Display device and electronic appliance
View Patent ↗A display device with low manufacturing cost, with low power consumption, capable of being formed over a large substrate, with a high aperture ratio of a pixel, and with high reliability is provided. The display device includes a transistor electrically connected to a light-transmitting pixel electrode and a capacitor. The transistor includes a gate electrode, a gate insulating film over the gate electrode, and a first multilayer film including an oxide semiconductor over the gate insulating film. The capacitor includes the pixel electrode and a conductive electrode formed of a second multilayer film which overlaps with the pixel electrode with a predetermined distance therebetween, and has the same layer structure as the first multilayer film. A channel formation region of the transistor is at least one layer, which is not in contact with the gate insulating film, of the first multilayer film.
1. A display device comprising:
a transistor comprising:
a gate electrode;
a first insulating film over the gate electrode; and
a first multilayer film including an oxide semiconductor over the first insulating film,
a light-transmitting pixel electrode electrically connected to the transistor; and
a capacitor comprising:
a second multilayer film as a capacitor electrode over the first insulating film; and
part of the light-transmitting pixel electrode overlapping with the second multilayer film,
wherein a channel formation region in the first multilayer film is not in contact with the first insulating film, and
wherein carrier density of the second multilayer film is higher than carrier density of the first multilayer film.
2. The display device according to claim 1 , wherein the second multilayer film contains an impurity imparting n-type conductivity at a concentration higher than that in the first multilayer film.
3. The display device according to claim 1 ,
wherein the first multilayer film comprises a first oxide layer over and in contact with the first insulating film and a second oxide layer over and in contact with the first oxide layer, and
wherein the second oxide layer includes the channel formation region.
4. The display device according to claim 3 , wherein concentration of aluminum, silicon, titanium, gallium, germanium, yttrium, zirconium, tin, lanthanum, cerium, or hafnium in the first oxide layer is 1.5 times or more as high as concentration in the second oxide layer.
5. The display device according to claim 1 , further comprising a second insulating film between the part of the light-transmitting pixel electrode and the second multilayer film.
6. An electronic appliance comprising the display device according to claim 1 .
7. A display device comprising:
a transistor comprising:
a gate electrode;
a first insulating film over the gate electrode; and
a first multilayer film comprising a first oxide layer over and in contact with the first insulating film and a second oxide layer over and in contact with the first oxide layer,
a light-transmitting pixel electrode electrically connected to the transistor; and
a capacitor comprising:
a second multilayer film as a capacitor electrode over the first insulating film; and
part of the light-transmitting pixel electrode overlapping with the second multilayer film,
wherein the second oxide layer includes a channel formation region, and
wherein carrier density of the second multilayer film is higher than carrier density of the first multilayer film.
8. The display device according to claim 7 , wherein the second multilayer film contains an impurity imparting n-type conductivity at a concentration higher than that in the first multilayer film.
9. The display device according to claim 7 , wherein the second multilayer film comprises the first oxide layer and the second oxide layer.
10. The display device according to claim 7 , wherein concentration of aluminum, silicon, titanium, gallium, germanium, yttrium, zirconium, tin, lanthanum, cerium, or hafnium in the first oxide layer is 1.5 times or more as high as concentration in the second oxide layer.
11. The display device according to claim 7 , further comprising a second insulating film between the part of the light-transmitting pixel electrode and the second multilayer film.
12. An electronic appliance comprising the display device according to claim 7 .
13. A display device comprising:
a transistor comprising:
a gate electrode;
a first insulating film over the gate electrode; and
a first multilayer film comprising a first oxide layer over and in contact with the first insulating film, a second oxide layer over and in contact with the first oxide layer, and a third oxide layer over and in contact with the second oxide layer,
a light-transmitting pixel electrode electrically connected to the transistor; and
a capacitor comprising:
a second multilayer film as a capacitor electrode over the first insulating film; and
part of the light-transmitting pixel electrode overlapping with the second multilayer film,
wherein the second oxide layer includes a channel formation region, and
wherein carrier density of the second multilayer film is higher than carrier density of the first multilayer film.
14. The display device according to claim 13 , wherein the second multilayer film contains an impurity imparting n-type conductivity at a concentration higher than that in the first multilayer film.
15. The display device according to claim 13 , wherein the second multilayer film comprises the first oxide layer, the second oxide layer and the third oxide layer.
16. The display device according to claim 13 , wherein concentration of aluminum, silicon, titanium, gallium, germanium, yttrium, zirconium, tin, lanthanum, cerium, or hafnium in each of the first oxide layer and the third oxide layer is 1.5 times or more as high as concentration in the second oxide layer.
17. The display device according to claim 13 , further comprising a second insulating film between the part of the light-transmitting pixel electrode and the second multilayer film.
18. An electronic appliance comprising the display device according to claim 13 .