Abstract:
A tailgate folding device for an automotive vehicle constructed to vertically fold a midsection of the tailgate and thereby to avoid an external lower end thereof from touching a ceiling when the tailgate is opened at a place where the ceiling is low, thus promoting an effective use of the tailgate even at a confined area. The device has a tailgate vertically foldable and dividable via a hinge point into an upper portion and a lower portion thereof, a manipulating unit mounted at a folded site of the tailgate to control folding of the tailgate, and a locking unit for adequately converting a relative rotation of the divided tailgate from a restricted state to a released state according to the operation of the manipulating unit.
Abstract:
An apparatus, method, chipset, and non-transitory computer-readable storage medium for controlling power are provided. The apparatus includes a receiver configured to receive a data frame and first information related to a next data frame of the data frame; and a controller configured to determine an operation mode as an active mode or a sleep mode based on destination address information of the next data frame and duration information indicating a time during which transmission of the next data frame occurs, wherein the destination address information and the duration information are included in the first information.
Abstract:
A semiconductor device includes a substrate having a first conductive type active region, a second conductive type drift region in the active region, a gate covering the active region on the drift region, a gate insulating film disposed between the active region and the gate, a second conductive type drain region in a location spaced apart from the gate in the drift region and having a higher doping concentration than that of the drift region, a first conductive type shallow well region spaced apart from the drain region in the drift region and between the gate and the drain region, and a second conductive type source region formed in the first conductive type shallow well region between the gate and the drain region and having a higher doping concentration than that of the first conductive type shallow well region.
Abstract:
Provided are a method of driving a liquid crystal panel which prevents unintended digital image data from being displayed on a liquid crystal panel when power is provided or interrupted, and a source driver and a liquid crystal display apparatus. The source driver includes output buffers; output pads; and a switching unit which is disposed between the output buffers and the output pads and controls an electrical connection state of the output pads. If a level up or a level down of a power voltage occurs, the switching unit prevents output signals of the output buffers from being transmitted to the liquid crystal panel via corresponding output pads and performs at least one of a charge sharing operation for connecting the output pads to each other and a discharging operation for providing a discharge path from the output pads to a ground terminal, in a preset period.
Abstract:
Disclosed herein are novel benzophenone derivatives represented by formula I, a pharmaceutically acceptable salt thereof, a hydrate thereof or a solvate thereof, a pharmacological composition containing the same, and a use of the composition as therapeutic drugs. The benzophenone derivatives have an inhibition activity of microtubule formation and can be used to treat a normal proliferative state of a malignant tumor by killing the actively proliferating cells.
Abstract:
The embodiments described herein relate generally to medical devices that measure vital signs, and more particularly to wearable wireless devices that collect multiple simultaneous vital signs, and systems and methods for compressing the sensor data into a matrix representation to facilitate collecting, transmitting, processing, and displaying vital sign data.