会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Magnetic head
    • 磁头
    • US5734534A
    • 1998-03-31
    • US762721
    • 1996-12-10
    • Tetsuya YamamotoHiroyuki OhmoriYasunari SugiyamaMitsuharu Shouji
    • Tetsuya YamamotoHiroyuki OhmoriYasunari SugiyamaMitsuharu Shouji
    • G11B5/31G11B5/10G11B5/127G11B5/147G11B5/17
    • G11B5/10G11B5/127G11B5/1272G11B5/147G11B5/17
    • A magnetic head is made by fixing together two head halves 9 and 39. Recesses 10 and 40 are formed in glass layers 4 and 34 on the substrates 1 and 31 respectively of the head halves, and spiral coil patterns 11 and 41 are formed in the recesses. Apart from their inner end portions 11a and 41a the coil patterns are covered by insulating protective films 23 and 53. A plurality of sloping surfaces 4b, 34b are formed on the glass layers 4 and 34 at the locations of the inner end portions of the coil patterns, whereby a plurality of projections 4a, 34a are formed. The angle of slope .theta. of the sloping surfaces is above 30.degree. and below 90.degree.. The coil patterns 11 and 41 comprise copper plating layers 19 and 39; because the coil pattern inner end portions lie on the projections 4a, 34a their surfaces are high and exposed at the surfaces of the insulating protective films 23, 53, and gold films 16 and 46 are formed thereon. These gold films connect to each other and connect the coil patterns 11 and 41 to form one coil.
    • 磁头通过将两个半部分9和39固定在一起而形成。凹部10和40分别形成在前半部分的基板1和31上的玻璃层4和34中,螺旋线圈图案11和41形成在 凹槽 除了它们的内端部11a和41a之外,线圈图案被绝缘保护膜23和53覆盖。在线圈的内端部分的位置处,在玻璃层4和34上形成多个倾斜表面4b,34b 由此形成多个突起4a,34a。 倾斜面的倾角θ在30°以上,90°以下。 线圈图案11和41包括镀铜层19和39; 由于线圈图案内端部位于突出部4a,34a上,所以表面高,露出在绝缘保护膜23,53的表面,金膜16,46形成在其上。 这些金膜彼此连接并且连接线圈图案11和41以形成一个线圈。
    • 2. 发明授权
    • Magnetic head having a recessed portion corresponding to a magnetic path
and method of manufacturing the same
    • 具有对应于磁路的凹部的磁头及其制造方法
    • US5796564A
    • 1998-08-18
    • US578630
    • 1996-01-05
    • Mitsuharu ShoujiHiroyuki OhmoriYasunari SugiyamaTetsuya Yamamoto
    • Mitsuharu ShoujiHiroyuki OhmoriYasunari SugiyamaTetsuya Yamamoto
    • G11B5/10G11B5/147G11B5/17G11B5/31
    • G11B5/3106G11B5/10G11B5/1475G11B5/17G11B5/3113
    • This invention has a principal object to eliminate, in a magnetic head and a method of manufacturing the same, the necessity of filling glass, etc. onto a magnetic film to thereby improve reliability of the magnetic head. This invention resides in a method of manufacturing a magnetic head including a pair of magnetic core half bodies opposite to each other, each of the magnetic core half bodies being such that a magnetic film is formed on a base, in which a thin film coil is formed at least at one surface of butting plane surfaces between these magnetic core half bodies, characterized in that, in forming the magnetic film on the base, recessed portions are formed in advance by ion milling, etc. at the base to form the magnetic film at the recessed portions. In this case, it is desirable that the magnetic film consists of a magnetic film having axis of easy magnetization in the depth direction of the magnetic gap and a magnetic film having axis of easy magnetization perpendicular to the axis of easy magnetization.
    • PCT No.PCT / JP95 / 00884 Sec。 371日期1996年1月5日 102(e)日期1996年1月5日PCT提交1995年5月9日PCT公布。 公开号WO95 / 30984 日期:1995年11月16日本发明的主要目的是在磁头及其制造方法中消除将玻璃等填充到磁性膜上的必要性,从而提高磁头的可靠性。 本发明在于一种制造磁头的方法,所述磁头包括一对彼此相对的磁芯半体,每个磁芯半体使得在基底上形成磁性膜,其中薄膜线圈是 至少在这些磁芯半体之间的对接平面的一个表面上形成,其特征在于,在基底上形成磁性膜时,通过在基底处的离子铣削等预先形成凹部以形成磁性膜 在凹部处。 在这种情况下,理想的是,磁性膜由在磁隙的深度方向上容易磁化的轴的磁性膜和容易磁化的轴与容易磁化的轴垂直的磁性膜构成。
    • 6. 发明授权
    • Magnetic head and method for manufacture thereof
    • 磁头及其制造方法
    • US5666249A
    • 1997-09-09
    • US640987
    • 1996-04-22
    • Hiroyuki OhmoriTetsuya YamamotoYasunari Sugiyama
    • Hiroyuki OhmoriTetsuya YamamotoYasunari Sugiyama
    • G11B5/127G11B5/17G11B5/21G11B5/29G11B5/53
    • G11B5/21G11B5/1274G11B5/17G11B5/29G11B5/531
    • A magnetic head is disclosed in which a pair of magnetic core halves, each having a magnetic metal film formed in the vicinity of at least a substrate surface facing a magnetic recording medium, are abutted to each other for defining a magnetic gap between the magnetic metal films, wherein a recess for forming a coil is formed in an abutting surface of at least one of the magnetic core halves and the coil formed by a thin film forming technique is arranged within the recess. A multi-channel magnetic head is also disclosed which includes a plurality of magnetic heads having different azimuth angles of the magnetic gaps, wherein each magnetic head is formed by abutting a pair of magnetic core halves to each other, each of the magnetic core halves having a magnetic metal film formed in the vicinity of at least a substrate surface facing a magnetic recording medium, for defining a magnetic gap between the magnetic metal films, and wherein a recess for forming a coil is formed in the abutting surface of at least one of the magnetic core halves, and the coil is formed in the recess by thin film forming technique. The methods for producing the magnetic head and the multi-channel magnetic head are also disclosed.
    • 公开了一种磁头,其中一对磁芯半部分彼此邻接,以形成在与磁记录介质相对的至少基板表面附近形成的磁性金属膜,以在磁性金属 膜,其中在所述凹部内设置有用于形成线圈的凹部,所述凹部形成在至少一个所述磁芯半部和通过薄膜形成技术形成的所述线圈的邻接表面中。 还公开了一种多通道磁头,其包括具有磁隙的不同方位角的多个磁头,其中每个磁头通过将一对磁芯半体彼此邻接而形成,每个磁芯半部具有 形成在至少面对磁记录介质的基板表面附近的磁性金属膜,用于限定磁性金属膜之间的磁隙,并且其中用于形成线圈的凹部形成在至少一个 磁芯半部,并且通过薄膜形成技术在凹部中形成线圈。 还公开了用于制造磁头和多通道磁头的方法。
    • 8. 发明授权
    • Magnetic head
    • 磁头
    • US5585983A
    • 1996-12-17
    • US747849
    • 1991-08-20
    • Yasunari SugiyamaHiroyuki OhmoriKasuhiko HayashiMasatoshi Hayakawa
    • Yasunari SugiyamaHiroyuki OhmoriKasuhiko HayashiMasatoshi Hayakawa
    • G11B5/33G11B5/02
    • G11B5/332
    • A magnetic head comprises a substrate, a soft magnetic thin film, whose magnetic permeability varies according to the intensity of an external magnetic field applied thereto, formed over the surface of the substrate, means for supplying a high-frequency current to the soft magnetic thin film, and means for applying a bias magnetic field to the soft magnetic thin film. The magnetic permeability of the soft magnetic thin film varies according to the variation of the intensity of the external magnetic field and hence the potential difference between the opposite ends of the soft magnetic thin film with respect to the direction of flow of the high-frequency current varies accordingly. The variation of the potential difference is detected for magnetic signal reading. The soft magnetic thin film is formed of a material having a large magnetic permeability, such as amorphous CO.sub.75 Ta.sub.11 Zr.sub.14.
    • 磁头包括基板,软磁薄膜,其磁导率根据施加到其上的外部磁场的强度而变化,形成在基板的表面上;用于向软磁薄层提供高频电流的装置 膜和用于向软磁薄膜施加偏置磁场的装置。 软磁性薄膜的磁导率根据外部磁场的强度的变化而变化,因此软磁性薄膜的相反端部相对于高频电流的流动方向的电位差 因此而变化。 磁信号读取检测电位差的变化。 软磁性薄膜由具有大磁导率的材料形成,例如无定形CO75Ta11Zr14。
    • 10. 发明授权
    • Optical fiber decoration device using LED light source and article decorated thereby
    • 光纤装饰装置采用LED光源和文具装饰
    • US07168862B2
    • 2007-01-30
    • US10501497
    • 2003-02-25
    • Chen QiYasunari Sugiyama
    • Chen QiYasunari Sugiyama
    • G02B6/36H01S3/30
    • B44C5/06A47G33/06B44F1/00F21S10/02F21V9/40F21W2121/00F21W2131/308F21Y2115/10G02B6/0006G02B6/0008G09F9/305Y02B20/72Y10S385/901
    • An optical fiber decoration device has various merits: small power consumption, no danger of fire, simple water-proof design and economical, battery can be used, excellent portability, long service life of light source, and no danger of destruction during transportation. The optical fiber decoration device is characterized by having an LED light source consisting of a plurality of LED's which are arranged at an end of optical fiber for emitting one or more colors and partially superimposed, enabling synthesis of colors. In FIG. 1, the optical fiber decoration device (I) includes an LED light source unit (2) and an optical fiber (1a). The distance L between the LED light source (2) and the optical fiber is 5 to 100 mm. Red, blue, and green LED's are used to realize multiple colors. The optical fiber decoration device can be used for signboards, outdoor decorations, bus advertisement, indoor decorations, decorations in an aquarium, unit type Christmas trees, clothes, and the like.
    • 光纤装饰装置具有以下优点:功耗小,无火灾危险,防水设计简单,经济实惠,电池可使用,携带性好,光源使用寿命长,运输过程中无破坏危险。 光纤装饰装置的特征在于具有由多个LED组成的LED光源,LED多个LED布置在光纤的端部,用于发射一种或多种颜色并部分叠加,使得能够进行颜色的合成。 在图 如图1所示,光纤装饰装置(I)包括LED光源单元(2)和光纤(1a)。 LED光源(2)与光纤之间的距离L为5〜100mm。 红色,蓝色和绿色LED用于实现多种颜色。 光纤装饰装置可用于招牌,室外装饰,公交车广告,室内装饰,水族馆装饰,单位型圣诞树,衣服等。