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    • 14. 发明申请
    • Scented wax heating device
    • 香味蜡加热装置
    • US20060163241A1
    • 2006-07-27
    • US11042728
    • 2005-01-24
    • Ming Xiao
    • Ming Xiao
    • F27D11/00
    • A61L9/03
    • The present invention discloses a scented wax heating device, which includes a heating cylinder, an electric wire, and a ceramic heating piece installed at the bottom of the heating cylinder. The heating cylinder is installed in an insulating cylinder for an insulating effect, so that a user can freely move the heating device. The heating cylinder is filled with appropriate amount of water, and the scented wax is put into the heating cylinder. The heating cylinder is heated by the ceramic heating piece, so that the temperature of water in the heating cylinder rises to evenly vaporize the scented wax. The invention features a simple structure and a useful function.
    • 本发明公开了一种香味蜡加热装置,其包括加热缸,电线和安装在加热缸底部的陶瓷加热片。 加热缸安装在绝缘筒中,用于隔热效果,使得使用者可以自由地移动加热装置。 加热缸内装满适量的水,将香味蜡放入加热缸内。 加热缸被陶瓷加热片加热,使得加热缸内的水温上升,从而使香味蜡均匀蒸发。 本发明具有简单的结构和有用的功能。
    • 18. 发明申请
    • Accumulation system for processing media items of various sizes and types
    • 用于处理各种尺寸和类型的介质物品的累积系统
    • US20070108691A1
    • 2007-05-17
    • US11274794
    • 2005-11-15
    • Thomas LygaMing XiaoJoseph GelbMichael ChenJames FairweatherJames Salomon
    • Thomas LygaMing XiaoJoseph GelbMichael ChenJames FairweatherJames Salomon
    • B65H5/22
    • B65H39/10B65H31/20B65H31/3027B65H31/3081B65H2301/4213B65H2301/42262B65H2301/42266B65H2511/10B65H2220/01B65H2220/04
    • An accumulator system and method for collating a plurality of media items wherein the media items enter in seriatim at an media item entry point and become at least partially overlapped with each other at a media item exit point. A media item transport path connects the media item entry point and the media item exit point. A moveable member is mounted along the media item transport path between the entry point and the exit point. The moveable member forms part of a pocket into which media items are moved to create a collation of media items. The moveable member is moveable to change the size of the pocket. A protective member may be mounted to the moveable member and positioned to protect the trailing edge of media items in the pocket from the leading edge of media items to thereafter be moved into the pocket. The media item may be aligned in the collation position when moving the protective member to a media item trailing edge protective position. The transport means for media items can be controlled to partially move a media item along an exit path beyond the collation position. Media items of different lengths can be formed as part of the collation at the collation position with the trailing edge of the media items aligned.
    • 一种用于整理多个媒体项目的累加器系统和方法,其中媒体项目在媒体项目入口点处串行进入,并且在媒体项目出口点处彼此至少部分地重叠。 媒体项目传输路径连接媒体项目入口点和媒体项目出口点。 可移动构件沿入口点和出口点之间的介质物品传送路径安装。 可移动构件形成口袋的一部分,媒体物品移动到该口袋中以创建媒体项目的整理。 可移动构件可移动以改变口袋的尺寸。 保护构件可以安装到可移动构件并且被定位成保护袋中的介质物品的后缘与介质物品的前缘之间,然后移动到袋中。 当将保护构件移动到介质物品后缘保护位置时,介质物品可以对准排列位置。 可以控制用于媒体物品的传送装置,以便沿着出口路径部分移动媒体物品超过整理位置。 不同长度的媒体项目可以形成为对照位置处的对照的一部分,其中媒体物品的后缘对齐。
    • 20. 发明授权
    • Compact spectrofluorometer
    • 紧凑型荧光分光光度计
    • US06441892B2
    • 2002-08-27
    • US09813325
    • 2001-03-19
    • Ming Xiao
    • Ming Xiao
    • G01N2164
    • G01J3/26G01J3/02G01J3/0294G01J3/4406G01N21/6456G01N2021/6417G01N2021/6423
    • Spectrofluorometer employing a pair of linear variable spectral filters to produce a three dimensional data output is disclosed. A collimated white light source is used that first passes through a first linear variable spectral filter, then through a sample where fluorescence occurs, then the resultant light passes through a second linear variable spectral light filter that is oriented at ninety degrees from the first filter. The light is then detected by a CCD sensor for conversion into data. This arrangement provides a very simple, rugged and compact instrument that can be used almost anywhere, such as at the scene of a contamination accident.
    • 公开了使用一对线性可变光谱滤波器产生三维数据输出的分光荧光计。 使用准直的白光源,其首先通过第一线性可变光谱滤光器,然后通过荧光发生的样品,然后所得光通过从第一滤光器定向成90度的第二线性可变光谱滤光器。 然后由CCD传感器检测光转换成数据。 这种安排提供了一种非常简单,坚固耐用的紧凑型仪器,可以在几乎任何地方使用,例如在污染事故现场。