Abstract:
Disclosed is a liquid crystal display device (20), wherein a liquid crystal panel (14) is divided into a first display area (15a) containing a plurality of first pixels (10a), and a second display area (15b) containing a plurality of second pixels (10b), and is provided with a memory circuit (1) which is capable of storing data signals supplied from a signal wire (3) in accordance with each of the pixels (10a) contained in the first display area (15a). Therefore, by writing the data signals stored in the memory circuit (1) to a pixel electrode (2), it is possible to display an image corresponding to said data signals. That is to say, in the first display area (15a), it is possible to display an image via a scanning line (4) and signal line (3), without supplying image data from an external source. As a result, it is possible to minimize power consumption.
Abstract:
The active-matrix substrate (100) of the present invention satisfies d2>d1 and d2+A1/2>d3+L1/2, where d1 is the length of the shortest line segment that connects together a channel region (134) and a gettering region (112) as measured by projecting the line segment onto a line that connects together the channel region (134) of a TFT (130) and a source contact portion, d2 is the distance from the channel region (134) to the source contact portion (132c), d3 is the distance from the channel region (134) to a first end portion (110a), L1 is the length of the first end portion (110a), and A1 is the length of the source contact portion (132c).
Abstract:
AbstractIn a liquid crystal display device (20), a liquid crystal panel (14) is divided into a display region (15a) including a plurality of pixels (10a) and a display region (15b)including a plurality of pixels (10b). A memory circuit (1) is provided to each pixel (10a) included in the display region (15a). The memory circuit (1) is capable of storing a data signal supplied from a signal line (3). As such, writing the data signal, which has been stored in the memory circuit(1), into a pixel electrode (2) allows an image to be displayed in accordance with the data signal. That is, in the display region (15a), it is possible to display an image without supplying image data from the outside via a scanning line (4) and the signal line (3) This allows areduction in electric power consumption.