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    • 53. 发明申请
    • METHOD AND APPARATUS FOR BYPASSING A PAYLOAD NODE
    • 用于旁路付费节点的方法和装置
    • WO2005107112A1
    • 2005-11-10
    • PCT/US2005/007963
    • 2005-03-10
    • MOTOROLA, INC.HALLIDAY, David, J.HILL, Charles, C.
    • HALLIDAY, David, J.HILL, Charles, C.
    • H04J3/04
    • H04L1/22
    • A multi-service platform system (100) includes a rear transition module (102) coupled to receive a DSX signal (105) and a payload node (104) coupled to the rear transition module via a backplane (110), where the payload node is coupled to process the DSX signal. A secondary payload node (114) is coupled to secondary rear transition module (112) via the backplane. A protection bus (150) couples the rear transition module to the secondary rear transition module outside the backplane, where failure of the payload node operates to shunt the DSX signal through the rear transition module to the secondary rear transition module. Failure of the payload node operates to switch processing of the DSX signal from the payload node to the secondary payload node, and the secondary rear transition module independently controls shunting of the DSX signal through the rear transition module to the secondary rear transition module.
    • 多业务平台系统(100)包括后转发模块(102),其经由背板(110)耦合到接收DSX信号(105)和有效负载节点(104),所述负载节点(104)与所述后转换模块耦合, 被耦合以处理DSX信号。 辅助有效载荷节点(114)经由背板耦合到次级后转换模块(112)。 保护总线(150)将后转换模块耦合到背板外部的次级后转换模块,其中有效载荷节点的故障操作以通过后过渡模块将DSX信号分流到次级后转换模块。 有效负载节点的故障操作以将DSX信号从有效载荷节点切换到辅助有效载荷节点,并且次级后部过渡模块独立地控制DSX信号通过后部过渡模块分流到次级后部过渡模块。
    • 55. 发明申请
    • DEVICES AND METHODS FOR PROVIDING DEPTH MAPPING WITH SCANNING LASER IMAGE PROJECTION
    • 扫描激光图像投影提供深度图的装置和方法
    • WO2018031268A1
    • 2018-02-15
    • PCT/US2017/044497
    • 2017-07-28
    • MICROVISION, INC.
    • VISWANATHAN, P. SelvanHONKANEN, JariWADE, Douglas R.XUE, Bin
    • H04N9/31G06T7/529
    • Devices are described herein for combining image projection with surface scanning. In general, the devices and methods utilize at least one source of laser light to generate a laser beam (102), and scanning mirror(s) (104) that reflect the laser beam into a pattern of scan lines. The source of light is controlled to selectively generate projected image pixels during a first portion of the pattern of scan lines, and to selectively generate depth mapping pulses during a second portion of the pattern of scan lines. The projected image pixels generate a projected image, while the depth mapping pulses are reflected from the surface, received, and used to generate a 3-dimensional point clouds that describe the measured surface depth at each point. Thus, during each scan of the pattern both a projected image and a surface depth map can be generated.
    • 这里描述了用于将图像投影与表面扫描组合的设备。 通常,这些装置和方法利用至少一个激光源来产生激光束(102),并扫描将激光束反射成扫描线图案的反射镜(104)。 控制光源以在扫描线图案的第一部分期间选择性地产生投影图像像素,并且在扫描线图案的第二部分期间选择性地产生深度映射脉冲。 投影图像像素生成投影图像,而深度映射脉冲从表面反射,接收并用于生成描述每个点测量的表面深度的3维点云。 因此,在模式的每次扫描期间,都可以生成投影图像和表面深度图。
    • 57. 发明申请
    • SCANNED BEAM PROJECTOR PULSED LASER CONTROL
    • 扫描光束投影机脉冲激光控制
    • WO2017062092A1
    • 2017-04-13
    • PCT/US2016/045389
    • 2016-08-03
    • MICROVISION, INC.
    • MCVITTIE, Patrick J.
    • H01S3/106G03B21/20
    • H04N9/3135H04N9/3194
    • Briefly, in accordance with one or more embodiments, a scanned beam projector comprises a laser diode (114) to emit a beam, a scanning engine (110) to scan the beam on a surface to project an image comprising virtual pixels on the surface, a digital-to-analog converter (DAC) coupled to the laser diode to cause the laser diode to emit the beam in response to a digital video signal provided to the DAC, and a pulsed pixel controller to provide the digital video signal to the DAC, the pulsed pixel controller to align the digital video signal provided to the DAC with the virtual pixels of the image, and to select an optimal waveform to be generated by the laser diode for each virtual pixel.
    • 简而言之,根据一个或多个实施例,扫描光束投影仪包括用于发射光束的激光二极管(114),扫描引擎(110),以扫描表面上的光束以投影包括表面上的虚拟像素的图像, 耦合到激光二极管的数模转换器(DAC),以响应于提供给DAC的数字视频信号使激光二极管发射光束;以及脉冲像素控制器,以将数字视频信号提供给DAC 脉冲像素控制器,将提供给DAC的数字视频信号与图像的虚拟像素对准,并为每个虚拟像素选择要由激光二极管生成的最佳波形。