IP Library › Granted Patent US 11,915,757
Granted Patent B2
US 11,915,757 · App. 17/741,975 · Granted Feb 27, 2024

Memory device through use of semiconductor device

Inventors: Koji Sakui (Tokyo, JP); Nozomu Harada (Tokyo, JP)
Assignee: UNISANTIS ELECTRONICS SINGAPORE PTE. LTD.
G11C16/0483G11C16/12G11C16/16
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Quick Facts
Patent No.
US 11,915,757
App. No.
17/741,975
Granted
Feb 27, 2024
Kind
B2
Abstract

A memory device includes pages, each being composed of a plurality of memory cells arrayed on a substrate in row form, and controls voltages to be applied to a first gate conductor layer, a second gate conductor layer, a first impurity layer, and a second impurity layer of each of the memory cells included in the pages to perform a page write operation of holding a hole group generated by an impact ionization phenomenon or a gate induced drain leakage current in a channel semiconductor layer, and controls voltages to be applied to the first gate conductor layer, the second gate conductor layer, the third gate conductor layer, the fourth gate conductor layer, the first impurity layer, and the second impurity layer to perform a page erase operation of removing the hole group out of the channel semiconductor layer.

Claims (19)

1. A memory device through use of a semiconductor device, including a plurality of pages arrayed in a column direction, each of the pages being composed of a plurality of memory cells arrayed on a substrate in a row direction, wherein

each of the memory cells included in each of the pages has,

a semiconductor base standing in a vertical direction or extending in a horizontal direction on the substrate with respect to the substrate,

a first impurity layer and a second impurity layer located on opposite ends of the semiconductor base,

a first gate insulating layer that surrounds part or whole of a side surface of the semiconductor base between the first impurity layer and the second impurity layer, and is in contact with or proximate to the first impurity layer,

a second gate insulating layer that surrounds the side surface of the semiconductor base, connects to the first gate insulating layer, and is in contact with or proximate to the second impurity layer,

a first gate conductor layer that covers part or whole of the first gate insulating layer,

a second gate conductor layer that covers the second gate insulating layer, and

a channel semiconductor layer in which the semiconductor base is covered by the first gate insulating layer and the second gate insulating layer,

the memory device controls voltages to be applied to the first gate conductor layer, the second gate conductor layer, the first impurity layer, and the second impurity layer to perform a page write operation and a page erase operation,

the first impurity layer of the each of the memory cells is connected to a source line, the second impurity layer is connected to a bit line, one of the first gate conductor layer and the second gate conductor layer is connected to one of word lines, and the other is connected to a first driving control line, and

the first driving control line is provided in common for adjacent ones of the pages, and when in the page erase operation, the memory device applies pulsed voltages to one of the word lines which performs the page erase operation and the first driving control line, and applies a fixed voltage to another one of the word lines which is not selected to perform the page erase operation.

2. The memory device through use of a semiconductor device according to claim 1 , wherein the fixed voltage is a ground voltage.

3. The memory device through use of a semiconductor device according to claim 1 , wherein the one of the word lines which performs the page erase operation includes at least one or more selected word lines.

4. The memory device through use of a semiconductor device according to claim 1 , wherein a first gate capacitance between the first gate conductor layer and the channel semiconductor layer is larger than a second gate capacitance between the second gate conductor layer and the channel semiconductor layer.

5. The memory device through use of a semiconductor device according to claim 1 , wherein when seen in a central axis direction, the first gate conductor layer surrounds the first gate insulating layer, and is separated into at least two conductor layers.

6. The memory device through use of a semiconductor device according to claim 1 , wherein

when in the page write operation, the memory device holds a hole group generated by an impact ionization phenomenon in the channel semiconductor layer to change a voltage of the channel semiconductor layer to a first data holding voltage which is higher than a voltage of one of or voltages of both of the first impurity layer and the second impurity layer, and

when in the page erase operation, the memory device controls voltages to be applied to the first impurity layer, the second impurity layer, the first gate conductor layer, and the second gate conductor layer to extract the hole group from one or both of the first impurity layer and the second impurity layer, and change the voltage of the channel semiconductor layer to a second data holding voltage which is lower than the first data holding voltage.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2022
From: SAKUI, KOJI; HARADA, NOZOMU
To: UNISANTIS ELECTRONICS SINGAPORE PTE.
Reel/Frame 059896/0013 →
Priority Claims (1)
WO PCT/JP2021/018251 · May 13, 2021 · international
Continuity (1)
Related Publication 20220366986A1 · Nov 17, 2022
Cited By (2)
US 12,279,412 US 12,362,005