Abstract:
A side-type backlight module including a lampshade, a light guide plate (LGP), a plurality of point light sources and a reflection structure is provided. The LGP has a light incident surface disposed at an opening of the lampshade. The point light sources are disposed between the lampshade and the LGP. The reflection structure is disposed between the LGP and the lampshade, and has first light outlets, at least a second light outlet, sinks, first reflecting elements and at least a second reflecting element. The sinks are disposed corresponding to the first light outlets. The point light sources are disposed in the sinks. The second light outlet is located between and adjacent to the first light outlets. The first reflecting elements are disposed at the junctions of each first light outlet and the second light outlet. The second reflecting element is disposed corresponding to the second light outlet.
Abstract:
A backlight module includes a light source, a light guide plate for guiding light from the light source, and a brightness enhancement film having a plurality of spherical surface microlenses for gathering light from the light guide plate. In contrast to traditional prism sheets, the brightness enhancement film having the plurality of spherical surface microlenses have better efficiency of light-gathering.
Abstract:
A method for micro-code execution for an electronic device is disclosed. The method includes: providing the electronic device with a micro-code partitioned into a main core and at least a function code, the micro-code being stored in a first storage module of the electronic device; and when the electronic device is powered on, loading the main core from the first storage module into a second storage module of the electronic device, and switching between the second storage module for executing the main core and the first storage module for executing the function code to control operation of the electronic device. The function code is executed when called by execution of the main core.
Abstract:
An anti-cancer drug composition includes a Ganoderma extract having a concentration of 1-5 mg/ml and an amphotericin B having a concentration of 3-10 μM. The Ganoderma extract and the amphotericin B are medicated at different times by pre-treating cancer cells with the Ganoderma extract for a period of time followed by administration of the amphotericin B to enhance an anti-cancer effect of the amphotericin B.
Abstract:
The method of the invention promotes single crystal growth during fabrication of melt growth semiconductors. A growth ampoule and its tip have a semiconductor source material placed therein. The growth ampoule is placed in a first thermal environment that raises the temperature of the semiconductor source material to its liquidus temperature. The growth ampoule is then transitioned to a second thermal environment that causes the semiconductor source material in the growth ampoule's tip to attain a temperature that is below the semiconductor source material's solidus temperature. The growth ampoule so-transitioned is then mechanically perturbed to induce single crystal growth at the growth ampoule's tip.
Abstract:
A backlight module includes a light source, a light guide plate for guiding light from the light source, and a brightness enhancement film having a plurality of spherical surface microlenses for gathering light from the light guide plate. In contrast to traditional prism sheets, the brightness enhancement film having the plurality of spherical surface microlenses have better efficiency of light-gathering.
Abstract:
An anti-cancer drug composition includes a Ganoderma extract having a concentration of 1-5 mg/ml and an amphotericin B having a concentration of 3-10 μM. The Ganoderma extract and the amphotericin B are medicated at different times by pre-treating cancer cells with the Ganoderma extract for a period of time followed by administration of the amphotericin B to enhance an anti-cancer effect of the amphotericin B.
Abstract:
A method for micro-code execution for an electronic device is disclosed. The method includes: providing the electronic device with a micro-code partitioned into a main core and at least a function code, the micro-code being stored in a first storage module of the electronic device; and when the electronic device is powered on, loading the main core from the first storage module into a second storage module of the electronic device, and switching between the second storage module for executing the main core and the first storage module for executing the function code to control operation of the electronic device. The function code is executed when called by execution of the main core.
Abstract:
A light guide plate includes a transparent body, a plurality strip-shaped light diffusion structures and a plurality of strip-shaped light-collecting structures. The transparent body has a first light exit surface and a light incident surface adjacent to the first light exit surface. The strip-shaped light diffusion structures convexly extend from the first light exit surface of the transparent body and each of the strip-shaped light diffusion structures has a second light exit surface distant from the first light exit surface. The strip-shaped light-collecting structures correspond to the strip-shaped light diffusion structures, and each of the strip-shaped light-collecting structures convexly extends from the second light exit surface of the corresponding strip-shaped light diffusion structure. A cross-sectional shape of each of the strip-shaped light-collecting structures is approximately symmetrical with respect to a central normal plane of the corresponding second light exit surface. Furthermore, a surface lighting device using the above-mentioned light guide plate is also provided.