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:
A signal transmission device is installed on a motherboard and is electrically connected to a signal control unit and a display output interface. The signal transmission device includes a signal receiving port, a signal output port, and a printed circuit connecting port. The signal receiving port is used for receiving a signal transmitted from the signal control unit. The signal output port is used for single output of the signal to the display output interface. The printed circuit connecting port is used for transmitting the signal from the signal receiving port to the signal output port. Thus, the signal transmission device may be used for single signal output so as to replace a switch integrated circuit of selective signal output. In such a manner, related circuit redesign and manufacturing cost may be reduced accordingly when the motherboard signal output design is changed from selective signal output to single signal output.
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:
A portable apparatus having an electronic control system and a control method thereof are provided. The portable apparatus comprises an operation system, an accessing device and a basic input/output system (BIOS), and the electronic control system comprises a G-sensor and an embedded controller (EC) for initializing the G-sensor, wherein the G-sensor senses the acceleration of the portable apparatus and compares the acceleration value with the threshold value. The operation system comprises an application program (AP) and an advanced configuration and power interface (ACPI). When the acceleration value is higher than the threshold value, the G-sensor sends out a first signal to the EC, and the EC sends out a second signal to the BIOS, and the BIOS sends out a third signal to the ACPI, and the ACPI sends out a fourth signal to the AP to give a park command for parking the reading head of the accessing apparatus.
Abstract:
A power control circuit is provided. The circuit is adapted for an advanced configuration and power interface (ACPI) controller to transform output signals of a chipset which outputs a STR (Suspend to RAM) control signal and a power control signal. The circuit generates control signals of the ACPI controller by performing logical operations on the STR control signal and the power control signal. The control signals of the ACPI controller are used to regulate the power supply state of a host system.
Abstract:
A display processing construct utilized in information device, discloses a first and a second display processing devices. The display signal outputs from the first and second display processing devices are against the switches separately, wherein the switching of switches are utilized to choose or control the delivery of display signal from the first or the second display processing devices to the displayer. Further a selector is used to control or choose the contact of the switch of the first or second display processing devices so as to deliver the display signal from the first or the second display processing devices to the displayer and contain the power supply module to offer the power to said selected display processing device. The user can choose the appropriate display processing device according to the desirable effectiveness of the displaying and further advance the function of the information device and save the power of the battery.
Abstract:
An input apparatus and input method thereof are disclosed. The input apparatus includes an input interface, a processing unit and an execution unit. The input interface is a touch screen or a touch panel that is provided for a user to input a handwritten track with a stroke by utilizing a finger or a stylus. The processing unit then analyzes and compares with the turning trend of the handwritten track with a predetermined handwritten track. Lastly, the execution unit executes a predetermined corresponding function based on the degree of the similarity between the two turning trends.
Abstract:
The present invention is to provide an apparatus for storing data comprising a substantially parallelepiped housing, a connector provided at one end of the housing, and at least one volatile memory, a control circuit and power supply means provided therein, wherein the power supply means is able to supply power to both the volatile memory for storing data and the control circuit for maintaining its normal operation. In response to an insertion of the connector to an electronic device, data received from the electronic device via the connector is then processed by the control circuit and then stored in the volatile memory for substantially being read by the electronic device via the control circuit.
Abstract:
A stacked power supply system applied for an electronic device is provided. The stacked power supply system has an adapter and multiple battery modules. The adapter has a power plug, a power supply connector and a battery connector. The adapter is connected to an external AC power via the power plug, and converts the alternating current to the direct current, so as to supply power to the electronic device via the power supply connector. The battery modules have a battery set, a first connector and a second connector. The first connector of one of the battery modules is electrically connected to the battery connector of the adapter, the second connector of other neighboring battery modules is adapted to the first connectors of the neighboring battery modules, so as to form a stacked battery modules structure.
Abstract:
A synchronizing method is applied to processors each installed with a control program, a player program and a combination thereof, and display devices each electrically connected to one of the processors. The method includes: defining the control program of one of the processors as a primary control program; defining a system time of the primary control program as a standard time for the player programs; by the primary control program sending a first play command instructing each player program to start playing image data at a time position corresponding to the standard time; by the primary control program sending a state command to instruct each player program to return a first decoding position; and by the primary control program determining, according to the first decoding positions, whether the image data played by one of the player programs is synchronous to the image data played by another one.