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    • 21. 发明授权
    • Light receiving device with controllable sensitivity and spatial information detecting apparatus with charge discarding device using the same
    • 具有可控灵敏度的光接收装置和具有使用其的放电装置的空间信息检测装置
    • US07138646B2
    • 2006-11-21
    • US10510216
    • 2003-07-14
    • Yusuke HashimotoYuji TakadaFumikazu KuriharaSatoshi FurukawaMotoo Ikari
    • Yusuke HashimotoYuji TakadaFumikazu KuriharaSatoshi FurukawaMotoo Ikari
    • G01N21/86
    • G01S7/493G01S7/4914G01S17/36H01L27/14806H01L27/14831H04N5/3597
    • A spatial information detecting apparatus using an intensity-modulated light has a photoelectric converter for receiving a light provided from a space, into which a light intensity-modulated by a predetermined modulation signal is being irradiated, and generating amounts of electric charges corresponding to an intensity of received light; charge discarding portion having an electrode for removing dispensable charges from the electric charges generated by the photoelectric converter according to a voltage applied to the electrode; charge storage portion for storing signal charges from the electric charges generated by the photoelectric converter; control circuit for controlling the voltage applied to the electrode at a timing synchronized with a period of the modulation signal to change a ratio of the signal charges stored in the charge storage portion to the electric charges generated by the photoelectric converter; charge ejector for outputting the signal charges from the charge storage portion; and an analyzer for determining spatial information from an output of the charge ejector. According to this apparatus, since the dispensable charges are previously removed from the electric charges generated by the photoelectric converter by the charge discarding portion, it is possible to improve S/N ratio and accurately determine the spatial information.
    • 使用强度调制光的空间信息检测装置具有光电转换器,用于接收由照射由预定调制信号调制的光的空间提供的光,并产生与强度对应的电荷量 收到光; 具有用于根据施加到所述电极的电压从所述光电转换器产生的电荷中去除可分配电荷的电极的放电部分; 电荷存储部分,用于存储由光电转换器产生的电荷的信号电荷; 控制电路,用于在与调制信号的周期同步的定时控制施加到电极的电压,以将存储在电荷存储部分中的信号电荷的比率改变为由光电转换器产生的电荷; 电荷喷射器,用于从电荷存储部分输出信号电荷; 以及用于从所述电荷喷射器的输出确定空间信息的分析器。 根据该装置,由于通过电荷丢弃部分预先从光电转换器产生的电荷中去除了可分配的电荷,所以可以提高S / N比并精确地确定空间信息。
    • 22. 发明授权
    • Driving device and spatial information detecting device using the same
    • 驱动装置和使用其的空间信息检测装置
    • US09131176B2
    • 2015-09-08
    • US13696099
    • 2011-06-13
    • Fumikazu KuriharaYusuke Hashimoto
    • Fumikazu KuriharaYusuke Hashimoto
    • H01L27/00H04N5/372H01L27/148H04N5/376G01S17/89G01S7/486
    • H04N5/37213G01S7/4865G01S17/89H01L27/148H01L27/14806H01L27/14856H04N5/372H04N5/3765
    • The driving device includes an applied voltage control unit configured to perform a transfer process of controlling a charge-coupled device to transfer electric charges. The applied voltage control unit is configured to switch, in order from a first end to a second end of a line of transfer electrodes of the charge-coupled device, a voltage applied to the transfer electrode from a control voltage for forming a potential well to a reference voltage for eliminating the potential well. The applied voltage control unit includes a control circuit configured to generate a driving signal based on a clock signal, and a driving circuit configured to apply the control voltage and the reference voltage selectively to the transfer electrode in accordance with the driving signal. The control circuit is configured to delay a second driving signal defined by the driving signal associated with one of the adjacent transfer electrodes from a first driving signal defined by the driving signal associated with the other of the adjacent transfer electrodes so as to adjust a phase difference between the first driving signal and the second driving signal to a value corresponding to predetermined time shorter than a period of the clock signal.
    • 驱动装置包括:施加电压控制单元,被配置为执行控制电荷耦合器件传送电荷的转移过程。 施加电压控制单元被配置为从电荷耦合器件的一行转移电极的第一端到第二端的顺序,从用于形成势阱的控制电压施加到转移电极的电压 用于消除潜在井的参考电压。 所施加的电压控制单元包括被配置为基于时钟信号产生驱动信号的控制电路和被配置为根据驱动信号将控制电压和参考电压选择性地施加到转移电极的驱动电路。 控制电路被配置为从由与相邻传输电极中的另一个相关联的驱动信号限定的第一驱动信号延迟由与相邻传输电极之一相关联的驱动信号限定的第二驱动信号,以便调整相位差 在第一驱动信号和第二驱动信号之间的值为对应于比时钟信号的周期短的预定时间的值。
    • 23. 发明申请
    • DRIVING DEVICE AND SPATIAL INFORMATION DETECTING DEVICE USING THE SAME
    • 驱动装置和空间信息使用该装置检测装置
    • US20130056618A1
    • 2013-03-07
    • US13696099
    • 2011-06-13
    • Fumikazu KuriharaYusuke Hashimoto
    • Fumikazu KuriharaYusuke Hashimoto
    • H01L27/148G01J1/44
    • H04N5/37213G01S7/4865G01S17/89H01L27/148H01L27/14806H01L27/14856H04N5/372H04N5/3765
    • The driving device includes an applied voltage control unit configured to perform a transfer process of controlling a charge-coupled device to transfer electric charges. The applied voltage control unit is configured to switch, in order from a first end to a second end of a line of transfer electrodes of the charge-coupled device, a voltage applied to the transfer electrode from a control voltage for forming a potential well to a reference voltage for eliminating the potential well. The applied voltage control unit includes a control circuit configured to generate a driving signal based on a clock signal, and a driving circuit configured to apply the control voltage and the reference voltage selectively to the transfer electrode in accordance with the driving signal. The control circuit is configured to delay a second driving signal defined by the driving signal associated with one of the adjacent transfer electrodes from a first driving signal defined by the driving signal associated with the other of the adjacent transfer electrodes so as to adjust a phase difference between the first driving signal and the second driving signal to a value corresponding to predetermined time shorter than a period of the clock signal.
    • 驱动装置包括:施加电压控制单元,被配置为执行控制电荷耦合器件传送电荷的转移过程。 施加电压控制单元被配置为从电荷耦合器件的一行转移电极的第一端到第二端的顺序,从用于形成势阱的控制电压施加到转移电极的电压 用于消除潜在井的参考电压。 所施加的电压控制单元包括被配置为基于时钟信号产生驱动信号的控制电路和被配置为根据驱动信号将控制电压和参考电压选择性地施加到转移电极的驱动电路。 控制电路被配置为从由与相邻传输电极中的另一个相关联的驱动信号限定的第一驱动信号延迟由与相邻传输电极之一相关联的驱动信号限定的第二驱动信号,以便调整相位差 在第一驱动信号和第二驱动信号之间的值为对应于比时钟信号的周期短的预定时间的值。
    • 24. 发明申请
    • SPATIAL INFORMATION DETECTING APPARATUS
    • 空间信息检测装置
    • US20090045359A1
    • 2009-02-19
    • US12096019
    • 2007-10-10
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • G01N21/84
    • G01S17/36G01S7/4913G01S7/4915G01S7/493G01S7/497G01S17/89
    • In an apparatus using an intensity-modulated light for detection of spatial information based upon light intensity of light reflected from a target space, a timing synchronization circuit is provided to synchronize a phase of the intensity-modulated light from a light-emitting element with a timing of operating a light-receiving element receiving the intensity-modulated light. The light-receiving element is caused to operate for enabling the detection of intensity of the received light for each of a plurality of phase regions within one cycle of the intensity-modulated light. The timing synchronization circuit functions to compare a cyclic variation determining the operation of the light-receiving element with a cyclic variation associated with an output from a light-emitting element driving circuit in order to keep a constant phase difference between these two cyclic variations.
    • 在使用强度调制光用于基于从目标空间反射的光的光强度来检测空间信息的装置中,提供定时同步电路以使来自发光元件的强度调制光的相位与 操作接收强度调制光的光接收元件的定时。 导致光接收元件操作,以便能够在强度调制光的一个周期内检测多个相位区域中的每一个的接收光的强度。 定时同步电路用于将确定光接收元件的操作的循环变化与与发光元件驱动电路的输出相关联的循环变化进行比较,以便在这两个循环变化之间保持恒定的相位差。
    • 25. 发明申请
    • Photodetector, Spatial Information Detecting Device Using The Photodetector, And Photo Detection Method
    • 光电检测器,使用光电检测器的空间信息检测装置和照相检测方法
    • US20080029690A1
    • 2008-02-07
    • US11722110
    • 2005-12-28
    • Yusuke HashimotoYuji Takada
    • Yusuke HashimotoYuji Takada
    • H01L27/144
    • H04N5/335G01C3/085G01S7/4816G01S7/4914G01S7/493G01S17/89H01L27/14625H01L27/14806H01L27/14843H01L27/1485H01L31/0224
    • A photodetector is provided, which has the capability of preventing a reduction in dynamic range for a signal light even under a plenty of environmental light to stably obtain a received light output. This photodetector has an accumulation electrode and a holding electrode, which are formed on a photoelectric converting portion through an insulating layer, and a control unit for controlling timings of applying voltages to these electrodes and polarities of the voltages. One of electrons and holes generated in the photoelectric converting portion is accumulated in an accumulation region formed by applying the voltage to the accumulation electrode, and the other is accumulated in a holding region formed by applying the voltage to the holding electrode. Then, the electrons and holes accumulated in the accumulation region and the holding region are recombined, so that remaining electrons or holes not recombined are output.
    • 提供一种光电检测器,其具有即使在大量环境光下也能够防止信号光的动态范围的降低以稳定地获得接收的光输出的能力。 该光检测器具有通过绝缘层形成在光电转换部分上的累积电极和保持电极,以及用于控制向这些电极施加电压的定时和电压的极性的控制单元。 在光电转换部分中产生的电子和空穴中的一个被积聚在通过向累积电极施加电压而形成的累积区域中,另一个在通过向保持电极施加电压形成的保持区域中积累。 然后,积聚在积存区域和保持区域中的电子和空穴被再结合,从而输出剩余的电子或未再结合的空穴。
    • 26. 发明授权
    • Spatial information detecting apparatus
    • 空间信息检测装置
    • US07755743B2
    • 2010-07-13
    • US12096019
    • 2007-10-10
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • Minoru KumaharaYusuke HashimotoShinji SakamotoYuji Takada
    • G01C3/08
    • G01S17/36G01S7/4913G01S7/4915G01S7/493G01S7/497G01S17/89
    • In an apparatus using an intensity-modulated light for detection of spatial information based upon light intensity of light reflected from a target space, a timing synchronization circuit is provided to synchronize a phase of the intensity-modulated light from a light-emitting element with a timing of operating a light-receiving element receiving the intensity-modulated light. The light-receiving element is caused to operate for enabling the detection of intensity of the received light for each of a plurality of phase regions within one cycle of the intensity-modulated light. The timing synchronization circuit functions to compare a cyclic variation determining the operation of the light-receiving element with a cyclic variation associated with an output from a light-emitting element driving circuit in order to keep a constant phase difference between these two cyclic variations.
    • 在使用强度调制光用于基于从目标空间反射的光的光强度来检测空间信息的装置中,提供定时同步电路以使来自发光元件的强度调制光的相位与 操作接收强度调制光的光接收元件的定时。 导致光接收元件操作,以便能够在强度调制光的一个周期内检测多个相位区域中的每一个的接收光的强度。 定时同步电路用于将确定光接收元件的操作的循环变化与与发光元件驱动电路的输出相关联的循环变化进行比较,以便在这两个循环变化之间保持恒定的相位差。
    • 27. 发明授权
    • Photodetector, spatial information detecting device using the photodetector, and photo detection method
    • 光检测器,使用光电检测器的空间信息检测装置和光检测方法
    • US07476841B2
    • 2009-01-13
    • US11722110
    • 2005-12-28
    • Yusuke HashimotoYuji Takada
    • Yusuke HashimotoYuji Takada
    • H01L27/00
    • H04N5/335G01C3/085G01S7/4816G01S7/4914G01S7/493G01S17/89H01L27/14625H01L27/14806H01L27/14843H01L27/1485H01L31/0224
    • A photodetector is provided, which has the capability of preventing a reduction in dynamic range for a signal light even under a plenty of environmental light to stably obtain a received light output. This photodetector has an accumulation electrode and a holding electrode, which are formed on a photoelectric converting portion through an insulating layer, and a control unit for controlling timings of applying voltages to these electrodes and polarities of the voltages. One of electrons and holes generated in the photoelectric converting portion is accumulated in an accumulation region formed by applying the voltage to the accumulation electrode, and the other is accumulated in a holding region formed by applying the voltage to the holding electrode. Then, the electrons and holes accumulated in the accumulation region and the holding region are recombined, so that remaining electrons or holes not recombined are output.
    • 提供一种光电检测器,其具有即使在大量环境光下也能够防止信号光的动态范围的降低以稳定地获得接收的光输出的能力。 该光检测器具有通过绝缘层形成在光电转换部分上的累积电极和保持电极,以及用于控制向这些电极施加电压的定时和电压的极性的控制单元。 在光电转换部分中产生的电子和空穴中的一个被积聚在通过向累积电极施加电压而形成的累积区域中,另一个在通过向保持电极施加电压形成的保持区域中积累。 然后,积聚在积存区域和保持区域中的电子和空穴被再结合,从而输出剩余的电子或未再结合的空穴。
    • 29. 发明申请
    • Mounting Structure of Infrared Camera and Infrared Camera Provided with the Same
    • 配备红外线摄像机和红外摄像机的安装结构
    • US20120212620A1
    • 2012-08-23
    • US13400842
    • 2012-02-21
    • Yusuke Hashimoto
    • Yusuke Hashimoto
    • H04N5/33
    • G02B7/028G03B17/14
    • An object of the present invention is to provide a mounting structure of infrared camera which enables effective transfer of heat generated in an image sensor to a lens unit without increasing the size of the infrared camera. In order to achieve the object, a mounting structure of infrared camera comprising a lens-side mount disposed in a lens unit in which an imaging lenses are disposed; and a camera main body-side mount disposed in a camera main body and geared with the lens-side mount in an attachable and detachable manner, wherein the geared portion between the lens-side mount and the camera main body-side mount has a contact area effective for heat transfer of 36% or more of the total surface area is adopted.
    • 本发明的目的是提供一种红外摄像机的安装结构,其能够有效地将图像传感器中产生的热传递到透镜单元,而不增加红外摄像机的尺寸。 为了达到上述目的,本发明提供了一种红外线摄像机的安装结构,其包括:透镜侧安装件,设置在配置成像透镜的透镜单元中; 以及相机主体侧安装件,其设置在照相机主体中并且以可拆卸的方式与透镜侧安装件配合,其中,透镜侧安装件和照相机主体侧安装件之间的齿轮部分具有接触 采用有效传热总面积的36%以上的面积。