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    • 1. 发明授权
    • Polarizing system for motion visual depth effects
    • 极化系统的运动视觉深度效果
    • US5886771A
    • 1999-03-23
    • US984542
    • 1997-12-03
    • Alan George Osgood
    • Alan George Osgood
    • G02B27/26G03B35/26H04N13/00G03B21/32
    • H04N13/0422G02B27/26G03B35/26H04N13/0431H04N13/0434H04N13/0459H04N13/0497H04N13/0055H04N13/0059H04N13/0203H04N13/0285H04N19/597
    • A system for creating the perception of visual depth in two dimensional single image displays. A polarizing projection filter 1c provides means to control the plane of polarization of projected imagery. The plane of polarization is changed by changing the orientation of the polarizing projection filter. An observer wears special viewing glasses 2 with polarizing filters when viewing imagery polarized by the polarizing projection filter. The plane of polarization of the polarizing viewing filter for the right eye 3 is oriented 30 degrees clockwise from horizontal. The plane of polarization of the polarizing viewing filter for the left eye 4 is oriented 30 degrees counterclockwise from horizontal. When the polarizing projection filter has an angular offset of approximately 45 degrees clockwise from horizontal the projected imagery appears approximately 20 times brighter to an observer's right eye than to the observer's left eye. Objects moving laterally 9 from right to left from the observer's perspective appear closer to the observer 10. Objects moving from left to right appear farther away from the observer. When the polarizing projection filter has an angular offset of approximately 45 degrees counterclockwise from horizontal the projected imagery appears approximately 20 times brighter to an observer's left eye than to the observer's right eye. Objects moving from right to left from the observer's perspective appear farther away from the observer. Objects moving from left to right appear closer to the observer. The imagery can be viewed in full color. The dead eye effect can be avoided by periodically changing the plane of polarization of the polarizing projection filter.
    • 一种用于在二维单图像显示中创建视觉深度感知的系统。 偏振投影滤光器1c提供控制投影图像的偏振面的装置。 通过改变偏振投影滤光片的取向来改变偏振面。 当观看由偏振投影滤光片偏振的图像时,观察者佩戴带有偏振滤光片的特殊观看眼镜2。 右眼3的偏振观察滤光器的偏振面从水平方向顺时针取向30度。 左眼4的偏振观察滤光器的偏振面从水平方向逆时针方向取向30度。 当偏振投影滤光片从水平方向顺时针旋转角度偏移大约为45度时,投影图像比观察者的左眼大约比观察者右眼亮出约20倍。 从观察者角度看,从左到右横向移动的物体9看起来更接近观察者10.从左向右移动的物体离观察者更远。 当偏振投影滤光片从水平方向逆时针旋转大约45度的角度偏移时,对于观察者的左眼而言,投影图像比观察者的左眼显得大约20倍。 从观察者角度从右向左移动的物体远离观察者。 从左到右移动的物体看起来更接近于观察者。 图像可以全彩色查看。 通过周期性地改变偏振投影滤光片的偏振面可以避免死眼效应。
    • 2. 发明申请
    • Cell phone arm mount
    • 手机臂安装
    • US20090061958A1
    • 2009-03-05
    • US11897653
    • 2007-08-30
    • Alan George Osgood
    • Alan George Osgood
    • H04M1/02
    • A45F5/00A45F2005/008A45F2200/0516H04B1/385H04B1/3877
    • An arm mounting bracket provides means for mounting cell phones, cordless phone, PDA's, Palm Pilots, iPods, GPS units, mini computers or similar devices directly to a user's arm so that the phone or PDA can be used directly as mounted on the user's arm. The apparatus comprises one or two sets of brackets 11 or 21 that are attached to the phone, Palm Pilot, Blackberry, PDA, GPS unit, mini computer or similar device. The brackets may be either integrated into the device body 21 or may be attached to existing devices 11. Single piece 41 or multiple piece 42 armbands are secured to the brackets and to the user's arm. This allows the user to mount the device directly to his/her arm 13. The brackets and arm bands are so designed that the user can use the device visual display and data entry area while the device is attached to the user's arm.
    • 手臂安装支架提供将手机,无绳电话,PDA,掌上电脑,iPod,GPS单元,迷你电脑或类似设备直接安装到用户手臂的手段,以便将手机或PDA直接用于安装在用户手臂上 。 该装置包括附接到电话,Palm Pilot,Blackberry,PDA,GPS单元,迷你计算机或类似装置的一组或两组支架11或21。 支架可以集成到装置本体21中或者可以附接到现有装置11.单件41或多件42臂臂固定到支架和使用者的手臂。 这允许用户将设备直接安装到他/她的手臂13.支架和手臂带设计成使得用户可以在装置附接到使用者手臂的同时使用装置的视觉显示和数据输入区域。
    • 3. 发明授权
    • Telescoping pivot hinge for computer display
    • 伸缩铰链用于计算机显示
    • US06233138B1
    • 2001-05-15
    • US09353902
    • 1999-07-16
    • Alan George Osgood
    • Alan George Osgood
    • H05K716
    • G06F1/1679G06F1/1616G06F1/1624G06F1/1681G06F2200/1614Y10S248/92
    • A telescoping pivot hinge for a notebook computer or similar device provides an apparatus for the angle of inclination, the vertical elevation, and the horizontal distance of the visual display 38 to be adjusted relative to the input device 28. A first embodiment provides apparatus for adjusting the angle of inclination and the vertical elevation of the visual display 38 relative to the input device 28. A second embodiment provides apparatus for adjusting the angle of inclination, the vertical elevation and the horizontal distance of the visual display 38 relative to the input device 28. Input male member rod sections 54 telescopically engage input female member tunnels 62 on the input housing lower side 23 to provide apparatus for adjusting the horizontal distance between the display housing 31 and the input housing 21. Input male member rod sections 74 telescopically engage input female member tunnels 82 on the display housing back side 33 to provide apparatus for adjusting the vertical elevation between the display housing 31 and the input housing 21. Input male member pivot sections 72 rotationally engage input pivot sections 52 to provide apparatus for adjusting the angle of inclination between the display housing 31 and the input housing 21.
    • 用于笔记本电脑或类似装置的伸缩枢转铰链提供了一种用于相对于输入装置28调节的可视显示器38的倾斜角度,垂直高度和水平距离的装置。第一实施例提供了一种用于调节 视觉显示器38相对于输入装置28的倾斜角和垂直高度。第二实施例提供了用于调节视觉显示器38相对于输入装置28的倾斜角度,垂直高度和水平距离的装置 输入阳构件杆部分54伸缩地接合在输入壳体下侧23上的输入阴构件通道62,以提供用于调节显示壳体31和输入壳体21之间的水平距离的装置。输入阳构件杆部分74可伸缩地接合输入母体 在显示器壳体后侧33上的构件通道82,以提供用于调整垂直的装置 显示外壳31和输入壳体21之间的校准高程。输入凸形构件枢转部分72旋转地接合输入枢转部分52,以提供用于调节显示壳体31和输入壳体21之间的倾斜角度的装置。
    • 5. 发明授权
    • Polarizing system for motion visual depth effects
    • 极化系统的运动视觉深度效果
    • US06198524B1
    • 2001-03-06
    • US09294123
    • 1999-04-19
    • Alan George Osgood
    • Alan George Osgood
    • G03B2132
    • G03B35/26G02B27/26H04N13/337H04N13/363
    • A system for creating the perception of visual depth in scenery comprising lateral movements. A polarizing projection filter 21 controls the plane of polarization of projected light. The plane of polarization is changed by changing the orientation of the polarizing projection filter. An observer wears special viewing glasses 22 with polarizing filters when viewing scenery illuminated by the polarizing projection filter. The plane of polarization of the polarizing viewing filter for the right eye 23 is rotated 45 degrees clockwise from horizontal. The plane of polarization of the polarizing viewing filter for the left eye 24 is rotated 45 degrees counterclockwise from horizontal. When the polarizing projection filter is rotated clockwise from horizontal the scenery appears brighter to an observer's right eye than to the observer's left eye. Objects moving laterally 42 from right to left from the observer's perspective appear closer to the observer 43. Objects moving from left to right appear farther away from the observer. When the polarizing projection filter is rotated counterclockwise from horizontal the scenery appears brighter to an observer's left eye than to the observer's right eye. Objects moving from right to left from the observer's perspective appear farther away from the observer. Objects moving from left to right appear closer to the observer. In the first and second embodiment of the invention, the scenery comprises polarized imagery projected on a viewing screen. In the third embodiment, the scenery comprises live scenes illuminated by polarized light. The scenery can be viewed in full color. The dead eye effect can be avoided by periodically changing the plane of polarization of the polarizing projection filter.
    • 一种用于在风景中创造视觉深度感知的系统,包括侧向运动。 偏振投影滤光器21控制投影光的偏振面。 通过改变偏振投影滤光片的取向来改变偏振面。 当观察由偏振投影滤光器照射的风景时,观察者佩戴带有偏振滤光器的特殊观察眼镜22。 右眼23的偏振式观察滤光器的偏振面从水平方向顺时针旋转45度。 用于左眼24的偏振观察滤光器的偏振平面从水平方向逆时针旋转45度。 当偏光投影过滤器从水平方向顺时针旋转时,观察者的右眼比观察者的左眼更亮。 从观察者的角度从右向左移动的物体42看起来更接近观察者43.从左向右移动的物体离观察者更远。 当偏光投影过滤器从水平方向逆时针旋转时,观察者的左眼比观察者的右眼看起来更为明亮。 从观察者角度从右向左移动的物体远离观察者。 从左到右移动的物体看起来更接近于观察者。 在本发明的第一和第二实施例中,风景包括投影在观看屏幕上的偏振影像。 在第三实施例中,风景包括由偏振光照亮的实况场景。 风景可以全彩色查看。 通过周期性地改变偏振投影滤光片的偏振面可以避免死眼效应。
    • 6. 发明授权
    • Color and motion based depth effects
    • 基于颜色和运动的深度效应
    • US6144440A
    • 2000-11-07
    • US270993
    • 1999-03-17
    • Alan George Osgood
    • Alan George Osgood
    • G03B21/32G03B35/26H04N13/00
    • H04N13/0431G03B21/32G03B35/26H04N13/0422
    • The current invention discloses methods for using laterally moving objects and laterally moving backgrounds in colored live scenes to create the perception of depth when scenes are viewed with viewer glasses having lens or filters of two different colors. The invention also discloses methods for using laterally moving objects and laterally moving backgrounds in colored imagery to create the perception of depth when the imagery is viewed with viewer glasses having lens or filters of two different colors. In a further aspect, the invention discloses colored imagery comprising laterally moving objects and laterally moving backgrounds to create the perception of depth when the imagery is viewed with viewer glasses having lens or filters of two different colors. In a still further aspect, the current invention relates to processes for operating a data processor with a visual display to generate colored imagery on the display with laterally moving objects and laterally moving backgrounds to create the perception of depth when the display is viewed with viewer glasses having colored lens or filters. The methods may be used for live scenes such as stage productions, motion picture films, video tapes and other types of media. The imagery can be displayed on movie screens, video displays (television, computer displays, video games, etc.) and other types of devices. The computer processes can be used with computer screen savers, video games, and other types of systems that generate imagery in real time.
    • 本发明公开了使用横向移动的物体和在彩色实况场景中横向移动的背景的方法,以便在具有具有两种不同颜色的透镜或滤镜的观看者眼镜观看场景时产生深度感。 本发明还公开了使用横向运动的物体和横向运动的彩色图像中的背景的方法,以便当具有两种不同颜色的透镜或滤镜的观看者眼镜观看图像时产生深度感。 在另一方面,本发明公开了彩色图像,其包括横向移动的物体和横向移动的背景,以便在观看具有两种不同颜色的透镜或滤光片的观看者眼镜观看图像时产生深度感。 在另一方面,本发明涉及用于使用视觉显示器操作数据处理器的过程,以在横向移动的对象和横向移动的背景上在显示器上产生彩色图像,以在观看者眼镜观看显示时产生深度感知 有彩色镜头或过滤器。 这些方法可以用于实况场景,例如舞台制作,电影胶片,录像带和其他类型的媒体。 图像可以显示在电影屏幕,视频显示器(电视机,电脑显示器,视频游戏机等)和其他类型的设备上。 计算机进程可以与计算机屏幕保护程序,视频游戏和其他类型的实时生成图像的系统一起使用。