Abstract:
A slot assembly includes a base, a tray and a fastener. The base has an accommodating space having an opening end. The tray is movably located in the accommodating space. The tray has a bearing surface and is movable between a removed position and an inserted position. The tray is moved from the removed position to the inserted position by being pushed by a workpiece. The fastener is movably disposed on the tray. When the tray is at the removed position, the fastener is at a released position, and a second engaging portion of the fastener is located away from the bearing surface and detached from the first engaging portion. When the tray is at the inserted position, the fastener is at a fixed position, and the second engaging portion of the fastener is located close to the bearing surface and fixed to the first engaging portion.
Abstract:
An integrated computer, a computer system and an input/output signal automatic detecting method for the integrated computer are provided. After a signal terminal is inserted into a socket of the integrated computer, the integrated computer will detect if an external video signal can be received and then set the integrated computer in an input mode or an output mode accordingly. In the input mode, a display of the integrated computer will display images according to the external video signal. In the output mode, a graphic processor unit (GPU) of the integrated computer will provide a first internal video signal to the display and a second internal video signal to a display device coupled to the signal terminal.
Abstract:
The present invention relates to a computer system capable of adjusting the operating frequency dynamically and comprises at least a processor voltage-adjusting unit, a clock-generating circuit, at least a load-detecting unit, and a control unit. The processor voltage-adjusting unit and the clock-generating circuit produce a processor operating voltage and a clock signal, respectively, and transmit them to the processor. The load-detecting unit detects the processor for producing a detecting signal related to the load of the processor. The control unit produces a clock-adjusting signal and a processor voltage-adjusting signal according to the detecting signal and controls the processor voltage-adjusting unit and the clock-generating circuit, respectively. Thereby, the control unit can adjust the operating voltage of the processor as well as the frequency of the clock signal and hence adjusting the operating frequency of the processor. According, the purpose of adjusting the performance of the computer system dynamically can be achieved.
Abstract:
Provided is a method for scheduling cloud-computing resource, and a system applying the method is herein disclosed. It is featured that the load history record becomes a basis to obtain a computing pattern for each computing node based on a request. The load history is the basis to predict the future computing capability, and accordingly to distribute the computing task. The cloud-computing capability can therefore be advanced. The method firstly receives a computing request. The request includes a number of computing nodes, a start time of computing, and a length of computing time. A computing resource table is established based on the load history for each node, and used to calculate availability and confidence. After that, a resource expectation value is obtained from the availability and confidence. After sorting the expectation values, one or more computing nodes are selected for further task distribution.
Abstract:
A packaging corrugated board having peripheral edges oblique to flute direction thereof is disclosed. A board body of the packaging corrugated board is formed of a first liner board, a second liner board, and a fluted medium sandwiched between the first and the second liner board. The fluted medium is a corrugated board having a plurality of flutes, and a direction in which the flutes extend is defined as a flute direction. The board body defines a plurality of peripheral edges, and most of the peripheral edges are neither parallel nor perpendicular to the flute direction.
Abstract:
An electronic device includes a display unit and a main unit; and the main unit includes a separable module and a base. The separable module is provided along two opposite shorter edges with a plurality of hooking elements, and has at least one carrier member located on one side of the separable module. The base includes a plurality of retaining slots corresponding to the hooking elements, and at least one magnetic element located on one side of the base facing toward the carrier member. To cover the separable module onto the base, first cause the carrier member to be magnetically attracted to the at least one magnetic element and align the hooking elements with the retaining slots, and then move the separable module for the hooking elements to engage with the retaining slots, so that the separable module is held to the base.
Abstract:
The present invention discloses a data processing device and a motherboard thereof. The feature of the present invention is separating the motherboard thereof into two daughter boards. The first daughter board is fixed to the data processing device, and the second daughter board is connected to the first daughter board through a connector. The units that frequently be changed, such as a data processing component and data storing component, are disposed on the second daughter board. Besides, a hard disk signal bus of the data processing device, an optical disk drive signal bus, or a screen signal bus may be electrically connected to the first daughter board. As a result, when the data processing device is under maintenance or upgrade, the second daughter board can be removed without removing the casing, and also the plug-in and plug-out frequency of the connectors can be lower.
Abstract:
The present invention discloses a notebook computer and a motherboard module thereof. The notebook computer comprises a base module, a motherboard module, and a screen module. The base module comprises a base and a base casing. Besides, the screen module is pivotally connected to the base casing and is electrically connected to the base. Furthermore, the motherboard module comprises a motherboard and a motherboard cover, and the motherboard cover is integrated with the motherboard and disposed to cover one side of the motherboard. When the motherboard electrically connects to the base, the base casing is seamlessly connecting to the motherboard cover so as to establish an integral whole appearance. As a result, the difficulty of the removal can be surmounted, and the plug-in and unplugging frequency of the connectors of the notebook computer during the removal process can be lower.
Abstract:
Provided is a method for scheduling cloud-computing resource, and a system applying the method is herein disclosed. It is featured that the load history record becomes a basis to obtain a computing pattern for each computing node based on a request. The load history is the basis to predict the future computing capability, and accordingly to distribute the computing task. The cloud-computing capability can therefore be advanced. The method firstly receives a computing request. The request includes a number of computing nodes, a start time of computing, and a length of computing time. A computing resource table is established based on the load history for each node, and used to calculate availability and confidence. After that, a resource expectation value is obtained from the availability and confidence. After sorting the expectation values, one or more computing nodes are selected for further task distribution.
Abstract:
A computer apparatus, a wireless network transmission system and its transmission method are disclosed. The computer apparatus comprises a power supplier, a first circuit architecture, a second circuit architecture and a power controller. A power is provided by the power supplier. The main functionality of the computer apparatus is provided by the first circuit architecture. The second circuit architecture includes a controller, a storage unit and a communication unit. The power controller is electrically connected to the power supplier to provide the power to the first circuit architecture or the second circuit architecture. The first circuit architecture includes the second circuit architecture. The power provided by the power controller is supplied to the first circuit architecture while the computer apparatus is in operating state. The power provided by the power controller is supplied to the second circuit architecture while the computer apparatus is in power-off state. The communication unit is then utilized for wireless transmission.