Abstract:
A chip on film according to an exemplary embodiment includes: a driving film (10), a wire layer (20) formed on a first surface of the driving film (10), a driving chip (30) connected to the wire layer (20), and an electromagnetic wave blocking layer (50) formed on a second surface of the driving film (10), in which a mesh portion (51) may be formed on a portion of the electromagnetic wave blocking layer (50).
Abstract:
A conductive nanowire film based on a high aspect-ratio metal is disclosed. The nanowire film is produced by inducing metal reduction in a concentrated surfactant solution containing metal precursor ions, a surfactant and a reducing agent. The metal nanostructures demonstrate utility in a great variety of applications.
Abstract:
A display screen of an electronic device may be supported by one or more subassemblies positioned between the display screen and a printed circuit board to which the display screen is secured. Each subassembly is able to act as an independent suspension for the display screen and is able to cushion the display screen by absorbing mechanical tolerances and mechanical shock and vibration. The subassemblies may be mounted on the printed circuit board using surface mount technology.
Abstract:
Provided is a circuit substrate that affords a narrower frame in display devices or the like, while suppressing connection faults between wirings and external connection terminals. The invention is a circuit substrate having a substrate, on top of which wiring, an insulating film and an external connection terminal are disposed in order. The circuit substrate is provided with an anisotropic conductive film, having conductive particles, on the external connection terminal; and the external connection terminal is connected to the wiring via at least one contact hole formed in the insulating film, with the length from one end to the other end, in a plan view, of a region formed with one or more contact holes that connect to a specific external connection terminal being greater than the diameter of each of the conductive particles.
Abstract:
It is intended to provide a substrate structure ensuring a shielding property and a heat discharge property of a resin part that collectively covers a plurality of electronic components and capable of downsizing, thinning, and a reduction in number of components. The substrate structure 20 of the first embodiment is provided with a substrate 21, a plurality of electronic components 22 mounted along the substrate 21, and a resin part 25 that covers the electronic components 22 and is in close contact with the substrate 21. ln the substrate structure 20, the resin part 25 is provided with a reinforcing heat discharge layer 26 covering the electronic components 22 and having a heat conductivity and a reinforcing property and a shield layer 27 covering the reinforcing heat discharge layer 26, and a surface o28 of the shield layer 27 is formed into a predetermined shape corresponding to a surface structure of the display device 30 adjacent to the resin part 25.
Abstract:
A nanowire ink comprising: a plurality of metal nanowires; a surfactant; a viscosity modifier; and a solvent; wherein, by weight, the ratio of the surfactant to the viscosity modifier is in the range of about 80 to about 0.01, the ratio of the viscosity modifier to the metal nanowires is in the range of about 5 to about 0.000625, and the ratio of the metal nanowires to the surfactant is in the range of about 560 to about 5.
Abstract:
The invention relates to a display device and to a display system and display surface. The invention also relates to securing means, in particular for a display device according to the invention.