Abstract:
A touch panel including a transparent substrate having an active area and an inactive area on a circumference of the active area; a plurality of X-axis and Y-axis electrodes; a first controller attached to a first side of the transparent substrate including the inactive area, and including a driving IC configured to control the X-axis and Y-axis electrode sensors; a second controller attached to a second side of the transparent substrate including the inactive area, in which the second side is opposite to the first side; a plurality of lead lines provided to the inactive area and connecting each of the X-axis and Y-axis electrode sensors with one of the first and second controllers; and a signal channel connecting the second controller to the driving IC of the first controller and being spaced away from the transparent substrate including the X-axis and Y-axis electrode sensors and the lead lines.
Abstract:
According to one embodiment, provided is a mobile terminal for driving a large screen in sections, wherein the mobile terminal may comprise: a display panel including an active area from which an image is output; a first active area on one side of the active area divided into two sides; a second active area on the other side of the active area divided into two sides; a first driver provided in the display panel to control an image output from the first active area provided on the one side; and a second driver provided in the display panel to control an image output from the second active area provided on the other side.
Abstract:
A mobile terminal according to one embodiment is characterized by comprising: a display panel including active areas from which images are output; a first driver for controlling an image output from a first active area among the active areas; a second driver for controlling an image output from a second active area among the active areas; first data lines connected to the first driver to apply an image signal to the first active area; and second data lines connected to the second driver to apply an image signal to the second active area, wherein the first data lines and the second data lines may be provided in the active areas alternately in at least one area.
Abstract:
In order to minimize an additional non-output region that is generated when a wire bypasses a non-output region of a display, a mobile terminal is provided which comprises: a display panel including the non-output region; a TFT (Thin Film Transistor) substrate included in the display panel; a TFT wire that is provided on a front surface of the TFT substrate to form an output region and is isolated in the non-output region; a via hole formed at the isolated point of the TFT substrate; and a bypass wire for connecting the isolated TFT wire through the via hole.
Abstract:
A mobile terminal comprises a first body; a second body arranged in parallel to the first body; a hinge part for connecting the first body and the second body such that an angle formed between the first body and the second body varies; a display panel positioned on one surface of the first body and one surface of the second body; and a window positioned on the front surface of the display panel, wherein the window comprises a first window which is positioned on the first body and/or the second body and which does not bend, and a second window which is connected to the first window and which bends, and thus present invention improves the strength of a flexible display unit so as to prevent shock delivery in both the vertical and lateral directions.
Abstract:
A mobile terminal including a first body; a second body arranged side by side with the first body in a first direction; a hinge unit connecting the first body and the second body and configured to vary an angle defined by the first body and the second body; a flexible display unit including a first area provided in one surface of the first body, a second area provided in one surface of the second body, and a third area provided in an area corresponding to the hinge unit; and a touch sensor in the flexible display unit. In addition, the touch sensor includes a plurality of first transparent electrodes extended in a second direction perpendicular to the first direction and arranged side by side in the first direction; a plurality of second transparent electrodes provided in the first area, and extended in the first direction and arranged side by side in the second direction; a plurality of third transparent electrodes provided in the second area, and extended in the first direction and arranged side by side in the second direction; and a drive IC configured to determine a touch point based on a touch signal sensed in the first transparent electrodes, the second transparent electrodes and the third transparent electrodes.
Abstract:
The present invention provides a head mounted display comprising: a frame which is wearable on a user's head; a display unit which is mounted to the frame so as to output screen information; a lens module which is detachably inserted into the frame and includes a pair of lenses having a predetermined refractive index so as to form a virtual image of the screen information; a sensing unit which senses the lens module inserted into the frame; and a control unit which controls the screen information on the basis of the type of the sensed lens module.