IP Library Granted Patent US 12,633,878
Granted Patent B2
US 12,633,878 · App. 18/611,116 · Granted May 19, 2026

Tracker circuit, communication device, and voltage supply method

Inventors: Naohide Tomita (Nagaokakyo, JP); Takeshi Kogure (Nagaokakyo, JP); Taichi Yamaguchi (Cambridge, MA); Atsuya Hirono (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
H03F1/0238H03F3/245H04B1/04H03F2200/105H03F2200/451
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Quick Facts
Patent No.
US 12,633,878
App. No.
18/611,116
Granted
May 19, 2026
Kind
B2
Abstract

A tracker circuit is provided that includes a first switched-capacitor circuit configured to generate a plurality of first discrete voltages, a second switched-capacitor circuit configured to generate a plurality of second discrete voltages, and a supply modulator configured to selectively output at least one of the plurality of first discrete voltages and the plurality of second discrete voltages to a power amplifier. One of the plurality of first discrete voltages has a level different from levels of the plurality of second discrete voltages, and one of the plurality of second discrete voltages has a level different from levels of the plurality of first discrete voltages.

Claims (65)

1 . A tracker circuit comprising:

a first switched-capacitor circuit configured to generate a plurality of first discrete voltages;

a second switched-capacitor circuit configured to generate a plurality of second discrete voltages; and

a supply modulator configured to selectively output at least one voltage of at least one of the plurality of first discrete voltages and the plurality of second discrete voltages to a power amplifier,

wherein the at least one voltage of the plurality of first discrete voltages has a level different than levels of the plurality of second discrete voltages, and

wherein the at least one voltage of the plurality of second discrete voltages has a level different than levels of the plurality of first discrete voltages.

2 . The tracker circuit according to claim 1 , wherein:

the first switched-capacitor circuit is configured to generate the plurality of first discrete voltages from a first regulated voltage,

the second switched-capacitor circuit is configured to generate the plurality of second discrete voltages from the first regulated voltage,

the plurality of first discrete voltages includes a first number of the plurality of first discrete voltages and the plurality of second discrete voltages includes a second number of the plurality of second discrete voltages, and

the first number and the second number satisfy a predetermined condition in a manner that (i) the first number is not a divisor of the second number and (ii) the second number is not a divisor of the first number.

3 . The tracker circuit according to claim 1 , wherein:

the first switched-capacitor circuit is configured to generate the plurality of first discrete voltages from a first regulated voltage, and

the second switched-capacitor circuit is configured to generate the plurality of second discrete voltages from a second regulated voltage, a level of the second regulated voltage being different from a level of the first regulated voltage.

4 . The tracker circuit according to claim 1 , wherein:

the first switched-capacitor circuit is configured to generate the plurality of first discrete voltages from a first regulated voltage, and

the second switched-capacitor circuit is configured to generate the plurality of second discrete voltages from the first regulated voltage and a second regulated voltage, a level of the second regulated voltage being different from a level of the first regulated voltage.

5 . The tracker circuit according to claim 4 , wherein the second switched-capacitor circuit is configured to generate, based on a difference between the first regulated voltage and the second regulated voltage, the plurality of second discrete voltages.

6 . The tracker circuit according to claim 2 , wherein the second number of the plurality of second discrete voltages is larger than the first number of the plurality of first discrete voltages.

7 . The tracker circuit according to claim 4 , wherein:

the first regulated voltage is greater than or equal to a voltage corresponding to a peak power of a radio frequency signal amplified by the power amplifier, and

the second regulated voltage is less than or equal to a voltage corresponding to an average power of the radio frequency signal.

8 . The tracker circuit according to claim 4 , further comprising a converter circuit that is configured to convert an input voltage into at least one of the first regulated voltage and the second regulated voltage.

9 . A communication device comprising:

the tracker circuit according to claim 1 ;

a signal processing circuit configured to process a radio frequency signal; and

a radio frequency circuit that includes the power amplifier and that is configured to transmit the radio frequency signal between the signal processing circuit and an antenna.

10 . A tracker circuit comprising:

a first switched-capacitor circuit including a first input terminal and a plurality of first output terminals, each of the plurality of first output terminals configured to output a respective one voltage of a plurality of first discrete voltages;

a second switched-capacitor circuit including a second input terminal and a plurality of second output terminals, each of the plurality of second output terminals configured to output a respective one voltage of a plurality of second discrete voltages; and

a supply modulator including (i) a plurality of third input terminals, each of the plurality of third input terminals being coupled to a respective terminal of either the plurality of first output terminals or the plurality of second output terminals, and (ii) a third output terminal coupled to a power amplifier,

wherein at least one voltage of the plurality of first discrete voltages has a level different from levels of the plurality of second discrete voltages, and

wherein at least one voltage of the plurality of second discrete voltages has a level different from levels the plurality of first discrete voltages.

11 . The tracker circuit according to claim 10 , wherein:

the first input terminal and the second input terminal are coupled to a first regulated voltage,

the plurality of first discrete voltages includes a first number of the plurality of first discrete voltages and the plurality of second discrete voltages includes a second number of the plurality of second discrete voltages, and

the first number and the second number satisfy a predetermined condition in a manner that (i) the first number is not a divisor of the second number and (ii) the second number is not a divisor of the first number.

12 . The tracker circuit according to claim 10 , wherein:

the first input terminal is configured to receive a first regulated voltage, and

the second input terminal is configured to receive a second regulated voltage, a level of the second regulated voltage being different from a level of the first regulated voltage.

13 . The tracker circuit according to claim 10 , wherein:

the second switched-capacitor circuit further includes a third input terminal,

the first input terminal is configured to receive a first regulated voltage,

the second input terminal is configured to receive the first regulated voltage, and

the third input terminal is configured to receive a second regulated voltage having a level different from a level of the first regulated voltage.

14 . The tracker circuit according to claim 11 , wherein the second number of the plurality of second discrete voltages is larger than the first number of the plurality of first discrete voltages.

15 . The tracker circuit according to claim 12 , further comprising a converter circuit including an input terminal that is configured to receive an input voltage, and two output terminals that are configured to output the first regulated voltage and the second regulated voltage, respectively.

16 . A communication device comprising:

the tracker circuit according to claim 10 ;

a signal processing circuit configured to process a radio frequency signal; and

a radio frequency circuit that includes the power amplifier and that is configured to transmit the radio frequency signal between the signal processing circuit and an antenna.

17 . A voltage supply method operated in a tracker circuit, the method comprising:

generating a plurality of first discrete voltages based on a first switched-capacitor circuit of the tracker circuit;

generating a plurality of second discrete voltages based on a second switched-capacitor circuit of the tracker circuit; and

selectively outputting at least one voltage of at least one of the plurality of first discrete voltages and the plurality of second discrete voltages to a power amplifier based on a supply modulator of the tracker circuit,

wherein the at least one voltage of the plurality of first discrete voltages has a level different from levels of the plurality of second discrete voltages, and

wherein the at least one voltage of the plurality of second discrete voltages has a level different from levels of the plurality of first discrete voltages.

18 . The voltage supply method according to claim 17 , wherein:

the plurality of first discrete voltages is generated from a first regulated voltage and the plurality of second discrete voltages is generated from a second regulated voltage, the first regulated voltage and the second regulated voltage having a same level,

the plurality of first discrete voltages includes a first number of the plurality of first discrete voltages and the plurality of second discrete voltages includes a second number of the plurality of second discrete voltages, and

the first number and the second number satisfy a predetermined condition in a manner that (i) the first number is not a divisor of the second number and (ii) the second number is not a divisor of the first number.

19 . The voltage supply method according to claim 17 , wherein the plurality of first discrete voltages and the plurality of second discrete voltages are generated from respective regulated voltages with different levels.

20 . The voltage supply method according to claim 17 , wherein:

the plurality of first discrete voltages is generated from a first regulated voltage, and

the plurality of second discrete voltages is generated from the first regulated voltage and a second regulated voltage, a level of the second regulated voltage being different from a level of the first regulated voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2024
From: TOMITA, NAOHIDE; KOGURE, TAKESHI; YAMAGUCHI, TAICHI; HIRONO, ATSUYA
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 066848/0973 →
Priority Claims (1)
JP 2023-049768 · Mar 27, 2023 · national
Continuity (1)
Related Publication 20240333224A1 · Oct 3, 2024
References Cited (4)
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US 10840805B2 · Perreault · 2020 [cited by examiner]
US 20220224289A1 · Kim · 2022 [cited by examiner]
US 20220329217A1 · Khlat · 2022 [cited by examiner]