IP Library Granted Patent US 12,736,992
Granted Patent B2
US 12,736,992 · App. 18/643,014 · Granted Sep 15, 2026

Digital DC-DC voltage conversion apparatus and electronic device using the same

Inventors: Yeh-Tai Hung (Zhubei City, TW); Chung Ming Hsieh (Zhubei City, TW)
Assignee: NUVOTON TECHNOLOGY CORPORATION
G05F1/59
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Quick Facts
Patent No.
US 12,736,992
App. No.
18/643,014
Granted
Sep 15, 2026
Kind
B2
Abstract

A digital DC-DC voltage conversion apparatus is used to convert an input voltage into an output voltage for a digital core circuit and generate an output current for the digital core circuit. The digital DC-DC voltage conversion apparatus includes a direct charging path current supply unit. The direct charging path current supply unit includes a direct charging switch and a direct charging path controller electrically connected to the direct charging switch. A control end of the direct charging switch receives a direct charging switch control signal, and the direct charging path controller generates direct charging switch control signal to control the direct charging switch to generate a direct charging path current to the digital core circuit. In this way, the digital DC-DC voltage conversion apparatus can faster track an operation current of the digital core circuit.

Claims (21)

1 . A digital DC-DC voltage conversion apparatus, configured to convert an input voltage into an output voltage for a digital core circuit and generate an output current for the digital core circuit, comprising:

a digital comparator, configured to compare the output voltage and a reference voltage to output a comparison signal when triggered by a clock signal;

a bi-directional shift register, electrically connected to the digital comparator, and configured to output a plurality of switch control signals based on the comparison signal when triggered by the clock signal;

a switching current unit, electrically connected to the bi-directional shift register and the digital core circuit, and comprising a plurality of switches, wherein a plurality of first terminals of the plurality of switches are electrically connected to the input voltage, a plurality of second terminals of the plurality of switches are electrically connected to the digital core circuit, a plurality of control terminals of the plurality of switches respectively receive the plurality of switch control signals, and the plurality of switches are configured to make a summed current flowing to the digital core circuit; and

a direct charging path current supply unit, electrically connected to the digital core circuit and the input voltage, comprising a direct charging switch and a direct charging path controller electrically connected to the direct charging switch, wherein a first terminal of the direct charging switch receives the input voltage, a second terminal of the direct charging switch is electrically connected to the digital core circuit, a control terminal of the direct charging switch receives a direct charging switch control signal, and the direct charging path controller generates the direct charging switch control signal to control the direct charging switch to generate a direct charging path current for the digital core circuit, wherein the output current is a sum of the summed current and the direct charging path current.

2 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein when the direct charging switch control signal is at a first voltage, the direct charging switch is turned off, when the direct charging switch control signal is at a second voltage, the direct charging switch is turned on, and a specific time duration of the direct charging switch control signal at the second voltage is programmable.

3 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein when the reference voltage is greater than the output voltage, the plurality of switch control signals output by the bi-directional shift register make an amount of switches turned on in the switching current unit increase, and when the reference voltage is smaller than the output voltage, the plurality of switch control signals output by the bi-directional shift register make an amount of switches turned off in the switching current unit increase.

4 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein each of the plurality of switches is a PMOS transistor, and a negative input terminal and a positive input terminal of the digital comparator receive the reference voltage and the output voltage, respectively.

5 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein the direct charging switch is a PMOS transistor, and the direct charging path current supply unit is further electrically connected to the digital comparator, when the direct charging path controller is triggered by the clock signal and the output voltage is smaller than the reference voltage, the direct charging switch control signal generated by the direct charging path controller is changed from a first voltage to a second voltage to turn on the PMOS transistor for a specific time duration.

6 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein the direct charging switch is an NMOS transistor, when the direct charging path controller is triggered by the clock signal, the direct charging switch control signal generated by the direct charging path controller is changed from a first voltage to a second voltage to turn on the NMOS transistor for a specific time duration.

7 . The digital DC-DC voltage conversion apparatus of claim 1 , further comprising an output capacitor, and a first terminal and a second terminal of the output capacitor are electrically connected to the digital core circuit and a ground voltage respectively.

8 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein the digital DC-DC voltage conversion apparatus is a digital low-dropout regulator.

9 . The digital DC-DC voltage conversion apparatus of claim 1 , wherein the direct charging path controller further adjusts the specific time duration based on the comparison signal and a preceding comparison signal.

10 . A digital DC-DC voltage conversion apparatus, configured to convert an input voltage into an output voltage for a digital core circuit and generate an output current for the digital core circuit, comprising:

a digital comparator, configured to compare the output voltage and a reference voltage and output a comparison signal accordingly when triggered by a clock signal;

a summed current modulating signal generator, electrically connected to the digital comparator, and configured to output a summed current modulating signal according to the comparison signal when triggered by the clock signal;

a summed current generating unit, electrically connected to the summed current modulating signal generator, the input voltage and the digital core circuit, configured to generate a summed current for the digital core circuit according to the summed current modulating signal; and

a direct charging path current supply unit, electrically connected to the digital core circuit and the input voltage, configured to generate a direct charging path current for the digital core circuit, wherein the output current is a sum of the summed current and the direct charging path current, and a specific time duration of the direct charging path current supply unit providing the direct charging path current is programmable.

11 . An electronic device, comprising:

the digital DC-DC voltage conversion apparatus of claim 1 , and

the digital core circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 30, 2024
From: HUNG, YEH-TAI; HSIEH, CHUNG MING
To: NUVOTON TECHNOLOGY CORPORATION
Reel/Frame 067264/0512 →
Priority Claims (1)
TW 112146497 · Nov 30, 2023 · national
Continuity (1)
Related Publication 20250181096A1 · Jun 5, 2025
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