Abstract:
A touch window according to one embodiment includes a substrate; and a sensing electrode and a wire electrode on one surface of the substrate, wherein the wire electrode is formed in a mesh shape, the wire electrode comprises a second mesh line and a connection mesh line, and the connection mesh line connects at least one of disconnection areas of the mesh shape.
Abstract:
Disclosed is a touch window including a substrate, and an electrode layer on the substrate. A retardation difference is 0.2% or less depending on an incident angle of light in the substrate.
Abstract:
Disclosed is a touch panel. The touch panel includes a substrate, and an electrode part formed in a mesh shape on the substrate. The electrode part includes a resin layer comprising first and second sub-patterns, and a transparent electrode on the first sub-pattern. A ratio of a width of the first sub-pattern to a width of the second sub-pattern is in a range of 1:0.01 to 1:0.5.
Abstract:
A metal plate to be used in the manufacture of a deposition mask comprises: a base metal plate; and a surface layer disposed on the base metal plate, wherein the surface layer includes elements different from those of the base metal plate, or has a composition ratio different from that of the base metal plate, and an etching rate of the base metal plate is greater than the etching rate of the surface layer. An embodiment includes a manufacturing method for a deposition mask having an etching factor greater than or equal to 2.5. The deposition mask of the embodiment includes a deposition pattern region and a non-deposition region, the deposition pattern region includes a plurality of through-holes, the deposition pattern region is divided into an effective region, a peripheral region, and a non-effective region, and through-holes can be formed in the effective region and the peripheral region.
Abstract:
A particle sensing device is provided. The particle sensing device may include a light emitter configured to emit and output light into a light scattering space, and a light receiver provided in a maximum light scattering angle region. A maximum intensity of scattered light formed when the light emitted from the light emitter is scattered by a particle in the light scattering space may be obtained in the maximum light scattering angle region, and the light receiver may be configured to receive the scattered light incident thereon and generate a photocurrent signal.
Abstract:
A touch window according to an embodiment comprises: a substrate; a sensing electrode arranged on the substrate; and a reflection prevention layer arranged on the sensing electrode, wherein the reflection prevention layer comprises a first sub reflection prevention layer arranged on a first surface of the sensing electrode, a third sub reflection prevention layer arranged on a second surface, which lies opposite the first surface, and second sub reflection prevention layers arranged on both side surfaces, which connect the first and second surfaces, respectively. In addition, a touch window according to an embodiment comprises: a substrate; a base member comprising a pattern portion arranged on the substrate; a sensing electrode arranged inside the pattern portion; and a reflection prevention layer surrounding the sensing electrode, wherein the reflection prevention layer comprises a first sub reflection prevention layer arranged on the lower surface of the sensing electrode, second sub reflection prevention layers arranged on both side surfaces of the sensing electrode, and a third sub reflection prevention layer arranged on the upper surface of the sensing electrode, and the second sub reflection prevention layers comprise inclined surfaces, respectively. In addition, a touch window according to an embodiment comprises: a substrate; a sensing electrode on the substrate; a first sub reflection prevention layer arranged on a first surface of the sensing electrode; and a third sub reflection prevention layer arranged on a second surface of the sensing electrode, wherein at least one of the sensing electrode, the first sub reflection prevention layer, and the third sub reflection prevention layer has a side surface inclined at an acute angle of inclination with regard to a surface of the substrate.
Abstract:
A touch window according to an embodiment includes a substrate; a sensing electrode disposed on the substrate; and a wire electrode disposed on the substrate, wherein the at least one of the sensing electrode and the wire electrode is arranged in a form of a mesh.
Abstract:
A touch window according to one embodiment includes a substrate; a sensing electrode on the substrate; a wire electrically connecting the sensing electrode; and a connection part connected to one end of the wire and connected to a circuit board, wherein an amount of charges in a sectional area of the wire is varied depending on a position in the wire. A touch device according to another embodiment includes a touch window; and a driving part on the touch window, wherein the touch window includes a substrate; a sensing electrode on the substrate; a wire electrically connecting the sensing electrode; and a connection part connected to one end of the wire and connected to a circuit board, wherein an amount of charges in a sectional area of the wire is varied depending on a position in the wire.
Abstract:
A fingerprint identification system including a starting button unit including a starting touch panel to extract a fingerprint of a user, a door handle including a door touch panel to extract the fingerprint of the user; and a control unit to control starting of a vehicle by comparing the extracted fingerprint of the user with a fingerprint, which is previously stored, and to generate an alarm signal. The starting touch panel is provided on a starting button unit.