IP Library Granted Patent US 10,601,313
Granted Patent B2
US 10,601,313 · App. 16/430,761 · Granted Mar 24, 2020

Electronic device with a reconfigurable charging mechanism

Inventors: Michele Piccardi (Cupertino, CA); Xiaojiang Guo (San Jose, CA); Qiang Tang (Cupertino, CA)
Assignee: Micron Technology, Inc.
H02M3/07
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Quick Facts
Patent No.
US 10,601,313
App. No.
16/430,761
Granted
Mar 24, 2020
Kind
B2
Abstract

An electronic device includes a reconfigurable charge pump including pump units that can be arranged differently for varying an output voltage generated by the reconfigurable charge pump; a pump regulator coupled to the reconfigurable charge pump, the pump regulator configured to monitor the output voltage and turn the reconfigurable charge pump on or off based on the output voltage; and an arrangement control mechanism coupled to the pump regulator, the arrangement control mechanism configured to control operation of the pump regulator based on the output voltage to generate arrangement control output, wherein the arrangement control output controls electrical connections between the pump units.

Claims (26)

1. An electronic device, comprising:

a reconfigurable charge pump including pump units that can be arranged differently for varying levels of an output voltage generated by the reconfigurable charge pump;

a pump regulator coupled to the reconfigurable charge pump, the pump regulator configured to monitor the output voltage and turn the reconfigurable charge pump on or off based on the output voltage; and

an arrangement control mechanism coupled to the pump regulator, the arrangement control mechanism configured to:

repurpose the pump regulator based on the output voltage, wherein the pump regulator is repurposed to control electrical connections between the pump units according to the arrangement control mechanism, and

generate a mode output based on the output voltage or a derivation thereof, wherein the mode output controls the pump regulator.

2. The electronic device of claim 1 wherein the arrangement control mechanism is configured to generate the mode output based on comparing the output voltage or the derivation thereof to a set of threshold levels.

3. The electronic device of claim 2 wherein the arrangement control mechanism is configured to compare the output voltage or the derivation thereof to a different level within the set of threshold levels after a threshold update window.

4. The electronic device of claim 2 wherein:

the pump regulator includes a comparator connected to a reference level and configured to evaluate the output voltage or the derivation thereof according to the reference level; and

while operating the pump regulator in the arrangement control mode, the arrangement control mechanism is configured to adjust the reference level based on the set of threshold levels.

5. The electronic device of claim 2 wherein the set of threshold levels include a high threshold and a low threshold for each set of connections between the pump units.

6. The electronic device of claim 5 wherein the arrangement control mechanism is configured to generate the mode output for increasing a stage count when the output voltage or the derivation thereof is greater than the high threshold, wherein the stage count represents a quantity of the pump units that are electrically connected in series as a series set.

7. The electronic device of claim 6 wherein the arrangement control mechanism is configured to:

increase the stage count according to a predetermined factor or interval; and

update the high threshold and the low threshold, wherein an updated low threshold is equal to the high threshold used to increase the stage count.

8. The electronic device of claim 5 wherein the arrangement control mechanism is configured to operate the pump regulator to control the on-state or the off-state when a stage count is equal to a maximum limit and the output voltage or the derivation thereof is greater than the high threshold corresponding to the stage count, wherein the stage count represents a quantity of the pump units that are electrically connected in series as a series set.

9. The electronic device of claim 8 wherein the pump regulator is configured to designate the off-state for the reconfigurable charge pump after changing to control the on-state or the off-state instead of generating the mode output.

10. The electronic device of claim 5 wherein the arrangement control mechanism is configured to generate the mode output for decreasing a stage count when the output voltage or the derivation thereof is less than the low threshold, wherein the stage count represents a quantity of the pump units that are electrically connected in series as a series set.

11. The electronic device of claim 10 wherein the arrangement control mechanism is configured to:

decrease the stage count according to a predetermined factor or interval; and

update the high threshold and the low threshold, wherein an updated high threshold is equal to the low threshold used to decrease the stage count.

12. The electronic device of claim 5 wherein the arrangement control mechanism is configured to maintain a stage count when the output voltage or the derivation thereof is between the low threshold and the high threshold, wherein the stage count represents a quantity of the pump units that are electrically connected in series as a series set.

13. The electronic device of claim 1 wherein the arrangement control mechanism is implemented as a finite state machine.

14. The electronic device of claim 1 wherein the reconfigurable charge pump is configured to change the electrical connection between the pump units based on the arrangement control mechanism instead of firmware.

15. The electronic device of claim 1 wherein the reconfigurable charge pump is implemented as an integrated circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2019
From: PICCARDI, MICHELE; GUO, XIAOJIANG; TANG, QIANG
To: MICRON TECHNOLOGY, INC.
Reel/Frame 049359/0983 →
Continuity (3)
Continuation 16009128 · Jun 14, 2018
Continuation 15693300 · Aug 31, 2017
Related Publication 20190288598A1 · Sep 19, 2019