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    • 12. 发明授权
    • Low cost step dimming interface for an electronic ballast
    • 电子镇流器的低成本阶梯调光接口
    • US07843141B1
    • 2010-11-30
    • US12017750
    • 2008-01-22
    • Wei XiongThomas LunnChristopher Radzinski
    • Wei XiongThomas LunnChristopher Radzinski
    • H05B37/00
    • H05B41/42Y10S315/04
    • A step dimming interface is utilized to operate a load such as a gas discharge lamp. The dimming interface has first and second switches for determining when the gas discharge lamp operates at either a normal power level or a dimming power level. A rectifier circuit is connected to a control signal production circuit. By manipulating the first and second switches, the rectifier sends either a full-wave rectified signal or a half-wave rectified signal to the control signal production circuit which determines the output of the control signal production circuit. The control signal production circuit may be connected to an electronic ballast which varies the power level of the lamp according to this output.
    • 利用阶梯调光接口来操作诸如气体放电灯的负载。 调光接口具有第一和第二开关,用于确定气体放电灯何时在正常功率水平或调光功率水平下工作。 整流电路连接到控制信号生成电路。 通过操纵第一和第二开关,整流器将全波整流信号或半波整流信号发送到确定控制信号产生电路的输出的控制信号产生电路。 控制信号生成电路可以连接到根据该输出改变灯的功率电平的电子镇流器。
    • 16. 发明授权
    • Device and method to control volume of a ventricle
    • 控制心室体积的装置和方法
    • US07530998B1
    • 2009-05-12
    • US11350480
    • 2006-02-09
    • Thomas David Starkey
    • Thomas David Starkey
    • A61M1/10A61N1/362
    • A61F2/2481A61B17/12122A61B17/12136
    • A device used to treat heart disease by decreasing the size of a diseased heart, or to prevent further enlargement of a diseased heart. The device works by limiting the volume of blood entering the heart during each cardiac cycle. The device partitions blood within the heart, and protects the heart from excessive volume and pressure of blood. The device is placed within the interior of the heart, particularly within a ventricular cavity. The device is a hollow sac, with two openings, which simulates the shape and size of the interior lining of a ventricle of a normal heart. It allows the ventricle to fill through one opening juxtaposed to the annulus of the inflow valve to a predetermined, normal volume, and limits filling of the heart beyond that volume. It then allows blood to be easily ejected through the second opening through the outflow valve. By limiting the amount of blood entering the ventricle, the ventricle is not subjected to the harmful effect of excessive volume and pressure of blood during diastole, the period of the cardiac cycle when the heart is at rest. This allows the heart to decrease in size, or to reverse remodel, and to recover lost function. In some applications, a second device may be simultaneously placed inside the heart to take up excessive space between the heart and the primary device.
    • 用于通过减小患病心脏的大小来治疗心脏病的装置,或防止患病心脏进一步扩大的装置。 该装置通过限制在每个心动周期期间进入心脏的血液的体积而起作用。 该装置分隔心脏内的血液,并保护心脏免受血液的过量体积和压力。 该装置放置在心脏的内部,特别是在心室内。 该装置是一个中空囊,具有两个开口,其模拟正常心脏心室内衬的形状和尺寸。 它允许心室通过一个开口并入到流入阀的环形空间中以预定的正常体积填充,并限制心脏超过该体积的填充。 然后允许血液通过第二开口容易地通过流出阀排出。 通过限制进入心室的血液量,心室在舒张期(心脏静止时心脏周期的周期)不会受到血液过量体积和压力的不良影响。 这样可以使心脏的尺寸减小,或逆向改造,并恢复功能丧失。 在一些应用中,第二装置可以同时放置在心脏内以占据心脏和主要装置之间的过多空间。
    • 17. 发明授权
    • Method of quick tactile release locking
    • 快速触觉释锁方法
    • US07246460B1
    • 2007-07-24
    • US11009289
    • 2004-12-10
    • Jeffrey L. Brauer
    • Jeffrey L. Brauer
    • F41A17/04
    • F41A17/02F41A17/04Y10T70/8946
    • The present invention provides a locking device designed to open by tactile manipulation, without visual confirmation, of the locking combination. This device comprises a housing, a securing element, and a plurality of tumbling levers located inside the housing. Each tumbling lever is located in a plane of movement parallel to other planes of movements of the other tumbling levers. Also, each tumbling lever includes a tactile engagement surface and engages the securing element so that movement of a tactile engagement surface disengages the corresponding tumbling lever from the securing element.
    • 本发明提供了一种锁定装置,其被设计成通过触觉操作来打开,而无需视觉确认锁定组合。 该装置包括壳体,固定元件和位于壳体内的多个翻转杆。 每个翻转杆位于平行于其他翻滚杆的其他运动平面的运动平面中。 此外,每个翻转杆包括触觉接合表面并接合固定元件,使得触觉接合表面的移动使相应的翻转杆与固定元件脱离接触。