IP Library Granted Patent US 11,996,858
Granted Patent B2
US 11,996,858 · App. 17/745,756 · Granted May 28, 2024

Comparator circuit with speed control element

Inventors: Roee Eitan (Haifa, IL); Yaakov Dayan (Jerusalem, IL); Yosi Sanhedrai (Bet Shemesh, IL); Aviv Berg (Beit Keshet, IL); Esther T. Fridman (Jerusalem, IL); Kirill Blum (Nesher, IL)
Assignee: Retym, Inc.
H03M1/12H02P23/186H03K5/22H03K5/24H03M1/0607
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Quick Facts
Patent No.
US 11,996,858
App. No.
17/745,756
Granted
May 28, 2024
Kind
B2
Abstract

A comparator circuit with a speed control element is disclosed herein. The speed control element may include a variable voltage source and one or more transistors. Using a voltage supplied by the variable voltage source, the one or more transistors may control a swing of a clock signal to provide a swing controlled clock signal to an amplification portion of the comparator circuit. The swing controlled clock therefor may be used to control the speed of the comparator circuit (e.g., an amplification phase) based on a level of noise in the circuit. The swing controlled clock may further be used to align an output common voltage of the comparator circuit with switching voltages of downstream logic cells (e.g., inverters) connected to the comparator circuit.

Claims (39)

1. A speed control element for a comparator circuit, the speed control element comprising:

a variable voltage source configured supply a variable voltage to one or more transistors,

the one or more transistors configured to:

receive a clock signal;

control a swing of the clock signal to generate a swing controlled clock signal based on the variable voltage supplied by the variable voltage source; and

provide the swing controlled clock signal to control a speed of an amplification phase of the comparator circuit.

2. The speed control element of the comparator circuit of claim 1 , wherein during a reset phase of the comparator circuit, the one or more transistors are configured to provide swing controlled clock logic to turn OFF another transistor of the comparator circuit.

3. The speed control element of the comparator circuit of claim 1 , wherein during the amplification phase of the comparator circuit, the one or more transistors are configured to provide a swing controlled clock logic to turn ON another transistor of the comparator circuit.

4. The speed control element of the comparator circuit of claim 1 , wherein the one or more transistors are configured to provide the swing controlled clock signal to another transistor of the comparator circuit based on a predetermined level of noise for the amplification.

5. The speed control element of the comparator circuit of claim 1 , wherein the one or more transistors are configured to provide the swing controlled clock signal to another transistor of the comparator circuit based on an alignment of an output common voltage of the comparator circuit with switching points of downstream logic cells connected to the comparator circuit.

6. The speed control element of the comparator circuit of claim 5 , wherein at least one of the downstream logic cell comprises an inverter.

7. The speed control element of the comparator circuit of claim 1 , wherein the variable voltage source comprises a DC voltage source.

8. A comparator circuit comprising:

a speed control element comprising:

a variable voltage source configured supply a variable voltage to one or more transistors,

the one or more transistors configured to:

receive a clock signal;

control a swing of the clock signal to generate a swing controlled clock signal based on the variable voltage supplied by the variable voltage source; and

provide the swing controlled clock signal to control a speed of an amplification phase of the comparator circuit.

9. The comparator circuit of claim 8 , wherein during a reset phase of the comparator circuit, the one or more transistors are configured to provide swing controlled clock logic to turn OFF another transistor of the comparator circuit.

10. The comparator circuit of claim 8 , wherein during the amplification phase of the comparator circuit, the one or more transistors are configured to provide a swing controlled clock logic to turn ON another transistor of the comparator circuit.

11. The comparator circuit of claim 8 , wherein the one or more transistors are configured to provide the swing controlled clock signal to another transistor of the comparator circuit based on a predetermined level of noise for the amplification.

12. The comparator circuit of claim 8 , wherein the one or more transistors are configured to provide the swing controlled clock signal to another transistor of the comparator circuit based on an alignment of an output common voltage of the comparator circuit with switching points of downstream logic cells connected to the comparator circuit.

13. The comparator circuit of claim 12 wherein at least one of the downstream logic cells comprises an inverter.

14. The comparator circuit of claim 8 , wherein the variable voltage sources comprises a DC voltage source.

15. A method of controlling a speed of a comparator circuit, the method comprising:

supplying, by a variable voltage source of a speed control element of a comparator circuit, a variable voltage to one or more transistors of the speed control element;

receiving, by the one or more transistors, a clock signal;

controlling, by the one or more transistors, a swing of the clock signal to generate a swing controlled clock signal based on the variable voltage supplied by the variable voltage source; and

providing, by the one or more transistors, the swing controlled clock signal to control a speed of an amplification phase of the comparator circuit.

16. The method of claim 15 , wherein the providing of the swing controlled clock comprises:

providing, by the one or more transistors, a swing controlled clock logic to turn OFF another transistor of the comparator circuit during a reset phase of the comparator circuit.

17. The method of claim 15 , wherein the providing of the swing controlled clock comprises:

providing, by the one or more transistors, a swing controlled clock logic to turn ON another transistor of the comparator circuit during the amplification phase of the comparator circuit.

18. The method of claim 15 , wherein the providing of the swing controlled clock comprises:

providing, by the one or more transistors, the swing controlled clock signal to another transistor of the comparator circuit based on a predetermined level of noise for the amplification.

19. The method of claim 15 , wherein the providing of the swing controlled clock comprises:

providing, by the one or more transistors, the swing controlled clock signal to another transistor of the comparator circuit based an alignment of an output common voltage of the comparator circuit with switching points of downstream logic cells connected to the comparator circuit.

20. The method of claim 15 , wherein the variable voltage source comprises a DC voltage source.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 29, 2022
From: EITAN, ROEE; DAYAN, YAAKOV; SANHEDRAI, YOSI; BERG, AVIV; FRIDMAN, ESTHER T.; BLUM, KIRILL
To: RETYM, INC.
Reel/Frame 061260/0554 →
Continuity (1)
Related Publication 20230370080A1 · Nov 16, 2023