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Thick-Film Laser Trimming Principles, Techniques and Recommendations

机译:厚膜激光微调原理,技术和建议

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摘要

Trimming plays an essential role in the manufacture of thick-film resistor networks. The process used to define circuit elements on a substrate, based on silk-screening techniques, is fast and inexpensive and has greatly increased the volume of manufactured devices. However, the same factors that contribute to making the screening process economical in terms of time and simplicity also present difficulties in creating consistently accurate devices. Because of inaccuracies and variations in the screening process, manufacturers cannot guarartee resistors to better than ±10 to 20% of the desired value. Trimming each resistor enables them to overcome the inherent limitations of the screening process and increase their yields of accurate and reliable devices. The laser has become an effective tool for trimming resistors because it is fast as well as accurate and can be controlled in order to produce consistent results. The following article discusses the objectives and principles behind laser trimming, the variables that affect the ability to produce an accurate trim, and different trimming techniques. It also offers recommendations for achieving optimum trimming speed and precision.
机译:修整在厚膜电阻器网络的制造中起着至关重要的作用。基于丝网印刷技术的用于在基板上限定电路元件的过程是快速且廉价的,并且极大地增加了制造设备的体积。然而,就时间和简单性而言,促使筛选过程经济化的相同因素也给建立始终如一的精确设备带来了困难。由于屏蔽过程的不准确性和差异,制造商无法保证电阻器的阻值优于所需值的±10%至20%。修整每个电阻器使它们能够克服筛选过程的固有局限性,并提高其精确可靠器件的产量。激光已经成为微调电阻的有效工具,因为它既快速又准确,并且可以控制以产生一致的结果。下面的文章讨论了激光修整的目的和原理,影响产生精确修整能力的变量以及不同的修整技术。它还提供了实现最佳修剪速度和精度的建议。

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