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    • 1. 发明申请
    • DISPLAY CELL, IN PARTICULAR LIQUID CRYSTAL, OR PHOTOVOLTAIC CELL COMPRISING MEANS FOR CONNECTION TO AN ELECTRONIC CONTROL CIRCUIT
    • 显示单元,特别是液晶,或包含用于连接到电子控制电路的装置的光电池
    • WO2004001495A3
    • 2004-03-04
    • PCT/EP0306376
    • 2003-06-17
    • ASULAB SAGRUPP JOACHIMKLAPPERT ROLF
    • GRUPP JOACHIMKLAPPERT ROLF
    • C23C14/22G02F1/13G02F1/1345G09F9/00H05K3/14H05K3/40
    • C23C14/225G02F1/13452H05K3/146H05K3/403
    • The invention concerns an electro-optical display cell (1; 18), in particular a liquid crystal, or an electrochemical photovoltaic cell comprising at least: one transparent front substrate (2; 20) whereof the upper surface constitutes the front surface (14) of the cell (1; 18); at least one rear substrate (8; 22) likewise transparent or not whereof the lower surface (12; 31) constitutes the rear surface of said cell (1; 18); a sealing frame (36) assembling the front (20) and rear (22) substrates and delimiting a volume (38) for sealed confinement of an electric-optically or photo-electrically active medium; said front (20) and rear (22) substrates comprising on the opposite surfaces at least one electrode (24, 26) each, said electrodes (24, 26) being designed to be connected through strip conductors (16; 30, 34) to an electric power or control circuit (10; 56) and urged to define the lateral electric contact zones (28, 32). Said cell is characterized in that the strip conductors (30, 34) consist each of a first portion (30a, 34a) in contact with the electrodes at the lateral electric contact zones (28, 32), and a second portion (30b, 34b) extending on the rear surface (31) of the cell (18), contact means continuously or discontinuously arranged on the edge (27) and/or on the rear (12; 31) of said cell (1; 18) ensuring electric junction between the first (30a, 34a) and the second (30b, 34b) portions of the strip conductors (30, 34).
    • 本发明涉及至少包括:一个透明前基板(2; 20)的电光显示单元(1; 18),特别是液晶或电化学光伏电池,其中上表面构成前表面(14) 的细胞(1; 18); 至少一个后基板(8; 22)同样是透明的,而不是下表面(12; 31)构成所述电池(1; 18)的后表面; 密封框架(36)组装前(20)和后(22)基板并限定用于密封限制电光或光电活性介质的体积(38) 所述前部(20)和后部(22)基板在相对表面上包括至少一个电极(24,26),所述电极(24,26)被设计成通过带状导体(16; 30,34)连接到 电力或控制电路(10; 56),并被推动以限定横向电接触区域(28,32)。 所述电池的特征在于带状导体(30,34)包括在横向电接触区域(28,32)处与电极接触的第一部分(30a,34a)和第二部分(30b,34b) ),在所述电池(18)的后表面(31)上延伸的接触装置连续地或不连续地布置在所述电池(1; 18)的边缘(27)和/或后部(12; 31)上,确保电连接 在带状导体(30,34)的第一(30a,34a)和第二(30b,34b)部分之间。
    • 2. 发明申请
    • METHOD FOR MASS PRODUCTION OF A PLURALITY OF MAGNETIC SENSORS
    • 大量生产磁性传感器的方法
    • WO02101845A2
    • 2002-12-19
    • PCT/EP0205753
    • 2002-05-22
    • ASULAB SAPIGUET DOMINIQUEVINCENT FRANCK
    • PIGUET DOMINIQUEVINCENT FRANCK
    • H01L43/08H01L43/12
    • H01L43/12
    • .The invention concerns a method for mass production of a plurality of magnetic sensors (1) produced on a semiconductor substrate (4), said sensors (1) comprising at least a magnetic core (8) made of an amorphous magnetic material. The invention is characterised in that, after integrating electronic circuits associated with the magnetic sensors (1), an amorphous magnetic material film (22) is bonded on the semiconductor substrate (4), said film being obtained from an amorphous magnetic material strip cut out into several sections (18) which are arranged juxtaposed on a support (20), said film being then structured to form the magnetic cores (8) of said magnetic sensors (1), the semiconductor substrate (4) being finally cut out to provide a plurality of individual magnetic sensors (1).
    • 本发明涉及一种大规模生产在半导体衬底(4)上制造的多个磁传感器(1)的方法,所述传感器(1)至少包括由非晶磁性材料制成的磁芯(8)。 本发明的特征在于,在集成了与磁传感器(1)相关联的电子电路之后,非晶磁性材料膜(22)接合在半导体衬底(4)上,所述膜由非晶磁性材料带切割出 分成与支撑件(20)并列设置的若干部分(18),然后将所述膜构造成形成所述磁性传感器(1)的磁芯(8),最后切割半导体衬底(4)以提供 多个单独的磁传感器(1)。
    • 3. 发明申请
    • ELECTRONIC DEVICE COMPRISING A LIGHT GUIDE PROVIDED WITH AT LEAST TWO INTERLEAVED LIGHT EXTRACTOR GROUPS
    • 包含最少两个交互式光提取器组的指南的电子设备
    • WO2006058836A3
    • 2006-08-24
    • PCT/EP2005055930
    • 2005-11-11
    • ASULAB SAWINKLER PASCAL
    • WINKLER PASCAL
    • G04G99/00G02B6/00
    • G04B19/30G04B45/0015G04G9/0041
    • The invention relates to a timepiece (40) comprising optical means for forming a decoration pattern in the form of a pictorial image in response to a carrier action. The inventive optical means for forming a pictorial image comprises a light guide (1, 51) provided with two extended faces (10, 11) and at least one lateral face (12). Each light extractor (19) comprising at least one light reflective surface (20) is arranged in at least one extended faces (11). A light source (8, 8a, 8b, 8c) is placed in such a way that it emits light in the direction of the reflective surfaces (20) through the lateral face (12) of the light guide. Thus, each reflective surface initiates the formation of a reflected light beam in a very well defined direction, the light beam assembly forms a pictorial image in said direction which is typically selected as a normal line to the timepiece mid-plane.
    • 本发明涉及一种钟表(40),包括用于响应于载体动作形成图形形式的装饰图案的光学装置。 用于形成图形图像的本发明的光学装置包括设置有两个延伸面(10,11)和至少一个侧面(12)的光导(1,51)。 包括至少一个光反射表面(20)的每个光提取器(19)布置在至少一个延伸面(11)中。 光源(8,8a,8b,8c)以这样的方式放置,使得其通过光导的侧面(12)在反射表面(20)的方向上发光。 因此,每个反射表面开始在非常明确的方向上形成反射光束,光束组件在所述方向上形成图形图像,该图像通常被选择为钟表中间平面的法线。
    • 4. 发明申请
    • METHOD FOR OPERATING A CMOS IMAGE SENSOR WITH INCREASED SENSITIVITY
    • 具有提高灵敏度的CMOS图像传感器的操作方法
    • WO02102057A3
    • 2003-04-03
    • PCT/EP0205981
    • 2002-05-31
    • ASULAB SAGRUPP JOACHIMJACQUET ESTELLEWUETHRICH CHRISTIANDOERING ELKO
    • GRUPP JOACHIMJACQUET ESTELLEWUETHRICH CHRISTIANDOERING ELKO
    • H04N3/15H01L27/146
    • H04N5/3745H04N5/3594
    • There is disclosed a method for operating a CMOS image sensor including a plurality of pixels (50)each of the pixels including a photo-sensor element (PD)producing charge carriers in proportion to its illumination and storage means (C1)capable of being coupledand uncoupled from the photo-sensor element at a determined instant in order to store, on a memory node (B) of the pixel, a measuring signal representative of the charge carriers produced by saidphoto-sensor element.Each pixel includes at least first MOS transistor (M2)connected via its source and drain terminals respectively to the photo-sensor element and to the storage means. At least during the pixel exposure step, an intermediate level voltage (V )is applied to the gate terminal of the first transistor, said intermediate voltage being selected so that the charge carriers produced by the photo-sensor element are entirely transferred via the first transistor onto the storage means.
    • 公开了一种用于操作CMOS图像传感器的方法,所述CMOS图像传感器包括多个像素(50),每个像素包括光电传感器元件(PD),所述光电传感器元件(PD)与其照明能够成比例的电荷载流子和能够耦合的存储装置(C1) 在确定的时刻从光传感器元件解耦,以便在像素的存储器节点(B)上存储表示由所述光电传感器元件产生的电荷载流子的测量信号。每个像素包括至少第一MOS晶体管 (M2)分别经由其源极和漏极端子连接到光电传感器元件和存储装置。 至少在像素曝光步骤期间,将中间电平电压(V )施加到第一晶体管的栅极端子,选择所述中间电压,使得由光电传感器元件产生的电荷载流子完全通过 第一晶体管到存储装置上。
    • 6. 发明申请
    • TIMEPIECE COMPRISING A LIGHT GUIDE PERFORMING A GLASS FUNCTION
    • 包含执行玻璃功能的导光板的时计
    • WO2006058835A3
    • 2006-12-28
    • PCT/EP2005055929
    • 2005-11-11
    • ASULAB SAWINKLER PASCAL
    • WINKLER PASCAL
    • G04B19/30G04G99/00G02B6/00G04B39/00G04B45/00
    • G04B19/30G04B45/0015G04G9/0041
    • The invention relates to a timepiece (40) comprising optical means for forming a decoration pattern in the form of a pictorial image in response to a carrier action. The inventive optical means for forming a pictorial image comprises a light guide (1, 51) provided with two extended faces (10, 11) and at least one lateral face (12). Each light extractor (19) comprising at least one light reflective surface (20) is arranged in at least one extended faces (11). A light source (8, 8a, 8b, 8c) is placed in such a way that it emits light in the direction of the reflective surfaces (20) through the lateral face (12) of the light guide. Thus, each reflective surface initiates the formation of a reflected light beam in a very well defined direction, the light beam assembly forms a pictorial image in said direction which is typically selected as a normal line to the timepiece mid-plane.
    • 本发明涉及一种包括光学装置的钟表(40),该装置用于响应于载体动作以图像形式形成装饰图案。 本发明的用于形成绘画图像的光学装置包括设置有两个延伸面(10,11)和至少一个侧面(12)的光导(1,51)。 包括至少一个光反射表面(20)的每个光提取器(19)被布置在至少一个延伸面(11)中。 光源(8,8a,8b,8c)以这样的方式放置,使得它通过光导的侧面(12)沿着反射表面(20)的方向发射光。 因此,每个反射表面开始在非常明确限定的方向上形成反射光束,光束组件在所述方向上形成绘画图像,该图像通常被选择为钟表中平面的法线。
    • 7. 发明申请
    • ELECTRONIC DEVICE COMPRISING A LIGHT GUIDE PROVIDED WITH AT LEAST TWO INTERLEAVED SEQUENTIALLY ILLUMINATED LIGHT EXTRACTOR GROUPS
    • 包含提供有至少两个交错序列照明光提取器组的光导的电子装置
    • WO2006058834A3
    • 2006-08-24
    • PCT/EP2005055928
    • 2005-11-11
    • ASULAB SAWINKLER PASCAL
    • WINKLER PASCAL
    • G04G9/00G04G99/00G02B6/00
    • G04B19/30G04B45/0015G04G9/0041
    • The invention relates to a timepiece (40) comprising optical means for forming a decoration pattern in the form of a pictorial image in response to a carrier action. The inventive optical means for forming a pictorial image comprises a light guide (1, 51) provided with two extended faces (10, 11) and at least one lateral face (12). Each light extractor (19) comprising at least one light reflective surface (20) is arranged in at least one extended faces (11). A light source (8, 8a, 8b, 8c) is placed in such a way that it emits light in the direction of the reflective surfaces (20) through the lateral face (12) of the light guide. Thus, each reflective surface initiates the formation of a reflected light beam in a very well defined direction, the light beam assembly forms a pictorial image in said direction which is typically selected as a normal line to the timepiece mid-plane.
    • 本发明涉及一种包括光学装置的钟表(40),该装置用于响应于载体动作以图像形式形成装饰图案。 本发明的用于形成绘画图像的光学装置包括设置有两个延伸面(10,11)和至少一个侧面(12)的光导(1,51)。 包括至少一个光反射表面(20)的每个光提取器(19)被布置在至少一个延伸面(11)中。 光源(8,8a,8b,8c)以这样的方式放置,使得它通过光导的侧面(12)沿着反射表面(20)的方向发射光。 因此,每个反射表面开始在非常明确限定的方向上形成反射光束,光束组件在所述方向上形成绘画图像,该图像通常被选择为钟表中平面的法线。
    • 8. 发明申请
    • DEVICE AND METHOD FOR TESTING THE LEAK-TIGHTNESS OF A TIMEPIECE CASE
    • 用于测试定时器的泄漏密度的装置和方法
    • WO2004019141A8
    • 2005-02-10
    • PCT/EP0308672
    • 2003-08-06
    • ASULAB SAGUEISSAZ FRANCOIS
    • GUEISSAZ FRANCOIS
    • G04G99/00G01M3/20G04B37/08G04C3/00G04D7/00
    • G04D7/007
    • The invention relates to a device for testing the leak-tightness of a case (2) belonging to an electronic timepiece (1) comprising a time base (42) which is used to produce a standard frequency signal and a central processing unit (44) which is used to determine the time from said standard signal. The invention is characterised in that it comprises an electronic sensor (32) which can measure fluctuations in the concentration of an atmospheric gas confined in the case (2). According to the invention, the results of the measurement taken by the electronic sensor (32) are processed by the central processing unit (44) which, if necessary, emits an audible or visible alarm in response to the measurement signal.
    • 本发明涉及一种用于测试属于电子表(1)的壳体(2)的密封性的装置,包括用于产生标准频率信号的时基(42)和中央处理单元(44) 其用于从所述标准信号确定时间。 本发明的特征在于它包括可以测量限制在壳体(2)中的大气气体浓度的波动的电子传感器(32)。 根据本发明,由电子传感器(32)进行的测量结果由中央处理单元(44)处理,如果需要,响应于测量信号发出可听见或可见的报警。
    • 9. 发明申请
    • DEVICE AND METHOD FOR TESTING THE LEAK-TIGHTNESS OF A TIMEPIECE CASE
    • 用于测试时计情况的泄漏紧度的装置和方法
    • WO2004019141A2
    • 2004-03-04
    • PCT/EP0308672
    • 2003-08-06
    • ASULAB SAGUEISSAZ FRANCOIS
    • GUEISSAZ FRANCOIS
    • G04G99/00G01M3/20G04B37/08G04C3/00G04D7/00
    • G04D7/007
    • The invention relates to a device for testing the leak-tightness of a case (2) belonging to an electronic timepiece (1) comprising a time base (42) which is used to produce a standard frequency signal and a central processing unit (44) which is used to determine the time from said standard signal. The invention is characterised in that it comprises an electronic sensor (32) which can measure fluctuations in the concentration of an atmospheric gas confined in the case (2). According to the invention, the results of the measurement taken by the electronic sensor (32) are processed by the central processing unit (44) which, if necessary, emits an audible or visible alarm in response to the measurement signal.
    • 本发明涉及一种用于测试属于包括用于产生标准频率信号的时基(42)和中央处理单元(44)的电子时钟(1)的壳体(2)的密封性的装置, 用于确定来自所述标准信号的时间。 本发明的特征在于它包括电子传感器(32),该电子传感器能够测量被限制在壳体(2)中的大气气体浓度的波动。 根据本发明,由电子传感器(32)进行的测量结果由中央处理单元(44)处理,中央处理单元(44)根据需要发出响应于测量信号的可听见或可见的警报。