Patents by Inventor Hariprasad Chandrakumar

Hariprasad Chandrakumar 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: 11025215
    Abstract: Neuromodulation systems in accordance with embodiments of the invention can use a feed-forward common-mode cancellation (CMC) path to attenuate common-mode (CM) artifacts appearing at a voltage input, thus allowing for the simultaneous recording of neural data and stimulation of neurons. In several embodiments of the invention, the feed-forward CMC path is utilized to attenuate the common-mode swings at Vin,CM, which can restore the linear operation of the front-end for differential signals. In several embodiments, the neuromodulation system may utilize an anti-alias filter (AAF) that includes a duty-cycles resistor (DCR) switching at a first frequency f1, followed by a DCR switching at a second frequency f2. The AAF allows for a significantly reduced second frequency f2 that enables the multi-rate DCR to increase the maximum realizable resistance, which is dependent upon the frequency ratio f1/f2.
    Type: Grant
    Filed: December 7, 2017
    Date of Patent: June 1, 2021
    Assignee: The Regents of the University of California
    Inventors: Hariprasad Chandrakumar, Dejan Markovic
  • Patent number: 10778165
    Abstract: A high dynamic range sensing front-end for bio-signal recording systems in accordance with embodiments of the invention are disclosed. In one embodiment, a bio-signal amplifier includes an input signal, where the input signal is modulated to a predetermined chopping frequency, a first amplifier stage, a parallel-RC circuit connected to the first amplifier stage and configured to generate a parallel-RC circuit output by selectively blocking an offset current, a second amplifier stage connected to the parallel-RC circuit that includes a second input configured to receive the parallel-RC circuit output and generate a second output that is an amplified version of the input signal with ripple-rejection. Further, the bio-signal amplifier can also include an auxiliary path configured for boosting input impedance by pre-charging at least one input capacitor. In addition, the bio-signal amplifier can also include a DC-servo feedback loop that includes an integrator that utilizes a duty-cycled resistor.
    Type: Grant
    Filed: September 30, 2015
    Date of Patent: September 15, 2020
    Assignee: The Regents of the University of California
    Inventors: Hariprasad Chandrakumar, Dejan Markovic
  • Publication number: 20200099352
    Abstract: Neuromodulation systems in accordance with embodiments of the invention can use a feed-forward common-mode cancellation (CMC) path to attenuate common-mode (CM) artifacts appearing at a voltage input, thus allowing for the simultaneous recording of neural data and stimulation of neurons. In several embodiments of the invention, the feed-forward CMC path is utilized to attenuate the common-mode swings at Vin,CM, which can restore the linear operation of the front-end for differential signals. In several embodiments, the neuromodulation system may utilize an anti-alias filter (AAF) that includes a duty-cycles resistor (DCR) switching at a first frequency f1, followed by a DCR switching at a second frequency f2. The AAF allows for a significantly reduced second frequency f2 that enables the multi-rate DCR to increase the maximum realizable resistance, which is dependent upon the frequency ratio f1/f2.
    Type: Application
    Filed: December 7, 2017
    Publication date: March 26, 2020
    Applicant: The Regents of the University of California
    Inventors: Hariprasad Chandrakumar, Dejan Markovic
  • Publication number: 20170230019
    Abstract: A high dynamic range sensing front-end for bio-signal recording systems in accordance with embodiments of the invention are disclosed. In one embodiment, a bio-signal amplifier includes an input signal, where the input signal is modulated to a predetermined chopping frequency, a first amplifier stage, a parallel-RC circuit connected to the first amplifier stage and configured to generate a parallel-RC circuit output by selectively blocking an offset current, a second amplifier stage connected to the parallel-RC circuit that includes a second input configured to receive the parallel-RC circuit output and generate a second output that is an amplified version of the input signal with ripple-rejection. Further, the bio-signal amplifier can also include an auxiliary path configured for boosting input impedance by pre-charging at least one input capacitor. In addition, the bio-signal amplifier can also include a DC-servo feedback loop that includes an integrator that utilizes a duty-cycled resistor.
    Type: Application
    Filed: September 30, 2015
    Publication date: August 10, 2017
    Applicant: The Regents of the University of California
    Inventors: Hariprasad Chandrakumar, Dejan Markovic