Abstract:
A cooperative multithreading architecture includes an instruction cache, capable of providing a micro-VLIW instruction; a first cluster, connects to the instruction cache to fetch the micro-VLIW instruction; and a second cluster, connects to the instruction cache to fetch the micro-VLIW instruction and capable of execution acceleration. The second cluster includes a second front-end module, connects to the instruction cache and capable of requesting and dispatching the micro-VLIW instruction; a helper dynamic scheduler, connects to the second front-end module and capable of dispatching the micro-VLIW instruction; a non-shared data path, connects to the second front-end module and capable of providing a wider data path; and a shared data path, connected to the helper dynamic scheduler and capable of assisting a control part of the non-shared data path. The first cluster and the second cluster carry out execution of the respective micro-instructions in parallel.
Abstract:
A display apparatus includes a panel module and a backlight module. The backlight module is disposed under the panel module. The backlight module includes a frame, a light guide plate, and a reflector. The frame supports the edge of the light guide plate. The reflector is disposed at the bottom of the light guide plate. The edge of the reflector and the edge of the frame horizontally form an engaging seam without overlapping, and the engaging seam is substantially in a serrated shape.
Abstract:
A display apparatus includes a panel module and a backlight module. The backlight module is disposed under the panel module. The backlight module includes a frame, a light guide plate, and a reflector. The frame supports the edge of the light guide plate. The reflector is disposed at the bottom of the light guide plate. The edge of the reflector and the edge of the frame horizontally form an engaging seam without overlapping, and the engaging seam is substantially in a serrated shape.
Abstract:
A flat panel display module is introduced herein, which principally includes an upper bezel, a liquid crystal panel, a frame, an optical film set and a printed circuit board assembly (PCBA), wherein various types electrical components mounted on the PCBA are capable of being completely or mostly accommodated within a caved structure constructed within the inside of the flat panel display module so as to reduce a thickness of the whole flat panel display module. Simultaneously, a better structural strength for the whole flat panel display module can be achieved therefore by closely stacking up the above-mentioned elements of the whole flat panel display module.
Abstract:
A light-emitting module includes a light-emitting diode package structure and an insulating support structure. The light-emitting diode package structure includes a package base and at least two leads. The package base has a first surface, and each lead has a bonding surface. The insulating support structure has a second surface and a third surface opposite to each other, and the insulating support structure is disposed under the package base, so that the first surface is in contact with the second surface. The bonding surfaces and the third surface are located in different planes.
Abstract:
A display device and a backlight module thereof are provided. The display device further includes a display panel having a display area. The backlight module is disposed under the display panel and includes a light source holder, a light source, and a light guide plate. The light source holder has a sidewall, a top plate, and a bottom plate, wherein the bottom plate partially overlaps the display area of the display device. The light guide plate is disposed corresponding to the display area of the display device and has one end located in an opening between the top plate and the bottom plate. A thermal isolating layer is interposed between the light guide plate and a portion of the bottom plate which corresponds to the display area. The perpendicular distance between the light guide plate and the portion of the bottom plate overlapping the thermal isolating layer is greater than a perpendicular distance between the light guide plate and the other portion of the bottom plate.
Abstract:
The present disclosure is a backlight module including a light guide plate, a supporter, and a light source module. The light guide plate has a light incident side. The supporter has a bottom plate, a sidewall, and a top plate corresponding to the bottom plate. The bottom plate extends from a first end of the sidewall toward the light guide plate, and the top plate extends along a second end of the sidewall toward the light guide plate. The length of the sidewall is longer than the length of the top plate, such that the top plate corresponding to the sidewall forms at least one breach to expose the second end of the sidewall. The bottom plate, the top plate, and the sidewall together form an accommodating space, and the light incident side of the light guide plate is disposed between the top plate and the bottom plate. The light source module is disposed in the accommodating space and partially exposed through the at least one breach. The light source module has at least one light emitting unit and a printed circuit board. The light emitting unit is disposed on the printed circuit board, such that an emitting surface of the light emitting unit can face the light incident side of the light guide plate.
Abstract:
A dual-ported AND-type match-line circuit includes at least one dual-ported dynamic AND gate. The dual-ported dynamic AND gate includes a group of CAM cells and a dual-ported dynamic circuit. A group of CAM cells connected to a dual-ported dynamic circuit and to the GND. The dual-ported dynamic circuit is connected to a group of CAM cells. The dual-ported dynamic circuit includes a setting circuit, a first directing circuit, a second directing circuit, a first AND dynamic output circuit and a second AND dynamic output circuit.
Abstract:
A method of fabricating a plastic part having a three-dimensional image and visual effect. A plastic part having a three-dimensional graphical surface and a flat plane is formed. Subsequently, a thin film layer is formed on the plastic part to provide three-dimensional image and visual effect to the plastic part, where the three-dimensional graphical surface provides the three-dimensional image and the thin film layer provides the visual effect.