Abstract:
A light emitting module includes a body, first to Mth (wherein, M is an integer of 2 or greater) light emitting devices provided on the body to be spaced apart from each other, and a turn-on controller controlling the first to Mth light emitting devices to turn on. An mth (1≦m≦M) light emitting device among the first to Mth light emitting devices comprises first to Nth (wherein, N is an integer of 2 or greater) light emitting cells connected to each other in series. An nth (1≦n≦N) light emitting cell among the first to Nth light emitting cells includes at least one light emitting structure, and the turn-on controller simultaneously turns on or turns off the nth light emitting cells of the first to Mth light emitting devices.
Abstract:
Disclosed herein are a mobile communication terminal using Near Field Communication (NFC) and a method of controlling the same. The mobile communication terminal receives data from an NFC active tag during NFC communication. The mobile communication terminal includes an NFC antenna for receiving a data signal from the active tag, an NFC controller for performing control so that a session with the active tag is set up, and receiving the data signal, a function control unit for receiving the data signal from the NFC controller and analyzing the data signal, and a terminal control unit for performing functions of the mobile communication terminal. The data signal of the active tag is a function control signal including a command to control at least one function of the mobile communication terminal. The function control unit extracts the command, applies the command to the terminal control unit, and executes the command.
Abstract:
A flat lighting module includes: a frame including a base and an extension portion extending from the base; a light source unit placed on the base that includes a plurality of light emitting devices; and a diffusion plate placed on the light source unit, wherein a light emitting device that is the closest to the extension portion among the plurality of the light emitting devices of the light source unit is disposed separately from the extension portion at a predetermined interval.
Abstract:
A method of controlling a call that can apply the service fee system according to user's selection. The method includes: alarming a reception of a first call request message in case a second terminal receives the first call request message from a first terminal; generating a call rejection message for the first call request message by the second terminal; transmitting by the second terminal the generated call rejection message to the first transmitting terminal; and generating a second call request message and transmitting by the second terminal the generated second call request message to the first terminal.
Abstract:
An LCD device and a driving method thereof are disclosed.The LCD device and the driving method thereof accurately recognize an input pattern and perform the operation of any one of several inversion systems corresponding to the recognized pattern. Also, the LCD device and the driving method thereof detects the priority order of at least two different patterns and perform the operation of an optimized inversion system, even though at least two different patterns input.
Abstract:
An event displaying method and a portable terminal adapted to the method are provided. The method displays events in the portable terminal whose environments are set according to pieces of user information. The method includes setting an environment of the portable terminal based on an environment selected from among the pieces of information, identifying, if a communication event is received by the portable terminal while it is operated in the set environment, connecting information included in the received communication event, determining whether the identified connecting information is included in the selected user information, determining, if it is determined that the identified connecting information is not included in the selected user information, whether the identified connecting information exists in other user information, and displaying, if it is determined that the identified connecting information exists in other user information, the other user information and the communication event.
Abstract:
A light pipe and an illuminating device having the light pipe may be provided. The light pipe may include an optical film having a glass transition temperature of approximately 110° C. to approximately 180° C.
Abstract:
A method of forming a sensor for detecting gases and biochemical materials that can be fabricated at a temperature in a range from room temperature to 400° C., a metal oxide semiconductor field effect transistor (MOSFET)-based integrated circuit including the sensor, and a method of manufacturing the integrated circuit are provided. The integrated circuit includes a semiconductor substrate. The sensor for detecting gases and biochemical materials includes a pair of electrodes formed on a first region of the semiconductor substrate, and a metal oxide nano structure layer formed on surfaces of the pair electrodes. A heater is formed to perform thermal treatment to re-use the material detected in the metal oxide nano structure layer. Also, a signal processor is formed by a MOSFET to process a predetermined signal obtained from a quantity change of a current flowing through the pair of electrodes of the sensor. To form the sensor, the metal oxide nano structure layer is formed on surfaces of the pair of electrodes at a temperature in a range from room temperature to 400° C.
Abstract:
An image processing device is provided. The image processing device includes a weighted low-pass filter which performs weighted low-pass filtering on illumination of sub-sampled pixel signals, and an illumination interpolation circuit which compares illumination of the weighted low-pass filtered pixel signals with illumination of current pixel signals and performs interpolation while applying a weight to illumination of the weighted low-pass filtered pixel signals according to the comparison result.
Abstract:
A lighting module includes: a case having a main base a first and a second extension parts extending from both sides of the main base in perpendicular direction to the surface of the main base, and a first and a second auxiliary bases extending from the first and the second extension parts respectively toward the center of the main base; a substrate seated in a cavity formed by structurally connecting the main base, the first and the second extension parts and the first and the second auxiliary bases; a plurality of light emitting devices disposed on one side of the substrate in the longitudinal direction of the substrate; and a driving driver disposed on the other side of the substrate, wherein at least one of the first and the second extension parts has an opening such that the driving driver is inserted into the first and the second extension parts.