Abstract:
다양한 실시예들에 따라서, 다양한 실시예들에 따라서, 전자 장치는 근거리 통신 모듈, 상기 근거리 통신 모듈과 작동적으로 연결된 프로세서, 및 상기 프로세서와 작동적으로 연결된 메모리를 포함하고, 상기 메모리는, 실행 시에, 상기 프로세서가, 상기 전자 장치가 제 1 외부 전자 장치 내에 인입됨을 확인하고, 상기 근거리 통신 모듈을 이용하여, 상기 제 1 외부 전자 장치로부터 블루투스 통신 연결에 관한 설정 정보를 획득하고, 상기 전자 장치의 주소 정보를 설정하기 위한 조건이 만족되는지를 확인하고, 및 상기 조건이 만족됨을 확인한 것에 기반하여, 상기 설정 정보를 이용하여 상기 전자 장치의 상기 주소 정보를 설정하도록 하는 인스트럭션들(instructions)을 저장할 수 있다. 그 밖의 다양한 실시예가 가능하다.
Abstract:
A method for matching an input of an application to an output of an another application comprises a process of matching an input of a first application and an output of a second application; and a process of displaying input object information of the first application through the second application based on the input of the first application and the output of the second application. There is an advantage of providing organic utilization between various applications.
Abstract:
PURPOSE: A bulb type semiconductor light emitting display lamp is provided to employ a semiconductor light emitting display to implement a nearly equal light distribution in a full 360 degrees of angular directions. CONSTITUTION: Multiple light emitting displays(C) are arranged in order to emit light toward a central axis(A) of a bulb. A heat radiating structure(150) comprises multiple mounting surfaces(140a). Multiple mounting surfaces surround the periphery of the central axis and are arranges with a space from one another. A heat radiating structure comprises a main body unit(120), a mounting unit(140) and a connection unit(130).
Abstract:
PURPOSE: A lighting device is provided to distribute light at a large angle using a light guide cover which guides light. CONSTITUTION: A light emitting element(C) comprises a first type semiconductor layer(202) formed on a substrate(S), an active layer(204), a light emitting chip comprising a second type semiconductor layer(208). A fluorescent layer(215) comprises a fluorescent body which excites red light after absorbing blue light and a fluorescent body which excites green light after absorbing the blue light. An electrode pattern part having two separated domains on the substrate is formed. The first type semiconductor layer is connected to one domain of the electrode pattern part. The second type semiconductor layer is bonded to other domain of the electrode pattern part through the wires(W).
Abstract:
PURPOSE: A lighting device is provided to obtain a wide halo property by using a light emitting device of side view type. CONSTITUTION: A light emitting module comprises a light emitting device of top view type. The light emitting module comprises a light emitting device of side view type. A mounting portion(131) disposes the light emitting module. A cover(150) surrounds the light emitting module. The light emitting device of top view type is arranged in the middle region of the mounting portion.
Abstract:
PURPOSE: An omnidirectional light emitting device lamp is provided to uniformly discharge light to all directions. CONSTITUTION: A first substrate(102) and a second substrate(105) face each other. A first light emitting device(103) and a second light emitting device(106) are respectively mounted on the surface of the first substrate and the second substrate facing each other. A diffusion cover(108) surrounds the space between the first substrate and the second substrate. A first heat sink(101) is arranged on the back side of the first substrate to radiates heat of the first light emitting device. A second heat sink(107) is arranged on the back side of the second substrate to radiates heat of the second light emitting device.
Abstract:
PURPOSE: Lens and camera flash comprising the same are provided to increase the central illuminance and surrounding illuminance of a camera flash and enhance light emitting efficiency using lens reducing the loss of light. CONSTITUTION: Lens(100) for a camera flash comprise a top surface(112), a bottom surface(114), and a body(110). The bottom surface is located on the opposite side of the top surface. The body comprises a side(116), which connects the top surface to the bottom surface. The body is extended from the bottom surface to the top surface. The lens further comprises a groove(120). The groove defines a first control surface(124) and a second control surface(126). The first control surface faces the top surface. The second control surface faces the side.