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    • 3. 发明申请
    • Enhanced Stacked Switched Capacitor Energy Buffer Circuit
    • 增强堆叠开关电容器能量缓冲电路
    • US20140339918A1
    • 2014-11-20
    • US14362163
    • 2013-01-17
    • David J. PerreaultKhurram K. AfridiMinjie ChenSteven B. LeebArthur Hsu Chen Chang
    • David J. PerreaultKhurram K. AfridiMinjie ChenSteven B. LeebArthur Hsu Chen Chang
    • H02J5/00
    • H02M7/537H01G4/30H01G4/38H02J5/00H02M7/217Y02T10/7022
    • A stacked switched capacitor (SSC) energy buffer circuit includes a switching network and a plurality of energy storage capacitors. The switching network need operate at only a relatively low switching frequency and can take advantage of soft charging of the energy storage capacitors to reduce loss. Thus, efficiency of the SSC energy buffer circuit can be extremely high compared with the efficiency of other energy buffer circuits. Since circuits utilizing the SSC energy buffer architecture need not utilize electrolytic capacitors, circuits utilizing the SSC energy buffer architecture overcome limitations of energy buffers utilizing electrolytic capacitors. Circuits utilizing the SSC energy buffer architecture (without electrolytic capacitors) can achieve an effective energy density characteristic comparable to energy buffers utilizing electrolytic capacitors. The SSC energy buffer architecture exhibits losses that scale with the amount of energy buffered, such that a relatively high efficiency can be achieved across a desired operating range.
    • 层叠开关电容器(SSC)能量缓冲电路包括开关网络和多个储能电容器。 开关网络只需要相对低的开关频率工作,并且可以利用储能电容器的软充电来减少损耗。 因此,与其他能量缓冲电路的效率相比,SSC能量缓冲电路的效率可以非常高。 由于使用SSC能量缓冲结构的电路不需要利用电解电容器,所以利用SSC能量缓冲架构的电路克服了利用电解电容器的能量缓冲器的局限性。 利用SSC能量缓冲架构(无电解电容器)的电路可实现与使用电解电容器的能量缓冲器相当的有效能量密度特性。 SSC能量缓冲结构表现出随着能量缓冲量的增加而降低的损耗,使得能够在期望的工作范围内实现相对较高的效率。
    • 10. 发明申请
    • Suture Fixation Arthroscope Apparatus of the Temporomandibular Joint Disk
    • 颞下颌关节盘缝合固定关节镜装置
    • US20110106111A1
    • 2011-05-05
    • US12992085
    • 2010-02-05
    • Chi YangShanyong ZhangZhiyuan ZhangMinjie ChenXieyi CaiJinning ZhangXiuming Liu
    • Chi YangShanyong ZhangZhiyuan ZhangMinjie ChenXieyi CaiJinning ZhangXiuming Liu
    • A61B17/04
    • A61B17/56A61B17/0483A61B17/0485A61B90/92A61B2017/00429A61B2017/00446A61B2017/564
    • A suture fixation arthroscope apparatus of the temporomandibular joint (TMJ) disk comprises a first suture needle and a first inner core, a second suture needle and a second inner core, and a third suture needle. The tail ends of the first and second suture needles are connected with a big handle via a valve panel, a vertical groove is opened towards the center of a circle of the surface of the big handle, a horizontal groove which is the same size as the vertical groove is vertically set at the place of the big handle connecting the valve panel. The first inner core includes a seamless tube and a top welded with wire snares, the second inner core includes a seamless tube and a top welded with a crochet hook, the radian near the tails of the first and second inner cores is 90 degrees, a small handle is connected at the tails. The first and second inner cores can pass through the vertical groove of the big handle of the first and second suture needles respectively, the corner of the 90 degrees tail is able to lock rightwards or leftwards at the horizontal groove, the wire snare or the crochet hook at the top of inner cores are able to come out from the top of the suture needles.
    • 颞下颌关节(TMJ)盘的缝合线固定关节镜装置包括第一缝合针和第一内芯,第二缝合针和第二内芯以及第三缝合针。 第一缝合针和第二缝合针的尾端通过阀板与大把手连接,垂直槽朝向大把手表面的圆的中心开口,水平槽的尺寸与 垂直槽垂直设置在连接阀面板的大把手的位置。 第一内芯包括无缝管和顶部焊接有线圈,第二内芯包括无缝管和顶部焊接有钩针,在第一和第二内芯的尾部附近的弧度为90度, 小把手连接在尾部。 第一和第二内芯可分别穿过第一和第二缝合针的大手柄的垂直槽,90度的尾部的角部能够在水平凹槽处向右或向左锁定,线圈或钩针 内芯顶部的钩子能够从缝合针的顶部出来。