IP Library Granted Patent US 11,822,359
Granted Patent B1
US 11,822,359 · App. 17/411,656 · Granted Nov 21, 2023

Current balancing of voltage regulators

Inventors: Yuval Shohet (Maynard, MA); Robert Manlick (Maynard, MA)
Assignee: ACACIA COMMUNICATIONS, INC.
G05F1/575G05F1/565
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Quick Facts
Patent No.
US 11,822,359
App. No.
17/411,656
Granted
Nov 21, 2023
Kind
B1
Abstract

A current-balanced voltage source may include two regulated voltage sources, each having an input and an output, and an amplifier to receive a control voltage at a positive input and a feedback voltage at a negative input. The output of each amplifier is coupled to the input of the respective regulated voltage source. The outputs of the regulated voltage sources are coupled together to source a current to a load. A differential amplifier may include positive and negative differential inputs, and positive and negative differential outputs. The positive differential input is coupled to the output of the first regulated voltage source and the negative differential input is coupled to the output of the second regulated voltage source. The positive differential output provides the feedback to the first regulated voltage source, and the negative differential output provides the feedback to the second regulated voltage source.

Claims (67)

1. A current-balanced linear voltage source, comprising:

a first regulated linear voltage source, comprising:

a first linear voltage source having an input and an output; and

a first amplifier operable to receive a control voltage at a first positive input and a first feedback voltage at a first negative input,

wherein an output of the first amplifier is electrically coupled to the input of the first linear voltage source;

a second regulated linear voltage source, comprising:

a second linear voltage source having an input and an output; and

a second amplifier operable to receive the control voltage at a second positive input and a second feedback voltage at a second negative input,

wherein an output of the second amplifier is electrically coupled to the input of the second linear voltage source,

wherein the output of the first linear voltage source is electrically coupled to the output of the second linear voltage source and operable to supply a current to an electrical load; and

a differential amplifier having a positive differential input, a negative differential input, a positive differential output, and a negative differential output, wherein:

the positive differential input is electrically coupled to the output of the first linear voltage source; and

the negative differential input is electrically coupled to the output of the second linear voltage source;

the positive differential output is operable to provide the first feedback voltage of the first regulated linear voltage source; and

the negative differential output is operable to provide the second feedback voltage of the second regulated linear voltage source.

2. The current-balanced linear voltage source of claim 1 , wherein the first linear voltage source comprises:

a first feedback amplifier having a positive input, a negative input, and an output; and

a first output transistor,

wherein the output of the first feedback amplifier is electrically coupled to a base of the first output transistor,

wherein the negative input of the first feedback amplifier is electrically coupled to a current output of the first output transistor,

wherein the positive input of the first feedback amplifier is electrically coupled to the output of the first amplifier, and

wherein the output of the first linear voltage source comprises the current output of the first output transistor.

3. The current-balanced linear voltage source of claim 2 , wherein the first linear voltage source further comprises a fixed voltage source electrically coupled to the positive input of the first feedback amplifier.

4. The current-balanced linear voltage source of claim 1 , wherein the second linear voltage source comprises:

a second feedback amplifier having a positive input, a negative input, and an output; and

a second output transistor,

wherein the output of the second feedback amplifier is electrically coupled to a base of the second output transistor,

wherein the negative input of the second feedback amplifier is electrically coupled to a current output of the second output transistor,

wherein the positive input of the second feedback amplifier is electrically coupled to the output of the second amplifier, and

wherein the output of the second linear voltage source comprises the current output of the second output transistor.

5. The current-balanced linear voltage source of claim 4 , wherein the second linear voltage source further comprises a fixed voltage source electrically coupled to the positive input of the second feedback amplifier.

6. The current balanced linear voltage source of claim 1 , further comprising a control voltage generator circuit operable to generate the control voltage.

7. The current-balanced linear voltage source of claim 6 , wherein the control voltage generator circuit comprises an analog circuit.

8. The current-balanced linear voltage source of claim 6 , wherein the control voltage generator circuit comprises a digital circuit.

9. The current-balanced linear voltage source of claim 8 , wherein the digital circuit comprises a digital to analog converter.

10. A current-balanced linear voltage source system, comprising:

a plurality of regulated linear voltage sources, wherein each of the plurality of regulated linear voltage sources comprises:

a linear voltage source having an input and an output; and

an amplifier operable to receive a control voltage at a positive input and a feedback voltage at a negative input,

wherein an output of the amplifier is electrically coupled to the input of the linear voltage source,

wherein the outputs of the linear voltage sources comprising the plurality of regulated linear voltage sources are mutually electrically coupled and operable to supply a current to an electrical load; and

a control circuit, wherein the control circuit comprises:

a plurality of control inputs, wherein each of the plurality of control inputs is electrically coupled to one of the plurality of linear voltage source outputs of the plurality of regulated linear voltage source; and

a plurality of control outputs, wherein each of the plurality of control outputs provides a feedback voltage and is electrically coupled to one of the negative inputs of the plurality of regulated linear voltage sources.

11. The current-balanced linear voltage source system of claim 10 , wherein the linear voltage source of each of the plurality of regulated linear voltage sources, comprises:

a feedback amplifier having a positive input, a negative input, and an output; and

an output transistor,

wherein the output of the feedback amplifier is electrically coupled to a base of the output transistor,

wherein the negative input of the feedback amplifier is electrically coupled to a current output of the output transistor,

wherein the positive input of the feedback amplifier is electrically coupled to the output of the amplifier, and

wherein the output of the linear voltage source of each of the plurality of regulated linear voltage sources comprises the current output of the output transistor of the linear voltage source.

12. The current-balanced linear voltage source system of claim 11 , wherein each of the linear voltage sources of the plurality of regulated linear voltage sources further comprises a fixed voltage source electrically coupled to the positive input of the feedback amplifier of the linear voltage source.

13. The current-balanced linear voltage source system of claim 10 , wherein the control circuit further comprises:

an analog to digital converter comprising the plurality of control inputs;

a digital signal processing unit operable to receive a plurality of digital signals, wherein each of the plurality of digital signals corresponds to a digital representation of a value of a voltage output of one of the plurality of linear voltage source outputs of the plurality of regulated linear voltage sources; and

a digital to analog converter comprising the plurality of control outputs, wherein the digital to analog converter is operable to receive a plurality of control signals from the digital signal processing unit.

14. The current-balanced linear voltage source system of claim 13 , wherein the digital signal processing unit comprises a processor unit and a memory unit, wherein the memory unit is operable to store instructions that, when executed by the processor unit, cause the processor unit to:

receive the plurality of digital signals;

calculate an average of the plurality of digital signals;

calculate a system voltage difference between the average of the plurality of digital signals and a voltage corresponding to the current to the electrical load;

for each of the plurality of digital signals, calculate a linear voltage difference between the digital signal and the voltage corresponding to the current to the electrical load; and

for each of the plurality of digital signals, calculate a regulated linear voltage difference between the linear voltage difference calculated for the digital signal and the system voltage difference.

15. The current-balanced linear voltage source system of claim 14 , wherein each regulated linear voltage difference calculated for each of the plurality of digital signals comprises one of the plurality of control signals received by the digital to analog converter.

16. The current-balanced linear voltage source system of claim 10 , further comprising a control voltage generator circuit operable to generate the control voltage received by each of the amplifiers of the plurality of regulated linear voltage sources.

17. The current-balanced linear voltage source system of claim 16 , wherein the control voltage generator circuit comprises an analog circuit.

18. The current-balanced linear voltage source system of claim 16 , wherein the control voltage generator circuit comprises a digital circuit.

19. The current-balanced linear voltage source system of claim 18 , wherein the digital circuit comprises a digital to analog converter.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2024
From: ACACIA COMMUNICATIONS, INC.
To: ACACIA TECHNOLOGY, INC.
Reel/Frame 066832/0659 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2023
From: SHOHET, YUVAL; MANLICK, ROBERT
To: ACACIA COMMUNICATIONS, INC.
Reel/Frame 064207/0256 →