摘要:
Provided is an image display device capable of adjusting brightness. The image display device includes a brightness determining unit that determines the brightness of image data, applied from outside, so as to output a backlight selection signal and a contrast selection signal; a backlight control unit that is connected to the brightness determining unit and outputs a backlight driving voltage for supplying backlight with brightness corresponding to the backlight selection signal; a contrast control unit that is connected to the brightness determining unit and outputs an image output signal for outputting an image of which the contrast is adjusted to correspond to the contrast selection signal; and an image display unit that is connected to the backlight control unit and the contrast control unit and receives the backlight driving voltage and the image output signal so as to display an image in which the brightness of the backlight and the contrast of the image data are respectively adjusted.
摘要:
Provided are a method for generating a two-dimensional orthogonal variable spreading code and a Multiple Input Multiple Output (MIMO) system using the same. The MIMO system can increase a communication capacity in an asynchronous multiple user system as well as a synchronous system in a wideband-Code Division Multiple Access (CDMA). The MIMO system includes: a transmitting block for temporally and spatially encoding a plurality of user data, spreading the user data into orthogonal channel signals, and transmitting them to antennas; and a receiving block for receiving the orthogonal channel signals and performing temporal and spatial decoding and despreading on them. Herein, the transmitting block includes: a space time code (STC) encoding unit for generating and outputting a predetermined number of STC streams; and a jacket orthogonal variable spreading function (JOVSF) channel code spreading unit for spreading the STC streams into orthogonal channel signals by using a JOVSF.
摘要:
The present disclosure is directed to a method for monitoring focus of a photolithography system. The method comprises providing a substrate and depositing a photoresist layer on the substrate. At least one photomask is provided comprising one or more forbidden pitch photomask patterns formed thereon. The forbidden pitch patterns are imaged in the photoresist layer by exposing the photoresist layer to radiation through the at least one photomask. The imaged forbidden pitch patterns are developed in the photoresist. Focus error information regarding the imaging process can be determined using the developed forbidden pitch patterns.
摘要:
Provided are a diffusion plate assembly having light diffusion and heat blocking effects and requiring no diffusion plate supporter and a backlight assembly including the diffusion plate assembly. The diffusion plate assembly includes a first plate diffusing light; a second plate disposed to face a surface of the first plate and blocking heat transfer toward the first plate and a spacer interposed between the first plate and the second plate and separating the first plate and the second plate.
摘要:
There is provided a lamp fixing holder. A lamp fixing holder for fixes a lamp to a receiving container. The lamp provides a liquid crystal display panel with light. The lamp includes a first portion of a face and a second portion of the face. The light emitted from the first portion of the face advances toward the liquid crystal display panel. The lamp fixing holder comprises a lamp fixing body and a fixing member. The lamp fixing body holds a third portion of the face of the lamp. The second portion includes the third portion. The fixing member fixes the lamp fixing body to the receiving container. The lamp fixing holder according to the present invention fixes the lamp so that the lamp does not sway, while minimizing an amount of light that is shielded by the lamp fixing holder.
摘要:
A method of manufacturing a capacitor-embedded low temperature co-fired ceramic substrate, the method including: manufacturing a capacitor part by firing a deposition including at least one high dielectric ceramic sheet to form a capacitor part; providing a plurality of low temperature co-fired green sheets each having at least one of a conductive pattern and a conductive via hole thereon; forming a low temperature co-fired ceramic deposition by depositing the low temperature co-fired green sheets to embed the capacitor part in the low temperature co-fired ceramic deposition, the embedded capacitor part connected to the one of conductive pattern and conductive via hole of an adjacent one of the green sheets; and firing the low temperature co-fired ceramic deposition having the capacitor part embedded therein. The capacitor-embedded low temperature co-fired ceramic substrate may be beneficially employed in various types of capacitor part such as a deposited chip capacitor and a capacitor layer structure.
摘要:
A packet detecting device used in a receiver employing PCI Express protocol is disclosed. The packet detecting device includes: a physical layer packet detecting unit for detecting a physical layer packet from a PCI express packet received and parallelized to 16 bit data through a physical deserializer; a descrambling unit for descrambling a physical layer packet from a PCI express packet received and parallelized to 16 bit data through a physical deserializer; a data link layer packet detecting unit for detecting a data link layer packet from a descrambled packet outputted from the descrambling unit; and a transaction layer packet detecting unit for detecting a transaction layer packet from a descrambled packet outputted from the descrambling unit.
摘要:
Disclosed is an LCD device including a noise shielding member. The noise shielding member is a transparent conductive member including a transparent film on which a transparent conductive layer is coated. The noise shielding member may also be a transparent conductive layer scattered on the optical sheets. The transparent conductive layer comprises ITO or IZO. The noise shielding member is disposed under the diffusing plate or interposed between optical sheets. The noise shielding member may be disposed under the LCD panel. The noise generated from the electric power signal applied to the lamp of the backlight assembly is shielded from the LCD panel. Furthermore, the noise shielding member and optical sheets contacts with the chassis of the LCD device through various ground members so as to be connected to earth potential and be electrically stabilized. Accordingly, display quality of the LCD device is improved.
摘要:
Provided is a light emitting diode including a base substrate having a via hole, a buffer layer having a via hole which is partially overlapped with the via hole of the base substrate, a first conductive contact layer formed on the buffer layer, a first clad layer formed on the second conductive contact layer, a light emitting layer formed on the first clad layer, a second clad layer formed on the light emitting layer, a second conductive contact layer formed on the second conductive clad layer, a first electrode formed on the second conductive contact layer, and a second electrode connected with the first conductive contact layer through the via hole.
摘要:
A data processing device includes a gamma processor applying a gamma function to grayscale data including red grayscale data, green grayscale data, and blue grayscale data to generate luminance data including red luminance data, green luminance data, and blue luminance data, a first compensation coefficient generator generating a first compensation coefficient, a second compensation coefficient generator calculating a first grayscale ratio of the blue grayscale data and a second grayscale ratio of the red grayscale data, and generating a second compensation coefficient, a data compensation coefficient generator generating a data compensation coefficient by multiplying the first compensation coefficient and the second compensation coefficient, a data compensator generating compensation luminance data by adding the luminance data to a value of the data compensation coefficient multiplied by the luminance data, and an inverse processor generating compensation grayscale data.