基于自调节两步积分器的单电流开关阵列无rom DDS

Haruki Shibue, H. Nosaka
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引用次数: 1

摘要

本文提出了一种新型的低功耗无rom DDS,它只有一个电流开关阵列。相位插补器减少了累加器溢出信号中的抖动,使DDS能够获得高频率纯度的脉冲。新提出的自调节两步积分器自动产生适当幅度的斜坡波,无需根据时钟频率改变阈值电压。因此,可以将传统相位插补dds所需的双电流开关阵列减少一半,适用于低功耗。该DDS的频率纯度可以容忍PVT变化,因为电流开关阵列的阈值电压或单位电流的制造变化与相位插补操作无关。实验结果证实了频率合成器的工作,杂散信号电平被降低到小于累加器的电平。
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A ROM-Less DDS with Single Current-Switch Array Using Self-Adjusting Two-Step Integrator
This paper presents a new low-power ROM-less DDS with only a single current-switch array. The phase interpolator reduces the jitter contained in the accumulator overflow signal, so the DDS can obtain pulses with high frequency purity. The newly proposed self-adjusting two-step integrator automatically generates ramp waves of appropriate amplitude, eliminating the need to change the threshold voltage according to the clock frequency. Therefore, the dual current-switch array, which was required in the conventional phase interpolation DDSs, can be reduced by half, which is suitable for low power consumption. The frequency purity of this DDS is tolerant to PVT variations, because the manufacturing variation of the threshold voltage or unit current of the current-switch array is irrelevant to the phase interpolation operation. Experimental results confirm frequency synthesizer operation in which the spurious signal level is reduced to less than that of the accumulator.
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