Abstract:
A glass substrate is reused. The mass productivity of a semiconductor device is increased. A glass substrate one surface of which includes a first material and a second material. The first material includes one or both of a metal and a metal oxide. The second material includes one or both of a resin and a decomposition product of a resin. A cleaning method of a glass substrate, which includes a step of preparing the glass substrate one surface of which includes a first material and a second material and a step of exposing the first material by removing at least part of the second material.
Abstract:
A highly convenient electronic device used while being worn on a body is provided. The electronic device is an arm-worn electronic device including a display panel, a power storage device, a circuit, and a sealing structure. The display panel displays an image with power supplied from the power storage device. The circuit includes an antenna and charges the power storage device wirelessly. Inside the sealing structure, the display panel, the power storage device, and the circuit are provided. The sealing structure includes a portion that transmits visible light. The sealing structure can be worn on an arm or is connected to a structure body that can be worn on an arm.
Abstract:
An information search system or an intellectual property information search system that is capable of highly accurate information search is provided. The intellectual property information search system includes a processing unit. First data and first reference analysis data are input to the processing unit. The first data includes first intellectual property information. The first reference analysis data includes plural pieces of second intellectual property information. The processing unit is configured to search the first reference analysis data for data similar to the first data to generate second data. The processing unit is configured to output the second data. The second data includes a piece of the second intellectual property information similar to the first intellectual property information and information showing the degree of similarity of the piece of the second intellectual property information to the first intellectual property information.
Abstract:
Display defects of a display device are reduced. The display quality of a display device is improved. A reliable display device is provided. A display device includes a substrate, a conductive layer over the substrate, and a transistor and a light-emitting element over the conductive layer. The transistor and the light-emitting element are each electrically insulated from the conductive layer. The transistor and the light-emitting element each overlap with the substrate with the conductive layer located therebetween. A constant potential is supplied to the conductive layer. The display device may further include a resin layer. In that case, the conductive layer overlaps with the substrate with the resin layer located therebetween. The resin layer has a thickness of more than or equal to 0.1 μm and less than or equal to 3 μm, for example. The resin layer has a 5% weight-loss temperature of lower than 400° C., for example.
Abstract:
A display device or an electronic device with high portability and browsability is provided. A display device which includes two display panels that overlap with each other and in which the area of a portion where the two display panels overlap with each other is variable is provided. The larger the area where the two display panels overlap with each other is, the smaller the display device becomes. The first display panel includes a first region that performs display. The second display panel includes a second region that performs display, and a third region that is adjacent to the second region and transmits visible light. When the third region overlaps with the side of a surface which performs display of the first region, display can be performed using a seamless large display region.
Abstract:
A glass substrate is reused. The mass productivity of a semiconductor device is increased. A glass substrate one surface of which includes a first material and a second material. The first material includes one or both of a metal and a metal oxide. The second material includes one or both of a resin and a decomposition product of a resin. A cleaning method of a glass substrate, which includes a step of preparing the glass substrate one surface of which includes a first material and a second material and a step of exposing the first material by removing at least part of the second material.
Abstract:
In order to provide a highly reliable organic EL element, a first step in which a deposition material is heated and vaporized in a deposition chamber in which the pressure is reduced and a second step in which a layer included in an EL layer is deposited in the deposition chamber are performed while exhaustion is performed and the partial pressure of water in the deposition chamber is measured with a mass spectrometer. Alternatively, the deposition chamber in the deposition apparatus includes a deposition material chamber and is connected to an exhaust mechanism. The deposition material chamber is separated from the deposition chamber by a sluice valve, includes a deposition material holding portion including a heating mechanism, and is connected to a mass spectrometer and an exhaust mechanism.
Abstract:
An object of the present invention is to provide an apparatus for successive deposition used for manufacturing a semiconductor element including an oxide semiconductor in which impurities are not included. By using the deposition apparatus capable of successive deposition of the present invention that keeps its inside in high vacuum state, and thus allows films to be deposited without being exposed to the air, the entry of impurities such as hydrogen into the oxide semiconductor layer and the layer being in contact with the oxide semiconductor layer can be prevented; as a result, a semiconductor element including a high-purity oxide semiconductor layer in which hydrogen concentration is sufficiently reduced can be manufactured. In such a semiconductor element, off-state current is low, and a semiconductor device with low power consumption can be realized.
Abstract:
A display apparatus with high resolution or high definition is provided. The display apparatus includes a first light-emitting device, a second light-emitting device, a first insulating layer, a first coloring layer, and a second coloring layer. The first light-emitting device includes a first pixel electrode, a first EL layer, and a common electrode that are stacked in this order. The second light-emitting device includes a second pixel electrode, a second EL layer, and the common electrode that are stacked in this order. The first coloring layer overlaps with the first light-emitting device. The second coloring layer transmitting light of a color different from a color of light transmitted by the first coloring layer overlaps with the second light-emitting device. The first EL layer and the second EL layer have the same structure and are separated from each other. An end portion of the first EL layer is positioned over the first pixel electrode. An end portion of the second EL layer is positioned over the second pixel electrode. The first insulating layer covers side surfaces of the first pixel electrode, the second pixel electrode, the first EL layer, and the second EL layer. The common electrode is positioned over the first insulating layer.
Abstract:
To support preparation of a document with consistency. First document data and second document data are received, the first document data is divided into a plurality of first blocks, the second document data is divided into a plurality of second blocks, a plurality of first combinations each including corresponding first and second blocks are determined, and of the plurality of first combinations, one or more second combinations with a difference between the corresponding first and second blocks are shown, any one of the plurality of first blocks included in the second combinations is received as a first designated block, the second block corresponding to the first designated block is received as a second designated block, and of the first combinations, a third combination in which presence or absence of establishment of textual entailment between the first designated block and the first block is different from presence or absence of establishment of textual entailment between the second designated block and the second block is shown.