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    • 1. 发明授权
    • Automated intraocular lens injector device
    • 自动人工晶状体注射装置
    • US08657835B2
    • 2014-02-25
    • US13360234
    • 2012-01-27
    • Mikhail BoukhnyBill ChenJames Chon
    • Mikhail BoukhnyBill ChenJames Chon
    • A61F9/00A61F2/16
    • A61F2/167A61F2/1678
    • An intraocular lens injection device comprises a tubular housing with a plunger longitudinally disposed within the tubular housing. An electric drive system longitudinally translates the plunger so that its tip engages an insertion cartridge to fold and displace an intraocular lens disposed within and to inject the folded lens into the lens capsule of an eye. A control circuit is configured to start translation of the plunger, responsive to user input, to detect at least one fault condition based on a counter-electromotive force produced by the electric motor, and to stop translation of the plunger assembly responsive to the detected fault condition, which may comprise excessive resistance to forward or rearward translation of the plunger or insufficient resistance to forward translation of the plunger.
    • 眼内透镜注射装置包括具有纵向设置在管状壳体内的柱塞的管状壳体。 电驱动系统纵向地平移柱塞,使得其尖端与插入筒接合,以折叠和移位设置在其内并将折叠的透镜注入眼睛的晶状体囊中的眼内透镜。 控制电路被配置为响应于用户输入开始柱塞的平移,以基于由电动机产生的反电动势来检测至少一个故障状况,并且响应于检测到的故障停止柱塞组件的平移 其可能包括对柱塞的向前或向后平移的过大阻力或对柱塞的向前平移的抵抗力不足。
    • 2. 发明申请
    • AUTOMATED INTRAOCULAR LENS INJECTOR DEVICE
    • 自动内窥镜镜头注射器装置
    • US20130197532A1
    • 2013-08-01
    • US13360234
    • 2012-01-27
    • Mikhail BoukhnyBill ChenJames Chon
    • Mikhail BoukhnyBill ChenJames Chon
    • A61F9/013
    • A61F2/167A61F2/1678
    • An intraocular lens injection device comprises a tubular housing with a plunger longitudinally disposed within the tubular housing. An electric drive system longitudinally translates the plunger so that its tip engages an insertion cartridge to fold and displace an intraocular lens disposed within and to inject the folded lens into the lens capsule of an eye. A control circuit is configured to start translation of the plunger, responsive to user input, to detect at least one fault condition based on a counter-electromotive force produced by the electric motor, and to stop translation of the plunger assembly responsive to the detected fault condition, which may comprise excessive resistance to forward or rearward translation of the plunger or insufficient resistance to forward translation of the plunger.
    • 眼内透镜注射装置包括具有纵向设置在管状壳体内的柱塞的管状壳体。 电驱动系统纵向地平移柱塞,使得其尖端与插入筒接合,以折叠和移位设置在其内并将折叠的透镜注入眼睛的晶状体囊中的眼内透镜。 控制电路被配置为响应于用户输入开始柱塞的平移,以基于由电动机产生的反电动势来检测至少一个故障状况,并且响应于检测到的故障停止柱塞组件的平移 其可能包括对柱塞的向前或向后平移的过大阻力或对柱塞的向前平移的抵抗力不足。
    • 5. 发明授权
    • Automated intraocular lens injector device
    • 自动人工晶状体注射装置
    • US08308736B2
    • 2012-11-13
    • US12249996
    • 2008-10-13
    • Mikhail BoukhnyBill ChenJames Chon
    • Mikhail BoukhnyBill ChenJames Chon
    • A61F9/00A61F2/16
    • A61F2/167A61F2/1662
    • An intraocular lens injection device comprises a tubular housing with a plunger longitudinally disposed within the tubular housing. An electric drive system longitudinally translates the plunger so that its tip engages an insertion cartridge to fold and displace an intraocular lens disposed within and to inject the folded lens into the lens capsule of an eye. A control circuit is configured to start translation of the plunger, responsive to user input, to detect at least one fault condition based on a counter-electromotive force produced by the electric motor, and to stop translation of the plunger assembly responsive to the detected fault condition, which may comprise excessive resistance to forward or rearward translation of the plunger or insufficient resistance to forward translation of the plunger.
    • 眼内透镜注射装置包括具有纵向设置在管状壳体内的柱塞的管状壳体。 电驱动系统纵向地平移柱塞,使得其尖端与插入筒接合,以折叠和移位设置在其内并将折叠的透镜注入眼睛的晶状体囊中的眼内透镜。 控制电路被配置为响应于用户输入开始柱塞的平移,以基于由电动机产生的反电动势来检测至少一个故障状况,并且响应于检测到的故障停止柱塞组件的平移 其可能包括对柱塞的向前或向后平移的过大阻力或对柱塞的向前平移的抵抗力不足。
    • 6. 发明申请
    • Automated Intraocular Lens Injector Device
    • 自动人工晶状体注射器装置
    • US20100094309A1
    • 2010-04-15
    • US12249996
    • 2008-10-13
    • Mikhail BoukhnyBill ChenJames Chon
    • Mikhail BoukhnyBill ChenJames Chon
    • A61F9/007A61F2/16
    • A61F2/167A61F2/1662
    • An intraocular lens injection device comprises a tubular housing with a plunger longitudinally disposed within the tubular housing. An electric drive system longitudinally translates the plunger so that its tip engages an insertion cartridge to fold and displace an intraocular lens disposed within and to inject the folded lens into the lens capsule of an eye. A control circuit is configured to start translation of the plunger, responsive to user input, to detect at least one fault condition based on a counter-electromotive force produced by the electric motor, and to stop translation of the plunger assembly responsive to the detected fault condition, which may comprise excessive resistance to forward or rearward translation of the plunger or insufficient resistance to forward translation of the plunger.
    • 眼内透镜注射装置包括具有纵向设置在管状壳体内的柱塞的管状壳体。 电驱动系统纵向地平移柱塞,使得其尖端与插入筒接合,以折叠和移位设置在其内并将折叠的透镜注入眼睛的晶状体囊中的眼内透镜。 控制电路被配置为响应于用户输入开始柱塞的平移,以基于由电动机产生的反电动势来检测至少一个故障状况,并且响应于检测到的故障停止柱塞组件的平移 其可能包括对柱塞的向前或向后平移的过大阻力或对柱塞的向前平移的抵抗力不足。
    • 8. 发明授权
    • Minimized contamination of semiconductor wafers within an implantation system
    • 在植入系统内最小化半导体晶片的污染
    • US06452198B1
    • 2002-09-17
    • US09893847
    • 2001-06-28
    • Balaraman ManiBill ChenChe-Hoo Ng
    • Balaraman ManiBill ChenChe-Hoo Ng
    • H01J3720
    • H01J37/3171
    • Contamination of semiconductor wafers are minimized during implantation processes within an implantation system. An implantation chamber of the implantation system and components within the implantation chamber are coated with additional material to minimize contaminants within the implantation chamber. For example, surfaces of the implantation chamber and/or the components of the implantation chamber are coated by performing an implantation process with a coating dopant before a semiconductor wafer is placed within the implantation chamber. In this manner, contaminants on the surfaces of the implantation chamber and/or the components within the implantation chamber are substantially coated and encapsulated with the coating dopant to prevent contact of the contaminant with the semiconductor wafer placed within the implantation chamber. Alternatively, shields are placed on surfaces of the implantation chamber and/or on surfaces of the components of the implantation chamber during an implantation process for a first semiconductor wafer having a contaminant source. Such shields are amenable for absorbing the contaminant and are removed after this implantation process and before a second semiconductor wafer is placed within the implantation chamber to minimize contamination of the second semiconductor wafer.
    • 在植入系统内的植入过程期间,半导体晶片的污染被最小化。 植入系统的植入室和植入室内的组件涂覆有额外的材料以最小化植入室内的污染物。 例如,在将半导体晶片放置在植入室内之前,通过执行具有涂层掺杂剂的注入工艺来涂覆注入室的表面和/或注入室的部件。 以这种方式,植入室表面上的污染物和/或植入室内的组分被涂覆掺杂剂基本上涂覆和封装,以防止污染物与放置在植入室内的半导体晶片的接触。 或者,在具有污染源的第一半导体晶片的注入过程期间,将屏蔽物放置在注入室的表面和/或植入室的部件的表面上。 这种屏蔽件适于吸收污染物并且在该注入工艺之后并且在将第二半导体晶片放置在注入室内之前被去除以最小化第二半导体晶片的污染。
    • 9. 发明授权
    • Method and apparatus for obtaining relative and absolute modifying factors for image scanning apparatus
    • 用于获得图像扫描装置的相对和绝对修正因子的方法和装置
    • US06278808B1
    • 2001-08-21
    • US09239407
    • 1999-01-28
    • Jenn-Tsair TsaiBill Chen
    • Jenn-Tsair TsaiBill Chen
    • G06K900
    • H04N1/00018H04N1/00002H04N1/00034H04N1/00045H04N1/00053H04N1/00063H04N1/00082H04N1/047H04N2201/04703H04N2201/04717H04N2201/04732H04N2201/04749H04N2201/04787
    • A fast and effective method and an apparatus are provided for obtaining relative and absolute magnifying factors in the transverse and longitudinal directions to improve the scanning quality. The method for obtaining relative modifying factors includes the steps of (a) providing a first line segment, which extends in a direction other than either one of the first direction and the second direction, having a plurality of scanning points wherein there is a specific functional relationship between a distance in the first direction and a distance in the second direction of any two of the scanning points, (b) scanning the first line segment at a first one of the scanning points, (c) scanning the first line segment at a second one of the scanning points, wherein the first and the second scanning points have a particular position distance in the first direction, (d) obtaining a scanning distance between the first and the second scanning points in the second direction from the image scanning apparatus, and (e) calculating a relative modifying factor from the scanning distance and the particular position distance according the specific functional relationship. The method further provides a second line segment for obtaining an absolute magnifying factor in one of the first and second directions.
    • 提供了一种快速有效的方法和装置,用于在横向和纵向上获得相对和绝对放大系数,以提高扫描质量。 用于获得相对修改因子的方法包括以下步骤:(a)提供沿除第一方向和第二方向中的任一方向以外的方向延伸的第一线段,其具有多个扫描点,其中存在特定功能 (b)在第一扫描点扫描第一线段,(c)以第一方向扫描第一线段,扫描第一线段, 第二扫描点,其中第一和第二扫描点在第一方向上具有特定位置距离,(d)从图像扫描装置获得在第二方向上的第一和第二扫描点之间的扫描距离, 和(e)根据具体的功能关系从扫描距离和特定位置距离计算相对修正因子。 该方法还提供了用于在第一和第二方向之一中获得绝对放大系数的第二线段。
    • 10. 发明申请
    • MAP WITH MEDIA ICONS
    • 地图与媒体图标
    • US20120141046A1
    • 2012-06-07
    • US12957424
    • 2010-12-01
    • Bill ChenEyal Ofek
    • Bill ChenEyal Ofek
    • G06K9/36
    • G01C21/3682G01C21/32G06T3/00G09B29/106
    • The claimed subject matter provides a method and system for generating a map. An exemplary method includes selecting a media item from a plurality of media items. The media item may be relevant to the map and to an interest of a user. The method also includes selecting a segment from the media item, the selected segment being relevant to the interest of the user. Additionally, the method includes creating a distorted segment based on the selected segment. The selected segment may be distorted to facilitate positioning the distorted segment in the map. The method further includes compositing the distorted segment into the map as a media icon.
    • 所要求保护的主题提供了用于生成地图的方法和系统。 一种示例性方法包括从多个媒体项目中选择媒体项目。 媒体项目可能与地图相关,也可能与用户的兴趣有关。 该方法还包括从媒体项目中选择一个片段,所选择的片段与用户的兴趣相关。 此外,该方法包括基于所选择的段创建失真段。 所选择的段可能失真,以便于将失真段定位在地图中。 该方法还包括将失真段作为媒体图标合成到地图中。