Abstract:
Provided is an electronic device including: a sensing component; a polarization film disposed on the sensing component; and a quarter-wave plate disposed between the sensing component and the polarization film.
Abstract:
A touch light emitting diode display device includes: a first substrate having a first surface; a touch signal line projected on the first surface as a touch region; and a first color unit and a second color unit. The first color unit and the second color unit are projected on the first surface as a first region and a second region respectively, wherein the first color unit and the second color unit are of different colors, and a portion of the touch region locates between the first region and the second region.
Abstract:
A liquid-crystal display (LCD) includes a backlight unit, a display module and a barrier. The display module is disposed above the backlight unit and has plural pixels. Each of the pixels includes at least three differently-colored sub-pixels, and the differently-colored sub-pixels at adjacent columns are in a shifting arrangement. The barrier is disposed correspondingly to the display module, and has several slanted transparent slits. The transparent slits substantially expose at least parts of regions of the sub-pixels corresponding to the same viewing position. The sub-pixels are rectangular, rhombus or hexagonal in shape.
Abstract:
A display apparatus includes a pixel array, an optical modulator, a controller, and at least one memory device storing a frame memory. The optical modulator modulates the light emitted from the pixel array to corresponding angles. The controller generates images of a scene with different lighting profiles corresponding to different viewing angles according to information stored in the frame memory. The frame memory stores color information and material information of objects in the scene. The display apparatus displays the images through the first pixel array at the same time.
Abstract:
A display apparatus includes a pixel array, an optical modulator, a controller, and at least one memory device storing a frame memory. The optical modulator modulates the light emitted from the pixel array to corresponding angles. The controller generates images of a scene with different lighting profiles corresponding to different viewing angles according to information stored in the frame memory. The frame memory stores color information and material information of objects in the scene. The display apparatus displays the images through the first pixel array at the same time.
Abstract:
A touch display panel includes a display structure and a touch structure. The display structure includes pixels having a first pitch P1. The touch structure includes a touch layer having slits and dummy clefts. The slits and the dummy clefts have a second pitch P2 and a third pitch P3, respectively. Two adjacent vertices of each slit define a line segment having a length Ly.A first moire ratio (MR1) defined as P 2 P 1 satisfies: 20.7%×A1+8.5%×B1−3%≤MR1≤12.7%×A1+16.5%×B1+3%, wherein A1 is an integer from 0 to 3, B1 is an integer from 1 to 3, and 0≤B1−A1≤1. A second moire ratio (MR2) defined as P 3 P 1 satisfies: 20.7%×A2+8.5%×B2−3%≤MR2≤12.7%×A2+16.5%×B2+3%, wherein A2 is an integer from 0 to 3, B2 is an integer from 1 to 3, and 0≤B2−A2≤1. An arrangement ratio (LR) defined as Ly P 1 satisfies: (2C+1)×25%−20%≤LR≤(2C+1)×25%+20%, wherein C is an integer from 0 to 11.
Abstract:
A touch display panel includes a display structure and a touch structure. The display structure includes pixels having a first pitch P1. The touch structure includes a touch layer having slits and dummy clefts. The slits and the dummy clefts have a second pitch P2 and a third pitch P3, respectively. Two adjacent vertices of each slit define a line segment having a length Ly.A first moire ratio (MR1) defined as P 2 P 1 satisfies: 20.7%×A1+8.5%×B1−3%≦MR1≦12.7%×A1+16.5%×B1+3%, wherein A1 is an integer from 0 to 3, B1 is an integer from 1 to 3, and 0≦B1−A1≦1.A second moire ratio (MR2) defined as P 3 P 1 satisfies: 20.7%×A2+8.5%×B2−3%≦MR2≦12.7%×A2+16.5%×B2+3%, wherein A2 is an integer from 0 to 3, B2 is an integer from 1 to 3, and 0≦B2−A2≦1.An arrangement ratio (LR) defined as Ly P 1 satisfies: (2C+1)×25%−20%≦LR≦(2C+1)×25%+20%, wherein C is an integer from 0 to 11.
Abstract:
A touch display includes a display panel and a touch layer. The display panel has pixel areas, and one of the pixel areas has a pixel pitch in a first direction. The display panel includes a substrate, and a display medium layer disposed over the substrate. The touch layer is disposed over the substrate, and includes slits and an electrode. The slits include a first slit and a second slit adjacent to the first slit. The electrode is disposed between the first slit and the second slit. The electrode includes first linear sections and second linear sections alternately arranged in a second direction.
Abstract:
A display panel comprises a first electrode on the first substrate and a first alignment layer on the first electrode. The first alignment layer is disposed on the first electrode and comprises a first alignment area and a second alignment area. An alignment direction of the first alignment area is opposite to an alignment direction of the second alignment area. The first electrode is disposed in the first alignment area and comprises a first trunk electrode and at least two first branch electrodes respectively connected to two sides of the first trunk electrode. At least one of the first branch electrodes comprises a first distal end and a first connection end connected to the first trunk electrode. An included angle between the extending direction from the first distal end to the first connection end and the alignment direction of the first alignment area is between 50° and 80°.
Abstract:
An optical film and a touch controlled display apparatus using the same are disclosed. The optical film includes a substrate, a first electrode and a plurality of parallel conductive wires. The substrate has a transparent region having a first area and a second area. The first electrode is disposed in the first area, and has a width substantially ranging from 1˜30 micrometers (μm). The parallel conductive wires are disposed in the second area. At least two adjacent parallel conductive wires have a distance substantially ranging from 50˜300 nanometers (nm).