摘要:
An electrode for a lithium-ion secondary battery includes a collector of copper or the like, an electrode material layer being form on one surface and both surfaces of the collector and including an active material and a binder, and a binder-rich layer being formed in a dot shape or a stripe shape with a predetermined interval in the interface between the collector and the electrode material layer and having a binder concentration higher than that of the electrode material layer. Accordingly, a concentration gradient of the binder is provided to the surface of the collector. By arranging the binder-rich layer at a predetermined interval, it is possible to improve the adhesiveness between the collector and the electrode material layer due to an anchor effect and to guarantee conductivity between the collector and the electrode material layer.
摘要:
The disclosed method for producing a microstructure can form a complicated three-dimensionally formed microstructure with few steps.A first mask pattern (22) containing a light transmitting section and a light blocking section is disposed along an unexposed photosensitive resin (42), and a second mask pattern (32) containing a light transmitting section and a light blocking section is disposed on the reverse side of the first mask pattern (22) from the photosensitive resin (42). Additionally, by means of integrally rotating the photosensitive resin (42) and the first mask pattern (22) around a central axis (Z) that passes through the photosensitive resin (42) and the first mask pattern (22), and at the same time radiating exposure light from the reverse side of the second mask pattern (32) from the photosensitive resin (42) and the first mask pattern (22) in a direction that is inclined obliquely with respect to the direction of the central axis (Z), the light beam of the exposure light that is transmitted through the light transmitting section of the second mask pattern (32) and the light transmitting section of the first mask pattern (22) exposes the photosensitive resin (42).
摘要:
The disclosed method for producing a microstructure can form a complicated three-dimensionally formed microstructure with few steps.A first mask pattern (22) containing a light transmitting section and a light blocking section is disposed along an unexposed photosensitive resin (42), and a second mask pattern (32) containing a light transmitting section and a light blocking section is disposed on the reverse side of the first mask pattern (22) from the photosensitive resin (42). Additionally, by means of integrally rotating the photosensitive resin (42) and the first mask pattern (22) around a central axis (Z) that passes through the photosensitive resin (42) and the first mask pattern (22), and at the same time radiating exposure light from the reverse side of the second mask pattern (32) from the photosensitive resin (42) and the first mask pattern (22) in a direction that is inclined obliquely with respect to the direction of the central axis (Z), the light beam of the exposure light that is transmitted through the light transmitting section of the second mask pattern (32) and the light transmitting section of the first mask pattern (22) exposes the photosensitive resin (42).
摘要:
A communication apparatus for an information processing apparatus includes: a data acquiring unit which acquires data; a determination unit which determines whether a volume of the data is greater than a reference value or not; a wireless communication method deciding unit which decides a wireless communication method, and which decides a wireless communication method to be used for data transmission, based on a communication speed of each method if the determination unit determines that the volume of the data is greater than the reference value, and decides a wireless communication method, based on power consumption if the volume of the data is determined as equal to or smaller than the reference value; and a wireless communication processing control unit which controls processing to transmit the data.
摘要:
An image forming apparatus according to the invention includes a cooling fan as a cooling device, an image formation processing unit, a changeover unit, a main control unit, a secondary control unit, and a power supply unit. The main control unit and the secondary control unit make an appropriate action in association with each other in the event of the occurrence of an abnormality in the cooling device. The changeover unit is configured to connect the image formation processing unit to the main image formation control unit in the main control unit in a case where power is supplied to the main control unit, and to connect the image formation processing unit to the secondary image formation control unit in the secondary control unit in a case where power supply to the main control unit is stopped by the power supply control unit in the secondary control unit.
摘要:
The present invention is comprised of: the service execution unit 5701 that executes a service in the ServiceContext for Abstract service 2108; a method 6112 that associates the ServiceContext 2108 with resource set information indicating plural resources used by the service, when an application requests the service execution unit 5701 to execute the service; the ServiceContext management unit 2001 that holds the ServiceContext 2108 and the resource set information associated with each other by the method 6112; and the JMF 1705a that provides the service with the resource set information held by the ServiceContext management unit 2001.
摘要:
The present invention provides a traffic engineering apparatus which performs traffic engineering, including: an optimal branch point determination unit which determines an optimal branch point in a network to realize a predetermined policy; and a traffic flow regulation unit which regulates a traffic flow rate into the local node during reception of traffic based on the optimal branch point determined by the optimal branch point determination unit.
摘要:
Provided is a technology of embedding watermark data into an arbitrarily-shaped region by applying a wavelet transform. Prepared are: image data into which the watermark data is to be embedded; a shape map that defines the arbitrarily-shaped region into which the watermark data is to be embedded within the image data; and the watermark data. An SA-DWT processing unit uses the shape map to recognize a given region included in the arbitrarily-shaped region within the image data, and subjects image data in the given region to the wavelet transform. The wavelet transform causes the image data in the arbitrarily-shaped region to be divided into frequency bands, and a watermark data embedding unit embeds the watermark data into a frequency space of the image data generated by the dividing. An SA-IDWT processing unit subjects the resultant to an inverse wavelet transform, and watermark-embedded image data is generated.
摘要:
A path control method includes a procedure for developing a path control message including regional information in transmission on the network. The regional information designates a path and/or a path length for transmitting the path control message. The path control message includes a regional property for instructing each node as to how to process the regional information either in a strict manner or in a flexible manner. With reference to the regional information and/or the regional property, each node is capable of selecting a destination node to which the path control message is to be transmitted, stopping the further transmission of the path control message, or discarding the path control message.
摘要:
A device for introducing a substance into a cell which can realize a high-efficient external substance introduction by means of electro-poration not depending on a cell size, a cell clamping device capable of clamping a cell at many locations, and a flow path forming method capable of efficiently forming a flow path. The device for introducing a substance into a cell (10a) comprises an insulating thin film (2) having a pore (1) and a pair of electrodes (6, 7) disposed on the opposite sides of the film (2) across the pore (1). When a cell (9) is fixed to the pore (1) and a pulse voltage is applied to between the electrodes (6, 7) with a space (5) filled with a fluid containing substance (4) to be introduced into the cell (9), a field concentration to a pore portion is used to destroy a cell membrane to thereby introduce the substance (4) into the cell (9).