Abstract:
A 3-dimension facet light-emitting source device including a transparent container, an anode plate, a cathode plate, a plurality of transparent plates and a low-pressure gas layer is provided. The transparent container has a sealed space. The transparent plates are disposed between the anode plate and the cathode plate, and have a fluorescent layer thereon respectively. The lower pressure gas layer is filled in the sealed space to induce electrons emitting from the cathode plate, and the electrons fly in a direction parallel to the transparent plates and hit each fluorescent layer to emit light, so as to form a set of 3-dimension facet patterns.
Abstract:
An electron emission device including a first substrate, a second substrate, a gas, a sealant, and a phosphor layer is provided. The first substrate has a cathode thereon, and the cathode has a patterned profile. The second substrate is opposite to the first substrate and has an anode thereon. The sealant is disposed at edges of the first substrate and the second substrate to assemble the first and second substrates. The gas is disposed between the cathode and the anode and configured to induce a plurality of electrons from the cathode, wherein the pressure of the gas is between 10 torr and 10−3 torr. The phosphor layer is disposed on the moving path of the electrons to react with the electrons so as to emit light.
Abstract:
An electron emission light-emitting device includes a cathode structure, an anode structure, a fluorescent layer, and a low-pressure gas layer. The fluorescent layer is located between the cathode structure and the anode structure. The low-pressure gas layer is filled between the cathode structure and the anode structure, having a function of inducing the cathode to emit electron uniformly. The low-pressure gas layer has an electron mean free path, allowing at least sufficient amount of electrons to directly impinge the fluorescent layer under an operation voltage.
Abstract:
A carrying apparatus of an automobile portable electronic device includes a carrying module, a support rod, a quick release mechanism and a universal joint. The carrying module includes a tray, and the support rod is installed under the tray. The quick release mechanism is installed between the tray and the support rod. The quick release mechanism includes a clamping module and a binder turning rod, and the clamping module is connected to the support rod, and the binder turning rod is passed and disposed at the clamping module. An end of the universal joint is connected to the tray, and another end of the universal joint is covered and clamped by the clamping module, and the tray can be turned and deviated in two-dimensional directions with respect to the support rod.
Abstract:
A decorative lighting device, adapted to be installed onto wheel rim of vehicle, includes a telescopically fixing mechanism and a light-emitting assembly connected thereon. The light-emitting assembly includes a lid plate and a plurality of light-emitting units fixed thereto. The telescopically fixing mechanism includes a support seat, a clipping-and-abutting plate connected fixedly to the support seat, a plurality of telescopic links, one end of each of which is accommodated between and pivoted to the support seat and the clipping-and-abutting plate, and another end of each of which is wedged by being fixed in a central hole of the wheel ring when extended outwardly, and a rotating wheel pivoted to the support seat and capable of driving the telescopic links to make actions of shrinking inwardly or extending outwardly. Thereby, it is possible to simplify the manner of installing a decorative lighting device or a light-emitting assembly onto a wheel rim, without doing any machining process thereto.
Abstract:
An apparatus of light source includes a cathode structure, an anode structure, a fluorescent layer, and a low-pressure gas layer. The fluorescent layer is located between the cathode structure and the anode structure. The low-pressure gas layer is filled between the cathode structure and the anode structure, and has the function of electric conduction. The low-pressure gas layer has an electron mean free path, allowing most of electrons to directly impact the fluorescent layer under an operation voltage.
Abstract:
A dual-purpose light-penetrating and light-emitting device is provided. The dual-purpose light-penetrating and light-emitting device includes a first transparent substrate, a spacing sidewall, a second transparent substrate, and a light-penetrative illuminating structure. The spacing sidewall is disposed between the first transparent substrate and the second transparent substrate for configuring a hermetic space. The light-penetrative illuminating structure includes a cathode structure, an anode structure, a low pressure gas layer, and a patterned fluorescent layer. The low pressure gas layer is accommodated in the hermetic space. The cathode structure and the anode structure are oppositely disposed on the first transparent substrate and the second transparent substrate, respectively. The patterned fluorescent layer is positioned between the cathode structure and the anode structure, for allowing an ambient natural light penetrating therethrough.
Abstract:
A bearing apparatus for a portable electronic device used in vehicle includes a supporting frame, a bearing structure, a cooling fan, a first holding mechanism, and a second holding mechanism. The bearing structure is connected to the supporting frame and has a bearing plate. The first holding mechanism capable of being dismantled from the ground and connected to the bearing plate includes a front and rear moving arms set and a right and left moving arms set. The cooling fan and the second holding mechanism are respectively connected to the bearing plate. The second holding mechanism includes a front telescoping arm set and a rear telescoping arm set. Thereby, any electronic device can be stably abutted and fixed to the bearing plate, in corresponding to variously different sizes, by making appropriate adjustment.
Abstract:
The present invention provides an array-like flat lighting source, which has an array of field emitter elements. The structure of the array of field emitter elements includes a substrate and a plurality of field emitter elements. The substrate has a plurality of grooves formed thereon and each of the field emitter elements is disposed in one of the grooves. The present field emission lighting source is spacer free, and its upper and lower substrates can be made of a same material to facilitate the maintenance of the vacuum. The array of field emitter elements can have an auxiliary conductive line for repair to guarantee normal operation of the light source if one of electrode lines becomes open.
Abstract:
The present invention provides an array-like flat lighting source, which has an array of field emitter elements. The structure of the array of field emitter elements includes a substrate and a plurality of field emitter elements. The substrate has a plurality of grooves formed thereon and each of the field emitter elements is disposed in one of the grooves. The present field emission lighting source is spacer free, and its upper and lower substrates can be made of a same material to facilitate the maintenance of the vacuum. The array of field emitter elements can have an auxiliary conductive line for repair to guarantee normal operation of the light source if one of electrode lines becomes open.