Abstract:
A fixture component for a liquid crystal display (LCD) module (LCD) is provided. The fixture component clamps and encloses the LCD module with a front cover and an enclosing member to clamp and wrap the LCD module, so as to form an LCD assembly. A visible portion is formed on a front side surface of the front cover in a protrusive manner, corresponding to a display side of the LCD module. The visible portion enhances the antistatic property of the LCD module. Meanwhile, the visible portion fits an opening of a case, so that the LCD assembly is mounted and fixed in the case more easily.
Abstract:
An illumination button applied to an illumination switch assembly is provided. The illumination button includes a light guide body and a button cap. The light guide body is disposed in the button cap to press a switch element with a pressing bump and to receive light from a light source with a light receiving structure. The light received by the light receiving structure is guided by the light guide body to leave a top surface of the button cap through a light exiting structure. Two connecting members are disposed on an edge the button cap, wherein the two connecting members provided to be clamped by clamping members disposed on an inner surface of a housing, so as to hold the button cap in a button hole of the housing. Therefore, the button cap is able to be installed to the housing quickly with out using a tool.
Abstract:
A reading method applied for a memory, which includes a cell row including a first memory cell coupled to a first bit line and a second memory cell coupled to a second bit line is provided. The reading method comprises the following steps. Firstly, the first bit line coupled to a first terminal of the first memory cell is selected for reading the first memory cell in a time period. Next, the second terminal of the first memory cell is discharged via the second bit line coupled to the second memory cell in the time period.
Abstract:
A closure device includes: a main body having first and second shoulders; a door secured rotatably to the main body and having first and second door edges; an engaging member; an engaging mechanism; and a second pivot axle. The first shoulder and the first door edge respectively have a through hole and a first axle hole. The engaging member and the engaging mechanism are disposed respectively at an inner side of the main body. The engaging member includes a first pivot axle extending through the through hole and the first axle hole, and a positioning piece extending radially from the first pivot axle and engaging the engaging mechanism. One of the second shoulder and the second door edge has a second axle hole, while the other of the second shoulder and the second door edge has the second pivot axle extending through the second axle hole.
Abstract:
This invention comprises an improved electroporation electrode system comprising a single needle and a ring or donut shaped electrode wherein the difference in surface area of the electrodes provide for a substantial reduction of current density near the surface of the treated tissue and a more concentrated current density sufficient for electroporation only in tissues adjacent to the terminal portion of the single needle electrode. Thus, this invention provides for targeting specific tissue for electroporation and also should provide for lessening the sensation of electric current in the treated tissue.
Abstract:
A static latch includes a clock-based driver, an actuation circuit, and a weak latched unit. The clock-based driver includes first node, second node, a driving unit, first pass switch, and second pass switch. The driving unit drives the first node corresponding to first voltage in response to first level of an input signal and drives the second node having second voltage in response to second level of the input signal. The first pass switch drives an output node having a latched signal corresponding to the first voltage in response to the clock signal. The second pass switch drives the output node corresponding to the second voltage in response to the inverted clock signal. The actuation circuit drives the output node corresponding to the second voltage in response to the clock signal. The weak latch unit keeps the level of the latched signal when the static latch is disabled.
Abstract:
A method adjusts driving ability of an output buffer. The output buffer has multiple driving ability classes. The method includes the following steps. First, the driving ability of the output buffer is initialized as an initial class among the driving ability classes. Next, a voltage at an output terminal of the output buffer is initialized to an initial voltage. Then, an input voltage is inputted via the input terminal at a first time instant. Next, an output voltage outputted from the output terminal is sampled to obtain a voltage value at a second time instant. Then, whether the voltage value satisfies a predetermined condition is judged. Next, if the voltage value satisfies the predetermined condition, the driving ability class of the output buffer is recorded and set.
Abstract:
The present invention discloses a piston device which is disposed in a cylinder. The cylinder has a chamber including a bore and an inner wall. The piston device comprises a piston body and at least an annular ring. The piston body has a top side and a bottom side, the diameter of the piston body is smaller than the bore, and either one of the top side or the bottom side has a convex portion. The annular ring is clamped to the top side or the bottom side by engaging said convex portion, and the annular ring has a diameter slightly larger than the diameter of the piston body. While said piston therein moves reciprocally at which the axial direction of the cylinder, the annular ring slides against the inner wall but the piston body has no contact with said inner wall.
Abstract:
The present invention is a multiple-apparatus connection system; the multiple-apparatus connection system comprises a USB port, a controller, and a voltage determining device. The USB port connects to a peripheral device. The voltage determining device connects to the USB port to generate a detection voltage signal. The controller receives the detection voltage signal and determines the type of the connected peripheral device according to the detection voltage signal.
Abstract:
A level shifter includes a first level-switching device and a second level-switching device. The first level-switching device includes a first switch device, a second switch device, a first control switch and a third switch device. The first switch device is for receiving the input voltage and outputting a first voltage. The second switch device is coupled to the first switch device for outputting a first operational voltage as the output voltage according to the first voltage. The first control switch is coupled to the first switch device for receiving the first voltage. The third switch device is coupled between the first control switch and the first operational voltage and controlled by the output voltage. The second level-switching device is coupled to the first level-switching device for receiving the input voltage and accordingly outputting a second operational voltage as the output voltage.