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    • 12. 发明申请
    • ELECTRONIC APPARATUS
    • 电子设备
    • US20070236908A1
    • 2007-10-11
    • US11695318
    • 2007-04-02
    • Shuhei YukawaMasafumi TanakaYutaka OgasawaraTooru Kuronuma
    • Shuhei YukawaMasafumi TanakaYutaka OgasawaraTooru Kuronuma
    • G01D11/28
    • G06F1/1656G06F1/1615G06F1/1616G06F1/166G06F1/1677G06F1/1679G06F1/1686
    • Disclosed herein is an electronic apparatus, including: a base chassis formed as a unitary member from a transparent material and having two faces positioned on the opposite sides to each other and individually formed as first and second mounting face sections; a display unit having a display panel thereon and attached to said first mounting face section; a control circuit board attached to said second mounting face section; a rear cover attached to said second mounting face section and configured to cover said control circuit board; a device mounting board having a semiconductor light emitting element disposed thereon; and a luminous lamp section formed at a position of said base chassis on the outer side of said display unit and configured to receive and emit light having been emitted from said semiconductor light emitting element and passed through the inside of said base chassis.
    • 这里公开了一种电子设备,包括:底架,其由透明材料形成为整体构件,并且具有彼此相对的两个面,并且分别形成为第一和第二安装面部; 显示单元,其上具有显示面板,并附接到所述第一安装面部; 附接到所述第二安装面部的控制电路板; 后盖,其附接到所述第二安装面部并构造成覆盖所述控制电路板; 具有设置在其上的半导体发光元件的器件安装板; 以及发光灯部,其形成在所述显示单元的外侧上的所述底架的位置处,并且被配置为接收和发射已经从所述半导体发光元件发射的并且穿过所述基底的内部的光。
    • 13. 发明申请
    • Error masking method using moving picture electronic watermark of video
    • 使用视频的动态图像电子水印的误差屏蔽方法
    • US20050152458A1
    • 2005-07-14
    • US10506114
    • 2002-07-25
    • Masafumi Tanaka
    • Masafumi Tanaka
    • H04N19/895H04N7/08H04N7/081H04N19/00H04N19/467H04N19/625H04N19/70H04N19/91H04N7/12
    • H04N19/126H04N19/137H04N19/159H04N19/176H04N19/467H04N19/517H04N19/61H04N19/895
    • An error masking method using a moving picture electronic watermark. The method can reduce the operation quantity required for estimating motion vectors and acquire correct motion vectors even in case of high error ratio. The method has the conventional accuracy as the lowest accuracy and the upper layer compatibility with a general-purpose decoder. The digital moving picture signal is divided in area into a plurality of blocks or macro-blocks, each of which comprises N×N pixels and is motion-compensated. In obtaining or not obtaining a differential signal from one of a future or a past image, each block or macro-block is discrete-cosine transformed to issue a discrete cosine transform output. The discrete cosine transform output is quantized to obtain a quantized output. The quantized output is variable-length-encoded to obtain a bit stream. On the other hand, the motion vector is embedded in each of the blocks or macroblocks as electronic watermark information to make it possible to use the electronic watermark information for masking the errors during decoding.
    • 使用运动图像电子水印的误差屏蔽方法。 该方法即使在高错误率的情况下也可以减少估计运动矢量所需的操作量并获得正确的运动矢量。 该方法具有作为最低精度的传统精度和与通用解码器的上层兼容性。 数字运动图像信号被划分成多个块或宏块,每个块或宏块包括N×N个像素并被运动补偿。 在从未来或过去图像之一获得或不获得差分信号时,每个块或宏块被离散余弦变换以发出离散余弦变换输出。 量化离散余弦变换输出以获得量化输出。 量化输出可变长度编码以获得位流。 另一方面,将运动矢量作为电子水印信息嵌入每个块或宏块中,使得可以使用电子水印信息来掩蔽解码期间的错误。
    • 16. 发明授权
    • Orthogonal transformation processor for compressing information
    • 用于压缩信息的正交变换处理器
    • US5331585A
    • 1994-07-19
    • US58475
    • 1993-05-05
    • Masafumi TanakaKazuo SakamotoTatsuya FujiiRyo Fukui
    • Masafumi TanakaKazuo SakamotoTatsuya FujiiRyo Fukui
    • G06F7/38G06F17/14G06F15/332
    • G06F17/147
    • An orthogonal transformation processor has a first one-dimensional orthogonal transformation calculator for calculating a one-dimensional orthogonal transformation; a memory device for temporarily storing an output of the first one-dimensional orthogonal transformation calculator; a second one-dimensional orthogonal transformation calculator for calculating a one-dimensional orthogonal transformation and inputting an output of the memory device thereto; and an address generator for designating an address of the memory device and replacing row and column addresses with each other in accordance with a switching operation of writing and reading operations of the memory device. Instead of this address generator, the orthogonal transformation processor may have an address generator for designating an address of the memory device and replacing row and column addresses with each other in accordance with calculating operations of the first and second one-dimensional orthogonal transformation calculators. The orthogonal transformation processor may further have a reading-writing control section for reading one data of the memory device and writing new results calculated by the first one-dimensional orthogonal transformation calculator to the same address after the data reading operation.
    • 正交变换处理器具有用于计算一维正交变换的第一一维正交变换计算器, 用于临时存储第一一维正交变换计算器的输出的存储装置; 第二一维正交变换计算器,用于计算一维正交变换并向其输入存储器件的输出; 以及地址发生器,用于根据存储器件的写入和读取操作的切换操作指定存储器件的地址并且相互替换行和列地址。 代替该地址生成器,正交变换处理器可以具有地址发生器,用于根据第一和第二一维正交变换计算器的计算操作来指定存储器件的地址并且相互替换行和列地址。 正交变换处理器还可以具有读取写入控制部分,用于在数据读取操作之后读取存储器件的一个数据并将由第一个一维正交变换计算器计算出的新结果写入相同的地址。
    • 17. 发明授权
    • Orthogonal transformation processor for compressing information
    • 用于压缩信息的正交变换处理器
    • US5268853A
    • 1993-12-07
    • US616418
    • 1990-11-21
    • Masafumi TanakaKazuo SakamotoTatsuya FujiiRyo Fukui
    • Masafumi TanakaKazuo SakamotoTatsuya FujiiRyo Fukui
    • G06F7/38G06F17/14
    • G06F17/147
    • An orthogonal transformation processor has a first one-dimensional orthogonal transformation calculator for calculating a one-dimensional orthogonal transformation; a memory device for temporarily storing an output of the first one-dimensional orthogonal transformation calculator; a second one-dimensional orthogonal transformation calculator for calculating a one-dimensional orthogonal transformation and inputting an output of the memory device thereto; and an address generator for designating an address of the memory device and replacing row and column addresses with each other in accordance with a switching operation of writing and reading operations of the memory device. Instead of this address generator, the orthogonal transformation processor may have an address generator for designating an address of the memory device and replacing row and column addresses with each other in accordance with calculating operations of the first and second one-dimensional orthogonal transformation calculators. The orthogonal transformation processor may further have a reading-writing control section for reading one data of the memory device and writing new results calculated by the first one-dimensional orthogonal transformation calculator to the same address after the data reading operation.
    • 正交变换处理器具有用于计算一维正交变换的第一一维正交变换计算器, 用于临时存储第一一维正交变换计算器的输出的存储装置; 第二一维正交变换计算器,用于计算一维正交变换并向其输入存储器件的输出; 以及地址发生器,用于根据存储器件的写入和读取操作的切换操作指定存储器件的地址并且相互替换行和列地址。 代替该地址生成器,正交变换处理器可以具有地址发生器,用于根据第一和第二一维正交变换计算器的计算操作来指定存储器件的地址并且相互替换行和列地址。 正交变换处理器还可以具有读取写入控制部分,用于在数据读取操作之后读取存储器件的一个数据并将由第一个一维正交变换计算器计算出的新结果写入相同的地址。
    • 18. 发明授权
    • Apparatus for indicating remaining battery capacity
    • 用于指示剩余电池容量的装置
    • US4626765A
    • 1986-12-02
    • US614092
    • 1984-05-25
    • Masafumi Tanaka
    • Masafumi Tanaka
    • G01R13/40G01R31/36H02J7/00G08B21/00
    • G01R19/16542G01R13/406Y10S320/21
    • When the discharging of a battery is suspended, its open-circuit voltage or a voltage corresponding to the open-circuit voltage is detected, and with the voltage thus detected, as a start point an imaginary voltage curve having a certain decreasing rate is set for instance (by discharging a capacitor which has been charged by the voltage). When the discharging of the battery is suspended, the voltage detected at that time is used to correct the start point voltage of the imaginary voltage curve. According to the voltage obtained from the imaginary voltage curve, the number of LEDs turned on is changed or one of the LEDs is selected or liquid crystal display means is operated to display the remaining capacity of the battery.
    • 当电池的放电被暂停时,检测其开路电压或与开路电压对应的电压,并且利用这样检测的电压,作为起点,设定具有一定降低率的虚拟电压曲线, (通过放电已经被电压充电的电容器)。 当电池的放电暂停时,使用此时检测到的电压来校正虚拟电压曲线的起始点电压。 根据从虚拟电压曲线获得的电压,改变LED的数量,或者选择一个LED或液晶显示装置来显示电池的剩余容量。
    • 20. 发明授权
    • High-speed digital filter processor including parallel paths for
processing data, suitable for use in spatial filter image processing
    • 高速数字滤波处理器包括用于处理数据的并行路径,适用于空间滤波图像处理
    • US5016207A
    • 1991-05-14
    • US503424
    • 1990-04-03
    • Tatsuya FujiiYutaka SatoMasafumi Tanaka
    • Tatsuya FujiiYutaka SatoMasafumi Tanaka
    • H04N1/409G06T5/20H03H17/02
    • H03H17/0202
    • A digital filter processor includes an input part for distributing an input digital data train including a plurality of digital data to a plurality of systems. Each of the systems is provided with a corresopnding one of the distributed data trains at the same time. Each of the systems includes an operation part for multiplying each digital data included in the corresponding one of the distributed data trains by a corresponding multiplication factor at the same time to thereby generate multiplied data and for generating a sum signal indicative of a sum total of the multiplied data related to the corresponding one of the distributed data trains, each of the systems outputting the sum signal at the same time. The operation part also includes a selection part for selecting one of the sum signals supplied from the operation parts provided for the plurality of systems and for outputting an output digital signal.
    • 数字滤波处理器包括用于将包括多个数字数据的输入数字数据串分配到多个系统的输入部分。 每个系统同时具有相应的分布式数据列。 每个系统包括操作部分,用于将分布式数据列中的相应一个分配数据列中包含的每个数字数据同时乘以相应的乘法因子,从而产生相乘的数据,并产生一个和信号,该和信号表示 与相应的一个分布式数据列有关的相乘数据,每个系统同时输出和信号。 操作部还包括选择部,用于选择从为多个系统提供的操作部分提供的和信号中的一个,并输出输出数字信号。