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    • 1. 发明授权
    • Slider with temperature responsive transducer positioning
    • 滑块带温度响应传感器定位
    • US5991113A
    • 1999-11-23
    • US833590
    • 1997-04-07
    • Dallas W. MeyerPaul E. KupinskiJoseph C. Liu
    • Dallas W. MeyerPaul E. KupinskiJoseph C. Liu
    • G11B5/55G11B21/02
    • G11B21/025G11B5/5565G11B5/6064
    • A device for reading and recording magnetic data includes an aerodynamically supported slider with an air bearing surface, and a transducer mounted to the slider for movement toward and away from the air bearing surface responsive to changes in the slider operating temperature. In one embodiment, the transducer movement is primarily due to a difference in thermal expansion coefficients between a transducing region of the slider incorporating the transducer, and the remainder of the slider body. In another embodiment, a strip of thermally expansive material is incorporated into the slider near the transducer to contribute to the displacement by its own expansion. A temperature control circuit, coupled to the strip of thermally expansive material or to a resistance heating element on the slider, employs a variable current source to control the slider temperature and transducer displacement. Nominal slider operating temperatures can be set to achieve a predetermined transducer flying height, to compensate for variations in flying heights among batch fabricated sliders. Optionally, a temperature sensor can be employed to measure the slider operating temperatures and provide a temperature sensitive input to the temperature control circuit.
    • 用于读取和记录磁数据的装置包括具有空气轴承表面的空气动力学支撑的滑块和安装到滑动件的换能器,以响应于滑块操作温度的变化而朝向和远离空气轴承表面移动。 在一个实施例中,换能器移动主要是由于包含换能器的滑块的换能区域与滑块体的其余部分之间的热膨胀系数的差异。 在另一个实施例中,热膨胀材料条被并入到换能器附近的滑块中,以通过其自身的膨胀来促成位移。 耦合到热膨胀材料条或滑块上的电阻加热元件的温度控制电路采用可变电流源来控制滑块温度和换能器位移。 可以设定公称滑块的操作温度以实现预定的换能器飞行高度,以补偿批量制造的滑块之间的飞行高度的变化。 可选地,可以采用温度传感器来测量滑块操作温度,并向温度控制电路提供温度敏感输入。
    • 5. 发明授权
    • Flat-plate photovoltaic module
    • 平板光伏组件
    • US08748727B2
    • 2014-06-10
    • US12357268
    • 2009-01-21
    • Dallas W. Meyer
    • Dallas W. Meyer
    • H01L31/05
    • H01L31/02021H02S40/32Y02E10/50Y10T307/653
    • One example embodiment includes a PV module comprising a conductive backsheet, a non-conductive layer disposed on the conductive backsheet, a plurality of PV cells arranged in rows and collectively generating a first power output characterized by a first voltage, and a power conversion device. Each of the rows can include two or more PV cells. The PV cells within each row can be connected to each other in parallel. The rows can be connected in series. A top row can be connected to the conductive backsheet. The power conversion device can be redundantly connected to a bottom row and to the conductive backsheet to form a complete circuit. The power conversion device can convert the first power output to a second power output characterized by a second voltage that is larger than the first voltage. The power conversion device can also maintain peak power of the PV cells.
    • 一个示例实施例包括PV模块,其包括导电底片,设置在导电底片上的非导电层,排列成行并共同产生以第一电压为特征的第一功率输出的多个PV电池以及功率转换装置。 每行可以包括两个或更多个PV电池。 每行中的PV电池可以并联连接。 这些行可以串联连接。 顶排可以连接到导电底片。 电力转换装置可以冗余地连接到底行和导电底片以形成完整的电路。 电力转换装置可以将第一功率输出转换为特征在于大于第一电压的第二电压的第二功率输出。 电力转换装置还可以保持PV电池的峰值功率。
    • 6. 发明申请
    • INTEGRATED RECORDING HEAD WITH SELECTIVE MOVEMENT
    • 集成记录头与选择性运动
    • US20110038078A1
    • 2011-02-17
    • US12914688
    • 2010-10-28
    • Dallas W. Meyer
    • Dallas W. Meyer
    • G11B5/127
    • G11B21/21G11B5/48G11B5/4826G11B5/4873G11B5/5552G11B5/58
    • A recording head for use in magnetic storage devices is disclosed. The recording head includes a transducer that is bi-directionally movable with respect to a surface of the magnetic storage medium, thereby enabling improved positioning of the transducer during recording head read and write operations. Various structures are disclosed to bi-directionally actuate the recording head transducer. In one embodiment, an interleaver assembly having a plurality of flexure assemblies employs a motor including magnetic portions for selective, bi-directional actuation. In another embodiment, electrostatic charges are employed in the flexure assemblies for selective actuation. In yet another embodiment, piezoelectric elements are included to provide for selective actuation.
    • 公开了一种用于磁存储装置的记录头。 记录头包括相对于磁存储介质的表面双向移动的换能器,从而能够在记录头读写操作期间改进换能器的定位。 公开了各种结构以双向致动记录头传感器。 在一个实施例中,具有多个挠曲组件的交织器组件采用包括用于选择性双向致动的磁性部分的电动机。 在另一个实施例中,静电荷用于挠曲组件以用于选择性致动。 在另一个实施例中,包括压电元件以提供选择性致动。
    • 9. 发明申请
    • INTEGRATED RECORDING HEAD WITH BIDIRECTIONAL ACTUATION
    • 集成记录头与双向执行
    • US20090296264A1
    • 2009-12-03
    • US12472325
    • 2009-05-26
    • Dallas W. Meyer
    • Dallas W. Meyer
    • G11B21/02
    • G11B21/21G11B5/48G11B5/4826G11B5/4873G11B5/5552G11B5/58
    • A recording head for use in magnetic storage devices is disclosed. The recording head includes a transducer that is bi-directionally movable with respect to a surface of the magnetic storage medium, thereby enabling improved positioning of the transducer during recording head read and write operations. Various structures are disclosed to bi-directionally actuate the recording head transducer. In one embodiment, an interleaver assembly having a plurality of flexure assemblies employs a motor including magnetic portions for selective, bi-directional actuation. In another embodiment, electrostatic charges are employed in the flexure assemblies for selective actuation. In yet another embodiment, piezoelectric elements are included to provide for selective actuation.
    • 公开了一种用于磁存储装置的记录头。 记录头包括相对于磁存储介质的表面双向移动的换能器,从而能够在记录头读写操作期间改进换能器的定位。 公开了各种结构以双向致动记录头传感器。 在一个实施例中,具有多个挠曲组件的交织器组件采用包括用于选择性双向致动的磁性部分的电动机。 在另一个实施例中,静电荷用于挠曲组件以用于选择性致动。 在另一个实施例中,包括压电元件以提供选择性致动。