IP Library › Granted Patent US 12,591,333
Granted Patent B2
US 12,591,333 · App. 18/953,724 · Granted Mar 31, 2026

Signal processing circuit

Inventor: Yoshihiro Yamaguchi (Nagaokakyo, JP)
Assignee: MURATA MANUFACTURING CO., LTD.
G06F3/04164G06F3/0414G01B7/00G01L1/16G06F3/04182
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Quick Facts
Patent No.
US 12,591,333
App. No.
18/953,724
Granted
Mar 31, 2026
Kind
B2
Abstract

A signal processing circuit is provided that includes a capacitor coupled to a signal line to be coupled to a sensor, and coupled in series with the sensor, and a variable resistance circuit coupled in parallel with the capacitor. The variable resistance circuit and the capacitor form a high-pass filter that allows a signal having a cutoff frequency or higher to pass through the high-pass filter. In the variable resistance circuit, a resistance value is set to a first resistance value when a target signal having a peak component on a time axis is allowed to pass through the high-pass filter, and the cutoff frequency at the first resistance value is 1/10 or less of a frequency of the peak component.

Claims (56)

1 . A signal processing circuit comprising:

a capacitor coupled in series to a signal line to be coupled to a sensor; and

a variable resistance circuit coupled in parallel with the signal line, the variable resistance circuit including a switched capacitor that includes a capacitor and a first switch,

wherein the variable resistance circuit and the capacitor form a high-pass filter that is configured to pass a frequency that is equal to or higher than a cutoff frequency,

wherein, in the variable resistance circuit, a resistance value is set to a first resistance value when a target signal having a peak component on a time axis is allowed to pass through the high-pass filter, and the cutoff frequency at the first resistance value is 1/10 or less of a frequency of the peak component, and

wherein the resistance value of the variable resistance circuit is set to a second resistance value that is lower than the first resistance value when the target signal does not pass through the high-pass filter.

2 . The signal processing circuit according to claim 1 , wherein the resistance value of the variable resistance circuit is set to a second resistance value that is lower than the first resistance value at all times except when the target signal is allowed to pass through the high-pass filter.

3 . The signal processing circuit according to claim 2 , wherein the variable resistance circuit includes a switched capacitor that includes the capacitor and the first switch.

4 . The signal processing circuit according to claim 3 , wherein the variable resistance circuit is configured to change the first resistance value to the second resistance value by increasing a switching frequency of the first switch.

5 . The signal processing circuit according to claim 1 , wherein the variable resistance circuit is configured to change the first resistance value to the second resistance value by increasing a switching frequency of the first switch.

6 . The signal processing circuit according to claim 5 , further comprising:

a buffer amplifier coupled in series with the variable resistance circuit and a reference voltage source; and

a second switch coupled in parallel with the buffer amplifier.

7 . The signal processing circuit according to claim 6 , wherein the buffer amplifier is set to:

OFF when the resistance value is set to the first resistance value, and

ON when the resistance value is set to the second resistance value.

8 . The signal processing circuit according to claim 7 , wherein the second switch is set to:

ON when the resistance value is set to the first resistance value, and

OFF when the resistance value is set to the second resistance value.

9 . The signal processing circuit according to claim 1 , wherein the variable resistance circuit is a variable resistor.

10 . The signal processing circuit according to claim 9 , further comprising:

a buffer amplifier coupled in series with the variable resistance circuit and a reference voltage source; and

a second switch coupled in parallel with the buffer amplifier.

11 . The signal processing circuit according to claim 10 , wherein the buffer amplifier is set to:

OFF when the resistance value is set to the first resistance value, and

ON when the resistance value is set to the second resistance value.

12 . The signal processing circuit according to claim 11 , wherein the second switch is set to:

ON when the resistance value is set to the first resistance value, and

OFF when the resistance value is set to the second resistance value.

13 . The signal processing circuit according to claim 1 , wherein the variable resistance circuit includes:

a resistor, and

a third switch coupled in parallel with the resistor,

wherein the first resistance value is changed to the second resistance value by turning on the third switch.

14 . The signal processing circuit according to claim 1 , further comprising:

a charge-voltage conversion circuit configured to convert a charge of the sensor into a voltage; and

an amplifier circuit configured to amplify the signal,

wherein the capacitor and the variable resistance circuit are disposed between the charge-voltage conversion circuit and the amplifier circuit.

15 . The signal processing circuit according to claim 1 , further comprising:

an amplifier circuit configured to amplify the signal; and

an A/D conversion circuit including an integrator circuit configured to perform an A/D conversion on the signal,

wherein the variable resistance circuit is disposed on an input side of the integrator circuit.

16 . The signal processing circuit according to claim 1 , wherein the sensor is a pressing sensor configured to detect a press operation.

17 . A signal processing circuit comprising:

a capacitor coupled in series to a signal line to be coupled to a sensor; and

a variable resistance circuit coupled in parallel with the signal line,

wherein the variable resistance circuit and the capacitor form a high-pass filter that is configured to pass a signal having a frequency that is equal to or higher than a cutoff frequency,

wherein, in the variable resistance circuit, a resistance value is set to a first resistance value when a target signal having a peak component on a time axis is allowed to pass through the high-pass filter, and the cutoff frequency at the first resistance value is 1/10 or less of a frequency of the peak component,

wherein the resistance value of the variable resistance circuit is set to a second resistance value that is lower than the first resistance value when the target signal does not pass through the high-pass filter, and

wherein the variable resistance circuit further-includes;

a resistor,

a third switch coupled in parallel with the resistor, and

a buffer amplifier coupled in series with the third switch,

wherein the first resistance value is changed to the second resistance value by turning on the third switch.

18 . The signal processing circuit according to claim 17 , wherein the buffer amplifier is set to:

OFF when the resistance value is set to the first resistance value, and

ON when the resistance value is set to the second resistance value.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2024
From: YAMAGUCHI, YOSHIHIRO
To: MURATA MANUFACTURING CO., LTD.
Reel/Frame 069343/0858 →
Priority Claims (1)
JP 2022-092205 · Jun 7, 2022 · national
Continuity (2)
Continuation PCTJP2023019691 · May 26, 2023
Related Publication 20250077019A1 · Mar 6, 2025
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