Abstract:
Ein Luftreiniger umfasst: eine Ummantelung 20, das eine obere Fläche 21, eine Seitenfläche 22 und eine untere Fläche 23 aufweist, das mit einer Einlassöffnung 24 in dem Mittenabschnitt der oberen Fläche 21 versehen ist und das mit einer Auslassöffnung 26, 27 an der Seitenfläche 22 oder an der äußeren Kante der oberen Fläche 21 und der Seitenfläche 22 versehen ist; eine selbstantreibende Vorrichtung 30; einen Motor 40, der innerhalb der Ummantelung 20 angeordnet ist und der eine Ausgangswelle 41 aufweist; einen Lüfter 50, der innerhalb der Ummantelung 20 angeordnet ist und durch die Drehung der Ausgangswelle 41 des Motors 40 gedreht wird; ein erstes Filterelement 60, das innerhalb der Ummantelung 20 angeordnet ist, das durch die Drehung der Ausgangswelle 41 des Motors 40 gedreht wird und das näher an der Seitenfläche der Ummantelung angeordnet ist als der Lüfter 50; und ein zweites Filterelement 70, das innerhalb der Ummantelung 20 angeordnet ist, das durch die Drehung der Ausgangswelle 41 des Motors 40 gedreht wird und das näher an der Seitenfläche der Ummantelung angeordnet ist als das erste Filterelement 60.
Abstract:
PROBLEM TO BE SOLVED: To provide a jet generating device or the like capable of reducing noise due to turbulence of air current of composite jet. SOLUTION: The closer a vibration plate 3 is positioned, the more turbulence of air current due to vibration of the vibration plate 3 should exist. Because flow of air flowing in and out via ducts 2a, 2b, and the vibrating vibration plate 3 interfere. Such turbulence of air current becomes one of causes of noise. However, the ducts 2a, 2b are arranged roughly in parallel with a vibration direction R. Consequently, air current via the ducts 2a, 2b near the vibration plate 3 interferes with the vibrating vibration plate 3 but air current via the ducts 2a, 2b remote from the vibration plate 3 does nit interferes with the vibrating vibration plate 3. Consequently, noise can be reduced. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a cooler which can effectively dissipate a heat generated from a heat generation source while suppressing a generation of a noise by suppressing an ejected volume of gas, a heat sink, and an electronic apparatus mounted with the cooler and the heat sink. SOLUTION: A heat sink 3 is provided with notches 24a, 24b capable of taking in an air as gas from outside at a side of receiving an air ejected from first and second nozzles 6, 7 as openings of a jet generation mechanism 2. Accordingly, a pressure in the vicinity of the notches 24a, 24b is lowered by an air flow ejected from the first and second nozzles 6, 7, and an external air is sucked from the notches 24a, 24b. Consequently, a larger quantity of gas than that ejected from the first and second nozzles 6, 7 is discharged from an outlet of the heat sink, and the generation of the noise is suppressed by suppressing the ejected volume as much as possible, and consequently the heat generated from the heat generation source can be effectively dissipated. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an optical multilayered structure which has a simple configuration, can suppress the occurrence of distortion caused by internal stress, and is suitably used for an image display device. SOLUTION: An optical multilayered structure 1 has a structure in which an electrically conductive layer 11 which comes in contact with a substrate 10, a gap part 12 which has a size capable of causing an interference phenomenon of light, and change the size, and an optical thin film 13 are arranged on the substrate 10 in this order. The peripheral edge of the movable part 13E of the optical thin film 13 is uniformly supported by supporting parts 13A, 13B, 13C and 13D, thereby the occurrence of distortion caused by internal stress is suppressed. An etchant easily reaches a sacrifice layer when forming the gap part 12 by sacrifice layer etching, because through holes 14A, 14B, 14C and 14D are formed in the movable part 13E.
Abstract:
PROBLEM TO BE SOLVED: To provide a force sense indication device which is small-sized and inexpensive and which is fail-less with no risk of damage to the user due to a runaway or the like. SOLUTION: A force sense indicating device is composed of a cylinder 2 including a cylinder barrel 3, a piston 4 adapted to extend and retract from and into the cylinder 3, fluid chambers 6, 7 which are parted from each other by a driven part 4b of the piston 4 within the cylinder 3 and fluid 11 filled in the fluid chambers 6, 7, a coupling means 12 connecting the piston 4 with a force sensing indication object, a direct coupling means 8 for directly coupling between the two fluid chambers 6, 7 through a valve 10 and a control means for controlling the opening degree of the valve.
Abstract:
PROBLEM TO BE SOLVED: To apply printing to various objects to be printed other than usual printing paper. SOLUTION: A carriage unit 20 supporting a carriage 10 having a printing head so as to make the same movable in an X-direction is constituted alone and a positioning mechanism and a height adjusting mechanism are provided and the carriage unit 20 is arranged to a printing object feed table 40 or a conveyor apparatus in a positioned state and appropriately adjusted in height to apply printing to various printing objects 80 fed on the printing object feed table 40 or the conveyor apparatus in a Y-direction.
Abstract:
PROBLEM TO BE SOLVED: To apply printing to various objects to be printed other than usual printing paper. SOLUTION: In a usual state, a carriage unit part 20 supporting a carriage 10 having a printing head is attached to a sheet feed part 40 feeding a sheet to be printed to feed usual printing paper in the sheet feed part 40 to perform printing and the carriage unit part 20 is separated from the sheet feed part 40 to be attached to a solid matter tray having a height adjusting mechanism to apply printing to various objects to be printed on the solid matter tray.
Abstract:
PROBLEM TO BE SOLVED: To secure stability of discharge even after leaving a non-printing state as it is for a long period by a method wherein when the non-printing state continues for a long time in a printing head of a carrier jet system, an opening part of each nozzle is blocked by coating it with a paste material, and that is removed in recording. SOLUTION: In order to prevent mutual mixing of dilute solution 51 and ink 52 and prevent their evaporation between adjacent first and second nozzles 34, 36 in non-printing with a printing head 3, a means for coating paste material 61 closing opening parts of the nozzles 34, 36, and a means for removing the paste material 61 are provided. As the means for coating the paste material 61, a tank 62 in which the paste material 61 is filled is connected to a paste material coating part in which the tank 62 and a nozzle 63 are formed by piping 65, and a coating plate 66 is provided. When the paste material is removed, a paste material vacuum part 73 is moved, an elastic member 74 is pushed on one main surface on which the paste material 61 is coated with specific pressure, and the paste material is attracted.
Abstract:
PROBLEM TO BE SOLVED: To provide a jet flow generating device, a nozzle body, and an electronic apparatus capable of appropriately generating synthetic jet flows even if the jet flow generating device is provided with multiple rows of nozzles in the vertical direction. SOLUTION: A first flow passage group 2a is communicated with a first chamber 5a, and openings at the front face 2e of the nozzle body 2 of the first flow passage group 2a are disposed, for example, at the upper half side and the right half side of the front face 2e. A second flow passage group 2b is communicated with a second chamber 5b, and the openings at the front face 2e of the second flow passage group 2b are disposed, for example, at the upper half side and the left half side of the front face 2e. A third flow passage group 2c is communicated with a third chamber 5c, and the openings at the front face 2e of the third flow passage group 2c are disposed, for example, at the lower half side and the left half side of the front face 2e. A fourth flow passage group 2d is communicated with a fourth chamber 5d, and openings at the front face 2e of the fourth flow passage group 2d are disposed, for example, at the lower half side and the left half side of the front face 2e. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a jet generator and an electronic device with it wherein transmission of vibration to the outside of the jet generator can be restrained without lowering a delivery amount of gas or without lowering cooling efficiency. SOLUTION: A vibration plate 3b is moved to the upward direction at the timing when a vibration plate 3a is moved to the downward direction. The vibration plate 3b is moved to the downward direction at the timing when the vibration plate 3a is moved to the upward direction. The vibration plates 3a and 3b are vibrated so that exciting force weakens with each other, and thereby, transmission of the vibration of the vibration plates 3a and 3b to a casing 1 or the outside of the the jet generator 10 can be restrained. The plurality of vibration plates are used, and the excitation force weakens with each other even when an amplitude is large, and therefore, the delivery amount of air is not lowered. COPYRIGHT: (C)2007,JPO&INPIT