Abstract:
A vehicle inside mirror device employs a ball clamp in which a barrel-shaped ball clamp is prepared by assembling a pair of semi-barrel-shaped and symmetrical bodies to accommodate for manufacturing errors and the like. The ball clamp includes a mirror through which a driver can view rearwardly; and a mirror mounting part. The mirror mounting part has a barrel-shaped hinge part. A first ball clamp surrounds and clamps the hinge part. A second ball clamp corresponds to the first ball clamp with a spring between the first ball clamp and the second ball clamp for generating an expansion force. The mirror mounting part is fixed to a glass or a ceiling of a vehicle and has a hinge part for coupling the second ball clamp thereto. A tube surrounding the first ball clamp, the second ball clamp and the spring.
Abstract:
Methods of operating nonvolatile memory devices are described. A bit line program voltage is applied to at least one selected bit line and a bit line program-inhibition voltage is applied to at least one unselected bit line. The methods further include concurrently applying a word line program voltage to a selected word line, a first pass voltage to at least one unselected word line and a second pass voltage less than the first pass voltage to at least one unselected word line immediately adjacent the selected word line on a string selection line side of the selected word line.
Abstract:
Disclosed is a negative C-type retardation compensator for a liquid crystal display. The negative C-type retardation compensator for the liquid crystal display includes polyarylate having a thio group or a sulfur oxide group in a polymer main chain thereof. Accordingly, the retardation compensator has an absolute value of negative retardation that is larger in a thickness direction than a retardation compensator which includes polyarylate having no thio group or sulfur oxide group in a polymer main chain thereof even though the retardation compensator having the thio group or sulfur oxide group and the retardation compensator having no thio group or sulfur oxide group are the same as each other in thickness. Thereby, the negative C-type retardation compensator for liquid crystal displays is capable of being desirably applied to the liquid crystal displays.
Abstract:
A method of checking an error vector magnitude of transmitter in accordance with some embodiments of the inventive concept may include dividing a transmission baseband signal which the transmitter transmits into a plurality of processing units; performing a transmitter function and an ideal receiver function with respect to each of the plurality of processing units; generating a reception baseband signal by recombining a processing result of each of the plurality of processing units; and calculating an error vector magnitude (EVM) by comparing the transmission baseband signal with the reception baseband signal.A simplified method of checking an error vector magnitude of transmitter in accordance with some embodiments of the inventive concept may include generating symbols composed of only pilots; generating symbol composed of only data; and checking an error vector magnitude (EVM) using the all the symbols.
Abstract:
Disclosed are a branched polycarbonate resin composition that includes: (A) a polycarbonate resin; (B) a polymer including a reactive group being capable of reacting with a hydroxyl group; and (C) an ionic compound including an alkali metal ion, organic cation, or a combination thereof, and a branched polycarbonate resin and a molded product using the same.
Abstract:
A slurry composition includes an abrasive agent, an oxidizing agent, and a first adsorption inhibitor including a polyethylene oxide copolymer. A method of manufacturing a phase change memory device may include providing a substrate including an interlayer insulating film having a trench and a phase change material layer on the interlayer insulating film filling the trench, and performing chemical mechanical polishing on the phase change material layer using the slurry composition to form a phase change material pattern layer.
Abstract:
A method of programming a nonvolatile memory device comprises counting a number of state pairs in a unit of input data, modulating the unit of input data to reduce the number of state pairs contained therein, and programming the modulated unit of input data in the nonvolatile memory device. Each state pair comprises data with a first state and designated for programming in a memory cell connected to a first word line, and data with a second state and designated for programming in a memory cell connected to a second word line adjacent to the first word line. The memory cell connected to the first word line is adjacent to the memory cell connected to the second word line.
Abstract:
A method and an apparatus for controlling a device are provided. Information regarding a second external device, which was received by a first external device, is received from the first external device. The second external device is authenticated based on the information regarding the second external device. Position information regarding the second external device is detected. Control information regarding the first external device is transmitted to the first external device. The control information is based on the position information.
Abstract:
The present invention relates to a device and method for displaying the lifecycle of a surge protection device, and more particularly to a device and method for displaying the lifecycle of a surge protection device, which detects an increase in leakage current according to a deterioration in performance of the surge protection device in order to provide notice of a replacement time for the surge protection device. According to the present invention, it is possible to for a user to provide notice of a replacement time by displaying the lifecycle of a surge protection device (SPD) to the outside. Additionally, as another effect of the present invention, it is possible to confirm an amount of leakage current flowing into the ground of the SPD and whether the SPD is properly installed on a ground line by using a current and ground state detecting sensor.
Abstract:
A cap assembly is provided. The cap assembly comprises a main gasket surrounding the outer circumference of a safety vent and an auxiliary gasket surrounding the outer circumference of a current interrupt device (CID). The main gasket is supported by the auxiliary gasket, leaving no space between the main gasket and the safety vent. The cap assembly is constructed such that the auxiliary gasket prevents the main gasket seated on a beading portion from sagging. This construction makes the cap assembly effective in preventing an electrolyte from leaking. Further provided is a cylindrical secondary battery comprising the cap assembly.