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    • 5. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08068751B2
    • 2011-11-29
    • US12613318
    • 2009-11-05
    • Katsuyuki Yamazaki
    • Katsuyuki Yamazaki
    • G03G15/043G03G15/00
    • G03G15/5008
    • An image forming apparatus that can improve image quality by correcting for variations in the potential characteristics of a photosensitive member and enhance the responsiveness of an image forming operation. The photosensitive member is rotated by a drive unit and exposed to light from an exposure unit. A first generation unit periodically generates a first signal. A second generation unit generates a second signal. A plurality of generation periods of the second signals are included in one generation period of the first signal. A control unit, while the photosensitive member is controlled to accelerate, counts the second signals in response to input of the first signal, identifies an exposure position when the photosensitive member is switched from the acceleration control to constant-speed control, reads correction data corresponding to the identified exposure position from a storage unit, and controls the light quantity of the exposure unit.
    • 一种图像形成装置,其可以通过校正感光构件的电位特性的变化并提高成像操作的响应性来提高图像质量。 感光构件由驱动单元旋转并暴露于来自曝光单元的光。 第一代单元周期性地产生第一信号。 第二代单元生成第二信号。 在第一信号的一个生成周期中包括多个第二信号的产生周期。 控制单元,当感光构件被控制加速时,响应于第一信号的输入对第二信号进行计数,当感光构件从加速控制切换到恒定速度控制时,识别曝光位置,读取相应的校正数据 从存储单元到所识别的曝光位置,并控制曝光单元的光量。
    • 8. 发明授权
    • Cell transfer method and cell receiving apparatus
    • 细胞转移方法和细胞接收装置
    • US5291483A
    • 1994-03-01
    • US84956
    • 1993-07-02
    • Tetsuya NagaiKatsuyuki Yamazaki
    • Tetsuya NagaiKatsuyuki Yamazaki
    • H04H20/88H04L12/953H04Q11/04H04J3/26
    • H04H20/88H04Q11/0478H04L2012/5616H04L2012/565H04L2012/5652H04L2012/5671
    • A cell transfer method and a cell receiving apparatus in which cells of an asynchronous transfer mode are used to transfer information for a plurality of channels regardless of the number of channels and without reduction of the utilization rate of cell in the same cell configuration and the information for the channels can be reproduced while maintaining synchronization between the channels in a receiving side. The cell has an identifier for each channel and is exclusively used for each channel. Cells to be reproduced at the same time are given the same sequence number to be transferred. On the receiving side, when a cell is inputted in a cell disassembling circuit, the cell is disassembled into a sequence number, a channel identifier and channel data and channel information is written or stored in a buffer together with the sequence number by a distributing circuit in accordance with contents of the channel identifier. Reading of data from the buffers is made simultaneously from the buffers with respect to the data having the number indicated by a sequence number counter.
    • 一种小区传输方法和一种小区接收装置,其中使用异步传送模式的小区来传送多个信道的信息,而不管信道的数量如何,并且不降低相同小区配置中的小区的使用率,并且信息 因为可以在维持接收侧的信道之间的同步的同时再现信道。 单元格具有每个通道的标识符,并且专用于每个通道。 要同时再现的细胞被赋予相同的要转移的序列号。 在接收侧,当在信元分解电路中输入信元时,将该信元分解为序列号,信道标识符和信道数据以及信道信息与序列号一起被分配电路写入或存储在缓冲器中 根据信道标识符的内容。 相对于具有由序列号计数器指示的数字的数据,从缓冲器中同时从缓冲器读取数据。
    • 9. 发明授权
    • Audio frequency signal identification apparatus
    • 音频信号识别装置
    • US4797931A
    • 1989-01-10
    • US19421
    • 1987-02-26
    • Yasuo FurukawaKatsuyuki YamazakiTakemi HosakaAkira Fukui
    • Yasuo FurukawaKatsuyuki YamazakiTakemi HosakaAkira Fukui
    • H04L27/00H04M3/22H04Q1/448H04Q1/46H04R29/00
    • H04Q1/4485H04Q1/46
    • An audio frequency signal identification apparatus of the present invention has a correlator for obtaining the full band power component and autocorrelation coefficients of a digital audio frequency signal to be identified for each analysis time, a plurality of band pass filters for dividing and filtering the audio frequency signal into a plurality of bands, a plurality of integrators for full wave rectifying and integrating the outputs from the plurality of band pass filters for each analysis time so as to obtain individual power components for the respective bands, a first identification parameter calculator for calculating a maximum power component, a minimum power component, a frequency band yielding the maximum power component, a bandwidth, and a difference between the individual band power components in the respective analysis times, from the individual band power components as the outputs from the plurality of integrators, a second identification parameter calculator for calculating a difference between the autocorrelation coefficients as the output of the correlator and a difference between the autocorrelation coefficients in the respective analysis times, an identification and judgement processor for judging the signal type of the audio frequency signal to be identified in accordance with which of a plurality of predetermined judgement conditions the identification parameters obtained from the first and second identification parameter calculator and the full band power component correspond and if they satisfy a condition of continuity.
    • 本发明的音频信号识别装置具有一个相关器,用于获得每个分析时间要识别的数字音频信号的全频带功率分量和自相关系数;多个带通滤波器,用于对音频进行分频和滤波 信号分成多个频带,多个积分器,用于对每个分析时间对来自多个带通滤波器的输出进行全波整流和积分,以获得各个频带的各个功率分量;第一识别参数计算器,用于计算 最大功率分量,最小功率分量,产生最大功率分量的频带,带宽和各个分析时间中的各个频带功率分量之间的差,作为来自多个积分器的输出的各个频带功率分量 ,用于计算的第二识别参数计算器 确定作为相关器的输出的自相关系数与各分析时间中的自相关系数之间的差的识别和判断处理器,用于根据以下的哪一个判断要识别的音频信号的信号类型 多个预定判断条件,从第一和第二识别参数计算器获得的识别参数和全频带功率分量对应,并且如果它们满足连续性条件。