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    • 21. 发明授权
    • Mask for electron beam exposure and electron beam drawing method
    • 电子束曝光和电子束绘制法的掩模
    • US5998797A
    • 1999-12-07
    • US60078
    • 1998-04-15
    • Ken Nakajima
    • Ken Nakajima
    • H01L21/027G03F7/20H01J37/317H01J37/00G21K5/10
    • B82Y10/00B82Y40/00G03F1/20G03F7/2037H01J37/3174H01J2237/31788
    • A mask for electron beam exposure has a plurality of holes for drawing contact. These holes have a plurality of sizes that correspond to regions which should be drawn by an electron beam. Among the plurality of holes for drawing contact, one hole is selected according to the designed size. Then, the mask for electron beam exposure is located on the resist film so that the selected hole for drawing contact may be positioned on the contact formation predetermined area of the wafer. Next, the electron beam is applied to the resist film on the contact formation predetermined area of the wafer through the selected hole by irradiating the electron beam from the upper side of the mask. Consequently, the contact pattern is exposed to the resist film.
    • 用于电子束曝光的掩模具有多个用于拉伸接触的孔。 这些孔具有对应于应该被电子束拉伸的区域的多个尺寸。 在用于拉伸接触的多个孔中,根据设计尺寸选择一个孔。 然后,用于电子束曝光的掩模位于抗蚀剂膜上,使得所选择的用于拉伸接触的孔可以位于晶片的接触形成预定区域上。 接下来,通过从掩模的上侧照射电子束,通过所选择的孔将电子束施加到晶片的接触形成预定区域上的抗蚀剂膜上。 因此,接触图案暴露于抗蚀剂膜。
    • 22. 发明授权
    • Gamma correction circuit
    • 伽马校正电路
    • US5671023A
    • 1997-09-23
    • US553871
    • 1995-11-06
    • Kazuhiko NishiwakiKen Nakajima
    • Kazuhiko NishiwakiKen Nakajima
    • H04N9/69H04N5/202
    • H04N9/69
    • A gamma correction circuit capable of faithfully monitoring and outputting the color and luminance of an object without deteriorating the resolution. The gamma circuit includes an output-picture luminance signal generator for converting supplied color picture signals into luminance signals and for gamma-correcting the luminance signals for generating output-picture luminance signals, a low-pass filter for transmitting low-frequency components of the supplied picture signals, a luminance correction signal generator for generating a luminance correction signal by subtraction between a signal obtained on gamma-correcting picture signals supplied from the low-pass filter and converting the gamma-corrected picture signals into luminance signals and a signal obtained on converting the picture signals into luminance signals and gamma-correcting the luminance signals, an output-picture luminance signal correction unit for correcting the output-picture luminance signal based upon the output-picture luminance signal and the luminance correction signal, and a color difference matrix circuit for effecting chroma-conversion of the gamma-corrected picture signals supplied from the low-pass filter.
    • 一种伽马校正电路,能够忠实地监视和输出对象的颜色和亮度,而不会降低分辨率。 伽马电路包括:输出图像亮度信号发生器,用于将提供的彩色图像信号转换为亮度信号,并对用于产生输出图像亮度信号的亮度信号进行伽玛校正;低通滤波器,用于发送所提供的彩色图像信号的低频分量 图像信号;亮度校正信号发生器,用于通过在从低通滤波器提供的伽马校正图像信号上获得的信号之间减去并将伽马校正的图像信号转换为亮度信号和在转换后获得的信号 将图像信号变换为亮度信号,伽马校正亮度信号;输出图像亮度信号校正单元,用于根据输出图像亮度信号和亮度校正信号对输出图像亮度信号进行校正;以及色差矩阵电路 用于实现伽马校正器的色度转换 d图像信号从低通滤波器提供。
    • 26. 发明授权
    • Imaging apparatus
    • 成像设备
    • US08248506B2
    • 2012-08-21
    • US12894622
    • 2010-09-30
    • Yoichi MizutaniMasayuki TakezawaHideki MatsumotoKen NakajimaToshihisa Yamamoto
    • Yoichi MizutaniMasayuki TakezawaHideki MatsumotoKen NakajimaToshihisa Yamamoto
    • H04N5/225
    • H04N5/23245H04N1/2137H04N5/23293H04N5/343H04N5/372H04N5/378
    • An imaging apparatus for performing efficient signal processing depending on the operational mode. In the finder mode, a CCD interface 21a decimates horizontal components of image data supplied from an image generating unit 10 to one-third and moreover processes the decimated image data with data conversion and resolution conversion to produce Y, Cb and Cr image data which are routed to and written in an image memory 32 over a memory controller 22. In the recording mode, the CCD interface 21a causes the image data from the image generating unit 10 to be written in the image memory 32 via memory controller 22 after decimation and gamma correction etc. The camera DSP 21c reads out the image data via memory controller 22 from the image memory 32 to effect data conversion for writing the resulting data via memory controller 22 in the image memory 32.
    • 一种用于根据操作模式执行有效信号处理的成像装置。 在取景器模式中,CCD接口21a将从图像生成单元10提供的图像数据的水平分量抽取到三分之一,并且用数据转换和分辨率转换处理抽取的图像数据,以产生Y,Cb和Cr图像数据, 在存储器控制器22上被路由到和写入图像存储器32中。在记录模式中,CCD接口21a使来自图像生成单元10的图像数据经抽取后的存储器控​​制器22写入图像存储器32中,并且伽玛 校正等。相机DSP 21c经由存储器控制器22从图像存储器32读出图像数据,以进行用于经由存储器控制器22将得到的数据写入图像存储器32中的数据转换。
    • 27. 发明申请
    • FACE DETECTION DEVICE, IMAGING APPARATUS AND FACE DETECTION METHOD
    • 脸部检测装置,成像装置和面部检测方法
    • US20120114179A1
    • 2012-05-10
    • US13344191
    • 2012-01-05
    • Miyuki OkadaKen Nakajima
    • Miyuki OkadaKen Nakajima
    • G06K9/00
    • G06K9/00228H04N5/23219
    • A face detection device for detecting the face of a person in an input image may include the following elements: a face detection circuit including a hardware circuit configured to detect a face in an input image; a signal processing circuit configured to perform signal processing based on an input image signal in accordance with a rewritable program including a face detection program for detecting a face in an input image; and a controller configured to allow the face detection circuit and the signal processing circuit to perform face detection on an image of a frame or on respective images of adjacent frames among consecutive frames, and to control face detection by the signal processing circuit on the basis of a face detection result obtained by the face detection circuit.
    • 用于检测输入图像中的人脸的脸部检测装置可以包括以下元件:面部检测电路,包括被配置为检测输入图像中的脸部的硬件电路; 信号处理电路,被配置为根据包括用于检测输入图像中的面部的面部检测程序的可重写程序,基于输入图像信号执行信号处理; 以及控制器,其被配置为允许所述面部检测电路和所述信号处理电路对连续帧中的帧的图像或相邻帧的各个图像执行面部检测,并且基于所述信号处理电路来控制所述信号处理电路的面部检测 由脸部检测电路获得的面部检测结果。
    • 28. 发明授权
    • Imaging apparatus, imaging circuit and imaging method
    • 成像设备,成像电路和成像方法
    • US08013910B2
    • 2011-09-06
    • US12123340
    • 2008-05-19
    • Fumiaki KatoKen Nakajima
    • Fumiaki KatoKen Nakajima
    • H04N5/235H04N5/76G06K9/00G06K9/40G06K9/46G06K9/56
    • H04N19/90H04N19/124H04N19/136H04N19/17H04N19/42
    • An image by using a solid-state imaging sensor, the imaging apparatus including: a compression section configured to compress image data by dividing the image data into blocks each composed of same color component pixels adjacent to each other as a unit of compression; a memory used for temporarily storing compressed image data; a decompression section configured to decompress the compressed image data read out from the memory; and a signal processing section configured to carry out an image-quality correction process on decompressed image data, wherein each of the blocks is split in advance into two quantization-subject areas, block types are distinguished from each other by the position of the inter-area boundary between the two quantization-subject areas, and the compression section has a dynamic-range computation sub-section, a block-type select sub-section, and a quantization processing sub-section are provided.
    • 通过使用固态成像传感器的图像,所述成像装置包括:压缩部,被配置为通过将图像数据划分为由彼此相邻的相同颜色分​​量像素组成的块作为压缩单位来压缩图像数据; 用于临时存储压缩图像数据的存储器; 解压缩部,被配置为对从所述存储器读出的压缩图像数据进行解压缩; 以及信号处理部,被配置为对解压缩图像数据执行图像质量校正处理,其中每个块被预先分割成两个量化对象区域,块类型通过帧间间隔的位置彼此区分开, 两个量化对象区域之间的区域边界,并且压缩部分具有动态范围计算子部分,块型选择子部分和量化处理子部分。
    • 29. 发明授权
    • Interpolation process for an image processing apparatus
    • 图像处理装置的插值处理
    • US07379098B2
    • 2008-05-27
    • US10611750
    • 2003-07-01
    • Toshihisa YamamotoKen Nakajima
    • Toshihisa YamamotoKen Nakajima
    • H04N5/228H04N9/64
    • H04N9/045
    • Camera signal processing for interpolating, at least on two directions, pixel data based on an imaging signal from a solid-state image sensor in which an imaging light enters through a color filter having a different spectral characteristic for each pixel separately generating interpolated pixel data in the directions, detecting a correlation value indicative of a degree of correlation in each of the directions of the interpolated pixel data, normalizing the correlation value of each of the directions to generate a normalized value indicative of a relative value of the correlation value of each of the directions, adding a predetermined correction value to the normalized value, weighting the interpolated pixel data by the normalized value and adding together the weighted interpolated pixel data, and generating an image based on the interpolated pixel data weighted by the weighting means.
    • 相机信号处理,至少在两个方向上内插基于来自固态图像传感器的成像信号的像素数据,其中成像光通过对于每个像素具有不同光谱特性的滤色器进入,分别产生内插像素数据 方向,检测表示内插像素数据的每个方向上的相关程度的相关值,对每个方向的相关值进行归一化,以生成表示每个方向的相关值的相对值的归一化值 所述方向,对所述归一化值添加预定的校正值,通过所述归一化值对所插值的像素数据进行加权,并将所述加权的内插像素数据相加,并且基于由所述加权装置加权的内插像素数据生成图像。