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    • 3. 发明授权
    • Method for implementing a component positioning device
    • 实现部件定位装置的方法
    • US08171611B2
    • 2012-05-08
    • US11413906
    • 2006-04-28
    • Stanley P. Johnson
    • Stanley P. Johnson
    • B23Q17/22B23Q3/00B23P11/00F16M11/00
    • G01N21/95G01B5/0004G01B11/2425G01N21/952Y10T29/49778Y10T29/4978Y10T29/49895Y10T29/49947Y10T29/49963Y10T29/49998
    • A method for implementing a component positioning device is provided and includes obtaining a component, a component measuring device and a component positioning device, the component including a component head and a component base, the component measuring device including a first arbor and a second arbor and the component positioning device including a first support device, a second support device and an adapter device, connecting the first support device and the adapter device to the component measuring device, wherein the first support device is associated with the first arbor and the adapter device is associated with the second arbor, associating the second support device with the adapter device, wherein the second support device is adjacent to and separated from the first support device by a component cavity and positioning the component within the component cavity.
    • 提供了一种用于实现元件定位装置的方法,包括获得元件,零件测量装置和元件定位装置,所述元件包括元件头和元件基座,所述元件测量器包括第一心轴和第二心轴, 所述部件定位装置包括将所述第一支撑装置和所述适配器装置连接到所述部件测量装置的第一支撑装置,第二支撑装置和适配器装置,其中所述第一支撑装置与所述第一心轴相关联,并且所述适配器装置是 与所述第二心轴相关联,将所述第二支撑装置与所述适配器装置相关联,其中所述第二支撑装置通过部件空腔邻近并与所述第一支撑装置分离并将所述部件定位在所述部件腔内。
    • 5. 发明申请
    • Product inspection system and a method for implementing same
    • 产品检验制度及其实施方法
    • US20100270484A1
    • 2010-10-28
    • US12798586
    • 2010-04-07
    • Stanley P. JohnsonLawrence J. Zagorsky
    • Stanley P. JohnsonLawrence J. Zagorsky
    • G01N21/86G01B11/24
    • G01B11/2425G01B11/2433G01N21/952
    • A system and method for measuring the physical characteristics of a component where the system includes an electromagnetic radiation source defining a source optical path, the electromagnetic radiation source being operable to cause electromagnetic radiation to propagate along the source optical path, a sensing device defining a sensor optical path, a system support structure, a base structure, an electromagnetic radiation source mounting structure and a sensing device mounting structure, a positioning device including a positioning device stage, wherein the positioning device stage is movably disposed and a retention mount disposed on the positioning device stage, the retention mount being disposed within the sensor optical path such that when a component is retained within the retention mount, the component blocks at least a portion of the electromagnetic radiation to generate a silhouette, wherein the sensing device generates data responsive to the silhouette.
    • 一种用于测量部件的物理特性的系统和方法,其中所述系统包括限定源光路的电磁辐射源,所述电磁辐射源可操作以使电磁辐射沿着所述源光路传播;感测装置,其限定传感器 光路,系统支撑结构,基部结构,电磁辐射源安装结构和感测装置安装结构,定位装置包括定位装置台,其中定位装置平台可移动地设置,并且固定架设置在定位 所述保持支架设置在所述传感器光路内,使得当部件保持在所述保持支架内时,所述部件阻挡所述电磁辐射的至少一部分以产生轮廓,其中所述感测装置响应于所述 轮廓。
    • 6. 发明申请
    • Product inspection system and a method for implementing same that incorporates a correction factor
    • 产品检验系统及其实施方法,包含校正系数
    • US20100245845A1
    • 2010-09-30
    • US12661259
    • 2010-03-13
    • Stanley P. JohnsonLawrence J. Zagorsky
    • Stanley P. JohnsonLawrence J. Zagorsky
    • G01B11/24G06F19/00
    • G01B11/2425G01B11/2433G01N21/8806G01N21/952
    • A system and method for measuring the physical characteristics of an object is provided, wherein the method includes disposing the object within the sensor optical path of an inspection system, causing a source collimated light beam to propagate along the source optical path to be at least partially incident upon the reflecting device, reflecting the source collimated light beam to create a reflected collimated light beam that propagates along the sensor optical path such that the reflected collimated light beam is at least partially incident upon the object to produce a silhouette, wherein at least a portion of the silhouette is incident upon the sensing device to generate initial image data responsive to the silhouette and processing the initial image data responsive to at least one predetermined algorithm to generate resultant image data responsive to at least one of a plurality of physical characteristics of the object.
    • 提供了一种用于测量物体的物理特性的系统和方法,其中所述方法包括将物体放置在检查系统的传感器光路内,使源准直光束沿着源光路传播至少部分地 入射在反射装置上,反射源平行光束以产生沿着传感器光路传播的反射准直光束,使得反射的准直光束至少部分地入射到物体上以产生剪影,其中至少一个 轮廓的一部分入射到感测装置上,以响应于轮廓产生初始图像数据,并响应于至少一个预定算法处理初始图像数据,以响应于所述图像数据的多个物理特性中的至少一个而产生合成图像数据 目的。
    • 7. 发明申请
    • Inspection system and a method for implementing same
    • 检验系统及其实施方法
    • US20090179162A1
    • 2009-07-16
    • US12383141
    • 2009-03-20
    • Stanley P. Johnson
    • Stanley P. Johnson
    • G01N21/86
    • G01B11/2425G01B11/2433G01N21/89
    • A system and method for measuring the physical characteristics of a component where the system includes a light source, a sensing device, a reflecting device, and a retention mount. The method includes associating a component with the system such that the component is positioned within the retention mount and operating the system to cause the light source to emit a collimated light beam along a source optical path, where the collimated light beam is reflected to cause a reflected collimated light beam to propagate along a sensor optical path to be incident upon the component to produce a component silhouette where the sensing device generates data responsive to the silhouette. The image data is processed to generate resultant data responsive to the component, wherein the resultant data is further responsive to at least one of a smoothing algorithm, a functional size algorithm and a centering algorithm.
    • 一种用于测量其中系统包括光源,感测装置,反射装置和固定支架的部件的物理特性的系统和方法。 该方法包括将部件与系统相关联,使得部件位于保持安装件内并操作系统以使光源沿着源光路发射准直光束,其中准直光束被反射以引起 反射的准直光束沿着传感器光路传播以入射到部件上以产生组件轮廓,其中感测装置响应于轮廓产生数据。 处理图像数据以响应于该组件生成合成数据,其中所得到的数据进一步响应平滑算法,功能大小算法和居中算法中的至少一个。
    • 8. 发明申请
    • Product inspection system and a method for implementing same
    • 产品检验制度及其实施方法
    • US20100259764A1
    • 2010-10-14
    • US12661733
    • 2010-03-23
    • Stanley P. JohnsonLawrence J. Zagorsky
    • Stanley P. JohnsonLawrence J. Zagorsky
    • G01B11/24G01N21/00
    • G01N21/952G01B11/2425G01B11/2433
    • An inspection system and a method for measuring physical characteristics of a component using the inspection system is provided, wherein the inspection system includes a light source, a sensing device and a retention mount, at least one of which is movably associated with the inspection system. The method includes associating a component with the inspection system such that the component is disposed within the retention mount, operating the inspection system to cause the light source to emit a collimated light beam propagating along a source optical path such that the collimated light beam is incident upon the component to produce a component silhouette which is incident upon the sensing device, generating image data responsive to the component silhouette and processing the image data to generate resultant data including at least one of a plurality of physical characteristics of the component.
    • 提供了一种用于使用检查系统测量部件的物理特性的检查系统和方法,其中所述检查系统包括光源,感测装置和保持支架,其中至少一个可移动地与所述检查系统相关联。 该方法包括将组件与检查系统相关联,使得部件设置在保持架内,操作检查系统以使光源发射沿着源光路传播的准直光束,使得准直光束入射 在组件上产生入射到感测装置上的组件轮廓,响应于组件轮廓生成图像数据并处理图像数据以生成包括组件的多个物理特性中的至少一个的结果数据。
    • 9. 发明授权
    • Component positioning device
    • 元件定位装置
    • US07128298B1
    • 2006-10-31
    • US10843755
    • 2004-05-12
    • Stanley P. Johnson
    • Stanley P. Johnson
    • F16M11/00
    • G01N21/95G01B5/0004G01B11/2425G01N21/952Y10T29/49778Y10T29/4978Y10T29/49895Y10T29/49947Y10T29/49963Y10T29/49998
    • A component positioning device including a first support device, the first support device having a first upper structure and a first lower structure, the first upper structure including a first inner wall disposed at a first predetermined angle and defining a first component structure, and the first lower structure defining a first arbor cavity and a first fastening cavity, the first fastening cavity being communicated with the first arbor cavity. A second support device is provided having a second upper structure and a second lower structure, the second upper structure including a second inner wall disposed at a second predetermined angle and defining a second component structure, and the second lower structure defining a second arbor cavity and including at least one protruding member and an adapter device having an adapter wall, wherein the adapter wall defines an adapter cavity, an adapter fastening cavity and an adapter notch cavity.
    • 一种部件定位装置,包括第一支撑装置,所述第一支撑装置具有第一上部结构和第一下部结构,所述第一上部结构包括以第一预定角度设置并限定第一部件结构的第一内壁, 下结构限定第一心轴腔和第一紧固腔,所述第一紧固腔与所述第一心轴腔连通。 提供具有第二上部结构和第二下部结构的第二支撑装置,所述第二上部结构包括以第二预定角度设置并限定第二部件结构的第二内壁,并且所述第二下部结构限定第二心轴腔, 包括至少一个突出构件和具有适配器壁的适配器装置,其中适配器壁限定适配器空腔,适配器紧固腔和适配器凹口腔。
    • 10. 发明授权
    • Methods for measuring at least one physical characteristic of a component
    • 用于测量组分的至少一种物理特性的方法
    • US08035094B2
    • 2011-10-11
    • US12383141
    • 2009-03-20
    • Stanley P. JohnsonLawrence J. Zagorsky
    • Stanley P. JohnsonLawrence J. Zagorsky
    • G01N21/86G01B11/24
    • G01B11/2425G01B11/2433G01N21/89
    • A method for measuring the physical characteristics of a component includes associating a component with the system such that the component is positioned within the retention mount and operating the system to cause the light source to emit a collimated light beam along a source optical path, where the collimated light beam is reflected to cause a reflected collimated light beam to propagate along a sensor optical path to be incident upon the component to produce a component silhouette where the sensing device generates data responsive to the silhouette. The image data is processed to generate resultant data responsive to the component, wherein the resultant data is further responsive to at least one of a smoothing algorithm, a functional size algorithm and a centering algorithm.
    • 用于测量部件的物理特性的方法包括将部件与系统相关联,使得部件位于保持安装件内并操作系统以使光源沿着源光路发射准直光束,其中 反射准直光束以使反射的准直光束沿着传感器光路传播以入射到部件上以产生部件轮廓,其中感测装置响应于轮廓产生数据。 处理图像数据以响应于该组件生成合成数据,其中所得到的数据进一步响应平滑算法,功能大小算法和居中算法中的至少一个。