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    • 1. 发明授权
    • Analog signal measuring apparatus
    • 模拟信号测量装置
    • US4638185A
    • 1987-01-20
    • US670622
    • 1984-11-13
    • Kensuke KobayashiYasuo Tazoh
    • Kensuke KobayashiYasuo Tazoh
    • G01R19/00G01R19/257H03K17/92H03K17/00
    • H03K17/92Y10S505/865
    • An analog signal measuring apparatus has: a sampling gate circuit, having a plurality of input terminals including an analog signal input terminal and a feedback signal input terminal, for generating an output signal of high or low level when a sum of input signals goes beyond or falls below a predetermined threshold value; a signal generating circuit, connected to an output terminal of the sampling gate circuit, for changing an output signal by a predetermined level toward a direction in which an output signal level of the sampling gate circuit is inverted when a trigger signal is applied to the signal generating circuit, and for supplying a feedback signal to the feedback signal input terminal of the sampling gate circuit; and a read circuit for generating a value obtained when the feedback signal from the signal generating circuit converges, the feedback signal corresponding to a value of an analog signal supplied to the analog signal input terminal, wherein a ratio of an increment .DELTA.I0 to a decrement .DELTA.I1 in a change in the output from the signal generating circuit is controlled in response to a control signal.
    • 模拟信号测量装置具有:采样门电路,具有包括模拟信号输入端和反馈信号输入端的多个输入端,用于当输入信号之和超过或高于或等于或等于 低于预定阈值; 信号发生电路,连接到采样门电路的输出端,用于当触发信号施加到信号时将输出信号改变预定电平朝向采样门电路的输出信号电平反转的方向 并且用于将反馈信号提供给采样门电路的反馈信号输入端; 以及读取电路,用于产生当来自信号发生电路的反馈信号收敛时获得的值,所述反馈信号对应于提供给模拟信号输入端的模拟信号的值,其中增量DELTA I0与减量的比率 响应于控制信号来控制来自信号发生电路的输出变化的DELTA I1。
    • 3. 发明申请
    • Sequential timebase
    • 顺序时基
    • US20080054967A1
    • 2008-03-06
    • US11897860
    • 2007-08-31
    • Kensuke Kobayashi
    • Kensuke Kobayashi
    • H03L7/00
    • G01R13/0254G01R35/002
    • A method and apparatus for correcting for deterministic jitter in a sequential sampling timebase. The value of a fine analog delay is held at a substantially constant nominal rate during a duration of a counting of a digital clock. A time difference between a trigger at which a fine analog delay starts measuring time and the occurrence of a digital pulse of a stable clock used to count a coarse delay is measured. An input waveform is sampled at a sample time having a nominal delay time. After sampling, a desired compensation time is provided for the sample of the input waveform in accordance with combinations of three independent variables defining a calibration table. The waveform is reconstructed by shifting a delay time of a sampled value of the input waveform from its nominal delay time in accordance with a value defined by the calibration table.
    • 一种用于校正连续采样时基中的确定性抖动的方法和装置。 在数字时钟的计数期间,精细模拟延迟的值被保持在基本恒定的标称速率。 测量精细模拟延迟开始测量时间的触发与用于计算粗略延迟的稳定时钟的数字脉冲的出现之间的时间差。 在具有标称延迟时间的采样时间对输入波形进行采样。 在采样之后,根据定义校准表的三个独立变量的组合,为输入波形的样本提供期望的补偿时间。 根据由校准表定义的值,从输入波形的标称延迟时间移位采样值的延迟时间来重构波形。
    • 7. 发明授权
    • Sequential timebase
    • 顺序时基
    • US07653500B2
    • 2010-01-26
    • US11897860
    • 2007-08-31
    • Kensuke Kobayashi
    • Kensuke Kobayashi
    • G01R13/00G01D18/00
    • G01R13/0254G01R35/002
    • A method and apparatus for correcting for deterministic jitter in a sequential sampling timebase. The value of a fine analog delay is held at a substantially constant nominal rate during a duration of a counting of a digital clock. A time difference between a trigger at which a fine analog delay starts measuring time and the occurrence of a digital pulse of a stable clock used to count a coarse delay is measured. An input waveform is sampled at a sample time having a nominal delay time. After sampling, a desired compensation time is provided for the sample of the input waveform in accordance with combinations of three independent variables defining a calibration table. The waveform is reconstructed by shifting a delay time of a sampled value of the input waveform from its nominal delay time in accordance with a value defined by the calibration table.
    • 一种用于校正连续采样时基中的确定性抖动的方法和装置。 在数字时钟的计数期间,精细模拟延迟的值被保持在基本恒定的标称速率。 测量精细模拟延迟开始测量时间的触发与用于计算粗略延迟的稳定时钟的数字脉冲的出现之间的时间差。 在具有标称延迟时间的采样时间对输入波形进行采样。 在采样之后,根据定义校准表的三个独立变量的组合,为输入波形的样本提供期望的补偿时间。 根据由校准表定义的值,从输入波形的标称延迟时间移位采样值的延迟时间来重构波形。
    • 8. 发明申请
    • Sequential timebase
    • 顺序时基
    • US20060178850A1
    • 2006-08-10
    • US11346654
    • 2006-02-03
    • Kensuke Kobayashi
    • Kensuke Kobayashi
    • G01D18/00G01D21/00G01M19/00
    • G01R13/0254G01R35/002
    • A method and apparatus for correcting for deterministic jitter in a sequential sampling timebase, a sample time for the sequential sampling timebase being defined by a time duration of a combination of a fine analog delay and coarse delay determined by the counting of digital pulses of a stable clock. The value of the fine analog delay is held at a substantially constant nominal rate during the duration of the counting of the digital clock. In the method a time difference between a trigger at which the fine analog delay starts measuring time and the occurrence of a digital pulse of the stable clock being used to count the coarse delay is measured. An input waveform is sampled at a sample time having a nominal delay time. After sampling, a desired compensation time is provided for the sample of the input waveform in accordance with a plurality of combinations of three independent variables defining a calibration table, the calibration table having independent variables including the time interval defined by the fine analog delay, the time interval defined by the coarse delay, and the time interval measured between the trigger at which the fine analog delay starts measuring time and the occurrence of the digital pulse of the stable clock being used to count the coarse delay, and the waveform is reconstructed by shifting the delay time of sampled value of the input waveform from its nominal delay time in accordance with a value defined by the calibration table.
    • 一种用于校正连续采样时基中的确定性抖动的方法和装置,用于顺序采样时基的采样时间由精细模拟延迟和由稳定的数字脉冲的计数确定的粗略延迟的组合的持续时间定义 时钟。 在数字时钟的计数期间,精细模拟延迟的值保持在基本上恒定的标称速率。 在该方法中,测量精细模拟延迟开始测量时间的触发与用于计算粗延迟的稳定时钟的数字脉冲的出现之间的时间差。 在具有标称延迟时间的采样时间对输入波形进行采样。 在采样之后,根据定义校准表的三个独立变量的多个组合,为输入波形的样本提供期望的补偿时间,该校准表具有独立变量,包括由精细模拟延迟定义的时间间隔, 由粗延迟定义的时间间隔和精细模拟延迟开始测量时间的触发之间测量的时间间隔和用于计算粗延迟的稳定时钟的数字脉冲的出现,波形由 根据校准表定义的值,将输入波形的采样值的延迟时间从标称延迟时间移位。
    • 9. 发明授权
    • Air intake system of engine
    • 发动机进气系统
    • US06805088B2
    • 2004-10-19
    • US10212088
    • 2002-08-06
    • Yuki TachibanaKensuke KobayashiYuji Chiba
    • Yuki TachibanaKensuke KobayashiYuji Chiba
    • F02M3510
    • F02M35/10288F02B75/243F02B2075/1816F02M35/04F02M35/10032F02M35/10039F02M35/10111F02M35/10216F02M35/10222F02M35/10255F02M35/10321F02M35/10347F02M35/1165F05C2225/08
    • In the air intake system of an engine which introduces air passed through a cleaner case having filter element therein into a throttle box through a throttle, and distributes the air from the throttle box to each cylinder of the engine by an intake manifold, the throttle is provided in the throttle box such that a center axis of the throttle is provided substantially horizontally and in a center in the vertical direction between the ends on the upstream side of the intake pipes. The intake pipes are provided on both sides of the throttle box and the throttle is connected to the throttle box such that a center axis of the throttle is arranged substantially horizontal and, simultaneously, an intake route for linking the throttle (including the main port) to the filter element is substantially arranged linearly on the center axis of the throttle. Also, the inside of the cleaner case is in the form of a hollow and is divided by a partition into the air cleaner case and a blowby room. The throttle box and the intake manifold are separately formed in advance and then are monolithically connected to each other.
    • 在将通过其中具有过滤元件的清洁器壳体的空气通过节气门引入节流阀的发动机的进气系统中,并且通过进气歧管将空气从节气门分配到发动机的每个气缸, 设置在节气门箱中,使得节气门的中心轴大致水平地设置,并且在进气管的上游侧的端部之间沿垂直方向设置中心。 进气管设置在节气门的两侧,并且节流阀连接到节气门箱,使得节气门的中心轴基本上水平布置,并且同时具有用于连接节气门(包括主口)的进气路径, 过滤元件基本上在节气门的中心轴上线性地布置。 此外,清洁器壳体的内部是中空的形式,并且被隔板分成空气滤清器壳体和排气室。 节气门箱和进气歧管预先分开形成,然后彼此单片连接。
    • 10. 发明授权
    • X-ray imaging apparatus
    • X射线成像装置
    • US09320483B2
    • 2016-04-26
    • US13230998
    • 2011-09-13
    • Kensuke Kobayashi
    • Kensuke Kobayashi
    • A61B6/00G03B42/04A61B6/10
    • A61B6/56A61B6/00A61B6/10A61B6/4283A61B6/4423A61B6/5205A61B6/54G03B42/04
    • An X-ray imaging apparatus includes: an X-ray sensor configured to convert an X-ray to an image signal; a battery configured to supply electric power for driving the X-ray sensor; a battery holder configured to detachably hold the battery; a lock mechanism configured to lock the battery in a state in which it is attached to the battery holder; and a lock releasing mechanism configured to release the lock effected by the lock mechanism, wherein the lock releasing mechanism is configured to release the lock by the lock mechanism through at least two operations performed by the operator.
    • X射线成像装置包括:X射线传感器,被配置为将X射线转换为图像信号; 配置为提供用于驱动所述X射线传感器的电力的电池; 电池座,其构造成可拆卸地保持所述电池; 锁定机构,被配置为将电池锁定在其附接到电池座的状态; 以及锁定释放机构,其构造成释放由所述锁定机构实现的所述锁定,其中所述锁定释放机构被构造成通过所述操作者执行的至少两个操作来由所述锁定机构释放所述锁定。