Patents by Inventor Rahmi Hezar

Rahmi Hezar 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: 20170005628
    Abstract: A circuit includes an amplifier configured to amplify an input signal and generate an output signal. The circuit also includes a tuning network configured to tune frequency response of the amplifier. The tuning network includes at least one tunable capacitor, where the at least one tunable capacitor includes at least one micro-electro mechanical system (MEMS) capacitor. The amplifier could include a first die, the at least one MEMS capacitor could include a second die, and the first die and the second die could be integrated in a single package. The at least one MEMS capacitor could include a MEMS superstructure disposed over a control structure, where the control structure is configured to control the MEMS superstructure and tune the capacitance of the at least one MEMS capacitor.
    Type: Application
    Filed: September 14, 2016
    Publication date: January 5, 2017
    Inventors: Aritra Banerjee, Nathan R. Schemm, Rahmi Hezar, Lei Ding, Baher Haroun
  • Patent number: 9473078
    Abstract: A circuit includes an amplifier configured to amplify an input signal and generate an output signal. The circuit also includes a tuning network configured to tune frequency response of the amplifier. The tuning network includes at least one tunable capacitor, where the at least one tunable capacitor includes at least one micro-electro mechanical system (MEMS) capacitor. The amplifier could include a first die, the at least one MEMS capacitor could include a second die, and the first die and the second die could be integrated in a single package. The at least one MEMS capacitor could include a MEMS superstructure disposed over a control structure, where the control structure is configured to control the MEMS superstructure and tune the capacitance of the at least one MEMS capacitor.
    Type: Grant
    Filed: August 5, 2014
    Date of Patent: October 18, 2016
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Aritra Banerjee, Nathan R. Schemm, Rahmi Hezar, Lei Ding, Baher Haroun
  • Publication number: 20160268974
    Abstract: An outphasing amplifier includes a first class-E power amplifier (16-1) having an output coupled to a first conductor (31-1) and an input receiving a first RF drive signal (S1(t)). A first reactive element (CA-1) is coupled between the first conductor and a second conductor (30-1). A second reactive element (LA-1) is coupled between the second conductor and a third conductor (32-1). A second class-E power amplifier (17-1) includes an output coupled to a fourth conductor (31-2) and an input coupled to a second RF drive signal (S2(t)), a third reactive element (CA-3) coupled between the second and fourth conductors. Outputs of the first and second power amplifiers are combined by the first, second and third reactive elements to produce an output current in a load (R). An efficiency enhancement circuit (LEEC-1) is coupled between the first and fourth conductors to improve power efficiency at back-off power levels. Power enhancement circuits (20-1,2) are coupled to the first and fourth conductors, respectively.
    Type: Application
    Filed: May 26, 2016
    Publication date: September 15, 2016
    Inventors: Aritra Banerjee, Joonhoi Hur, Baher Haroun, Nathan Richard Schemm, Rahmi Hezar, Lei Ding
  • Patent number: 9385669
    Abstract: An outphasing amplifier includes a first class-E power amplifier (16-1) having an output coupled to a first conductor (31-1) and an input receiving a first RF drive signal (S1(t)). A first reactive element (CA-1) is coupled between the first conductor and a second conductor (30-1). A second reactive element (LA-1) is coupled between the second conductor and a third conductor (32-1). A second class-E power amplifier (17-1) includes an output coupled to a fourth conductor (31-2) and an input coupled to a second RF drive signal (S2(t)), a third reactive element (CA-3) coupled between the second and fourth conductors. Outputs of the first and second power amplifiers are combined by the first, second and third reactive elements to produce an output current in a load (R). An efficiency enhancement circuit (LEEC-1) is coupled between the first and fourth conductors to improve power efficiency at back-off power levels. Power enhancement circuits (20-1,2) are coupled to the first and fourth conductors, respectively.
    Type: Grant
    Filed: June 23, 2014
    Date of Patent: July 5, 2016
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Aritra Banerjee, Joonhoi Hur, Baher Haroun, Nathan Richard Schemm, Rahmi Hezar, Lei Ding
  • Publication number: 20160191294
    Abstract: At least one tone is generated. An output signal is generated in response to an input signal and the at least one tone. The output signal is modulated. The input signal and the at least one tone are represented in the modulated output signal. The at least one tone is outside a bandwidth of the input signal as represented in the modulated output signal. The modulated output signal is amplified. The at least one tone in the amplified signal is attenuated after the amplifying.
    Type: Application
    Filed: March 7, 2016
    Publication date: June 30, 2016
    Inventors: Rahmi Hezar, Lei Ding, Baher Haroun
  • Patent number: 9281976
    Abstract: At least one tone is generated. An output signal is generated in response to an input signal and the at least one tone. The output signal is modulated. The input signal and the at least one tone are represented in the modulated output signal. The at least one tone is outside a bandwidth of the input signal as represented in the modulated output signal. The modulated output signal is amplified. The at least one tone in the amplified signal is attenuated after the amplifying.
    Type: Grant
    Filed: February 4, 2014
    Date of Patent: March 8, 2016
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Rahmi Hezar, Lei Ding, Baher Haroun
  • Publication number: 20160043698
    Abstract: A circuit includes an amplifier configured to amplify an input signal and generate an output signal. The circuit also includes a tuning network configured to tune frequency response of the amplifier. The tuning network includes at least one tunable capacitor, where the at least one tunable capacitor includes at least one micro-electro mechanical system (MEMS) capacitor. The amplifier could include a first die, the at least one MEMS capacitor could include a second die, and the first die and the second die could be integrated in a single package. The at least one MEMS capacitor could include a MEMS superstructure disposed over a control structure, where the control structure is configured to control the MEMS superstructure and tune the capacitance of the at least one MEMS capacitor.
    Type: Application
    Filed: August 5, 2014
    Publication date: February 11, 2016
    Inventors: Aritra Banerjee, Nathan R. Schemm, Rahmi Hezar, Lei Ding, Baher Haroun
  • Publication number: 20160028433
    Abstract: A method includes receiving an input signal and predistorting a baseband representation of the input signal at a carrier frequency and at one or more harmonic frequencies. The method also includes generating an output signal based on the predistorted baseband representation of the input signal, and transmitting the output signal to a power amplifier. Predistorting the baseband representation of the input signal at the carrier frequency could occur in parallel with predistorting the baseband representation of the input signal at the one or more harmonic frequencies.
    Type: Application
    Filed: October 6, 2015
    Publication date: January 28, 2016
    Inventors: Lei Ding, Rahmi Hezar
  • Publication number: 20150372645
    Abstract: An outphasing amplifier includes a first class-E power amplifier (16-1) having an output coupled to a first conductor (31-1) and an input receiving a first RF drive signal (S1(t)). A first reactive element (CA-1) is coupled between the first conductor and a second conductor (30-1). A second reactive element (LA-1) is coupled between the second conductor and a third conductor (32-1). A second class-E power amplifier (17-1) includes an output coupled to a fourth conductor (31-2) and an input coupled to a second RF drive signal (S2(t)), a third reactive element (CA-3) coupled between the second and fourth conductors. Outputs of the first and second power amplifiers are combined by the first, second and third reactive elements to produce an output current in a load (R). An efficiency enhancement circuit (LEEC-1) is coupled between the first and fourth conductors to improve power efficiency at back-off power levels. Power enhancement circuits (20-1,2) are coupled to the first and fourth conductors, respectively.
    Type: Application
    Filed: June 23, 2014
    Publication date: December 24, 2015
    Inventors: Aritra Banerjee, Joonhoi Hur, Baher Haroun, Nathan Richard Schemm, Rahmi Hezar, Lei Ding
  • Patent number: 9209791
    Abstract: A method of canceling nonlinear distortions in pulse width modulated signals includes receiving an input signal. A first signal that is the modulated input signal is generated. The first signal has quantized levels representing the input signal. A pulse width modulated (PWM) sequence that is representative of the first signal is generated. A second signal that is the PWM sequence mixed with a carrier signal is generated. An error signal is generated in response to the first signal and modeled from the second signal. The error signal is added to the input signal.
    Type: Grant
    Filed: September 6, 2013
    Date of Patent: December 8, 2015
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Lei Ding, Rahmi Hezar, Joonhoi Hur
  • Patent number: 9184784
    Abstract: A method includes receiving an input signal and predistorting a baseband representation of the input signal at a carrier frequency and at one or more harmonic frequencies. The method also includes generating an output signal based on the predistorted baseband representation of the input signal, and transmitting the output signal to a power amplifier. Predistorting the baseband representation of the input signal at the carrier frequency could occur in parallel with predistorting the baseband representation of the input signal at the one or more harmonic frequencies.
    Type: Grant
    Filed: March 10, 2014
    Date of Patent: November 10, 2015
    Assignee: TEXAS INSTRUMENTS INCORPORATED
    Inventors: Lei Ding, Rahmi Hezar
  • Publication number: 20150303961
    Abstract: A multi-level, multi-branch outphasing amplifier (20-1) includes a first branch group circuit (22-1) including a first branch circuit (11) receiving a first RF input signal (S1(t)) and first control information (S11—Ctrl=VDD) and a second branch circuit (12) receiving the first input signal and second control information (S12—Ctrl). Each of the first (11) and second (12) branch circuits includes a power amplifier. The second control information enables the second branch circuit to be switched on or off while the first branch circuit (12) remains on. A second branch group circuit (22-2) includes a third branch circuit (21) receiving a second RF input signal (S2(t)) and third control information (S21—Ctrl=VDD) and a fourth branch circuit (22) receiving the second input signal (S2(t)) and fourth control information (S22—Ctrl). Each of the third and fourth branch circuits includes a power amplifier.
    Type: Application
    Filed: April 17, 2014
    Publication date: October 22, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Aritra Banerjee, Rahmi Hezar, Lei Ding, Nathan Richard Schemm
  • Publication number: 20150256216
    Abstract: A method includes receiving an input signal and predistorting a baseband representation of the input signal at a carrier frequency and at one or more harmonic frequencies. The method also includes generating an output signal based on the predistorted baseband representation of the input signal, and transmitting the output signal to a power amplifier. Predistorting the baseband representation of the input signal at the carrier frequency could occur in parallel with predistorting the baseband representation of the input signal at the one or more harmonic frequencies.
    Type: Application
    Filed: March 10, 2014
    Publication date: September 10, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Lei Ding, Rahmi Hezar
  • Publication number: 20150222463
    Abstract: At least one tone is generated. An output signal is generated in response to an input signal and the at least one tone. The output signal is modulated. The input signal and the at least one tone are represented in the modulated output signal. The at least one tone is outside a bandwidth of the input signal as represented in the modulated output signal. The modulated output signal is amplified. The at least one tone in the amplified signal is attenuated after the amplifying.
    Type: Application
    Filed: February 4, 2014
    Publication date: August 6, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Rahmi Hezar, Lei Ding, Baher Haroun
  • Publication number: 20150180692
    Abstract: For generating quantized signals, a quantized phase domain related to quantized phases of an input signal is generated. Vectors that the input signal may occupy are calculated based on the quantized phase domain. A first quantized phase of a first component of the input signal is generated per the quantized phase domain, and a second quantized phase of a second component of the input signal is generated per the quantized phase domain.
    Type: Application
    Filed: December 20, 2013
    Publication date: June 25, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Rahmi Hezar, Lei Ding, Joonhoi Hur
  • Patent number: 9065476
    Abstract: A system for processing a signal includes a detector configured to detect a two-level stream of bits; a converter configured to generate a three-level control signal based on two adjacent values within the two-level stream of bits; and a switch configured to determine which of three different paths to couple a current source to based on a value of the three-level control signal. Thus, based on adjacent values of the output stream a three-level control signal is generated which controls coupling of the current source to one of three different paths. This type of three-level digital-to-analog converter can be, for example, part of the feedback loop of an analog-to-digital converter. Similar techniques can also be utilized in a multi-segment digital-to-analog converter in which each segment of the DAC is controlled by a 3-level control signal and the DAC is implement using PMOS devices.
    Type: Grant
    Filed: May 6, 2013
    Date of Patent: June 23, 2015
    Assignee: Texas Instruments Incorporated
    Inventors: Rahmi Hezar, Baher Haroun, Halil Kiper, Mounir Fares, Ajay Kumar
  • Publication number: 20150070088
    Abstract: A method of canceling nonlinear distortions in pulse width modulated signals includes receiving an input signal. A first signal that is the modulated input signal is generated. The first signal has quantized levels representing the input signal. A pulse width modulated (PWM) sequence that is representative of the first signal is generated. A second signal that is the PWM sequence mixed with a carrier signal is generated. An error signal is generated in response to the first signal and modeled from the second signal. The error signal is added to the input signal.
    Type: Application
    Filed: September 6, 2013
    Publication date: March 12, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Lei Ding, Rahmi Hezar, Joonhoi Hur
  • Publication number: 20150030099
    Abstract: For crest factor reduction in a first signal having first and second components, the first component is delayed. A second signal is generated in response to detecting that a peak in the first component exceeds a predetermined threshold. Amplitude of the peak in the first component is reduced in response to detecting that the peak in the first component exceeds the predetermined threshold. Reducing amplitude of the peak in the first component includes adding the second signal to the delayed first component.
    Type: Application
    Filed: July 24, 2013
    Publication date: January 29, 2015
    Applicant: Texas Instruments Incorporated
    Inventors: Lei Ding, Rahmi Hezar, Zigang Yang
  • Patent number: 8831085
    Abstract: A method for transmitting radio frequency (RF) signals is provided. In-phase (I) and quadrature (Q) signals are received and filtered using sigma-delta modulation. I and Q pulse width modulation signals are generated from the filtered I and Q signals and interleaved so as to generate a time-interleaved signal. The time-interleaved signal is then amplified to generate the RF signals.
    Type: Grant
    Filed: December 15, 2011
    Date of Patent: September 9, 2014
    Assignee: Texas Instruments Incorporated
    Inventors: Rahmi Hezar, Lei Ding, Joonhoi Hur, Baher S. Haroun
  • Patent number: 8744378
    Abstract: A radio frequency (RF) transmitter is provided. The RF transmitter includes first and second drivers that are configured to receive first and second sets of complementary RF signals. Restoration circuits are coupled to the first and second drivers, and a bridge circuit is coupled to the first and second restoration circuits. By having the restoration circuits and the bridge circuit, a common mode impedance and a differential impedance can be provided, where the common mode impedance is lower than the differential impedance.
    Type: Grant
    Filed: February 9, 2012
    Date of Patent: June 3, 2014
    Assignee: Texas Instruments Incorporated
    Inventors: Joonhoi Hur, Rahmi Hezar, Lei Ding, Baher S. Haroun