摘要:
In one embodiment, there is provided a fuel cell evaluator for evaluating a characteristic of a fuel cell based on a frequency characteristic of impedance of the fuel cell. The evaluator includes: an impedance acquisition unit configured to acquire impedances of the fuel cell for a certain current value in a Tafel region by changing a measurement frequency; an extraction unit configured to extract a reaction resistance from the acquired impedances; a calculator configured to calculate the product of the reaction resistance and the certain current value; and an indicator configured to indicate the product calculated by the calculator as the frequency characteristic of the impedance of the fuel cell.
摘要:
In one embodiment, there is provided a fuel cell evaluator for evaluating a characteristic of a fuel cell based on a frequency characteristic of impedance of the fuel cell. The evaluator includes: an impedance acquisition unit configured to acquire impedances of the fuel cell for a certain current value in a Tafel region by changing a measurement frequency; an extraction unit configured to extract a reaction resistance from the acquired impedances; a calculator configured to calculate the product of the reaction resistance and the certain current value; and an indicator configured to indicate the product calculated by the calculator as the frequency characteristic of the impedance of the fuel cell.
摘要:
There is provided a secondary battery tester for testing a state of a secondary battery based on an impedance characteristic of the secondary battery. The tester includes: an impedance acquiring section configured to acquire an impedance value of the secondary battery; and a determining section configured to determine a state of a solid electrolyte interface (SEI) layer of the secondary battery based on the impedance value acquired by the impedance acquiring section.
摘要:
A process for production of diene rubber polymers wherein, during production of a diene rubber polymer by emulsion polymerization, the polymerization is initiated using a portion of the starting material and the polymerization is continued with either continuous or intermittent dropwise addition of the remainder of the starting material during the polymerization, and wherein at least ½ of the total amount of the water and of the monomer in the starting material used is added dropwise during the polymerization, and the temperature of the dropwise added water and monomer is kept to at least 20° C. below the polymerization temperature. The process can produce industrially useful diene rubber polymer latexes at a high productivity rate.
摘要:
The processing material's shape data is obtained by measuring the three-dimensional shape of the processing material W by the three-dimensional measuring device 45, the machine's shape data defining the three-dimensional shape of the machine side including the main shaft head provided with the processing tool and the tool holder attached thereto is obtained, and whether the coordinate position of said processing material given by said processing material's shape data is in the space to be occupied by the machine given by said machine's shape data or not is determined at the relative movement position between the main shaft head (43) and the work table (35) by the execution of the processing program by the arithmetic processing by means of an arithmetic processing means, and when the coordinate position of the processing material W is in the space to be occupied by the machine, it is determined that the processing material W and the machine interfere with each other.
摘要:
A porosity measuring device (10) according to the present invention includes a magnetic field generating section (20), a dispersoid measuring section (30) configured to measure movement of a dispersoid (s) dispersed in a dispersion medium (m) in a state where a magnetic field is generated by the magnetic field generating section (20), and an operating section (40) configured to obtain a porosity of the dispersoid (s) on the basis of a measurement result of the dispersoid measuring section (30). The operating section (40) obtains a magnetophoretic velocity of the dispersoid (s) from the measurement result of the dispersoid measuring section (30). The operating section (40) preferably obtains the magnetophoretic velocity of the dispersoid (s) from the measurement result of the dispersoid measuring section (30).
摘要:
As external connection terminals for an emitter electrode (12) of an IGBT chip, a first emitter terminal (151) for electrically connecting a light emitter in a strobe light control circuit to the emitter electrode (12) and a second emitter terminal (152) for connecting a drive circuit for driving an IGBT device to the emitter electrode (12) are provided. The first emitter terminal (151) and the second emitter terminal (152) are individually connected to the emitter terminal (12) by wire bonding.
摘要:
As external connection terminals for an emitter electrode (12) of an IGBT chip, a first emitter terminal (151) for electrically connecting a light emitter in a strobe light control circuit to the emitter electrode (12) and a second emitter terminal (152) for connecting a drive circuit for driving an IGBT device to the emitter electrode (12) are provided. The first emitter terminal (151) and the second emitter terminal (152) are individually connected to the emitter terminal (12) by wire bonding.
摘要:
As external connection terminals for an emitter electrode (12) of an IGBT chip, a first emitter terminal (151) for electrically connecting a light emitter in a strobe light control circuit to the emitter electrode (12) and a second emitter terminal (152) for connecting a drive circuit for driving an IGBT device to the emitter electrode (12) are provided. The first emitter terminal (151) and the second emitter terminal (152) are individually connected to the emitter terminal (12) by wire bonding.