Abstract:
A tiling-display system includes an image source device, a splitter unit, a plurality of control units, and a plurality of display devices. The splitter unit receives a source image from the image source device and outputs a plurality of replication images. Each of the source image and the replication images has a first image size. The control units receive the replication images and generate sub-images according to groups of setting parameters. Each of the groups of setting parameter includes a scale, a shift and a rotation angle. The shifts of the group of the setting parameters are different from each other, and each of the plurality of sub-images has a second image size and the corresponding rotation angle. The display devices receive and display the sub-images from the control units. The display devices are arranged according to the rotation angle and display a tiled image.
Abstract:
The invention relates to a monitor supporting module including: two supporting stands fixed to a placing space, two fixing stands disposed on the rear of a flat panel display, two guide bars and two guide rails. The setting positions of the guide bars are corresponding to the guide rails. Each guide rail includes a notch, a first horizontal guide section, a vertical guide section and a second horizontal guide section. Each guide bar is guided to a corresponding notch through its protruded end edge and slides through the guide sections for completing the installation. The guide rails are respectively formed on corresponding supporting stands, and the guide bars are protruded from one side of corresponding fixing stands. Or, the guide bars are respectively disposed on corresponding supporting stands and the guide rails are formed on corresponding fixing stands.
Abstract:
A securing device is adapted to secure a central processing unit to a circuit board. The securing device includes first and second seats secured to the circuit board. The securing device further includes a press member stacked on and pressed against the central processing unit, and having a side edge portion that is connected pivotally to the first seat, and an opposite side edge portion that is adjacent to the second seat. The securing device further includes an engaging rod pressed against the press member, and having one end that is connected pivotally to the second seat and the other end removably engaged with the first seat for securing the central processing unit to the board body.
Abstract:
The present disclosure provides a track transmission system and the track transmission device thereof. The track transmission system comprises at least a track transmission device, a connecting device, and a control device. The track transmission device is provided for disposing slidably at least an electronic device. In addition, signal transmission with the control device can be accomplished through the connecting device. The electronic device is coupled to the circuit board of the track transmission device by contacting. As the electronic device slides along the track transmission device, signal transmission with the control device still can be maintained.
Abstract:
The present disclosure relates to a track structure capable of supplying power, which comprises a track module, a first conducting module, a second conducting module, at least a sliding module, a first electrical transmission module, and a second electrical transmission module. Each track module is provided for disposing an electronic device. The electronic device slides along the track module via the sliding module. The first electrical transmission module is connected to the electronic device, and a first electrode and a second electrode of the sliding module. The first and second electrodes contact the first and second conducting modules, respectively. The second electrical transmission module is connected to the first and second conducing modules and connected to a power supply. The power supply supplies power and transmit the power to the electronic device through the track structure.
Abstract:
The present invention discloses a power adapter device and a main computer system thereof. The power adapter device is provided for receiving a power signal from a power supply device and providing the power signal to an electric apparatus and an additional apparatus. The power adapter device comprises a power connection port, a first connection port, a second connection port, a current detecting module and a switch module. The power connection port is provided for receiving the power signal. When the electric apparatus receives the power signal via the first connection port, the current detecting module detects a current signal and generates a control signal according to the current signal. When the current detecting module generates the control signal, the switch module is turned on so as to transmit the power signal to the additional apparatus through the second connection port.
Abstract:
A wire fixing mechanism is provided for fixing a wire to an electronic device. The wire fixing mechanism includes a mechanism body, a wire restriction portion and a fixing portion. The wire restriction portion is connected to the mechanism body, wherein, the wire restriction portion restricts the wire. The fixing portion is connected to the mechanism body, wherein the fixing portion is adapted to be fixed to the electronic device.
Abstract:
A display device includes a display frame and a display module. The display frame includes multiple side frame pieces, multiple corner frame pieces and a back cover. Each side frame piece has a predetermined length. The multiple corner frame pieces are connected to the multiple side frame pieces, for forming an accommodating space surrounded by the multiple side frame pieces and the multiple corner frame pieces. The back cover is assembled with a side of the multiple side frame pieces and a side of the multiple corner frame pieces, and covers the accommodating space. The display module is disposed inside the accommodating space of the display frame.
Abstract:
The present disclosure relates to a track structure capable of supplying power, which comprises a track module, a first conducting module, a second conducting module, at least a sliding module, a first electrical transmission module, and a second electrical transmission module. Each track module is provided for disposing an electronic device. The electronic device slides along the track module via the sliding module. The first electrical transmission module is connected to the electronic device, and a first electrode and a second electrode of the sliding module. The first and second electrodes contact the first and second conducting modules, respectively. The second electrical transmission module is connected to the first and second conducing modules and connected to a power supply. The power supply supplies power and transmit the power to the electronic device through the track structure.
Abstract:
A heat dissipating module includes a main body, a heat dissipating unit and at least one resilient engaging unit. A side of the heat dissipating unit is connected to the main body and the other side of the heat dissipating unit contacts against at least one heat component. An end of the at least one resilient engaging unit is connected to a side of the main body and the other end of the at least one resilient engaging unit engages with a side of a fastening base. The at least one resilient engaging unit is for resiliently pressing the main body so that the dissipating unit contacts with the at least one heat component closely.