Abstract:
The present apparatus relates to an electronic cigarette manufacturing apparatus, and more particularly, to an electronic cigarette manufacturing apparatus with which electronic cigarettes each composed of a plurality of segments can be easily and quickly manufactured without defects and thus productivity improvement and cost reduction can be achieved. The electronic cigarette manufacturing apparatus includes: a supply means configured to accommodate a plurality of segments that form an electronic cigarette and cut and supply the segments in a set length; a delivery means formed on one lower portion of the supply means and configured to deliver the plurality of supplied segments; a transport means including a conveyor configured to divide and transport the plurality of segments delivered from the delivery means so as to prevent defects in an arrangement sequence and a conveyor for integrally transport the plurality of segments; and a finishing means configured to remove spaces between the segments transported through the transport means and cut the segments into specified lengths of the electronic cigarette.
Abstract:
A method of manufacturing a display substrate includes forming a common electrode line, a gate line, a data line and a switching element connected to the gate and data lines on an insulation substrate. A first pixel electrode and an insulation layer are sequentially formed on the insulation substrate. A first photoresist pattern having a first hole and a second hole is formed from a first photoresist layer on the insulation substrate. A first transparent electrode layer is coated on the insulation substrate. A second photoresist layer is coated on the insulation substrate. The second photoresist layer is exposed and developed to form a second photoresist pattern remaining in the first hole and the second hole. The first transparent electrode layer is patterned using the second photoresist pattern, to form a second pixel electrode.
Abstract:
A rate control method per block for a video encoder, includes estimating an average bit rate of a block; and determining a variation of a quantization coefficient such that an objective function based on the difference between an objective bit rate and the estimated average bit rate is minimized.
Abstract:
A display device and a lighting device are provided. The display device includes a display element for outputting an image according to a provided image signal, a frame disposed on a rear surface of the display element, and a reflection layer formed on the frame and positioned between the display device and the frame, the reflection layer being a coating layer formed using a paint including at least one of silver and aluminum. When the backlighting device of the display device is configured, a reflection plate where deposition films and a reflection layer made of a metal component are deposited is not required and the reflection layer is formed on the frame by using a paint having at least one of silver and aluminum as its main components, thereby simplifying a manufacturing process, and contributing to reducing the thickness of the display device.
Abstract:
A laminating system, an insert injection system including a laminating process, a laminating method, and an insert injection method including the laminating process, which can enhance adhesive force between a metal sheet made of a SUS material and plastic resin, which are raw materials for injection-molded products, such as automobile window moldings, when the injection-molded products are manufactured, are described. The present system can enhance adhesive force between a metal sheet made of a SUS material and plastic resin through introduction of film-type adhesive and dedicated adhesive equipment, which are raw materials for injection-molded products, such as automobile window moldings, when the injection-molded products are manufactured, and can save labor costs generated due to manual work by workers and improve the workshop environment (e.g., the unique smell of solvent-type bond/contamination).
Abstract:
The present apparatus relates to an electronic cigarette manufacturing apparatus, and more particularly, to an electronic cigarette manufacturing apparatus with which electronic cigarettes each composed of a plurality of segments can be easily and quickly manufactured without defects and thus productivity improvement and cost reduction can be achieved. The electronic cigarette manufacturing apparatus includes: a supply means configured to accommodate a plurality of segments that form an electronic cigarette and cut and supply the segments in a set length; a delivery means formed on one lower portion of the supply means and configured to deliver the plurality of supplied segments; a transport means including a conveyor configured to divide and transport the plurality of segments delivered from the delivery means so as to prevent defects in an arrangement sequence and a conveyor for integrally transport the plurality of segments; and a finishing means configured to remove spaces between the segments transported through the transport means and cut the segments into specified lengths of the electronic cigarette.
Abstract:
Provided is a method of manufacturing an allogeneic soft-tissue transplant having autologous stem cells transplanted therein using an allogeneic soft-tissue support that is obtained from an allogeneic organism. In this regard, an allogeneic soft-tissue transplant that can replace a damaged soft-tissue of a human body is manufactured.
Abstract:
A display device and a lighting device are provided. The display device includes a display element for outputting an image according to a provided image signal, a frame disposed on a rear surface of the display element, and a reflection layer formed on the frame and positioned between the display device and the frame, the reflection layer being a coating layer formed using a paint including at least one of silver and aluminum. When the backlighting device of the display device is configured, a reflection plate where deposition films and a reflection layer made of a metal component are deposited is not required and the reflection layer is formed on the frame by using a paint having at least one of silver and aluminum as its main components, thereby simplifying a manufacturing process, and contributing to reducing the thickness of the display device.
Abstract:
A display substrate, a display device having the same and a method of manufacturing the display substrate are provided. The display substrate includes a base substrate having a pixels-populated area (PA) and a surrounding area (SA) outside the PA, a first contact pad portion formed in the surrounding area, a second contact pad portion formed in the surrounding area formed to be spaced apart from the first contact pad portion with a spacing region provided therebetween, an insulating layer formed in the spacing region between the first and second contact pad portions and having a thickness smaller than or equal to a thickness of each of the first and second contact pad portions, and a first conductive film formed on the first and second pad portions.
Abstract:
A display substrate includes first, second, and third insulating layers in a display area thereof. The first and third insulating layers are in not only the display area but also a pad area adjacent to the display area and including a pad therein. Thus, defects of the display panel may be reduced.