Abstract:
A semiconductor package including at least one semiconductor chip and inner leads may be provided. The semiconductor package may include a semiconductor chip. A plurality of inner leads having upper surfaces and lower surfaces, may be electrically connected to the semiconductor chip, and may be spaced apart from the semiconductor chip. A molding resin may fix the semiconductor chip and the inner leads. The upper surfaces of the inner leads may be fixed to the molding resin, the lower surfaces of the inner leads may be exposed from the molding resin, and widths of the lower surfaces of the inner leads may be narrower than widths of the upper surfaces of the inner leads.
Abstract:
A method of controlling a power save mode of an image forming apparatus connected to a host apparatus, the method includes: requesting information on a power mode of the image forming apparatus; transmitting the power mode information and information on an entering time for a power save mode of the image forming apparatus from the image forming apparatus; and displaying the entering time for the power save mode of the image forming apparatus on a basis of the entering time information.
Abstract:
A double super twisted nematic (DSTN) liquid crystal display (LCD) is provided. The DSTN LCD includes: a liquid crystal display cell having first and second transparent substrates arranged parallel to each other, first and second orientation layers formed on opposing surfaces of the first and second transparent substrates, respectively, a liquid crystal sealed between the first and second transparent substrates, and indium tin oxide (ITO) electrodes formed on the opposing surfaces of the first and second transparent substrates while crossing each other; and a liquid crystal compensation cell having a third transparent substrate attached on the second transparent substrate, a fourth transparent substrate arranged in parallel to the third transparent substrate, third and fourth orientation layers formed on each opposing surface of the third and fourth orientation layers, and a liquid crystal sealed between the third and fourth orientation layers, wherein the pre-tilted angle of the liquid crystal sealed between the first and second orientation layers differs from the pre-tilted angle of the liquid crystal sealed between the third and fourth orientation layers such that the difference between changes in the refractive index anisotropies of the liquid crystals is compensated for.