Abstract:
A circuit board module includes a circuit board, a plurality of electronic components, a plurality of connectors and a cover. The circuit board includes a heat dissipation unit. The electronic components, the connectors and the heat dissipation unit are disposed on a first surface of the circuit board. The cover has a plurality of openings with the shapes and the sizes corresponding to the connectors and the heat dissipation unit. When the cover covers the circuit board, the openings expose the connectors and the heat dissipation unit. Users can plug and pull the connectors of the circuit board through the openings. The size of the cover is corresponding to the circuit board. The circuit board module is dust-proof and can prevent the users from accidentally touching the electronic components.
Abstract:
An embedded seat slot structure is disposed at a device having an opening. The embedded seat slot structure includes a cover, an interlocking portion, and a base. The cover covers the opening. The interlocking portion is pivotally connected with the device via a first pivot. An end of the interlocking portion close to the first pivot is connected with the cover. The base is pivotally connected with the device via a second pivot. An end of the base far away from the second pivot is close to the interlocking portion. The base has a connector facing the opening. When the cover is opened, the interlocking portion is driven to rotate, an end far away from the first pivot pushes the base, and then the base is rotated to make the connector exposed at the opening.
Abstract:
An electronic device with a hidden I/O interface module is disclosed. The electronic device includes a container and a surface with an opening, container and the opening communicate with each other. The container includes a first position and a second position. The electronic device also includes an I/O connection unit, a pivot module and a cover. The I/O connection unit is disposed at the container, electrically connected to the electronic device and includes a connecting surface. The pivot module is connected to the I/O connection unit. The cover is connected to the pivot module. When the cover is shut, it covers the container and makes the I/O connection unit located at the first position. When the cover is open, it drives the pivot module to drive the I/O connection unit to move to the second position to make the connecting surface of the I/O connection unit aligned with the surface.
Abstract:
A motherboard with overclocking and overvolting functions is provided. The motherboard with an overvolting function includes a specified component, a voltage regulator and a micro-controller. The specified component receives an operating voltage. The voltage regulator generates the operating voltage according to a reference voltage. The micro-controller is electrically connected to an external input device for receiving a control signal issued by the external input device and adjusting the reference voltage according to the control signal.
Abstract:
A fixing structure for fixing a thermal module on a chip of a printed circuit board is provided. The printed circuit board has a plurality of studs and a positioning post. The fixing structure includes a fixing board. The fixing board has a plurality of elastic strips, a plurality of screw holes and a spacing hole. The screw holes are on the elastic strips respectively, and the spacing hole is located close to one of the screw holes. The fixing board is positioned in the studs and the positioning post via the screw holes and the spacing hole, so that the fixing board can be fixed on the thermal module and chip.
Abstract:
An electronic module with a track identification function and a keypad identification function is provided. The electronic module includes a touch-control element and a driver. The driver has a track identification mode and a keypad identification mode. When the driver receives a switch signal, the driver mode is switched between the track identification mode and the keypad identification mode. In the keypad identification mode, the touch-control element has at least a key position. When a user presses the key position, the driver provides a key command. In the track identification mode, the driver provides a cursor position signal.
Abstract:
A display device including a rotatable stand and a display module provided on the rotatable stand is provided. The rotatable stand includes a base, a sleeve provided on the base, a composite washer, and a rotatable structure. One end of the sleeve is connected with the base. The composite washer has a flexible material layer and a rigid material layer. Further, the rotatable structure is disposed through the sleeve, the display module is adapted to be fixedly connected with one end of the rotatable structure, and the composite washer is disposed between the display module and the sleeve. The first rigid material layer contacts the display module, and the flexible material layer is disposed between the sleeve and the second rigid material layer.
Abstract:
A computer system with dual hosts is provided. The computer system includes a body, a first host, a second host and multiple peripheral devices. The first host and the second host are configured in the body, and the peripheral devices are coupled to the first host and the second host. When the first host starts, the peripheral devices are controlled by the first host. When the second host starts and the first host does not start, the peripheral devices are controlled by the second host.
Abstract:
A method for adjusting the working frequency of a chip is provided. The method detects a frequency adjustment range of a graphic chip when a system is booted. Then, an application program in full screen mode is executed, and a control hot key is enabled. Afterwards, an input of the control hot key is received to display a user interface. Finally, an input frequency inputted from the user interface is received, and the working frequency of the graphic chip is adjusted according to the input frequency in the frequency adjustment range. Therefore, even though the application program is executed in full screen mode, the working frequency of the graphic chip can still be adjusted according to requirements in any time, which is convenient for the user.