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    • 5. 发明授权
    • Sensor matrix
    • 传感器矩阵
    • US5132541A
    • 1992-07-21
    • US644712
    • 1991-01-23
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • H01L27/146H01L31/0224
    • H01L31/022408H01L27/14643
    • A sensor matrix includes light-sensitive and/or X-ray sensitive thin-film sensors (1) comprising two electrodes (2, 6) and a semiconductor layer (5) therebetween. In each sensor (1) there is a separate electrode which serves as the first electrode (2), the semiconductor layer (5) being constructed as a continuous layer which is common to all sensors (1), and which covers all first electrodes (1), the second electrodes (6) being formed, at least for groups of sensors (1), as a continuous layer (6) which covers the semiconductor layer (5) at the area of all first electrodes (2) of the sensors (1) of the relevant group and acts as a second electrode for all sensors of the relevant group.
    • 传感器矩阵包括其间包括两个电极(2,6)和半导体层(5)的光敏和/或X射线敏感的薄膜传感器(1)。 在每个传感器(1)中,存在用作第一电极(2)的单独的电极,半导体层(5)被构造为所有传感器(1)共同的连续层,并且覆盖所有第一电极 至少对于传感器组1而言,第二电极(6)形成为在传感器的所有第一电极(2)的区域覆盖半导体层(5)的连续层(6) (1),并作为相关组的所有传感器的第二电极。
    • 6. 发明授权
    • Arrangement comprising a sensor matrix
    • 布置包括传感器矩阵
    • US5572257A
    • 1996-11-05
    • US400427
    • 1995-03-03
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • A61B6/03G01T1/00G01T1/24H04N5/32H04N5/335H04N5/345H04N5/359H04N5/374H04N5/376H04N3/14
    • H04N5/376H04N5/32H04N5/3597H04N5/374
    • In an arrangement of light-sensitive or X-ray sensitive sensors (S.sub.1,1, . . . , S.sub.2048,2048) arranged in a matrix in rows and columns, which sensors produce charge states in dependence upon the amount of incident radiation and each have an electrical switch, for each sensor row a switching line (33.sub.1, . . . , 33.sub.2048) via which the switches (3) can be activated so that the charge states of the sensors of the activated sensor row are read or reset simultaneously via associated read lines (8, 9, 10), there is provided a reset device (30a, 30b) for resetting the charge states of previously read sensor rows, which device activates at least one of the previously read sensor rows, which activates another of the previously read sensor rows after a predetermined number of clock pulses of a reset clock signal (T.sub.32), and which deactivates each activated sensor row a predetermined number of clock pulses after its activation.
    • 在以行和列排列成矩阵的感光或X射线敏感传感器(S1,1,...,S2048,2048)的布置中,这些传感器根据入射辐射量和每个传感器产生电荷状态 具有电开关,对于每个传感器行,可以激活开关(3)的开关线(331,...,332048),使得激活的传感器行的传感器的充电状态通过 提供了一种用于重置先前读取的传感器行的电荷状态的复位装置(30a,30b),该装置激活先前读取的传感器行中的至少一个,其激活另一个 先前读取的传感器行在复位时钟信号(T32)的预定数量的时钟脉冲之后,并且在其激活之后使每个激活的传感器行停用预定数量的时钟脉冲。
    • 7. 发明授权
    • Sensor matrix
    • 传感器矩阵
    • US5184018A
    • 1993-02-02
    • US644713
    • 1991-01-23
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • Norbert ConradsUlrich SchiebelHerfried Wieczorek
    • H01L27/146H01L27/14H04N5/32H04N5/374H04N5/378
    • H04N3/1575H04N3/1506H04N5/32
    • A matrix of light-sensitive or x-ray sensitive sensors (S.sub.1,1, . . . S.sub.2000,200) are arranged in rows and columns and generate charges in dependence on the amount of incident radiation. The sensors comprise a respective electric switch (3) and are constructed, like the electric switches (3), of thin-film technology. Each sensor row has a switching line (5, 6, . . . , 7) via which the switches can be activated so that the charges of the relevant activated sensor row are simultaneously output via read lines (8, 9, . . . , 10, . . . ). Transfer means convert the signals read in parallel into a serial output signal; in order to achieve an as favorable as possible noise behavior. An amplifier (11, 12, . . . , 13) is in each read line and is constructed as a silicon crystal and precedes the transfer means. During the read operations, the amplifiers simplify the signals read from the sensors (S.sub.1.1, . . . S.sub.2000,2000) connected to the relevant read line (8, 9, . . . , 10, . . . ).
    • 光敏或X射线敏感传感器(S1,1,...,S2000,200)的矩阵以行和列排列,并根据入射辐射量产生电荷。 这些传感器包括相应的电开关(3),并且像电动开关(3)一样构成薄膜技术。 每个传感器行都有一个开关线(5,6,...,7),通过该开关线可以启动开关,使得相关激活的传感器行的电荷通过读取线(8,9,..., 10,...)。 传输装置将并行读取的信号转换为串行输出信号; 以达到尽可能有利的噪音行为。 放大器(11,12,...,13)位于每条读取线中,并被构造为硅晶体,并且在传送装置之前。 在读取操作期间,放大器简化从连接到相关读取线(8,9,...,10 ...)的传感器读取的信号(S1.1,...,S2000,2000)。
    • 9. 发明授权
    • Device for reading an imaging sensor matrix
    • 用于读取成像传感器矩阵的装置
    • US6075247A
    • 2000-06-13
    • US3039
    • 1998-01-05
    • Herfried K. WieczorekNorbert ConradsUlrich Schiebel
    • Herfried K. WieczorekNorbert ConradsUlrich Schiebel
    • H04N5/32G01T1/24G01T1/29H01L27/146H04N3/15H04N5/335
    • H01L27/14658G01T1/2928
    • A medical X-ray apparatus is provided with image detector elements 30 which are arranged in a matrix of rows and columns. In order to improve the noise behaviour of the read amplifiers 46 during the reading per row, a plurality of column conductors 36 is provided per column so that the read time is prolonged in proportion to the number of column conductors and the stray capacitance is reduced proportionally. Both steps reduce the noise in known manner. In the case of an integrated implementation, the conductors for driving the reading per row cannot be arranged arbitrarily close to one another because of their mutual capacitance, so that these conductors require a comparatively large surface area. In order to make a smaller surface area suffice for these conductors, according to the invention each read driver 42 is connected to at least two rows of image detector elements 30 which are not associated with the same column conductor, the number of rows thus connected to one read driver being at the most equal to the number of groups of image detector elements in one column.
    • 医疗X射线装置设置有以行和列为矩阵排列的图像检测器元件30。 为了改善每行读取期间读取放大器46的噪声行为,每列提供多个列导体36,使得读取时间与列导体的数目成比例地延长,杂散电容成比例地减小 。 两个步骤以已知的方式降低了噪音。 在集成实现的情况下,用于驱动每行读数的导体由于它们的互电容而不能彼此任意地彼此布置,使得这些导体需要相当大的表面积。 为了使这些导体的表面积更小,根据本发明,每个读取驱动器42连接到至少两行不与同一列导体相关联的图像检测器元件30,这样连接的行数 一个读取驱动器最多等于一列中图像检测器元件的数量的数量。