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    • 1. 发明申请
    • Uniquely identifiable inking instruments
    • 独特识别的上墨工具
    • US20070188445A1
    • 2007-08-16
    • US11351295
    • 2006-02-10
    • Dana SilversteinDuncan DuncanManolito AdanNigel KeamRobert Brigham
    • Dana SilversteinDuncan DuncanManolito AdanNigel KeamRobert Brigham
    • G09G5/00
    • G06F3/0425G06F3/03542G06F3/03545
    • A method of interacting with a computing device via one or more inking instruments to generate digital ink may include the steps of emitting light from a light emitting device to an inking instrument, receiving first user inputs from the inking instrument, and identifying the inking instrument based on sensed light reflected from the inking instrument. Another method may include the steps of simultaneously detecting first user inputs from a first inking instrument and second user inputs from a second inking instrument by receiving first light emitted from the first inking instrument and second light emitted from a second inking instrument that each have one or more identifying characteristics, identifying the inking instrument based on their identifying characteristics, and generating corresponding digital ink. These methods may be implemented via computer-executable instructions and may be used with a horizontally-placed display, tablet-based laptop computers, and passive or active digital inking instruments.
    • 一种通过一个或多个上墨设备与计算设备进行交互以产生数字墨水的方法可以包括以下步骤:将光从发光设备发射到着墨仪器,从上墨仪器接收第一用户输入,以及基于上墨仪器识别 在从着墨仪反射的感测光上。 另一种方法可以包括以下步骤:通过接收从第一着墨仪器发射的第一光和从第二上墨仪器发射的第二光,同时从第一着墨仪器检测第一用户输入和来自第二上墨仪器的第二用户输入, 更多的识别特征,基于其识别特征识别着墨仪器,并产生相应的数字墨水。 这些方法可以通过计算机可执行指令来实现,并且可以与水平放置的显示器,基于平板电脑的膝上型计算机以及被动或主动数字上墨仪一起使用。
    • 2. 发明申请
    • UNIQUELY IDENTIFIABLE INKING INSTRUMENTS
    • 独特的识别INKING INSTRUMENTS
    • US20070188478A1
    • 2007-08-16
    • US11382812
    • 2006-05-11
    • Dana SilversteinDuncanManolito AdanNigel KeamRobert Brigham
    • Dana SilversteinDuncanManolito AdanNigel KeamRobert Brigham
    • G06F3/033
    • G06F3/03542G06F3/03545G06F3/042
    • A method of interacting with a computing device via one or more inking instruments to generate digital ink may include the steps of emitting light from a light emitting device to an inking instrument, receiving first user inputs from the inking instrument, and identifying the inking instrument based on sensed light reflected from the inking instrument. Another method may include the steps of simultaneously detecting first user inputs from a first inking instrument and second user inputs from a second inking instrument by receiving first light emitted from the first inking instrument and second light emitted from a second inking instrument that each have one or more identifying characteristics, identifying the inking instrument based on their identifying characteristics, and generating corresponding digital ink. These methods may be implemented via computer-executable instructions and may be used with a horizontally-placed display, tablet-based laptop computers, and passive or active digital inking instruments.
    • 一种通过一个或多个上墨设备与计算设备进行交互以产生数字墨水的方法可以包括以下步骤:将光从发光设备发射到着墨仪器,从上墨仪器接收第一用户输入,以及基于上墨仪器识别 在从着墨仪反射的感测光上。 另一种方法可以包括以下步骤:通过接收从第一着墨仪器发射的第一光和从第二上墨仪器发射的第二光,同时从第一着墨仪器检测第一用户输入和来自第二上墨仪器的第二用户输入, 更多的识别特征,基于其识别特征识别着墨仪器,并产生相应的数字墨水。 这些方法可以通过计算机可执行指令来实现,并且可以与水平放置的显示器,基于平板电脑的膝上型计算机以及被动或主动数字上墨仪一起使用。
    • 5. 发明授权
    • Cache memory architecture for microcomputer speed-up board
    • 微机加速板高速缓存存储架构
    • US4794523A
    • 1988-12-27
    • US782664
    • 1985-09-30
    • Manolito AdanSteven MeadowsRobert McCaslin
    • Manolito AdanSteven MeadowsRobert McCaslin
    • G06F12/08G06F9/28
    • G06F12/0802
    • A method and apparatus for enhancing the speed of operation of a computer consists of providing a cache memory which is faster than the computer's main memory, disabling the computer's main microprocessor, and replacing it with a microprocessor with a faster clock cycle time. A portion of the program stored in the main memory is stored in the cache memory. The addresses of the portion of the main memory stored in the cache memory are noted in a tag RAM. Upon each addressing sequence during the execution of a program, the tag RAM is examined to determine if the addressed located is stored in the cache memory. If the stored location is identified in the tag RAM, it is retrieved from the cache memory at high-speed. Otherwise, the data in the address location is retrieved from main memory at a slower speed and written into the cache memory so that subsequent accesses may be made at high-speed.
    • 一种用于提高计算机的操作速度的方法和装置包括提供比计算机的主存储器更快的高速缓冲存储器,禁用计算机的主微处理器,并用更快的时钟周期时间的微处理器来代替它。 存储在主存储器中的程序的一部分被存储在高速缓冲存储器中。 存储在高速缓冲存储器中的主存储器的部分的地址在标签RAM中记录。 在执行程序期间的每个寻址序列时,检查标签RAM以确定寻址位置是否存储在高速缓冲存储器中。 如果在标签RAM中识别存储的位置,则从高速缓冲存储器中高速检索。 否则,以较慢的速度从主存储器中检索地址位置中的数据,并写入高速缓冲存储器,以便可以高速进行后续访问。
    • 6. 发明申请
    • USE OF SEPARATION ELEMENTS WITH REAR PROJECTION SCREEN
    • 分离元件与后期投影屏幕的使用
    • US20090309838A1
    • 2009-12-17
    • US12137518
    • 2008-06-11
    • Manolito AdanBernard SchultzPrafulla Masalkar
    • Manolito AdanBernard SchultzPrafulla Masalkar
    • G06F3/041G01J5/00H01J9/00
    • G06F3/0425G01J1/0266G01J5/089
    • A rear projection display devices includes a diffusion layer having an interface surface configured to diffuse visible light, and a visible light projection subsystem configured to project a display image at the interface surface using the visible light to be diffused by the diffusion layer. The rear projection display devices may also include a light transmissive base configured to provide a support for the interface surface, and an infrared touch-sensing subsystem including an infrared light source configured to project infrared light at the base, and an infrared light detector configured to detect infrared light reflecting from the interface surface. Separation elements may be disposed between the diffusion layer and the base so as to maintain a separation between the diffusion layer and the base.
    • 背投影显示装置包括具有被配置为漫射可见光的界面的扩散层,以及可视光投影子系统,被配置为使用可扩散层扩散的可见光在界面处投影显示图像。 背投影显示装置还可以包括被配置为为接口表面提供支撑的透光基座,以及红外触摸感测子系统,其包括配置为在基座处投射红外光的红外光源,以及红外光检测器,被配置为 检测从界面反射的红外光。 分离元件可以设置在扩散层和基底之间,以便保持扩散层和基底之间的间隔。