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公开(公告)号:USD629878S1
公开(公告)日:2010-12-28
申请号:US29331316
申请日:2009-01-23
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公开(公告)号:USD602859S1
公开(公告)日:2009-10-27
申请号:US29327104
申请日:2008-10-30
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公开(公告)号:US5613259A
公开(公告)日:1997-03-25
申请号:US634667
申请日:1996-04-18
申请人: Adam B. Craft , Keith E. Schleiffer , James E. Dvorsky , Thomas W. Graves , Ronald B. Gray, III , Nagabhusan Senapati , Matthew S. Zelinski
发明人: Adam B. Craft , Keith E. Schleiffer , James E. Dvorsky , Thomas W. Graves , Ronald B. Gray, III , Nagabhusan Senapati , Matthew S. Zelinski
CPC分类号: A61C17/3481 , A61C17/224 , A61C17/3418
摘要: An electric oscillating tool, having particular but not necessarily exclusive utility as an electric toothbrush, for driving a brush head assembly or end effector with a resonant mechanism at high frequencies. The electric toothbrush includes handle housing, an electromagnetic motor mounted in the housing, and a mechanical oscillator acted upon by the motor. One end of the mechanical oscillator extends outwardly through an opening in the handle housing while the other end is attached to the housing inside the chamber. The end effector/brush head assembly attaches to the extending end of the mechanical oscillator. A power source supplies an alternating current drive signal to the motor, in turn causing the armature and the mechanical oscillator to oscillate and drive the brush head assembly. Control circuitry senses the frequency of oscillation of the mechanical oscillator and controls the frequency of the drive signal to maintain the mechanical oscillator at resonance under the variety of loads imposed during use.
摘要翻译: 具有但不一定独特的用作电动牙刷的电动摆动工具,用于以高频驱动具有谐振机构的刷头组件或末端执行器。 电动牙刷包括手柄壳体,安装在壳体中的电磁马达以及由马达驱动的机械振荡器。 机械振荡器的一端通过手柄壳体中的开口向外延伸,而另一端连接到腔室内的壳体。 末端执行器/刷头组件附接到机械振荡器的延伸端。 电源向电动机提供交流驱动信号,从而使电枢和机械振荡器振荡并驱动刷头组件。 控制电路检测机械振荡器的振荡频率,并控制驱动信号的频率,以在使用期间施加的各种负载下使机械振荡器保持共振。
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公开(公告)号:US06517707B2
公开(公告)日:2003-02-11
申请号:US09903054
申请日:2001-07-10
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
IPC分类号: B01D35143
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/30 , B01D21/34 , B01D29/603 , C02F1/003 , C02F2209/006 , C02F2209/40 , C02F2307/06 , G01F1/075 , Y10T137/9464
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is capable of sensing the characteristics of the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
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5.
公开(公告)号:US06926821B2
公开(公告)日:2005-08-09
申请号:US10364299
申请日:2003-02-10
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/30 , B01D21/34 , B01D29/603 , C02F1/003 , C02F2209/006 , C02F2209/40 , C02F2307/06 , G01F1/075 , Y10T137/9464
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is capable of sensing the characteristics of the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
摘要翻译: 一种用于水处理装置的累积计量系统,该装置具有入口孔和出口孔,以及用于在入口孔和出口孔之间引导水的通道。 流动反应装置定位在通道中并暴露于流动的水中,并且信号产生构件位于流动反应装置上。 开关位于流动反应装置的近侧,并且对信号产生构件的接近度敏感。 该开关能够传送指示信号产生部件运动的电信号。 包括其中编程的性能阈值的可复位处理器和输出装置。 微控制器与开关电气通信,用于从开关接收电信号。 该开关能够感测流量无功装置的特性,并将代表特性的电信号传送给微控制器。 微控制器将信号解释为第一性能数据。 微控制器将第一性能数据与微控制器中的相应性能阈值进行比较,以确定性能阈值是否已超过,如果超过启动输出设备。
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6.
公开(公告)号:US06284129B1
公开(公告)日:2001-09-04
申请号:US09629876
申请日:2000-08-01
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
IPC分类号: B01D1712
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/30 , B01D21/34 , B01D29/603 , C02F1/003 , C02F2209/006 , C02F2209/40 , C02F2307/06 , G01F1/075 , Y10T137/9464
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal Generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a Performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is cap able of sensing the characteristics of the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
摘要翻译: 一种用于水处理装置的累积计量系统,该装置具有入口孔和出口孔,以及用于在入口孔和出口孔之间引导水的通道。 流动反应装置定位在通道中并暴露于流动的水中,并且信号产生构件位于流动反应装置上。 开关位于流动反应装置的近侧,并且对信号发生构件的接近度敏感。 该开关能够传送指示信号产生部件运动的电信号。 包括其中编程的性能阈值的可复位处理器和输出装置。 微控制器与开关电气通信,用于从开关接收电信号。 该开关是能够感测流动无功装置的特性的盖,并将代表特性的电信号传送给微控制器。 微控制器将信号解释为第一性能数据。 微控制器将第一性能数据与微控制器中的相应性能阈值进行比较,以确定性能阈值是否已超过,如果超过启动输出设备。
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公开(公告)号:US6106705A
公开(公告)日:2000-08-22
申请号:US346164
申请日:1999-07-01
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
IPC分类号: B01D17/02 , B01D21/00 , B01D21/24 , B01D29/60 , C02F1/00 , C02F9/00 , G01F1/075 , B01D17/12 , B01D17/038
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/30 , B01D21/34 , B01D29/603 , C02F1/003 , G01F1/075 , C02F2209/006 , C02F2209/40 , C02F2307/06 , Y10T137/9464
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is capable of sensing the characteristics of the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
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公开(公告)号:US5935426A
公开(公告)日:1999-08-10
申请号:US907683
申请日:1997-08-08
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
IPC分类号: B01D17/02 , B01D21/00 , B01D21/24 , B01D29/60 , C02F1/00 , C02F9/00 , G01F1/075 , B01D17/12 , G01F1/05 , G01F1/56
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/30 , B01D21/34 , B01D29/603 , C02F1/003 , G01F1/075 , C02F2209/006 , C02F2209/40 , C02F2307/06 , Y10T137/9464
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is capable of sensing the characteristics of the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
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公开(公告)号:USD597642S1
公开(公告)日:2009-08-04
申请号:US29322234
申请日:2008-07-31
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公开(公告)号:US6149801A
公开(公告)日:2000-11-21
申请号:US7495
申请日:1998-01-15
申请人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
发明人: Edward C. Giordano , Thomas W. Graves , James M. Jennings , Mark Vander Berg , William James A. Storer , Douglas R. Gibbs , Douglas A. Lonsinger
IPC分类号: B01D17/02 , B01D21/00 , B01D21/24 , B01D35/00 , B01D35/04 , B01D35/143 , C02F1/00 , C02F9/00 , G01F1/075 , B01D17/12
CPC分类号: C02F9/005 , B01D17/0208 , B01D21/0003 , B01D21/0024 , B01D21/2405 , B01D21/34 , C02F1/003 , G01F1/075 , C02F2209/006 , C02F2209/40
摘要: A totalization meter system for a water treatment device, the device having an inlet aperture and an outlet aperture, and a channel for channeling water between the inlet and outlet apertures. A flow reactive device for measuring the volume of flow is positioned in the channel and is exposed to the flowing water, and a signal generating member is positioned on the flow reactive device. A switch is positioned proximately to the flow reactive device, and is sensitive to the proximity of the signal generating member. The switch is able to communicate electric signals indicative of the motion of the signal generating member. A resettable processor having a performance threshold programmed therein and an output device is included. The microcontroller is in electrical communication with the switch for receiving electrical signals from the switch. The switch is capable of sensing the flow volume sensed by the flow reactive device and communicates electrical signals representative of the characteristics to the microcontroller. The microcontroller interprets the signals as a first performance data. The microcontroller compares the first performance data against the respective performance threshold in the microcontroller to determine if the performance threshold has been surpassed, and if surpassed actuates the output device.
摘要翻译: 一种用于水处理装置的累积计量系统,该装置具有入口孔和出口孔,以及用于在入口孔和出口孔之间引导水的通道。 用于测量流量的流动反应装置定位在通道中并暴露于流动的水中,并且信号产生构件位于流动反应装置上。 开关位于流动反应装置的近侧,并且对信号产生构件的接近度敏感。 该开关能够传送指示信号产生部件运动的电信号。 包括其中编程的性能阈值的可复位处理器和输出装置。 微控制器与开关电气通信,用于从开关接收电信号。 该开关能够感测由流动反应装置感测的流量并将代表特性的电信号传送给微控制器。 微控制器将信号解释为第一性能数据。 微控制器将第一性能数据与微控制器中的相应性能阈值进行比较,以确定性能阈值是否已超过,如果超过启动输出设备。
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