Abstract:
A heat sink having auto switching function, a heat sink system and a heat sinking method are disclosed. The heat sink receives a control command sent by an external device. An internal heat sink device is controlled according to content of the control command to control power ON or power OFF of a thermoelectric cooler of the heat sink device or to control power ON, power OFF, or change rotation speed setting of a heat sink fan in the heat sink device. Thus, the heat sink auto switches operations of the heat sink device correspondingly according to temperature changes of the external device.
Abstract:
A heat-dissipating device (1) includes a casing (10) and a thermal insulation plate (20) provided within the casing (10). The thermal insulating plate (20) divides the interior of the casing (10) into a first accommodating space (101) and a second accommodating space (102). A hot air outlet (121) and a first air inlet (122) of the casing (10) are in communication with the first accommodating space (101). A cold air outlet (110) and a second air inlet (123) of the casing (10) are in communication with the second accommodating space (102). A thermoelectric cooling chip (30) is disposed in a through-hole (200) of the thermal insulation plate (20) and has a hot-end surface (31) facing the first accommodating space (101) and a cold-end surface (32) facing the second accommodating space (102). A heat-dissipating module (40) is received in the first accommodating space (101). A cold-airflow supplying module (50) is received in the second accommodating space (102). The heat generated by the hot-end surface (31) is dissipated to the hot air outlet (121) by the thermal conduction of the heat-dissipating module (40). The cold generated by the cold-end surface (32) is conducted and distributed uniformly by the cold-airflow supplying module (50) to the cold air outlet (110).
Abstract:
An adjusting structure of adjustable window curtain prop stand includes two prop plates and an adjusting structure arranged between the two prop plates. The adjusting structure further includes a lead screw, two displacing elements, two positioning elements and a plurality of connecting elements. The lead screw has two external threads respectively with different directions of spiral and available for being engaged with the two displacing elements thereon. The two positioning elements are respectively secured to inner side faces of the two prop plates to be located at an upper and a lower positions between the two displacing elements, where each connecting element is separately and actively connected between the two displacing elements and the two displacing elements, such that a linkage mechanism is formed by taking the two displacing elements as a gliding pair.
Abstract:
A light emitting diode (LED) lamp tube heat dissipating structure is capable of dissipating heat in a tube quickly to improve the heat dissipating efficiency. A circuit board with a light radiating surface and a heat dissipating surface is contained in the tube, and the light radiating surface of the circuit board is electrically connected to LED lamps. Two conductive bushings are sheathed onto both ends of the tube and electrically connected with the circuit board, and at least one heat dissipating hole is disposed separately on both distal surfaces of the tube that covers the heat dissipating surface of the circuit board, such that external air is entered into the tube from the heat dissipating hole on a distal surface of the tube and dispersed from the heat dissipating hole on another distal surface of the tube for dissipating the heat in the tube.
Abstract:
An object table is provided between a file system interface of a host and a multimedia device so that the host is capable of accessing objects stored in the multimedia device regardless of incompatibility between file formats respectively used in the file system and the multimedia device. At least one index of the stored object is stored in the object table. A file accessing architecture is constructed in the object table, where the file accessing architecture has at least one API recognizable for the file system interface. Therefore, the host is capable of accessing the objects stored in the multimedia device though the file system interface and the constructed file accessing architecture.
Abstract:
A process for fabricating a micro-display is provided. First, a wafer having a driving circuit thereon is provided. Then, a metallic reflective layer is formed on the wafer. Thereafter, an anti-reflection layer and a patterned photoresist layer are sequentially formed on the metallic reflective layer. Using the patterned photoresist layer as an etching mask, the anti-reflection layer and the metallic reflective layer are etched to form a trench pattern that exposes the surface of the wafer. After that, the patterned photoresist layer is removed. A dielectric layer is formed to cover the anti-reflection layer and fill the trench pattern. Then, a portion of the dielectric layer and the anti-reflection layer are removed to expose the surface of the metallic reflective layer.
Abstract:
An LED lamp with replaceable power supply includes a tubular body, a light module, a power supply, and two power connectors. The light module is disposed within the tubular body. The light module includes a circuit board and a plurality of LEDs. The LEDs are electrically coupled to the circuit board and are disposed on the bottom side of the circuit board. The power supply is replaceably disposed on the light module and is electrically coupled to the circuit board. The two power connectors are respectively coupled to the two ends of the tubular body and are electrically coupled to the power supply.
Abstract:
A method for manufacturing a heat pipe cooling device. The heat pipe cooling device includes a U-shaped heat pipe, which is embedded within a heat conductor. The heat conductor includes a rectangular base and an upper cover connected to the base. The base includes many retaining grooves which allow the absorption end of the heat pipe to be disposed therein. The upper cover includes many through holes formed thereon corresponding to the cooling end of the heat pipe. The bottom surface includes many protrusive portions corresponding to the inner side of the absorption end of the heat pipe. Furthermore, the upper cover and the base both include a positioning portion for engaging each other. In this manner, the upper cover is pressed on the cooling end of the heat pipe. The protrusive portion will push the heat pipe to tightly contact with the base. Finally, a planarization process is performed, thereby making the bottom surface of the absorption end and the bottom surface of the heat conductor to form a flat surface.
Abstract:
A system, an apparatus, and a method for representing a multimedia display are proposed in the present invention for displaying multimedia data and a menu. The system comprises an interface from which the user may input signals and the apparatus comprising screens for displaying. Three signals can be inputted from the interface, a first signal, a second signal, and a third signal. The apparatus comprises a first screen for displaying multimedia data, a second screen for displaying menu, and optionally a third screen for displaying information related to the multimedia data. The method comprises the steps of: providing a first screen to display multimedia data; providing a second screen to display a menu; and optionally providing a third screen to display information related to multimedia data.
Abstract:
The invention is directed to a method for manufacturing an image sensor device. The method comprises steps of forming a photodiode and a transistor on a substrate. A salicide block is formed over a photo-sensing region of the photodiode. An interconnects processes is performed several times to forming a plurality of dielectric layers over the substrate and interconnects between the dielectric layers. A photolithography and etching process is performed to remove the dielectric layers over the photo-sensing region to expose the salicide block over the photo-sensing region.