IP Library › Granted Patent US 10,319,438
Granted Patent B2
US 10,319,438 · App. 15/797,860 · Granted Jun 11, 2019

Memory with margin current addition and related methods

Inventors: Emanuela Calvetti (Villa d'adda, IT); Marcella Carissimi (Treviolo, IT); Marco Pasotti (Travaco' Siccomario, IT)
Assignee: STMicroelectronics S.r.l.
G11C13/004G11C7/065G11C11/1655G11C11/1673G11C13/0004G11C13/0026G11C13/0033G11C13/0035G11C13/0064G11C16/24G11C16/26G11C16/28G11C16/349G11C7/06G11C2013/0042G11C2013/0054G11C2013/0066
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Quick Facts
Patent No.
US 10,319,438
App. No.
15/797,860
Granted
Jun 11, 2019
Kind
B2
Abstract

In accordance with an embodiment, a memory includes: a memory element, a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current, and a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current.

Claims (56)

1. A memory comprising:

a memory element, wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM);

a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current; and

a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current.

2. The memory of claim 1 , wherein the memory element comprises a phase change material (PCM).

3. The memory of claim 1 , wherein the memory element comprises a first variable resistance.

4. The memory of claim 1 , wherein the memory element is implemented with resistive random-access memory technology (RRAM).

5. The memory of claim 1 , wherein the memory element is implemented with magnetoresistive random-access memory technology (MRAM).

6. The memory of claim 1 , wherein the margin current branch comprises a control switch coupled to the sense amplifier circuit and configured to control flow of the margin current.

7. A memory comprising:

a memory element;

a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current; and

a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current, wherein the margin current branch comprises a control switch coupled to the sense amplifier circuit and configured to control flow of the margin current, and wherein the control switch is configured to perform a logic check operation on the memory element by adding the margin current to the sense current during the sense operation.

8. A memory comprising:

a memory element;

a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current;

a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current, wherein the margin current branch comprises a control switch coupled to the sense amplifier circuit and configured to control flow of the margin current; and

a controller configured to flag the memory element with an error value when the sense operation has a different output value when the margin current is added.

9. The memory of claim 1 , wherein the margin current branch comprises a plurality of current sources.

10. A memory comprising:

a memory element;

a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current; and

a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current, wherein the margin current branch comprises a control switch coupled to the sense amplifier circuit and configured to control flow of the margin current, and wherein the margin current branch is configured to generate different margin currents.

11. A method for making a memory, the method comprising:

forming a memory element, wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM);

forming a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current; and

forming a margin current branch coupled in parallel with the memory element and configured to selectively add a margin current to the sense current.

12. The method of claim 11 , wherein the memory element comprises a phase change material (PCM).

13. The method of claim 11 , wherein the memory element comprises a first variable resistance.

14. The method of claim 11 , wherein the memory element is implemented with resistive random-access memory technology (RRAM).

15. The method of claim 11 , wherein the memory element is implemented with magnetoresistive random-access memory technology (MRAM).

16. The method of claim 11 , wherein the margin current branch comprises a control switch coupled to the sense amplifier circuit and configured to control flow of the margin current.

17. The method of claim 16 , wherein the control switch is configured to perform a logic check operation on the memory element by adding the margin current to the sense current during the sense operation.

18. The method of claim 11 , wherein the memory element is flagged with an error value when the sense operation has a different output value when the margin current is added.

19. The method of claim 11 , wherein the margin current branch comprises a plurality of current sources.

20. A method for checking and refreshing a memory comprising a memory element, a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current, and a margin current branch coupled in parallel with the memory element, wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM), the method comprising:

during the sense operation, using the margin current branch to selectively add a margin current to the sense current.

21. The method of claim 20 , wherein the memory element comprises a phase change material (PCM).

22. The method of claim 20 , wherein the memory element comprises a first variable resistance.

23. The method of claim 20 , wherein the memory element is implemented with resistive random-access memory technology (RRAM).

24. The method of claim 20 , wherein the memory element is implemented with magnetoresistive random-access memory technology (MRAM).

25. A method for checking and refreshing a memory comprising a memory element, a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current, and a margin current branch coupled in parallel with the memory element, the method comprising:

during the sense operation, using the margin current branch to selectively add a margin current to the sense current; and

controlling a flow of the margin current with a control switch of the margin current branch, wherein the control switch is coupled to the sense amplifier circuit.

26. The method of claim 25 , further comprising performing a logic check operation on the memory element by adding the margin current to the sense current during the sense operation using the control switch.

27. A method for checking and refreshing a memory comprising a memory element, a sense amplifier circuit configured to sense a difference during a sense operation between a sense current passing through the memory element and a reference current, and a margin current branch coupled in parallel with the memory element, the method comprising:

during the sense operation, using the margin current branch to selectively add a margin current to the sense current; and

flagging the memory element with an error value when the sense operation has a different output value when the margin current is added.

28. The method of claim 20 , wherein the margin current branch comprises a plurality of current sources.

29. The memory of claim 7 , wherein the memory element comprises a floating gate transistor.

30. The memory of claim 7 , wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM).

31. The memory of claim 8 , wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM).

32. The memory of claim 10 , wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM).

33. The method of claim 25 , wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM).

34. The method of claim 27 , wherein the memory element comprises a phase change material (PCM) or a first variable resistance, or wherein the memory element is implemented with resistive random-access memory technology (RRAM) or magnetoresistive random-access memory technology (MRAM).

35. The method of claim 27 , wherein the memory element comprises a floating gate transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2017
From: CALVETTI, EMANUELA; CARISSIMI, MARCELLA; PASOTTI, MARCO
To: STMICROELECTRONICS S.R.L.
Reel/Frame 043984/0673 →
Continuity (3)
Continuation In Part 15476618 · Mar 31, 2017
Continuation In Part 15225898 · Aug 2, 2016
Related Publication 20180068721A1 · Mar 8, 2018
Cited By (2)
US 12,260,910 US 12,451,185