Abstract:
Systems for displaying images are provided. A representative system includes a backlight module incorporating a channel, a discharging gas, a fluorescent material, a cathode and an anode. The channel exhibits a series of waves arranged along a length thereof. The discharging gas and the fluorescent material are located within the channel. The cathode and the anode spaced from each other along the length of the channel. The series of waves form an increased effective length of the channel through which electrons travel between the cathode and the anode, and within which the electrons excite the discharging gas to generate ultra-violet light. Responsive to the ultra-violet light, the fluorescent material emits visible light.
Abstract:
In a Plasma Display Panel (PDP) apparatus, system and method including a circuit framework structure, a chassis structure coupled to the circuit framework structure, at least one thermal pad structure coupled to the chassis structure, a panel structure coupled to the at least one thermal pad structure and including a display portion and a non-display portion, an integrated circuit disposed behind said non-display portion of said panel structure, and at least one attachment fastener structure, which couples the structures, deleterious heat that is generated during operation of associated ICs can be efficiently dissipated. Thermal equilibration of the PDP may also be obtained, thus increasing the operational life of the PDP.
Abstract:
A plasma display device having a laminar attachment structure capable of increasing attachment of a heat-dissipating plate to a plasma display panel. Through a laminar attachment structure with a plurality of small pieces of thermal pad or adhesive double tape and a closed loop of thermal pad or adhesive double tape accommodating the plurality of small pieces as well as by means of vacuum pumping, the air within the closed loop is drawn out when the heat-dissipating plate is combined to the plasma display panel so as to reduce bubbles formed between the heat-dissipating plate and the plasma display panel and to increase tight attachment therebetween.
Abstract:
A capacitive touch panel is disclosed. The capacitive touch panel includes a substrate having a plurality of sensing units, a frame having a hollow opening for accommodating the substrate, and an optical composite layer disposed on the frame. Two adjacent sensing units comprise a distance therebetween. the frame and the substrate form a composite structure. The optical composite layer includes a shielding layer and an ink layer, and the thickness of the shielding layer is adjusted with respect to the distance such that the sensing units are invisible from outside.
Abstract:
An integrated input apparatus includes a panel, a sensing layer, a backlight layer, and a bottom layer. The panel includes a plurality of hot key patterns, a typing key group pattern, a cursor control pattern, and a response key pattern (a left key and a right key). When anyone of the hot key patterns, the typing key group pattern, the cursor control pattern, or the response key pattern is touched, a sensing control signal is sensed by the sensing layer and sent to a computer host for further processing.
Abstract:
A backlight module includes an optical film set and a plurality of light source sets having a first light source and a second light source. The first light source generates a first chromaticity light while the second light source generates a second chromaticity light. The first chromaticity light mixes with the second chromaticity light in the space between the light source sets and the optical film set and then enters the optical film set. The first chromaticity light and the second chromaticity light have their own spectrum and both spectra fall into a first color region of the CIE 1931 color space. Within the first color region, the spectrum of the first chromaticity light is close to a second color region while the spectrum of the second chromaticity light is close to a third color region.
Abstract:
A plasma display device having a laminar attachment structure capable of increasing attachment of a heat-dissipating plate to a plasma display panel. Through a laminar attachment structure with a plurality of small pieces of thermal pad or adhesive double tape and a closed loop of thermal pad or adhesive double tape accommodating the plurality of small pieces as well as by means of vacuum pumping, the air within the closed loop is drawn out when the heat-dissipating plate is combined to the plasma display panel so as to reduce bubbles formed between the heat-dissipating plate and the plasma display panel and to increase tight attachment therebetween.
Abstract:
The present invention provides a backlight module and a manufacture method thereof using complementary light sources having the same color. The backlight module includes an optical film set and a plurality of light source sets having a first light source and a second light source. The first light source generates a first chromaticity light while the second light source generates a second chromaticity light. The first chromaticity light mixes with the second chromaticity light in the space between the light source sets and the optical film set and then enters the optical film set. The first chromaticity light and the second chromaticity light have their own spectrum and both spectra fall into a first color region of the CIE 1931 color space. Within the first color region, the spectrum of the first chromaticity light is close to a second color region while the spectrum of the second chromaticity light is close to a third color region.
Abstract:
A heat-dissipating plate includes a heat-dissipating pad sandwiched between the first and second adhesive layers. The heat-dissipating pad is made from foam materials, and has a plurality of air passages formed through a peripheral surface thereof. The first adhesive layer is disposed on the peripheral surface of the heat-dissipating pad, and has a plurality of vents in spatial communication with the air passages in the heat-dissipating pad. The second adhesive layer is disposed on the peripheral surface of the heat-dissipating pad opposite to the first adhesive layer, and has a plurality of vents in spatial communication with the air passages in the heat-dissipating pad.
Abstract:
A Plasma Display Panel (PDP) apparatus, system and method, includes a circuit framework structure, chassis structure, panel structure, TCP structure, at least one thermal pad structure and an insulating structure. An integrated circuit is coupled to at least one thermal pad structure and the TCP structure, and the circuit framework structure is disposed external to the TCP structure. Therefore, efficient dissipation of heat that is generated during operation of the PDP structures may be obtained. In addition, the amount of accumulated heat in the PDP structure may be significantly reduced due the PDP apparatus and structure configuration, thereby increasing the PDP operational life.