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    • 7. 发明授权
    • Array of micromirrors with non-fixed underlying structures
    • 具有非固定底层结构的微镜阵列
    • US07605964B2
    • 2009-10-20
    • US11693698
    • 2007-03-29
    • Dong Woo GimJin Young SohnGyoung Il ChoCheong Soo Seo
    • Dong Woo GimJin Young SohnGyoung Il ChoCheong Soo Seo
    • G02B26/08
    • G02B26/0841G02B26/06
    • The present invention discloses an array of micromirrors with non-fixed underlying structures which can be oriented to have principal rotational axis with no structural and mechanical interference and with no electrical conflict. The micromirror array in the present invention can reproduce various surfaces including spherical, aspherical (e.g. parabolic, hyperbolic, elliptical, etc.), anamorphic, other than rotational symmetric profiles. With the newly introduced non-fixed underlying structure, the present invention makes possible for a micromirror array to generate a desired optical surface profile by simple motion controls and to improve structural stability, simplicity, flexibility, and efficiency in motion and motion control.
    • 本发明公开了一种具有非固定底层结构的微镜阵列,其可以被定向成具有不具有结构和机械干涉并且没有电冲突的主旋转轴线。 本发明中的微镜阵列可以再现除了旋转对称轮廓之外的包括球形,非球面(例如抛物线,双曲线,椭圆形等),变形的各种表面。 利用新引入的非固定底层结构,本发明使得微镜阵列能够通过简单的运动控制产生期望的光学表面轮廓并且提高运动和运动控制的结构稳定性,简单性,灵活性和效率。
    • 8. 发明授权
    • Micromirror array lens with self-tilted micromirrors
    • 具有自倾斜微镜的微镜阵列透镜
    • US08622557B2
    • 2014-01-07
    • US12124111
    • 2008-05-20
    • Gyoung Il ChoJin Young SohnHye Young KimCheong Soo Seo
    • Gyoung Il ChoJin Young SohnHye Young KimCheong Soo Seo
    • G02B5/08G02B7/182
    • G02B26/0833
    • A Micromirror Array Lens with self-tilted micromirrors comprising a plurality of self-tilted micromirrors and configured to form a designed optical surface profile by self-tilted micromirrors. Each self-tilted micromirror comprises a substrate, at least one stiction plate configured to be attracted to the substrate by adhesion force, a micromirror plate having a reflective surface, coupled to the stiction plate elastically and configured to have a required motion when the stiction plate is attracted to the substrate, and at least one pivot structure disposed between the substrate and the micromirror plate and configured to provide a tilting point or area for the motion of the micromirror plate. The designed optical surface profile determines the required motion of the micromirror plate and a surface profile shape memory is built in the structure of the micro-mechanical elements of the self-tilted micromirrors so that each micromirror plate has the required motion.
    • 一种具有自倾斜微镜的微镜阵列透镜,包括多个自倾斜微镜,并且被配置为通过自倾斜微镜形成设计的光学表面轮廓。 每个自倾斜微反射镜包括基底,至少一个固定板被配置成通过粘附力被吸引到基底上,具有反射表面的微镜板,弹性地耦合到该静摩擦板,并被构造成当静电板 被吸引到基板,以及设置在基板和微反射板之间的至少一个枢轴结构,并且构造成提供用于微镜板的运动的倾斜点或区域。 设计的光学表面轮廓确定微镜板的所需运动,并且表面轮廓形状存储器内置在自倾斜微镜的微机械元件的结构中,使得每个微镜板具有所需的运动。
    • 10. 发明授权
    • Optical tracking device using micromirror array lenses
    • 使用微镜阵列透镜的光学跟踪装置
    • US07463342B2
    • 2008-12-09
    • US11743656
    • 2007-05-02
    • Hye Young KimJin Young SohnGyoung Il ChoCheong Soo Seo
    • Hye Young KimJin Young SohnGyoung Il ChoCheong Soo Seo
    • G01P3/36
    • G01C3/08G01S3/7864G01S11/12H04N5/2254H04N5/232
    • The optical tracking device of this invention comprises a lens unit, a control circuitry communicatively coupled to the lens unit, and an imaging unit optically coupled to the lens unit. The lens unit comprises at least one Micromirror Array Lens, wherein the Micromirror Array Lens comprises a plurality of micromirrors and is configured to have a plurality of optical surface profiles by controlling rotations or translations of the micromirrors. The optical tracking device of the invention further comprises an image processing unit, communicatively coupled to the imaging unit, configured to process the image information from the imaging unit and generates a control signal for the control circuit to control the lens unit. The optical tracking device of the present invention provides capability of tracking a target moving in a high speed, providing three-dimensional image information of the object, and compensating the aberration of the optical tracking device.
    • 本发明的光学跟踪装置包括透镜单元,通信地耦合到透镜单元的控制电路以及与透镜单元光耦合的成像单元。 透镜单元包括至少一个微镜阵列透镜,其中微镜阵列透镜包括多个微镜,并且通过控制微镜的旋转或平移来配置为具有多个光学表面轮廓。 本发明的光学跟踪装置还包括图像处理单元,通信地耦合到成像单元,被配置为处理来自成像单元的图像信息,并且产生用于控制电路的控制信号以控制透镜单元。 本发明的光学跟踪装置提供跟踪高速移动的目标的能力,提供对象的三维图像信息,并补偿光学跟踪装置的像差。