Abstract:
A wireless power transmission device includes a power transmitter, a first transmission unit, a power receiver, a feedback regulator, a receive controller, and a second transmission unit. The power transmitter is for generating power, and the first transmission unit is for wirelessly transmitting power generated by the power transmitter. The power receiver is for receiving and rectifying the power from the first transmission unit. The feedback regulator is for receiving a feedback signal from the power receiver to generate an AC control signal. The receive controller is for receiving the control signal to generate a driving signal. The second transmission unit is for wirelessly transmitting the control signal to the receive controller.
Abstract:
A frame assembly including a frame and a bracket is disclosed. The frame has a sliding groove and a first engaging groove, wherein the sliding groove is formed at one side of the frame and the first engaging groove is formed in the sliding groove. The bracket has a body and a first engaging part, wherein the first engaging part is extended from the body. When the body is disposed in the sliding groove, the first engaging part is engaged in the first engaging groove.
Abstract:
A display device includes a first flexible substrate, a second flexible substrate and a patterned sealant. The patterned sealant is disposed between the first flexible substrate and the second flexible substrate. The patterned sealant includes a hollow rectangular pattern, which is disposed in a peripheral region of the first flexible substrate, and has a rectangular opening corresponding to an active region of the first flexible substrate. The rectangular opening has a long side parallel to a first direction and a short side parallel to a second direction, and the long side has a long side length x1 and the short side has a short side length y1. The hollow rectangular pattern has a first width x2 in the first direction, and a second width y2 in the second direction, wherein y2≦x2, y1≧x1 and 10≦y1/y2≦90.
Abstract:
A pixel includes four sub-pixels. The pixel is used to receive a plurality of signal values to display an image. The signal values are N-bit signal values, and the largest value of the signal values is (2N−1). The method of displaying the image with the pixel includes providing three color signals, generating four transformation signals corresponding to the four sub-pixels according to the values of the three color signals, and using four output signals to display the image of the pixel when the color saturation value is not larger than a first predetermined value and a fourth transformation signal of the four transformation signals is larger than other three transformation signals of the four transformation signals.
Abstract:
A liquid crystal display device includes a display panel, a multiplexer, an alignment circuit and a short bar circuit. The multiplexer is configured to provide a plurality of output data signals according to a plurality of switch control signals and an input data signal. During the alignment period, the alignment circuit is configured to provide a curing voltage to the display panel, and the short bar circuit is configured to couple the multiplexer to a predetermined voltage.
Abstract:
A method of fabricating solar cell uses simplified processes to form a lightly-doped region having a textured surface and a heavily-doped region having a flat surface. A flat interface is formed between the heavily-doped region and an electrode, which has a relative lower contact resistance.
Abstract:
An embedded sensor of a touch panel includes at least a readout unit and a reset unit. The total readout length or the total reset length during each sensing period may be larger than the pixel refresh period by introducing other readout units, introducing other reset units, or increasing the enabling period of the gate driving signals, thereby enhancing the sensibility of the touch panel.
Abstract:
A backlight module is disclosed in the present invention. The backlight module includes a light guiding plate, a light source, a transformer and a constrainer. The transformer is disposed between the light guiding plate and the light source. The transformer is for transforming a first beam emitted from the light source into a second beam, so as to transmit the second beam to the light guiding plate, wherein a spectrum of the first beam is different from a spectrum of the second beam. The constrainer is connected to the light source for constraining a movement of the transformer. The constrainer includes a first fixing portion disposed on the light source and a second fixing portion connected to the first fixing portion, the second fixing portion being disposed on the transformer to fix the transformer relative to the light source.
Abstract:
A pixel structure of an electroluminescent display panel includes a first sub-pixel region, a second sub-pixel region, a third sub-pixel region and a fourth sub-pixel region having different cavity lengths. The first sub-pixel region and the second sub-pixel region share a first organic light-emitting layer, which can generate a first primary color light in the first sub-pixel region, and a second primary color light in the second sub-pixel region. The third sub-pixel region and the fourth sub-pixel region share a second organic light-emitting layer, which can generate a third primary color light in the third sub-pixel region, and a fourth primary color light in the fourth sub-pixel region. The first primary color light, the second primary color light, the third primary color light and the fourth primary color light have different spectra of wavelength.
Abstract:
An LCD panel transmits the display data to sub-pixels in a zigzag pattern through a data line. The variation of the feed-through voltages of the sub-pixels may be modified by adjusting the ratios of the channel widths and the channel lengths of the TFTs in the sub-pixels to some predetermined ratios, or by adjusting the compensation capacitance to the coupling capacitance of the TFTs of the sub-pixels.