Abstract:
A method of manufacturing a hydrogen separation membrane with a carrier is characterized by including a first step of providing, between the hydrogen separation membrane and the carrier that supports the hydrogen separation membrane, a low-hardness metal membrane having a hardness that is lower than the hardness of the hydrogen separation membrane, and a second step of joining the hydrogen separation membrane, the low-hardness metal membrane, and the carrier by a cold joining method. In this case, it is possible to suppress the deformation of the hydrogen separation membrane, the low-hardness metal membrane, and the carrier and, as a result, it is possible to prevent damaging of the hydrogen separation membrane. The adhesion of the contact between the hydrogen separation membrane and the carrier is also improved. The result is that it is not necessary to increase the severity of the cold joining conditions.
Abstract:
In response to an input of an instruction of still image capturing when a moving image is being captured, an image pickup apparatus compresses predetermined image data as an IDR frame of a moving image more than once, and uses a plurality of acquired IDR frames more than once to record the IDR frames onto a recording medium as moving image data in such an order that the IDRIDs of the adjacent IDR frames are not identical.
Abstract:
A shooting target detection unit detects a main shooting target from a position where a touch-down operation is performed on a touch panel. A system control device causes a ranging control device and an exposure control device to perform AF processing and AE processing on the main shooting target. The system control device displays a continuous shooting switch near the touched position. The system control device performs continuous shooting if a user moves his/her finger to the continuous shooting switch and then performs a touch-up operation. Whereas, the system control device performs single shooting if the user performs the touch-up operation without moving his/her finger to the continuous shooting switch.
Abstract:
In response to an input of an instruction of still image capturing when a moving image is being captured, an image pickup apparatus compresses predetermined image data as an IDR frame of a moving image more than once, and uses a plurality of acquired IDR frames more than once to record the IDR frames onto a recording medium as moving image data in such an order that the IDRIDs of the adjacent IDR frames are not identical.
Abstract:
An imaging area image is displayed on a monitor instead of an enlarged image after a focus state is maintained by an operation of a second operation member used for instructing maintenance of the focus state, if a first operation member configured to issue an instruction to start focus control is re-operated.
Abstract:
A control device 7 obtains a reformed carbon quantity C supplied to a reform reaction flow channel 21 from a supplied fuel quantity Qf and also obtains a reformed water quantity S supplied to the reform reaction flow channel 21 from a generated power quantity W. Further, it obtains a oxygen consumed quantity consumed through power generation in a fuel cell 3 from the generated power quantity W, a supplied oxygen quantity to be supplied to a cathode flow channel 33 from a supplied cathode gas quantity Qc, and a reformed oxygen quantity O to be supplied to the reform reaction flow channel 21 based on a difference between the supplied oxygen quantity and the consumed oxygen quantity. By correcting a reformed carbon quantity C (delivery of a fuel pump 51) in accordance with the reformed oxygen quantity O, each of O/C and S/C is kept in a target value range.
Abstract:
An image-processing device generates image data in consecutive-photographing mode and stores the image data and file-management information in a removable recording medium. Data on images photographed consecutively is stored in an internal memory of a device in sequence and written into the removable recording medium in sequence. To reduce the number of writing data into the removable recording medium while in the consecutive-photographing mode, the file-management information used for managing a file including the image data is written into the removable recording medium only when a predetermined condition is satisfied while the file-management information is stored and updated in the internal memory.
Abstract:
A method of manufacturing a fuel cell is comprising: a hydrogen permeable membrane forming step of forming a second hydrogen permeable membrane on a first hydrogen permeable membrane; and an electrolyte layer forming step of forming an electrolyte layer on the second hydrogen permeable membrane. In this case, it is possible to form the electrolyte layer having few defects. Adhesiveness is therefore improved between the electrolyte layer and the second hydrogen permeable membrane. Accordingly, a separation is restrained between the electrolyte layer and the second hydrogen permeable membrane.
Abstract:
The present invention provides a hydrogen-generating apparatus comprising two catalytic reactors cyclically operating reforming and regeneration (combustion) mode, in which the reduction in reforming efficiency associated with an increase in switching frequency to the regeneration reaction can be suppressed, and generation of hydrogen by reforming can stably be performed. In the reforming reaction, a cathode offgas discharged from a hydrogen-separation-membrane fuel cell 30 having a hydrogen-permeating film is supplied to PSR reformers 10 and 20, in which the reforming reaction and the regeneration reaction are performed alternately.
Abstract:
A plurality of sets of circuits are provided, each of which generates an impedance code through the use of an impedance control circuit in association with a resistive element connected to an external terminal, and each of which varies the impedance in accordance with such an impedance code. The impedance control circuit includes an impedance comparator which is formed equivalently to the resistive element and the plurality of sets of circuits, and which performs an impedance comparison with each of a plurality of replica circuits to form an up signal that increases the impedance and a down signal that decreases the impedance. Counters are provided adjacent to the individuals of the plurality of sets of circuits to thereby generate the impedance codes in response to the up signal and the down signal.