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    • 22. 发明申请
    • VERSATILE REMOTE CONTROL DEVICE, SYTEM AND METHOD
    • 多个远程控制装置,SYTEM和方法
    • WO2012044972A1
    • 2012-04-05
    • PCT/US2011/054291
    • 2011-09-30
    • TRANSMITIVE, LLCMEYER, MichaelCOLEMAN, Zane
    • MEYER, MichaelCOLEMAN, Zane
    • H04N21/422G08C17/02G08C23/04
    • H04N21/42226G08C17/02G08C23/04H04N21/42206
    • A radio-frequency (RF) remote control (10) has a user interface and transmits an RF signal (11) which designates a device (14) to be controlled and a command for that device. The RF signal is received by an intermediary device (12). The intermediary device, in turn, generates and broadcasts a plurality of high-power IR signals (13A-13F). These signals may be received directly by a controlled device (14A) or may be received indirectly by a controlled device (14B, 14C) after one or more reflections from objects (16A, 16B) and/or room surfaces (18). Thus, reliable control of the devices (14) is obtained even in situations where merely transmitting a typical IR signal may not provide reliable control of the device (14).
    • 射频(RF)遥控器(10)具有用户接口并且发送指定要控制的设备(14)的RF信号(11)和用于该设备的命令。 RF信号由中间设备(12)接收。 中继装置又产生并广播多个高功率红外信号(13A-13F)。 这些信号可以由受控设备(14A)直接接收,或者可以在从物体(16A,16B)和/或室内表面(18)进行的一次或多次反射之后由受控设备(14B,14C)间接接收。 因此,即使在仅发送典型的IR信号的情况下也不能提供对设备(14)的可靠控制的情况下,可以可靠地控制设备(14)。
    • 26. 发明申请
    • METHOD OF PRODUCING AND DETECTING HIGH-CONTRAST IMAGES OF THE SURFACE TOPOGRAPHY OF OBJECTS AND A COMPACT SYSTEM FOR CARRYING OUT THE SAME
    • 生产和检测物体表面形貌的高对比度图像的方法及其实施的紧凑系统
    • WO1995022804A1
    • 1995-08-24
    • PCT/US1995002155
    • 1995-02-21
    • IMEDGE TECHNOLOGY, INC.METZ, Michael, H.FLATOW, CarlPHILLIPS, Nicholas, J.COLEMAN, Zane
    • IMEDGE TECHNOLOGY, INC.
    • G06K09/00
    • G06K9/00046A61B5/1172G06K7/10663G06K7/10702G06K7/1098G07C9/00158
    • A method and ultra-compact system has been developed for illuminating and detecting the surface topography of an object such as the finger (4) of an individual. The system (8) is capable of producing high-contrast images which can be electronically transmitted in real-time, or stored using electronic or photographic recording devices. Light traveling within a light transmitting substrate (2) is redirected by a slanted-fringed light diffractive grating preferably embodied within a volume hologram (3). The volume hologram (3), either of the reflection or transmission type, is attached to the light transmitting substrate (2), and functions to diffract light striking thereupon and illuminate an object having topographical surface structure. After being spatially and intensity modulated in accordance with topographical details of the illuminated object, the insulated light passes back through the light transmitting substrate (2) and the volume hologram (3), onto an image detection array, for subsequent analysis. Each of the disclosed embodiments has a compact geometry suitable for use in diverse object identification applications.
    • 已经开发了一种用于照明和检测诸如个人手指(4)的物体的表面形貌的方法和超紧凑系统。 系统(8)能够产生可以实时电子传输或使用电子或照相记录装置存储的高对比度图像。 在透光基板(2)内行进的光通过优选体现在体积全息图(3)内的倾斜光衍射光栅来重定向。 反射或透射型的体积全息图(3)附着在透光基板(2)上,用于衍射入射到其上的光并照射具有外形表面结构的物体。 在根据照明物体的形貌细节进行空间和强度调制后,绝缘光通过透光基板(2)和体积全息图(3)返回到图像检测阵列上,用于随后的分析。 所公开的实施例中的每一个具有适合用于不同对象识别应用的紧凑几何形状。