Abstract:
The present disclosure provides a display panel separation pillar and a method for manufacturing the same, a display panel and a display device. The display panel separation pillar includes a first material pattern and a second material pattern on the first material pattern. The first material pattern includes an upper surface and a lower surface opposite to each other, and a first separation lateral side and a second separation lateral side which are opposite to each other and between the upper surface and the lower surface. The second material pattern includes an upper surface and a lower surface opposite to each other. The upper surface of the first material pattern directly contacts with the lower surface of the second material pattern. Projections of the first separation lateral side and the second separation lateral side of the first material pattern onto a plane of the lower surface of the second material pattern are between edges of the lower surface of the second material pattern.
Abstract:
The present invention provides a liquid crystal panel, its manufacturing method, and a liquid crystal display device. The liquid crystal panel comprises: a first substrate and a second substrate arranged opposite to each other; a scattering type liquid crystal layer arranged between the first substrate and the second substrate and capable of being switched between a dark state and a bright state; and a color filter layer arranged between the first substrate and the second substrate. According to the present invention, a transparent/translucent liquid crystal panel capable of realizing color display is obtained.
Abstract:
Disclosed is a transparent display device, comprising a transparent display panel comprising a plurality of display regions configured to display information and a plurality of light transmitting regions configured to achieve transparent display; and a unidirectional viewing glass located at a light incident side of the transparent display panel and disposed to be opposite to the transparent display panel. The unidirectional viewing glass comprises a glass plate and a coating film formed on a surface of the glass plate at a side thereof. The above transparent display device provides different display modes.
Abstract:
The present invention discloses a transflective liquid crystal display panel and a liquid crystal display device comprising the same. Each pixel unit of the transflective liquid crystal display panel comprises a transmission region and a reflection region. The transflective liquid crystal display panel further comprises a conductive polarizing film layer having a first polarizing direction in the reflection region and a second polarizing direction in the transmission region.
Abstract:
The present disclosure relates to device, and operation method and manufacturing method thereof, wherein the device comprises a dichroic dye composite layer, a first liquid crystal display (LCD) composite layer, a wide waveband reflective composite layer and an organic light emitting diode (OLED) composite layer stacked in this order, wherein the dichroic dye composite layer is switchable between a black state and a transparent state, the liquid crystal display (LCD) composite layer is switchable between a display state, a transparent state and a dark state, the wide waveband reflective composite layer is switchable between a transparent state and a mirror state, and the organic light emitting diode (OLED) composite layer is switchable between a light-emitting state and a transparent state.
Abstract:
A polymer dispersed liquid crystal film comprises: a first substrate (1) and a second substrate (2) arranged opposing to each other; a first transparent conductive film (3) and a second transparent conductive film (4) arranged on opposing surfaces of the first substrate (1) and the second substrate (2), respectively; and a polymer dispersed liquid crystal layer (5) located between the first transparent conductive film (3) and the second transparent conductive film (4), wherein the polymer dispersed liquid crystal layer (5) comprises homogeneously dispersed bi-axis liquid crystal (51) and polymer (52). When no voltage is applied between the first transparent conductive film (3) and the second transparent conductive film (4), the bi-axis liquid crystal (51) exhibits a random arrangement, and the bi-axis liquid crystal (51) has perpendicular refractive index (n1) and the parallel refractive index (n2), wherein the perpendicular refractive index (n1) and the parallel refractive index (n2) are not equal to each other, and neither of them matches the refractive index of the polymer (np). A method of preparing a polymer dispersed liquid crystal film and a display apparatus comprising a polymer dispersed liquid crystal film are also disclosed.
Abstract:
The present invention provides a transparent display which comprises a light source; a first liquid crystal layer, for transmitting a first part of the light emitted from the light source and reflecting a second part of the light emitted from the light source; a light-transmittable image display device including a second liquid crystal layer, wherein the first part of the light is emitted to the second liquid crystal layer, when the image display device is in a first state, the first part of the light is transmitted through the second liquid crystal layer, and the image display device displays an image; when the image display device is in a second state, the first part of the light is reflected by the second liquid crystal layer, and the image display device becomes transparent. The transparent display according to the present invention can realize the function of a transparent display without use of a sheet polarizer or a light guide plate. Therefore, in comparison with the transparent display of the prior art, the transparent display according to the present invention has greatly-improved light transmittance.
Abstract:
A liquid crystal panel and a display device are disclosed. In the liquid crystal panel, the first anisotropic optical layer comprises a first phase difference film and a second phase difference film, the second anisotropic optical layer comprises a liquid crystal film and a third phase difference film, wherein an orientation of liquid crystals in the liquid crystal film and an orientation of the liquid crystal layer are parallel to each other, a slow axis directin of the second phase difference film is vertical to the orientation of liquid crystals in the liquid crystal film.