Abstract:
Embodiments described herein provide a touch display device, an active pen, a touch system, a touch circuit, and a pen recognition method capable of efficiently providing a display function, a touch-sensing function, and a pen-touch-sensing function.
Abstract:
An organic light-emitting display panel having a built-in touchscreen includes a plurality of subpixels defined therein by a plurality of data lines and a plurality of gate lines, an encapsulation layer having an encapsulating function, and a color filter layer located on the encapsulation layer. An organic light-emitting display device includes the organic light-emitting display panel. Both the organic light-emitting display panel having a built-in touchscreen and the organic light-emitting display device having a built-in touchscreen is provided with a structure enabling a touchscreen disposed therewithin.
Abstract:
Embodiments described herein provide a touch display device, an active pen, a touch system, a touch circuit, and a pen recognition method capable of efficiently providing a display function, a touch-sensing function, and a pen-touch-sensing function.
Abstract:
The present disclosure provides an in-cell touch type display device, a touch circuit, a display driver, and an in-cell touch type display device driving method, which can not only sense the position of a touch generated by the user, but also sense the touch force, with which the user presses the screen during the touch, in order to provide various functions in various types.
Abstract:
Disclosed are a light emitting diode display device and a multi-screen display device using the same, which include a minimized bezel area. The light emitting diode display device includes a substrate (100) including a first display area (AA1) and a second display area (AA2) surrounding the first display area (AA1), a plurality of first unit pixels (UP1) provided in the first display area (AA1) and each including a plurality of subpixels (SP1, SP2, SP3) each including a micro light emitting device (150), and a plurality of second unit pixels (UP2) provided in the second display area (AA2) overlapping an edge of the substrate (100) and each including a plurality of subpixels (SP1, SP2, SP3) and having a size less than a size of each of the plurality of first unit pixels (UP1).
Abstract:
An organic light-emitting display panel having a built-in touchscreen and an organic light-emitting display device having a built-in touchscreen is disclosed. The organic light-emitting display panel includes a plurality of subpixels defined therein by a plurality of data lines and a plurality of gate lines, an encapsulation layer having an encapsulating function, and a color filter layer located on the encapsulation layer. The organic light-emitting display device includes the organic light-emitting display panel. Both the organic light-emitting display panel having a built-in touchscreen and the organic light-emitting display device having a built-in touchscreen is provided with a structure enabling a touchscreen disposed therewithin.
Abstract:
The present disclosure provides an in-cell touch type display device including multiple first electrodes (E1) embedded in a display panel (110), at least one second electrode (E2) positioned outside the display panel (110), and a touch force sensing gap exiting between the multiple first electrodes (E1) and the second electrode (E2) such that a capacitor is formed between the multiple first electrodes (E1) and the second electrode (E2).
Abstract:
The present embodiments relate to a transparent display panel having an excellent transparency, light-emitting efficiency, and viewing angle, and a transparent display device including the same.
Abstract:
Provided is a display device (100). The display device (100) comprises a support substrate (121), a plurality of link lines (LL) disposed on the support substrate (121), a plurality of first flexible films (161) disposed on one side of the support substrate (121) and electrically connected to the plurality of link lines (LL), a plurality of display modules (110) disposed on or under the support substrate (121) and including a plurality of pixels (P) and a plurality of signal lines and a plurality of connection members (190) disposed between the support substrate (121) and the plurality of display modules (110) and electrically connecting the plurality of link lines (LL) and the plurality of signal lines. Therefore, A display device with a large screen can be provided.