Radiation detector and radiation imaging system
A radiation detector comprising: a pixel array in which pixels each having a radiation detection element configured to convert radiation into charges and an amplification transistor configured to amplify a signal from the radiation detection element and output the amplified signal are arrayed in a matrix shape; and signal wiring provided for each pixel column, wherein the signal wiring does not overlap an active layer, in which the amplification transistor is arranged, in a plan view.
1 . A radiation detector comprising:
a pixel array in which pixels each having a radiation detection element configured to convert radiation into charges and an amplification transistor configured to amplify a signal from the radiation detection element and output the amplified signal are arrayed in a matrix shape; and
signal wiring provided for each pixel column,
wherein the signal wiring does not overlap an active layer, in which the amplification transistor is arranged, in a plan view,
wherein the signal wiring includes at least two signal wiring lines arranged with respect to one pixel column,
wherein the pixels have power supply wiring arranged parallel to the signal wiring line,
wherein an interval between an adjacent signal wiring line is smaller than an interval between the signal wiring line, which is adjacent to the power supply wiring, and the power supply wiring,
wherein the pixels include a reset transistor, and
wherein the power supply wiring includes first power supply wiring that supplies a drain potential of the amplification transistor, second power supply wiring that supplies a well potential, and third power supply wiring that supplies a drain potential of the reset transistor.
2 . The radiation detector according to claim 1 , wherein the active layer in which the amplification transistor is arranged is a channel region of the amplification transistor.
3 . The radiation detector according to claim 1 , wherein the active layer in which the amplification transistor is arranged is a diffusion region of the amplification transistor.
4 . The radiation detector according to claim 1 , wherein the signal wiring lines are formed in a same layer as wiring that supplies a power supply voltage to the amplification transistor, and
wherein the signal wiring lines are arranged to be adjacent to each other.
5 . The radiation detector according to claim 1 , wherein connection wiring that is provided for each amplification transistor and that is orthogonal to a corresponding one of the signal wiring lines is provided,
wherein the signal wiring lines and the connection wiring are formed in different layers and electrically connected to each other via a via hole, and
wherein plane layouts of the pixels are substantially same in shape except for the via hole.
6 . The radiation detector according to claim 5 , wherein each intersection between the signal wiring and the connection wiring, an overlapped region has substantially a same area.
7 . The radiation detector according to claim 1 , wherein the second power supply wiring is arranged between the first power supply wiring and the third power supply wiring.
8 . The radiation detector according to claim 1 , wherein the third power supply wiring is arranged between the first power supply wiring and the second power supply wiring.
9 . The radiation detector according to claim 1 , wherein the first power supply wiring, the second power supply wiring, and the third power supply wiring are arranged at an upper part of a region in which the amplification transistor is arranged.
10 . The radiation detector according to claim 1 , wherein the signal wiring is arranged at an upper part of a region in which the radiation detection element is arranged, and
wherein the signal wiring includes at least three signal wiring lines per pixel column.
11 . The radiation detector according to claim 1 , wherein the radiation detector is of a surface irradiation type.
12 . A radiation imaging system comprising:
the radiation detector according to claim 1 ; and
a signal processing unit that processes a signal output from the radiation detector.
13 . A radiation imaging system comprising:
the radiation detector according to claim 1 ; and
a radiation source.