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Samsung Electronics Co., Ltd. -

City: Suwon-si
State/Country: KR






Samsung Electronics Co., Ltd. ( Suwon-si, KR )
A display substrate includes a gate electrode, a gate insulating layer, and a semiconductor layer that are sequentially formed on a substrate. Also, the display substrate includes a color filter layer formed on the substrate and exposing a portion of the semiconductor layer, and source and drain electrodes that each overlap with the semiconductor layer and the color filter layer. The gate electrode, the gate insulating layer, and the semiconductor layer have the same shape as each other, and the gate electrode is insulated from the gate insulating layer and the semiconductor layer by the color filter layer.
In a solid state imaging device, and a method of manufacture thereof, the efficiency of the transfer of available photons to the photo-receiving elements is increased beyond that which is currently available. Enhanced anti-reflection layer configurations, and methods of manufacture thereof, are provided that allow for such increased efficiency. They are applicable to contemporary imaging devices, such as charge-coupled devices (CCDs) and CMOS image sensors (CISs). In one embodiment, a photosensitive device is formed in a semiconductor substrate. The photosensitive device includes a photosensitive region. An anti-reflection layer comprising silicon oxynitride is formed on the photosensitive region. The silicon oxynitride layer is heat treated to increase a refractive index of the silicon oxynitride layer, and to thereby decrease reflectivity of incident light at the junction of the photosensitive region.
Disclosed is a programming method for a nonvolatile memory device. The method includes; charging word-line signal lines to a pass voltage during a pass voltage charge operation, simultaneously executing an initial precharge operation for strings including program-inhibited cells during the pass voltage charge operation, and applying the pass voltage to word lines from the word-line signal lines in response to a block-selection enabling signal
A method and apparatus for setting a wireless local area network (LAN) based on manipulating a button is provided. In the method, an existing wireless network links with a network that supports a wireless security setup. The method includes storing setup information about a currently associated wireless network if the currently associated wireless network exists, and performing the wireless security setup of the network that supports the wireless security setup, according to the stored information about the currently associated wireless network.
A method is described for adapting the size of data for a future Transmission Time Interval (TTI) by a User Equipment (UE), wherein all the Media Access Control (MAC)-d flows are grouped and stored in different lists based on a type of grants associated with the MAC-d flows, ability of a MAC-d flow to be multiplexed with another MAC-d flow from a list, and data availability in a logical channel mapped onto a MAC-d flow in the current TTI. The E-TFC is then selected by the UE for the future TTI using the MAC-d flow having the highest power offset in a consolidated list including the grouped MAC-d flows. The size of the data is thereby adapted using the selected E-TFC. Further disclosed is a method for generating RLC PDUs by the UE for the future TTI using the variation in the scheduled grant for the UE and the size of the data adapted for the future TTI.