Abstract:
A light guide plate comprises two supporting bars and a light transmission plate. Each of the supporting bars includes a wall and a first supporting protruded element. Each of the walls has a wall surface, which face each other. Each of the first supporting protruded elements is connected to one of the walls, and is protruded outside the wall surface. The light transmission plate has a light exiting surface, a light entering side surface and a bottom surface. The light exiting surface is disposed oppositely to the bottom surface, and the light entering side surface is connected between the light exiting surface and the bottom surface. The light transmission plate is connected between the supporting bars. Each of the first supporting protruded elements is disposed above the light exiting surface, and a first gap is disposed between each of the first supporting protruded elements and the light exiting surface.
Abstract:
A parallel-to-serial conversion method for IBMA in a Reed Solomon decoder is used for obtaining discrepancies in IBMA iterations, thereby acquiring an error location polynomial and an error value polynomial. Syndrome sequences for the calculation of discrepancies in IBMA iterations have a fixed length. The number of syndromes is t+1, where t is the largest number of symbols that can be corrected of the error location polynomial. The feature that syndrome sequences have the same length is based on the fact that the discrepancies are not affected if the coefficients of polynomial orders of the error location polynomial are zero.
Abstract:
A light source device including light-emitting diodes (LEDs) and a carrier is provided. Chromaticities of some LEDs fall in a first area of a chromaticity coordinate diagram, while chromaticities of the other LEDs fall in a second area of the chromaticity coordinate diagram. The second area and the first area are point symmetric to a white center of the chromaticity coordinate diagram. A chromaticity coordinate value farthest from the white center in the first area is (X1, Y1), and a chromaticity coordinate value farthest from the white center in the second area is (X2, Y2), wherein 0.06≧|X1−X2|≧0.03 and 0.06≧|Y1−Y2|≧0.03. The LEDs are disposed on the carrier, and a chromaticity difference of any two adjacent LEDs in the chromaticity coordinate diagram is (ΔX, ΔY), wherein |ΔX|≦0.01 and |ΔY|≦0.01.
Abstract translation:提供了包括发光二极管(LED)和载体的光源装置。 一些LED的色度落在色度坐标图的第一区域中,而其他LED的色度落在色度坐标图的第二区域中。 第二区域和第一区域与色度坐标图的白色中心点对称。 在第一区域中距离白色中心最远的色度坐标值为(X1,Y1),并且在第二区域中与白色中心最远的色度坐标值为(X2,Y2),其中0.06≥| X1-X2 |≥ 0.03和0.06≧| Y1-Y2 |≥0.03。 LED被布置在载体上,并且色度坐标图中任何两个相邻LED的色度差为(&Dgr; X,&Dgr; Y),其中|&Dgr; X |≦̸ 0.01和|&Dgr; Y |≦̸ 0.01。
Abstract:
A backlight module has a light guide plate and a frame, wherein the light guide plate includes at least a bump or at least a breach, and at least a pin is arranged on the frame, so as to the bump or the breach may be engaged with the pin. The pin on the frame not only fixes and positions the light guide plate but also prevents the light guide plate from leaking light and enhances the structure strength.
Abstract:
A backlight module is provided, including a back-plate, a light-source structure having a cover, wherein the light-source structure set on the back-plate, and a resilient element, which can be set on any one of the cover of the light-source structure and the back-plate. The cover of the light-source structure is electrically contacts with the back-plate and furthermore fixed the cover on the back-plate via the resilient element. Therefore, the resilient element is utilized to force the metal surface of the cover of the light-source structure to tightly contact with the metal of the back-plate, and so as to enhance the grounding effect.
Abstract:
A backlight module and a feedback circuit structure thereof are provided. The backlight module comprises a plurality of tubes, a driving module, and the feedback circuit structure. The feedback circuit structure comprises a substrate, a plurality of tube contacts, a plurality of independent feedback contacts and at least a common feedback contact. The tube contacts, the independent feedback contacts and the common feedback contact are disposed on the substrate. Each independent feedback contact is electrically connected to one of the tube contacts. The common feedback contact is electrically connected to one of the independent feedback contacts. An independent feedback can proceed by transmitting feedback signals from each independent feedback contact to a corresponding lamp tube. A common feedback can proceed by first coupling the independent feedback contacts together and then transmitting feedback signals from the common feedback contact to a multiple of lamp tubes.
Abstract:
An adjustable ventilation mattress including an inflatable upper filling layer consisted of rows of inflatable plastic tubes arranged in the longitudinal direction, an inflatable lower filling layer consisted of rows of inflatable plastic tubes arranged in the transverse direction below the inflatable upper filling layer, an air permeable covering covered over the inflatable upper and lower filling layers, and a controller controlled to inflate or selectively inflate the inflatable plastic tubes of the inflatable upper filling layer and/or the inflatable lower filling layer according to a predetermined setting for changing the configuration of the mattress.
Abstract:
A light bar structure including a circuit board provided with two hollow frames disposed thereon and a conductive material filled in the two hollow frames; and a light emitting device disposed above the two hollow frames. The conductive material is used for electrically connect the circuit board with the light emitting device so as to prevent misalignment of the light emitting device. A backlight module and a liquid crystal display both applying the light bar structure is also provided.
Abstract:
A light source device including light-emitting diodes (LEDs) and a carrier is provided. Chromaticities of some LEDs fall in a first area of a chromaticity coordinate diagram, while chromaticities of the other LEDs fall in a second area of the chromaticity coordinate diagram. The second area and the first area are point symmetric to a white center of the chromaticity coordinate diagram. A chromaticity coordinate value farthest from the white center in the first area is (X1, Y1), and a chromaticity coordinate value farthest from the white center in the second area is (X2, Y2), wherein 0.06≧|X1−X2|≧0.03 and 0.06≧|Y1−Y2|≧0.03. The LEDs are disposed on the carrier, and a chromaticity difference of any two adjacent LEDs in the chromaticity coordinate diagram is (ΔX, ΔY), wherein |ΔX|≦0.01 and |ΔY|≦0.01.
Abstract translation:提供了包括发光二极管(LED)和载体的光源装置。 一些LED的色度落在色度坐标图的第一区域中,而其他LED的色度落在色度坐标图的第二区域中。 第二区域和第一区域与色度坐标图的白色中心点对称。 在第一区域中距离白色中心最远的色度坐标值为(X1,Y1),并且在第二区域中与白色中心最远的色度坐标值为(X2,Y2),其中0.06≥| X1-X2 |≥ 0.03和0.06≧| Y1-Y2 |≥0.03。 LED被布置在载体上,并且色度坐标图中任何两个相邻LED的色度差为(&Dgr; X,&Dgr; Y),其中|&Dgr; X |≦̸ 0.01和|&Dgr; Y |≦̸ 0.01。
Abstract:
A backlight module has a light guide plate and a frame, wherein the light guide plate includes at least a bump or at least a breach, and at least a pin is arranged on the frame, so as to the bump or the breach may be engaged with the pin. The pin on the frame not only fixes and positions the light guide plate but also prevents the light guide plate from leaking light and enhances the structure strength.