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    • 1. 发明授权
    • Vacuum package system
    • 真空包装系统
    • US08100263B2
    • 2012-01-24
    • US12346139
    • 2008-12-30
    • Edward VanderbushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • Edward VanderbushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • B65D25/10B65D81/20
    • A61M5/002A61M5/008A61M2207/00A61M2209/06B65B5/067B65B31/06B65D25/108B65D81/203
    • A vacuum packaging system for transporting a plurality of medical containers includes a plurality of medical containers each having a head side and a base side and a tray that receives and supports the medical containers. The tray includes opposing first and second sidewalls, opposing front and rear walls and a bottom floor. The walls extend generally vertically from the floor of the tray. At least one platform generally extends parallel to the floor of the tray. An air impervious flexible film defines an internal cavity. The air impervious flexible film completely surrounds the tray and the medical containers and the internal cavity is evacuated to and maintained at a predetermined vacuum level below atmospheric pressure. One of the head side and the base side of each medical container contacts a top surface of at least one platform when the medical containers are positioned in the tray.
    • 用于运输多个医疗容器的真空包装系统包括多个医疗容器,每个医疗容器具有头侧和底侧以及容纳和支撑医疗容器的托盘。 托盘包括相对的第一和第二侧壁,相对的前壁和后壁以及底板。 墙壁从托盘的地板大致垂直延伸。 至少一个平台通常平行于托盘的底板延伸。 不透气的柔性膜限定内部空腔。 不透气的柔性膜完全包围托盘,并且医疗容器和内腔被抽空并保持在低于大气压的预定真空度。 当医疗容器位于托盘中时,每个医疗容器的头侧和底侧之一接触至少一个平台的顶表面。
    • 2. 发明授权
    • Vacuum package system
    • 真空包装系统
    • US07963396B2
    • 2011-06-21
    • US12510563
    • 2009-07-28
    • Edward VanderbushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • Edward VanderbushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • B65D25/10B65D81/20B65B31/00
    • A61M5/002A61M5/008A61M2207/00A61M2209/06B65B5/067B65B31/06B65D25/108B65D81/203
    • A vacuum packaging system for transporting a plurality of medical containers includes a plurality of medical a tray that receives and supports the medical containers. The tray includes opposing first and second side walls, opposing side and rear walls and a bottom floor. The walls extend generally perpendicularly from the bottom floor of the tray to a top edge thereof. A nesting plate is removably mountable in the tray and includes a plurality of generally cylindrical sleeves each receiving one of the plurality of medical containers. A support surface within the tray generally extends parallel to and spaced a predetermined distance from the bottom floor of the tray and receives and supports the nesting plate. An air impervious flexible film defines an internal cavity and completely surrounds the tray and the medical containers. The internal cavity is evacuated to and maintained at a predetermined vacuum level below atmospheric pressure.
    • 用于运输多个医疗容器的真空包装系统包括多个医疗托盘,其容纳和支撑医疗容器。 托盘包括相对的第一和第二侧壁,相对的侧壁和后壁以及底板。 壁大体垂直地从托盘的底部底部延伸到其顶部边缘。 嵌套板可移除地安装在托盘中,并且包括多个大致圆柱形的套筒,每个套筒容纳多个医疗容器中的一个。 托盘内的支撑表面通常平行于托盘的底部底部延伸并与之隔开预定距离,并接收并支撑嵌套板。 不透气的柔性膜限定内腔,并完全包围托盘和医疗容器。 将内腔排空并保持在低于大气压的预定真空度。
    • 3. 发明申请
    • VACUUM PACKAGE SYSTEM
    • 真空包装系统
    • US20090100802A1
    • 2009-04-23
    • US12346139
    • 2008-12-30
    • Edward Vander BushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • Edward Vander BushScott YoungJon LundquistRicky YeagerHiroshi Togashi
    • B65B31/00
    • A61M5/002A61M5/008A61M2207/00A61M2209/06B65B5/067B65B31/06B65D25/108B65D81/203
    • A vacuum packaging system for transporting a plurality of medical containers includes a plurality of medical containers each having a head side and a base side and a tray that receives and supports the medical containers. The tray includes opposing first and second sidewalls, opposing front and rear walls and a bottom floor. The walls extend generally vertically from the floor of the tray. At least one platform generally extends parallel to the floor of the tray. An air impervious flexible film defines an internal cavity. The air impervious flexible film completely surrounds the tray and the medical containers and the internal cavity is evacuated to and maintained at a predetermined vacuum level below atmospheric pressure. One of the head side and the base side of each medical container contacts a top surface of at least one platform when the medical containers are positioned in the tray.
    • 用于运输多个医疗容器的真空包装系统包括多个医疗容器,每个医疗容器具有头侧和底侧以及容纳和支撑医疗容器的托盘。 托盘包括相对的第一和第二侧壁,相对的前壁和后壁以及底板。 墙壁从托盘的地板大致垂直延伸。 至少一个平台通常平行于托盘的底板延伸。 不透气的柔性膜限定内部空腔。 不透气的柔性膜完全包围托盘,并且医疗容器和内腔被抽空并保持在低于大气压的预定真空度。 当医疗容器位于托盘中时,每个医疗容器的头侧和底侧之一接触至少一个平台的顶表面。
    • 5. 发明申请
    • Medical Container
    • 医疗容器
    • US20100012546A1
    • 2010-01-21
    • US12526819
    • 2007-03-05
    • Hiroshi TogashiScott YoungEdward F. Vander Bush, JR.
    • Hiroshi TogashiScott YoungEdward F. Vander Bush, JR.
    • B65D85/42
    • A61M5/008A61B50/22A61B50/30A61J1/16A61L2/087A61L2202/24A61M5/001A61M5/002B01L9/54B01L2200/18B01L2300/041B65D25/108
    • The present invention relates to a medical container useful upon transportation of plural syringe barrels. The medical container includes at least a container main body and a holding member arranged inside the container main body. The holding member is provided at least with a plurality of cylindrical holding portions for holding syringe barrels. The container main body has at least a peripheral rim arranged on and along an outer periphery of an opening and a shoulder-shaped portion arranged on an inner wall of the container to arrange the holding member. The shoulder-shaped portion has at least three ribs for supporting the holding member, and has a structure that enables to arrange via the ribs the holding member in a horizontal position relative to a bottom wall of the container main body. According to the present invention, there is provided a medical container of a construction that can be promptly brought into a sterilized state by various methods, can be readily brought into a state capable of maintaining the sterilized state, and during transportation, can fixedly secure, without rattling, syringe barrels held upright by holders.
    • 本发明涉及一种用于运送多个注射器筒的医疗容器。 医疗容器至少包括容器主体和设置在容器主体内部的保持构件。 保持构件至少设置有用于保持注射器筒的多个圆柱形保持部。 容器主体至少具有设置在开口的外周上且沿着外周配置的周缘,以及布置在容器的内壁上的肩部,以布置保持构件。 肩状部具有用于支撑保持构件的至少三个肋,并且具有能够经由肋将保持构件布置成相对于容器主体的底壁处于水平位置的结构。 根据本发明,提供一种能够通过各种方法迅速进入灭菌状态的结构的医疗容器,能够容易地进入能够维持灭菌状态的状态,并且在运输过程中可以牢固地固定, 没有咔嗒声,持有人直立的注射器桶。
    • 6. 发明授权
    • Medical container
    • 医疗容器
    • US08118167B2
    • 2012-02-21
    • US12526819
    • 2007-03-05
    • Hiroshi TogashiScott YoungEdward F. Vander Bush, Jr.
    • Hiroshi TogashiScott YoungEdward F. Vander Bush, Jr.
    • B65D83/04B65D85/42
    • A61M5/008A61B50/22A61B50/30A61J1/16A61L2/087A61L2202/24A61M5/001A61M5/002B01L9/54B01L2200/18B01L2300/041B65D25/108
    • The present invention relates to a medical container useful upon transportation of plural syringe barrels. The medical container includes at least a container main body and a holding member arranged inside the container main body. The holding member is provided at least with a plurality of cylindrical holding portions for holding syringe barrels. The container main body has at least a peripheral rim arranged on and along an outer periphery of an opening and a shoulder-shaped portion arranged on an inner wall of the container to arrange the holding member. The shoulder-shaped portion has at least three ribs for supporting the holding member, and has a structure that enables to arrange via the ribs the holding member in a horizontal position relative to a bottom wall of the container main body. According to the present invention, there is provided a medical container of a construction that can be promptly brought into a sterilized state by various methods, can be readily brought into a state capable of maintaining the sterilized state, and during transportation, can fixedly secure, without rattling, syringe barrels held upright by holders.
    • 本发明涉及一种用于运送多个注射器筒的医疗容器。 医疗容器至少包括容器主体和设置在容器主体内部的保持构件。 保持构件至少设置有用于保持注射器筒的多个圆柱形保持部。 容器主体至少具有设置在开口的外周上且沿着外周配置的周缘,以及布置在容器的内壁上的肩部,以布置保持构件。 肩状部具有用于支撑保持构件的至少三个肋,并且具有能够经由肋将保持构件布置成相对于容器主体的底壁处于水平位置的结构。 根据本发明,提供一种能够通过各种方法迅速进入灭菌状态的结构的医疗容器,能够容易地进入能够维持灭菌状态的状态,并且在运输过程中可以牢固地固定, 没有咔嗒声,持有人直立的注射器桶。
    • 9. 发明授权
    • Digital pathology system
    • 数字病理系统
    • US09041930B1
    • 2015-05-26
    • US13112956
    • 2011-05-20
    • Scott YoungEliezer RosengausAshok Kulkarni
    • Scott YoungEliezer RosengausAshok Kulkarni
    • G01N21/25G01J3/51G01J3/02G01J3/28
    • G01J3/51G01J3/02G01J3/0208G01J3/0237G01J3/2803G01J3/36G01J3/513G01J2003/1213G02B7/28G02B21/244G02B21/365G02B27/40
    • The present invention may include an illumination source; a TDI sensor having a plurality of rows of TDI pixels, wherein each of the TDI pixels have a 1:1 aspect ratio; a multicolor filter contacted to the surface of the TDI sensor, wherein the multicolor filter has alternating sections of a first color filter, a second color filter, and at least a third color, wherein adjacent rows of TDI pixels are grouped in order to form a plurality of rows of integrated multicolor pixels; an objective having a first end positioned proximate to the specimen; a second lens configured to focus light from the image path onto the TDI sensor; and an anamorphic optics element configured to magnify an image of the one or more specimens such that the image is magnified by a factor of three along a direction orthogonal to an integrating direction of the TDI sensor.
    • 本发明可以包括照明源; 具有多行TDI像素的TDI传感器,其中每个TDI像素具有1:1的纵横比; 与TDI传感器的表面接触的多色过滤器,其中所述多色过滤器具有第一滤色器,第二滤色器和至少第三颜色的交替部分,其中相邻的TDI像素行被分组以形成 多行集成多色像素; 具有靠近所述样本定位的第一端的物镜; 第二透镜,被配置为将来自图像路径的光聚焦到TDI传感器上; 以及变形光学元件,被配置为放大一个或多个样本的图像,使得图像沿着与TDI传感器的积分方向正交的方向被放大三倍。
    • 10. 发明授权
    • Solar metrology methods and apparatus
    • 太阳能计量方法和装置
    • US08604447B2
    • 2013-12-10
    • US13557047
    • 2012-07-24
    • Scott YoungGuoheng ZhaoAdy LevyMarco GuevremontNeeraj Khanna
    • Scott YoungGuoheng ZhaoAdy LevyMarco GuevremontNeeraj Khanna
    • G01N21/64
    • G01N21/6489G01N21/9501H02S50/10
    • Methods and apparatus are presented to measure the photoluminescence of incoming wafers and extract parameters such as minority carrier life time, diffusion length, and defect density that may be used to predict final solar cell efficiency. In some examples, illumination light is supplied to a side of an as-cut silicon wafer and the induced luminescence measured from the same side and the opposite side of the wafer is used to determine an indication of the minority carrier lifetime. In another example, the luminescence induced by two instances of illumination light of different wavelength is used to determine an indication of the minority carrier lifetime. In another example, the spatial distribution of luminescence intensity over an area surrounding a focused illumination spot is used to determine an indication of the minority carrier lifetime. Other apparatus useful to passivate the surface of a wafer for inspection are also presented.
    • 提出了测量进入晶片的光致发光的方法和装置,并提取可用于预测最终太阳能电池效率的参数,例如少数载流子寿命,扩散长度和缺陷密度。 在一些示例中,将照明光提供给切割硅晶片的一侧,并且使用从晶片的相同侧和相对侧测量的感应发光来确定少数载流子寿命的指示。 在另一示例中,由两个不同波长的照明光实例引起的发光用于确定少数载流子寿命的指示。 在另一示例中,使用聚焦照明点周围的区域上的发光强度的空间分布来确定少数载流子寿命的指示。 还提出了可用于钝化晶片表面以进行检查的其它装置。