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Optimal resistor ratio in the DAC with low precision resistors $statistical approach

机译:采用低精度电阻的DAC中的最佳电阻比

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The widely used digital-analog converter is the one with 2R/R ladder circuit. It can be easy realized as an integrated circuit, but accurate input-output characteristic require extremely precise resistors. With the laser trimming technology it is possible to improve converter accuracy, but aging and environmental factors decrease linearity and overall accuracy of a converter, thus reducing the usable life and the converter applicability. We propose a new DAC design based on 2R/sup +//R ladder circuit, where a high precision is obtained due to better coverage of analog range at the transfer characteristic (even for low precision resistors, ex. 1%, 2% and 5% resistor tolerance). Statistical method shows that various allowed tolerances of the circuit resistors are associated with various optimal resistor ratios in an 2R/sup +//R circuit.
机译:广泛使用的数模转换器是具有2R / R梯形电路的数字转换器。它可以简单地实现为集成电路,但精确的输入 - 输出特性需要极其精确的电阻。通过激光修剪技术,可以提高转换器精度,但老化和环境因素降低转换器的线性度和整体精度,从而降低了可用的寿命和转换器适用性。我们提出了一种基于2R / SUP + // R梯形电路的新型DAC设计,其中由于在转移特性的更好的模拟范围内获得了高精度(即使对于低精密电阻,EX。1%,2%和5%电阻耐受性)。统计方法表明,在2R / SUP + // R电路中,电路电阻器的各种允许的电路公差与各种最佳电阻器比相关联。

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