IP Library › Granted Patent US 10,262,707
Granted Patent B2
US 10,262,707 · App. 15/586,870 · Granted Apr 16, 2019

Semiconductor memory device for stably reading and writing data

Inventors: Koji Nii (Tokyo, JP); Shigeki Ohbayashi (Tokyo, JP); Yasumasa Tsukamoto (Tokyo, JP); Makoto Yabuuchi (Tokyo, JP)
Assignee: RENESAS ELECTRONICS CORPORATION
G11C8/08G11C5/06G11C5/14G11C11/4085G11C11/417G11C11/419
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Quick Facts
Patent No.
US 10,262,707
App. No.
15/586,870
Granted
Apr 16, 2019
Kind
B2
Abstract

In a semiconductor memory device, static memory cells are arranged in rows and columns, word lines correspond to respective memory cell rows, and word line drivers drive correspond to word lines. Cell power supply lines correspond to respective memory cell columns and are coupled to cell power supply nodes of a memory cell in a corresponding column. Down power supply lines are arranged corresponding to respective memory cell columns, maintained at ground voltage in data reading and rendered electrically floating in data writing. Write assist elements are arranged corresponding to the cell power supply lines, and according to a write column instruction signal for stopping supply of a cell power supply voltage to the cell power supply line in a selected column, and for coupling the cell power supply line arranged corresponding to the selected column at least to the down power supply line on the corresponding column.

Claims (25)

1. A semiconductor memory device comprising:

a plurality of static memory cells arranged in rows and columns, each memory cell including, in a data storage portion, a load transistor connected to a cell power supply node and a drive transistor connected in series to said load transistor;

a plurality of word lines, arranged corresponding to the respective memory cell rows, each connected to the memory cells in a corresponding row;

a plurality of word line drivers arranged corresponding to the respective word lines; and

a power supply circuit for supplying a memory cell supply voltage to the plurality of static memory cells;

wherein

a word line driver supply voltage is supplied to the plurality of word line drivers;

each of the plurality of word line drivers includes a level shift element and an inverter circuit, the level shift element (i) shifts the word line driver supply voltage independently, without responding to the signal on the word line, and (ii) supplies to the inverter circuit, and

the inverter circuit outputs an output voltage lower than the word line driver supply voltage,

wherein the output voltage is lower than the memory cell supply voltage, and

wherein the level shift element is formed of a transistor element (i) having threshold voltage characteristics similar to those of the load transistor, and (ii) of a same conductivity type as the load transistor.

2. The semiconductor memory device according to claim 1 , wherein the transistor element comprises a plurality of unit transistors arranged in parallel with each other.

3. The semiconductor memory device according to claim 1 , wherein the memory cell supply voltage is set to the same voltage level as the word line driver supply voltage.

4. A semiconductor memory device, comprising:

a plurality of static memory cells arranged in rows and columns, each of the static memory cells including, in a data storage portion, a load transistor connected to a cell power supply node and a drive transistor connected in series to the load transistor;

a plurality of word lines, arranged corresponding to the respective memory cell rows, each connected to the static memory cells in a corresponding row;

a plurality of word line drivers arranged corresponding to the respective word lines; and

a power supply circuit for supplying a memory cell supply voltage to the plurality of static memory cells;

wherein

a word line driver supply voltage is supplied to the plurality of word line drivers;

each of the word line drivers includes a level shift element and an inverter circuit, the level shift element shifts the word line driver supply voltage and supplies to the invertor circuit, and

the inverter circuit outputs an output voltage lower than the word line driver supply voltage,

wherein the memory cell supply voltage is set to the same voltage level as the word line driver supply voltage,

wherein the output voltage is lower than the memory cell supply voltage, and

wherein the level shift element is formed of a transistor element (i) having threshold voltage characteristics similar to those of the load transistor, and (ii) of a same conductivity type as the load transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2017
From: NII, KOJI; OHBAYASHI, SHIGEKI; TSUKAMOTO, YASUMASA; YABUUCHI, MAKOTO
To: RENESAS ELECTRONICS CORPORATION
Reel/Frame 042242/0855 →
Priority Claims (2)
JP 2005-224258 · Aug 2, 2005 · national
JP 2006-143014 · May 23, 2006 · national
Continuity (6)
Continuation 15052188 · Feb 24, 2016
Continuation 14263307 · Apr 28, 2014
Division 13325945 · Dec 14, 2011
Division 12457936 · Jun 25, 2009
Division 11492031 · Jul 25, 2006
Related Publication 20170236579A1 · Aug 17, 2017
Cited By (1)
US 12,469,549