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    • 1. 发明授权
    • Micro-lens array substrate and method for manufacturing thereof
    • 微透镜阵列基板及其制造方法
    • US07978413B2
    • 2011-07-12
    • US12432803
    • 2009-04-30
    • Moriaki AbeHiroyuki MinamiKenichi SatohKazuhiro ShinodaJunichi Mizuma
    • Moriaki AbeHiroyuki MinamiKenichi SatohKazuhiro ShinodaJunichi Mizuma
    • G02B27/10
    • G02B3/0075G02B3/0012G02B3/0031G02F1/133526
    • A micro-lens substrate having a precise micro-lens array suitable for higher resolution, the micro-lens array substrate of high quality without having a distortion, and a method for manufacturing thereof are provided.In the micro-lens array substrate of the present invention, a micro-lens array formed of a plurality of consecutive concave lens-shaped micro-lenses is directly formed in a surface of a quartz substrate or glass substrate, and the micro-lens array is formed by a transfer method based on dry-etching. In the micro-lens array substrate of the present invention, a taper portion is formed toward the surface of the substrate in a peripheral portion of the micro-lens array in the quartz substrate or glass substrate.In a method for manufacturing the micro-lens array substrate of the present invention, a resist layer having a plurality of consecutive lens-shaped concave portions is formed in a surface of a quartz or glass substrate, the lens-shaped concave portion of the resist layer is transferred to the substrate by dry-etching, and a micro-lens array is formed by injecting a resin into the lens-shaped concave portion of this substrate. In addition, a taper portion is formed in a peripheral portion similarly to the formation of the lens-shaped concave portion, and a micro-lens array is formed by injecting a resin into the lens-shaped concave portion and taper portion.
    • 提供了具有适合于更高分辨率的精确微透镜阵列的微透镜基板,具有高质量的微透镜阵列基板而不具有变形,及其制造方法。 在本发明的微透镜阵列基板中,由石英基板或玻璃基板的表面直接形成由多个连续凹透镜形状的微透镜形成的微透镜阵列,微透镜阵列 通过基于干蚀刻的转印方法形成。 在本发明的微透镜阵列基板中,在石英基板或玻璃基板的微透镜阵列的周边部分,朝向基板的表面形成锥形部。 在本发明的微透镜阵列基板的制造方法中,在石英或玻璃基板的表面形成具有多个连续的透镜状的凹部的抗蚀剂层,抗蚀剂的透镜状的凹部 通过干法蚀刻将层转移到基板上,并且通过将树脂注入到该基板的透镜形凹部中而形成微透镜阵列。 此外,与透镜状凹部的形成同样,在周边部形成有锥形部,通过将树脂注入到透镜状的凹部和锥形部中而形成微透镜阵列。
    • 5. 发明授权
    • Thin-film magnetic head having magnetic resistance effect stabilizing
layer
    • 具有磁阻效应稳定层的薄膜磁头
    • US5828527A
    • 1998-10-27
    • US820343
    • 1997-03-12
    • Akio TakadaTadayuki HondaTakuji ShibataMoriaki Abe
    • Akio TakadaTadayuki HondaTakuji ShibataMoriaki Abe
    • G11B5/39
    • G11B5/3932G11B5/3903G11B5/3935
    • A thin-film magnetic head improves magnetic stability of a magnetoresistance effect film 13 for further stabilizing the playback output. The thin-film magnetic head has a magnetoresistance effect stabilizing layer 11, a non-magnetic layer 12 and a magnetoresistance effect layer 13 exhibiting the magnetoresistance effect. The magnetoresistance effect stabilizing layer 11 has a hard magnetic film and a soft magnetic film. The magnetoresistance effect stabilizing layer 11 has a non-magnetic film 11c of a non-magnetic material in at least a partial area between a hard magnetic film 11b and a soft magnetic film 11d. In the thin-film magnetic head, there is produced a stable magnetostatic coupling action between the magnetoresistance effect stabilizing layer 11 and the magnetoresistance effect layer 13 for increasing the magnetic stability of the magnetoresistance effect layer 13 operating as a magnetically sensitive portion.
    • 薄膜磁头提高了磁阻效应膜13的磁稳定性,以进一步稳定重放输出。 薄膜磁头具有表现出磁阻效应的磁阻效应稳定层11,非磁性层12和磁阻效应层13。 磁阻效应稳定层11具有硬磁性膜和软磁性膜。 磁阻效应稳定层11在硬磁膜11b和软磁膜11d之间的至少局部区域中具有非磁性材料的非磁性膜11c。 在薄膜磁头中,在磁阻效应稳定层11和磁阻效应层13之间产生稳定的静磁耦合作用,用于增加作为磁敏部分工作的磁阻效应层13的磁稳定性。
    • 6. 发明申请
    • Microlens array substrate and production method therefor
    • 微透镜阵列基板及其制造方法
    • US20060215269A1
    • 2006-09-28
    • US10557803
    • 2005-03-25
    • Moriaki AbeHiroyuki MinamiKenichi SatohKazuhiro ShinodaJunichi Mizuma
    • Moriaki AbeHiroyuki MinamiKenichi SatohKazuhiro ShinodaJunichi Mizuma
    • G02B27/10
    • G02B3/0075G02B3/0012G02B3/0031G02F1/133526
    • A micro-lens substrate having a precise micro-lens array suitable for higher resolution, the micro-lens array substrate of high quality without having a distortion, and a method for manufacturing thereof are provided. In the micro-lens array substrate of the present invention, a micro-lens array formed of a plurality of consecutive concave lens-shaped micro-lenses is directly formed in a surface of a quartz substrate or glass substrate, and the micro-lens array is formed by a transfer method based on dry-etching. In the micro-lens array substrate of the present invention, a taper portion is formed toward the surface of the substrate in a peripheral portion of the micro-lens array in the quartz substrate or glass substrate. In a method for manufacturing the micro-lens array substrate of the present invention, a resist layer having a plurality of consecutive lens-shaped concave portions is formed in a surface of a quartz or glass substrate, the lens-shaped concave portion of the resist layer is transferred to the substrate by dry-etching, and a micro-lens array is formed by injecting a resin into the lens-shaped concave portion of this substrate. In addition, a taper portion is formed in a peripheral portion similarly to the formation of the lens-shaped concave portion, and a micro-lens array is formed by injecting a resin into the lens-shaped concave portion and taper portion.
    • 提供了具有适合于更高分辨率的精确微透镜阵列的微透镜基板,具有高质量的微透镜阵列基板而不具有变形,及其制造方法。 在本发明的微透镜阵列基板中,在石英基板或玻璃基板的表面直接形成由多个连续的凹透镜形微透镜形成的微透镜阵列,微透镜阵列 通过基于干蚀刻的转印方法形成。 在本发明的微透镜阵列基板中,在石英基板或玻璃基板的微透镜阵列的周边部分,朝向基板的表面形成锥形部。 在本发明的微透镜阵列基板的制造方法中,在石英或玻璃基板的表面形成具有多个连续的透镜状凹部的抗蚀剂层,抗蚀剂的透镜状凹部 通过干法蚀刻将层转移到基板上,并且通过将树脂注入到该基板的透镜形凹部中而形成微透镜阵列。 此外,与透镜状凹部的形成同样,在周边部形成有锥形部,通过将树脂注入到透镜状的凹部和锥形部中而形成微透镜阵列。
    • 8. 发明授权
    • Magneto-resistive effect magnetic head
    • 磁阻效应磁头
    • US6120920A
    • 2000-09-19
    • US196562
    • 1998-11-20
    • Akio TakadaMoriaki AbeTadayuki HondaHiroaki NarisawaTakuji Shibata
    • Akio TakadaMoriaki AbeTadayuki HondaHiroaki NarisawaTakuji Shibata
    • G11B5/39B32B9/00
    • B82Y25/00B82Y10/00G11B5/3903G11B2005/3996Y10S428/90Y10T428/1121
    • A magneto-resistive effect type magnetic head employing a spin valve film in which the direction of magnetization of a free layer is constant even in the absence of an external magnetic field to assure magnetic stability. The magneto-resistive effect type magnetic head includes a magneto-resistive effect film of a planar substantially rectangular configuration, having its longitudinal direction substantially perpendicular to a magnetic recording medium sliding surface, a first electrode connected to a longitudinal end of the magneto-resistive effect film, a second electrode connected to the other longitudinal end of the magneto-resistive effect film and hard magnetic films arranged on both ends along the width of the magneto-resistive effect film. The magneto-resistive effect film is made up of at least a first ferromagnetic layer, a non-magnetic layer, a second ferromagnetic layer and an anti-ferromagnetic layer, layered together. The hard magnetic films has an electrical resistance larger than that of the magneto-resistive effect film.
    • 使用自旋阀膜的磁阻效应型磁头,其中自由层的磁化方向即使在没有外部磁场的情况下也是恒定的,以确保磁稳定性。 磁阻效应型磁头包括平面大致矩形构造的磁阻效应膜,其纵向基本上垂直于磁记录介质滑动表面,第一电极连接到磁阻效应的纵向端 薄膜,连接到磁阻效应膜的另一纵向端的第二电极和沿着磁阻效应膜的宽度布置在两端的硬磁膜。 磁阻效应膜由至少第一铁磁层,非磁性层,第二铁磁层和反铁磁层构成,层叠在一起。 硬磁膜的电阻​​大于磁阻效应膜的电阻。
    • 9. 发明授权
    • Rotary hot-stamping apparatus
    • 旋转热冲压装置
    • US4063500A
    • 1977-12-20
    • US714660
    • 1976-08-16
    • Moriaki Abe
    • Moriaki Abe
    • B41F19/06B44B5/00
    • B44B5/0071B41F19/062B41P2219/20
    • For imprinting characters on a continuous strip of plastics or other material by pressing heated type against a printing ribbon thereon, the strip is fed at constant speed over a platen in a direction opposite to the direction of travel of the printing ribbon from payoff reel to takeup reel. The type is mounted on a rotary type carrier over the platen, for revolution in a direction in conformity with the traveling direction of the strip. While the heated type is being pressed against the superposed ribbon and strip over the platen, the ribbon is thereby transported a predetermined distance toward the payoff reel with the strip relative to the platen and, when subsequently released by the type, is pulled back the same distance toward the takeup reel by a spring-energized pullback lever. The ribbon is then wound up onto the takeup reel via a pair of drawoff rollers just by a length corresponding to the width of the character or characters on the typeface.
    • 对于将塑料或其他材料的连续条纹上的压印字符通过将加热型压在其上的印刷色带上,将条带以与印刷色带从支付卷轴的行进方向相反的方向以恒定速度进给到压板 卷轴。 该类型在压板上安装在旋转式载体上,以沿与条的行进方向一致的方向旋转。 当被加热的类型被压靠在叠置的带上并且在压板上剥离时,色带从而相对于压板被传送到具有带的相对卷轴的预定距离,并且当随后被类型释放时被拉回 通过弹簧通电的回拉杆朝向收紧卷轴的距离。 然后,色带通过一对抽出辊被卷绕到卷取卷轴上,其长度对应于字体的字符或字符的宽度。