Abstract:
A manufacturing method of an electronic device includes the following steps. First, a curved substrate is formed. Next, a first conductive layer is formed on a first insulating layer. Then, a second conductive layer is formed on a second insulating layer. Thereafter, the first insulating layer and the second insulating layer are bonded to the curved substrate. The manufacturing method of the electronic device may reduce problems such as peeling and/or offset of the manufactured electronic device.
Abstract:
A display device includes: a substrate; a scan line disposed on the substrate; a common electrode disposed on the substrate and including a through hole having a curved edge, wherein the through hole and at least a portion of the scan line are overlapped; a pixel electrode disposed on the substrate and including a slit; and an active layer disposed on the substrate, wherein the active layer and at least a portion of the slit are overlapped.
Abstract:
A liquid crystal display device comprises a first substrate, a second substrate, a liquid crystal layer, a first polarizer, a second polarizer and a first electrode layer. The liquid crystal layer is disposed between the first and the second substrates, and comprises a liquid crystal mixture comprising a chiral dopant. The first and the second polarizers are disposed on the first and the second substrates, respectively. The first polarizer has a first absorption axis. The first electrode layer is disposed on one of the first and second substrates, and has a first trunk, a second trunk and a plurality of branches. The first and the second trunks intersect to form at least a first area. A first angle θj is formed between the branches and the first trunk, and a second angle θp is formed between the first absorption axis and the first trunk.
Abstract:
The disclosure provides an electronic device. The electronic device includes a plurality of units. Each of the units includes an integrated substrate. The integrated substrate includes a first dielectric layer, a first conductive layer, a second dielectric layer, and a second conductive layer. The first dielectric layer has a first side and a second side opposite to the first side. The first conductive layer is disposed on the first side. The second dielectric layer has a third side facing the second side and a fourth side opposite to the third side. The second conductive layer is disposed on the fourth side. A loss tangent of at least one of the first dielectric layer and the second dielectric layer is less than or equal to 0.1 and greater than 0. The electronic device of an embodiment of the disclosure may improve product yield.
Abstract:
A display device is provided, which includes a first substrate, a second, a backlight module, a liquid-crystal layer and a patterned electrode. The liquid-crystal layer is doped with a left-handed chiral dopant. The patterned electrode includes a main portion with a cross shape. The patterned electrode is divided by a first center line of the main portion into a first sub-portion and a second sub-portion. The first sub-portion and the second sub-portion are adjacent and are connected to the main portion. Each of the first sub-portion and the second sub-portion includes a plurality of branch portions. A first included angle is between one of the branch portions of the second sub-portion and the first center line. A second included angle is between one of the branch portions of the first sub-portion and the first center line. The first included angle and the second included angle are not equal.
Abstract:
Provided is an electronic device including a first liquid crystal layer having a first side and a second side opposite thereto; a second liquid crystal layer disposed on the first liquid crystal layer and having a third side and a fourth side opposite thereto; a first alignment layer disposed on the first side and having a first alignment direction; a second alignment layer disposed on the second side and having a second alignment direction opposite to the first alignment direction; a third alignment layer disposed on the third side and having a third alignment direction; and a fourth alignment layer disposed on the fourth side and having a fourth alignment direction opposite to the third alignment direction. The second alignment layer is between the first liquid crystal layer and the third alignment layer. The third alignment layer is between the second liquid crystal layer and the second alignment layer.
Abstract:
The disclosure provides an electronic device. The electronic device includes a plurality of units. Each of the units includes an integrated substrate. The integrated substrate includes a first dielectric layer, a first conductive layer, a second dielectric layer, and a second conductive layer. The first dielectric layer has a first side and a second side opposite to the first side. The first conductive layer is disposed on the first side. The second dielectric layer has a third side facing the second side and a fourth side opposite to the third side. The second conductive layer is disposed on the fourth side. A loss tangent of at least one of the first dielectric layer and the second dielectric layer is less than or equal to 0.1 and greater than 0. The electronic device of an embodiment of the disclosure may improve product yield.
Abstract:
The disclosure provides a display device. The pixel electrode of the display device includes a first pixel electrode and a second pixel electrode having the same electric potential. The first interlayer is formed between the first substrate and the first pixel electrode. Adjacent two of the first strip-shaped branches of the first interlayer form a first gap to expose part of the first substrate. The common electrode layer is disposed over the second substrate. The pixel electrode is positioned between the first substrate and the display medium layer. The first pixel electrode extends to cover the first gap. A difference between a maximum distance between the first pixel electrode and the common electrode layer and a maximum distance between the second pixel electrode and the common electrode layer is 0.1 μm to 0.4 μm.
Abstract:
A display device includes a first scan line, a second scan line, a third scan line, a data line, a pixel, a low color-shifting circuit, and a black zone generation circuit. In the low color-shifting circuit, a low color-shifting switch receives a third scan signal from the third scan line to selectively couple a compensating capacitor to the second sub-pixel electrode. The black zone generation circuit receives a black zone generation signal to selectively couple either the first sub-pixel electrode or the second sub-pixel electrode to a common node such that either the first sub-pixel or the second sub-pixel becomes a black zone.
Abstract:
An electronic device includes a board, a chip, a first conductive element and a second conductive element. The board has a first surface and a second surface opposite to the first surface. The board has a first through hole penetrating from the first surface to the second surface. The first conductive element is disposed between the board and the chip. The second conductive element has a first portion and a second portion connected to the first portion. The first conductive element is disposed between the first portion of the second conductive element and the board and overlaps with the first portion of the second conductive element. In a cross-sectional view of the electronic device, the second portion of the second conductive element directly contacts a side surface of the first conductive element and extends into the first through of the board.