Abstract:
Disclosed herein are an apparatus and method for collecting vehicle diagnostic information. The apparatus for collecting vehicle diagnostic information includes a conversion unit and an optical multiplexing unit. The conversion unit receives a plurality of frames complying with respective different protocols from a plurality of networks for vehicles, which collects vehicle diagnostic information, in electric signal form, and converts the plurality of frames into a plurality of optical signals having respective different wavelengths based on the wavelengths previously assigned to the respective protocols. The optical multiplexing unit generates a wavelength division multiplexed signal by performing wavelength division multiplexing (WDM) on the plurality of optical signals, and transmits the wavelength division multiplexed signal via an optical cable.
Abstract:
The plasma display panel (PDP) includes a front substrate and a second dielectric layer. At least one of the front substrate and the second dielectric layer is formed of a glass material. The glass material includes a transition metal oxide and a rare earth metal oxide. The transition metal oxide is at least one of oxides of cobalt (Co), nickel (Ni), selenium (Se), iron (Fe), manganese (Mn), chromium (Cr), vanadium (V) and scandium (Sc). The rare earth metal oxide is at least one of oxides of praseodymium (Pr), neodymium (Nd), samarium (Sm), dysprosium (Dy) and holmium (Ho).
Abstract:
An electrode composition includes a metal in an amount of about 52% to about 62% by weight of the composition, a glass insulation material in an amount of about 5% to about 7% by weight of the composition, a coloring agent in an amount of about 3% to about 9% by weight of the composition, and a vehicle.
Abstract:
Provided is a plasma display panel including a plurality of electrodes and a panel terminal unit providing a driving signal to the electrodes, wherein the panel terminal unit comprises: an electrode pad extending from the electrodes of the panel display unit; a film-shapeddevice providing a driving signal to the electrode pad; an anisotropic conductive film electrically connecting the electrode pad to the film-shaped device; a dielectric layer extending to contact the anisotropic conductive film on the electrode pad so that the dielectric layer covers the electrode pad; and an electrode terminal unit sealant sealing the dielectric layer and the film-shaped device. The electrode terminal unit sealant protects a terminal unit of the plasma display panel against permeation of external gas and external humidity and effectively prevents open and short circuits of an electrode due to a migration phenomenon.
Abstract:
Disclosed is a portable splint assembly for emergency patient capable of remarkably reducing a setup time for surgical operation on a bone-fracture patient. The portable splint assembly for emergency patient comprises a medical splint for bone-fracture patient; a first envelope of synthetic resin series for surrounding the medical splint in the shape of a seal; a hardening solution having a purified water for hardening the splint; a second envelope of synthetic resin series for surrounding the hardening solution in the shape of a seal; and a connection part for connecting the first envelope and the second envelope to each other. Here, in a state that the first envelope and the second envelope are integrally formed as one member, the connection part of a line shape is formed in a boundary line of the first and the second envelopes through a heat-fusing process.
Abstract:
A composition for forming an electrode including a conductive composite of a first material coated with a metal that has a higher electrical conductivity, wherein the first material is at least one selected from the group consisting essentially of nickel, carbon, and copper.
Abstract:
A video index search control circuit for a cassette recorder utilizing 8 mm recording tape and performing tracking in response to four tracking signals of differing frequencies includes a tracking controller for controlling tracking in accordance with the tracking signals and a head for selectively recording and reproducing the tracking frequencies, a video signal and audio signal, an amplifier for varying amplitude of said tracking signals generated by said tracking controller to produce high amplitude tracking signals and a video index search system signal detector for sensing the high amplitude tracking signals and for producing a high voltage signal indicating the presence of the high amplitude tracking signals. A method for controlling a video index search function is also disclosed.
Abstract:
A plasma display device includes a plasma display panel (PDP) having electrodes between front and rear substrates, a chassis base on an outer surface of the PDP, a printed circuit board assembly (PBA) on the chassis base, a flexible printed circuit (FPC) connecting the PBA to the electrodes of the PDP, an anisotropic conductive film between terminals of the electrodes and a terminal of the FPC, and a sealing member surrounding the terminals of the electrodes and the terminal of the FPC, the sealing member including a surface hydrophobic modifying layer and an insulation layer.
Abstract:
A method of forming electrodes of a plasma display panel comprises forming a first metal layer on a substrate, forming a second metal layer on the first metal layer using an offset printing method, forming first electrodes by baking the second metal layer, and forming second electrodes by etching the first metal layer using the first electrodes as masks.
Abstract:
A plasma display panel includes a bus electrode that is fabricated using a bus electrode forming composition that includes a black pigment, a conductive material, an organic binder, a photopolymerization initiator, and a cross-linking agent. The black pigment is present in an amount of 25 to 50 parts by weight based on 100 parts by weight of a conductive material.