IP Library › Granted Patent US 12,348,240
Granted Patent B2
US 12,348,240 · App. 18/182,128 · Granted Jul 1, 2025

Comparator circuit and A/D converter

Inventors: Itsuki Yoshida (Yokohama, JP); Takashi Morie (Yokohama, JP)
Assignee: SOCIONEXT INC.
H03M1/36H03K19/21
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Quick Facts
Patent No.
US 12,348,240
App. No.
18/182,128
Granted
Jul 1, 2025
Kind
B2
Abstract

A comparator circuit outputs first and second digital signals corresponding to differential signals to a flip-flop having a predetermined forbidden input combination. A converter circuit performs differential amplification for the differential signals and converts the resultant signals to first and second signals that are complementary digital signals. A logic circuit performs predetermined logical operation, and when the logical values of the first and second signals are different from each other, outputs the first and second digital signals corresponding to the logical values of the first and second signals, and when the logical values of the first and second signals are the same, outputs the first and second digital signals having a same value other than the predetermined forbidden input combination.

Claims (35)

1. A comparator circuit receiving differential signals and outputting first and second digital signals corresponding to the differential signals to a flip-flop having a predetermined forbidden input combination, the comparator circuit comprising:

a converter circuit performing differential amplification for the differential signals and converting the resultant signals to first and second signals that are complementary digital signals; and

a logic circuit performing predetermined logical operation for the input first and second signals and outputting the first and second digital signals,

wherein when the first and second signals have logical values different from each other, the logic circuit outputs the first and second digital signals corresponding to the logical values of the first and second signals, and when the first and second signals have a same logical value, the logic circuit outputs the first and second digital signals having a same value other than the predetermined forbidden input combination,

the logic circuit includes:

a first circuit receiving the first and second signals and outputting the first digital signal, and

a second circuit receiving the first and second signals and outputting the second digital signal,

the first circuit includes:

a first inverter receiving the first signal, and

a first NAND gate receiving the second signal and an output signal of the first inverter,

the second circuit includes:

a second inverter receiving the second signal, and

a second NAND gate receiving the first signal and an output signal of the second inverter, and

the first circuit includes a first delay circuit delaying the second signal and outputting the delayed signal to the first NAND gate, and

the second circuit includes a second delay circuit delaying the first signal and outputting the delayed signal to the second NAND gate.

2. A comparator circuit receiving differential signals and outputting first and second digital signals corresponding to the differential signals to a flip-flop having a predetermined forbidden input combination, the comparator circuit comprising:

a converter circuit performing differential amplification for the differential signals and converting the resultant signals to first and second signals that are complementary digital signals; and

a logic circuit performing predetermined logical operation for the input first and second signals and outputting the first and second digital signals,

wherein when the first and second signals have logical values different from each other, the logic circuit outputs the first and second digital signals corresponding to the logical values of the first and second signals, and when the first and second signals have a same logical value, the logic circuit outputs the first and second digital signals having a same value other than the predetermined forbidden input combination,

the logic circuit includes:

a first circuit receiving the first and second signals and outputting the first digital signal, and

a second circuit receiving the first and second signals and outputting the second digital signal,

the first circuit includes:

a first inverter receiving the second signal,

a first NOR gate receiving the first signal and an output signal of the first inverter, and

a second inverter receiving an output of the first NOR gate, and

the second circuit includes:

a third inverter receiving the first signal,

a second NOR gate receiving the second signal and an output signal of the third inverter, and

a fourth inverter receiving an output of the second NOR gate.

3. The comparator circuit of claim 2 , wherein

the first circuit includes a first delay circuit delaying the first signal and outputting the delayed signal to the first NOR gate, and

the second circuit includes a second delay circuit delaying the second signal and outputting the delayed signal to the second NOR gate.

4. An A/D converter comprising the comparator circuit of claim 1 .

5. An A/D converter comprising the comparator circuit of claim 2 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2023
From: YOSHIDA, ITSUKI; MORIE, TAKASHI
To: SOCIONEXT INC.
Reel/Frame 062950/0815 →
Continuity (2)
Continuation PCTJP2020034920 · Sep 15, 2020
Related Publication 20230216518A1 · Jul 6, 2023
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