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    • 1. 发明授权
    • Imaging ultrasound transducer temperature control system and method using feedback
    • 成像超声换能器温度控制系统及方法采用反馈
    • US06905466B2
    • 2005-06-14
    • US10645299
    • 2003-08-21
    • Ivan SalgoMichael PeszynskiDavid Miller
    • Ivan SalgoMichael PeszynskiDavid Miller
    • G01N29/24A61B8/00
    • A61B8/00A61B8/481A61B8/546
    • A system and method for controlling the heat of an ultrasonic transducer is disclosed. In the presently preferred embodiments, the system and method controls the temperature of the transducer by changing operating system parameters based on feedback from temperature sensing elements placed in the transducer. The chosen mutable system parameters may be preset by the construction of the ultrasonic system, under the control of the ultrasonic system user, or a combination of the two. In several exemplary embodiments, the one or more mutable system parameters are altered by an amount proportionate to the difference between the current temperature and a preferred operating temperature. In another exemplary embodiment, the system switches to a lower power imaging mode when the temperature feedback indicates a threshold temperature has been reached.
    • 公开了一种用于控制超声换能器的热量的系统和方法。 在当前优选的实施例中,系统和方法通过基于放置在换能器中的温度感测元件的反馈改变操作系统参数来控制换能器的温度。 所选择的可变系统参数可以通过在超声波系统用户的控制下的超声波系统的构造或两者的组合来预设。 在几个示例性实施例中,一个或多个可变系统参数被改变与当前温度和优选操作温度之间的差成比例的量。 在另一示例性实施例中,当温度反馈指示已达到阈值温度时,系统切换到较低功率成像模式。
    • 3. 发明授权
    • Imaging ultrasound transducer temperature control system and method
    • 成像超声换能器温度控制系统及方法
    • US06669638B1
    • 2003-12-30
    • US10268207
    • 2002-10-10
    • David MillerIvan SalgoMichael Peszynski
    • David MillerIvan SalgoMichael Peszynski
    • A61B800
    • A61B8/5238A61B8/00A61B8/467A61B8/546
    • A system and method for controlling the heat of an ultrasonic transducer is disclosed. The presently preferred embodiments of the present invention control the temperature of the transducer face by changing the imaging modes of the system. In a preferred embodiment, feedback from temperature sensing elements placed in the transducer is used to determine when to switch from a higher power imaging mode to a lower power imaging mode. In another preferred embodiment, the system switches from a higher power imaging mode to a lower power imaging mode after a predetermined period of time has elapsed. In yet another preferred embodiment, the system switches to a “mixed” imaging mode, where the system cycles rapidly between a higher power imaging mode and a lower power imaging mode, and the resulting data is combined to form a single image.
    • 公开了一种用于控制超声换能器的热量的系统和方法。 本发明目前优选的实施例通过改变系统的成像模式来控制换能器表面的温度。 在优选实施例中,使用放置在换能器中的温度感测元件的反馈来确定何时从较高功率成像模式切换到较低功率成像模式。 在另一个优选实施例中,在经过预定时间段之后,系统从较高功率成像模式切换到较低功率成像模式。 在另一个优选实施例中,系统切换到“混合”成像模式,其中系统在较高功率成像模式和较低功率成像模式之间快速循环,并且将所得到的数据组合以形成单个图像。
    • 4. 发明授权
    • Imaging ultrasound transducer temperature control system and method using feedback
    • 成像超声换能器温度控制系统及方法采用反馈
    • US06709392B1
    • 2004-03-23
    • US10268261
    • 2002-10-10
    • Ivan SalgoMichael PeszynskiDavid Miller
    • Ivan SalgoMichael PeszynskiDavid Miller
    • A61B800
    • A61B8/00A61B8/481A61B8/546
    • A system and method for controlling the heat of an ultrasonic transducer is disclosed. In the presently preferred embodiments, the system and method controls the temperature of the transducer by changing operating system parameters based on feedback from temperature sensing elements placed in the transducer. The chosen mutable system parameters may be preset by the construction of the ultrasonic system, under the control of the ultrasonic system user, or a combination of the two. In one exemplary embodiment, a different mutable system parameter is altered based on which imaging mode the system is using. In two other exemplary embodiments, the one or more mutable system parameters are altered by an amount proportionate to the difference between the current temperature and a preferred operating temperature. In yet another exemplary embodiment, the system switches to a lower power imaging mode when the temperature feedback indicates a threshold temperature has been reached.
    • 公开了一种用于控制超声换能器的热量的系统和方法。 在当前优选的实施例中,系统和方法通过基于放置在换能器中的温度感测元件的反馈改变操作系统参数来控制换能器的温度。 所选择的可变系统参数可以通过在超声波系统用户的控制下的超声波系统的构造或两者的组合来预设。 在一个示例性实施例中,基于系统正在使用的成像模式来改变不同的可变系统参数。 在另外两个示例性实施例中,一个或多个可变系统参数被改变与当前温度和优选操作温度之间的差成比例的量。 在又一示例性实施例中,当温度反馈指示已经达到阈值温度时,系统切换到较低功率成像模式。
    • 9. 发明申请
    • GLAZING PANEL ROOFING SYSTEM
    • 玻璃面板系统
    • US20160333585A1
    • 2016-11-17
    • US15153521
    • 2016-05-12
    • David MillerFrank Kosciolek
    • David MillerFrank Kosciolek
    • E04D13/03F16B33/00F16B25/10
    • E04D3/08E04D2003/0818E04D2003/0856F16B25/10F16B2005/0678
    • A glazing panel roofing system includes a glazing panel and glazing panel brackets configured to clamp upon one of the side edge surfaces of the glazing panel. The glazing panel includes two flat face surfaces and two side edge surfaces. The glazing panel brackets are configured to clamp upon one of the side edge surfaces of the glazing panel. Each glazing panel bracket includes a base clamping feature including a base gripping feature surface configured to abut a first surface of the flat face surfaces, a top clamping feature including a top gripping feature surface configured to abut a second surface of the flat face surfaces, and a threaded fastener securing the top clamping feature to the base clamping feature, wherein torque applied to the threaded fastener changes a clamping force applied between the top clamping feature and the base clamping feature upon the glazing panel.
    • 玻璃幕墙屋顶系统包括玻璃板和玻璃板支架,其构造成夹紧在玻璃板的一个侧边缘表面上。 上光板包括两个平面表面和两个侧边缘表面。 玻璃板支架被配置为夹紧玻璃板的一个侧边缘表面。 每个上光板托架包括基部夹紧特征,其包括构造成邻接平坦表面的第一表面的基部夹持特征表面,顶部夹持特征,包括构造成邻接平坦表面的第二表面的顶部抓握特征表面,以及 将顶部夹紧特征固定到基部夹紧特征的螺纹紧固件,其中施加到螺纹紧固件的扭矩将施加在顶部夹紧特征和基部夹持特征之间的夹紧力改变在玻璃板上。