Abstract:
A solar module array includes a plurality of solar cell modules. Each solar cell module includes a solar cell panel and a metal frame for securing the solar cell panel. The metal frame includes an upper horizontal member, a lower horizontal member and a vertical member. The upper horizontal member is for holding the solar cell panel. The vertical member is interconnected between the upper and lower horizontal members, and a set of bolt and nut electrically connect any adjacent-two vertical members. In an alternate way, the auxiliary member extends from the vertical member, and a set of bolt and nut electrically connect two overlapped auxiliary members of any adjacent-two vertical members.
Abstract:
A system for displaying images. The system comprises a transflective liquid crystal display (LCD) panel comprising lower and upper substrates opposing each other and a liquid crystal layer disposed therebetween. The lower substrate comprises reflective and transmissive regions. A stack of a protective layer, a transparent electrode and a reflective electrode is disposed on the lower substrate of the reflective and transmissive regions. The reflective electrode comprises an opening corresponding to the transmissive region to substantially expose the underlying transparent electrode. A transparent dielectric layer is disposed on the surface of the upper substrate facing and corresponding to the lower substrate of the reflective region.
Abstract:
A layout of a printed circuit board adaptive to be bonded to an integrated circuit device is introduced here. The layout includes a first metal layer, disposed in a first insulation layer and a second metal layer, disposed in a second insulation layer over the first insulation layer. The first metal layer and the second metal layer are connected to each other through a plurality of contact hole filled with conductive materials and are arranged to be substantially parallel to each other throughout a pad structure region and a line structure region of the printed circuit. The connected first metal layer and second metal layer are used for a signal path from the printed circuit board to the bonded integrated circuit device to improve driving ability of power supply.
Abstract:
A system for displaying images is disclosed. A display panel having a multi-domain pixel structure comprises a plurality of electrodes that are physically separated form one another, each defining a domain within pixel, and a capacitance element, electrically connecting the electrodes.
Abstract:
A system for displaying images comprises a thin film transistor (TFT) device comprising a substrate having a pixel region and a terminal region. A first conductive layer is disposed on the substrate, comprising a gate electrode for a thin film transistor in the pixel region and at least one track in the terminal region. An interlayer dielectric layer is disposed on the substrate, covering the thin film transistor and the track. A second conductive layer is disposed on the interlayer dielectric layer in the pixel region, electrically connected to the thin film transistor to serve as a source/drain electrode thereof and electrically connected to the track in the terminal region. A planarization layer is disposed on the interlayer dielectric layer in the pixel region.
Abstract:
Systems for displaying images and methods of fabricating are provided. A representative system incorporates a transflective thin film transistor liquid crystal display (TFT-LCD) panel having a plurality of subpixels. The display panel comprises a first substrate with a transparent electrodeformed thereon, a reflective electrode on the transparent electrode, a second substrate opposite the first substrate, a liquid crystal layer between the first substrate and the second substrate. The panel also exhibits at least one of: the reflective electrode and the transparent electrode overlap by substantially between 100 and 1000 square micrometers; the reflective electrode and the transparent electrode overlap such that a ratio of an area of overlap of the reflective electrode and the transparent electrode to an area of a corresponding subpixel is substantially between 0.05 and 0.12; and a ratio of an area of the transparent electrode to an area of a corresponding subpixel is substantially between 0.5 and 0.6.