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    • 22. 发明授权
    • Adaptive autostereoscopic display system
    • 自适应自动立体显示系统
    • US06752498B2
    • 2004-06-22
    • US09854699
    • 2001-05-14
    • Edward CovannonJohn A. AgostinelliJoshua M. CobbMichael E. MillerDavid Kessler
    • Edward CovannonJohn A. AgostinelliJoshua M. CobbMichael E. MillerDavid Kessler
    • A61B302
    • G06F3/011G02B27/225H04N13/286H04N13/346H04N13/363H04N13/373H04N13/376H04N13/38H04N13/393H04N13/398
    • An autostereoscopic image display apparatus (10) that adapts to sensed feedback data about an observer (12) in order to conform its operation to adapt to the position and intraocular dimensions of the observer. The apparatus (10) uses ball lens projection optics to provide wide field-of-view pupil imaging, providing separate left- and right-eye images to the left and right eye pupils (14l,14r) of the observer (12), respectively. The apparatus (10) compensates for positional variables such as variable interocular distance and variable observer distance from projection optics. At least one observer feedback sensor (52) is disposed to provide feedback data about the observer (12). The feedback data can be used by a control logic processor (50) that, based on the data, adjusts left- and right viewing pupil forming apparatus (36l,36r). The control logic processor (50), based on sensed feedback data, may also vary image content or provide other stimuli such as smell, movement, and sound.
    • 一种自动立体图像显示装置(10),其适应于关于观察者(12)的感测反馈数据,以便使其符合其操作以适应观察者的位置和眼内尺寸。 装置(10)使用球透镜投影光学器件来提供宽视野光瞳成像,分别向观察者(12)的左眼瞳孔和右眼瞳孔(14l,14r)提供单独的左眼图像和右眼图像 。 装置(10)补偿诸如可变的眼间距离和距离投影光学器件的可变观察距离的位置变量。 设置至少一个观察者反馈传感器(52)以提供关于观察者(12)的反馈数据。 反馈数据可以由控制逻辑处理器(50)使用,该控制逻辑处理器(50)基于该数据来调整左和右视野光瞳形成装置(36l,36r)。 基于感测到的反馈数据,控制逻辑处理器(50)还可以改变图像内容或提供诸如气味,运动和声音的其它刺激。
    • 23. 发明申请
    • SKIN TEST IMAGE ANALYSIS APPARATUSES AND METHODS THEREOF
    • 皮肤试验图像分析装置及其方法
    • US20120253224A1
    • 2012-10-04
    • US13272966
    • 2011-10-13
    • Jose MirJohn SpoonhowerJohn A. AgostinelliJohn Squilla
    • Jose MirJohn SpoonhowerJohn A. AgostinelliJohn Squilla
    • A61B5/00
    • A61B5/441A61B5/0053A61B5/0077A61B5/442
    • An apparatus and method for making an apparatus for skin testing includes a housing with an opening which defines a field of view of a skin testing region, an image sensing apparatus, an illumination apparatus, a binding apparatus, and an image processing controller. The image sensing apparatus is positioned with respect to the housing to capture images in the field of view provided by the opening. The illumination apparatus is positioned within the housing to direct light towards a portion of the field of view provided by the opening. The binding apparatus detachably secures the housing over the skin testing region and maintains a fixed distance between the image sensing apparatus and the skin testing region. The controller is configured to analyze test samples sites in each of the captured images from the image sensing apparatus and provide a skin test result for each of the test sample sites.
    • 用于制造皮肤测试装置的装置和方法包括具有限定皮肤测试区域的视野的开口的壳体,图像感测装置,照明装置,装订装置和图像处理控制器。 图像感测装置相对于壳体定位以捕获由开口提供的视野中的图像。 照明装置位于壳体内以将光引导到由开口提供的视场的一部分。 装订装置将外壳可拆卸地固定在皮肤测试区域上,并且在图像感测装置和皮肤测试区域之间保持固定的距离。 控制器被配置为分析来自图像感测装置的每个捕获图像中的测试样本位置,并为每个测试样本位置提供皮肤测试结果。
    • 24. 发明申请
    • THIN FILM ELECTRONIC DEVICE FABRICATION PROCESS
    • 薄膜电子器件制造工艺
    • US20120076929A1
    • 2012-03-29
    • US13309621
    • 2011-12-02
    • Elena A. FedorovskayaJohn R. FysonJohn A. AgostinelliRonald S. Cok
    • Elena A. FedorovskayaJohn R. FysonJohn A. AgostinelliRonald S. Cok
    • B05D5/06
    • C23C16/45529C23C16/45551H01L27/322H01L51/5253H01L51/5262H01L51/56
    • A thin film electronic device fabrication process includes providing an electronic device on a substrate, a first reactant gaseous material, a second reactant gaseous material, an inert gaseous material; and a delivery head through which the reactant gaseous materials and the inert gaseous material are simultaneously directed toward the electronic device and the substrate. One or more of the reactant gaseous materials and the inert gaseous material flows through the delivery head. The flow of the one or more of the reactant gaseous materials and the inert gaseous material generates a pressure to create a gas fluid bearing that maintains a substantially uniform distance between the delivery head and the substrate. Relative motion between the delivery head and the substrate causes the second reactant gaseous material to react with at least a portion of the electronic device and the substrate that has been treated with the first reactant gaseous material.
    • 薄膜电子器件制造工艺包括在基底上提供电子器件,第一反应物气态材料,第二反应物气态材料,惰性气体材料; 以及输送头,反应物气体材料和惰性气体材料通过该输送头同时朝向电子装置和基板。 一种或多种反应物气态物质和惰性气体物质流过输送头。 一种或多种反应物气态物质和惰性气体物质的流动产生压力以产生在输送头和基底之间保持基本均匀距离的气体流体轴承。 输送头和基底之间的相对运动导致第二反应物气态物质与已经用第一反应物气态物质处理的电子器件和基底的至少一部分反应。
    • 25. 发明申请
    • PROCESS FOR FORMING THIN FILM ENCAPSULATION LAYERS
    • 形成薄膜包封层的方法
    • US20120070942A1
    • 2012-03-22
    • US13303513
    • 2011-11-23
    • Elena A. FedorovskayaMichael L. BorosonDavid H. LevyJohn A. Agostinelli
    • Elena A. FedorovskayaMichael L. BorosonDavid H. LevyJohn A. Agostinelli
    • H01L21/56
    • B05D5/00C23C16/403C23C16/405C23C16/45551C23C16/45574H01L51/5253
    • A thin film environmental barrier encapsulation process includes providing an electronic device on a substrate, a first reactant gaseous material, a second reactant gaseous material, an inert gaseous material; and a delivery head through which the reactant gaseous materials and the inert gaseous material are simultaneously directed toward the electronic device and the substrate. One or more of the reactant gaseous materials and the inert gaseous material flows through the delivery head. The flow of the one or more of the reactant gaseous materials and the inert gaseous material generates a pressure to create a gas fluid bearing that maintains a substantially uniform distance between the delivery head and the substrate. Relative motion between the delivery head and the substrate causes the second reactant gaseous material to react with at least a portion of the electronic device and the substrate that has been treated with the first reactant gaseous material.
    • 薄膜环境屏障封装方法包括在基底上提供电子器件,第一反应物气态材料,第二反应物气态物质,惰性气态物质; 以及输送头,反应物气体材料和惰性气体材料通过该输送头同时朝向电子装置和基板。 一种或多种反应物气态物质和惰性气体物质流过输送头。 一种或多种反应物气态物质和惰性气体物质的流动产生压力以产生在输送头和基底之间保持基本均匀距离的气体流体轴承。 输送头和基底之间的相对运动导致第二反应物气态物质与已经用第一反应物气态物质处理的电子器件和基底的至少一部分反应。
    • 26. 发明授权
    • Display apparatus using bilinear electromechanical modulator
    • 使用双线性机电调制器的显示装置
    • US07909474B2
    • 2011-03-22
    • US11950488
    • 2007-12-05
    • John A. AgostinelliMarek W. KowarzMichael A. Marcus
    • John A. AgostinelliMarek W. KowarzMichael A. Marcus
    • G03B21/26
    • H04N9/3164G03B21/2066G03B21/208G03B33/12H04N9/3132
    • A digital projection apparatus has a first light modulation subsystem with a first light source producing linear illumination of a first spectral color and a second light source producing linear illumination of a second spectral color. A first light modulator chip (110a) has at least two independently addressable linear arrays of light modulating devices. A first spatial filter (108) blocks reflected light and transmits diffracted light along a first optical path. A second light modulation subsystem has at least a third light source producing linear illumination of a third spectral color. A second light modulator chip has at least one independently addressable linear array of light modulating devices. A second spatial filter blocks reflected light and transmits diffracted light along a second optical path. A color combining element directs modulated light onto a common optical path. Projection optics direct modulated light toward a scanning element (122) for projection toward a display surface (124).
    • 数字投影设备具有第一光调制子系统,其具有产生第一光谱颜色的线性照明的第一光源和产生第二光谱颜色的线性照明的第二光源。 第一光调制器芯片(110a)具有至少两个独立可寻址的光调制器件的线性阵列。 第一空间滤波器(108)阻挡反射光并沿着第一光路传输衍射光。 第二光调制子系统具有产生第三光谱颜色的线性照明的至少第三光源。 第二光调制器芯片具有至少一个独立可寻址的光调制器件的线性阵列。 第二空间滤波器阻挡反射光并且沿着第二光路传输衍射光。 彩色组合元件将调制光引导到公共光路上。 投影光学器件将调制光朝向扫描元件(122)直接调制以朝向显示表面(124)突出。
    • 27. 发明申请
    • DUAL-VIEW STEREOSCOPIC DISPLAY USING LINEAR MODULATOR ARRAYS
    • 使用线性调制器阵列的双视图立体显示
    • US20100177171A1
    • 2010-07-15
    • US12351190
    • 2009-01-09
    • Michael A. MarcusJohn A. Agostinelli
    • Michael A. MarcusJohn A. Agostinelli
    • H04N13/04
    • G02B27/2264H04N13/341H04N2013/403
    • A method for displaying first and second stereoscopic images to first and second viewers provides the first viewer with a first decoding device having a first viewer differentiating element for receiving the first stereoscopic image and further having a first left- and right-eye differentiating elements for separating left- and right-eye images. The second viewer is provided with a second decoding device having a second viewer differentiating element for receiving the second stereoscopic image and further having a second left- and right-eye differentiating element. The first stereoscopic image is displayed to the first viewer by forming a first left-eye image and forming a first right-eye image, each over substantially half of the refresh period. The second stereoscopic image is displayed to the second viewer by forming a second left-eye image and forming a second right-eye image, each over substantially half of the refresh period.
    • 用于向第一和第二观看者显示第一和第二立体图像的方法为第一观看者提供第一解码装置,该第一解码装置具有用于接收第一立体图像的第一观察者分化元件,并且还具有用于分离的第一左眼和右眼微分元素 左眼和右眼图像。 第二观看者具有第二解码装置,其具有用于接收第二立体图像的第二观察者微分元件,并且还具有第二左眼和右眼的微分元素。 第一立体图像通过形成第一左眼图像并形成第一右眼图像而显示给第一观看者,每个图像大约是刷新周期的一半。 第二立体图像通过形成第二左眼图像并形成第二右眼图像显示给第二观看者,每个图像大约是刷新周期的一半。
    • 30. 发明申请
    • DISPLAY APPARATUS USING BILINEAR ELECTROMECHANICAL MODULATOR
    • 显示设备使用双轨电动调制器
    • US20090147220A1
    • 2009-06-11
    • US11950488
    • 2007-12-05
    • John A. AgostinelliMarek W. KowarzMichael A. Marcus
    • John A. AgostinelliMarek W. KowarzMichael A. Marcus
    • G03B21/14
    • H04N9/3164G03B21/2066G03B21/208G03B33/12H04N9/3132
    • A digital projection apparatus has a first light modulation subsystem with a first light source producing linear illumination of a first spectral color and a second light source producing linear illumination of a second spectral color. A first light modulator chip (110a) has at least two independently addressable linear arrays of light modulating devices. A first spatial filter (108) blocks reflected light and transmits diffracted light along a first optical path. A second light modulation subsystem has at least a third light source producing linear illumination of a third spectral color. A second light modulator chip has at least one independently addressable linear array of light modulating devices. A second spatial filter blocks reflected light and transmits diffracted light along a second optical path. A color combining element directs modulated light onto a common optical path. Projection optics direct modulated light toward a scanning element (122) for projection toward a display surface (124).
    • 数字投影设备具有第一光调制子系统,其具有产生第一光谱颜色的线性照明的第一光源和产生第二光谱颜色的线性照明的第二光源。 第一光调制器芯片(110a)具有至少两个独立可寻址的光调制器件的线性阵列。 第一空间滤波器(108)阻挡反射光并沿着第一光路传输衍射光。 第二光调制子系统具有产生第三光谱颜色的线性照明的至少第三光源。 第二光调制器芯片具有至少一个独立可寻址的光调制器件的线性阵列。 第二空间滤波器阻挡反射光并且沿着第二光路传输衍射光。 彩色组合元件将调制光引导到公共光路上。 投影光学器件将调制光朝向扫描元件(122)直接调制以朝向显示表面(124)突出。