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    • 21. 发明授权
    • Linear stage including an integrated actuator and associated methods
    • 线性平台包括一个集成的执行器和相关的方法
    • US07518268B2
    • 2009-04-14
    • US11285716
    • 2005-11-21
    • Dong H. Choi
    • Dong H. Choi
    • H02K41/00
    • G02B7/02G02B7/18
    • According to one example a linear translation stage is provided. The linear stage includes a first portion (e.g., a base portion) and a second portion (e.g., a stage portion) configured for relative translation with respect to each other. One of the first portion or the second portion has a coil associated therewith and the other of the first portion or the second portion has a magnetic source associated therewith. The magnetic source may include one or more magnets to produce a magnetic field that generally encompasses the coil such that current through the coil causes a force on the coil, thereby causing translation of the first portion relative to the second portion.
    • 根据一个示例,提供线性平移阶段。 线性平台包括被配置为相对于彼此相对平移的第一部分(例如,基部)和第二部分(例如,台部)。 第一部分或第二部分中的一个具有与其相关联的线圈,并且第一部分或第二部分中的另一个具有与其相关联的磁源。 磁源可以包括一个或多个磁体以产生通常包围线圈的磁场,使得通过线圈的电流引起线圈上的力,从而导致第一部分相对于第二部分的平移。
    • 24. 发明授权
    • Sun-tracking daylighting apparatus
    • 太阳跟踪采光机
    • US06827445B2
    • 2004-12-07
    • US10470261
    • 2003-08-04
    • Hiroshi AbeAtsushi Ogawa
    • Hiroshi AbeAtsushi Ogawa
    • F24J200
    • G02B26/0816E04D13/033E04D2013/034F21S11/00F24S30/40F24S50/20G02B7/18Y02B10/20Y02E10/47
    • A solar lighting apparatus of the sun tracking type for guiding sunlight into a building by using light reflecting means (30), the apparatus comprising the light reflecting means (30) for reflecting sunlight, drive means (60) for driving the light reflecting means, control means (70) for controlling the drive means to orient the light reflecting means toward the direction of the sun, and power source means (20) for supplying electric power to the drive means and the control means. The power source means (20) comprises a main power source unit (22) chargeable by a solar cell panel (40) for supplying electric power to the drive means (60) and the control means (70), and a backup secondary cell (24) chargeable with the electric power from the main power source unit for supplying electric power to the control means (70). The control means (70) comprises real time clock means (75) for measuring time, and a CPU (76) for calculating the direction of the sun based on data as to time measured by the clock means and controlling the operation of the drive means. The CPU (76) is switchable from a sleep mode to an active mode in operating state based on the time data from the clock means (75).
    • 一种用于通过使用光反射装置(30)将阳光引导到建筑物中的太阳跟踪型太阳能照明装置,该装置包括用于反射太阳光的光反射装置(30),用于驱动光反射装置的驱动装置(60) 用于控制驱动装置使光反射装置朝向太阳的方向的控制装置(70),以及用于向驱动装置和控制装置提供电力的电源装置(20)。 电源装置(20)包括可由太阳能电池板(40)充电的主电源单元(22),用于向驱动装置(60)和控制装置(70)提供电力;以及备用二次电池( 24),其能够从主电源单元的电力向控制装置(70)供电。 控制装置(70)包括用于测量时间的实时时钟装置(75)和用于根据由时钟装置测量的时间的数据计算太阳的方向的CPU(76),并且控制驱动装置的操作 。 基于来自时钟装置(75)的时间数据,CPU(76)可在操作状态下从睡眠模式切换到活动模式。
    • 26. 发明授权
    • Method and apparatus for movably supporting a reflecting member of a
focusing apparatus
    • 用于可移动地支撑聚焦装置的反射部件的方法和装置
    • US6064505A
    • 2000-05-16
    • US192971
    • 1998-11-16
    • Douglass L. Blanding
    • Douglass L. Blanding
    • G02B7/04G02B7/18G02B26/08
    • G02B7/04G02B26/0816G02B7/18
    • A support assembly for supporting a reflecting member of a focusing apparatus utilizes a flexure arrangement. The reflecting member can be in the form of a movable prism, and the flexure arrangement can include a pair of horizontal flexures in the form of sheets that support the moving prism of the focusing apparatus. The flexure arrangements permit the movement of the moving prism in a first direction relative to fixed prisms, fibers and lenses, while preventing or minimizing unwanted tipping, tilting or rotation of the movable prism. In one embodiment of the support assembly, the flexure arrangements can be symmetrically arranged on opposites sides of the movable prism, and in a further embodiment of the present invention, a further flexure arrangement can be arranged to provide for an increased range of motion of the movable prism.
    • 用于支撑聚焦装置的反射部件的支撑组件利用挠曲装置。 反射构件可以是可动棱镜的形式,并且挠曲装置可以包括支撑聚焦装置的可移动棱镜的片状形式的一对水平弯曲部。 弯曲装置允许可移动棱镜相对于固定的棱镜,纤维和透镜在第一方向上移动,同时防止或最小化可移动棱镜的不期望的倾斜,倾斜或旋转。 在支撑组件的一个实施例中,挠曲装置可以对称地布置在可移动棱镜的相对侧上,并且在本发明的另一实施例中,可以布置另外的挠曲装置以提供增加的运动范围 活动棱镜。
    • 27. 发明授权
    • Method for designing an optical system
    • 光学系统设计方法
    • US5162951A
    • 1992-11-10
    • US560670
    • 1990-07-31
    • Craig J. Sorce
    • Craig J. Sorce
    • G02B7/18
    • G02B7/18Y10S359/90
    • A novel design method suitable for use in an optical system comprising a mirror, a mirror mount, and a flexure that can connect the mirror to the mirror mount. The optical system may undergo a known temperature differential. In turn, each of the components of the optical system may individually dilate or contract in response to the temperature differential. The method accommodates these dilations/contractions, so that they may be accommodated in a known way, thereby avoiding temperature differential induced distortions of the optical system.
    • 一种适用于光学系统的新型设计方法,包括可以将反射镜连接到镜面安装座上的镜子,镜面安装座和弯曲部。 光学系统可能经历已知的温差。 反过来,光学系统的每个部件可以单独地响应于温度差膨胀或收缩。 该方法适应这些扩张/收缩,使得它们可以以已知的方式被容纳,从而避免温度差引起的光学系统的失真。
    • 28. 发明授权
    • Ultrasonic camera system and method
    • 超声波摄像机系统及方法
    • US3937066A
    • 1976-02-10
    • US411729
    • 1973-11-01
    • Philip S. GreenHugh F. FrohbachLouis F. SchaeferJoe R. Suarez
    • Philip S. GreenHugh F. FrohbachLouis F. SchaeferJoe R. Suarez
    • A61B8/00A61B8/14G01N29/00G01N29/06G01S7/52G01S15/89G02B7/18H04N5/222G01N29/04
    • G02B7/1805A61B8/00A61B8/483G01N29/0645G01N29/343G01S15/8913G01S15/8993G01S7/52023G02B7/18
    • A lens converter ultrasonic camera method and system are shown for producing a visible representation in real time and true perspective of inhomogeneities in an opaque subject or specimen and especially suitable for imaging organs of living organisms. An ultrasonic wave generating transducer means is coupled to the specimen for insonification thereof, and focused perspective images using either transmitted or reflected ultrasonic waves are produced and directed upon an array of acoustic to electrical transducer elements. Scanning means are employed to expose the transducer elements to the entire acoustic image to generate electrical signals representative of the acoustic image. Amplified electrical signals representative of at least a portion of the acoustic image (such as a line thereof) are stored in individual electrical storage elements, which storage elements subsequently are connected, as by commutation means, to a utilization circuit, such as the control grid of a cathode ray tube, for intensity control of the indicating spot on the screen of the tube. The storage elements then are discharged, signals representative of another portion of the acoustic image are stored therein, and the cycle is repeated. The acoustic image scanning and recurrent wave generating and wave receiving operations may be performed at a periodically increasing and decreasing rate.
    • 显示了一种透镜转换超声相机的方法和系统,用于在不透明的物体或样品中实时和真实地观察不均匀性,特别适用于生物体器官成像。 超声波产生传感器装置耦合到样本以使其非晶化,并且产生使用透射或反射的超声波的聚焦透视图,并且指向声 - 电换能器元件的阵列。 使用扫描装置将换能器元件暴露于整个声像,以产生表示声像的电信号。 代表声像的至少一部分的放大电信号(例如其一行)被存储在单独的电存储元件中,这些存储元件随后通过换向装置连接到利用电路,例如控制网格 的阴极射线管,用于对管的屏幕上的指示点进行强度控制。 然后,存储元件被放电,代表声像的另一部分的信号被存储在其中,并重复该周期。 可以以周期性增加和降低的速率执行声像扫描和反复波产生和波接收操作。