bipul Agarwal, Aravind Kumar Padyana
  • Publication number: 20180062599
    Abstract: Low-noise amplifier having programmable-phase gain stage. In some embodiments, a radio-frequency amplifier can include an input node, an output node, and a programmable-phase gain stage implemented between the input node and the output node. The programmable-phase gain stage can be configured to operate in one of a plurality of gain settings, and to provide a desired phase for a signal at each of the plurality of gain settings.
    Type: Application
    Filed: August 28, 2017
    Publication date: March 1, 2018
    Inventors: Junhyung LEE, Johannes Jacobus Emile Maria HAGERAATS, Joshua Haeseok CHO
  • Publication number: 20180062690
    Abstract: Described herein are variable gain amplifiers that selectively provide variable or tailored impedances at a degeneration block and/or feedback block depending at least in part on a gain mode of the variable gain amplifier. This advantageously reduces or eliminates performance penalties in one or more gain modes. The variable impedances can be configured to improve linearity of the amplification process in targeted gain modes. The variable gain amplifier can be configured to provide a low-loss bypass mode in a low gain mode to improve signal quality.
    Type: Application
    Filed: August 30, 2017
    Publication date: March 1, 2018
    Inventors: Johannes Jacobus Emile Maria Hageraats, Junhyung Lee, Joshua Haeseok Cho, Aravind Kumar Padyana, Bipul Agarwal