IP Library Granted Patent US 10,084,414
Granted Patent B2
US 10,084,414 · App. 15/021,620 · Granted Sep 25, 2018

Circuits and methods for switched-mode operational amplifiers

Inventors: Baradwaj Vigraham (San Jose, CA); Jayanth Kuppambatti (New York, NY); Peter R. Kinget (Summit, NJ)
Assignee: The Trustees of Columbia University in the City of New York
H03F1/26H03F3/217H03F3/2173H03F3/45636H03K3/017H03K3/037H03K5/24H03F2200/264H03F2200/351H03F2203/45288
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Quick Facts
Patent No.
US 10,084,414
App. No.
15/021,620
Granted
Sep 25, 2018
Kind
B2
Abstract

Circuits and methods for switched mode operational amplifiers are provided. In some embodiments, circuits are provided, the circuits comprising: an amplifier having an output; a first pulse width modulator (PWM) having an input coupled to the output of the amplifier and using a first periodic reference signal waveform; and a second PWM having an input coupled to the output of the amplifier and using a second periodic reference signal waveform, wherein the second periodic reference signal waveform is 180 degrees out of phase from the first periodic reference signal waveform. In some embodiments, circuits are provided, the circuits comprising: an amplifier having an output; and a plurality of pulse width modulators (PWMs) each having an input coupled to the output of the amplifier and using a corresponding unique one of a plurality of periodic reference signal waveforms, wherein the plurality of periodic reference signal waveforms are shifted in phase.

Claims (23)

1. A circuit comprising:

a first differential transconductor having a first input that receives a first square wave, a second input that receives a second square wave, a first output, and a second output, wherein the second square wave is 180 degrees out of phase from the first square wave;

a second differential transconductor having a first output coupled to the first output of the first differential transconductor and a second output coupled to the second output of the first differential transconductor;

a differential comparator having a first input coupled to the first output of the first differential transconductor and a second input coupled to the second output of the second differential transconductor; and

at least one capacitor coupled between the first output of the first differential transconductor and the second output of the second differential transconductor.

2. A circuit comprising:

a first differential transconductor having a first input that receives a first square wave, a second input that receives a second square wave, a first output, and a second output, wherein the second square wave is 180 degrees out of phase from the first square wave;

a second differential transconductor having a first output coupled to the first output of the first differential transconductor and a second output coupled to the second output of the first differential transconductor;

a differential comparator having a first input coupled to the first output of the first differential transconductor, a second input coupled to the second output of the second differential transconductor, and an output; and

a flip flop with a data input coupled to the output of the differential comparator and a clock input coupled to a clock signal.

3. A circuit comprising:

a first differential transconductor having a first input that receives a first square wave, a second input that receives a second square wave, a first output, and a second output, wherein the second square wave is 180 degrees out of phase from the first square wave;

a second differential transconductor having a first output coupled to the first output of the first differential transconductor and a second output coupled to the second output of the first differential transconductor;

a differential comparator having a first input coupled to the first output of the first differential transconductor, a second input coupled to the second output of the second differential transconductor, and a differential comparator output;

a delay device coupled to the output of the differential comparator output that produces a delayed output;

a first flip flop having a data input coupled to the differential comparator output and a clock input coupled to a clock signal; and

a second flip flop having a data input coupled to the delayed output and a clock input coupled to the clock signal.

4. A circuit comprising:

a first differential transconductor having a first input that receives a first square wave, a second input that receives a second square wave, a first output, and a second output, wherein the second square wave is 180 degrees out of phase from the first square wave;

a second differential transconductor having a first output coupled to the first output of the first differential transconductor and a second output coupled to the second output of the first differential transconductor;

a differential comparator having a first input coupled to the first output of the first differential transconductor, a second input coupled to the second output of the second differential transconductor, and a differential comparator output;

a first flip flop having a data input coupled to the differential comparator output and a clock input coupled to a first clock signal; and

a second flip flop having a data input coupled to the differential comparator output and a clock input coupled to a second clock signal that is phase shifted with respect to the first clock signal.

Assignments (1)
CONFIRMATORY LICENSE Recorded Sep 16, 2016
From: COLUMBIA UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 040062/0074 →
Continuity (4)
Provisional Application 61877874 · Sep 13, 2013
Provisional Application 61937602 · Feb 9, 2014
Provisional Application 62044830 · Sep 2, 2014
Related Publication 20160226451A1 · Aug 4, 2016