Thermally assisted magnetic recording system and method of writing using magnetic and thermal gradients
    1.
    发明授权
    Thermally assisted magnetic recording system and method of writing using magnetic and thermal gradients 有权
    热辅助磁记录系统和使用磁和热梯度的写入方法

    公开(公告)号:US06950260B2

    公开(公告)日:2005-09-27

    申请号:US09874673

    申请日:2001-06-04

    摘要: A magnetic recording system is provided having a write head employing a combination of magnetic write field gradient and thermal gradient to write data on a ‘thermal spring’ magnetic recording media. The write head comprises a magnetic element using a write current to induce a magnetic write field at the magnetic media and a thermal element using a very small aperture laser to heat a portion of the media. The thermal spring magnetic media comprises [comprises] first and second stacks providing two exchange coupled ferromagnetic layers having different Curie temperatures [The first stack has a high magneto-crystalline anisotropy, a relatively low saturation magnetization and a low Curie temperature.] [The second stack has a relatively low magneto-crystalline anisotropy, a high saturation magnetization and a high Curie temperature.] The magnetic field gradient and the thermal gradient are arranged to substantially overlap at the trailing edge of the heated portion of the magnetic media allowing data at high density with high thermal stability to be recorded on the rapidly cooling thermal spring magnetic recording media.

    摘要翻译: 提供磁记录系统,其具有采用磁写场梯度和热梯度的组合的写头,以在“温度弹簧”磁记录介质上写入数据。 写头包括使用写入电流以在磁性介质上引起磁写入场的磁性元件,以及使用非常小的孔径激光器加热介质的一部分的热元件。 热弹簧磁介质包括[包括]第一和第二堆叠,提供具有不同居里温度的两个交换耦合铁磁层[第一堆叠具有高磁晶各向异性,相对低的饱和磁化强度和低居里温度]。[第二 堆叠具有相对较低的磁晶各向异性,高饱和磁化强度和高居里温度。]磁场梯度和热梯度被布置成在磁介质的加热部分的后缘处基本上重叠,允许高数据 具有高热稳定性的密度被记录在快速冷却的热弹簧磁记录介质上。

    Magnetic head having a heater circuit for thermally-assisted writing
    6.
    发明授权
    Magnetic head having a heater circuit for thermally-assisted writing 失效
    具有用于热辅助写入的加热器电路的磁头

    公开(公告)号:US07170714B2

    公开(公告)日:2007-01-30

    申请号:US11253494

    申请日:2005-10-17

    IPC分类号: G11B5/127

    摘要: A magnetic head for thermally-assisted writing of data to a disk is disclosed. In one illustrative example, the magnetic head includes a write head element and a heating element which is a resistive infared radiator. The heating element is coupled to at least one via pad which is exposed on an outer surface of the magnetic head. This via pad may be the same pad utilized for the write head element or for a read sensor. The heating element is formed beneath or within the pole tip such that it is able to transfer heat to a portion of the disk before the write head element can write data to it Advantageously, the heater facilitates the writing of data to high coercivity media.

    摘要翻译: 公开了一种用于将数据热辅助写入磁盘的磁头。 在一个说明性示例中,磁头包括写头元件和作为电阻式加注散热器的加热元件。 加热元件耦合到暴露在磁头的外表面上的至少一个通孔焊盘。 该通孔焊盘可以是用于写入头元件或读取传感器的相同的焊盘。 加热元件形成在极尖之下或之内,使得其能够在写头元件能够向其写入数据之前将热量传递到盘的一部分。有利地,加热器有助于将数据写入高矫顽力介质。

    Nanocomposite semiconducting material with reduced resistivity
    7.
    发明授权
    Nanocomposite semiconducting material with reduced resistivity 有权
    具有降低电阻率的纳米复合半导体材料

    公开(公告)号:US08228159B1

    公开(公告)日:2012-07-24

    申请号:US12253413

    申请日:2008-10-17

    IPC分类号: H01C7/10

    CPC分类号: H01C7/008 H01C7/006

    摘要: A resistor, fabricating method, and thermal sensor material for resistors that incorporate high Temperature Coefficient of Resistance (TCR) values and low resistivity for better sensitivity in infrared imaging applications are disclosed. Amorphous oxide thin films, preferably oxides of vanadium (VOx), were deposited on thermally grown silicon dioxide by direct current (DC) magnetron co-sputtering of noble metals (gold and platinum) in a controlled argon/oxygen atmosphere. The ideal conditions for preparing an amorphous vanadium oxide/noble metal thin film are identified. TCR and resistivity results showed that the additions of gold (Au) and platinum (Pt) into VOx reduced the resistivity. However, only gold (Au) was found to improve TCR value. Reducing the amount of oxygen in the thin film, further improved the ratio between TCR and resistivity. Infrared detection and imaging devices can be greatly improved with a “drop-in” amorphous vanadium oxide/noble metal thin film of the present invention.

    摘要翻译: 公开了一种用于电阻器的电阻器,制造方法和热传感器材料,其包含高温度电阻系数(TCR)值和低电阻率,用于在红外成像应用中更好的灵敏度。 通过直接(DC)磁控管共溅射贵金属(金和铂)在受控的氩/氧气氛中,将非晶氧化物薄膜(优选钒的氧化物(VO x))沉积在热生长的二氧化硅上。 鉴定了制备无定形氧化钒/贵金属薄膜的理想条件。 TCR和电阻率结果表明,向VOx中添加金(Au)和铂(Pt)降低了电阻率。 然而,仅发现金(Au)可以提高TCR值。 减少薄膜中的氧气量,进一步提高了TCR和电阻率之间的比例。 本发明的“滴入”无定形氧化钒/贵金属薄膜可以大大改善红外检测和成像装置。

    Magnetoresistive sensor utilizing a granular magnetoresistive layer
    8.
    发明授权
    Magnetoresistive sensor utilizing a granular magnetoresistive layer 失效
    利用粒状磁阻层的磁阻传感器

    公开(公告)号:US6016241A

    公开(公告)日:2000-01-18

    申请号:US445479

    申请日:1995-05-22

    摘要: A heterogeneous thin film structure including a discontinuous layer of ferromagnetic material deposited on an insulating substrate and overcoated with a layer of nonmagnetic electrically conductive material exhibits giant magnetoresistance in saturation fields on the order of 350 Oersteds. A layer of ferromagnetic material is deposited on a heated insulating substrate by high vacuum evaporation techniques to form a layer of isolated ferromagnetic particles and overcoated with a nonmagnetic conductive material to form a plurality of ferromagnetic particles embedded in a nonmagnetic conductive matrix. As the ferromagnetic and nonmagnetic materials are deposited separately, it is not required that the two materials be immiscible and subsequent annealing is not required to induce phase separation.

    摘要翻译: 包括沉积在绝缘衬底上并用非磁性导电材料层涂覆的铁磁材料不连续层的异质薄膜结构在350奥斯特数量级的饱和场中表现出巨大的磁阻。 通过高真空蒸发技术将一层铁磁材料沉积在加热的绝缘基板上,以形成隔离的铁磁颗粒层,并用非磁性导电材料涂覆以形成嵌入在非磁性导电基体中的多个铁磁性颗粒。 由于铁磁和非磁性材料分开沉积,所以不要求两种材料是不混溶的,并且不需要随后的退火以诱导相分离。