Abstract:
An LCD includes a liquid crystal panel, first and second polarizing plates attached to opposing surfaces of the liquid crystal panel, a first front light unit over a front side of the liquid crystal panel, a second front light unit over a rear side of the liquid crystal panel, a first film disposed between the first polarizing plate and the first front light unit, for receiving a surrounding light and directing the surrounding light toward the rear side of the liquid crystal panel, and a diffusion sheet disposed between the second polarizing plate and the second front light unit.
Abstract:
A dual display liquid crystal display (LCD) device includes a front light unit for supplying a light, a first polarizing plate disposed on the front light unit, a first phase compensation film disposed on the first polarizing plate, an LCD panel disposed on the first phase compensation film, a selective reflection/transmission unit disposed on the LCD panel, a second phase compensation film disposed on the selective reflection/transmission unit, and a second polarizing plate disposed on the second phase compensation film, wherein the selective reflection/transmission unit selectively reflects and transmits the incident light so that the dual display LCD device operates in reflection mode to display an image on a front side thereof in a first display mode and operates in a transmission mode to display an image on a rear side thereof in a second display mode.
Abstract:
A dual LCD device includes a liquid crystal panel having a liquid crystal layer interposed between a first substrate and a second substrate, first and second polarizing plates attached to opposing surfaces of the liquid crystal panel, a first front light unit attached to a front side of the liquid crystal panel, and a second front light unit attached to a rear side of the liquid crystal panel, and a partial reflector attached to a front surface of the first front light unit.
Abstract:
A dual LCD device includes a liquid crystal panel having a liquid crystal layer interposed between a first substrate and a second substrate, first and second polarizing plates attached to opposing surfaces of the liquid crystal panel, a first front light unit attached to a front side of the liquid crystal panel, and a second front light unit attached to a rear side of the liquid crystal panel.
Abstract:
The disclosure provides a system for guiding a user of a vehicle through a multi-option turn decision, and a method using the same. Specifically, the disclosure provides technology for displaying a distance measurement from the current location of a vehicle to all turn options in a region of the vehicle's route guide that has multi-option turn decisions, thereby preventing the user from being confused as to which turn to take.
Abstract:
Embodiments of the invention relate to a method, apparatus and computer readable storage medium wherein the method comprises; padding a data block of a data structure to enable encoding of the data block; encoding the data block; reducing the size of the encoded data block; and spreading the data block.
Abstract:
Apparatus, and an associated method, for recovering the informational content of data in an MIMO-OFDM communication system. Different data sets are communicated upon different subcarriers to a receiving station. Apparatus at the receiving station performs data value estimations based upon the communication conditions on the different subcarriers upon which the data is communicated. Separate path length estimations are performed upon the data communicated upon the different subcarriers, at complexity levels responsive to the communication conditions of the subcarriers.
Abstract:
A MIMO channel frequency response matrix is decomposed into a frequency-related part and a constant part. The constant part is independent of subcarrier index and of number of subcarriers in one symbol interval. Separated QR decomposition and either SVD or GMD is applied to the two parts. A right unitary matrix (R) is obtained from the SVD or GMD applied to the constant part. QR decomposition is applied to the constant part to generate a beamforming matrix (V). In another embodiment, a selection criterion based on a correlation matrix distance is used to select a beamforming matrix that is independent of subcarrier, the selected matrix is retrieved from a local memory and applied to a received signal. Noise covariance is computed for a noise expression which considers interference generated from the applied beamforming matrix. Data detection is performed on the received signal by a MIMO data detector using the noise covariance.
Abstract:
A multi-domain liquid crystal display device includes a liquid crystal layer between first and second substrates. A plurality of gate bus lines and data bus lines are arranged in a first and second direction, respectively, on the first substrate, to define a pixel region. A common-auxiliary electrode surrounds the pixel region on a same layer whereon the gate bus line is formed. A gate insulator and a passivation layer are formed over the whole first substrate. A pixel electrode, having an electric field inducing window in the inner part thereof, is formed in the pixel region. A light shielding layer is formed on the second substrate, a color filter is formed on the light shielding layer, a common electrode is formed on the color filter layer. An alignment layer is formed on at least one substrate between the first and second substrates.
Abstract:
A liquid crystal display device includes a first substrate, a second substrate having a seal region and an active region, a seal pattern on the seal region between the first and second substrates, a plurality of spacers in the active region and in the seal region, and a liquid crystal layer between the first and second substrates.