Abstract:
A blue phase liquid crystal (BPLC) display panel includes a first substrate, a second substrate, a protrusion, a BPLC, and a driving electrode. The protrusion is disposed on the first substrate. The BPLC is disposed between the first and second substrates. The driving electrode covers the protrusion. A vertical distance from the protrusion's bottom to one end portion of the driving electrode is larger than zero and less than or equal to four fifths of a height of the protrusion. Thereby, the production yield of the BPLC display panel can be increased.
Abstract:
A display device includes a first, second and third sub-pixel areas allowing light of a first, second and third main wavelengths transmitting therethrough, respectively. The first, second and third sub-pixel areas have first, second and third ratios of first, second and third electrode widths to first, second and third electrode slits of first, second and third interdigitated electrodes, respectively. When the first main wavelength is larger than the second main wavelength and the second main wavelength is larger than the third main wavelength, a difference between any two of the first, second and third ratios is less than 0.2. A first electrode slit of the first interdigitated electrode is smaller than the second electrode slit of the second interdigitated electrode, and the second electrode slit of the second interdigitated electrode is smaller than the third electrode slit of the third interdigitated electrode.
Abstract:
The invention provides an electrode pattern formed on at least one of a first substrate and a second substrate in a liquid crystal display, including: a plurality of main slits including a first main slit and a second main slit crossing the first main slit; and a plurality of sub slits, wherein each sub slit is connected to one of the first main slit and the second main slit at an end. The width of the first main slit and the second main slit increases in size toward the intersection of the first main slit and the second main slit.
Abstract:
A display device is provided. The display device includes a first substrate, a second substrate, a liquid-crystal layer, a first electrode, and an opposite electrode. The liquid-crystal layer is disposed between the first substrate and the second substrate. The first electrode is disposed on the first substrate. The opposite electrode is disposed on the side of the second substrate that faces the first substrate. The first electrode includes a first main portion and a plurality of first extending portions. The first extending portions are connected to the first main portion, at least one of the first extending portions includes a first side, a second side, and a curved structure. The curved structure connects the first side to the second side, and the curved structure has a first curvature radius greater than zero.
Abstract:
An active-matrix substrate of display panel includes a transparent substrate and capacitor structures including first and second metal layers, first and second and third insulating layers, a conductive layer, a transparent conductive layer disposed above the transparent substrate. The second metal layer disposed on the first insulating layer partially overlaps with the first metal layer to forms a first capacitor. The conductive layer disposed on the second insulating layer partially overlaps with the second metal layer to form a third capacitor. The transparent conductive layer is insulated from the conductive layer, and is electrically connected with the second metal layer. The transparent conductive layer partially overlaps with the conductive layer to form a second capacitor. Part of the first capacitor, part of the second capacitor, and part of the third capacitor are overlap in a normal direction of the transparent substrate.
Abstract:
A display device is disclosed, which includes: a first substrate; a common electrode disposed on the first substrate; a metal line electrically connecting to the common electrode and extending along a first direction, wherein the metal line comprises a first region, and the first region at least partially overlaps the common electrode; and a light shielding region, wherein a part of the light shielding region extends along the first direction and at least covers the metal line, wherein the first region has a first maximum width along a second direction vertical to the first direction, the metal line has a metal edge closest to a shielding edge of the light shielding region, the shielding edge extends along the first direction, and along the second direction, a minimum distance between the shielding edge and the metal edge is between 0 μm and the first maximum width.
Abstract:
A display device is disclosed, which includes: a first substrate; a plurality of scan lines and a plurality of data lines, wherein the scan lines intersects with the data lines, the scan and the data lines are disposed above the first substrate, and the scan lines extend along a first direction; a common electrode disposed above the first substrate; a second substrate; a display medium layer disposed between the first substrate and the second substrate, wherein the common electrode has a first part extending along the first direction, a second part corresponding to the data lines, and an end part, wherein the first part connects to the second part, the end part connects to the second part, a first angle included between the end part and the second part greater than 0 degree and less than 180 degrees. The end part overlaps partially with the data line adjacent thereto.
Abstract:
A display device is provided. The display device includes a first substrate, a second substrate, a liquid-crystal layer, a first electrode, and an opposite electrode. The liquid-crystal layer is disposed between the first substrate and the second substrate. The first electrode is disposed on the first substrate. The opposite electrode is disposed on the side of the second substrate that faces the first substrate. The first electrode includes a first main portion and a plurality of first extending portions. The first extending portions are connected to the first main portion, at least one of the first extending portions includes a first side, a second side, and a curved structure. The curved structure connects the first side to the second side, and the curved structure has a first curvature radius greater than zero.
Abstract:
A display panel is disclosed, which comprises: a first substrate with plural pixel units formed thereon, wherein the pixel units at least comprise a first subpixel unit being a blue pixel unit and a second subpixel unit being a green pixel unit, wherein the first subpixel unit comprises a first subpixel electrode comprising a first trunk electrode, and the second subpixel unit comprises a second subpixel electrode comprising a second trunk electrode; and a second substrate opposite to the first substrate. When light passes through the display panel, a width of a first dark line corresponding to the first trunk electrode is larger than that of a second dark line corresponding to the second trunk electrode.
Abstract:
A pixel structure including a substrate, a first dielectric layer and a second dielectric layer is provided. A signal line and a pixel electrode are disposed on the substrate. The first dielectric layer covers the signal line and has a first capacitance. The second dielectric layer is disposed on the substrate, and covers the pixel electrode. The second dielectric layer has a second capacitance larger than the first capacitance.