Abstract:
An access point device of a wireless LAN connecting a client device to a wired LAN: monitors a connection between the access point device and the wired LAN; transmits a portal request, to an adjacent access point device, indicating a request for serving as a proxy connection node accessing the wired LAN and implements a process as a relay node between the adjacent access point device and the client device, if the connection between the access point device and the wired LAN is not normal; and implements a process as a proxy connection node indicated by a portal request sent from the adjacent access point device, if the connection between the access point device and the wired LAN is normal where the access point device receives the portal request from the adjacent access point device.
Abstract:
A die for extrusion-forming a honeycomb structure which includes: a die base provided with ceramic puddle introducing holes and slits in communication with the ceramic puddle introducing holes; and a substrate layer, which roughly defines the final width of the slits, and a surface layer, which precisely defines the final width of the slits, formed on the die base in this order so that the final width of the slits becomes 15 to 200 μm, wherein the surface layer is made up of tungsten carbide particles which are 5 μm or less in average particle diameter and contain W3C as a main ingredient. According to this invention, there is provided a die for extrusion-forming a honeycomb structure which can restrain fluctuation in extrusion-forming speed among its parts and resistance to pushing force, both caused at the time of extrusion-forming, to be very small and is superior in productivity and durability.
Abstract:
The liquid ejection apparatus has: a head having a nozzle group including a plurality of nozzles which are aligned in a first direction and performs ejection of resist liquid onto a wiring substrate; a scanning device which causes the head and the wiring substrate to move relatively in the first direction; an ejection control device which controls the ejection of the resist liquid from the head; and a scanning control device which controls the scanning device in such a manner that the head and the wiring substrate are relatively moved only once in the first direction, through a region of the wiring substrate which corresponds to one relative movement in the first direction of the wiring substrate and the scanning device, wherein the ejection control device controls the ejection of the resist liquid from the head to cause the resist liquid to be ejected onto a same position of the wiring substrate sequentially, at prescribed time intervals, from different nozzles of the nozzle group, to deposit the resist liquid ejected onto the same position of the wiring substrate sequentially from the different nozzles of the nozzle group, in such a manner that a resist pattern having a prescribed thickness and a prescribed pattern is formed on the wiring substrate.
Abstract:
A metal pattern forming method includes the steps of: applying one of a metal salt solution and an acetylene compound solution onto the substrate, the acetylene compound solution containing an acetylene compound expressed by a general formula of: (R.(C≡C)l)k-(L)-(A)m, where R is one of a metal element, hydrogen, a carboxyl group or salt thereof, an alkyl group, a cycloalkyl group, an alkenyl group, an alkynyl group, an aryl group, an aralkyl group and a heterocyclic group, L is one of a compound linking A with a carbon-carbon triple bond and a group having (k+m) valency, A is one of a polyoxyether group, a polyaminoether group and polythioether group, k and l are integers not less than 1, and m is an integer not less than 0; and then applying the other of the metal salt solution and the acetylene compound solution onto the substrate so that the metal salt solution reacts with the acetylene compound solution to form a metal precipitate on the substrate, wherein at least one of the applying steps is performed by using an inkjet apparatus to directly form the metal pattern composed of the metal precipitate on the substrate.
Abstract:
A metallization forming method comprises the steps of: patterning a silver halide emulsion on a surface of at least one side of a substrate in accordance with a desired metallization pattern to form a patterned emulsion layer; exposing the patterned emulsion layer; and thereafter developing the exposed patterned emulsion layer to form a patterned conductive silver layer having the metallization pattern.
Abstract:
A lenticular print that allows stereoscopic viewing is formed by forming lenticular lenses, each having a convex sectional shape, on an image-recorded member, which has groups of parallax images arranged and written thereon. Each group of parallax images includes strips of parallax images. The lenticular lenses are formed at positions corresponding to the individual groups of parallax images. The lenticular print is formed through a partition wall forming step of forming partition walls between the groups of parallax images on the image-recorded member, the partition walls extending in a longitudinal direction of the parallax images and having a predetermined height; and a lens forming step of forming the lenticular lenses between the partition walls by depositing a transparent material between the partition walls so that the deposited transparent material bulges upward from the partition walls due to surface tension thereof to have a substantially circular sectional shape.
Abstract:
An inkjet recording device includes: an electrostatic inkjet recording unit having at least one nozzle for ejecting ink with an electrostatic force, the electrostatic inkjet recording unit printing a plurality of disparity images by ejecting the ink onto a surface of a lenticular sheet, the lenticular sheet including an array of lenticular lenses, each lenticular lens having a predetermined width and a convex cross-sectional shape, and the disparity images being printed correspondingly to the predetermined width on the surface of the lenticular sheet opposite from a surface of the lenticular sheet having the convex shapes of the lenticular lenses; a scanning unit for two-dimensionally moving the electrostatic inkjet recording unit relative to the lenticular sheet; and a controlling unit for controlling driving of the electrostatic inkjet recording unit and the scanning unit.
Abstract:
Objects of the present invention are to facilitate filling out by hand an electronic paper and to realize digitization of contents with which the electronic paper is filled out by hand with a simple structure. A read image is obtained by optically reading a reading-object of the electronic paper. Based on the document information written on the electronic paper and writing-conditions during document writing, which are represented by the document information, a display image of the document in accordance with the read image information is formed. A written image is separated and extracted by converting a density only of pixels among the respective pixels of the read image, whose densities vary in accordance with the document writing and which correspond to a portion, to which ink of a pen for the handwriting is not adhered.
Abstract:
A metal pattern forming method includes the steps of: applying one of a metal salt solution and an acetylene compound solution onto the substrate, the acetylene compound solution containing an acetylene compound expressed by a general formula of: (R·(C≡C)l)k−(L)−(A)m, where R is one of a metal element, hydrogen, a carboxyl group or salt thereof, an alkyl group, a cycloalkyl group, an alkenyl group, an alkynyl group, an aryl group, an aralkyl group and a heterocyclic group, L is one of a compound linking A with a carbon-carbon triple bond and a group having (k+m) valency, A is one of a polyoxyether group, a polyaminoether group and polythioether group, k and l are integers not less than 1, and m is an integer not less than 0; and then applying the other of the metal salt solution and the acetylene compound solution onto the substrate so that the metal salt solution reacts with the acetylene compound solution to form a metal precipitate on the substrate, wherein at least one of the applying steps is performed by using an inkjet apparatus to directly form the metal pattern composed of the metal precipitate on the substrate.
Abstract:
A method forms a resin film on a substrate by depositing droplets of resin liquid by an inkjet method. The method includes: a first resin liquid arrangement step of arranging a plurality of droplets of a first resin liquid separately from each other on a substrate in such a manner that the droplets do not make contact with each other; a first resin liquid curing step of curing at least a surface of each of the droplets of the first resin liquid arranged on the substrate; a second resin liquid arrangement step of arranging a plurality of droplets of a second resin liquid at substantially central positions between the droplets of the first resin liquid on the substrate, after the at least the surface of each of the droplets of the first resin liquid is cured; and a second resin liquid curing step of curing the droplets of the second resin liquid arranged on the substrate.