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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >Partial Dynamic Element Matching Technique for Digital-to-Analog Converters Used for Digital Harmonic-Cancelling Sine-Wave Synthesis
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Partial Dynamic Element Matching Technique for Digital-to-Analog Converters Used for Digital Harmonic-Cancelling Sine-Wave Synthesis

机译:用于数字谐波消除正弦波合成的数模转换器的部分动态元素匹配技术

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摘要

Digital harmonic-cancelling sine-wave synthesizers (DHSSs) use a 47 year old concept, recently revived as a power and area efficient solution for on-chip sine-wave synthesis. The operation of a DHSS involves amplitude scaling and summing a set of square-waves to produce a sampled sine-wave. The circuit which performs the scaling and summing operation is referred to as the harmonic-cancelling digital-to-analog converter (HC-DAC). Unlike a regular DAC whose amplitude weights are defined by powers of two, an HC-DAC’s amplitude weights are defined by a sine function. Thus, HC-DACs present intriguing design problems which cannot be solved using the conventional knowledge gathered from designing regular DACs. One such problem is managing the effect of mismatch between unit-elements in HC-DACs. This paper proposes a partial dynamic element matching (DEM) technique tailored for HC-DACs, which reduces the effect of mismatch, while preserving the power and area efficiency of DHSSs. The effectiveness of the DEM technique is evaluated using a DHSS circuit fabricated in an STMicroelectronics 130 nm CMOS technology. Test results show that applying the DEM technique increased the figure-of-merit of the DHSS by 40% at 2 MHz output frequency.
机译:数字谐波消除正弦波合成器(DHSS)使用了47年的概念,最近被重新用作片上正弦波合成的功率和面积有效解决方案。 DHSS的操作涉及幅度缩放和将一组方波求和以产生采样的正弦波。执行缩放和求和操作的电路称为消除谐波的数模转换器(HC-DAC)。不同于常规DAC的幅度权重由2的幂定义,HC-DAC的幅度权重由正弦函数定义。因此,HC-DAC存在着令人着迷的设计问题,而这些问题不能使用从设计常规DAC时收集到的常规知识来解决。这样的问题之一是管理HC-DAC中单元元素之间不匹配的影响。本文提出了一种针对HC-DAC的局部动态元件匹配(DEM)技术,该技术可降低失配的影响,同时保留DHSS的功率和面积效率。使用在STMicroelectronics 130 nm CMOS技术中制造的DHSS电路评估DEM技术的有效性。测试结果表明,使用DEM技术在2 MHz输出频率下可使DHSS的品质因数提高40%。

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