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    • 1. 发明授权
    • Electrical equipment module
    • 电气设备模块
    • US06429544B1
    • 2002-08-06
    • US09662480
    • 2000-09-15
    • Atsushi SasakiSatoshi KawaiEiji IchiiAkihito Yahara
    • Atsushi SasakiSatoshi KawaiEiji IchiiAkihito Yahara
    • H02J100
    • B60N2/0232B60N2/0224B60N2002/0264B60R16/0207
    • An electrical equipment module is mounted in, for example, an electrically-powered seat unit for a vehicle. Multiple wire groups (52-56) comprised of wire harnesses or flat cables are led out of a module body (51) of the electrical equipment module (50) from different sides of the module body, thus reducing the outside diameter and thickness of each wire group so that the module body is thin and suited to be mounted in narrow layout space under a seat. By mounting, to the module body, a connector for connecting a printed circuit board (51m) in the module body to an external power supply or an external sensor and by making complicated wiring between the connector and the printed circuit board (51m) in advance in the module body, an assembling (wiring) work at the time of manufacturing the electrical equipment module is simplified.
    • 电气设备模块安装在例如用于车辆的电动座椅单元中。 由线束或扁平电缆组成的多个线组(52-56)从模块体的不同侧被从电气设备模块(50)的模块本体(51)引出,从而减小了每一个的外径和厚度 线组,使得模块体很薄并且适合于安装在座椅下方的狭窄布局空间中。 通过将模块主体中的印刷电路板(51m)连接到外部电源或外部传感器并且在连接器与印刷电路板(51m)之间进行复杂布线的连接器 在模块体中,简化了电气设备模块制造时的组装(布线)工作。
    • 3. 发明申请
    • FLIGHT CONTROL DEVICE, SPACECRAFT, AND REFERENCE TRAJECTORY CORRECTING METHOD
    • 飞行控制装置,空间和参考轨迹校正方法
    • US20140136029A1
    • 2014-05-15
    • US14131502
    • 2012-07-11
    • Tetsuya NagaseAtsushi Sasaki
    • Tetsuya NagaseAtsushi Sasaki
    • B64G1/24
    • B64G1/242B64G1/24B64G1/62
    • A flight control method and device for correcting a reference trajectory based on a distance from a current position to a target position in a spacecraft in flight. A CPU included in the spacecraft generates a reference trajectory which is a trajectory for allowing the spacecraft in flight to arrive at the target position on a celestial body with the atmosphere, and which is identified based on velocity or energy of the spacecraft and on drag acceleration of the spacecraft. The CPU calculates a ratio between the range that is a distance from the current position based on the reference trajectory to the target position, and the real range that is a real distance from a current position to the target position, and corrects the reference trajectory by calculating the drag acceleration in the reference trajectory using the calculated ratio.
    • 一种飞行控制方法和装置,用于基于从飞行中的航天器中的当前位置到目标位置的距离来校正参考轨迹。 包括在航天器中的CPU产生参考轨迹,该轨迹是允许飞行中的航天器到达具有大气的天体上的目标位置的轨迹,并且基于航天器的速度或能量以及拖曳加速度来识别 的航天器。 CPU根据基准轨迹计算与当前位置距离的距离与目标位置之间的距离,以及作为从当前位置到目标位置的实际距离的实际范围,并将基准轨迹修正为 使用计算的比率计算参考轨迹中的拖动加速度。
    • 4. 发明授权
    • Image reading device and image reading method used therein
    • 其中使用的图像读取装置和图像读取方法
    • US08643918B2
    • 2014-02-04
    • US12365384
    • 2009-02-04
    • Atsushi Sasaki
    • Atsushi Sasaki
    • H04N1/04
    • H04N1/031H04N1/0402H04N1/0408H04N1/0455H04N1/193H04N1/1934H04N1/1938
    • An image reading device, which has an image sensor having a plurality of sensor chips therein and being capable of outputting data in parallel through a plurality of output channels, includes an image reading section configured to perform reading of images in either of two outputting modes, one being a parallel outputting mode in which start signals are simultaneously inputted to the plurality of sensor chips so that pieces of data in the plurality of the sensor chips are outputted in parallel through the plurality of output channels, respectively, the other one being an interval outputting mode in which start signals are sequentially inputted to the plurality of sensor chips at intervals of time between any two successive inputs of the start signals, respectively, so that respective pieces of data in the plurality of sensor chips are sequentially outputted through any one of the plurality of output channels, and a mode selection section configured to select either of the two outputting modes in accordance with a set resolution.
    • 一种具有图像传感器的图像读取装置,其中具有多个传感器芯片,并且能够通过多个输出通道并行地输出数据,所述图像读取装置包括:图像读取部,被配置为以两种输出模式中的任一种进行图像的读取; 一个是并行输出模式,其中开始信号被同时输入到多个传感器芯片,使得多个传感器芯片中的数据分别通过多个输出通道并行输出,另一个是间隔 输出模式,其中开始信号分别以起始信号的任意两个连续输入之间的时间间隔依次输入到多个传感器芯片,使得多个传感器芯片中的各个数据通过以下任何一个依次输出: 所述多个输出通道,以及被配置为选择所述两个输出信号中的任一个的模式选择部 g模式根据设定的分辨率。
    • 7. 发明申请
    • Image input apparatus with CCD color image sensor
    • 具有CCD彩色图像传感器的图像输入设备
    • US20070127089A1
    • 2007-06-07
    • US11607248
    • 2006-11-30
    • Atsushi Sasaki
    • Atsushi Sasaki
    • H04N1/04
    • H04N5/3591H04N1/193H04N5/3595H04N5/3692H04N5/372H04N9/045
    • A CCD color image sensor which prevents unnecessary charge from overflowing in a photoelectric conversion element. An image input apparatus having the CCD color image sensor comprises transferring unit which transfers effective charge accumulated in the photoelectric conversion element provided for each of the colors (R, G and B), extracted as an output signal, to a shift register by opening a shift gate; and discarding unit which discards unnecessary charge accumulated in the photoelectric conversion element by opening the shift gate at different timing from one color to another immediately before the photoelectric conversion element starts accumulating effective charge again. The discarding unit discards unnecessary charge immediately before effective charge accumulates, and discards unnecessary charge by opening the shift gate before unnecessary charge overflows in the photoelectric conversion element.
    • CCD彩色图像传感器,其防止不必要的电荷在光电转换元件中溢出。 具有CCD彩色图像传感器的图像输入装置包括传送单元,该传送单元将通过提取的每个颜色(R,G和B)提供的光电转换元件中的有效电荷传送到移位寄存器,打开 移门 以及在光电转换元件再次开始累积有效电荷之前,通过以不同的定时从一种颜色切换到另一种颜色的方式,在光电转换元件中废弃不必要的电荷的废弃单元。 丢弃单元在有效电荷累积之前立即丢弃不必要的电荷,并且在光电转换元件中不必要的电荷溢出之前打开移位门来丢弃不必要的电荷。
    • 9. 发明授权
    • Loudspeaker unit adapted to environment
    • 扬声器单元适应环境
    • US06996240B1
    • 2006-02-07
    • US09039072
    • 1998-03-13
    • Atsushi Sasaki
    • Atsushi Sasaki
    • H04R29/00H03G3/00H03G5/00
    • H03G5/16H03G3/32H04R3/04H04R29/001H04S7/30H04S7/305
    • A loudspeaker unit which requires no particular procedure for correction of the acoustic characteristic even if the installation environment of the loudspeaker unit changes, and which can correct, in addition to the frequency characteristic, a sound lag and a phase shift ascribable to the reverberation and an echo of a sound. The loudspeaker unit picks up a sound regenerating from the loud speaker with a microphone, and compares in real time a sound from a sound source with a regenerative sound, referring to a difference therebetween, with reference to the characteristic at an optional frequency and the characteristic of the reverberation or the echo each including the delay time, respectively, and corrects the signal to be sent to the loudspeaker by the result of arithmetic.
    • 即使扬声器单元的安装环境发生变化,除了频率特性之外,还可以校正归因于混响的声音滞后和相位偏移的扬声器单元,其不需要用于校正声学特性的特定过程, 回声的声音。 扬声器单元用扬声器拾取从扬声器再生的声音,并且参考其间的差异,参考可选频率的特性和特性,实时地比较来自声源的声音与再生声音的声音 的混响或包含延迟时间的回波,并且通过算术结果校正要发送到扬声器的信号。