Abstract:
A heat pipe with a dual capillary structure includes a metal tube, a first capillary, a second capillary and a working fluid. The metal tube forms a chamber and a heat-absorption part. The first capillary is formed by sintering a metal powder, and its corresponding heat-absorption part is disposed in the chamber and the second capillary is contained in the chamber and connected to an end of the first capillary. The second capillary includes an internal tube, a capillary tissue installed between inner walls of the internal tube and the metal tube, and a working fluid filled into the chamber. The invention further provides a method of manufacturing the heat pipe with a dual capillary structure.
Abstract:
A heat dissipating structure for a portable electronic device which includes a heat generating electronic member. The heat dissipating structure includes a base, a first heat pipe, a heat conducting sleeve, and a second heat pipe. The base is mounted on the heat generating electronic member. The base includes a through groove defined therein. One end of the first heat pipe is received in the through groove. The heat conducting sleeve includes a through hole defined therein. The through hole is configured for pivotably connecting the other end of the first heat pipe. One end of the coaxially joining with the first heating pipe in the heat conducting sleeve. The base is configured for conducting heat generated by the heat generating electronic member to the first heat pipe. It is advantageous that the heat dissipating structured can be mounted in limited space.
Abstract:
A method for bonding a semiconductor structure with a substrate and a high efficiency photonic device manufactured by using the same method are disclosed. The method comprises steps of: providing a semiconductor structure and a substrate; forming a composite bonding layer on the semiconductor structure; and bonding the substrate with the composite bonding layer on the semiconductor structure to form a composite alloyed bonding layer. The semiconductor structure includes a compound semiconductor substrate and a high efficiency photonic device is produced after the compound semiconductor substrate is removed. Besides, the composite bonding layer can be formed on the substrate or formed on both the semiconductor structure and substrate simultaneously.
Abstract:
A capillary structure includes a bare core shown as a long rod shape; and a capillary layer wound around the bare core and covered a surrounding thereof. The capillary layer is constructed by strands that are woven in a plurality of directions (i.e. curly interwoven) and continuously wound around an outer surrounding of the bare core. In the meantime, each woven strands is a strand bundled from a weaving material.
Abstract:
A method of making a light emitting diode (LED) is disclosed. The LED of the present invention comprises a semiconductor layer of a first polarity, an active layer, and a semiconductor layer of a second polarity stacked from bottom to up, wherein a stacked structure at least composed of the active layer and the semiconductor layer of the second polarity have a side with a wave-shape border in a top view of the LED and/or at least one valley, thereby increasing the efficiency of emitting the light to the outside of the LED.
Abstract:
A differential-signal output circuit for a timing controller of a display device includes a conversion circuit, a pre-charging circuit and a timing generator. The conversion circuit is used for receiving a differential signal and outputting a current to a load circuit according to polarity of the differential signal. The pre-charging circuit is coupled to a first output end and a second output end of the conversion circuit or is coupled to a first power driving end and a power second driving end of the conversion circuit. The pre-charging circuit is used for pre-charging the load according to a control signal. The timing generator is used for generating the differential signal and a control signal according to display data.
Abstract:
A self-testing message displaying system suitable for a computer is provided. The computer has multiple hardware devices, and the basic input/output system performs a power on self-test sequence on the computer and outputs a self-testing code when one of the hardware devices is error. The self-testing message displaying system includes a mother board and a display device. The mother board having a memory is disposed in the computer, and the memory stores the device codes corresponding to the hardware devices. The display including an on screen display control device is electrically connected to the mother board and used to store the on screen display symbols corresponding to the codes of the hardware devices. The on screen display control device is capable of accessing the device codes corresponding to the self-testing codes from the memory, such that the display device displays the on screen display symbols corresponding to the device codes.
Abstract:
A stackable modular personal computer structure, comprising a plurality of framework; the plural frameworks stacked to combine with each other in a sequence; a bottom of each other framework above the first framework which is mounted on a lowest layer has a hole for allowing at least one electric wire to be passed through to enable the electric wires of the modular personal computer and a combination structure of each layer are all hid inside the frameworks so that an identical outlook can be obtained.
Abstract:
A remote control, which can control a plurality of devices with UPnP support, and establish or receive a network phone call. Also a mobile memory module is provided for accessing the data of network account, financial account, or personal data stored in a mobile memory device to support the functions of phone number listing, wireless network payment service, or accessing or showing of personal data. The functions of network phone service and remote controlling are combined to increase the versatility and convenience of a remote control.
Abstract:
A fastening mechanism includes a mounting seat mounted on a frame body, disposed at a mounting hole in a frame body, and configured with an accommodating space therein. The mounting seat has a mounting wall formed with an opening for access into the accommodating space, and an outer surrounding wall connected to a periphery of the mounting wall. An engaging member extends movably in the accommodating space in the mounting seat, and is operable so as to move from a releasing position, where the engaging member disengages a fastening hole in a peripheral device, to an anchoring position, where the engaging member engages the fastening hole in the peripheral device such that the peripheral device is fastened to the frame body. The engaging member can be retained releasably in a selected one of the anchoring and releasing positions.