Abstract:
A method for fabricating a non-volatile memory device includes forming a gate layer over a substrate having a cell region and a peripheral circuit region, forming a gate pattern corresponding to a region for selection lines and a region between neighboring selection lines in the cell region, where during the forming of the gate pattern, word lines in the cell region and a peripheral circuit gate in the peripheral circuit region are formed by selectively etching the gate layer, forming spacers on sidewalls of the peripheral circuit gate, and forming the selection lines by selectively etching a portion of the gate pattern corresponding to the region between the neighboring selection lines.
Abstract:
Provided are an apparatus and a method for controlling a wiper and washer. An apparatus for controlling a wiper and washer, includes a wiper to wipe a windshield of a vehicle, a washer to eject washer fluid to the windshield of the vehicle, and an intelligent multi-function module (IMFM) to utilize a temperature sensing function of the vehicle according to a selected intelligent multi-function mode, and control the wiper and washer according to a sensed temperature with respect to the vehicle.
Abstract:
A method and apparatus for performing parallel box filtering in region based image processing is provided. The method of performing parallel box filtering in region based image processing includes selecting parallel pixel blocks having a size of M×N to be operated in parallel, selecting pixels included in a mask region having a size of K×L that is a parallel pixel operation region and a first region having a size of (M+K−1)×(N+L−1) that corresponds to overlapping masks of M*N, selecting pixels of a second region commonly included in the mask regions of M*N and storing the results of operation with respect to the pixels of the second region as repeated operation values, and operating block operation values with respect to the parallel pixel blocks using the repeated operation values.
Abstract:
A wiper control system and method is disclosed. When an ignition-on switch is turned off while the wiper is being operated, a wiper motor is controlled to return to its home position. When a predetermined switch is operated for more than a predetermined period while the ignition-on switch is turned off, the wiper motor is operated until the operation of the predetermined switch is stopped. When a door lock signal is produced by a remote door controller after an ignition-on switch is turned off while a wiper is being operated, the wiper motor is controlled to return to its home position. When a door unlock signal is produced by a remote door controller while the ignition-on switch is turned off, the wiper motor is controlled to operate for a predetermined period and then to return to its home position.
Abstract:
Disclosed herein is an intelligent wiper control system for a vehicle. A rain sensor unit controls the speed of wipers based on the amount of rain. An electronic control unit analyzes the input signal of the input unit. An output unit controls the output integrated circuits, and adjusts and controls the driving of the wiper motor. The input unit includes a remote key for inputting a signal for controlling the driving of a wiper system and wirelessly transmitting the signal. An output unit causes an emergency light to blink when the drive power of the wiper motor is set to firm power and the driver turns off an ignition key and then gets out of the vehicle while wipers are turned on.
Abstract:
Provided is a wiper control device. The device includes a first output IC, a direct driving switch, a second output IC, and an MCU. The first output IC supplies a power source for a wiper operation control in IG2 OFF state. The direct driving switch directly drives wipers. The second output IC intermits the power source to a wiper motor. The MCU controls the second output IC to drive the wipers depending on the direct driving switch.
Abstract:
A method of fabricating a compound device includes forming a first gate insulating pattern on a semiconductor substrate including a first region and a second region, forming a second gate insulating layer on the first gate insulating pattern, and after forming the second gate insulating layer, forming a well in the second region of the semiconductor substrate.
Abstract:
Provided is a method for producing an antibody binding to a sulfonylated isoform of a protein; not to a non-sulfonylated isoform of the protein and other proteins, including: providing a peptide comprised of 6 to 15 amino acids derived from the protein and having a sulfonylated cysteine residue; inducing an antibody to the peptide in an animal; and isolating a population of antibodies reactive to the peptide.
Abstract:
The present invention provides a manufacturing method of a thin film transistor array panel comprising forming a gate line on a substrate, forming a gate insulating layer and a semiconductor layer on the gate line in sequence, forming a data line having a source electrode and a drain electrode on the gate insulating layer and the semiconductor layer, and forming a pixel electrode connected to the drain electrode. At least one of the formation of the gate line and the formation of the data line includes a step of forming a slurry layer which is a mixture of conductor particles and a solvent, patterning the slurry layer by using a shaping mold with a prescribed pattern, and removing the shaping mold.
Abstract:
A nanowire composite and a method of preparing the nanowire composite comprise a template having a plurality of hollow channels, nanowires formed within the respective channels of the template, and a functional element formed by removing a portion of the template so that one or more of the nanowires formed within the portion of the template are exposed. Since the nanowire composite can be prepared in a simple manner at low costs and can be miniaturized, the nanowire composite finds application in resonators and a variety of sensors.