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Characterization of Pressure-less Ag-Sinter using Innovative Sample Preparation Approach

机译:使用创新的样品制备方法表征减压AG-烧结的

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Pressure-less Ag-sinter die attach materials are characterized in the present study using test samples processed to a thickness from 20 to $240mu mathrm{m}$ by stencil printing and sintering at 200°C for 1h. For test samples to a thickness from $250mu mathrm{m}$ to 7.5mm processed by stacking a few layers of printed Ag-sinter and sintering them at 200°C for 1h. These Ag-sinter test samples are processed to the dimensions required to be evaluated with commercially available test equipment's as per standard test procedures. The measured electrical/thermal/mechanical properties of pressure-less Ag-sinter film/sheet/bar are as follows: 1.electrical sheet resistivity measured using 4-probe method is from 8.5 to $9.5 muOmega$. cm 2.thermal conductivity measured using LaTIMA approach is about 150 W/m°K 3.coefficient of thermal expansion (CTE) measured using TMA is 19.4ppm 4.specific heat capacity (Cp) measured using DSC is 0.25 J/Kg°K 5.elastic modulus (E-modulus) measured by ultrasonic through transmission mode is 7.2 GPa 6.all these test samples revealed good networked Ag interconnects along with 50% shrinkage porosities likely discontinuous type
机译:减少压力的AG-烧结模具附着材料的特征在于本研究,使用从20到20的厚度加工成厚度 $ 240 mu mathrm {m $ 通过模版印刷和烧结在200℃下1小时。用于厚度的测试样品 $ 250 math mathrm {m $ 通过将几层印刷的Ag-Sinter堆叠并在200℃下烧结1小时来加工7.5mm。将这些AG-Sinter测试样品加工到以可商用的测试设备进行评估所需的尺寸,按标准测试程序进行评估。减压的电气/热/力/机械性能的较低的AG-烧结薄膜/杆如下:1.使用4探针方法测量的电切片电阻率为8.5至 $ 9.5 mu omega $ 。 CM 2.使用Latima方法测量的热电导率为约150W / m°K.使用TMA测量的热膨胀(CTE)的差异是19.4ppm 4.使用DSC测量的特异性热容量(CP)为0.25J / kg°K. 5.通过超声波通过传输模式测量的弹性模量(E-Modulus)是7.2 GPA 6.所有这些测试样本透露了良好的网络互连,以及50%的收缩孔隙型可能不连续类型

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