To provide a heat pass connector having a heat dissipation function. Connectors 2a and 2b that are used by being attached to substrates B1 and B2 and are fittable into counterpart connectors respectively include contacts C, housings D that hold the contacts C, and shells 40 and 90 each formed of a highly conductive material and surrounding and attached to the housings D, the shells 40 and 90 respectively include mount sections M for bonding the connectors 2a and 2b to substrates B1 and B2 and heat dissipation sections K each having a heat dissipation function, the substrates B1 and B2 respectively include shell bonding sections S for bonding the mount sections M, heat from the heat generation section H on the substrate B1 or B2 being transferred to the shell bonding sections S, and the heat transferred to the shell bonding sections S is dissipatable by being transferred from the mount sections M to the heat dissipation sections K when the shells 40 and 90 are attached to the substrates B1 and B2 by bonding the mount sections M to the shell bonding sections S.
A male-female mating type electrical connector includes a plug connector PC retaining a plurality of plug-side signal contacts 80, and a receptacle connector RC retaining a plurality of receptacle-side signal contacts 50. The plug-side signal contacts 80 are each composed of an elongated plate member rectangular in cross section, and each have a plug-signal-side contacting portion 86 having a contacting face having an arcuate cross-sectional shape and protruding, and a plug-signal-side abutting portion 85 having a contacting face having an arcuate cross-sectional shape. The receptacle-side signal contacts 50 are each composed of an elongated plate member rectangular in cross section, and each have a receptacle-signal-side contacting portion 56 having a contacting face having a planar shape and protruding toward a side in which the receptacle-side signal contact 50 contacts a mating contact, and a receptacle-signal-side abutting portion 55 having a mating-contact contacting face having a planar shape.
The purpose of the present invention is to provide a charging device capable of sufficiently charging a storage battery even during self-sustained operation. Provided is a charging device (20) capable of charging a storage battery with the power supplied from an outlet (12a) for self-sustained operation of a power conditioner (12) which has a self-sustained operation function, said charging device (20) comprising: an increase and decrease means (charge control circuit (22)) for increasing and decreasing a charging current supplied to a storage battery (23); a detection means (delta V determination circuit (21)) for detecting a temporal change in a voltage or current supplied from a power generating source (solar battery (14)) to the power conditioner (12); and a control means (charge control circuit (22)) for increasing the charging current over time via the increase and decrease means, continuing to increase the charging current via the increase and decrease means when the amount of decrease in the voltage or current over time as detected by the detection means is smaller than a prescribed threshold, and decreasing the charging current by a prescribed amount via the increase and decrease means when the amount of decrease in the voltage or current over time is the prescribed threshold or more.
H01M 10/48 - Accumulateurs combinés à des dispositions pour mesurer, tester ou indiquer l'état des éléments, p. ex. le niveau ou la densité de l'électrolyte
H02J 7/35 - Fonctionnement en parallèle, dans des réseaux, de batteries avec d'autres sources à courant continu, p. ex. batterie tampon avec des cellules sensibles à la lumière
4.
METHOD OF HIGHLY EFFICIENTLY EXTRACTING ACTIVE INGREDIENT FROM PLANT OR MUSHROOM
A method of extracting an active ingredient from a plant or a mushroom characterized by involving the step of extracting the active ingredient which comprises stirring a mixture consisting of 1 part by weight of the above-described material and 2 to 7 parts by weight of water in a container that is closed from the viewpoint of pressure at a temperature of 100 to 250oC under such conditions as applying a high shear force, thus grinding the material to give an average maximum size of 1 to 20 μm, obtaining a ground mixture consisting of an aqueous phase containing the active ingredient and a solid residue having been thus ground, and then recovering the aqueous phase.
A61K 36/00 - Préparations médicinales de constitution indéterminée contenant du matériel provenant d'algues, de lichens, de champignons, ou de plantes, ou leurs dérivés, p. ex. médicaments traditionnels à base de plantes
A method of converting a substance containing lignocellulose or a substance containing cellulose into a substance capable of converting into ethyl alcohol by yeast, characterized in that a mixture composed of 1 part by weight of the substance and 0.5 to 5 parts by weight of water is stirred in a vessel closed in terms of pressure at a temperature of 150 to 270˚C under a condition that provides a high shearing force to grind the substance into an average maximum size of 1 to 20 μm thereby causing the degradation of the substance and converting at least 15% by weight of cellulose in the substance into a substance capable of converting into ethyl alcohol. By using this method, a saccharide for alcohol fermentation can be produced at low cost from lignocellulose or cellulose.
C12P 7/10 - Éthanol en tant que produit chimique et non en tant que boisson alcoolique préparé comme sous-produit, ou préparé à partir d'un substrat constitué par des déchets ou par des matières cellulosiques d'un substrat constitué par des matières cellulosiques
C13B 45/02 - Machines de coupe spécialement adaptées pour le sucre combinées à des machines de tri et d'emballage
C13K 1/02 - GlucoseSirops glucosés obtenus par saccharification de matières cellulosiques
A reformer furnace that is capable of recovering the sensible heat of 700° to 800°C coke oven gas, and that is capable of gasifying any tar fraction and tar sludge of the coke oven gas to thereby attain efficient production of a gas fuel with low unreacted tar content. There is provided a reformer of coke oven gas from coke oven comprising a mixing zone and, connected to the downstream side thereof, a diffusion zone, wherein a coke oven gas and a reaction gas are introduced in the mixing zone, and wherein structuring is made so that the cross-section area of flow channel in diffusion zone entrance space at which the mixing zone shifts to the diffusion zone is smaller than the cross-section area of the mixing zone, and wherein the reformer internal wall at diffusion zone entrance space connected to the exit of the mixing zone exhibits a divergent angle of 5 to 10 degrees from the central axis of the diffusion zone in the direction of flow of gas mixture.