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Digital Calibration of Amplifier Finite DC Gain and Gain Bandwidth in MASH Modulators

机译:MASH调制器中的放大器有限直流增益和增益带宽的数字校准

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In this brief, a digital background calibration technique is proposed to improve the resolution of discrete-time multistage noise-shaping (MASH) sigma–delta modulators. The circuit imperfections of switched-capacitor discrete-time integrators (DTIs) degenerate the modulator output resolution, particularly in MASH structures, due to the quantization noise leakage of the early stages at the modulator output. An accumulative error model is proposed to define the errors induced by the limited dc gain and gain bandwidth (GBW) of DTIs as a function of their outputs. Compensating for these errors is possible through two steps, which are the DTI output digital approximation and adaptive filter correction. To identify the adaptive filter parameters, 1-b pseudorandom noise test signals are injected to the inputs of the DTIs. Then, the effect of these test signals is investigated by using a correlation-based least-mean-square algorithm. Simulation results confirm the effectiveness of the proposed method to eliminate the errors associated with the finite dc gain and GBW. Consequently, relaxed amplifiers with lower power consumption can be used.
机译:在本文中,提出了一种数字背景校准技术,以提高离散时间多级噪声整形(MASH)sigma-delta调制器的分辨率。开关电容离散时间积分器(DTI)的电路缺陷会降低调制器输出分辨率,特别是在MASH结构中,这是由于调制器输出早期的量化噪声泄漏所致。提出了一个累积误差模型,以定义由DTI的受限直流增益和增益带宽(GBW)引起的误差作为其输出的函数。通过两个步骤可以补偿这些误差,这两个步骤是DTI输出数字逼近和自适应滤波器校正。为了识别自适应滤波器参数,将1-b伪随机噪声测试信号注入DTI的输入。然后,通过使用基于相关的最小均方算法研究这些测试信号的效果。仿真结果证实了所提方法消除与有限直流增益和GBW相关的误差的有效性。因此,可以使用功耗较低的松弛放大器。

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