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    • 17. 发明授权
    • Vibrator, vibratory gyroscope, and vibration adjusting method
    • 振动器,振动陀螺仪和振动调节方法
    • US06747393B2
    • 2004-06-08
    • US10177863
    • 2002-06-21
    • Takayuki KikuchiShosaku GoujiYukihisa OsugiTakao Soma
    • Takayuki KikuchiShosaku GoujiYukihisa OsugiTakao Soma
    • H01L4108
    • G01C19/5607
    • A vibrator for a vibratory gyroscope including a base part and at least one bending-vibration piece extending from the base part in a direction crossing the longitudinal direction of the base part and a fixing part for fixing one end of the base part. The base part and bending-vibration piece are formed to extend substantially in a specified plane. At the opposite side to one end of the base part, a projection projecting from the bending-vibration piece is provided, or at least a pair of resonant arms resonating with vibration of the base part, wherein the resonant arms project from the fixing part. With this arrangement, it is possible to detect a turning angular rate with high accuracy.
    • 一种用于振动陀螺仪的振动器,包括基部和至少一个弯曲振动片,所述至少一个弯曲振动片从与所述基部的纵向方向交叉的方向从所述基部延伸,以及固定部,用于固定所述基部的一端。 基部和弯曲振动片形成为基本上在特定平面内延伸。 在基部的一端的相对侧,设置从弯曲振动片突出的突起,或者至少一对共振臂与基部的振动共振,其中共振臂从固定部突出。 通过这种布置,可以高精度地检测转动角速度。
    • 19. 发明授权
    • Vibratory gyroscope, vibrator used in this gyroscope, method for analyzing vibration of the vibrator, method for supporting the vibrator, and method for manufacturing the vibratory gyroscope
    • 振动陀螺仪,该陀螺仪中使用的振动器,分析振动器振动的方法,振动器的支撑方法以及振动陀螺仪的制造方法
    • US06186003B1
    • 2001-02-13
    • US09166089
    • 1998-10-05
    • Takayuki KikuchiShosaku GoujiYukihisa OsugiTakao Soma
    • Takayuki KikuchiShosaku GoujiYukihisa OsugiTakao Soma
    • G01P904
    • G01C19/5642G01C19/5607
    • A vibratory gyroscope for detecting a turning angular rate of rotation applied to a vibrator, which vibratory gyroscope has the vibrator provided with a plurality of vibration pieces and a base part having the plurality of vibration pieces connected with it and is composed so as to obtain the turning angular rate on the basis of a detecting vibration excited in the vibrator according to the turning angular rate when giving a driving vibration to at least one of the vibration pieces, and makes the vibrator being supported in a domain where the detecting vibration is smallest in said vibrator, said domain being in the vicinity of the center of gravity of the vibrator. It is preferable that the vibrator is supported in the vicinity of the center of gravity of a driving vibration of the vibrator and a supporting hole is provided in a domain where the detecting vibration is smallest in a state where no supporting hole is provided in the vibrator and the vibrator is supported on or near the inner wall face of this supporting hole.
    • 一种用于检测施加到振动器的旋转角速度的振动陀螺仪,该振动陀螺仪具有设置有多个振动片的振动器和具有与其连接的多个振动片的基部,并且构成为获得 基于在对至少一个振动片施加驱动振动时根据转动角速度在振动器中激发的检测振动来转动角速度,并且使振动器被支撑在检测振动最小的域中 所述振动器,所述区域在振动器的重心附近。 优选地,振动器被支撑在振动器的驱动振动的重心附近,并且在振动器中没有设置支撑孔的状态下,在检测振动最小的区域中设置有支撑孔 并且振动器被支撑在该支撑孔的内壁面上或附近。
    • 20. 发明授权
    • Method for operating a power generator
    • 运行发电机的方法
    • US5445902A
    • 1995-08-29
    • US133872
    • 1993-10-12
    • Takao SomaTomonori TakahashiShinji KawasakiKatsuki Yoshioka
    • Takao SomaTomonori TakahashiShinji KawasakiKatsuki Yoshioka
    • H01M4/86H01M8/04H01M8/12H01M8/02
    • H01M8/04089H01M8/04007H01M8/1231Y10T29/49108
    • A method for operating a power generator in which a solid oxide fuel cell is used as a power-generating element and an air electrode of the solid oxide fuel cell is composed of lanthanum manganite, the method involving the step of setting a heating rate and a cooling rate at least in a temperature range of 800.degree. C. to 900.degree. C. at not less than 3.degree. C./min. when the fuel cell is heated up to an operating temperature at the time of starting the power generator and when the fuel cell is cooled from the operating temperature at the time of stopping the power generator. Alternatively, the method involves the step of setting a partial pressure of oxygen, at least in a temperature range of 800.degree. C. to 900.degree. C., in an atmosphere to which the air electrode is exposed, to at not less than 10.sup.-15 arms but not more than 10.sup.-1 arms when the fuel cell is heated up to an operating temperature at the time of starting the power generator and when the fuel cell is cooled from the operating temperature at the time of stopping the power generator.
    • 一种使用固体氧化物型燃料电池作为发电元件的发电机的动作方法以及固体氧化物型燃料电池的空气电极,由亚锰酸镧构成,其特征在于,包括:设定加热速度和 冷却速度至少在800℃至900℃的温度范围内,不低于3℃/分钟。 当燃料电池在启动发电机时被加热到工作温度,并且当燃料电池从停止发电机时的工作温度冷却时。 或者,该方法包括在空气电极暴露的气氛中至少在800℃〜900℃的温度范围内设定氧分压至不小于10度的步骤, 当燃料电池被加热到启动发电机时的工作温度,并且当燃料电池从停止发电机时的工作温度冷却时,15臂但不大于10-1臂。