Abstract:
A method for fabricating liquid crystal panel including providing a first and second substrates, attaching the first substrate to the second substrate with a predetermined gap, fixing the attached first and second substrates in a state bent into the predetermined radius of curvature such that tension can be applied to a predetermined cutting surface of the first substrate, forming a crack on the predetermined cutting surface using a scribing wheel, cutting the substrates by applying mechanical force to the first and the second substrates on which the crack is formed, and injecting liquid crystal into each of cut liquid crystal cells.
Abstract:
A method may be provided to communicate a plurality of groups of output data bits representing a respective plurality of groups of input data bits over a data bus with each group of output data bits and each group of input data bits have an equal data width. Each of the plurality of groups of input data bits at may be received at a data register. For each group of input data bits received at the data register, if a number of data bits of the group of input data bits having a first logic level is greater than half of the data width, the group of input data bits are inverted, the inverted group of input data bits are transmitted as a respective group of output data bits in parallel over the data bus, and an inversion flag associated with the respective group of output data bits is transmitted. For each group of input data bits received at the data register, if a number of data bits of the group of input data bits having a second logic level different than the first logic level is greater than half of the data width, the group of input data bits is transmitted without inversion as a respective group of output data bits in parallel over the data bus, and a non-inversion flag associated with the respective group of output data bits is transmitted. Related systems are also discussed.
Abstract:
A semiconductor wafer baking apparatus includes a hot plate, a container of which an upper part is open, and a cover that covers the upper part of the container. The cover includes an upper plate, a lower plate and a side wall that form a gas circulating space therebetween. At least one gas inlet is formed in the side wall, a plurality of gas supply holes are formed in a central region of the lower plate, and a skirt on which is formed a gas exhaust unit is coupled to a lower edge of the cover.
Abstract:
In a startup method for fuel cell systems, and more particularly, a startup method which makes the fuel cell systems rapidly reach a steady state operation by significantly decreasing the time taken to increase the temperature of the shift reactor catalyst, gas discharged from a burner that heats a reformer is supplied into the shift reactor. In the startup method of the fuel cell system, the fuel cell systems rapidly reach a steady state operation thereby significantly improving the utility of the fuel cell system. In addition, the fuel cell system is economical in that gases discharged from burners included in the fuel cell system and waste heat are used.
Abstract:
An apparatus for heating a wafer includes a hot plate, formed of, for example, ceramic, which heats the wafer mounted thereon, a case supporting the hot plate, and a fixing unit fixing the hot plate to the case that is located under the hot plate. The fixing unit may include a ball for contacting and pressing the hot plate, and an elastic spring which presses the ball and which compresses when the hot plate expands thermally.
Abstract:
Provided is a heat treatment apparatus. The heat treatment apparatus includes a heating plate including a heater; a chamber case including a cooling chamber, and coupled to a lower portion of the heating plate; and at least one atomizing unit installed on the chamber case to generate liquid droplet aerosol by mixing a cooling liquid and a gas, and at the same time, to inject the liquid droplet aerosol into the cooling chamber.
Abstract:
Provided are a scan data processing method and apparatus. The method includes: performing a wireless communication connection with a predetermined user device during a scan mode; detecting user profile information corresponding to a user address of the predetermined user device; and controlling scan data based on the user profile information.
Abstract:
A system is disclosed that includes a first memory device operable according to either a first bit organization or a second bit organization, a second memory device operable according to only the first bit organization, and a central processing unit (CPU). The CPU is commonly connected to the first and second memory devices via a command/address bus, and is connected to the first memory device via a data bus separate from the command/address bus and having an upper half and a lower half. However, the CPU is connected to the second memory device via only the upper half of the data bus.
Abstract:
Provided are an input buffer of a memory device, a memory controller, and a memory system making use thereof. The input buffer of a memory device is enabled or disabled in response to a first signal showing chip selection information and a second signal showing power down information, and the input buffer is enabled only when the second signal shows a non-power down mode and the first signal shows a chip selection state. The input buffer is at least one selected from the group consisting of a row address strobe input buffer, a column address strobe input buffer, and an address input buffer.
Abstract:
A fusing device includes a rotatable pressing roller, a fusing belt to rotate by a rotational force transmitted from the rotatable pressing roller, a nip forming member to contact an inner surface of the fusing belt to form a nip on a contact area between the rotatable pressing roller and the fusing belt, a heating member formed in approximately an internal central portion of the fusing belt to heat the nip forming member and the fusing belt, an inner support member formed within the fusing belt to press a nip part of the nip forming member toward the rotatable pressing roller, and an outer support member formed outside the fusing belt, and both ends of the outer support member being engaged with the inner support member to thereby reinforce the strength of the inner support member and form a path for radiation heat to disperse. The support unit includes an inner support member placed within the belt unit, and an outer support member placed outside the belt unit, both ends of the outer support member being engaged with the inner support member to reinforce the strength of the inner support member and to form a path for a radiation heat to disperse.