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    • 2. 发明申请
    • ULTRASONIC SPINDLE SYSTEM
    • 超声波发条系统
    • US20100158307A1
    • 2010-06-24
    • US11993299
    • 2006-06-29
    • Osamu KubotaTakayuki YuiHideo Hurukawa
    • Osamu KubotaTakayuki YuiHideo Hurukawa
    • H04R9/06
    • B23B37/00B23B29/125B23B2270/10B23Q2230/004
    • It is possible to stably supply an electric signal to an ultrasonic generation element without causing friction or damage on parts or without requiring periodical parts exchange. A reception coil (11) connected to a vibrator (6) is wound on the outer circumference of a housing (1) constituting a shaft (30) of a machining spindle (101). The reception coil (11) is surrounded coaxially by a transmission coil (12) at an appropriate interval. A predetermined electric signal outputted from an ultrasonic drive device (21) for driving the vibrator (6) is applied to the transmission coil (12). The predetermined electric signal may be applied to the vibrator (6) via the reception coil (11) by electromagnetic induction between the transmission coil (12) and the reception coil (11).
    • 可以稳定地向超声波发生元件提供电信号,而不会对部件造成摩擦或损坏,或者不需要周期性的部件更换。 连接到振动器(6)的接收线圈(11)缠绕在构成加工主轴(101)的轴(30)的壳体(1)的外周上。 接收线圈(11)以适当的间隔被传输线圈(12)同轴地包围。 从用于驱动振动器(6)的超声波驱动装置(21)输出的预定电信号被施加到传输线圈(12)。 预定的电信号可以通过在发送线圈(12)和接收线圈(11)之间的电磁感应经由接收线圈(11)施加到振动器(6)。
    • 3. 发明申请
    • DETECTION-SIGNAL TRANSMITTING APPARATUS
    • 检测信号发送装置
    • US20100097894A1
    • 2010-04-22
    • US11997802
    • 2006-08-01
    • Osamu KubotaTakayuki YuiHideo HurukawaHaruhiko Ueno
    • Osamu KubotaTakayuki YuiHideo HurukawaHaruhiko Ueno
    • G10K11/00H02J17/00H01Q7/00
    • B24B53/00B24B49/003
    • To enable detection and transmission of an ultrasonic signal with a high S/N ratio without any need for a component requiring high machining precision or high precision in mounting a component.In a dresser head 41, an ultrasonic sensor 21 detecting an ultrasonic wave is provided, and further provided are: a signal converting/transmitting circuit 23 converting a detected signal of the ultrasonic sensor 21 to a digital signal and subjecting the digital signal to radio modulation; and a signal transmission antenna 26 to which the signal resulting from the radio modulation by the signal converting/transmitting circuit 23 is applied. Further, near the dresser head 41, a signal reception antenna 34 receiving a signal emitted by the signal transmission antenna 26 and a signal reception head 35 demodulating the reception signal obtained by the signal reception antenna 26 are provided, and the demodulated signal is output as a digital signal or an analog signal in a predetermined signal format via a control part 31.
    • 为了能够检测和传输具有高S / N比的超声波信号,而不需要需要高加工精度的部件或安装部件的高精度。 在修整器头41中,提供了检测超声波的超声波传感器21,并且还设置有:将超声波传感器21的检测信号转换为数字信号的信号转换/发送电路23,并对数字信号进行无线调制 ; 以及信号发送天线26,由信号转换/发送电路23的无线电调制产生的信号被应用到信号发送天线26。 此外,在修整器头41附近,设置接收由信号发送天线26发出的信号的信号接收天线34和解调由信号接收天线26获得的接收信号的信号接收头35,并将解调信号输出为 经由控制部31以预定信号格式的数字信号或模拟信号。
    • 9. 发明授权
    • Underwater sounding method and apparatus
    • 水下探测方法及仪器
    • US07773459B2
    • 2010-08-10
    • US11652004
    • 2007-01-11
    • Mitsuhiro InouchiOsamu KubotaToshiyuki ShimizuShintaro Oda
    • Mitsuhiro InouchiOsamu KubotaToshiyuki ShimizuShintaro Oda
    • H04B11/00
    • H04B11/00
    • Methods and apparatuses process signals. The method according to one aspect of the present invention receives a first signal; obtains a second signal and a third signal from the first signal, wherein a gain of the second signal is smaller than a gain of the third signal; detects saturation in the third signal; and generates a composite signal from the second signal and the third signal, the step of generating a composite signal including selecting a part of the second signal for the composite signal, when the detecting step detects saturation in the third signal, and selecting a part of the third signal for the composite signal, when the detecting step does not detect saturation in the third signal.
    • 方法和装置处理信号。 根据本发明的一个方面的方法接收第一信号; 从所述第一信号获得第二信号和第三信号,其中所述第二信号的增益小于所述第三信号的增益; 检测第三信号中的饱和度; 并且从第二信号和第三信号产生复合信号,当检测步骤检测到第三信号中的饱和时,产生复合信号的步骤包括选择合成信号的第二信号的一部分,并选择一部分 当检测步骤在第三信号中没有检测到饱和时,复合信号的第三信号。