IP Library › Granted Patent US 10,983,407
Granted Patent B2
US 10,983,407 · App. 16/681,168 · Granted Apr 20, 2021

Display device having an oxide semiconductor transistor

Inventors: Toshikazu Kondo (Atsugi, JP); Jun Koyama (Sagamihara, JP); Shunpei Yamazaki (Setagaya, JP)
Assignee: Semiconductor Energy Laboratory Co., Ltd.
G02F1/1368G02F1/133345G02F1/136227G02F1/136286G09G3/3622H01L27/1225H01L27/1244H01L29/45H01L29/7869G02F1/13606G02F1/13624G02F1/136295G02F2202/10G09G2300/0426
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Quick Facts
Patent No.
US 10,983,407
App. No.
16/681,168
Granted
Apr 20, 2021
Kind
B2
Abstract

An object is to reduce parasitic capacitance of a signal line included in a liquid crystal display device. A transistor including an oxide semiconductor layer is used as a transistor provided in each pixel. Note that the oxide semiconductor layer is an oxide semiconductor layer which is highly purified by thoroughly removing impurities (hydrogen, water, or the like) which become electron suppliers (donors). Thus, the amount of leakage current (off-state current) can be reduced when the transistor is off. Therefore, a voltage applied to a liquid crystal element can be held without providing a capacitor in each pixel. In addition, a capacitor wiring extending to a pixel portion of the liquid crystal display device can be eliminated. Therefore, parasitic capacitance in a region where the signal line and the capacitor wiring intersect with each other can be eliminated.

Claims (34)

1. A display device comprising:

a first pixel electrically connected to a signal line and a first scan line, wherein the first pixel comprises a first transistor and a pixel electrode over and electrically connected to the first transistor through a contact hole of a first insulating layer; and

a second pixel adjacent to the first pixel, the second pixel electrically connected to a second scan line,

wherein no conductive layer is provided under the signal line in a region between the first scan line and the second scan line,

wherein the first transistor comprises:

a gate layer comprising copper;

a second insulating layer over the gate layer, the second insulating layer comprising a first layer and a second layer over the first layer, wherein the first layer comprises silicon and nitrogen and the second layer comprises silicon and oxygen; and

an oxide semiconductor layer over and in contact with a top surface of the second layer, the oxide semiconductor layer comprising a channel formation region,

wherein the oxide semiconductor layer comprises indium, gallium, and zinc,

wherein the signal line comprises:

a first metal layer comprising any one of titanium, molybdenum, and tungsten; and

a second metal layer over the first metal layer, the second metal layer comprising copper,

wherein the signal line comprises a first convex at a first intersection where the signal line and the first scan line intersect and a second convex at a second intersection where the signal line and the second scan line intersect, and

wherein the signal line is substantially entirely flat in a region between the first convex and the second convex.

2. The display device according to claim 1 ,

wherein the channel formation region comprises indium, gallium, and zinc, and

wherein off-state current of the first transistor is smaller than or equal to 1×10 −12 A in the case where voltage between a source and a drain of the first transistor is +1 V and gate voltage of the first transistor is within a range of −5 V to −20 V.

3. A display device comprising:

a first pixel electrically connected to a signal line and a first scan line, wherein the first pixel comprises a first transistor and a pixel electrode over and electrically connected to the first transistor through a contact hole of a first insulating layer; and

a second pixel adjacent to the first pixel, the second pixel electrically connected to the signal line and a second scan line,

wherein no conductive layer is provided under the signal line in a region between the first scan line and the second scan line,

wherein the first transistor comprises:

a gate layer comprising aluminum;

a second insulating layer over the gate layer, the second insulating layer comprising a first layer and a second layer over the first layer, wherein the first layer comprises silicon and nitrogen and the second layer comprises silicon and oxygen; and

an oxide semiconductor layer over and in contact with a top surface of the second layer, the oxide semiconductor layer comprising a channel formation region,

wherein the oxide semiconductor layer comprises indium, gallium, and zinc,

wherein the signal line comprises:

a first metal layer comprising any one of titanium, molybdenum, and tungsten; and

a second metal layer over the first metal layer, the second metal layer comprising aluminum,

wherein the signal line comprises a first convex at a first intersection where the signal line and the first scan line intersect and a second convex at a second intersection where the signal line and the second scan line intersect, and

wherein the signal line is substantially entirely flat in a region between the first convex and the second convex.

4. The display device according to claim 3 ,

wherein the channel formation region comprises indium, gallium, and zinc, and

wherein off-state current of the first transistor is smaller than or equal to 1×10 −12 A in the case where voltage between a source and a drain of the first transistor is +1 V and gate voltage of the first transistor is within a range of −5 V to −20 V.

Priority Claims (1)
JP JP2010-042584 · Feb 26, 2010 · national
Continuity (5)
Continuation 15464572 · Mar 21, 2017
Continuation 14703379 · May 4, 2015
Continuation 13944996 · Jul 18, 2013
Continuation 13029151 · Feb 17, 2011
Related Publication 20200081283A1 · Mar 12, 2020