IP Library › Granted Patent US 12,100,368
Granted Patent B2
US 12,100,368 · App. 18/370,427 · Granted Sep 24, 2024

Display device and electronic device

Inventors: Atsushi Umezaki (Kanagawa, JP); Hajime Kimura (Kanagawa, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
G09G3/3677G02F1/13306G02F1/136286G09G3/3648G11C19/28G11C19/287H01L27/088H01L27/1225H01L27/124H01L29/42356H01L29/7869G09G2310/0286G09G2310/0289G09G2310/08
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Quick Facts
Patent No.
US 12,100,368
App. No.
18/370,427
Granted
Sep 24, 2024
Kind
B2
Abstract

A transistor whose channel region includes an oxide semiconductor is used as a pull down transistor. The band gap of the oxide semiconductor is 2.0 eV or more, preferably 2.5 eV or more, more preferably 3.0 eV or more. Thus, hot carrier degradation in the transistor can be suppressed. Accordingly, the circuit size of the semiconductor device including the pull down transistor can be made small. Further, a gate of a pull up transistor is made to be in a floating state by switching of on/off of the transistor whose channel region includes an oxide semiconductor. Note that when the oxide semiconductor is highly purified, the off-state current of the transistor can be 1 aA/μm (1×10 −18 A/μm) or less. Therefore, the drive capability of the semiconductor device can be improved.

Claims (108)

1. A semiconductor device comprising:

first to eleventh transistors,

wherein one of a source and a drain of the first transistor is electrically connected to a first output line,

wherein the other of the source and the drain of the first transistor is electrically connected to a first clock signal line,

wherein one of a source and a drain of the second transistor is electrically connected to the first output line,

wherein one of a source and a drain of the third transistor is electrically connected to a second output line,

wherein the other of the source and the drain of the third transistor is electrically connected to the first clock signal line,

wherein a gate of the third transistor is electrically connected to a gate of the first transistor,

wherein one of a source and a drain of the fourth transistor is electrically connected to the second output line,

wherein the other of the source and the drain of the fourth transistor is electrically connected to a power supply line,

wherein a gate of the fourth transistor is electrically connected to a gate of the second transistor,

wherein one of a source and a drain of the fifth transistor is electrically connected to the gate of the first transistor,

wherein the other of the source and the drain of the fifth transistor is electrically connected to the power supply line,

wherein a gate of the fifth transistor is electrically connected to the gate of the second transistor,

wherein one of a source and a drain of the sixth transistor is electrically connected to the gate of the first transistor,

wherein the other of the source and the drain of the sixth transistor is electrically connected to a first signal line,

wherein one of a source and a drain of the seventh transistor is electrically connected to the gate of the first transistor,

wherein the other of the source and the drain of the seventh transistor is electrically connected to the power supply line,

wherein a gate of the seventh transistor is electrically connected to a second signal line,

wherein one of a source and a drain of the eighth transistor is electrically connected to a first line,

wherein the other of the source and the drain of the eighth transistor is electrically connected to the gate of the second transistor,

wherein one of a source and a drain of the ninth transistor is electrically connected to the gate of the second transistor,

wherein the other of the source and the drain of the ninth transistor is electrically connected to the power supply line,

wherein a gate of the ninth transistor is electrically connected to the gate of the first transistor,

wherein one of a source and a drain of the tenth transistor is electrically connected to the first line,

wherein the other of the source and the drain of the tenth transistor is electrically connected to a gate of the eighth transistor,

wherein a gate of the tenth transistor is electrically connected to the first line,

wherein one of a source and a drain of the eleventh transistor is electrically connected to the gate of the eighth transistor,

wherein the other of the source and the drain of the eleventh transistor is electrically connected to the power supply line,

wherein a gate of the eleventh transistor is electrically connected to the gate of the first transistor, and

wherein the sixth transistor is configured to control a timing of when a potential of the first signal line is supplied to the gate of the first transistor, the gate of the third transistor, the gate of the ninth transistor, and the gate of the eleventh transistor through a channel formation region of the sixth transistor.

2. The semiconductor device according to claim 1 ,

wherein a ratio W/L of a channel width W to a channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the second transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the fifth transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the sixth transistor, and

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the seventh transistor.

3. A semiconductor device comprising:

first to eleventh transistors,

wherein one of a source and a drain of the first transistor is directly connected to a first output line,

wherein the other of the source and the drain of the first transistor is directly connected to a first clock signal line,

wherein one of a source and a drain of the second transistor is directly connected to the first output line,

wherein one of a source and a drain of the third transistor is directly connected to a second output line,

wherein the other of the source and the drain of the third transistor is directly connected to the first clock signal line,

wherein a gate of the third transistor is directly connected to a gate of the first transistor,

wherein one of a source and a drain of the fourth transistor is directly connected to the second output line,

wherein the other of the source and the drain of the fourth transistor is directly connected to a power supply line,

wherein a gate of the fourth transistor is directly connected to a gate of the second transistor,

wherein one of a source and a drain of the fifth transistor is directly connected to the gate of the first transistor,

wherein the other of the source and the drain of the fifth transistor is directly connected to the power supply line,

wherein a gate of the fifth transistor is directly connected to the gate of the second transistor,

wherein one of a source and a drain of the sixth transistor is directly connected to the gate of the first transistor,

wherein the other of the source and the drain of the sixth transistor is directly connected to a first signal line,

wherein one of a source and a drain of the seventh transistor is directly connected to the gate of the first transistor,

wherein the other of the source and the drain of the seventh transistor is directly connected to the power supply line,

wherein a gate of the seventh transistor is directly connected to a second signal line,

wherein one of a source and a drain of the eighth transistor is directly connected to a first line,

wherein the other of the source and the drain of the eighth transistor is directly connected to the gate of the second transistor,

wherein one of a source and a drain of the ninth transistor is directly connected to the gate of the second transistor,

wherein the other of the source and the drain of the ninth transistor is directly connected to the power supply line,

wherein a gate of the ninth transistor is directly connected to the gate of the first transistor,

wherein one of a source and a drain of the tenth transistor is directly connected to the first line,

wherein the other of the source and the drain of the tenth transistor is directly connected to a gate of the eighth transistor,

wherein a gate of the tenth transistor is directly connected to the first line,

wherein one of a source and a drain of the eleventh transistor is directly connected to the gate of the eighth transistor,

wherein the other of the source and the drain of the eleventh transistor is directly connected to the power supply line,

wherein a gate of the eleventh transistor is directly connected to the gate of the first transistor, and

wherein the sixth transistor is configured to control a timing of when a potential of the first signal line is supplied to the gate of the first transistor, the gate of the third transistor, the gate of the ninth transistor, and the gate of the eleventh transistor through a channel formation region of the sixth transistor.

4. The semiconductor device according to claim 3 ,

wherein a ratio W/L of a channel width W to a channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the second transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the fifth transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the sixth transistor, and

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the seventh transistor.

5. A semiconductor device comprising:

first to eleventh transistors,

wherein one of a source and a drain of the first transistor constantly has electrical continuity with a first output line,

wherein the other of the source and the drain of the first transistor constantly has electrical continuity with a first clock signal line,

wherein one of a source and a drain of the second transistor constantly has electrical continuity with the first output line,

wherein one of a source and a drain of the third transistor constantly has electrical continuity with a second output line,

wherein the other of the source and the drain of the third transistor constantly has electrical continuity with the first clock signal line,

wherein a gate of the third transistor constantly has electrical continuity with a gate of the first transistor,

wherein one of a source and a drain of the fourth transistor constantly has electrical continuity with the second output line,

wherein the other of the source and the drain of the fourth transistor constantly has electrical continuity with a power supply line,

wherein a gate of the fourth transistor constantly has electrical continuity with a gate of the second transistor,

wherein one of a source and a drain of the fifth transistor constantly has electrical continuity with the gate of the first transistor,

wherein the other of the source and the drain of the fifth transistor constantly has electrical continuity with the power supply line,

wherein a gate of the fifth transistor constantly has electrical continuity with the gate of the second transistor,

wherein one of a source and a drain of the sixth transistor constantly has electrical continuity with the gate of the first transistor,

wherein the other of the source and the drain of the sixth transistor constantly has electrical continuity with a first signal line,

wherein one of a source and a drain of the seventh transistor constantly has electrical continuity with the gate of the first transistor,

wherein the other of the source and the drain of the seventh transistor constantly has electrical continuity with the power supply line,

wherein a gate of the seventh transistor constantly has electrical continuity with a second signal line,

wherein one of a source and a drain of the eighth transistor constantly has electrical continuity with a first line,

wherein the other of the source and the drain of the eighth transistor constantly has electrical continuity with the gate of the second transistor,

wherein one of a source and a drain of the ninth transistor constantly has electrical continuity with the gate of the second transistor,

wherein the other of the source and the drain of the ninth transistor constantly has electrical continuity with the power supply line,

wherein a gate of the ninth transistor constantly has electrical continuity with the gate of the first transistor,

wherein one of a source and a drain of the tenth transistor constantly has electrical continuity with the first line,

wherein the other of the source and the drain of the tenth transistor constantly has electrical continuity with a gate of the eighth transistor,

wherein a gate of the tenth transistor constantly has electrical continuity with the first line,

wherein one of a source and a drain of the eleventh transistor constantly has electrical continuity with the gate of the eighth transistor,

wherein the other of the source and the drain of the eleventh transistor constantly has electrical continuity with the power supply line,

wherein a gate of the eleventh transistor constantly has electrical continuity with the gate of the first transistor, and

wherein the sixth transistor is configured to control a timing of when a potential of the first signal line is supplied to the gate of the first transistor, the gate of the third transistor, the gate of the ninth transistor, and the gate of the eleventh transistor through a channel formation region of the sixth transistor.

6. The semiconductor device according to claim 5 ,

wherein a ratio W/L of a channel width W to a channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the second transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the fifth transistor,

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the sixth transistor, and

wherein the ratio W/L of the channel width W to the channel length L of the first transistor is larger than a ratio W/L of a channel width W to a channel length L of the seventh transistor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2023
From: UMEZAKI, ATSUSHI; KIMURA, HAJIME
To: SEMICONDUCTOR ENERGY LABORATORY CO., LTD.
Reel/Frame 064963/0226 →
Priority Claims (1)
JP 2010-033669 · Feb 18, 2010 · national
Continuity (8)
Continuation 17943284 · Sep 13, 2022
Continuation 17460497 · Aug 30, 2021
Continuation 16785710 · Feb 10, 2020
Continuation 16199336 · Nov 26, 2018
Continuation 15147086 · May 5, 2016
Continuation 14070700 · Nov 4, 2013
Continuation 13026863 · Feb 14, 2011
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