Abstract:
A heat dissipating device includes an outer frame, a first rotor, a base, a second rotor and a driving device. The first rotor comprises a shaft, a first hub and a plurality of first rotor blades disposed around the first hub. The base is disposed in the outer frame. The second rotor comprises a plurality of second rotor blades, coupled to the shaft of the first rotor and disposed next to the first rotor. The driving device is supported by the base for driving the first rotor and the second rotor.
Abstract:
A heat dissipation module includes a housing, and a fan including an outer frame, a first rotor, a base, a second rotor and a driving device. The first rotor includes a shaft, a first hub and a plurality of first rotor blades disposed around the first hub. The base is disposed in the outer frame. The second rotor includes a plurality of second rotor blades, and is coupled to the shaft of the first rotor and disposed next to the first rotor. The driving device is supported by the base for driving the first rotor and the second rotor simultaneously.
Abstract:
A heat dissipating fan includes a frame, a first rotor having a shaft and a hub, a base disposed in the frame, a second rotor disposed at one side of the first rotor and coupled to the first rotor, and a driving element supported by the base for driving the first and second rotors to rotate. The hubs of the first and second rotors include a plurality of heat dissipating holes formed on the surface thereof. Airflow passes through the plurality of heat dissipating holes to generate a forced convection effect on the driving element.
Abstract:
The present invention discloses a method and system for dynamically specifying and instantly transmitting and representing/displaying call data, wherein a data, which is specified by the caller or the callee dynamically, can be instantly transmitted, and represented/displayed as soon as the data has been transmitted and before the callee answers the call. The instant and dynamic transmitting or represent/display of the specified data can be undertaken before or during the preset outgoing/incoming activity of a call or replaces the preset outgoing/incoming activity of a call, and the specified data can be a picture, an image, a voice, an Internet link, other format of file, or an appropriate combination of the aforesaid data. Via the method and system for dynamically specifying and instantly transmitting and representing/displaying call data of the present invention, a plurality of new modes of the voice telecommunication can be constructed, and much more added value and commercial benefit can also be got from the voice communication.
Abstract:
A heat dissipation method is provided for an electronic apparatus including a housing, a circuit board mounted in the housing, and a heatsink device mounted between and rested on the housing and the circuit board. The heatsink device includes a heatsink plate having a bottom face rested on a surface of the housing, and a heat conductive plate having a bottom face rested on a top face of the heatsink plate and a top face rested on a bottom face of the circuit board. Thus, the heatsink device dissipates the heat produced by the heat sources of the circuit board largely and rapidly, thereby enhancing the heat dissipation effect of the electronic apparatus.
Abstract:
A glass screen film applicator includes a carrier, a positioning member integrally formed as a one-piece structure, and a clamping mechanism fastened to the carrier. The carrier includes a mounting slot and an accommodating trough, and the accommodating trough includes a rail hole recessed in a bottom thereof. The positioning member includes an L-shaped structure and a plurality of positioning pillars extending from the L-shaped structure, and the L-shaped structure has a positioning corner arranged on an inner side thereof. The clamping mechanism includes a holder and a moving unit. The holder and the positioning corner respectively clamp two diagonal corners of a mobile device by the moving unit, and the positioning pillars allow the glass screen film structure to be disposed on and aligned with the mobile device.
Abstract:
A complex control device includes a wireless selfie shutter and a flasher detachably installed in the wireless selfie shutter. The wireless selfie shutter has a first shell, a starting key and two transmitting modules arranged in the first shell, and the transmitting modules are electrically connected to the starting key. The flasher has a second shell detachably installed on the first shell, an LED flash and a control module arranged in the second shell. The control module is electrically connected to the LED flash. When the flasher is separated from the wireless selfie shutter, the second shell is used for inserting into a connector jack of a mobile communication device, thereby respectively transmitting two starting signals of the transmitting modules to the mobile communication device and the control module of the flasher when the starting key is pressed. Additionally, the instant disclosure provides a selfie apparatus.
Abstract:
A method of raster-scan search for multi-region OSD and a system using the same are provided. The multi-region OSD is to be displayed on a screen after an alpha-blending of a mixer. The method includes at least following procedures. First, a global header search is executed in the first memory module for each or a portion of a plurality of search lines so as to determine a blending region and store header addresses of OSD regions in a second memory module. Next, whether there is a dummy region at the search line is determined. In addition, an alpha value for the dummy region, a dummy data of the dummy region and the OSD data of the OSD regions at the search line are transmitted to the mixer.