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    • 21. 发明申请
    • BEAM DEFLECTION USING PZT RESONANCE
    • 使用PZT谐振的光束偏移
    • US20090122391A1
    • 2009-05-14
    • US12247634
    • 2008-10-08
    • Tony MaryfieldMahyar Dadkhah
    • Tony MaryfieldMahyar Dadkhah
    • G02F1/295
    • G02B27/0031G02B26/101
    • Beam deflection devices and methods using piezoelectric tube resonance. A beam deflection device may include a laser that produces a beam of light. The beam of light may then be directed through a piezoelectric tube that includes a light guide and one or more piezoelectric elements. The device may also have an optical tip that extends axially from the end of the piezoelectric tube. The piezoelectric tube is coupled with the light source, such that the beam of light is conducted through the light guide and optionally the optical tip. A controller may be communicatively coupled with the light source and the piezoelectric tube. The controller may include instructions to activate the piezoelectric tube at a resonant frequency of the piezoelectric tube, the light guide, and/or the optical tip. The controller may include instructions to activate one or more of the piezoelectric elements at a different power level.
    • 梁偏转装置和使用压电管谐振的方法。 光束偏转装置可以包括产生光束的激光器。 然后可以将光束引导通过包括光导和一个或多个压电元件的压电管。 该装置还可以具有从压电管的端部轴向延伸的光学尖端。 压电管与光源耦合,使得光束通过光导和任选的光学尖端传导。 控制器可以与光源和压电管通信地耦合。 控制器可以包括以压电管,光导和/或光学尖端的谐振频率激活压电管的指令。 控制器可以包括以不同功率水平激活一个或多个压电元件的指令。
    • 25. 发明授权
    • Combinational PZT and MEMS beam steering
    • 组合PZT和MEMS光束转向
    • US07898729B2
    • 2011-03-01
    • US12142661
    • 2008-06-19
    • Tony MaryfieldMahyar Dadkhah
    • Tony MaryfieldMahyar Dadkhah
    • G02F1/33
    • G02B26/101G02B27/0031
    • Beam steering systems and methods are disclosed according to various embodiments. A beam steering system may include a laser that produces a beam of light. The beam of light may then be directed through a piezoelectric tube that includes a light guide and one or more piezoelectric elements. The piezoelectric tube is coupled with the light source, such that the beam of light is conducted through the light guide. The piezoelectric tube is coupled with a scanning optical element that includes an optical element and a steering device. A controller may be communicatively coupled with the light source, the piezoelectric tube and the scanning optical element. The controller may include instructions to dither the beam of light with the piezoelectric tube and/or instructions to steer the beam of light with the scanning optical element.
    • 根据各种实施例公开了梁转向系统和方法。 光束转向系统可以包括产生光束的激光器。 然后可以将光束引导通过包括光导和一个或多个压电元件的压电管。 压电管与光源耦合,使得光束通过导光体传导。 压电管与包括光学元件和转向装置的扫描光学元件耦合。 控制器可以与光源,压电管和扫描光学元件通信地耦合。 控制器可以包括使用压电管对光束进行抖动的指令和/或用扫描光学元件转向光束的指令。
    • 26. 发明授权
    • Beam deflection using PZT resonance
    • 使用PZT谐振的光束偏转
    • US07864408B2
    • 2011-01-04
    • US12247634
    • 2008-10-08
    • Tony MaryfieldMahyar Dadkhah
    • Tony MaryfieldMahyar Dadkhah
    • G02B26/08
    • G02B27/0031G02B26/101
    • Beam deflection devices and methods using piezoelectric tube resonance. A beam deflection device may include a laser that produces a beam of light. The beam of light may then be directed through a piezoelectric tube that includes a light guide and one or more piezoelectric elements. The device may also have an optical tip that extends axially from the end of the piezoelectric tube. The piezoelectric tube is coupled with the light source, such that the beam of light is conducted through the light guide and optionally the optical tip. A controller may be communicatively coupled with the light source and the piezoelectric tube. The controller may include instructions to activate the piezoelectric tube at a resonant frequency of the piezoelectric tube, the light guide, and/or the optical tip. The controller may include instructions to activate one or more of the piezoelectric elements at a different power level.
    • 梁偏转装置和使用压电管谐振的方法。 光束偏转装置可以包括产生光束的激光器。 然后可以将光束引导通过包括光导和一个或多个压电元件的压电管。 该装置还可以具有从压电管的端部轴向延伸的光学尖端。 压电管与光源耦合,使得光束通过光导和任选的光学尖端传导。 控制器可以与光源和压电管通信地耦合。 控制器可以包括以压电管,光导和/或光学尖端的谐振频率激活压电管的指令。 控制器可以包括以不同功率水平激活一个或多个压电元件的指令。
    • 27. 发明申请
    • FIELD TEST OF A RETRO-REFLECTOR AND DETECTOR ASSEMBLY
    • 逆变器和检测器总成的现场测试
    • US20090116025A1
    • 2009-05-07
    • US12266072
    • 2008-11-06
    • Tony MaryfieldMahyar Dadkhah
    • Tony MaryfieldMahyar Dadkhah
    • G01N21/55
    • G01S17/74G01S7/497
    • An opto-electronic assembly and testing method are disclosed. A housing of the opto-electronic assembly is coupled to a window to form an optical chamber. A retro-reflector can be coupled to the housing. A radiation source can be disposed on or about the retro-reflector. The radiation source can emit radiation into the optical chamber through at least a portion of the retro-reflector. A detector can sense a level of the radiation in the optical chamber. A controller coupled to the detector can signal an error condition when the level of the radiation exceeds a threshold associated with the presence of obscurants on the window. Optionally, the controller can be coupled to the radiation source for selectively emitting pulses of radiation into the optical chamber and detecting data bits corresponding to the pulses of radiation.
    • 公开了一种光电组件和测试方法。 光电组件的壳体联接到窗口以形成光学室。 后反射器可以联接到壳体。 辐射源可以设置在逆反射器上或周围。 辐射源可以通过后向反射器的至少一部分将光辐射到光学室中。 检测器可以感测光学室中的辐射水平。 耦合到检测器的控制器可以在辐射水平超过与窗口上存在晦暗度相关联的阈值时发出错误状态。 可选地,控制器可以耦合到辐射源,用于选择性地将辐射脉冲发射到光学室中并检测对应于辐射脉冲的数据位。