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    • 2. 发明授权
    • Disk drive and head assembly having hole sequences
    • 具有孔序列的磁盘驱动器和磁头组件
    • US08102628B2
    • 2012-01-24
    • US11726614
    • 2007-03-21
    • Ryohei OtaEiji SogaNobumasa NishiyamaHiroyasu Tsuchida
    • Ryohei OtaEiji SogaNobumasa NishiyamaHiroyasu Tsuchida
    • G11B21/16G11B5/48
    • G11B5/486
    • Embodiments disclose hole sequences that are formed in the metal layer of a trace to adjust rigidity and crosstalk noise resulting from the hole sequences is thereby suppressed. A suspension according to one aspect of the invention includes a trace adapted to transmit a signal of a head slider. The trace partially extends along the side surface of the suspension. The trace includes a metal layer, a plurality of transmission lines formed above the metal layer and an insulating layer. A hole sequence overlapping the transmission lines is formed in part of the metal layer, which contributes to a reduction in transmission loss. Another hole sequence of the metal layer is formed at a position opposed to the hinge portion of the suspension. This reduces the rigidity of the wiring structure portion in the hinge portion, thereby preventing interference with the behavior of the suspension at the hinge portion.
    • 实施例公开了在痕迹的金属层中形成的调整刚性的孔序列,从而抑制由空穴序列产生的串扰噪声。 根据本发明的一个方面的悬架包括适于传输磁头滑块的信号的轨迹。 轨迹部分沿着悬架的侧表面延伸。 迹线包括金属层,形成在金属层上方的多条传输线和绝缘层。 与传输线重叠的孔序列形成在金属层的一部分中,这有助于传输损耗的降低。 金属层的另一个孔序列形成在与悬架的铰链部分相对的位置处。 这就降低了铰链部分中的布线结构部分的刚度,从而防止了在铰链部分处的悬架的行为的干扰。
    • 3. 发明申请
    • Disk drive and head assembly used in the same
    • 磁盘驱动器和头组件使用在同一个
    • US20070230059A1
    • 2007-10-04
    • US11726614
    • 2007-03-21
    • Ryohei OtaEiji SogaNobumasa NishiyamaHiroyasu Tsuchida
    • Ryohei OtaEiji SogaNobumasa NishiyamaHiroyasu Tsuchida
    • G11B5/48
    • G11B5/486
    • Embodiments in accordance with the present invention disclose hole sequences that are formed in the metal layer of a trace to adjust rigidity and crosstalk noise resulting from the hole sequences is thereby suppressed. A suspension according to one aspect of the invention includes a trace adapted to transmit a signal of a head slider. The trace partially extends along the side surface of the suspension. The trace includes a metal layer, a plurality of transmission lines formed above the metal layer and an insulating layer. A hole sequence overlapping the transmission lines is formed in part of the metal layer, which contributes to a reduction in transmission loss. Another hole sequence of the metal layer is formed at a position opposed to the hinge portion of the suspension. This reduces the rigidity of the wiring structure portion in the hinge portion, thereby preventing interference with the behavior of the suspension at the hinge portion.
    • 根据本发明的实施例公开了在轨迹的金属层中形成的调整刚度的孔序列,从而抑制由空穴序列产生的串扰噪声。 根据本发明的一个方面的悬架包括适于传输磁头滑块的信号的轨迹。 轨迹部分沿着悬架的侧表面延伸。 迹线包括金属层,形成在金属层上方的多条传输线和绝缘层。 与传输线重叠的孔序列形成在金属层的一部分中,这有助于传输损耗的降低。 金属层的另一个孔序列形成在与悬架的铰链部分相对的位置处。 这就降低了铰链部分中的布线结构部分的刚度,从而防止了在铰链部分处的悬架的行为的干扰。
    • 5. 发明申请
    • HEAD-GIMBAL ASSEMBLY INCLUDING PIEZOELECTRIC ELEMENTS
    • 主要组件包括压电元件
    • US20110051289A1
    • 2011-03-03
    • US12870626
    • 2010-08-27
    • Eiji SogaHiroyasu Tsuchida
    • Eiji SogaHiroyasu Tsuchida
    • G11B5/48
    • G11B5/4833G11B5/4873
    • A head-gimbal assembly (HGA). The HGA includes a deformable plate affixed to a load beam, a piezoelectric element affixed to the deformable plate, and a base plate affixed to the deformable plate. The deformable plate includes: a hole; a first section in front of the hole and affixed to the load beam; a second section behind the hole and affixed to the base plate; and, first and second spring members that join the first section and the second section, can deform in a front-back direction, and are positioned to sandwich the hole in a left-right direction. The piezoelectric element is affixed between the first section and the second section. The base plate includes projection members on a front edge of the plate and projecting out toward the first section. The front edges of the projection member are positioned further to a front edge than a back edge of the hole.
    • 头万向架(HGA)。 HGA包括固定到负载梁的可变形板,固定到可变形板的压电元件和固定到可变形板上的基板。 可变形板包括:孔; 在孔的前面的第一部分并且固定到负载梁上; 孔后面的第二部分,固定在基板上; 并且连接第一部分和第二部分的第一和第二弹性部件可以在前后方向上变形,并且被定位成沿着左右方向夹住孔。 压电元件固定在第一部分和第二部分之间。 基板包括在板的前边缘上的突出部件,并向第一部分突出。 突起构件的前边缘比孔的后边缘进一步定位在前边缘。
    • 6. 发明申请
    • DISK DRIVE WITH MICRO-ACTUATOR INTERCONNECT CONDITIONING
    • 磁盘驱动器与微操作器互连调节
    • US20110013319A1
    • 2011-01-20
    • US12839342
    • 2010-07-19
    • Eiji SogaHiroyasu TsuchidaAkio TakatsukaMasaru MuranishiHidehiko Numasato
    • Eiji SogaHiroyasu TsuchidaAkio TakatsukaMasaru MuranishiHidehiko Numasato
    • G11B5/48
    • G11B5/4833G11B5/4873G11B5/5552G11B5/596
    • A disk drive configured with micro-actuator interconnect conditioning. The disk drive includes a disk, a head, an actuator, a piezoelectric element, a hardened conductive adhesive, a voltage-supply circuit, and a controller. The head is configured to access the disk. The actuator includes a suspension supporting the head, and an arm supporting the suspension. The piezoelectric element is disposed on the suspension, is electrically connected to a first drive line and a second drive line, and is configured to change the position of the head. The hardened conductive adhesive is electrically connected to at least one connecting part of the piezoelectric element and the first drive line. The voltage-supply circuit is configured to supply a voltage to the piezoelectric element. The controller is configured to control a voltage-control circuit each time a designated process is executed, and to apply a voltage to the piezoelectric element with a prescribed maximum absolute value.
    • 配置有微执行器互连条件的磁盘驱动器。 磁盘驱动器包括盘,头,致动器,压电元件,硬化导电粘合剂,电压供应电路和控制器。 头被配置为访问磁盘。 致动器包括支撑头部的悬架和支撑悬架的臂。 压电元件设置在悬架上,电连接到第一驱动线和第二驱动线,并且被配置为改变头的位置。 硬化的导电粘合剂电连接到压电元件和第一驱动线的至少一个连接部分。 电压供给电路构成为向压电元件供给电压。 控制器被配置为每当执行指定处理时控制电压控制电路,并且以规定的最大绝对值向压电元件施加电压。
    • 7. 发明授权
    • Apparatus and method for fixing and checking connections of piezoelectric sensor, actuator, and disk unit
    • 用于固定和检查压电传感器,致动器和磁盘单元的连接的装置和方法
    • US06604431B1
    • 2003-08-12
    • US09618987
    • 2000-07-19
    • Eiji SogaShingo TsudaKiyoshi Satoh
    • Eiji SogaShingo TsudaKiyoshi Satoh
    • G01B716
    • G11B5/4853G11B5/4833H01L41/0477H01L41/1132
    • To provide a piezoelectric sensor that never sacrifices work properties such as when a lead wire is to be soldered to one of a pair of electrodes of a piezoelectric sensor, and the other electrode is to be bonded and fixed to a predetermined member with an adhesive, and to bond the ground electrode of the piezoelectric sensor to the conductive portion of the object member with an adhesive so as to be fixed and connected electrically, thereby preventing a short-circuit that might occur between the two electrodes due to extruded and stuck adhesive, and to provide an easier method for testing whether or not the ground electrode is connected electrically to the conductive portion of the object member. A piezoelectric sensor has two electrodes that are formed with different materials appropriate for soldering and bonding by an adhesive. The ground electrode of the piezoelectric sensor is bonded to the object member with a non-conductive adhesive so as to be connected electrically. Furthermore, the capacity between the output electrode of the piezoelectric sensor and the object member is measured to check the electrical connection between the ground electrode and the object member.
    • 为了提供一种从不牺牲工作性能的压电传感器,例如当引线被焊接到压电传感器的一对电极中的一个电极时,另一个电极将被粘合并固定到预定的部件上, 并且用粘合剂将压电传感器的接地电极连接到物体部件的导电部分上以便被电固定和连接,从而防止由于挤出和粘合粘合剂而在两个电极之间可能发生的短路, 并且提供用于测试接地电极是否电连接到对象构件的导电部分的更容易的方法。 压电传感器具有两个电极,其形成有适于通过粘合剂进行焊接和粘合的不同材料。 压电传感器的接地电极用非导电粘合剂结合到物体部件上,以便电连接。 此外,测量压电传感器的输出电极和对象构件之间的电容,以检查接地电极和对象构件之间的电连接。
    • 8. 发明授权
    • Magnet design for active damping of disk drive actuator
    • 用于磁盘驱动器执行器主动阻尼的磁铁设计
    • US06392845B1
    • 2002-05-21
    • US09608516
    • 2000-06-30
    • Shingo TsudaEiji SogaKiyoshi SatohFu-Ying HuangTetsuo Senba
    • Shingo TsudaEiji SogaKiyoshi SatohFu-Ying HuangTetsuo Senba
    • G11B548
    • G11B5/4833H02K41/0358
    • A stator magnet according to a first embodiment of the present invention forms a voice coil motor with a closed coil. The closed coil is supported by an actuator arm in a rotatable manner and at a predetermined rotation angle. The closed coil has first and second side edges that extend along different lines in radial directions whose center is a center of rotation of the actuator arm. It also has an outer edge that connects edges of outer sides of the first and second side edges with viewed from the radial direction, and extends along an arc whose center is the center of rotation. A first magnetic pole region is located within a moving area of the first side edge to act on the first side edge. A second magnetic pole region is located within a moving area of the second side edge to act on the second side edge. The polarity of the second magnetic pole region is opposite to the polarity of the first magnetic pole region. A third magnetic pole region is located within a moving area of the outer edge to act on the outer edge. The polarity of the third magnetic pole region is the same as the polarity of the first magnetic pole region.
    • 根据本发明的第一实施例的定子磁体形成具有闭合线圈的音圈电动机。 闭合线圈由致动器臂以可旋转的方式和预定的旋转角度支撑。 闭合线圈具有第一和第二侧边缘,该第一和第二侧边缘沿径向方向沿着不同的线延伸,其中心是致动器臂的旋转中心。 它还具有从径向观察连接第一和第二侧边缘的外侧的边缘的外边缘,并且沿着其中心是旋转中心的弧线延伸。 第一磁极区域位于第一侧边缘的移动区域内以作用在第一侧边缘上。 第二磁极区域位于第二侧边缘的移动区域内以作用在第二侧边缘上。 第二磁极区域的极性与第一磁极区域的极性相反。 第三磁极区域位于外边缘的移动区域内以作用于外边缘。 第三磁极区域的极性与第一磁极区域的极性相同。