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    • 31. 发明申请
    • Micro-droplet injection apparatus and injecting process using the same
    • 微滴注射装置和使用其的注射方法
    • US20070153033A1
    • 2007-07-05
    • US11488775
    • 2006-07-19
    • Kuo-Hua WuChao-Kai ChengChih-Jian Lin
    • Kuo-Hua WuChao-Kai ChengChih-Jian Lin
    • B41J25/308
    • H05K3/125H01L51/0005H05K1/0269H05K2203/013H05K2203/1105H05K2203/163
    • A micro-droplet injection apparatus and the injecting process using the same are provided for fabricating a micro-element. The apparatus includes an injection module, a moving stage module, an image detection module, and a temperature controlling module. The injection module is provided for injecting a micro-droplet on a substrate carried on the moving stage module, and the substrate is detected by the image detection module for detecting the relative position and inclined angle between the substrate and a injection head of the injection module. The temperature controlling module is provided for controlling the surface temperature of the substrate, such that the temperature of the substrate and the micro-droplets is balanced, and then the surface flatness of the film plated by micro-droplets is improved. The apparatus operates according to processing requirements of different substrates, achieving a stage multiplex function, and raising operation efficiency.
    • 提供微滴注入装置和使用其的注射方法来制造微元件。 该装置包括注射模块,移动载物台模块,图像检测模块和温度控制模块。 提供注射模块,用于将微滴注入携带在移动载物台模块上的基底上,并通过图像检测模块检测基板,用于检测基板与注射模块的注射头之间的相对位置和倾斜角度 。 温度控制模块被设置用于控制基板的表面温度,使得基板和微滴的温度平衡,然后提高由微滴喷镀的薄膜的表面平坦度。 该装置根据不同基板的加工要求进行工作,实现了台阶复用功能,提高了运行效率。
    • 32. 发明授权
    • Sensing device for detecting material depth, liquid-level, and temperature
    • 用于检测材料深度,液位和温度的感应装置
    • US08950255B2
    • 2015-02-10
    • US13463089
    • 2012-05-03
    • Liang-Chi ChangCheng-Lun ChangChing-Jui ChenChao-Kai Cheng
    • Liang-Chi ChangCheng-Lun ChangChing-Jui ChenChao-Kai Cheng
    • G01F23/22
    • G01F23/22G01F23/248G01F23/268
    • A sensing device can detect material depth, liquid-level, and temperature. The sensing device has a probe, a control module, a volume sensing module, a thermal sensing module, an output module, and a power module. The probe has two material electrodes connected to the volume sensing module and a thermal electrode connected to the thermal sensing module. A rated voltage is applied at the material electrodes based on radio frequency admittance. A current deviation of the material electrodes is obtained by the volume sensing module, and calculated via the control module by material characteristics to obtain a correct storage amount of material. A temperature at each material depth is correctly detected by the thermal electrode. Steel cable is used as the material of the material electrodes of the probe to detect material depth or liquid level with high impact resistant ability.
    • 感测装置可以检测材料深度,液位和温度。 感测装置具有探针,控制模块,体积感测模块,热感测模块,输出模块和功率模块。 探针具有连接到体积感测模块的两个材料电极和连接到热感测模块的热电极。 基于射频导纳在材料电极上施加额定电压。 通过体积检测模块获得材料电极的电流偏差,并通过控制模块通过材料特性计算,以获得正确的材料储存量。 每个材料深度的温度由热电极正确检测。 钢缆用作探头材料电极的材料,以检测具有高抗冲击能力的材料深度或液位。
    • 34. 发明授权
    • Printing data processing apparatus and method therefor
    • 打印数据处理装置及其方法
    • US07637578B2
    • 2009-12-29
    • US11716650
    • 2007-03-12
    • Chia-Ming ChangChao-Kai ChengChih-Jian LinChih-Hsuan Chiu
    • Chia-Ming ChangChao-Kai ChengChih-Jian LinChih-Hsuan Chiu
    • B41J29/38
    • B41J29/38B41J2/2135B41J2/2139B41J2202/20
    • A printing data processing apparatus for performing printing operations on an object to be printed is provided, which includes a plurality of printhead modules arranged in parallel, wherein each of the printhead modules has equal number of parallel printheads, each of the printheads has at least one jet orifice, and the simultaneously driven jet orifices on the parallel printheads of each of the printhead modules are arranged in a straight line with the jet orifices on the parallel printheads of the adjacent printhead module; a data processing unit for dividing a pattern format to be printed into a plurality of printing data and outputting a printing data signal; and a drive unit for receiving the printing data signal output by the data processing unit, and outputting a drive signal to the printhead modules, so that the printhead modules performs the printing operations synchronically and rotatably.
    • 提供了一种用于对要打印的对象进行打印操作的打印数据处理装置,其包括并行布置的多个打印头模块,其中每个打印头模块具有相等数目的并行打印头,每个打印头具有至少一个 并且每个打印头模块的并行打印头上的同时驱动的喷射孔与相邻打印头模块的平行打印头上的喷嘴直线布置; 数据处理单元,用于将要打印的图案格式分割成多个打印数据并输出打印数据信号; 以及驱动单元,用于接收由数据处理单元输出的打印数据信号,并将驱动信号输出到打印头模块,使得打印头模块同步且可旋转地执行打印操作。
    • 40. 发明申请
    • MAGNETOSTRICTIVE POSITION TRANSDUCER AND MAGNETOSTRICTIVE SENSING ELEMENT THEREOF
    • 磁致伸缩位置传感器及其磁感应传感元件
    • US20130106411A1
    • 2013-05-02
    • US13282189
    • 2011-10-26
    • Wei-Wu ChenTeng-Jin YouChao-Kai Cheng
    • Wei-Wu ChenTeng-Jin YouChao-Kai Cheng
    • G01R33/02
    • G01R33/18G01F23/2963
    • A magnetostrictive position transducer and a magnetostrictive sensing element thereof are characterized that a magnetostrictive sensing element is mounted inside an outer tube, the magnetostrictive sensing element has two end mounts respectively mounted on two ends of an insulating and hollow tube and a magnetostrictive wire mounted through the tube, the magnetostrictive wire has two wire adapters respectively mounted on two ends of the magnetostrictive wire and respectively mounted in the end mounts so that the magnetostrictive wire is contactlessly mounted through the tube, a sensing module is mounted in one of wire adapter to sense signal variation on the magnetostrictive wire. With the foregoing structure, the magnetostrictive sensing element does not require devices for applying pre-stress and damping, thereby simplifying structure and ensuring high stability in measurement of the magnetostrictive position transducer.
    • 磁致伸缩位置传感器及其磁致伸缩传感元件的特征在于,磁致伸缩传感元件安装在外管的内部,磁致伸缩传感元件具有分别安装在绝缘和中空管的两端上的两个末端安装件和通过 磁致伸缩导线具有分别安装在磁致伸缩导线的两端并分别安装在端部安装件中的两个线适配器,使得磁致伸缩导线通过管非接触地安装,感测模块安装在线适配器之一以感测信号 磁致伸缩线上的变化。 利用上述结构,磁致伸缩传感元件不需要用于施加预应力和阻尼的装置,从而简化结构并确保在磁致伸缩位置传感器的测量中的高稳定性。