IP Library › Granted Patent US 10,796,735
Granted Patent B1
US 10,796,735 · App. 16/459,320 · Granted Oct 6, 2020

Read tracking scheme for a memory device

Inventors: Hochul Lee (Los Angeles, CA); Keejong Kim (Phoenix, AZ); Anil Chowdary Kota (San Diego, CA); Chulmin Jung (San Diego, CA)
Assignee: QUALCOMM Incorporated
G11C7/08G11C7/12G11C7/227G11C7/00G11C7/06G11C7/14
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,796,735
App. No.
16/459,320
Granted
Oct 6, 2020
Kind
B1
Abstract

In certain aspects, a memory device includes memory bit cells coupled to a read bit line, and a first sense amplifier having a first input coupled to the read bit line, and a first output. The memory device also includes a latch amplifier having a first input coupled to the first output of the first sense amplifier, an enable input, and an output. The memory device also includes one or more dummy bit cells coupled to a dummy bit line, and a second sense amplifier having a first input coupled to the dummy bit line, and an output. The memory device further includes a trigger circuit having an input coupled to the output of the second sense amplifier, and an output coupled to the enable input of the latch amplifier.

Claims (37)

1. A memory device, comprising:

memory bit cells coupled to a read bit line;

a first sense amplifier having a first input coupled to the read bit line, a first output, a second input, and a second output, wherein the first sense amplifier is configured to

pre-charge the read bit line when the first sense amplifier is enabled by a sense enable signal, and

output a data voltage at the first output of the first sense amplifier based on a voltage of the read bit line;

a latch amplifier having a first input coupled to the first output of the first sense amplifier, a second input coupled to the second output of the first sense amplifier, an enable input, and an output;

one or more dummy bit cells coupled to a dummy bit line;

a second sense amplifier having a first input coupled to the dummy bit line, and an output;

a trigger circuit having an input coupled to the output of the second sense amplifier, and an output coupled to the enable input of the latch amplifier;

a sense enable circuit coupled to an enable input of the first sense amplifier, wherein the sense enable circuit is configured to output the sense enable signal to the enable input of the first sense amplifier when one of the memory bit cells is selected during a read operation; and

a reference resistor coupled between the second input of the first sense amplifier and a ground, wherein the first sense amplifier is configured to output a reference voltage at the second output based on the reference resistor.

2. The memory device of claim 1 , wherein each of the memory cells comprises:

a respective transistor; and

a respective fuse coupled between the respective transistor and the read bit line.

3. The memory device of claim 2 , wherein each of the one or more dummy bit cells comprises:

a respective transistor; and

a respective fuse coupled between the respective transistor and the dummy bit line.

4. The memory device of claim 3 , wherein, for each of the one or more dummy bit cells, a gate of the respective transistor is coupled to a ground.

5. The memory device of claim 2 , wherein, for each of the memory bit cells, a gate of the respective transistor is coupled to a respective one of a plurality of word lines.

6. The memory device of claim 1 , wherein the trigger circuit is configured to output an enable signal to the enable input of the latch amplifier in response to a voltage at the input of the trigger circuit reaching a threshold voltage.

7. The memory device of claim 6 , wherein the trigger circuit comprises an inverter, and the threshold voltage corresponds to a switching threshold voltage of the inverter.

8. The memory device of claim 1 , wherein the latch amplifier is configured to latch a first logic state or a second logic state based on the data voltage.

9. The memory device of claim 1 , wherein the sense enable circuit is coupled to an enable input of the second sense amplifier, and the sense enable circuit is configured to output the sense enable signal to the enable input of the second sense amplifier.

10. The memory device 9 , wherein the second sense amplifier is configured to:

charge the dummy bit line when the second sense amplifier is enabled by the sense enable signal; and

output a dummy output voltage based on a voltage of the dummy bit line.

11. The memory device of claim 10 , wherein the trigger circuit is configured to output a latch enable signal to the enable input of the latch amplifier in response to the dummy output voltage reaching a threshold voltage.

12. The memory device of claim 10 , wherein the first sense amplifier is configured to:

pre-charge the read bit line when the first sense amplifier is enabled by the sense enable signal; and

output a data voltage at the first output of the first sense amplifier based on a voltage of the read bit line.

13. The memory device of claim 1 , wherein the latch amplifier is configured to latch a first logic state or a second logic state based on the data voltage and the reference voltage.

14. The memory device of claim 13 , wherein the latch amplifier is configured to:

latch the first logic state if the data voltage is greater than the reference voltage; and

latch the second logic state if the data voltage is less than the reference voltage.

15. A system, comprising:

a processor; and

the memory device of claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2019
From: LEE, HOCHUL; KIM, KEEJONG; KOTA, ANIL CHOWDARY; JUNG, CHULMIN
To: QUALCOMM INCORPORATED
Reel/Frame 050449/0277 →
Cited By (1)
US 12,224,025