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    • 3. 发明申请
    • CURVED ULTRASONIC HIFU TRANSDUCER FORMED BY TILED SEGMENTS
    • 弯曲部分形成的弯曲超声波传感器
    • US20130012841A1
    • 2013-01-10
    • US13508717
    • 2010-11-03
    • Dennis Dean Clark
    • Dennis Dean Clark
    • A61N7/00
    • B06B1/0637A61N7/02
    • A curved high intensity focused ultra-sound (HIFU) transducer comprising a plurality of curved composite ceramic piezoelectric tiles having opposite convex and concave surfaces, each tile having electrodes on the surfaces electrically coupled to the composite ceramic piezoelectric material, and a plurality of acoustic transmission areas located on each tile and actuated through electrodes on the convex surface, the transmission areas and electrodes being acoustically separated from surrounding areas by cuts into the composite ceramic piezoelectric material, the plurality of tiles fitting together to form a substantially continuous curved composite piezoelectric surface which transmits HIFU acoustic energy.
    • 一种弯曲的高强度聚焦超声(HIFU)换能器,包括多个具有相反的凸表面和凹面的弯曲复合陶瓷压电瓦片,每个瓦片在与该复合陶瓷压电材料电耦合的表面上具有电极,以及多个声传播 位于每个瓦片上并通过凸表面上的电极致动的区域,透射区域和电极通过切入复合陶瓷压电材料而与周围区域声学分离,多个瓦片安装在一起以形成基本上连续的弯曲复合压电表面,其中 传输HIFU声能。
    • 4. 发明申请
    • SYSTEMS, METHODS AND DEVICES FOR CONTROLLING BACKUP POWER PROVIDED TO MEMORY DEVICES AND USED FOR STORING OF SENSITIVE DATA
    • 用于控制提供给存储器件并用于存储敏感数据的备份电源的系统,方法和设备
    • US20120284561A1
    • 2012-11-08
    • US13552402
    • 2012-07-18
    • Dean Clark Wilson
    • Dean Clark Wilson
    • G06F11/20
    • G06F11/2015G11C5/141
    • Power-backup capabilities are provided by implementing a variety of different methods, systems and devices. According to one such implementation, a solid-state memory device is implemented with a primary power source that provides primary power. A secondary power source provides secondary power. A power controller provides the primary power to an operating power circuit. The secondary power is provided by enabling a secondary switch located between the secondary power source and the operating power circuit. A solid-state memory uses power from the operating power circuit as a primary source of power when accessing stored data and retains data in the absence of power being provided by the operating power circuit. A memory controller facilitates access to the stored data. In response to problems with the primary power source, pending writes are completed to the solid-state memory circuit. A timing circuit substantially delays full enablement of the secondary switch.
    • 通过实施各种不同的方法,系统和设备来提供电源备份功能。 根据一个这样的实现,固态存储器件被实现为具有主电源的主电源。 次级电源提供次级电源。 电源控制器为工作电源电路提供主电源。 次级电源通过使能位于次级电源和工作电源电路之间的次级开关来提供。 固态存储器在访问存储的数据时使用来自工作电源电路的电源作为主要电源,并且在没有由工作电源电路提供电力的情况下保留数据。 存储器控制器便于访问存储的数据。 为了响应主电源的问题,完成对固态存储器电路的等待写入。 定时电路基本上延迟了二次开关的全部启用。
    • 5. 发明申请
    • SYSTEMS, METHODS AND DEVICES FOR CONTROLLING BACKUP POWER PROVIDED TO MEMORY DEVICES AND USED FOR STORING OF SENSITIVE DATA
    • 用于控制提供给存储器件并用于存储敏感数据的备份电源的系统,方法和设备
    • US20100332897A1
    • 2010-12-30
    • US12632556
    • 2009-12-07
    • Dean Clark Wilson
    • Dean Clark Wilson
    • G06F11/07G06F1/28
    • G06F11/2015G11C5/141
    • Power-backup capabilities are provided by implementing a variety of different methods, systems and devices. According to one such implementation, a solid-state memory device is implemented with a primary power source that provides primary power. A secondary power source provides secondary power. A power controller provides the primary power to an operating power circuit. The secondary power is provided by enabling a secondary switch located between the secondary power source and the operating power circuit. A solid-state memory uses power from the operating power circuit as a primary source of power when accessing stored data and retains data in the absence of power being provided by the operating power circuit. A memory controller facilitates access to the stored data. In response to problems with the primary power source, pending writes are completed to the solid-state memory circuit. A timing circuit substantially delays full enablement of the secondary switch.
    • 通过实施各种不同的方法,系统和设备来提供电源备份功能。 根据一个这样的实现,固态存储器件被实现为具有主电源的主电源。 次级电源提供次级电源。 电源控制器为工作电源电路提供主电源。 次级电源通过使能位于次级电源和工作电源电路之间的次级开关来提供。 固态存储器在访问存储的数据时使用来自工作电源电路的电源作为主要电源,并且在没有由工作电源电路提供电力的情况下保留数据。 存储器控制器便于访问存储的数据。 为了响应主电源的问题,完成对固态存储器电路的等待写入。 定时电路基本上延迟了二次开关的全部启用。
    • 7. 发明授权
    • Support base for use on decked surfaces
    • 支撑底座用于甲板表面
    • US07575215B1
    • 2009-08-18
    • US11034135
    • 2005-01-11
    • Dean ClarkMark Johnston
    • Dean ClarkMark Johnston
    • F16M13/00A01K97/10
    • A01K97/10
    • An anchoring device will cooperate with a slotted aperture in a planked surface, such as a deck or boat dock, is disclosed. An example of the invention includes an internal tube that is telescopically mounted within a hollow cylindrical external tube. A support flange that is mounted to the bottom of the internal tube at one end and to a support flange at the other end extends through the bottom of the external tube. A spring is mounted between the bottom of the internal tube and the bottom of the external tube, so that the spring may be compressed by sliding the internal tube into the external tube. The sliding of the internal tube into the external tube causes the support flange to extend, so that the planked surface may be gripped between the support flange and the bottom of the external tube.
    • 公开了一种锚定装置将与诸如甲板或船坞之类的板状表面中的开槽孔配合。 本发明的实例包括可伸缩地安装在中空圆柱形外管内的内管。 在一端安装到内管底部并在另一端安装到支撑凸缘的支撑凸缘延伸穿过外管的底部。 弹簧安装在内管的底部和外管的底部之间,使得弹簧可以通过将内管滑入外管而被压缩。 内管向外管的滑动导致支撑凸缘延伸,使得板状表面可以夹持在支撑凸缘和外管的底部之间。
    • 8. 发明授权
    • Adaptive load-clamping system
    • 自适应负载夹紧系统
    • US06431816B1
    • 2002-08-13
    • US09168358
    • 1998-10-07
    • Dean Clark JordanRichard D. Seaberg
    • Dean Clark JordanRichard D. Seaberg
    • B66F924
    • B66F9/184B25J13/082B66F9/22Y10S294/907
    • A fluid power load-clamping system includes at least one fluid valve for variably regulating the maximum fluid pressure causing closure of the clamp. Preferably the valve increases the maximum fluid pressure automatically in relation to the measured magnitude of the weight of the load to regulate the load-gripping force. A controller causes the valve to permit a relatively high maximum fluid pressure as the clamp closes toward the load to enable high initial clamp closure speed. Thereafter the valve automatically reduces the maximum pressure as the clamping surfaces close into a predetermined relationship with the load, and then increases the maximum pressure to regulate the gripping force. Other preferable features include an automatic limit on the rate of lift of the load during weighing, and compensation of the weight measurement for the longitudinally-extensible position of the lifting mechanism, to maximize the accuracy of the load-weight measurement. Automatic gripping pressure regulation is selectively operable in response to actuation of the lifting mechanism, which can be either a linear lifting mechanism or a tilting lifting mechanism, or both. Different predetermined relationships between the weight of the load and the maximum gripping pressure are selectable alternatively. A gravity-referenced tilt controller adjusts the load automatically to an attitude which is untilted with respect to gravity.
    • 流体动力负载夹紧系统包括至少一个流体阀,用于可变地调节最大流体压力,导致夹子闭合。 优选地,阀门相对于测量的负载重量的大小自动地增加最大流体压力以调节负载夹紧力。 当夹具朝向负载闭合时,控制器使得阀允许相对高的最大流体压力,以实现高初始夹紧闭合速度。 此后,当夹紧表面与负载接近预定关系时,阀门自动降低最大压力,然后增加最大压力以调节夹紧力。 其他优选特征包括对称重期间负载的升力速率的自动限制,以及对提升机构的纵向可伸展位置的重量测量的补偿,以使负载重量测量的精度最大化。 响应于可以是线性提升机构或倾斜提升机构或两者的提升机构的致动,自动夹紧压力调节可选择性地操作。 交替地选择负载重量与最大夹持压力之间的不同预定关系。 重力参考的倾斜控制器自动将负载调节到相对于重力直到的姿态。
    • 9. 发明授权
    • Adaptive load-clamping system
    • US06390751B1
    • 2002-05-21
    • US09820246
    • 2001-03-28
    • Dean Clark JordanRichard D. Seaberg
    • Dean Clark JordanRichard D. Seaberg
    • B66F922
    • A fluid power load-clamping system includes at least one fluid valve for variably regulating the maximum fluid pressure causing closure of the clamp. Preferably the valve increases the maximum fluid pressure automatically in relation to the measured magnitude of the weight of the load to regulate the load-gripping force. A controller causes the valve to permit a relatively high maximum fluid pressure as the clamp closes toward the load to enable high initial clamp closure speed. Thereafter the valve automatically reduces the maximum pressure as the clamping surfaces close into a predetermined relationship with the load, and then increases the maximum pressure to regulate the gripping force. Other preferable features include continuous weight-responsive automatic regulation of the gripping pressure while the load is supported by the clamp, and compensation of the weight measurement for the longitudinally-extensible position of the lifting mechanism, to maximize the accuracy of the load-weight measurement. Gripping pressure regulation is operable in response to linear load-lifting or tilting load-lifting, without concurrent clamp closure actuation. Different predetermined relationships between the weight of the load and the maximum gripping pressure are selectable alternatively. A gravity-referenced tilt controller adjusts the load automatically to an attitude which is untilted with respect to gravity. Lowering of the lifting mechanism is automatically prevented in response to the setting down of the load.