Abstract:
A display apparatus including a first substrate, a second substrate and a display medium is provided. The display medium is disposed between the first substrate and the second substrate. The first substrate includes a first data line, a second data line and a pixel. The first data line and the second data line respectively disposed over a first base plate. The pixel includes a pixel electrode layer and a common electrode layer. The pixel electrode layer is electrically connected to one of the first data line and the second data line. The common electrode layer is formed over the pixel electrode layer and includes a first slit nearest to the first data line. The first slit has a first end and a second end. The first slit is bent at the first end of the first slit but is not bent at the second end of the first slit.
Abstract:
A display device that includes a substrate having a display region and an adjacent peripheral region is provided, including; a plurality of sub-pixels provided within the display region; a plurality of data lines electrically connected to the sub-pixels; and a first electronic circuit group and a second electronic circuit group provided in the peripheral region, connected to the corresponding data lines. The first electronic circuit group includes a plurality of first electronic circuits, and the second electronic circuit group includes a plurality of second electronic circuits. Two adjacent first electronic circuits are arranged with a first interval therebetween, and the first interval has a first width. Two adjacent second electronic circuits are arranged with a second interval therebetween, and the second interval has a second width. The first width and the second width are different.
Abstract:
A display panel comprises a first substrate, a second substrate opposite to the first substrate, and a display medium layer disposed between the first and second substrates. The first substrate comprises a conductive layer formed on the first base plate and extending along a first direction. Along the first direction, the conductive layer comprises a first plane correspondingly at a first height, a tilted plane, and a second plane correspondingly at a second height in sequential order. The first height is greater than the second height. A position of the first plane adjacent to the tilted plane of the conductive layer has a first line width along the second direction. A position of the tilted plane adjacent to the second plane of the conductive layer has a second line width along the second direction. The first line width is shorter than the second line width.
Abstract:
A display device includes: a gate line having an extension direction; a switch unit electrically connecting to the gate line; a pixel electrode electrically connecting to the switch unit; and a slit in the pixel electrode, wherein a virtual line parallel to the extension direction passes through an end point of the slit which is closest to the gate line, the pixel electrode is divided into a first portion and a second portion by the virtual line, and the first portion is closer to the gate line than the second portion, and wherein -the slit has a first width in the extension direction and a second width in the extension direction, the second width is closer to the first portion than the first width, and the first width is less than the second width.
Abstract:
A color filter substrate which includes: a substrate having a surface; a light-shielding layer disposed on the surface; a first color filter layer; and a second color filter layer disposed over the substrate, the second color filter layer covers the light-shielding layer and the first color filter layer and has a second main body on the surface, the light-shielding layer is located between the first color filter layer and the second color filter layer, at least a part of the first main body has a first thickness and at least a part of the second main body has a second thickness, and the first thickness is less than the second thickness.
Abstract:
A display device is provided, including a display panel, a back frame, a circuit board and a cover film. The display panel includes a first substrate and a second substrate, wherein the first substrate includes an upper surface. The back frame supports the display panel and includes an outer surface. The cover film includes a film base, a first adhesive and a second adhesive. The film base includes a first portion, a second portion and an intermediate portion located therebetween, wherein the film base covers an edge of the upper surface and a portion of the outer surface. The first adhesive is disposed on the first portion and is attached to the edge of the upper surface. The second adhesive is disposed on the second portion and is attached to the outer surface, wherein the intermediate portion and the outer surface define a receiving space receiving the circuit board.
Abstract:
A display device is disclosed, which includes: a first substrate including; a switch unit; and a pixel electrode electrically connecting to the switch unit and comprising: a first finger portion with a first inner edge; a second finger portion with a second inner edge and a first outer edge; a contacting portion electrically connecting to the switch unit; a first bending portion connecting the first finger portion and the contacting portion and having a third inner edge; and a second bending portion connecting the second finger portion and the contacting portion and having a fourth inner edge and a second outer edge. The first finger portion has a first width along a first direction, the first bending portion has a second width along the first direction, the first direction is substantially parallel to a gate-line-extending direction, and the first width is greater than the second width.
Abstract:
A display device is provided. The display device includes an array substrate including a substrate and a first electrode having an opening, wherein the opening has an edge. The array substrate further includes a second electrode disposed over the first electrode and including a first finger portion having a first side and a second side opposite to the first side. The second electrode further includes a connection portion connecting the first finger portion at the edge, wherein the connection portion has a first concavity at the first side and a second concavity at the second side, and a length of the first concavity is greater than a length of the second concavity. The display device further includes an opposite substrate and a display medium.
Abstract:
An array substrate of display panel comprises a substrate, a first and second transistors disposed on the substrate. The first and second transistors are electrically connected and share a semiconducting layer which comprises a first lateral portion, a turning portion and a bottom portion. The turning portion connects to the first lateral portion. The bottom portion connects to the turning portion. In one embodiment, a first outer edge extending line of the first lateral portion, a second outer edge extending line of the bottom portion and a third outer edge of the turning portion defines a first region. A first inner edge extending line of the first lateral portion, a second inner edge extending line of the bottom portion and a third inner edge of the turning portion defines a second region. The area of the first region is smaller than that of the second region.
Abstract:
A display panel includes a thin film transistor substrate, an opposite substrate and a liquid crystal layer. A thin film transistor is disposed on a substrate and has a drain. A first insulating layer is disposed on the drain and has a first via above the drain. A planarization layer is disposed on the first insulating layer and has a second via above the drain. The first via and the second via are partially overlapped to form an overlap portion. A second insulating layer is disposed on the planarization layer. A pixel electrode layer is disposed on the second insulating layer and in the overlap portion to connect to the drain. The opposite substrate is disposed opposite to the thin film transistor substrate. The liquid crystal layer is disposed between the thin film transistor substrate and the opposite substrate.