Abstract:
A flexible circuit board including: a body area including a plurality of wirings; a bonding area combined with a first side of the body area; and an extension area combined with a second side of the body area opposite to the first side. The body area includes a first sub-body area and a second sub-body area located on a side of the first sub-body area close to the extension area; the plurality of wirings at least include a first wiring, a second wiring and a third wiring all extend in the first sub-body area, and the first wiring and the second wiring extend in the second sub-body area. The first sub-body area includes a multi-layer board structure, the second sub-body area includes a single-layer board structure or a double-layer board structure, and a thickness of the second sub-body area is smaller than a thickness of the first sub-body area.
Abstract:
A flat panel detector includes a base substrate, a sensing electrode and a bias electrode over the base substrate, and an insulating layer over the sensing electrode and the bias electrode at a side distal from the substrate. A difference between thicknesses of regions of the insulating layer corresponding to the sensing electrode and the bias electrode respectively is not greater than a preset threshold. When a sufficiently high voltage is applied to the insulating layer and turned on, because the thickness thereof is relatively uniform, a dark current generated by the sensing electrode and the bias electrode under the insulating layer is relatively uniform, thereby improving detection accuracy of the flat panel detector.
Abstract:
This invention provides an array substrate, a manufacturing method thereof and a display device, the array substrate comprises a common electrode line, a thin film transistor and a common electrode, the common electrode line is provided below an active layer of the thin film transistor, and is provided with a main via thereabove, the common electrode is electrically connected to the common electrode line through a main connection portion in the main via, the main connection portion comprises an upper main connection portion and a lower main connection portion, the lower main connection portion comprises a main body and a flange provided on the main body and extending towards a direction away from a center of the main via, a lower end of the upper main connection portion is connected to the flange, an upper end of the upper main connection portion is connected to the common electrode.
Abstract:
A touch screen having a touch control electrode, wherein the touch control electrode comprises: a first electrode unit having a first strip body and a first teeth-like structure perpendicular to the first strip body and extending from a side of the first strip body; and a second electrode unit having a second strip body and a second teeth-like structure perpendicular to the second strip body and extending from a side of the second strip body. The first teeth-like structure of the first electrode unit and the second teeth-like structure of the second electrode unit are arranged to face each other and spaced away from each other. The first teeth-like structure of the first electrode unit and the second teeth-like structure of the second electrode unit are configured to shade light. The present invention also discloses a method for manufacturing the touch screen and a 3D display apparatus.
Abstract:
There are provided a slit grating and a display device. The passive slit grating according to embodiments of the invention comprises a plurality of grating structures. Each of the grating structures is symmetric about its axial line in a length direction, and an edge in the length direction for each of the grating structures has a non-linear shape. Among adjacent edges of any two of the grating structures that are adjacent, the position of a protrusion at one edge corresponds to the position of a recess at another edge.
Abstract:
A display panel is discloses. A gate line and a gate connection line of an array substrate are disposed perpendicular to each other. A passivation layer is formed on a side of a source electrode or a drain electrode of the array substrate which is close to the color filter substrate. A first via hole is disposed in the passivation layer. A color filter substrate includes a first substrate, and a data line parallel to the gate connection line is formed on a side of the first substrate which is close to the array substrate. A protection layer, a black matrix and a common electrode are sequentially formed on a side of the data line which is close to the array substrate. A second via hole is disposed in a region of the protection layer, the black matrix and the common electrode which corresponds to the data line. A first end of a conductive spacer is connected to the source electrode or the drain electrode by way of the first via hole, a second end of the conductive spacer is connected to the data line by way of the second via hole. A method for fabricating a display panel and a display device are further disclosed.
Abstract:
A touch screen having a touch control electrode, wherein the touch control electrode comprises: a first electrode unit having a first strip body and a first teeth-like structure perpendicular to the first strip body and extending from a side of the first strip body; and a second electrode unit having a second strip body and a second teeth-like structure perpendicular to the second strip body and extending from a side of the second strip body. The first teeth-like structure of the first electrode unit and the second teeth-like structure of the second electrode unit are arranged to face each other and spaced away from each other. The first teeth-like structure of the first electrode unit and the second teeth-like structure of the second electrode unit are configured to shade light. The present invention also discloses a method for manufacturing the touch screen and a 3D display apparatus.
Abstract:
Embodiments of the present invention relate to a display device, and the display device, comprising: a display panel, comprising a display region and a peripheral region around the display region; and an optical module, disposed on a light-exiting side of the display panel, the optical module configured to shift light emitted from the display panel towards edges of the display panel so as to make a part of the light shift into the peripheral region and emit from the peripheral region.
Abstract:
A display module includes a structure. The display module includes a display panel, a flexible circuit board and an adhesive structure. The display panel has a light exit side and a backlight side opposite to the light exit side. The flexible circuit board includes a main body portion, a neck portion and a connection portion. The neck portion is located between the main body portion and the connection portion. An end of the main body portion away from the neck portion is connected to an edge of the display panel. The connection portion, the neck portion and at least part of the main body portion are located on the backlight side of the display panel. The adhesive structure is located between the main body portion and the display panel, and at least part of the adhesive structure is located in an edge area of the main body portion proximate to the neck portion.
Abstract:
Provided are a flexible printed circuit board and a display device. The flexible printed circuit board comprises a main flexible printed circuit board and a connection flexible printed circuit board having different outlines. Both printed circuit boards are single-layer boards or double-layer boards. The main flexible printed circuit board comprises a bonding region, a device mounting region, a first connection region and signal lines. The signal lines include a first signal line positioned between the device mounting region and the first connection region, and a second signal line positioned between the device mounting region and the bonding region. The connection flexible printed circuit board comprises a second connection region, a third connection region and a third signal line positioned between the second connection region and the third connection region. The two flexible printed circuit boards are connected by means of the first connection region and the second connection region. An orthographic projection of the third signal line on the main flexible printed circuit board overlaps with the second signal line. In an overlapping region, an electromagnetic shielding structure is at least provided at one side of the main flexible printed circuit board facing the connection flexible printed circuit board or at one side of the connection flexible printed circuit board facing the main flexible printed circuit board.