IP Library Granted Patent US 8,154,259
Granted Patent B2
US 8,154,259 · App. 11/881,300 · Granted Apr 10, 2012

Capacitor save energy verification

Assignee: AgigA Tech Inc.
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Quick Facts
Patent No.
US 8,154,259
App. No.
11/881,300
Granted
Apr 10, 2012
Kind
B2
Abstract

A memory subsystem is configured to obtain power from an external system and from at least one power capacitors. The memory subsystem includes logic to verify the power delivery capability of the power capacitors.

Claims (29)

1. A memory subsystem configured to obtain power from an external system and from at least one power capacitor, comprising:

machine memory or circuits embodying logic to verify a power delivery capability of the at least one power capacitor; and

machine memory or circuits embodying logic to measure an ending voltage of the at least one capacitor at an end of a data backup operation from a volatile to a nonvolatile memory, and to determine if the ending voltage is within a sufficient voltage margin to reliably complete a next data backup from the volatile to the nonvolatile memory; and

machine memory or circuits embodying logic to prioritize the order of use of multiple capacitors for backup power according to results of power verification of the at least one capacitor.

2. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to time at least one of a charge and discharge rate of the at least one capacitor using a predetermined load and voltage.

3. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to apply one or more of an operating temperature, operating voltage, and component age to capacitor power verification.

4. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to apply prior operational behavior of the at least one capacitor to capacitor power verification.

5. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to verify, upon restoration of external system power, that the at least one power capacitor have sufficient power to enable the data backup.

6. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to verify, after a time interval has passed, that the at least one power capacitor have sufficient power to enable the data backup.

7. The memory subsystem of claim 1 , wherein the logic to verify a power delivery capability of the at least one power capacitor further comprises:

logic to verify, in response to a signal from the external system, that the at least one power capacitor have sufficient power to enable the data backup.

8. The memory subsystem of claim 1 , further comprising:

logic to signal the external system of a result of power verification of the at least one capacitor.

9. A method of verifying the power delivery capability of at least one power capacitor in a memory subsystem, comprising:

performing a data backup from a volatile to a nonvolatile memory; and

verifying a power delivery capability of the at least one power capacitor, by measuring an ending voltage of the at least one capacitor at an end of a data backup operation from the volatile to the nonvolatile memory, and to determine if the ending voltage is within a sufficient voltage margin to reliably complete a next data backup from the volatile to the nonvolatile memory; and

prioritizing the order of use of multiple capacitors for backup power according to results of power verification of the at least one capacitor.

10. The method of claim 9 , wherein verifying a power delivery capability of the at least one power capacitor further comprises:

timing at least one of a charge and discharge rate of the at least one capacitor using a predetermined load and voltage.

11. A device comprising:

a memory subsystem configured to obtain power from the device and from at least one power capacitor:

machine memory or circuits embodying logic to cause power from the at least one power capacitor to be directed to memory components of the memory subsystem after device power to the memory subsystem is discontinued; and

machine memory or circuits embodying logic to verify a power delivery capability of the at least one power capacitor, by measuring an ending voltage of the at least one capacitor at an end of a data backup operation from a volatile to a nonvolatile memory, and to determine if the ending voltage is within a sufficient voltage margin to reliably complete a next data backup from the volatile to the nonvolatile memory; and

machine memory or circuits embodying logic to prioritize the order of use of multiple capacitors for backup power according to results of power verification of the at least one capacitor.

Assignments (3)
MERGER Recorded Apr 23, 2025
From: AGIGA TECH, INC.
To: CYPRESS SEMICONDUCTOR CORPORATION
Reel/Frame 070926/0472 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 2, 2008
From: SIMTEK CORPORATION
To: AGIGA TECH INC.
Reel/Frame 020740/0042 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2007
From: SARTORE, RONALD H
To: SIMTEK
Reel/Frame 019898/0662 →
Continuity (1)
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