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    • 1. 发明授权
    • Photographic data printing device
    • 摄影数据打印设备
    • US4198146A
    • 1980-04-15
    • US898333
    • 1978-04-20
    • Tetsuya TaguchiShuichi TamuraYouichi Okuno
    • Tetsuya TaguchiShuichi TamuraYouichi Okuno
    • G03B17/24G03B13/02
    • G03B17/245G03B2217/243
    • A data printing device for use in a photographic camera includes an electronic clock for providing time and date data to be printed in digital form on the associated film in the camera. In one embodiment, the data are grouped into two parts which are printed in time-displaced relation to each other on a common picture frame, while the data are prevented from changing during the printing operation, as time passes on. The display of data is effected only when printing is performed, or when required or desired values of time and/or date are set in the electronic clock, thereby the consumption of electrical energy of a common battery of the exposure control apparatus in the camera is minimized.
    • 用于照相机的数据打印装置包括一个电子时钟,用于提供数字形式的时间和日期数据,以便在相机中的相关胶片上。 在一个实施例中,数据被分组成两个部分,这些部分在公共图像帧上以时间位移关系打印,同时在打印操作期间防止数据在时间过去时改变。 数据的显示仅在执行打印时进行,或者当需要时或期望的时间和/或日期值被设置在电子时钟中时,照相机中的曝光控制装置的公用电池的电能的消耗是 最小化。
    • 3. 发明授权
    • Camera provided with automatic focus adjusting device
    • 相机配有自动对焦调节装置
    • US4350418A
    • 1982-09-21
    • US74313
    • 1979-09-11
    • Tetsuya TaguchiShuichi TamuraRyuji TokudaMasahiko Ogawa
    • Tetsuya TaguchiShuichi TamuraRyuji TokudaMasahiko Ogawa
    • G02B7/32G03B17/40G03B13/18
    • G03B17/40G02B7/32
    • The disclosed camera is provided with an automatic focus adjusting device for automatically adjusting the focus of an objective lens. A timer circuit, adapted to be actuated in synchronism with the automatic focusing device initiating focus adjustment of the objective lens, sets a predetermined time and inhibits the actuation of a shutter release device for the predetermined time. In a preferred embodiment, the shutter release actuation is controlled in accordance with the logic condition of a focus adjustment completion signal obtained from the automatic focus adjusting device and a time count completion signal produced when the predetermined time has elapsed. In another embodiment of the present invention, a battery voltage detecting circuit prevents shutter release when the voltage of the battery energizing the camera is below a predetermined level.
    • 所公开的相机设置有用于自动调节物镜的焦点的自动聚焦调节装置。 定时器电路适于与自动聚焦装置同步地启动物镜的聚焦调整,设定预定时间并禁止快门释放装置的致动达预定时间。 在优选实施例中,根据从自动对焦调整装置获得的焦点调整完成信号的逻辑状态和当经过预定时间时产生的时间计数完成信号来控制快门释放致动。 在本发明的另一实施例中,电池电压检测电路防止当照相机通电的电池电压低于预定电平时快门释放。
    • 4. 发明授权
    • Distance detecting device
    • 距离检测装置
    • US4291223A
    • 1981-09-22
    • US13294
    • 1979-02-21
    • Toshio SakaneTetsuya TaguchiMasahiko OgawaShuichi TamuraTokuichi Tsunekawa
    • Toshio SakaneTetsuya TaguchiMasahiko OgawaShuichi TamuraTokuichi Tsunekawa
    • G01S17/46G02B7/32G03B3/10G01C3/08
    • G02B7/32G01S17/46
    • A distance detecting device comprising radiation projecting means for projecting a radiation beam; radiation sensing means which is disposed away from the radiation projecting means with a given length and is arranged to receive a reflected radiation beam coming from an object whose distance is to be detected as the radiation beam is projected from the projecting means; and movable means for relatively varying the incident condition of the projected radiation beam onto the sensing means. The distance to the object is found either by the position of the movable means or by the amount of displacement thereof which occurs at a time point at which the sensing means optimally receive the reflected radiation beam coming from the object in the process of relatively varying the incident condition of the projected radiation beam onto the sensing means. In the incident condition varying process, the output signal of the sensing means and a delayed signal which is obtained by delaying the output signal a predetermined period of time are compared with each other to detect a time point at which the output signal of the sensing means has reached its peak level and, accordingly, to detect when the sensing means optimally receive the reflected radiation beam coming from the object.
    • 一种距离检测装置,包括用于投影辐射束的辐射投射装置; 放射线检测装置,其以特定长度远离辐射投射装置设置,并被布置为当辐射束从突出装置突出时,接收来自待检测距离的物体的反射辐射束; 以及用于将投射的辐射束的入射状态相对变化到感测装置上的可移动装置。 通过可移动装置的位置或通过在相对变化的过程中感测装置最佳地接收来自物体的反射辐射束的时间点发生的距离来发现到物体的距离 投影辐射束到感测装置上的入射条件。 在入射条件变化处理中,将预定时间段的输出信号延迟获得的感测装置的输出信号和延迟信号进行比较,以检测感测装置的输出信号的时间点 已经达到其峰值水平,并因此检测感测装置何时最佳地接收来自物体的反射辐射束。
    • 7. 发明授权
    • Distance detecting device
    • 距离检测装置
    • US4636053A
    • 1987-01-13
    • US138316
    • 1980-04-08
    • Toshio SakaneTetsuya TaguchiMasahiko OgawaShuichi TamuraTokuichi Tsunekawa
    • Toshio SakaneTetsuya TaguchiMasahiko OgawaShuichi TamuraTokuichi Tsunekawa
    • G01S17/46G03B3/10G03B3/00G03B1/34H01J40/14
    • G03B3/10G01S17/46
    • A distance detecting device comprising radiation projecting means for projecting a radiation beam; radiation sensing means which is disposed away from the radiation projecting means with a given length and is arranged to receive a reflected radiation beam coming from an object whose distance is to be detected as the radiation beam is projected from the projecting means; and movable means for relatively varying the incident condition of the projected radiation beam onto the sensing means. The distance to the object is found either by the position of the movable means or by the amount of displacement thereof which occurs at a time point at which the sensing means optimally receive the reflected radiation beam coming from the object in the process of relatively varying the incident condition of the projected radiation beam onto the sensing means. In the incident condition varying process, the output signal of the sensing means and a delayed signal which is obtained by delaying the output signal a predetermined period of time are compared with each other to detect a time point at which the output signal of the sensing means has reached its peak level and, accordingly, to detect when the sensing means optimally recieve the reflected radiation beam coming from the object.
    • 一种距离检测装置,包括用于投影辐射束的辐射投射装置; 放射线检测装置,其以特定长度远离辐射投射装置设置,并被布置为当辐射束从突出装置突出时,接收来自待检测距离的物体的反射辐射束; 以及用于将投射的辐射束的入射状态相对变化到感测装置上的可移动装置。 通过可移动装置的位置或通过在相对变化的过程中感测装置最佳地接收来自物体的反射辐射束的时间点发生的距离来发现到物体的距离 投影辐射束到感测装置上的入射条件。 在入射条件变化处理中,将预定时间段的输出信号延迟获得的感测装置的输出信号和延迟信号进行比较,以检测感测装置的输出信号的时间点 已经达到其峰值水平,并因此检测感测装置何时最佳地接收到来自物体的反射辐射束。
    • 9. 发明授权
    • Rotary power unit
    • 旋转动力单元
    • US4888515A
    • 1989-12-19
    • US243214
    • 1988-09-12
    • Shuichi Tamura
    • Shuichi Tamura
    • H02N2/00H01L41/09H02N2/16
    • H02N2/105
    • A rotary power unit has a first vibration member; a second vibration member having a different phase than that of said first vibration member; a ring member rotatably supported by the first vibration member and the second vibration member, the ring member being adapted to make an eccentric rotation by the vibrations of the first vibration member and the second vibration member; and an output member having a smaller outer diameter than an inner diameter of said ring member, the output member being adapted to make a rotary motion in partial and internal contact with the ring member by the eccentric rotation of the ring member.
    • 旋转动力单元具有第一振动构件; 具有与所述第一振动部件的相位不同的第二振动部件; 由所述第一振动部件和所述第二振动部件可旋转地支撑的环状部件,所述环状部件适于通过所述第一振动部件和所述第二振动部件的振动而产生偏心旋转; 以及具有比所述环形构件的内径小的外径的输出构件,所述输出构件适于通过所述环构件的偏心旋转而使所述环构件部分地和内部地接触的旋转运动。