Embedded low power clock generator for sensor nodes

O. Schrape, F. Vater
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引用次数: 2

Abstract

In this paper an embedded clock generation solution for low power sensor nodes is presented. A design example of a Digitally Controlled Oscillator (DCO) is given and compared to other approaches. The paper discusses the most common clock architectures for sensor nodes, their design challenges and potential integration issues. The proposed DCO is adjustable to 64 different frequencies in the range of 5.8 MHz to 13.9 MHz fed by a 2.5 V voltage supply. With an area utilization of 0.024mm2 in a 0.25 μm SiGe BiCMOS process, and an average current consumption of less than 106 μA, it fits best into power-area trade off for an internal several-MHz clock generator. It is designed as an IP-Core and can be placed directly into the digital core of a sensor node. Due to its robustness, the DCO can be connected to the noisy digital voltage supply. A test chip was sent to fabrication.
嵌入式低功耗时钟发生器传感器节点
提出了一种用于低功耗传感器节点的嵌入式时钟生成方案。给出了一个数字控制振荡器(DCO)的设计实例,并与其他方法进行了比较。本文讨论了传感器节点最常见的时钟架构,它们的设计挑战和潜在的集成问题。所提出的DCO可调至5.8 MHz至13.9 MHz范围内的64个不同频率,由2.5 V电压电源供电。在0.25 μm SiGe BiCMOS工艺中,其面积利用率为0.024mm2,平均电流消耗小于106 μA,最适合用于内部几mhz时钟发生器的功率面积权衡。它被设计为ip核,可以直接放置到传感器节点的数字核中。由于其鲁棒性,DCO可以连接到有噪声的数字电压电源。一个测试芯片被送去制造。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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