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    • 3. 发明专利
    • Method for manufacturing multilayer wiring substrate, electronic device, and electronic equipment
    • 制造多层布线基板,电子设备和电子设备的方法
    • JP2007116193A
    • 2007-05-10
    • JP2007000466
    • 2007-01-05
    • Seiko Epson Corpセイコーエプソン株式会社
    • FURUSAWA MASAHIROKUROSAWA HIROFUMIHASHIMOTO TAKASHIISHIDA MASAYA
    • H05K3/46H01L21/288H05K3/10
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a multilayer wiring substrate, which makes it possible to form delicate multilayer wiring by relatively simple manufacturing steps, and to provide an electronic device and electronic equipment. SOLUTION: The method for manufacturing the multilayer wiring substrate, which comprises a wiring pattern 17 and a conductor post 18 which are formed by spraying a plurality of conductive inks 12 containing conductive particles on a substrate 10 from an ink jet head 11, comprises: a first step of spraying a plurality of the conductive inks 12 on the substrate 10; a second step of drying a plurality of the conductive inks 12 sprayed in the first step to form the wiring pattern 17 on the substrate 10; a third step of spraying a plurality of the conductive inks 12 on the wiring pattern 17; a fourth step of drying a plurality of the conductive inks 12 sprayed in the third step to form the conductor post 18 on the wiring pattern 17; and a fifth step of heating the wiring pattern 17 and the conductor post 18 to unite them. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种制造多层布线基板的方法,其可以通过相对简单的制造步骤形成精细的多层布线,并且提供电子设备和电子设备。 解决方案:制造多层布线基板的方法,其包括通过从喷墨头11在基板10上喷射含有导电颗粒的多个导电油墨12而形成的布线图案17和导体柱18, 包括:在基板10上喷射多个导电油墨12的第一步骤; 干燥在第一步骤中喷射的多个导电油墨12以在基板10上形成布线图案17的第二步骤; 将多个导电油墨12喷射到布线图案17上的第三步骤; 在第三步骤中干燥多个导电油墨12以在布线图案17上形成导体柱18的第四步骤; 以及加热布线图案17和导体柱18以使它们相结合的第五步骤。 版权所有(C)2007,JPO&INPIT
    • 6. 发明专利
    • INFORMATION RECORDING MEDIUM
    • JPH07326079A
    • 1995-12-12
    • JP11557194
    • 1994-05-27
    • SEIKO EPSON CORP
    • ISHIDA MASAYAKAWASE TAKEO
    • G11B11/10G11B11/105
    • PURPOSE:To make it possible to reproduce information from a reproduction-only information recording medium formed with recording patterns at a high density by providing the information recording medium with regions for absorbing microwaves thereon in correspondence to the information. CONSTITUTION:This information recording medium is provided with pattern layers 107 including regions (mark parts) 107a having the magnetic films corresponding to the information and regions (non-mark regions) 107b where there are no magnetic films on a substrate 106. The temp. of the mark parts 107a rise when the heating regions 104 of part of the recording medium are heated by irradiation with a laser beam, etc. At this time, the microwaves are absorbed by magnetic resonance only in the part 105 (resonance region) of the mark parts 107a in the heated regions and the magnetic resonance does not arise in the non-mark regions 107b in the heated regions and, therefore, the microwaves are not absorbed. The absorption of the microwaves arises in the heated regions when the specific conditions are satisfied and, therefore, the extremely high surface recording density is obtd.
    • 8. 发明专利
    • MAGNETO-OPTICAL RECORDING MEDIUM CARTRIDGE
    • JPH06290494A
    • 1994-10-18
    • JP7829993
    • 1993-04-05
    • SEIKO EPSON CORP
    • ISHIDA MASAYA
    • G11B11/10G11B11/105
    • PURPOSE:To attain normally recording and reproducing on both surfaces of a magneto- optical recording medium under the same condition by providing two magnetic field impressing means impressing magnetic field with a direction opposite to each other to a recording film and capable of moving in two cartridges. CONSTITUTION:Two initializing magnets 13, 14 are provided in the disk cartridge 11, and the magnetic field impressing means 13, 14 are movable respectively independently along a guide rail 15 provided in the disk cartridge 11, and the magnetic field of 4kOe is impressed to the magnetic medium 12. The permanent magnets 13, 14 are the sintered magnets of NbFeB, and the magnetic field of the magnets 13, 14 are roughly perpendicular to the recording medium 12 and have the direction opposite to each other. Further, the magnetic field impressing means 13, 14 are controlled so that, when the cartridge 11 is inserted so that the surface A of the cartridge 11 is reproduced, the initializing magnetic field by the magnetic field impressing means 13 is impressed on the recording medium 12 by the positioning mechanism 16 of the initializing magnetic field, and the magnetic field impressing means 14 is retreated from upward the recording medium 12. When the surface B is reproduced, the impressing means 14 is used, and the means 13 is retreated.