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    • 103. 发明授权
    • Zoom lens and imaging apparatus
    • 变焦镜头和成像设备
    • US07612949B2
    • 2009-11-03
    • US11979673
    • 2007-11-07
    • Motoyuki OhtakeAtsushi Suzuki
    • Motoyuki OhtakeAtsushi Suzuki
    • G02B15/14
    • G02B15/177G02B27/646
    • A zoom lens includes, in order from the object side, a first lens group having a negative refractive power, a second lens group having a positive refractive power, and a third lens group having a positive refractive power. When a lens positional state changes from a maximum wide angle state to a maximum telephoto state, the second lens group moves on an optical axis toward an object, and the first and the third lens groups also move in an optical axis direction such that a gap between the first lens group and the second lens group decreases, while gap between the second lens group and the third lens group is increased. When a change in subject position occurs, close-range focusing is performed by movement of the third lens group, and image shift is provided by shifting the second lens group in directions approximately perpendicular to the optical axis.
    • 变焦透镜从物体侧依次包括具有负屈光力的第一透镜组,具有正折光力的第二透镜组和具有正折光力的第三透镜组。 当透镜位置状态从最大广角状态变化到最大远摄状态时,第二透镜组在光轴上朝向物体移动,并且第一透镜组和第三透镜组也沿光轴方向移动,使得间隙 第一透镜组和第二透镜组之间的间隙减小,而第二透镜组和第三透镜组之间的间隙增加。 当发生被摄体位置的变化时,通过第三透镜组的移动进行近距离聚焦,并且通过使第二透镜组在大致垂直于光轴的方向上偏移来提供图像偏移。
    • 104. 发明申请
    • FORMING EQUIPMENT COMPRISING CARRIAGES CARRYING LOWER MOLDS
    • 成型设备包括承载较少的载体
    • US20090142433A1
    • 2009-06-04
    • US12323850
    • 2008-11-26
    • Hiroshi ABETAAtsushi Suzuki
    • Hiroshi ABETAAtsushi Suzuki
    • B29C51/20
    • B29C51/20B29C51/38B29C51/46
    • The present invention provides forming equipment comprising carriages carrying lower molds that can improve the quality of the molded product by fixing a carriage carrying the lower mold at the forming station when the forming is carried out.The forming equipment comprising the carriages carrying the lower molds of the present invention comprises a forming press that molds thermoplastic sheet material H with the upper mold MU and lower molds MR, ML, wherein the equipment comprises two carriages TR, TL, each carrying a lower mold, which carriages can move to and from the position opposite to the upper mold in the forming station S, a carriage-transport mechanism A that transports the two carriages independently by driving motors, one attached to each carriage, a carriage-guide mechanism B along a pair of rails laid in the direction perpendicular to the pressing direction of the forming press, and a means C to determine the position of the carriage in the forming station by engaging the carriage.
    • 本发明提供了一种成型设备,其包括承载下模的托架,该模具可以通过在进行成型时将承载下模的托架固定在成型站处,从而提高模制产品的质量。 包括承载本发明的下模具的托架的成形设备包括成形压力机,其用上模具MU和下模具MR,ML模制热塑性片材H,其中该设备包括两个托架TR,TL,每个托架具有较低的 模具,其可以移动到成形站S中与上模相对的位置;托架输送机构A,其通过驱动马达独立地运送两个托架,一个附接到每个托架,托架引导机构B 沿着与成形压力机的按压方向垂直的方向放置的一对轨道,以及通过接合滑架来确定滑架在成形站中的位置的装置C.
    • 105. 发明申请
    • FILTER ELEMENT
    • 过滤元件
    • US20090071113A1
    • 2009-03-19
    • US11914388
    • 2006-06-01
    • Toshinori ObaAtsushi Suzuki
    • Toshinori ObaAtsushi Suzuki
    • B01D50/00
    • B01D39/1615B01D39/1623
    • A filter element includes an upstream side layer structure disposed on an upstream side in a flow direction of air to be filtrated and formed of a non woven fabric formed by laminating chemical fibers, and a downstream side layer structure disposed on a downstream side in the flow direction of the air and including a plurality of layers including chemical fiber non woven fabric layers formed by laminating chemical fibers. The upstream side layer structure has a fiber density relatively smaller than that of the downstream side layer structure. The downstream side layer structure includes a natural fiber layer such as cotton layer disposed between the chemical fiber non fabric layers, and an oil is impregnated from the upstream side layer structure to the natural fiber layer in the downstream side layer structure.
    • 过滤元件包括上游侧层结构,其设置在通过层叠化学纤维形成的无纺织物的过滤空气的流动方向的上游侧,以及设置在流体的下游侧的下游侧层结构 空气的方向,并且包括通过层压化学纤维形成的包括化学纤维无纺织物层的多个层。 上游侧层结构的纤维密度比下游侧层结构的纤维密度小。 下游侧层结构包括布置在化纤非织物层之间的棉层等天然纤维层,在下游侧层结构中从上游侧层结构向天然纤维层浸渍油。
    • 106. 发明申请
    • SEMICONDUCTOR INTEGRATED CIRCUIT AND METHOD OF CONTROLLING MEMS-TYPE VARIABLE CAPACITANCE CAPACITOR
    • 半导体集成电路及控制MEMS型可变电容电容器的方法
    • US20090066299A1
    • 2009-03-12
    • US12206179
    • 2008-09-08
    • Atsushi Suzuki
    • Atsushi Suzuki
    • G05F1/10
    • H02M3/07
    • A first pump circuit generates a first voltage for decreasing the distance between primary electrodes. The first voltage is limited to a predetermined limit by a first limiter circuit. A second pump circuit generates a second voltage for keeping the distance between the primary electrodes constant. A third pump circuit generates the second voltage and has a supplying capacity smaller than the first one. The second voltage is limited by second and third limiter circuits. A ripple capacitor is charged up to the second voltage by the second pump circuit and the second limiter circuit within a period of time the first voltage is being generated. When a supplying voltage of the first pump circuit reaches to the first voltage, and a deformation stops, the second voltage is supplied by the third pump circuit and the third limiter circuit instead of the second pump circuit and the second limiter circuit.
    • 第一泵电路产生用于减小主电极之间的距离的第一电压。 第一限幅器电路将第一电压限制在预定极限。 第二泵电路产生用于保持主电极之间的距离恒定的第二电压。 第三泵电路产生第二电压并具有小于第一电压的供电能力。 第二电压受第二和第三限幅电路的限制。 波纹电容器在第一电压产生的时间段内由第二泵电路和第二限幅器电路充电至第二电压。 当第一泵电路的供电电压达到第一电压并且变形停止时,第二电压由第三泵电路和第三限幅器电路代替第二泵电路和第二限幅器电路供应。