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Crosstalk Reduction on 6-line Suspension Assembly Interconnect Trace in Head Gimbal Assembly by using Guard Technique

机译:使用保护技术减少头部万向架组件中六线悬架组件互连迹线的串扰

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The guard technique is proposed by adding the stainless steel at backing layer to reduce the crosstalk on 6 lines suspension assembly interconnect trace (SAIT). The Near-End and Far- End crosstalk coefficients (NEXT and FEXT) are used to analyze the crosstalk on the SAIT in the frequency of 0-20 GHz. The finite integration technique (FIT) is used in the simulation based on CST microwave studio. The space between heat and read pairs is modified and guard addition at the space is also varied. From the results, it is found that the varying of space cannot reduce the crosstalk. However, the additional guard can reduce the crosstalk by monitoring the NEXT and FEXT. The lowest crosstalk is at 100% of the space with 100% of guard that can attenuate the noise around 4.7 and 3.2 dB for NEXT and FEXT, respectively. The 80% of space with 80% of additional guard has the crosstalk less than or equal to the conventional SAIT. In addition, it can also decrease the dimension of SAIT about 11.87% of the conventional SAIT. Hence, this technique can reduce the crosstalk and can decrease the dimension of the SAIT which is useful for the robustness for future SAIT design.
机译:通过在衬里层添加不锈钢以减少6条线路悬架组件互连迹线(SAIT)上的串扰,提出了防护技术。近端和远端串扰系数(NEXT和FEXT)用于分析0-20 GHz频率下SAIT上的串扰。在基于CST微波工作室的仿真中采用了有限积分技术(FIT)。修改了热对和读取对之间的空间,并且该空间处的保护添加也有所变化。从结果发现,空间的变化不能减小串扰。但是,额外的保护措施可以通过监视NEXT和FEXT来减少串扰。最低的串扰是在100%的空间和100%的保护下,可以分别将NE​​XT和FEXT的噪声衰减到4.7 dB和3.2 dB左右。 80%的空间加上80%的额外保护,其串扰小于或等于常规SAIT。另外,它还可以将SAIT的尺寸减小到常规SAIT的约11.87%。因此,该技术可以减少串扰并可以减小SAIT的尺寸,这对于将来SAIT设计的鲁棒性很有用。

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