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    • 1. 发明申请
    • DIRECT-HEAT GRILLING PAN AND METHOD OF MANUFACTURING THE SAME
    • 直接热轧板及其制造方法
    • US20160287015A1
    • 2016-10-06
    • US15048667
    • 2016-02-19
    • Tae Suck KIMJung Wook KIMChang Bo Co., Ltd.
    • Tae Suck KIMJung Wook KIM
    • A47J37/10A47J37/06
    • A47J37/10A47J37/06A47J37/067
    • A direct-heat grilling pan includes a bottom plate and a sidewall formed on a circumference of the bottom plate, the bottom plate including multiple upper supports, multiple lower supports, and an edge portion. The multiple upper supports are disposed with a first horizontal interval therebetween. The multiple lower supports are disposed with a second horizontal interval therebetween, are disposed with a vertical interval from the multiple upper supports to be positioned directly under the first horizontal interval, have a width greater than the first horizontal interval, and have on top surfaces thereof concave oil-dripping grooves in which oil drips down through the first horizontal interval. The edge portion surrounds the multiple upper supports and the multiple lower supports while connecting both end portions of the multiple upper supports and both end portions of the multiple lower supports.
    • 直热烤盘包括底板和形成在底板的圆周上的侧壁,底板包括多个上支撑件,多个下支撑件和边缘部分。 多个上支撑件以其间的第一水平间隔设置。 所述多个下部支撑件以其间的第二水平间隔设置,从所述多个上部支撑件以垂直间隔设置,以直接位于所述第一水平间隔之下,具有大于所述第一水平间隔的宽度,并且具有在其顶部表面上 凹入的油滴槽,其中油通过第一水平间隔向下滴落。 边缘部分围绕多个上支撑件和多个下支撑件,同时连接多个上支撑件的两个端部和多个下支撑件的两个端部。
    • 3. 发明授权
    • Nozzle error correction method and image-forming apparatus using the same
    • 喷嘴误差校正方法和使用其的图像形成装置
    • US07832825B2
    • 2010-11-16
    • US11322563
    • 2006-01-03
    • Jung-Wook KimEul-hwan Lee
    • Jung-Wook KimEul-hwan Lee
    • B41J2/205
    • B41J29/393
    • The nozzle error correction method is provided for adjusting information of an output image to correct an error nozzle. A position of an error nozzle firing an ink amount different from a reference value is detected from a plurality of nozzles. A determination is made from an input image as to whether a current pixel for output is an error pixel of the detected error nozzle. A channel value of the error nozzle is set to a certain value if the current pixel is the error pixel. However, if the current pixel is not the error pixel, a determination is made as to whether an error pixel exists in a certain area around the current pixel. A value of the current pixel is then adjusted based on error information. Image-processing is performed in order for the current pixel to be outputted, if the error pixel exists in the certain area. Accordingly, degradation of a print speed and a shortened life span of the head are prevented.
    • 提供喷嘴误差校正方法,用于调整输出图像的信息以校正误差喷嘴。 从多个喷嘴检测出喷射与基准值不同的墨量的误差喷嘴的位置。 从输入图像中确定当前输出像素是否是检测到的误差喷嘴的误差像素。 如果当前像素是误差像素,则误差喷嘴的通道值被设置为一定值。 然而,如果当前像素不是误差像素,则确定在当前像素周围的特定区域中是否存在误差像素。 然后根据错误信息调整当前像素的值。 如果误差像素存在于特定区域,则执行图像处理以便输出当前像素。 因此,防止打印速度的劣化和头部的缩短的使用寿命。
    • 4. 发明授权
    • Apparatus and method of multiplication using a plurality of identical partial multiplication modules
    • 使用多个相同的部分倍增模块进行乘法的装置和方法
    • US07769797B2
    • 2010-08-03
    • US11037547
    • 2005-01-19
    • Won-kyoung ChoJung-wook KimIn-cheol ParkEul-hwan LeeHyeong-ju Kang
    • Won-kyoung ChoJung-wook KimIn-cheol ParkEul-hwan LeeHyeong-ju Kang
    • G06F7/523
    • G06F7/5324
    • A multiplication apparatus including a multiplier and multiplicand extractor for dividing the multiplicand into partial multiplicands and dividing the multiplier into partial multipliers, and for generating partial input pairs by combining the partial multiplicands with the partial multipliers, and a multiplication executor including identical partial multiplication modules for receiving the partial input pairs and outputting partial carries and partial products. The apparatus further includes an output generator for combining the partial carries with the partial products according to the execution instruction to generate a final output. For simple multiplications, each of the partial multiplication modules can pass data to and from an adjacent partial multiplication module to calculate the partial carry and the partial product, and pass bits exceeding its own multiplication coverage.
    • 一种乘法装置,包括乘法器和被乘数提取器,用于将被乘数分成部分被乘数,并将乘法器分成部分乘法器,并且通过将部分乘法与部分乘法器组合来产生部分输入对;以及乘法执行器,包括相同的部分乘法模块, 接收部分输入对并输出部分输入和部分乘积。 该装置还包括输出发生器,用于根据执行指令将部分运算与部分乘积相结合以产生最终输出。 对于简单乘法,每个部分乘法模块可以将数据传递给相邻的部分乘法模块,并从相邻的部分乘法模块传递数据,以计算部分乘法和部分乘积,并将比特超过其自身的乘法覆盖范围。
    • 5. 发明申请
    • IMAGE ENCODER AND IMAGE ENCODING METHOD
    • 图像编码器和图像编码方法
    • US20100166328A1
    • 2010-07-01
    • US12646508
    • 2009-12-23
    • Jung-Wook Kim
    • Jung-Wook Kim
    • G06K9/46G06K9/36
    • H04N19/68H04N19/186H04N19/60H04N19/895
    • The image encoder includes a block arrangement unit configured to chromatically subsample an externally input image signal and to arrange the image signal in units of a plurality of blocks, a plurality of Discrete Cosine Transform (DCT) units configured to perform DCT with respect to the image signal divided into the plurality of blocks, a plurality of quantization units configured to quantize the outputs of the plurality of DCT units, a delta modulation unit configured to perform Differential Pulse Code Modulation (DPCM) with respect to the outputs of the plurality of quantization units, a plurality of Huffman encoding units configured to encode the outputs of the delta modulation units using a Huffman encoding method, and a code connection unit configured to reconstruct the signals output from the plurality of Huffman encoding units in constant bit units and to output a compressed image signal. Since the image is encoded in parallel, it is possible to increase encoding speed.
    • 图像编码器包括块排列单元,其被配置为对外部输入的图像信号进行色度子采样并以多个块为单位布置图像信号;多个离散余弦变换(DCT)单元,被配置为相对于图像执行DCT 信号分成多个块,多个量化单元,被配置为量化多个DCT单元的输出;增量调制单元,被配置为针对多个量化单元的输出执行差分脉码调制(DPCM) 多个霍夫曼编码单元,被配置为使用霍夫曼编码方法对增量调制单元的输出进行编码;以及代码连接单元,被配置为以恒定位单位重构从多个霍夫曼编码单元输出的信号,并输出压缩 图像信号。 由于图像是并行编码的,所以可以提高编码速度。
    • 7. 发明授权
    • Capacitor for a semiconductor device and method of forming the same
    • 用于半导体器件的电容器及其形成方法
    • US07452783B2
    • 2008-11-18
    • US11286316
    • 2005-11-23
    • Young-Joo ChoHyun-Seok LimRak-Hwan KimJung-Wook KimHyun-Suk Lee
    • Young-Joo ChoHyun-Seok LimRak-Hwan KimJung-Wook KimHyun-Suk Lee
    • H01L21/20
    • H01L28/90H01L27/0207H01L27/10852H01L28/75
    • In a capacitor having a high dielectric constant, the capacitor includes a cylindrical lower electrode, a dielectric layer and an upper electrode. A metal oxide layer is formed on inner, top and outer surfaces of the lower electrode as the dielectric layer. A first sub-electrode is formed on a surface of the dielectric layer along the profile of the lower electrode and a second sub-electrode is continuously formed on the first sub-electrode corresponding to the top surface of the lower electrode, so an opening portion of the lower electrode is covered with the second sub-electrode. The first and second sub-electrodes include first and second metal nitride layers in which first and second stresses are applied, respectively. Directions of the first and second stresses are opposite to each other. Accordingly, cracking is minimized in the upper electrode with the high dielectric constant, thereby reducing current leakage.
    • 在具有高介电常数的电容器中,电容器包括圆柱形下电极,电介质层和上电极。 在作为电介质层的下电极的内表面,顶面和外表面上形成金属氧化物层。 第一子电极沿着下电极的轮廓在电介质层的表面上形成,并且第二子电极连续形成在与下电极的顶表面对应的第一子电极上,因此开口部分 的下部电极被第二子电极覆盖。 第一和第二子电极分别包括施加第一和第二应力的第一和第二金属氮化物层。 第一和第二个应力的方向彼此相反。 因此,在具有高介电常数的上电极中破裂最小化,从而减少电流泄漏。