Abstract:
Described herein are semiconductor device packages with EMI shielding and related methods. In one embodiment, a semiconductor device package includes a grounding element disposed adjacent to a periphery of a substrate unit and at least partially extending between an upper surface and a lower surface of the substrate unit. The grounding element includes an indented portion that is disposed adjacent to a lateral surface of the substrate unit. The semiconductor device package also includes an EMI shield that is electrically connected to the grounding element and is inwardly recessed adjacent to the indented portion of the grounding element.
Abstract:
A method for controlling access to a computer first provides a peripheral device with an identification number, and which is coupled to a computer. Next, the accuracy of the identification number of the coupled peripheral device is verified. Operation of the computer is prevented if the identification number is not correct. On the other hand, if the identification number is correct, a first predetermined time for operation of the computer is counted, and then operation of the computer is prevented after the first predetermined time has elapsed.
Abstract:
A chip module and a fabricating method thereof are provided. Firstly, a substrate is provided. Next, a chip is assembled on the substrate and electrically connected with the substrate. Afterward, a plurality of passive units is assembled on the substrate in the style of encircling the chip. Then, a first glue structure is filled between the passive units so that an encircled area is defined by the first glue structure and the passive units. Then, a second glue structure is filled in the encircled area so that the chip is covered by the second glue structure.
Abstract:
In one embodiment of an invention concerning liquid crystal display devices, a first pixel electrode of a thin film transistor (TFT) array substrate may overlap a slit of a second pixel electrode of the TFT array substrate but not overlap another slit of the second pixel electrode. This may help induce a multi-domain electric field without having to precisely position a common electrode of a color filter substrate and the TFT array substrate. This may prevent position errors, enhance display quality, produce a wider viewing angle, and lower color shift sometimes associated with conventional liquid crystal display devices and methods.
Abstract:
A chip module and a fabricating method thereof are provided. Firstly, a substrate is provided. Next, a chip is assembled on the substrate and electrically connected with the substrate. Afterward, a plurality of passive units is assembled on the substrate in the style of encircling the chip. Then, a first glue structure is filled between the passive units so that an encircled area is defined by the first glue structure and the passive units. Then, a second glue structure is filled in the encircled area so that the chip is covered by the second glue structure.
Abstract:
An automatic monitor sliding system comprises a machine case, a slidable structure, a monitor mounting plate, and a monitor structure. The slidable structure is mounted inside a reception chamber of the machine case. The monitor mounting plate is mounted in front of the machine case. The monitor structure is mounted in front of the monitor mounting plate. As a result, the slidable structure slides the monitor structure forward to slant the monitor structure downward for facilitating the user to insert and retrieve the audio-visual disk. Consequently, the automatic monitor sliding system provides the functions of protecting machine, preventing dust, water permeation, and mistouch input, and providing high sliding radian.
Abstract:
A liquid crystal display (LCD) structure is provided. A first alignment layer and a first electrode layer are disposed on a liquid crystal layer. A second electrode layer and a second alignment layer disposed under the liquid crystal layer. The first alignment layer and the second alignment layer respectively have a plurality of alignment areas with different aligning directions. At least one of the first electrode layer and the second electrode layer includes a substrate material and a plurality of openings, and at least includes a plurality of electrode areas. The boundaries of the electrode areas correspond to the boundaries of the alignment areas. The directions of the openings in the electrode areas are between the aligning directions of the corresponding alignment areas of the first alignment layer and the second alignment layer.
Abstract:
A method for generating dummy patterns includes providing a layout region having a layout pattern with a first density, inserting a plurality of first dummy patterns with a second density corresponding to the first density in the layout pattern, dividing the layout region into a plurality of sub-regions with a third density, adjusting a size of the first dummy pattern according to a difference between the second density and the third density, and outputting the layout pattern and the first dummy patterns on a photomask.
Abstract:
The semiconductor device package includes a conformal shield layer applied to the exterior surface of the encapsulant. and an internal fence or separation structure embedded in the encapsulant. The fence separates the package into various compartments. with each compartment containing at least one die. The fence thus suppresses EMI between adjacent packages. The package further includes a ground path connected to the internal fence and conformal shield.
Abstract:
In one embodiment of an invention concerning liquid crystal display devices, a first pixel electrode of a thin film transistor (TFT) array substrate may overlap a slit of a second pixel electrode of the TFT array substrate but not overlap another slit of the second pixel electrode. This may help induce a multi-domain electric field without having to precisely position a common electrode of a color filter substrate and the TFT array substrate. This may prevent position errors, enhance display quality, produce a wider viewing angle, and lower color shift sometimes associated with conventional liquid crystal display devices and methods.