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    • 2. 发明授权
    • Sliding binocular body
    • 滑动双目体
    • US5694243A
    • 1997-12-02
    • US733121
    • 1996-10-16
    • John A. GelardiAnthony L. GelardiArthur P. BeckerBenjamin A. Wells
    • John A. GelardiAnthony L. GelardiArthur P. BeckerBenjamin A. Wells
    • G02B7/12G02B23/18G02B13/00G02B7/182G03B13/08
    • G02B23/18G02B7/12
    • A sliding binocular body has two optical assemblies which slide on an intermediate plate to adjust for intraocular distance and which slide closed. Two shells are joined to form one assembly. Front and back contour plates cover the assembly. A field and eye lens holder slides into the box through the back plate. An eye piece is attached to the lens holder. Inward horizontal surfaces have inward extending rails, which engage outward facing grooves on the intermediate plate. The two shells are secured together and joined to the intermediate plate before mirrors are slid and clamped into place. The objective lenses are placed in position, and the contour plates are sealed in place. The eye lens and field lens are inserted in the holders before the holders are inserted in the assemblies. The assemblies hold and clamp mirrors against fixed reference surfaces. Objective lens holders formed in the assemblies permit vertical or horizontal adjustment of an objective lens before its fixing. The intermediate plate has vertical projections on opposite ends which fit into recesses in the inward surfaces of the assemblies to limit outward travel and to hold the assemblies in closed position. The contour cover plates have projections to trap, or transparent extensions to cover, graphic skins or advertising paper boards or wraps.
    • 滑动双眼体具有两个光学组件,其在中间板上滑动以调节眼内距离并滑动关闭。 两个壳连接成一个组件。 前后轮廓板覆盖组件。 场和眼镜架通过背板滑入盒子。 眼镜片固定在镜架上。 向内的水平表面具有向内延伸的轨道,其与中间板上的面向外的凹槽接合。 两个壳体固定在一起,并在镜子滑动并夹紧就位之前接合到中间板。 将物镜放置就位,将轮廓板密封就位。 在把持器插入组件之前,将眼镜片和镜片镜头插入保持器中。 组件夹住并夹紧固定参考表面的镜子。 形成在组件中的物镜支架在其固定之前允许物镜垂直或水平调节。 中间板在相对端部具有垂直突起,该突起装配到组件的向内表面中的凹槽中以限制向外的行进并且将组件保持在关闭位置。 轮廓盖板具有捕捉的突出物,或透明的延伸部分以覆盖图形皮肤或广告纸板或包装纸。
    • 3. 发明授权
    • Low-cost, light-weight, compact binoculars
    • 低成本,重量轻,紧凑的双筒望远镜
    • US5633753A
    • 1997-05-27
    • US320920
    • 1994-10-11
    • Stephen D. FantoneArthur P. BeckerBenjamin A. Wells
    • Stephen D. FantoneArthur P. BeckerBenjamin A. Wells
    • G02B23/18G02B23/00
    • G02B23/18
    • Light weight, low-cost, compact binoculars intended to be sold at retail locations and popular attractions, such as stadiums, arenas, tourist destinations, and theme parks. The binoculars utilize high reflectance mirrors to fold light and lengthen distance between the objective lens and the field lens to correct the orientation of the image. The binoculars are very light because they are made with mirrors and lightweight, injection molded acrylic plastic lenses. They are pocket sized and compact, yet adjustable for individual interocular distance. The field view is rectangular in format and the IP adjustment is by way of sliding action between nested housings made possible by virtue of the fact that the inversion and reversion functions in its separate housings are in opposite order.
    • 打算在零售点和热门景点如体育场馆,竞技场,旅游目的地和主题公园出售的重量轻,成本低廉,紧凑的双筒望远镜。 双筒望远镜利用高反射镜来折叠光并延长物镜与场透镜之间的距离,以校正图像的方位。 双筒望远镜非常轻,因为它们由镜子和轻质的注射成型的丙烯酸塑料镜片制成。 它们是口袋大小和紧凑,可调节的个人眼间距离。 场视图是格式的矩形,并且IP调整是通过嵌套壳体之间的滑动动作,由于在其分离的壳体中的反转和反转功能是相反的顺序而实现的。
    • 4. 发明授权
    • Apparatus and method for updating a remote video display from a host
computer
    • 用于从主机更新远程视频显示的装置和方法
    • US5136695A
    • 1992-08-04
    • US435771
    • 1989-11-13
    • Nathan L. GoldshlagBenjamin A. Wells
    • Nathan L. GoldshlagBenjamin A. Wells
    • G06F3/14
    • G06F3/1415
    • Apparatus and a method are disclosed for reducing the transmission power required when a host computer displays video information on a remote video display. A video memory is located in close proximity to the display so that the display can be periodically refreshed in the normal manner from the local memory. Consequently, the host computer need only transmit information regarding the portions of the local memory that have changed since the last data transmission. Since the information for the entire local memory is not transmitted each time the memory must be updated and in particular, each time the display must be refreshed, the required data transmission rate between the host and the display is greatly reduced from the rate normally required with prior art apparatus and, consequently, the power consumption is reduced. In addition, a data and command multiplexing scheme is used to minimize the number of data communication lines which must be used between the transmitting and receiving devices, thus further reducing the power consumed during data transmission.
    • 公开了一种用于降低当主机在远程视频显示器上显示视频信息所需的传输功率的装置和方法。 视频存储器位于显示器附近,使得可以以正常方式从本地存储器周期性地刷新显示器。 因此,主计算机仅需要发送关于自上一次数据传输以来已经改变的局部存储器的部分的信息。 由于每当存储器必须更新时,不会传输整个本地存储器的信息,特别是每当显示器必须刷新时,主机和显示器之间所需的数据传输速率就会大大地降低 现有技术的设备,因此降低了功耗。 此外,使用数据和命令复用方案来最小化发送和接收设备之间必须使用的数据通信线路的数量,从而进一步减少在数据传输期间消耗的功率。
    • 9. 发明授权
    • Split lens video display system
    • 分体镜头视频显示系统
    • US5742421A
    • 1998-04-21
    • US609729
    • 1996-03-01
    • Benjamin A. WellsBruce JohnsonDonald Dilworth
    • Benjamin A. WellsBruce JohnsonDonald Dilworth
    • G02B26/10H04N5/74G02B26/08
    • H04N5/74G02B26/10Y10S359/90
    • A miniature visual display has an optical lens system with at least two separated lens elements positioned to admit a scanning mirror between them. The scanning mirror is driven with an oscillatory motion causing an image of a light source which is reflected in the mirror to appear to sweep across the field of view of an observer looking into the system. The light source is typically a linear array of light-emitting diodes, and the diodes are controlled to emit light flashes in synchronism with the scanning mirror oscillation frequency to generate a virtual raster image. The two lens elements are selected and arranged so that the magnification power of the system is split between the lenses. A viewer looking into the system sees a virtual image apparently positioned at a comfortable viewing distance which is in uniform focus over the entire viewing area.
    • 微型视觉显示器具有光学透镜系统,其中至少两个分离的透镜元件定位成在它们之间允许扫描镜。 扫描镜被振荡运动驱动,导致反射在反射镜中的光源的图像看起来扫过观察系统的观察者的视场。 光源通常是发光二极管的线性阵列,并且二极管被控制以与扫描镜振荡频率同步地发出闪光以产生虚拟光栅图像。 选择和布置两个透镜元件,使得系统的放大倍率在透镜之间分开。 看着系统的观察者看到一个虚拟的图像显然位于一个舒适的观看距离上,该视觉距离在整个观看区域均匀地聚焦。