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    • 22. 发明授权
    • Nanomover for optical elements alignment without driving electrically
    • Nanomover用于光学元件对准而无需电驱动
    • US07817890B2
    • 2010-10-19
    • US12260091
    • 2008-10-29
    • Sie-Poon ChangPeter Chang
    • Sie-Poon ChangPeter Chang
    • G02B6/32G02B6/46
    • G02B7/004G02B6/3616G02B7/005
    • A mechanical nanomover for optical elements alignment comprises a platform; a front supporting block and a rear supporting block; a left metal sheet and a right metal sheet installed between the two supporting blocks; a movable block installed between the two metal sheets; a weak spring and a strong spring which are interacted with the movable block. A translation stage serves to drive the weak spring to drive the movable block. The elastic coefficient of the strong spring is much greater than that of the weak spring so that the larger displacement of the weak spring will induce only a small displacement of the movable block due to the interaction of the strong spring. No electric power is needed to drive the structure of the nanomover. The mechanical nanometer can provide a sufficient precision to the operation, while it is very inexpensive.
    • 用于光学元件对准的机械纳米转移包括平台; 前支撑块和后支撑块; 安装在两个支撑块之间的左金属片和右金属片; 安装在两个金属板之间的可移动块; 弱弹簧和强力弹簧与可动块相互作用。 平移台用于驱动弱弹簧来驱动可动块。 强弹簧的弹性系数远大于弱弹簧的弹性系数,使得弱弹簧的较大位移将由于强弹簧的相互作用而仅引起可移动块的较小位移。 不需要电力来驱动纳米覆盖层的结构。 机械纳米可以为操作提供足够的精度,同时它非常便宜。
    • 23. 发明申请
    • NANOMOVER FOR OPTICAL ELEMENTS ALIGNMENT WITHOUT DRIVING ELECTRICALLY
    • 用于光驱元件对准的NANOMOVER,无需驱动电气
    • US20100104252A1
    • 2010-04-29
    • US12260091
    • 2008-10-29
    • Sie-Poon ChangPeter Chang
    • Sie-Poon ChangPeter Chang
    • G02B6/46
    • G02B7/004G02B6/3616G02B7/005
    • A mechanical nanomover for optical elements alignment comprises a platform; a front supporting block and a rear supporting block; a left metal sheet and a right metal sheet installed between the two supporting blocks; a movable block installed between the two metal sheets; a weak spring and a strong spring which are interacted with the movable block. A translation stage serves to drive the weak spring to drive the movable block. The elastic coefficient of the strong spring is much greater than that of the weak spring so that the larger displacement of the weak spring will induce only a small displacement of the movable block due to the interaction of the strong spring. No electric power is needed to drive the structure of the nanomover. The mechanical nanometer can provide a sufficient precision to the operation, while it is very inexpensive.
    • 用于光学元件对准的机械纳米转移包括平台; 前支撑块和后支撑块; 安装在两个支撑块之间的左金属片和右金属片; 安装在两个金属板之间的可移动块; 弱弹簧和强力弹簧与可动块相互作用。 平移台用于驱动弱弹簧来驱动可动块。 强弹簧的弹性系数远大于弱弹簧的弹性系数,使得弱弹簧的较大位移将由于强弹簧的相互作用而仅引起可移动块的较小位移。 不需要电力来驱动纳米覆盖层的结构。 机械纳米可以为操作提供足够的精度,同时它非常便宜。
    • 26. 发明申请
    • Caulk dispensing device with sure-grips
    • 填缝剂分配装置
    • US20050263544A1
    • 2005-12-01
    • US11138623
    • 2005-05-26
    • Peter ChangAlbert Lee
    • Peter ChangAlbert Lee
    • B05C17/01B67D7/60B67D5/42
    • B05C17/01B05C17/0123Y10T16/476
    • A pair of sure-grip inserts formed as molded rubber sheathes for use in conjunction with a caulking gun having a downwardly protruding trigger that is retracted by hand to dispense caulk, and a downwardly protruding stationary handle to provide a hand grip for retracting the trigger. The trigger insert formed as an open-ended molded rubber sheath with a particular contoured shape and an internal channel conforming to the trigger for slidable insertion thereon. The handle insert is likewise formed as an open-ended molded rubber sheath conforming to the handle for slidable insertion thereon. The inserts are molded per a two-color double-injection-molding process to provide an aesthetically striking two-color appearance, and they are molded with a particular contoured design that conforms to the hand, thereby improving comfort during hard, extended use. The contour plus the use of soft-durometer thermoplastic rubber gives a high-coefficient of friction for a vastly improved grip under all (even wet) conditions.
    • 一对可靠把手插入件形成为模制橡胶护套,与铆接枪结合使用,该铆接枪具有向下突出的触发器,其由手工缩回以分配填缝,以及向下突出的固定手柄,以提供用于缩回触发器的手柄。 触发器插件形成为具有特定轮廓形状的开口模制橡胶护套,以及与触发器一致的内部通道,用于可滑动地插入其中。 手柄插入件同样形成为与手柄一致的开口模制橡胶护套,用于可滑动插入。 插入件通过双色双注射成型工艺成型,以提供美观醒目的双色外观,并且它们以与手相符的特定轮廓设计模制,从而在坚硬且延长使用期间提高舒适度。 轮廓加上使用软硬度计的热塑性橡胶可以在所有(均匀湿润)条件下大大提高抓地力,提供高摩擦系数。
    • 29. 发明授权
    • Power edge detector
    • 电源边缘检测器
    • US6147516A
    • 2000-11-14
    • US166993
    • 1998-10-06
    • Peter Chang
    • Peter Chang
    • H03K5/1534H03K17/22H03K5/153
    • H03K5/1534H03K17/223
    • A power edge detector includes a voltage divider, a pull-up circuit, and a cut-in pull-down circuit. The voltage divider receives and divides an input power voltage so as to generate a divided voltage. The pull-up circuit receives the input power voltage and transmits the input power voltage to an output terminal when the input power voltage does not exceed a predetermined threshold. The cut-in pull-down circuit is connected to the voltage divider and the pull-up circuit for pulling down the voltage level of the output terminal in response to the divided voltage when the input power voltage exceeds the predetermined threshold.
    • 功率边缘检测器包括分压器,上拉电路和切入式下拉电路。 分压器接收并分压输入电源电压以产生分压。 当输入电源电压不超过预定阈值时,上拉电路接收输入电源电压并将输入电源电压发送到输出端子。 切入式下拉电路连接到分压器和上拉电路,用于在输入电源电压超过预定阈值时响应于分压而拉低输出端子的电压电平。