IP Library Granted Patent US 7,965,544
Granted Patent B2
US 7,965,544 · App. 12/844,144 · Granted Jun 21, 2011

Magnetic memory element, magnetic memory having said magnetic memory element, and method for driving magnetic memory

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Quick Facts
Patent No.
US 7,965,544
App. No.
12/844,144
Granted
Jun 21, 2011
Kind
B2
Abstract

An inadvertent write can be prevented when a read is performed. The duration of the write current pulse for writing information in the magnetic memory layer is longer than the duration of the read current pulse for reading the information from the magnetic memory layer.

Claims (18)

1. A method for driving a magnetic memory that includes a memory cell having a magnetic memory element that includes a magnetization reference layer in which a magnetization direction is fixed, a magnetic memory layer in which a magnetization direction is changeable, and a tunnel barrier layer interposed between the magnetization reference layer and the magnetic memory layer, the magnetization direction of the magnetic memory layer being changeable by applying a write current pulse to inject spin-polarized electrons into the magnetic memory layer, the method comprising:

applying the write current pulse for writing information in the magnetic memory layer; and

applying a read current pulse for reading the information from the magnetic memory layer,

wherein duration of the write current pulse is longer than that of the read current pulse, and the magnetic anisotropy field Hk of the magnetic memory layer is in the range of 50 Oe to 5000 Oe, and

wherein the read current pulse is applied a plurality of times to obtain one datum of the information from the magnetic memory through an integrated read current value, and each pulse duration of the read current pulse applied the plurality of times is shorter than the pulse duration of the write current.

2. A method for driving a magnetic memory that includes a memory cell having a magnetic memory element that includes a magnetization reference layer in which a magnetization direction is fixed, a magnetic memory layer in which a magnetization direction is changeable, and a tunnel barrier layer interposed between the magnetization reference layer and the magnetic memory layer, the magnetization direction of the magnetic memory layer being changeable by applying a write current pulse to inject spin-polarized electrons into the magnetic memory layer, the method comprising:

applying the write current pulse for writing information in the magnetic memory layer; and

applying a read current pulse for reading the information from the magnetic memory layer,

wherein duration of the write current pulse is longer than that of the read current pulse, and the magnetic anisotropy field Hk of the magnetic memory layer is in the range of 50 Oe to 5000 Oe, and

wherein the pulse duration of the read current pulse is shorter than an initial reversal-related switching time τ 0 , and the pulse duration of the write current pulse is equal to or longer than the initial reversal-related switching time τ 0 .

3. A magnetic memory comprising:

a memory cell having a magnetic memory element that includes a magnetization reference layer in which a magnetization direction is fixed, a magnetic memory layer in which a magnetization direction is changeable, and a nonmagnetic layer interposed between the magnetization reference layer and the magnetic memory layer, the magnetization direction of the magnetic memory layer being changeable by applying a write current pulse to inject spin-polarized electrons into the magnetic memory layer;

a read circuit that generates a read current pulse for reading information from the magnetic memory element;

a write circuit that generates a write current pulse for writing information in the magnetic memory element, the write current pulse having a longer pulse duration than a pulse duration of the read current pulse;

a first line that is connected to one terminal of the magnetic memory element, the write current pulse running through the first line when a write is performed, the read current pulse running through the first line when a read is performed; and

a second line that is connected to another terminal of the magnetic memory element, the write current pulse running through the second line when the write is performed, the read current pulse running through the second line when a read is performed,

wherein the magnetic anisotropy field Hk of the magnetic memory layer is in the range of 50 Oe to 5000 Oe, and

wherein the read current pulse is applied a plurality of times to obtain one datum of the information from the magnetic memory through an integrated read current value, and each pulse duration of the read current pulse applied the plurality of times is shorter than pulse duration of the write current.

Assignments (3)
DE-MERGER Recorded Dec 12, 2019
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEMORY CORPORATION
Reel/Frame 051260/0291 →
MERGER Recorded Dec 12, 2019
From: TOSHIBA MEMORY CORPORATION; K.K PANGEA
To: TOSHIBA MEMORY CORPORATION
Reel/Frame 051262/0776 →
CHANGE OF NAME AND ADDRESS Recorded Dec 12, 2019
From: TOSHIBA MEMORY CORPORATION
To: KIOXIA CORPORATION
Reel/Frame 051262/0881 →