IP Library Granted Patent US 11,137,784
Granted Patent B2
US 11,137,784 · App. 16/563,463 · Granted Oct 5, 2021

Linear voltage regulator circuit incorporating light emitting and photovoltaic devices

Inventor: Matthew Lumb (Alexandria, VA)
Assignee: The George Washington University
G05F1/575H01L31/173
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Quick Facts
Patent No.
US 11,137,784
App. No.
16/563,463
Granted
Oct 5, 2021
Kind
B2
Abstract

A linear regulator operates in the manner of a linear voltage regulator, but with the functionality of a switching converter. This concept enables DC voltage up-conversion with no switching, more efficient step down of large voltage steps, and requires no expensive and bulky additional components. An optocoupler device transfers power between light emitting and photovoltaic devices.

Claims (34)

1. A linear voltage regulator, comprising:

an input terminal for receiving an input voltage;

a reference voltage terminal for receiving a reference voltage;

an output terminal for outputting a regulated output voltage;

a photovoltaic section having an input electrically coupled to the input terminal and an output electrically coupled to the output terminal;

a light emitting section that transmits photons to the photovoltaic section;

a potential divider, electrically coupled to the output terminal, that outputs a feedback voltage that is proportional to the regulated output voltage;

a transistor that provides a fraction of the input voltage to the light emitting section; and

an error amplifier that compares the feedback voltage to the reference voltage and minimizes the difference between the reference voltage and the feedback voltage by controlling the fraction of the input voltage provided to the light emitting section by the transistor.

2. The linear voltage regulator of claim 1 , wherein the input terminal is electrically coupled to the output terminal via a linear regulator.

3. The linear voltage regulator of claim 2 , wherein the input of the photovoltaic section is electrically coupled to the input terminal via a switch that selectively connects the input terminal to the linear regulator.

4. The linear voltage regulator of claim 3 , wherein the switch, selectively connects the input terminal to the input of the photovoltaic section.

5. The linear voltage regulator of claim 1 , further comprising:

a reflector coupling the photons from the light emitting section to the photovoltaic section.

6. The linear voltage regulator of claim 5 , wherein the reflector is positioned at the light emitting section or the photovoltaic section.

7. The linear voltage regulator of claim 1 , the the light emitting section comprising one or more emitting devices and the photovoltaic section comprising first and second photovoltaic devices sandwiching at least one of the one or more light emitting devices.

8. The linear voltage regulator of claim 1 , the photovoltaic section comprising an array of a plurality of light emitting devices.

9. The linear voltage regulator of claim 8 , the photovoltaic section comprising an array of a plurality of photovoltaic devices, each photovoltaic device being aligned with at least one of the plurality of light emitting devices.

10. The linear voltage regulator of claim 1 , wherein the photovoltaic section and the light emitting section comprise discrete components or monolithically connected devices.

11. The linear voltage regulator of claim 1 , the photovoltaic section and the light emitting section comprising a stack of at least one monolithic light emitting device and at least one monolithic photovoltaic device connected by an electrically isolating layer transparent to a wavelength of the photons.

12. The linear voltage regulator of claim 11 , wherein the at least one monolithic light emitting device comprises a diode.

13. The linear voltage regulator of claim 1 , the light emitting section comprising a plurality of monolithic light emitting devices connected in series and/or in parallel and the photovoltaic section comprising a plurality of monolithic photovoltaic devices connected in series and/or in parallel.

14. The linear voltage regulator of claim 13 , further comprising a plurality of electrically isolating layers, each electrically coupled to and being between one of the plurality of monolithic light emitting devices and one of the plurality of monolithic photovoltaic devices.

15. A linear voltage regulator comprising:

an input terminal for receiving an input voltage;

a reference voltage terminal for receiving a reference voltage;

an output terminal for outputting a regulated output voltage;

a photovoltaic section electrically coupled to the output terminal;

a light emitting section that transmits photons to the photovoltaic section;

a potential divider, electrically coupled to the output terminal, that outputs a feedback voltage that is proportional to the regulated output voltage;

one or more transistors that provide a fraction of the input voltage to the light emitting section, wherein at least one of the one or more transistors is a phototransistor such that the linear voltage regulator provides galvanic isolation between the input terminal and the output terminal; and

an error amplifier that compares the feedback voltage to the reference voltage and minimizes the difference between the reference voltage and the feedback voltage by controlling the fraction of the input voltage provided to the light emitting section by the one or more transistors.

16. The linear voltage regulator of claim 15 , wherein the one or more transistors comprises a phototransistor that provides a fraction of the input voltage to the light emitting section in response to a control light emitting device electrically coupled to the output of the error amplifier.

17. The linear voltage regulator of claim 15 , wherein the one or more transistors comprises a first transistor that provides a fraction of the input voltage to the light emitting section in response to a second transistor, wherein the second transistor is a phototransistor controlled by a control light emitting device electrically coupled to the output of the error amplifier.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2019
From: LUMB, MATTHEW
To: THE GEORGE WASHINGTON UNIVERSITY
Reel/Frame 050690/0686 →
Continuity (5)
Provisional Application 62824037 · Mar 26, 2019
Provisional Application 62800805 · Feb 4, 2019
Provisional Application 62800809 · Feb 4, 2019
Provisional Application 62728463 · Sep 7, 2018
Related Publication 20200081472A1 · Mar 12, 2020