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    • 2. 发明申请
    • Optical spectrometer
    • 光谱仪
    • US20060132768A1
    • 2006-06-22
    • US11019821
    • 2004-12-22
    • Charles ChuangChia-Jung Chang
    • Charles ChuangChia-Jung Chang
    • G01J3/28
    • G01J3/28G01J3/2803G01J3/36G01J2003/2866
    • An optical spectrometer includes an input module, an optical sensing device, a light splitter, and a processing device. The input module includes an orifice unit through which an incident light beam passes. The optical sensing device includes a two-dimensional array of sensing cells arranged into a plurality of rows and columns. The light splitter splits the incident light beam from the input module into at least one wavelength component of a light band, and projects the wavelength component to the optical sensing device. The optical sensing device is disposed such that the wavelength component projected thereon is inclined at a predetermined angle relative to a columnar direction of the sensing cells. The processing device is coupled to the optical sensing device for processing electrical signals generated by the sensing cells.
    • 光谱仪包括输入模块,光学感测装置,光分离器和处理装置。 输入模块包括入口光束通过的孔单元。 光学感测装置包括布置成多个行和列的感测单元的二维阵列。 光分路器将来自输入模块的入射光束分成光带的至少一个波长分量,并将波长分量投影到光学感测装置。 光学传感装置被布置成使得其上投影的波长分量相对于感测单元的柱状方向倾斜预定角度。 处理装置耦合到光学感测装置,用于处理由感测单元产生的电信号。
    • 6. 发明申请
    • OPTICAL FIBER CONNECTOR AND METHOD OF MANUFACTURING THE SAME
    • 光纤连接器及其制造方法
    • US20120163756A1
    • 2012-06-28
    • US12978511
    • 2010-12-24
    • Yuan-Lin LeeChia-Jung ChangWei ShenYung-Han Yang
    • Yuan-Lin LeeChia-Jung ChangWei ShenYung-Han Yang
    • G02B6/36G02B6/26
    • G02B6/32G02B6/3696G02B6/3865
    • An optical fiber connector includes an insulating housing, an optical fiber and a transparent hetero substrate. The optical fiber is exposed outside the insulating housing with one end portion molded in the insulating housing. The transparent hetero substrate is molded inside the insulating housing. The transparent hetero substrate is substantially perpendicular to the end portion of the optical fiber and spaced from an end edge of the end portion of the optical fiber. A middle of the transparent hetero substrate is substantially in alignment with the end portion of the optical fiber. The method of manufacturing the above-mentioned optical fiber connector is described hereinafter. Firstly, set an end portion of the optical fiber and a transparent hetero substrate in a mold. Secondly, inject molten materials into the mold. Thirdly, separate the mold and then take out the optical fiber connector from the mold when the mold is cooled.
    • 光纤连接器包括绝缘壳体,光纤和透明异质衬底。 该光纤暴露在绝缘壳体外部,其一端模制在绝缘壳体中。 透明异质衬底被模制在绝缘壳体的内部。 透明异质衬底基本上垂直于光纤的端部并与光纤的端部的端部边缘间隔开。 透明异质衬底的中间基本上与光纤的端部对准。 下面描述制造上述光纤连接器的方法。 首先,在模具中设置光纤的端部和透明异质衬底。 其次,将熔融材料注入模具。 第三,当模具冷却时,分离模具,然后从模具中取出光纤连接器。
    • 8. 发明申请
    • Door lock transmission element
    • 门锁传动元件
    • US20050111118A1
    • 2005-05-26
    • US10995232
    • 2004-11-24
    • Chia-Jung Chang
    • Chia-Jung Chang
    • B60R1/072G02B5/08
    • B60R1/072
    • An auto-adjusting electric rear-view mirror includes at least two driving mechanisms for driving the rear-view mirror to deflect. The driving mechanisms are respectively coupled to servo control circuits that are further connected to sensor members. The servo control circuits are also coupled to a master control circuit that is further connected to an external controller. The sensor members can sense a positional variation of the rear-view mirror and send a feedback signal to the servo control circuits. The servo control circuits compare a signal from input ports thereof with the feedback signal, and output a control signal to the driving mechanisms according to the comparison result to drive position or negative rotation of the driving mechanisms, such that the rear-view mirror would automatically adjust its view angle to ensure driving safety.
    • 一种自动调节电动后视镜包括用于驱动后视镜偏转的至少两个驱动机构。 驱动机构分别耦合到进一步连接到传感器构件的伺服控制电路。 伺服控制电路还耦合到进一步连接到外部控制器的主控制电路。 传感器构件可感测后视镜的位置变化,并向伺服控制电路发送反馈信号。 伺服控制电路将来自其输入端口的信号与反馈信号进行比较,并根据比较结果向驱动机构输出驱动机构的驱动位置或负旋转的控制信号,使得后视镜将自动 调整其视角以确保驾驶安全。
    • 9. 发明授权
    • Vehicle automatic anti-glare device
    • US06394614B1
    • 2002-05-28
    • US09968534
    • 2001-12-17
    • Chia-Jung Chang
    • Chia-Jung Chang
    • G02B2700
    • B60R1/084B60R2001/1215G09G3/3611
    • A vehicle automatic anti-glare device comprises a LCD panel having a function of being converted into a “non-light filtering” mode from a “light filtering” mode as voltage is applied thereon; a reflection film installed at a back side of said LCD panel, when the said LCD panel is in a “light filtering” mode, said reflection film reflects the light of said LCD panel so that said LCD panel reflects images; a light sensor for detecting the light intensity of the light radiated to said LCD panel and sends out a signal; and a control module for receiving an output signal from said light sensor. As the signal is over is default value, then a pressure is applied to the LCD panel so that said LCD panel is converted into a “non-light filtering” mode. The control module has a data receiving device which receives the data from a microcomputer in a vehicle and then transfers said data to said LCD panel. A back side of said LCD panel is installed with a battery device and a retainer seat for receiving said control module so that said LCD panel has power for operation, and via the said retainer seat, said LCD panel is fixed and connected to said rear-view mirror of a vehicle. Thereby, the user may install the vehicle automatic anti-glare device himself (or herself).