Patents by Inventor Tommy Yu

Tommy Yu 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).

  • Patent number: 10020818
    Abstract: An error feedback system for a delta sigma modulator is disclosed. The error feedback system has an error transfer function where at least k?1 coefficients are set to zero. This allows the error feedback system to be divided into k feedback paths that are performed in parallel at a clock speed that is 1/k of the system clock of the delta sigma modulator (i.e. the rate at which the output of the delta sigma modulator changes).
    Type: Grant
    Filed: March 27, 2017
    Date of Patent: July 10, 2018
    Assignee: MY Tech, LLC
    Inventors: Tommy Yu, Avanindra Madisetti
  • Publication number: 20180191367
    Abstract: A dielectric resonator oscillator includes a dielectric resonator; a transmission line disposed adjacent the dielectric resonator; an active device having an input electrically connected to the transmission line; a matching network having an input electrically connected to an output of the active device and an output configured to be connected to a load; wherein both the transmission line and the active device are positioned sufficiently close to the dielectric resonator to form part of a resonant circuit with the dielectric resonator.
    Type: Application
    Filed: February 27, 2018
    Publication date: July 5, 2018
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20180145700
    Abstract: A parallel delta sigma modulator architecture is disclosed. The parallel delta sigma modulator architecture includes a signal demultiplexer configured to receive an input signal and to demultiplex the input signal to output a plurality of streams, a plurality of delta sigma modulators executing in parallel, each delta sigma modulator configured to receive a stream from the plurality of streams and to generate a delta sigma modulated output, and a signal multiplexer configured to receive a plurality of delta sigma modulated outputs from the plurality of delta sigma modulators and to multiplex together the plurality of delta sigma modulated outputs into a pulse train.
    Type: Application
    Filed: November 21, 2017
    Publication date: May 24, 2018
    Applicant: MY Tech, LLC
    Inventors: Tommy Yu, Avanindra Madisetti
  • Patent number: 9948334
    Abstract: Systems and methods for canceling cross-coupled satellite signals in a LNB IC include receiving a first satellite signal at a first input of the LNB IC and filtering the first satellite signal using a first adaptive filter, the first adaptive filter having first filter coefficients; combining the adjusted first satellite signal with a second satellite signal received at a second input of the LNB IC to generate a first combined satellite signal; measuring the total output power of the combined satellite signal; changing the filter coefficients of the first adaptive filter; remeasuring the total output power of the first combined satellite signal after the changing of the first filter coefficients to determine whether the total power of the first combined satellite signal has decreased.
    Type: Grant
    Filed: February 9, 2017
    Date of Patent: April 17, 2018
    Assignee: Entropic Communications, LLC.
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9912345
    Abstract: Methods and systems for frequency generation may comprise a circuit with a first input coupled to receive a first satellite signal at a first satellite downlink frequency, a second input coupled to receive a second satellite signal at a second satellite downlink frequency, and a first analog-to-digital converter (ADC) having an input coupled to receive the first satellite signal. The first ADC may be configured to create a first digital output signal representing the first satellite signal. A second ADC having an input coupled to receive the second satellite signal may be configured to create a second digital output representing the second satellite signal. The circuit may comprise a dielectric resonator oscillator having an output and a clock generator circuit having an input coupled to the oscillator output and configured to output one or more clocks used by the first and second ADCs.
    Type: Grant
    Filed: January 10, 2017
    Date of Patent: March 6, 2018
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20170338884
    Abstract: Systems and methods for correcting frequency error in a received signal include: receiving a satellite signal, the satellite signal having a bandwidth and a center frequency; determining the profile of the satellite signal; computing the center frequency of the satellite signal based on the profile of the received signal; and generating a reference signal at the computed center frequency. The systems and methods may further include computing a center frequency of each of a plurality of satellite signals based on the computed center frequency. Determining the profile may include sweeping a tuner above and below a given reference frequency; measuring the received signal strength during the sweeping operation; and determining the profile based on the received signal strength.
    Type: Application
    Filed: July 25, 2017
    Publication date: November 23, 2017
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9742487
    Abstract: Methods and systems for frequency generation may comprise in a low-noise block down-converter (LNB) comprising an analog-to-digital converter (ADC) and a channel stacking switch (CSS): receiving a first satellite signal centered at a first frequency; receiving a second satellite signal centered at a second frequency; combining the first and second satellite signals to form a combined signal; the analog-to-digital converter transforming the combined signal from an analog signal to a digital signal; providing the digital signal to the CSS; receiving a third satellite signal centered at a third frequency; receiving a fourth satellite signal centered at a fourth frequency; translating the third satellite signal to a fifth frequency, combining the translated third satellite signal with fourth satellite signals to form a second combined signal; a second analog-to-digital converter transforming the combined signal from an analog signal to a second digital signal; and providing the second digital signal to the CSS.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: August 22, 2017
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9716546
    Abstract: Methods and systems for frequency generation may comprise receiving a satellite signal the satellite signal having a center frequency; determining an amplitude response profile of the satellite signal; and computing the center frequency of the satellite signal based on the amplitude response profile of the received signal; and generating a reference signal at the computed center frequency. A center frequency of each of a plurality of satellite signals may be computed based on the computed center frequency. The determining the amplitude response profile may include: sweeping a tuner above and below a given reference frequency; measuring the received signal strength during the sweeping operation; and determining upper and lower rolloff points of the signal based on the measured signal strength.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: July 25, 2017
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20170149462
    Abstract: Systems and methods for canceling cross-coupled satellite signals in a LNB IC include receiving a first satellite signal at a first input of the LNB IC and filtering the first satellite signal using a first adaptive filter, the first adaptive filter having first filter coefficients; combining the adjusted first satellite signal with a second satellite signal received at a second input of the LNB IC to generate a first combined satellite signal; measuring the total output power of the combined satellite signal; changing the filter coefficients of the first adaptive filter; remeasuring the total output power of the first combined satellite signal after the changing of the first filter coefficients to determine whether the total power of the first combined satellite signal has decreased.
    Type: Application
    Filed: February 9, 2017
    Publication date: May 25, 2017
    Inventors: BRANISLAV PETROVIC, TOMMY Yu, TROY BRANDON, RALPH DUNCAN
  • Publication number: 20170126242
    Abstract: Methods and systems for frequency generation may comprise a circuit with a first input coupled to receive a first satellite signal at a first satellite downlink frequency, a second input coupled to receive a second satellite signal at a second satellite downlink frequency, and a first analog-to-digital converter (ADC) having an input coupled to receive the first satellite signal. The first ADC may be configured to create a first digital output signal representing the first satellite signal. A second ADC having an input coupled to receive the second satellite signal may be configured to create a second digital output representing the second satellite signal. The circuit may comprise a dielectric resonator oscillator having an output and a clock generator circuit having an input coupled to the oscillator output and configured to output one or more clocks used by the first and second ADCs.
    Type: Application
    Filed: January 10, 2017
    Publication date: May 4, 2017
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20170126310
    Abstract: Systems and methods for correcting frequency error in a received signal include: receiving a satellite signal, the satellite signal having a bandwidth and a center frequency; determining the profile of the satellite signal; computing the center frequency of the satellite signal based on the profile of the received signal; and generating a reference signal at the computed center frequency. The systems and methods may further include computing a center frequency of each of a plurality of satellite signals based on the computed center frequency. Determining the profile may include sweeping a tuner above and below a given reference frequency; measuring the received signal strength during the sweeping operation; and determining the profile based on the received signal strength.
    Type: Application
    Filed: November 21, 2016
    Publication date: May 4, 2017
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20170070282
    Abstract: Methods and systems for frequency generation may comprise in a low-noise block down-converter (LNB) comprising an analog-to-digital converter (ADC) and a channel stacking switch (CSS): receiving a first satellite signal centered at a first frequency; receiving a second satellite signal centered at a second frequency; combining the first and second satellite signals to form a combined signal; the analog-to-digital converter transforming the combined signal from an analog signal to a digital signal; providing the digital signal to the CSS; receiving a third satellite signal centered at a third frequency; receiving a fourth satellite signal centered at a fourth frequency; translating the third satellite signal to a fifth frequency, combining the translated third satellite signal with fourth satellite signals to form a second combined signal; a second analog-to-digital converter transforming the combined signal from an analog signal to a second digital signal; and providing the second digital signal to the CSS.
    Type: Application
    Filed: November 21, 2016
    Publication date: March 9, 2017
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9571182
    Abstract: Systems and methods for canceling cross-coupled satellite signals in a LNB IC include receiving a first satellite signal at a first pin of the LNB IC and adjusting the first satellite signal by applying a first adaptive filter to the first satellite signal signal, the first adaptive filter having first filter coefficients; combining the adjusted first satellite signal with a second satellite signal received at a second pin of the LNB IC to generate a first combined satellite signal; measuring the total output power of the combined satellite signal; changing the filter coefficients of the first adaptive filter; remeasuring the total output power of the first combined satellite signal after the changing of the first filter coefficients to determine whether the total power of the first combined satellite signal has decreased.
    Type: Grant
    Filed: November 4, 2014
    Date of Patent: February 14, 2017
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9571212
    Abstract: Certain aspects of a method and system for wireless communication are disclosed. Aspects of one method may include a receiver that handles wireless communication. The receiver may be enabled to dynamically vary spacing between two or more pilots and/or the size of one or more pilots within at least one frame based on a determined symbol rate.
    Type: Grant
    Filed: July 18, 2013
    Date of Patent: February 14, 2017
    Assignee: BROADCOM CORPORATION
    Inventor: Tommy Yu
  • Patent number: 9565012
    Abstract: Systems and methods are provided for selecting data from intermediate frequency signals, corresponding to received signals (e.g., satellite signals) carrying modulated data, using digital channelizer switches. An example digital channelizer switch may comprise a plurality of high speed analog-to-digital converters configured to digitize the intermediate frequency signals; a plurality of digital channelizers configured to digitally tune data from the digitized intermediate frequency signals; a multiplexer configured to select one or more digitized intermediate frequency signal generated by the plurality of high speed analog-to-digital converters as inputs to the plurality of digital channelizers; and a high speed digital-to-analog converter configured to generate an analog output signal using digitally tuned data by the digital channelizer, from at least one digitized intermediate frequency signal.
    Type: Grant
    Filed: December 8, 2015
    Date of Patent: February 7, 2017
    Assignee: Entropic Communications, LLC
    Inventor: Tommy Yu
  • Publication number: 20170026059
    Abstract: Systems and methods in accordance with embodiments of the invention include converting satellite signals to an intermediate frequency signal for content decoding, and selecting modulated digital data within the satellite signals for content decoding using digital signal processing. One embodiment includes a system configured to select at least one content channel from an input signal including a plurality of content channels modulated onto a carrier, the system including: a digital channelizer switch including: a high speed analog to digital converter configured to digitize an intermediate frequency signal; a digital channelizer configured to digitally tune a content channel from the digitized intermediate frequency signal; and a high speed digital to analog converter configured to generate an analog output signal using the content channel digitally tuned from the digitized intermediate frequency signal by the digital channelizer.
    Type: Application
    Filed: May 16, 2016
    Publication date: January 26, 2017
    Inventor: Tommy Yu
  • Patent number: 9543893
    Abstract: Methods and systems for frequency generation may comprise a circuit with a first input coupled to receive a first satellite signal at a first satellite downlink frequency, a second input coupled to receive a second satellite signal at a second satellite downlink frequency, and a first analog-to-digital converter (ADC) having an input coupled to receive the first satellite signal and an output. The first ADC may be configured to create a first digital output signal representing the first satellite signal. A second ADC having an input coupled to receive the second satellite signal and an output may be configured to create a second digital output representing the second satellite signal. The circuit may comprise a dielectric resonator oscillator having an output and a clock generator circuit having an input coupled to the oscillator output and configured to output one or more clocks used by the first and second ADCs.
    Type: Grant
    Filed: December 29, 2015
    Date of Patent: January 10, 2017
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Publication number: 20160380705
    Abstract: Systems and methods for canceling cross-coupled satellite signals in a LNB IC include receiving a first satellite signal at a first pin of the LNB IC and adjusting the first satellite signal by applying a first adaptive filter to the first satellite signal signal, the first adaptive filter having first filter coefficients; combining the adjusted first satellite signal with a second satellite signal received at a second pin of the LNB IC to generate a first combined satellite signal; measuring the total output power of the combined satellite signal; changing the filter coefficients of the first adaptive filter; remeasuring the total output power of the first combined satellite signal after the changing of the first filter coefficients to determine whether the total power of the first combined satellite signal has decreased.
    Type: Application
    Filed: November 4, 2014
    Publication date: December 29, 2016
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9510223
    Abstract: Systems and methods for correcting frequency error in a received signal include: receiving a satellite signal, the satellite signal having a bandwidth and a center frequency; determining the profile of the satellite signal; computing the center frequency of the satellite signal based on the profile of the received signal; and generating a reference signal at the computed center frequency. The systems and methods may further include computing a center frequency of each of a plurality of satellite signals based on the computed center frequency. Determining the profile may include sweeping a tuner above and below a given reference frequency; measuring the received signal strength during the sweeping operation; and determining the profile based on the received signal strength.
    Type: Grant
    Filed: November 4, 2014
    Date of Patent: November 29, 2016
    Assignee: Entropic Communications, LLC.
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan
  • Patent number: 9509396
    Abstract: A low noise block circuit includes a first input signal trace configured to receive a first satellite signal centered at a first frequency; a second signal trace configured to receive a second satellite signal centered at a second frequency; a combiner having a first input connected to the first input signal trace and a second input connected to the second signal trace, and configured to combine the first and second satellite signals to generate and output a combined satellite signal; and an analog-to-digital converter element having a first input coupled to receive the combined satellite signal, and configured to convert the combined satellite signal from an analog signal to a digital signal.
    Type: Grant
    Filed: November 4, 2014
    Date of Patent: November 29, 2016
    Assignee: Entropic Communications, LLC
    Inventors: Branislav Petrovic, Tommy Yu, Troy Brandon, Ralph Duncan