Abstract:
A storage positioning device that disposes a storage having a plurality of storage sections, the storage positioning device including: a holding portion configured to hold the storage and adjust a position of the storage; and a control unit configured to control the position of the storage held by the holding portion. The control unit controls the position of the storage such that a predetermined storage section, among the plurality of storage sections of the storage, is brought to a position where an article is discharged.
Abstract:
A solar cell module includes a front surface protective substrate including transparent resin, a rear surface protective substrate, and a photoelectric converter including at least one solar cell connected via a tab lead and arranged between the front surface protective substrate and the rear surface protective substrate. The solar cell module further includes at least one reinforcing layer, at least one seal layer, and a gel polymer layer, which are arranged between the photoelectric converter and the front surface protective substrate.
Abstract:
A solar cell module includes a first resin substrate, a first resin layer provided over the first resin substrate, a second resin layer provided over the first resin layer, a photoelectric converter provided over the second resin layer, and a third resin layer provided over the photoelectric converter and the second resin layer, wherein a tensile modulus of elasticity of the first resin layer is smaller than a tensile modulus of elasticity of each of the resin substrate, the second resin layer, and the third resin layer.
Abstract:
A coating agent composition of the present invention contains photocatalyst particles composed of metal oxide in which an upper end potential of a valence band is 3 V (vs SHE) or more and a lower end potential of a conduction band is 0.16 V (vs SHE) or less. Moreover, the coating agent composition contains cuprous oxide particles, metal oxide particles without photocatalytic activity, a binder resin, and an organic solvent. Then, in 100 parts by mass of a non-volatile matter content of the coating agent composition, a content of the photocatalyst particles is 1 to 80 parts by mass, a content of the cuprous oxide particles is 0.1 to 5 parts by mass, and a total content of the photocatalyst particles and the metal oxide particles is 40 to 80 parts by mass.
Abstract:
A wearable sensing device includes: a sensor provided on clothing worn by a worker wearing conductive work clothes; and an electronic device connected to the sensor. The electronic device includes a ground connection part that makes contact with the conductive work clothes to be electrically connected to the conductive work clothes.
Abstract:
A solar cell module that is one example of an embodiment of the present invention comprises: a plurality of solar cells; a wiring member for connecting adjacent solar cells together; a first protection substrate provided on the light-receiving-surface side of the solar cells; a second protection substrate provided on the rear-surface side of the solar cells; and an encapsulant layer for sealing the solar cells and provided between the first protection substrate and the second protection substrate. The first protection substrate is a resin substrate, and the linear expansion coefficient (α) of the encapsulant layer is 10-250 (10−6/K), and the tensile modulus of elasticity (E) thereof satisfies the condition in Formula 1: 140×exp(0.005α) MPa
Abstract:
A solar cell module includes a front surface substrate, a seal layer arranged under the front surface substrate to seal a photoelectric converter, a low thermal expansion-contraction layer arranged under the seal layer, and a rear surface substrate arranged under the low thermal expansion-contraction layer. The solar cell module further includes a stress-reducing resin layer arranged between the low thermal expansion-contraction layer and the rear surface substrate. The low thermal expansion-contraction layer has a smaller coefficient of linear expansion than the rear surface substrate, and the stress-reducing resin layer has a smaller tensile modulus of elasticity than the low thermal expansion-contraction layer and the rear surface substrate.
Abstract:
a pressure sensor 1 according to the first aspect of the invention includes: a substrate 50; and a functional element 40 which is laid on the substrate 50 and is composed of functional titanium oxide including crystal grains of at least one of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5) and having the property that at least a portion of crystal grains of at least one of β-phase trititanium pentoxide (β-Ti3O5) and λ-phase trititanium pentoxide (λ-Ti3O5) change into crystal grains of titanium dioxide (TiO2) when the functional titanium oxide is heated to 350° C. or higher. The substrate 50 includes a substrate thin-film section 51 having a thin film form in which the thickness in the stacking direction of the substrate 50 and the functional element 40 is smaller than that in the other directions.
Abstract:
A solar cell module includes a resin substrate, a first resin layer, photoelectric converters, and a second resin layer. The first resin layer is provided under the resin substrate. The photoelectric converters are provided under the first resin layer. The second resin layer is provided under the first resin layer to penetrate the first resin layer or cover the first resin layer from outside to be glued to the resin substrate. Adjacent photoelectric converters are electrically connected to each other by a connecting member. A tensile modulus of elasticity of the first resin layer is lower than that a tensile modulus of elasticity of the resin substrate and a tensile modulus of elasticity of the second resin layer.
Abstract:
A wearable sensing device includes clothing worn by a user, and a sensor unit including a sensor and being attached to the clothing. The sensor unit includes: a body; first and second bracket parts provided to sandwich the body and fixed to the clothing; and first and second hinge parts respectively coupling the body and first and second bracket parts. The first and second bracket parts of the sensor unit are respectively attached to first and second sensor attachment parts provided on clothing 22L.