Patents by Inventor Sunil Chomal

Sunil Chomal 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: 20240427009
    Abstract: Described herein are techniques for adapting usage of radar devices to collect data about target objects based on situational awareness data. Techniques described herein may involve selecting a radar operational configuration (e.g., waveform type, and/or transmitter and/or receiver configuration) and/or frame rate. According to various embodiments, situational awareness data may be indicative of at least one characteristic relating to a vehicle, a target object, and/or the vehicle's environment such as velocity data indicative of the velocity of the vehicle, velocity data indicative of the velocity of a target object, data indicative of at least one weather condition associated with the vehicle's environment, data indicative of the type of road in which the vehicle is traveling, data indicative of the level of traffic in the vehicle's surroundings. Techniques described herein may be deployed for use in connection with computer-assisted driving modules (e.g., ADAS and autonomous vehicles).
    Type: Application
    Filed: June 21, 2024
    Publication date: December 26, 2024
    Applicant: TeraDar, Inc.
    Inventors: Gregory L. Charvat, Nicholas Saiz, Matthew Carey, Gunnar Juergens, Sunil Chomal
  • Publication number: 20240427008
    Abstract: Described herein are techniques for adapting usage of radar devices to collect data about target objects based on situational awareness data. Techniques described herein may involve selecting a radar operational configuration (e.g., waveform type, and/or transmitter and/or receiver configuration) and/or frame rate. According to various embodiments, situational awareness data may be indicative of at least one characteristic relating to a vehicle, a target object, and/or the vehicle's environment such as velocity data indicative of the velocity of the vehicle, velocity data indicative of the velocity of a target object, data indicative of at least one weather condition associated with the vehicle's environment, data indicative of the type of road in which the vehicle is traveling, data indicative of the level of traffic in the vehicle's surroundings. Techniques described herein may be deployed for use in connection with computer-assisted driving modules (e.g., ADAS and autonomous vehicles).
    Type: Application
    Filed: June 21, 2024
    Publication date: December 26, 2024
    Applicant: TeraDar, Inc.
    Inventors: Gregory L. Charvat, Nicholas Saiz, Matthew Carey, Shodhan Kuriyala Shetty, Robert Timothy Clancy, Gunnar Juergens, Sunil Chomal
  • Patent number: 11744520
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Grant
    Filed: August 10, 2020
    Date of Patent: September 5, 2023
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sarma Sundareswara Gunturi, Sunil Chomal
  • Patent number: 11598883
    Abstract: A personal navigation device includes a correlator for processing GNSS signals from a constellation of satellites A signal is received from a navigation beacon containing a repeating code word, in which the code word includes a number N of samples corresponding to N phases, and in which reception of each code word occurs within a defined time period T. The sequence of N code samples is correlated with a known code word to determine a maximum value of correlation for a particular phase of the received signal. The correlation is performed using a correlator of size M, in which M is less than N, such that N/M=P complete correlations for a partial code phase are performed such that each correlation of a partial code phase is performed within a time period of approximately T/P. All P correlations of partial code phases are completed within time T.
    Type: Grant
    Filed: September 22, 2020
    Date of Patent: March 7, 2023
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Jasbir Singh Nayyar, Sreenath Narayanan Potty, Sunil Chomal
  • Publication number: 20210018632
    Abstract: A personal navigation device includes a correlator for processing GNSS signals from a constellation of satellites A signal is received from a navigation beacon containing a repeating code word, in which the code word includes a number N of samples corresponding to N phases, and in which reception of each code word occurs within a defined time period T. The sequence of N code samples is correlated with a known code word to determine a maximum value of correlation for a particular phase of the received signal. The correlation is performed using a correlator of size M, in which M is less than N, such that N/M=P complete correlations for a partial code phase are performed such that each correlation of a partial code phase is performed within a time period of approximately T/P. All P correlations of partial code phases are completed within time T.
    Type: Application
    Filed: September 22, 2020
    Publication date: January 21, 2021
    Inventors: Jasbir Singh Nayyar, Sreenath Narayanan Potty, Sunil Chomal
  • Publication number: 20200367830
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Application
    Filed: August 10, 2020
    Publication date: November 26, 2020
    Inventors: Sarma Sundareswara Gunturi, Sunil Chomal
  • Patent number: 10816673
    Abstract: A personal navigation device includes a correlator for processing GNSS signals from a constellation of satellites A signal is received from a navigation beacon containing a repeating code word, in which the code word includes a number N of samples corresponding to N phases, and in which reception of each code word occurs within a defined time period T. The sequence of N code samples is correlated with a known code word to determine a maximum value of correlation for a particular phase of the received signal. The correlation is performed using a correlator of size M, in which M is less than N, such that N/M=P complete correlations for a partial code phase are performed such that each correlation of a partial code phase is performed within a time period of approximately T/P. All P correlations of partial code phases are completed within time T.
    Type: Grant
    Filed: October 21, 2015
    Date of Patent: October 27, 2020
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Jasbir Singh Nayyar, Sreenath Narayanan Potty, Sunil Chomal
  • Patent number: 10736575
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Grant
    Filed: October 22, 2018
    Date of Patent: August 11, 2020
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sarma Sundareswara Gunturi, Sunil Chomal
  • Publication number: 20190053763
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Application
    Filed: October 22, 2018
    Publication date: February 21, 2019
    Inventors: Sarma Sundareswara Gunturi, Sunil Chomal
  • Patent number: 10123746
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Grant
    Filed: May 5, 2016
    Date of Patent: November 13, 2018
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sarma Sundareswara Gunturi, Sunil Chomal
  • Publication number: 20170115400
    Abstract: A personal navigation device includes a correlator for processing GNNS signals from a constellation of satellites A signal is received from a navigation beacon containing a repeating code word, in which the code word includes a number N of samples corresponding to N phases, and in which reception of each code word occurs within a defined time period T. The sequence of N code samples is correlated with a known code word to determine a maximum value of correlation for a particular phase of the received signal. The correlation is performed using a correlator of size M, in which M is less than N, such that N/M=P complete correlations for a partial code phase are performed such that each correlation of a partial code phase is performed within a time period of approximately T/P. All P correlations of partial code phases are completed within time T.
    Type: Application
    Filed: October 21, 2015
    Publication date: April 27, 2017
    Inventors: Jasbir Singh Nayyar, Sreenath Narayanan Potty, Sunil Chomal
  • Publication number: 20160324477
    Abstract: The disclosure provides a heart rate monitor (HRM) circuit. The HRM circuit includes an analog front end (AFE). The AFE receives a Photoplethysmographic (PPG) signal, and generates a fine PPG signal. A motion cancellation circuit is coupled to the AFE, and receives the fine PPG signal and an accelerometer signal. The motion cancellation circuit subtracts the accelerometer signal from the fine PPG signal to generate a coarse heart rate. A peak detector is coupled to the motion cancellation circuit and the AFE, and generates an instantaneous heart rate. A filter is coupled to the peak detector, and generates an estimated heart rate from the instantaneous heart rate, the estimated heart rate is provided as a feedback to the peak detector.
    Type: Application
    Filed: May 5, 2016
    Publication date: November 10, 2016
    Inventors: Sarma Sundareswara GUNTURI, Sunil CHOMAL
  • Patent number: 9356650
    Abstract: An integrated circuit for facilitating spread spectrum reception of data having a data bit period includes an hypothesis search circuit (120, 210, 220) operable to correlate a pseudorandom code with a signal input based on a received signal to produce correlation results, and a processor circuit (320) operable to coherently integrate the correlation results over plural sample windows (PreD1, PreD2) staggered relative to each other in the coherent integration interval and to non-coherently combine the coherently integrated results corresponding to the plural sample windows (PreD1, PreD2) to produce a received signal output, whereby enhancing performance. Other circuits, receivers and processes are also disclosed.
    Type: Grant
    Filed: December 5, 2014
    Date of Patent: May 31, 2016
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sunil Chomal, Karthik Ramasubramanian, Jawaharlal Tangudu, Hemanth Mullur
  • Patent number: 9184762
    Abstract: A system can include a signal image correlator receives a discrete frequency domain representation of a signal tone in an interleaved analog-to-digital (IADC) signal and an image of the signal tone in the discrete frequency domain representation of the IADC signal and determines a correlation between the signal tone and the image of the signal tone, a power of the signal tone and a power of the image of the signal tone. The system can also include a frequency domain estimator that determines an instantaneous frequency domain mismatch profile estimate based on the correlation between the signal tone and the image of the signal tone. The system can further include an averaging filter that averages the instantaneous frequency domain mismatch profile estimate over time to provide a frequency domain mismatch profile estimate.
    Type: Grant
    Filed: March 12, 2015
    Date of Patent: November 10, 2015
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sthanunathan Ramakrishnan, Sashidharan Venkatraman, Sreenath Narayanan Potty, Sunil Chomal, Nagarajan Viswanathan, Jawaharlal Tangudu
  • Publication number: 20150263753
    Abstract: A system can include a signal image correlator receives a discrete frequency domain representation of a signal tone in an interleaved analog-to-digital (IADC) signal and an image of the signal tone in the discrete frequency domain representation of the IADC signal and determines a correlation between the signal tone and the image of the signal tone, a power of the signal tone and a power of the image of the signal tone. The system can also include a frequency domain estimator that determines an instantaneous frequency domain mismatch profile estimate based on the correlation between the signal tone and the image of the signal tone. The system can further include an averaging filter that averages the instantaneous frequency domain mismatch profile estimate over time to provide a frequency domain mismatch profile estimate.
    Type: Application
    Filed: March 12, 2015
    Publication date: September 17, 2015
    Inventors: STHANUNATHAN RAMAKRISHNAN, Sashidharan Venkatraman, Sreenath Narayanan Potty, Sunil Chomal, Nagarajan Viswanathan, Jawaharlal Tangudu
  • Publication number: 20150085901
    Abstract: An integrated circuit for facilitating spread spectrum reception of data having a data bit period includes an hypothesis search circuit (120, 210, 220) operable to correlate a pseudorandom code with a signal input based on a received signal to produce correlation results, and a processor circuit (320) operable to coherently integrate the correlation results over plural sample windows (PreD1, PreD2) staggered relative to each other in the coherent integration interval and to non-coherently combine the coherently integrated results corresponding to the plural sample windows (PreD1, PreD2) to produce a received signal output, whereby enhancing performance. Other circuits, receivers and processes are also disclosed.
    Type: Application
    Filed: December 5, 2014
    Publication date: March 26, 2015
    Applicant: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Sunil Chomal, Karthik Ramasubramanian, Jawaharlal Tangudu, Hemanth Mullur
  • Patent number: 8934522
    Abstract: An integrated circuit for facilitating spread spectrum reception of data having a data bit period includes an hypothesis search circuit (120, 210, 220) operable to correlate a pseudorandom code with a signal input based on a received signal to produce correlation results, and a processor circuit (320) operable to coherently integrate the correlation results over plural sample windows (PreD1, PreD2) staggered relative to each other in the coherent integration interval and to non-coherently combine the coherently integrated results corresponding to the plural sample windows (PreD1, PreD2) to produce a received signal output, whereby enhancing performance. Other circuits, receivers and processes are also disclosed.
    Type: Grant
    Filed: May 25, 2012
    Date of Patent: January 13, 2015
    Assignee: Texas Instruments Incorporated
    Inventors: Sunil Chomal, Karthik Ramasubramanian, Jawaharlal Tangudu, Hemanth Mullur
  • Publication number: 20130136154
    Abstract: An integrated circuit for facilitating spread spectrum reception of data having a data bit period includes an hypothesis search circuit (120, 210, 220) operable to correlate a pseudorandom code with a signal input based on a received signal to produce correlation results, and a processor circuit (320) operable to coherently integrate the correlation results over plural sample windows (PreD1, PreD2) staggered relative to each other in the coherent integration interval and to non-coherently combine the coherently integrated results corresponding to the plural sample windows (PreD1, PreD2) to produce a received signal output, whereby enhancing performance. Other circuits, receivers and processes are also disclosed.
    Type: Application
    Filed: May 25, 2012
    Publication date: May 30, 2013
    Applicant: Texas Instruments Incorporated
    Inventors: Sunil Chomal, Karthik Ramasubramanian, Jawaharlal Tangudu, Hemanth Mullur
  • Publication number: 20120319899
    Abstract: A method includes determining a bit edge associated with information transmitted through a satellite during a detection operation of a receiver through a processor associated therewith. The method also includes dynamically switching, through the processor, a mode of a signal acquisition of the receiver from a current integration mode of operation of a measurement to a bit-synchronous integration mode of operation of the measurement using a processor when the bit edge is determined.
    Type: Application
    Filed: June 16, 2011
    Publication date: December 20, 2012
    Inventors: Jawaharlal Tangudu, Sunil Chomal, Pradeep Pappinissiri Puthanveetil