Abstract:
A display panel including a first substrate and a second substrate disposed is provided. The first substrate includes a first data line, a second data line, and a third data line parallel with one another, and a first scan line and a second scan line parallel with each other. The first scan line, the second scan line, the first data line and the second data line define a first sub-pixel. The first scan line, the second scan line, the second data line and the third data line define a second sub-pixel. The first sub-pixel includes a first pixel electrode. The second sub-pixel includes a second pixel electrode. A first interval between the first pixel electrode and the second data line is larger than a second interval between the second pixel electrode and the second data line.
Abstract:
The present invention relates to a backlight module and a transparent display device comprising the same. The backlight module disclosed by the present invention comprises: a half-wave plate having a disposing surface; a light guide plate having a plurality of light guide units, the light guide units are adjacent to each other and are disposed on the disposing surface; and a light source irradiating a light into the light guide plate in the direction vertical to the normal line of the disposing surface.
Abstract:
An autostereoscopic display apparatus is provided. The autostereoscopic display apparatus includes a liquid-crystal panel and a barrier cell. The barrier cell includes a first substrate, a second substrate, and a liquid-crystal layer. The first substrate includes a first electrode. The second substrate includes a second electrode and a third electrode, wherein the second and third electrodes are separated from each other. The liquid-crystal layer is disposed between the first and second substrates. A black region between the first and third electrodes is formed when a first voltage is applied to the first and second electrodes and a second voltage is applied to the third electrode.
Abstract:
An electronic device includes a substrate including an active area and a peripheral area adjacent to the active area; a plurality of spacers disposed in the active area and including a first spacer and a second spacer; a plurality of signal lines disposed on the substrate and extending along a first direction; a plurality of gate lines disposed on the substrate and extending along a second direction; and a gate driving unit disposed in the active area and including a receiving switch element and a buffer switch element, wherein the receiving switch element is disposed corresponding to the first spacer and receives an input signal through one of the signal lines, and the buffer switch element is disposed corresponding to the second spacer and is electrically connected to the receiving switch element, wherein the buffer switch element outputs a scan signal to one of the gate lines.
Abstract:
A display panel includes a TFT substrate, which includes a substrate, a plurality of scan lines, a plurality of data lines, and a first intermediate layer. The scan lines are disposed on the substrate along a first direction, and the scan lines are intersected with the data lines to define a plurality of sub-pixel units. The sub-pixel units include a first sub-pixel unit and a second sub-pixel unit. The first sub-pixel unit has a first light transmission area and a first component installation area, and the second sub-pixel unit has a second light transmission area and a second component installation area. The first intermediate layer is disposed on the substrate and has an opening. The opening is at least partially overlapped with the first light transmission area, and is at least partially overlapped with the second light transmission area.
Abstract:
An augmented reality electronic device includes a light adjusting component. The light adjusting component includes a panel and a first quarter wave plate. The panel includes a first substrate, a second substrate and a medium layer disposed between the first substrate and the second substrate. The first quarter wave plate is disposed on a first side of the panel.
Abstract:
A display device including a first substrate, a sensing element, a display switch element and a blocking structure is provided. The first substrate has a first top surface perpendicular to a first direction. The sensing element is disposed on the first substrate and includes an active layer having a channel region. A first distance is formed between a channel top surface of the channel region and the first top surface of the first substrate along the first direction. The display switch element is disposed on the first substrate and adjacent to the sensing element. The blocking structure is disposed on the sensing element. The blocking structure has a bottom surface and a first opening, the first opening corresponding to the channel region of the sensing element. A second distance, greater than the first distance, is formed between the bottom surface and the first top surface along the first direction.