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    • 7. 发明授权
    • Lighting control systems and methods
    • 照明控制系统和方法
    • US08952626B2
    • 2015-02-10
    • US13212669
    • 2011-08-18
    • Yao-Te HuangYung-Chuan ChenHung-Chun LiYeu-Torng YauMing-Shan JengChing-Ran Lee
    • Yao-Te HuangYung-Chuan ChenHung-Chun LiYeu-Torng YauMing-Shan JengChing-Ran Lee
    • G05F1/00H05B39/04H05B37/02H05B41/36
    • H05B37/029H05B37/0272
    • Systems and methods for lighting control are disclosed. The system may include at least one lighting device providing illumination and a handheld unit coupled with the lighting device to control at least one of a controllable lighting state, a controllable lighting intensity, and a controllable lighting effect of the lighting device. The handheld unit may include an image-capturing device and a processor coupled with the image-capturing device. The processor may be configured to control the image-capturing device to capture an image of a space affected by the lighting device; analyze an luminance level of the space; receive a lighting parameter; and provide a command to the lighting device for controlling at least one of the controllable lighting state, the controllable lighting intensity, and the controllable lighting effect of the lighting device based on at least one of the image, the luminance level, and the lighting parameter.
    • 公开了用于照明控制的系统和方法。 该系统可以包括提供照明的至少一个照明设备和与照明设备耦合的手持单元以控制照明设备的可控照明状态,可控照明强度和可控照明效果中的至少一个。 手持单元可以包括图像捕获装置和与图像捕获装置耦合的处理器。 处理器可以被配置为控制图像捕获装置捕获受照明装置影响的空间的图像; 分析空间的亮度水平; 接收照明参数; 并且向照明装置提供命令,用于基于图像,亮度级和照明参数中的至少一个来控​​制照明装置的可控照明状态,可控照明强度和可控照明效果中的至少一个 。
    • 8. 发明授权
    • Pneumatic actuator structure
    • 气动执行器结构
    • US08671672B2
    • 2014-03-18
    • US12993504
    • 2009-11-20
    • James WangYung-Chuan Chen
    • James WangYung-Chuan Chen
    • F16D31/02
    • F15B15/12F01C9/002F15B20/004F15B2211/21F15B2211/8855
    • An actuator structure includes two half cylinders made respectively from the same mold and the two half cylinders engaged with each other to form an actuator. The actuator has an air reservoir chamber and a vane chamber dividing by a dividing unit, and the vane chamber has a vane inside. An O-shaped ring is formed around the vane and an elastic stopping edge is formed protrudingly from the O-shaped ring and linearly contacted an inner surface of the actuator. The volume ratio of the air reservoir chamber and the vane chamber is about three to one, and a channel groove is formed at an interface of the two half cylinders to connect an air inlet hole and a left side and a right side wall of the actuator. A fail-safe or dual-movement control structure is formed to control the direction of air supply to drive the shaft to rotate toward a predetermined direction, or utilizing the compressed air in the air reservoir chamber to force the vane to restore to its original position.
    • 致动器结构包括分别由相同模具制成的两个半圆柱体,并且两个半圆柱体彼此接合以形成致动器。 致动器具有分隔单元分隔的储气室和叶片室,叶片室内部具有叶片。 在叶片周围形成O形环,弹性止动边缘从O形环突出地形成并与致动器的内表面线性接触。 储气室和叶片室的体积比约为3比1,在两个半圆柱的界面处形成通道槽,以连接进气孔和致动器的左侧和右侧壁 。 形成故障保护或双重运动控制结构以控制供气方向以驱动轴朝向预定方向旋转,或者利用空气储存室中的压缩空气迫使叶片恢复到其原始位置 。
    • 9. 发明申请
    • Pneumatic Actuator Structure
    • 气动执行器结构
    • US20110226124A1
    • 2011-09-22
    • US12993504
    • 2009-11-20
    • James WangYung-Chuan Chen
    • James WangYung-Chuan Chen
    • F15B21/00
    • F15B15/12F01C9/002F15B20/004F15B2211/21F15B2211/8855
    • An actuator structure includes two half cylinders made respectively from the same mold and the two half cylinders engaged with each other to form an actuator. The actuator has an air reservoir chamber and a vane chamber dividing by a dividing unit, and the vane chamber has a vane inside. An O-shaped ring is formed around the vane and an elastic stopping edge is formed protrudingly from the O-shaped ring and linearly contacted an inner surface of the actuator. The volume ratio of the air reservoir chamber and the vane chamber is about three to one, and a channel groove is formed at an interface of the two half cylinders to connect an air inlet hole and a left side and a right side wall of the actuator. A fail-safe or dual-movement control structure is formed to control the direction of air supply to drive the shaft to rotate toward a predetermined direction, or utilizing the compressed air in the air reservoir chamber to force the vane to restore to its original position.
    • 致动器结构包括分别由相同模具制成的两个半圆柱体,并且两个半圆柱体彼此接合以形成致动器。 致动器具有分隔单元分隔的储气室和叶片室,叶片室内部具有叶片。 在叶片周围形成O形环,弹性止动边缘从O形环突出地形成并与致动器的内表面线性接触。 储气室和叶片室的体积比约为3比1,在两个半圆柱的界面处形成通道槽,以连接进气孔和致动器的左侧和右侧壁 。 形成故障保护或双重运动控制结构以控制供气方向以驱动轴向预定方向旋转,或利用空气储存室中的压缩空气迫使叶片恢复到其原始位置 。
    • 10. 发明授权
    • Active trace assertion based verification system
    • 基于主动跟踪断言的验证系统
    • US08479132B2
    • 2013-07-02
    • US11455134
    • 2006-06-16
    • Kuen-Yang TsaiYung-Chuan ChenChun-Yi Lo
    • Kuen-Yang TsaiYung-Chuan ChenChun-Yi Lo
    • G06F17/50
    • G06F17/5045G06F17/5022
    • A computer processes simulation data indicating values of circuit signals as functions of simulation time to determine whether a circuit exhibits a property defined by an assertion. The assertion expresses the property as a sequence of expressions, each a function of one or more variables, where each variable represents a value of one or more signals or a value of another sequence of expressions. The assertion statement separately defines an evaluation time for each expression, a particular simulation time at which the expression is to be evaluated. Each expression must evaluate true if the circuit has the property. The computer produces a display including a representation of each expression of the property including a separate variable symbol for each of its variables. For each expression that evaluated false, the computer identifies each variable that caused that expression to evaluate false and distinctively marks that variable's symbol relative to other variable symbols within the display. For each expression that evaluated true, the computer identifies the evaluation time contributing the fulfillment of assertion property. The computer also annotates the representation of each expression with its corresponding evaluation time and annotates each displayed variable symbol with a value of the variable it represents.
    • 计算机处理指示电路信号值作为模拟时间的函数的模拟数据,以确定电路是否呈现由断言定义的属性。 断言将属性表示为表达式序列,每个表达式是一个或多个变量的函数,其中每个变量表示一个或多个信号的值或另一个表达式序列的值。 断言语句分别定义每个表达式的评估时间,表达式将被评估的特定模拟时间。 如果电路具有属性,则每个表达式必须评估为真。 计算机产生一个显示器,其中包括该属性的每个表达式的表示,包括每个变量的单独变量符号。 对于评估为false的每个表达式,计算机标识导致该表达式评估为false的每个变量,并显着地标记该变量的符号相对于显示内的其他变量符号。 对于评估为true的每个表达式,计算机识别有助于实现断言属性的评估时间。 计算机还用相应的评估时间对每个表达式的表示进行注释,并用其表示的变量的值来注释每个显示的变量符号。