Abstract:
There is provided a method for preparing a β-SiAlON phosphor capable of be controlled to show characteristics such as high brightness and desired particle size distribution. The method for preparing a β-SiAlON phosphor represented by Formula: Si(6-x)AlxOyN(8-y):Lnz (wherein, Ln is a rare earth element, and the following requirements are satisfied: 0
Abstract translation:提供了一种制备能够被控制以显示诸如高亮度和期望的粒度分布等特性的“SiAlON”荧光体的方法。 制备由式:Si(6-x)Al x O y N(8-y):Lnz(其中,Ln是稀土元素)并满足以下要求的由式(Si-x)Al x O y N(8-y)表示的-SiAlON荧光体的方法:0
Abstract:
A system, apparatus, and method for precisely estimating a three-dimensional (3D) position and a direction. The 3D position and direction estimation apparatus may estimate a distance between at least one receiver and at least one transmitter and a direction of a remote device, based on intensity information of a signal measured at the at least one receiver, may sequentially select the minimum number of intensity information for estimating the 3D position and the direction of the remote device, in a descending order of robustness against noise, based on the estimated distance and direction of the remote device, and may precisely estimate the 3D position and the direction of the remote device based on the selected intensity information.
Abstract:
A semiconductor light emitting device package includes: a light emitting device; a wavelength conversion unit formed in a path of light emitted from the light emitting device and including a mixture of a wavelength conversion material and a glass material; and a reflective film disposed on an upper surface of the wavelength conversion unit and reflecting a partial amount of light emitted from the light emitting device and allowing a partial amount of light emitted from the light emitting device to be transmitted therethrough.
Abstract:
A file processing method is provided. The method includes providing a non-security environment or security environment. The method also includes storing a file including reading a normal file from a normal region in a storage unit related to the non-security environment during execution of the non-security environment to write a read file to a secure region of the storage unit operating in the security environment, reading a secure file from the secure region in the security environment to write a read file to the normal region, or reading the normal file from the normal region in the security environment to write a read file to the secure region.
Abstract:
There is provided a method for preparing a β-SiAlON phosphor capable of be controlled to show characteristics such as high brightness and desired particle size distribution. The method for preparing a β-SiAlON phosphor represented by Formula: Si(6-x)AlxOyN(8-y):Lnz (wherein, Ln is a rare earth element, and the following requirements are satisfied: 0
Abstract translation:提供了一种制备能够被控制以显示诸如高亮度和期望的粒度分布等特性的β-SiAlON荧光体的方法。 制备由式:Si(6-x)Al x O y N(8-y)表示的β-SiAlON荧光体的方法:Lnz(其中,Ln是稀土元素,满足以下要求:0
Abstract:
A door for a refrigerator having a reduced number of constituent elements, resulting in reduction in material and processing costs as well as manufacturing time is provided. The door may include a reinforced glass panel defining a front surface, a pair of lateral frames to support the reinforced glass panel, a rear panel defining a rear surface, a pair of caps including upper and lower caps, and a foam charged into an interior space of the door to couple the reinforced glass panel, lateral frames, rear panel and caps to one another. Each lateral frame comes into contact with two surfaces including a lateral surface and a rear surface of the reinforced glass panel to support the reinforced glass panel. Also, each lateral frame may be formed via extrusion molding of PVC synthetic resin and is painted via liquid painting.
Abstract:
A high precision signal sensing system and method using an infrared light is provided. The high precision signal sensing system may receive, from a light emitting device, a plurality of lights including a first light and a second light, may measure intensities of the first light and the second light, and may measure a light emitting intensity of the light emitting device based on an intensity difference between the measured light receiving intensities.
Abstract:
Provided is a calibration apparatus and method of a three-dimensional (3D) position and direction estimation system. The calibration apparatus may receive inertia information and intensity information during a predetermined period of time, may calculate distances between a transmitter and the respective receivers, and may calibrate a signal attenuation characteristic of each receiver using the distances between the transmitter and the respective receivers.