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    • 41. 发明授权
    • High reliability heater for flying height control
    • 高可靠性加热器,用于飞行高度控制
    • US07649714B2
    • 2010-01-19
    • US11201569
    • 2005-08-10
    • Atsushi KatoMasayuki KuritaKoji MiyakeToshiya ShiramatsuHideaki Tanaka
    • Atsushi KatoMasayuki KuritaKoji MiyakeToshiya ShiramatsuHideaki Tanaka
    • G11B5/60
    • G11B5/6005G11B5/3106G11B5/3133G11B5/314G11B5/40G11B5/6064G11B5/607
    • Embodiments of the invention improve the power consumption and response speed of a heater for the gap flying height (hg) adjustment, to minimize an influence that the heater has on a life of a read element, and to provide a heater having resistance lines reduced in breaking and ensuring higher reliability. In one embodiment, a read/write element is formed near an air bearing surface (ABS) on a slider, and the circumference of the read/write element is filled with alumina. The read/write element includes an upper magnetic pole piece, a lower magnetic pole piece, a coil, and a resist filling around the coil, and a read element (MR) for performing reading, and an upper shield and lower shield for protecting the read element from an external magnetic field. A heater for adjusting the flying height is provided between the slider and the read/write element but near the read/write element. A temperature gradient relaxing material having a thermal conductivity higher than that of the heater and that of a material (alumina) filling around the heater is formed near the heater.
    • 本发明的实施例提高了用于间隙飞行高度(hg)调节的加热器的功率消耗和响应速度,以最小化加热器对读取元件的寿命的影响,并且提供具有减小的电阻线的加热器 打破并确保更高的可靠性。 在一个实施例中,在滑块上的空气轴承表面(ABS)附近形成读/写元件,并且读/写元件的圆周上填充有氧化铝。 读/写元件包括上磁极片,下磁极片,线圈和围绕线圈填充的抗蚀剂,以及用于执行读取的读取元件(MR),以及用于保护 从外部磁场读取元件。 用于调节飞行高度的加热器设置在滑块和读/写元件之间但靠近读/写元件。 在加热器附近形成导热率高于加热器的热导率的温度梯度松弛材料和填充在加热器周围的材料(氧化铝)的温度梯度松弛材料。
    • 42. 发明授权
    • Image forming apparatus having belt unit
    • 具有皮带单元的图像形成装置
    • US07623809B2
    • 2009-11-24
    • US11476912
    • 2006-06-29
    • Hiroshi NakanoHiroshi IgarashiAtsushi Kato
    • Hiroshi NakanoHiroshi IgarashiAtsushi Kato
    • G03G15/08
    • G03G21/168G03G21/1647G03G2221/1642
    • A plurality of image bearing members is supported by an apparatus main body and is arranged in a predetermined direction. A belt unit is configured to be detachably mounted on the apparatus main body. The belt unit includes a belt frame, a plurality of belt support rollers, a belt, and a plurality of transfer members. The plurality of belt support rollers is supported by the belt frame. The belt is movably supported by the plurality of belt support rollers and extends in the predetermined direction. Each of the plurality of transfer members is disposed in confrontation with a corresponding one of the plurality of image bearing members with the belt interposed therebetween. A positioning member fixes, relative to the apparatus main body, each of the plurality of transfer members at a position in the predetermined direction when the belt unit is mounted on the apparatus main body.
    • 多个图像承载部件由装置主体支撑并且沿预定方向布置。 带单元被配置为可拆卸地安装在设备主体上。 带单元包括带框架,多个带支撑辊,带和多个转印构件。 多个带支撑辊由带框架支撑。 皮带由多个皮带支承滚轮可移动地支撑,并沿预定的方向延伸。 多个传送构件中的每一个被设置成与多个图像承载构件中的相应的一个图像承载构件对置,并且其间插入带。 当皮带单元安装在设备主体上时,定位构件相对于设备主体固定在多个传送构件中的每一个在预定方向上的位置。
    • 44. 发明申请
    • Image-Forming Device
    • 图像形成装置
    • US20090220281A1
    • 2009-09-03
    • US12389630
    • 2009-02-20
    • Atsushi Kato
    • Atsushi Kato
    • G03G15/10
    • G03G15/104
    • An image forming device with a liquid developer containing a developing agent and a liquid carrier, the image-forming device includes a casing, an accumulation unit, a supply inlet, a cover, and a support part. The accumulation unit is provided in the casing for accumulating therein the liquid developer and the liquid carrier. The supply inlet is in communication with the accumulation unit and fluidly connectable with a replenishing container containing the liquid developer and the liquid carrier. The cover is configured to selectively provide an open phase and a closed phase with respect to the casing, and configured to expose the supply inlet at the open phase. The support part is provided on the cover and detachably mounting thereon the replenishing container at the open phase in an orientation capable of discharging the liquid developer and liquid carrier in the replenishing container into the accumulation unit through the supply inlet.
    • 一种具有包含显影剂和液体载体的液体显影剂的图像形成装置,所述图像形成装置包括壳体,累积单元,供给入口,盖和支撑部。 蓄积单元设置在壳体中用于在其中积聚液体显影剂和液体载体。 供应入口与积聚单元连通并且可与容纳液体显影剂和液体载体的补充容器流体连接。 盖被配置为相对于壳体选择性地提供开放相位和闭合相位,并且被配置为在开放阶段暴露供应入口。 支撑部设置在盖上,并且在开放相位处以可拆卸的方式将补充容器安装在能够通过供给入口排出补充容器中的液体显影剂和液体载体的定向中。
    • 45. 发明申请
    • TEMPERATURE SENSOR PROBE AND MANUFACTURING METHOD OF THE SAME
    • 温度传感器探头及其制造方法
    • US20090135880A1
    • 2009-05-28
    • US12269553
    • 2008-11-12
    • Shunji IchidaSeiichiro KinugasaAtsushi Kato
    • Shunji IchidaSeiichiro KinugasaAtsushi Kato
    • G01K11/00
    • G01K11/3213
    • To provide a temperature sensor probe that can conduct stable measurements, and the manufacturing method of the same. The temperature sensor probe related to the present invention provides: a fluorescent material that is a mixture of a fluorescent substance and a transparent material; a thermosensitive part having a concave part in which the fluorescent material is arranged; a waveguide route rod that propagates excitation light, which is irradiated on the fluorescent material, and fluorescent light, which is produced by the fluorescent substance; and a protective tube that covers the side surfaces of the waveguide route rod. Then, the fluorescent material is affixed to the tip of the waveguide route rod using the transparent material, and the waveguide route rod bites into the fluorescent material.
    • 提供可进行稳定测量的温度传感器探头及其制造方法。 与本发明有关的温度传感器探针提供:作为荧光物质和透明材料的混合物的荧光材料; 具有设置荧光体的凹部的热敏部; 传播照射在荧光材料上的激发光的波导路径棒和由荧光物质产生的荧光; 以及覆盖波导路径棒的侧面的保护管。 然后,使用透明材料将荧光材料固定在波导路径杆的末端,并且波导路线棒咬入荧光材料。
    • 46. 发明申请
    • MAGNETIC RECORDING MEDIUM
    • 磁记录介质
    • US20080026256A1
    • 2008-01-31
    • US11782387
    • 2007-07-24
    • Atsushi Kato
    • Atsushi Kato
    • G11B5/66
    • G11B5/7305
    • A magnetic recording medium is provided. The magnetic recording medium includes a nonmagnetic support, a lower nonmagnetic layer in which a nonmagnetic powder is dispersed in a binder and which is provided on the nonmagnetic support, and a magnetic layer in which a magnetic powder is dispersed in a binder and which is provided on the lower nonmagnetic layer. The nonmagnetic support is made of a polyethylene terephthalate having a glass transition temperature of 125° C. or higher. The ratio of the thickness of the nonmagnetic support to the total thickness of the magnetic recording medium is in the range of 70% to 85%.
    • 提供磁记录介质。 磁记录介质包括非磁性载体,其中非磁性粉末分散在粘合剂中并设置在非磁性载体上的下部非磁性层和磁性层,其中磁性粉末分散在粘合剂中并提供 在较低的非磁性层上。 非磁性载体由玻璃化转变温度为125℃以上的聚对苯二甲酸乙二醇酯制成。 非磁性载体的厚度与磁记录介质的总厚度之比在70%至85%的范围内。
    • 49. 发明申请
    • Magnetic head and method of manufacturing the same
    • 磁头及其制造方法
    • US20070195454A1
    • 2007-08-23
    • US11650336
    • 2007-01-05
    • Hisashi KimuraAtsushi KatoNorihiro OokawaKikuo Kusukawa
    • Hisashi KimuraAtsushi KatoNorihiro OokawaKikuo Kusukawa
    • G11B5/147
    • G11B5/1278G11B5/3163
    • If the length of a track-defining section from an air bearing surface varies due to tolerance during a head manufacturing process, the recording magnetic field changes, which involves the variation of the track width to be recorded on the medium. In accordance with an embodiment of the present invention, the main magnetic pole of a magnetic head includes a track-defining section shaped in trapezoid and a magnetic flux guiding section formed in trapezoid, as viewed from above. The track-defining section is formed such that its width parallel to the air bearing surface (ABS) increases at the rate of 10 to 20% with respect to its height-direction length. The rate of 10 to 20% is a range in which the shape is properly controllable taking into account the variations resulting from the tolerance of the head manufacturing process.
    • 如果来自空气轴承表面的轨道限定部分的长度由于头部制造过程中的公差而变化,则记录磁场改变,其涉及要记录在介质上的轨道宽度的变化。 根据本发明的实施例,磁头的主磁极包括梯形形状的轨道限定部分和从上方观察形成为梯形的磁通引导部分。 轨道限定部分形成为使得其平行于空气轴承表面(ABS)的宽度相对于其高度方向长度以10%至20%的速率增加。 考虑到由头制造过程的公差引起的变化,10〜20%的比率是形状适当可控的范围。
    • 50. 发明申请
    • Magnetic recording medium
    • 磁记录介质
    • US20050196640A1
    • 2005-09-08
    • US11118251
    • 2005-04-29
    • Atsushi KatoNaoyuki NumataJunji Kagawa
    • Atsushi KatoNaoyuki NumataJunji Kagawa
    • G11B5/706G11B5/716G11B5/17
    • G11B5/716Y10T428/24942Y10T428/256
    • The present invention provides a magnetic recording medium which can record both digital and analog signals by, e.g., VTR for commercial use and improve their electromagnetic conversion characteristics. A magnetic recording medium comprises a nonmagnetic support, and first and second magnetic layers comprised respectively of magnetic powder (A) and (B), wherein the first and second magnetic layers are formed on the nonmagnetic support in this order, wherein the magnetic powder (A) and (B) have the following characteristics: saturation magnetization σs(A): 80 to 150 Am2/kg; coercive force Hc(A): 90 to 180 kA/m, saturation magnetization σs(B): 100 to 200 Am2/kg, coercive force Hc(B): 100 to 200 kA/m, wherein the first and second magnetic layers satisfy the below relationships and have thickness T(A) and T(B) in the below ranges: σs(A)/σs(B)≦1.0,Hc(A)/Hc(B)≦1.0, 1.0 μm≦T(A)≦4.0 μm,0.01 μm≦T(B)≦0.5 μm.
    • 本发明提供一种磁记录介质,其可通过例如用于商业用途的VTR记录数字和模拟信号,并提高其电磁转换特性。 磁记录介质包括非磁性载体以及分别由磁性粉末(A)和(B)组成的第一和第二磁性层,其中第一和第二磁性层依次形成在非磁性载体上,其中磁性粉末( A)和(B)具有以下特性:饱和磁化线(A):80-150Am 2 / kg; 矫顽力Hc(A):90〜180kA / m,饱和磁化信号(B):100〜200Am 2 / kg,矫顽力Hc(B):100〜200kA / 其中第一和第二磁性层满足以下关系,并且在下列范围内具有厚度T(A)和T(B):<?在线公式描述=“在线公式”end =“lead” sigmas(A)/ sigmas(B)<= 1.0,Hc(A)/ Hc(B)<= 1.0,<?in-line-formula description =“In-line Formulas”end =“tail”?> in-line-formula description =“In-line Formulas”end =“lead”?> 1.0 mum <= T(A)<= 4.0 mum,0.01 mum <= T(B)<= 0.5 mum。 <?in-line-formula description =“In-line Formulas”end =“tail”?>