Inductive Switching Noise Suppression Technique for Mixed-Signal ICs Using Standard CMOS Digital Technology

Hyungjin Im, K. Kim
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Abstract

An efficient inductive switching noise suppression technique for mixed-signal integrated circuits (ICs) using standard CMOS digital technology is proposed. The proposed design technique uses a parallel RC circuit, which provides a damping path for the switching noise. The proposed design technique is used for designing a mixed-signal circuit composed of a ring oscillator, a digital output buffer, and an analog noise sensor node for 0.13-µm CMOS digital IC technology. Simulation results show a 47% reduction in the on-chip inductive switching noise coupling from the noisy digital to the analog blocks in the same substrate without an additional propagation delay. The increased power consumption due to the damping resistor is only 67% of that of the conventional source damping technique. This design can be widely used for any kind of analog and high frequency digital mixed-signal circuits in CMOS technology.
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基于标准CMOS数字技术的混合信号集成电路电感开关噪声抑制技术
提出了一种基于标准CMOS数字技术的高效混合信号集成电路电感开关噪声抑制技术。该设计技术采用并联RC电路,为开关噪声提供了阻尼路径。该设计技术用于0.13µm CMOS数字集成电路技术,设计了由环形振荡器、数字输出缓冲器和模拟噪声传感器节点组成的混合信号电路。仿真结果表明,在没有额外传播延迟的情况下,片上电感开关噪声从噪声数字块到模拟块的耦合降低了47%。由于阻尼电阻增加的功耗仅为传统源阻尼技术的67%。该设计可广泛应用于CMOS技术下的各种模拟和高频数字混合信号电路。
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