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    • 3. 发明授权
    • Thermal energy assisted medium
    • 热能辅助介质
    • US09099140B2
    • 2015-08-04
    • US12630707
    • 2009-12-03
    • Hiroaki NemotoHiroyuki NakagawaTakayuki IchiharaMasae Suzuki
    • Hiroyuki SuzukiHiroaki NemotoHiroyuki NakagawaTakayuki Ichihara
    • G11B11/00G11B5/667G11B5/66G11B5/73
    • G11B5/667G11B5/66G11B5/7325
    • In order to provide a thermal energy assisted medium capable of improving anti-sliding reliability over long periods of time in low flying head conditions, while also maintaining a high SNR, a unique medium is proposed. A soft magnetic layer is formed on a substrate, a soft magnetic layer is formed thereon via a non-magnetic intermediate layer, and an intermediate layer, a crystal oriented control intermediate layer, an artificial lattice intermediate layer having an artificial lattice film in which a first layer comprising Co and a second layer comprising Pt and Pd are laminated repeatedly to form a recording layer, and a cap layer and an lubricating layer are formed. The concentration of Pd comprising the second layer is from about 20 atomic % to about 40 atomic %. Other mediums and systems are also described.
    • 为了提供能够在低飞行头条件下长时间提高抗滑动可靠性的热能辅助介质,同时还保持高SNR,提出了独特的介质。 在基板上形成软磁性层,通过非磁性中间层,中间层,取向晶体管的中间层,具有人造晶格膜的人造晶格中间层,在其上形成软磁性层,其中, 重复层叠包括Co和包含Pt和Pd的第二层的第一层以形成记录层,并且形成覆盖层和润滑层。 包含第二层的Pd的浓度为约20原子%至约40原子%。 还描述了其它介质和系统。
    • 4. 发明授权
    • Perpendicular magnetic recording medium with grain boundary controlling layers
    • 具有晶界控制层的垂直磁记录介质
    • US09058831B2
    • 2015-06-16
    • US13326213
    • 2011-12-14
    • Shun TonookaKiwamu TanahashiHiroyuki NakagawaIchiro Tamai
    • Shun TonookaKiwamu TanahashiHiroyuki NakagawaIchiro Tamai
    • G11B5/66G11B5/65G11B5/851
    • G11B5/66G11B5/65G11B5/84G11B5/851
    • In one embodiment, a perpendicular magnetic recording medium includes an oxide recording layer including an oxide and a non-oxide recording layer which does not contain an oxide positioned above the oxide recording layer. The oxide recording layer includes a region R1 where a grain boundary width in a direction parallel to a plane of formation of R1 increases therealong from a lowermost portion of the oxide recording layer toward a medium surface, a region R3 positioned above R1 wherein a grain boundary width increases therealong toward the medium surface, a region R2 where a grain boundary width of R2 decreases therealong from R1 to R3, with R2 being positioned between R1 and R3, and a region R4 where a grain boundary width of R4 decreases therealong from R3 toward the medium surface, with R4 being positioned above R3 and near an uppermost portion of the oxide recording layer.
    • 在一个实施例中,垂直磁记录介质包括氧化物记录层,该氧化物记录层包括不包含位于氧化物记录层上方的氧化物的氧化物和非氧化物记录层。 氧化物记录层包括区域R1,其中平行于R1的形成平面的方向上的晶界宽度从氧化物记录层的最下部朝向介质表面增加,位于R1上方的区域R3,其中晶界 宽度随着介质表面的增加而增加,其中R2的晶界宽度从R1向R3延伸的区域R2,R2位于R1和R3之间,R4的晶界宽度从R3向R3的边界宽度减小 中间表面,其中R4位于R3上方并且靠近氧化物记录层的最上部。
    • 5. 发明申请
    • PERPENDICULAR MAGNETIC RECORDING MEDIUM WITH GRAIN BOUNDARY CONTROLLING LAYERS
    • 具有颗粒边界控制层的全磁性记录介质
    • US20130155542A1
    • 2013-06-20
    • US13326213
    • 2011-12-14
    • Shun TonookaKiwamu TanahashiHiroyuki NakagawaIchiro Tamai
    • Shun TonookaKiwamu TanahashiHiroyuki NakagawaIchiro Tamai
    • G11B21/02G11B5/851G11B5/66
    • G11B5/66G11B5/65G11B5/84G11B5/851
    • In one embodiment, a perpendicular magnetic recording medium includes an oxide recording layer including an oxide and a non-oxide recording layer which does not contain an oxide positioned above the oxide recording layer. The oxide recording layer includes a region R1 where a grain boundary width in a direction parallel to a plane of formation of R1 increases therealong from a lowermost portion of the oxide recording layer toward a medium surface, a region R3 positioned above R1 wherein a grain boundary width increases therealong toward the medium surface, a region R2 where a grain boundary width of R2 decreases therealong from R1 to R3, with R2 being positioned between R1 and R3, and a region R4 where a grain boundary width of R4 decreases therealong from R3 toward the medium surface, with R4 being positioned above R3 and near an uppermost portion of the oxide recording layer.
    • 在一个实施例中,垂直磁记录介质包括氧化物记录层,该氧化物记录层包括不包含位于氧化物记录层上方的氧化物的氧化物和非氧化物记录层。 氧化物记录层包括区域R1,其中平行于R1的形成平面的方向上的晶界宽度从氧化物记录层的最下部朝向介质表面增加,位于R1上方的区域R3,其中晶界 宽度随着介质表面的增加而增加,其中R2的晶界宽度从R1向R3延伸的区域R2,R2位于R1和R3之间,R4的晶界宽度从R3向R3的边界宽度减小 中间表面,其中R4位于R3上方并且靠近氧化物记录层的最上部。
    • 6. 发明授权
    • Perpendicular magnetic recording medium having FCC seed layers
    • 具有FCC种子层的垂直磁记录介质
    • US08390956B2
    • 2013-03-05
    • US12793608
    • 2010-06-03
    • Shun TonookaReiko AraiHiroyuki NakagawaKiwamu Tanahashi
    • Shun TonookaReiko AraiHiroyuki NakagawaKiwamu Tanahashi
    • G11B5/82G11B5/673B32B7/00
    • G11B5/732G11B5/667Y10T428/24975
    • According to one embodiment, a perpendicular magnetic recording medium includes at least one soft magnetic underlayer above a substrate, a seed layer above the at least one soft magnetic underlayer, an intermediate layer above the seed layer, a magnetic recording layer above the intermediate layer, and an overcoat layer above the magnetic recording layer, wherein the seed layer includes a second seed layer above a first seed layer. In another embodiment, the seed layer is a multilayered structure of at least two cycles of a unit of layered film which includes a first seed layer and a second seed layer. The first seed layer includes a non-magnetic alloy having a Face-Centered-Cubic (FCC) structure, and the second seed layer includes a soft magnetic alloy having a FCC structure. Other structures are also disclosed, according to more embodiments.
    • 根据一个实施例,垂直磁记录介质包括至少一个在基底上方的软磁性底层,至少一个软磁性底层上方的晶种层,种子层上方的中间层,中间层上方的磁记录层, 以及在所述磁记录层上方的覆盖层,其中所述种子层包括在第一种子层上方的第二种子层。 在另一个实施方案中,种子层是包括第一种子层和第二种子层的分层膜单元的至少两个循环的多层结构。 第一晶种层包括具有面心立方(FCC)结构的非磁性合金,第二晶种层包括具有FCC结构的软磁合金。 根据更多实施例,还公开了其他结构。
    • 7. 发明授权
    • Compound having bicyclic pyrimidine structure and pharmaceutical composition comprising the same
    • 具有双环嘧啶结构的化合物和包含其的药物组合物
    • US08232282B2
    • 2012-07-31
    • US12311335
    • 2007-09-28
    • Keiji NakamuraHiroyuki NakagawaYoko Kan
    • Keiji NakamuraHiroyuki NakagawaYoko Kan
    • A01N43/00
    • C07D471/04
    • The present invention relates to a bicyclic pyrimidine compound of the following formula (I) or a salt thereof. wherein R1 is lower alkyl, cyclic lower alkyl. etc.; R2 is H, lower alkyl, lower alkenyl, etc.; R3 is H, lower alkyl, lower alkenyl, etc.; X is O, S or —N(R4)—; R4 is H or lower alkyl; or R2 and R4 may combine each other to form cyclic amino; Y is amido, keto, sulfonyl, etc.; R5 is H or lower alkyl; Z is O or S; m and n are 1 or 2. Said compound (I) or a salt thereof have MGAT inhibitory activity, and are useful as an agent for treatment or prophylaxis of adiposity, metabolic syndromes, hyperlipidemia, hyper neutral lipemia, hyper VLDL-mia, hyper fatty acidemia, diabetes mellitus, arteriosclerosis.
    • 本发明涉及下式(I)的双环嘧啶化合物或其盐。 其中R1是低级烷基,环状低级烷基。 等等。; R2是H,低级烷基,低级烯基等; R3是H,低级烷基,低级烯基等; X是O,S或-N(R 4) - ; R4是H或低级烷基; 或者R 2和R 4可以相互结合形成环状氨基; Y是酰胺基,酮基,磺酰基等; R5是H或低级烷基; Z是O或S; m和n为1或2.所述化合物(I)或其盐具有MGAT抑制活性,可用作治疗或预防肥胖,代谢综合征,高脂血症,高中性脂肪血症,超VLDL-mia,hyper 脂肪酸血症,糖尿病,动脉硬化。
    • 8. 发明授权
    • Shape evaluation method, shape evaluation device, and 3D inspection device
    • 形状评估方法,形状评估装置和3D检查装置
    • US08107737B2
    • 2012-01-31
    • US12441446
    • 2008-05-20
    • Taichi MitaHideo TsutamoriHiroyuki Nakagawa
    • Taichi MitaHideo TsutamoriHiroyuki Nakagawa
    • G06K9/46G01B11/30G01B3/22
    • G01B11/25
    • To appropriately evaluate a surface shape of an object to be inspected regardless of the relative positions of a light source and an image-taking device with respect to the object. When evaluating a surface shape, it includes a shape recognition step for recognizing the surface shape of the object to be evaluated, a representative point extraction step for extracting a representing point from the recognized surface shape of the object to be evaluated, a shape specifying step for specifying a shape for a predefined area around the extracted representing point, a vector defining step for defining a light source direction vector with respect to each of the representing points, a representing point select step for selecting, from among all of the representing points, only representing points for which imaginary reflection vectors corresponding to the light source direction vectors are contained within a predefined range from an imaginarily defined direction, and a highlight line creation step for creating a highlight line that is imaginarily generated on the surface of the object to be evaluated based on the highlight point group, i.e., a group of all of the selected representing points, wherein an evaluation of the surface shape of the object to be evaluated is performed based on the created highlight line.
    • 无论光源和摄像装置相对于物体的相对位置如何,都能适当地评价被检查物体的表面形状。 当评估表面形状时,它包括用于识别待评估对象的表面形状的形状识别步骤,用于从所识别的待评估对象的表面形状提取表示点的代表点提取步骤,形状指定步骤 用于指定所提取的代表点周围的预定义区域的形状,用于定义相对于每个代表点的光源方向向量的向量定义步骤,用于从所有代表点中选择的代表点选择步骤, 仅代表与从光源方向矢量相对应的虚拟反射矢量的点包含在从想象的定义方向的预定范围内的点,以及高光线生成步骤,用于创建在物体的表面上被想象生成的高光线 基于高亮点组进行评估,即一组所有选定的 代表点,其中基于所创建的高亮线执行要评估的对象的表面形状的评估。
    • 10. 发明授权
    • Perpendicular magnetic recording media and magnetic storage apparatus using the same
    • 垂直磁记录介质及使用其的磁存储装置
    • US07892663B2
    • 2011-02-22
    • US12156317
    • 2008-05-30
    • Hiroyuki NakagawaRyoko ArakiNaoto ItoTakayuki Ichihara
    • Hiroyuki NakagawaRyoko ArakiNaoto ItoTakayuki Ichihara
    • G11B5/65
    • G11B5/82G11B5/65G11B5/66
    • Embodiments of the present invention provide a perpendicular magnetic recording media having excellent resolution, signal to noise ratio (S/N), and a small adjacent track erasure. According to one embodiment, underlayers for controlling the orientation and segregation of a magnetic layer, a magnetic layer including an oxide and an alloy of magnetic materials mainly composed of Co, Cr, and Pt, and a ferromagnetic-metal layer which does not contain oxygen, are formed over a substrate. The magnetic layer has at least two layers including ferromagnetic grains and oxides, a first magnetic layer, which is the part of the magnetic layer closer to the substrate, has grain boundaries mainly composed of Cr oxide and at least one oxide selected from Si, Ti, Nb, and Ta, and grain boundaries of a second magnetic layer at the ferromagnetic-metal layer side includes at least one oxide selected from Si, Ti, Nb, and Ta in which Cr oxide is less than the first magnetic layer.
    • 本发明的实施例提供了具有优异的分辨率,信噪比(S / N)和小的相邻轨道擦除的垂直磁记录介质。 根据一个实施例,用于控制磁性层的取向和偏析的底层,包括氧化物的磁性层和主要由Co,Cr和Pt组成的磁性材料的合金以及不含氧的铁磁性金属层 ,形成在衬底上。 磁性层具有至少两层包括铁磁性粒子和氧化物的层,作为靠近衬底的磁性层的一部分的第一磁性层具有主要由Cr氧化物和至少一种选自Si,Ti Nb和Ta中的至少一种,并且在铁磁金属层侧的第二磁性层的晶界包含选自Si,Ti,Nb和Ta中的至少一种氧化物小于第一磁性层的氧化物。