Abstract:
PROBLEM TO BE SOLVED: To provide a display device and an electronic apparatus with improved moisture-proof properties.SOLUTION: A display device comprises: a display layer 13; a surface film 16 disposed to face a display surface of the display layer 13; and a moisture-proof film 15 disposed between the display layer 13 and the surface film 16 and including a projecting section 15A projecting relatively to an end face of the display layer 13 and to an end face of the surface film 16. Thus, an infiltration path of moisture from a side face into the display layer 13 (distance D1 along the surface) is lengthened by at least an amount corresponding to a top face of the projecting section 15A. Consequently, a moisture-proof function of the moisture-proof film 15 for the display layer 13 is enhanced, and the reliability is improved.
Abstract:
PROBLEM TO BE SOLVED: To provide a display in which a sealing section is allowed to be formed in a desired region.SOLUTION: The display includes: a substrate including a sealing region and a step section, the sealing region surrounding a display region, and the step section surrounding the sealing region from outside; a display layer provided in the display region; and a sealing section provided in the sealing region. In the display, the substrate includes the step section and therefore the sealing section is prevented from being spread outside the step section and the sealing section is allowed to be provided in a desired region.
Abstract:
PROBLEM TO BE SOLVED: To reduce a production cost while lessening the deformation and damage of a nozzle sheet. SOLUTION: The nozzle sheets 25 are arranged, respectively, so that nozzles may be located in a head-chip stationing hole 11b for each head-chip stationing hole 11b in the surface of one side of a module frame 11 and cover a part of the area of the head-chip stationing hole 11b, and the nozzle sheets are formed with the minimum size required for covering a part of the area of the head-chip stationing hole 11b. A flexible wiring substrate 3 is arranged so as to cover the exposed electrode of the head chip 20 in both sides wherein the nozzle sheets 25 of the module frame 11 are provided while its electrode being electrically connected to the electrode of the head chip 20. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To inexpensively produce a head module while enhancing high positional accuracy of a nozzle forming surface between head chips, and to eliminate leakage of liquid due to thermal stress. SOLUTION: The head module comprises a head chip 20 arranged with heating resistors 22, a nozzle sheet 13 on which nozzles 13a are formed, a barrier layer 12 for forming an ink liquid chamber 14, a module frame 11 for supporting the nozzle sheet 13 by being stuck thereto and provided with a hole 11b for arranging the head chip 20, and a buffer tank 15 for covering the head chip arranging hole 11b by being bonded to the surface of the module frame 11 opposite to the side being stuck to the nozzle sheet 13 and forming a common liquid channel 15a communicating with all liquid chambers 14 of the head chip 20 wherein the module frame 11 and the buffer tank 15 have a substantially equal linear expansion coefficient. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To form a line head which can bring about high image quality even if the positional accuracy of individual positional head modules and positional accuracy among the respective head modules are not increased. SOLUTION: An array of nozzles 13a of the "N"th (N is a natural number) head module 10 (N) among the head modules 10, and an array of nozzles 13a of the adjacent "N+1"th head module 10 (N+1) overlap each other in the arrangement direction (the longitudinal direction of the head module 10 in Fig.) of them. The liquid ejecting head has a droplet arrival position correcting means for correcting the arrival position of an ink droplet within the range of 0.5-1.5 times of an interval between the nozzles without an overlap by an overlap part. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To prevent the image quality of a print image from being deteriorated. SOLUTION: First a specified pattern of recessed parts or projecting parts 43 is formed on one 41b of the faces of a flow path plate and/or a face opposite to a nozzle plate 43 and an adhesive layer is formed on a part/parts where no projecting or a recessed part 43 is formed of the face 41B and/or the face opposite to the nozzle plate 43. Further the face opposite to the nozzle plate 43 is applied to the face 41B of the flow path plate by positioning and pressing the face opposite to the nozzle plate 43 on the face 41B of the flow path plate. Thus an adhesive is made to flow into the part/parts where no projecting or the recessed part is formed by pressing the face opposite to the nozzle plate 43 onto the face 41B of the flow path plate. Consequently it is possible to almost certainly prevent a through passage 41F and a nozzle from becoming clogged by controlling the volume of the adhesive overflowing into the through passage 41F anal the nozzle. Through the described manufacturing process, the printing head which prevents the image quality of a print image from becoming deteriorated and the method for manufacturing the printing head can be realized.
Abstract:
PURPOSE: To enhance recording efficiency without generating the supply insufficiency of a recording material such as a dye or the like by a recording apparatus wherein the area of the liquid surface coming into contact with the atmosphere of the liquid recording material housed in a liquid recording material housing part is made larger than the total area of openings. CONSTITUTION: A liquefied dye tank 45 occupies the almost entire region of the upper part of a printing head 10 and opening parts 45a are provided to the entire region excepting the part of a dye tank 41 of the upper part of the liquefied dye tank 45 and covered with a lid 46. The material of the lid 46 does not permit a liquid to pass and has only air permeability. Therefore, the lid 46 faces to the atmosphere and atmospheric pressure is applied to the liquid surface 22a of the liquefied dye in the liquefied dye tank 45 by the air permeability of the lid. Since the liquefied dye tank 45 is provided between a liquefied dye introducing part 64 and the dye tank 41 in front thereof, the liquefied dye supply part of an evaporation part 17 is always filled with the liquefied dye 22 up to the pointed end part of a group of small pillar elements 80 by the action of atmospheric pressure. The liquefied dye 22 corresponding to consumption is sufficiently supplied because the area of the liquid surface 22a in the tank 45 is extremely large and the dye 22 receives atmospheric pressure over a wide area.
Abstract:
PURPOSE: To easily eliminate an undesired frame when an image is printed out in a form of a decomposed photograph by selecting an image recorded in a storage means with a specified pattern, arranging the pattern in a recording order and printing out it. CONSTITUTION: A frame memory(FM) 8 is a memory circuit of a large capacity comprising a general-purpose D-RAM, operated under the control of a memory control circuit 9 and stores digital video signals DV in terms of field in the write mode. Then the printer is provided with the FM 8 storing the prescribed number of frames at a prescribed time interval for an image comprising the video signals by storing intermittently the video signals at the specified time interval and by a print means selecting the image stored in the FM 8 according to a specified pattern and arranging the selected images in the order of recording and printing out the image on paper. Thus, an undesired is excluded from a print object by the specified pattern and the fetched image is printed out in the form of a decomposed photograph.
Abstract:
PROBLEM TO BE SOLVED: To provide a display device and an electronic apparatus capable of improving impact resistance without impairing optical characteristics.SOLUTION: A display device 1 includes: a display panel 20 having a display layer 23 between a substrate 21 composed of flexible material and a substrate 25 having a display surface; and a buffer layer 31 which is provided on a back side of the display panel 20, and allows deformation of the substrate 21. The buffer layer 31 allows and absorbs the deformation of the substrate 21 due to physical impact from a display surface side, and protects the display layer 23 and a circuit for driving the display layer 23 and the like. Thus, in the display device 1, impact resistance can be improved without impairing optical characteristics of display light.
Abstract:
PROBLEM TO BE SOLVED: To prevent a wiring substrate from coming into contact with a head chip or the like and causing a short circuit. SOLUTION: The head module is equipped with both the head chip 20 where a barrier layer 24 for forming an ink liquid chamber 26 around a heating resistor 22, and an electrode 23 for electrically connecting to the outside are set, and a flexible wiring substrate 30 disposed so as to cover the electrode 23 of the head chip 20. The flexible wiring substrate 30 has a substrate member 31, and a wiring pattern 33 with a tip electrically connected to the electrode 23 of the head chip 20. The wiring pattern 33 has the tip formed at a position retreated from an end surface of the substrate member 31 on the substrate member 31. COPYRIGHT: (C)2007,JPO&INPIT