摘要:
A two-dimensional image detector is provided with an active-matrix substrate, which has lattice-shaped wiring, a plurality of thin-film transistors installed at the respective lattice points of the electrode wiring and a plurality of pixel electrodes, an opposing substrate, which has a semiconductor layer having a photoconductive property, and conductive members for connecting the pixel electrodes and the semiconductor electrode. In the gap between the active-matrix substrate and the opposing substrate, areas having no conductive members are filled with an inactive gas.
摘要:
An active-matrix substrate is provided with electrode wires disposed in a lattice form, a plurality of switching elements disposed respectively at intersections of the electrode wires, and connecting terminals for connecting the electrode wires to the outside, the electrode wires include metal electrodes, and at least parts of the connecting terminals have a property of transmitting light. A two-dimensional image detector includes the active-matrix substrate and the amorphous semiconductor layer, which is formed on the active-matrix substrate and has electromagnetic wave conductivity. The connecting terminals are connected with the outside via an anisotropic conductive adhesive having photo-reactivity. A display device includes the active-matrix substrate and an opposing substrate which is disposed so as to oppose the active-matrix substrate via an electro-optical medium, and the connecting terminals are connected to the outside via an anisotropic conductive adhesive having photo-reactivity.
摘要:
A composite active-matrix substrate includes: a plurality of active-matrix substrates which are disposed adjacent to one another; a base substrate which is disposed to oppose a bottom surface of the active-matrix substrates; a sealant which is disposed in the form of a frame between the active-matrix substrate and the base substrate; a first filler which fills a spacing surrounded by the active-matrix substrate, the base substrate, and the sealant; and a second filler which fills a gap between edges of the active-matrix substrates. The sealant prevents the first filler from seeping out. In this way, seeping of an adhesive filler can be prevented in the arrangement where a plurality of active-matrix substrates are fixed on the base substrate using the adhesive filler. An electromagnetic wave capturing device according to the present invention uses such a composite active-matrix substrate.
摘要:
A TFT array is formed on a glass substrate (step P1) A surface protection layer is formed on the glass substrate so as to cover the TFT a-ray (step P2). The glass substrate is divided to form active matrix substrates with the surface protection layer being provided (step P3). The divided active matrix substrate is chamfered along its edges (step P4). The surface protection layer is removed from the active matrix substrate (step P5). An X-ray conductive layer is formed on the TFT array where the surface protection layer has been removed (step P6). By these steps, pollutants produced during the division and chamfering of the glass substrate are prevented from polluting the TFT array and the X-ray conductive layer, and the active element array and the semiconductor layer is prevented from deteriorating in terms of performance in manufacturing process for a two-dimensional image detector.
摘要:
An active-matrix substrate is provided with electrode wires disposed in a lattice form, a plurality of switching elements disposed respectively at intersections of the electrode wires, and connecting terminals for connecting the electrode wires to the outside, the electrode wires include metal electrodes, and at least parts of the connecting terminals have a property of transmitting light. A two-dimensional image detector includes the active-matrix substrate and the amorphous semiconductor layer, which is formed on the active-matrix substrate and has electromagnetic wave conductivity. The connecting terminals are connected with the outside via an anisotropic conductive adhesive having photo-reactivity. A display device includes the active-matrix substrate and an opposing substrate which is disposed so as to oppose the active-matrix substrate via an electro-optical medium, and the connecting terminals are connected to the outside via an anisotropic conductive adhesive having photo-reactivity.
摘要:
A two-dimensional image detecting device is provided with an active-matrix substrate including electrode wires, switching elements, and pixel electrodes; and an opposing substrate including electrode sections and a semiconductive layer. The substrates are disposed such that pixel electrodes and a semiconductive layer oppose each other, and are electrically connected with each other via a conductive material. Projecting electrodes are formed in accordance with the pixel electrodes on a connecting surface of at least one of the active-matrix substrate and the opposing substrate. An exterior wall is formed by a sealing material at an edge of the connecting surface so as to shut off a space between the substrates. With this arrangement, spaces among the projecting electrodes are sealed from the outside; thus, when air in the outside is allowed to be pressurized, it is possible to apply the same pressure as an external pressure due to a pressure difference between the outside and the space between the bonding surfaces of the substrates. Consequently, the active-matrix substrate and the opposing substrate can be connected to each other with high reliability.
摘要:
In a method of the present invention for fabricating a two-dimensional image detector in which a light/radiations detection element is applied, an upper electrode, a first charge blocking layer, and a semiconductor layer having photoconductivity are provided on support substrate in the stated order, and thereafter, a surface of the semiconductor layer is sprayed with ceramic particles by means of an abrasive grain jet nozzle. The abrasive grain jet nozzle repeatedly makes a high-speed reciprocating motion in an X direction at constant cycles while jetting the ceramic particles to the entirety of the surface of the semiconductor layer of the counter substrate moving in a Y direction, so that the surface of the semiconductor layer is subjected to a flattening treatment. This enables to provide a two-dimensional image detector in which a light/radiations detection element that provides effective improvement of a charge blocking effect and suppression of deterioration of reliability is applied.
摘要:
A two-dimensional image detector comprises an active matrix substrate provided with a pixel layer which includes pixel electrodes arranged in matrix form and switching elements; a counter substrate, provided with an upper electrode provided over substantially the entirety of the pixel layer, and a semiconductor layer having photoconductivity, provided opposite the pixel layer; and a conductive adhesive material which connects the active matrix substrate and the counter substrate to each other; in which the active matrix substrate is provided with a second electrode section for inputting a signal to the upper electrode of the counter substrate, and the upper electrode and the second electrode section are electrically connected to each other via a conductive member.
摘要:
At least one embodiment of the present invention aims to provide a display device capable of compensating for a change of a liquid crystal capacitance value for an electro-optic element such as a liquid crystal in accordance with a change of an application voltage to the electro-optic element, without incorporating frame memory. It also aims to improve the response speed of a display device without frame memory. For each pixel formation portion, a frame period is divided into first and second periods. During a frame period in which a target voltage having one of the positive and negative polarities with respect to a potential (Com) of an opposing electrode is to be applied to a pixel electrode, during the first period, a TFT is brought into conductive state and a voltage corresponding to the target voltage is applied to a source line (Sj), thereby providing the pixel electrode with a voltage of the other polarity with respect to the potential (Com) of the opposing electrode, while during the second period, the TFT is brought into non-conductive state and the voltage on an auxiliary capacitance line (Ck) is caused to change from the other polarity to one polarity with respect to the potential of the opposing electrode.
摘要:
A detector panel having a bias application electrode and a converter layer formed on a supporting substrate, and a readout panel (active matrix panel), are bonded to each other directly through a single layer of electroconductive resin. That is, a pattern of photosensitive resin is formed before-hand on reading electrodes of the readout panel, and this readout panel and the converter layer are bonded together directly. Since the converter layer has no pixel electrodes formed thereon, the converter layer need not be smoothed, and the two panels need not be positionally adjusted to each other with high precision.