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An analytical thermal model for MR heads

机译:MR磁头的解析热模型

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In this work, we present an analytical study of temperature rise due to Joule heating in magnetoresistive heads. Using a transmission-line type model and proper boundary conditions, we derived an analytical formula, including thermal resistance, finite track width and conducting lead effects. Results show the temperature rise due to Joule heat is non-uniform along the MR track width direction: the temperature rise has its peak at the center and decreases rapidly off the track. The averaged temperature rise, which is what one measures experimentally, is 20% lower than the maximum temperature rise at 2 /spl mu/m track width. Although the temperature distribution also depends on thermal conductivities of both MR and lead materials, it more strongly depends on the thickness and thermal conductivity of the gap dielectric material.
机译:在这项工作中,我们对磁阻磁头中因焦耳热引起的温度升高进行了分析研究。使用传输线类型模型和适当的边界条件,我们得出了一个分析公式,包括热阻,有限的走线宽度和传导引线效应。结果表明,由于焦耳热引起的温度上升沿MR磁道宽度方向不均匀:温度上升在中心处达到峰值,并在磁道外迅速下降。平均温升(这是通过实验测量的)比轨道宽度为2 / spl mu / m时的最大温升低20%。尽管温度分布还取决于MR和引线材料的导热率,但更强烈地取决于间隙介电材料的厚度和导热率。

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