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Minimum Power-Consumption Estimation in ROM-Based DDFS for Frequency-Hopping Ultralow-Power Transmitters

机译:跳频超低功耗发射机的基于ROM的DDFS中的最小功耗估算

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The future of all kinds of applications that require a submilliwatt consumption strictly depends on the capability to meet design specifications at the minimum power costs. While several computer-aided-design tools are present to estimate the power consumption of modern ICs at transistor level, it is very difficult to predict the power at higher level. Given the reduced time-to-market of modern communication devices, it is very often needed to have accurate power estimations prior to the transistor-level design. Allocating a too conservative power budget to a block implies a possible poor tradeoff between the specifications of building blocks that constitute the system and their power consumption. For future power-constrained wireless devices (like wireless nodes in sensor networks), it is very important to have high-level models which can help the designer with the initial high-level choices without going into transistor-level design. One of the important blocks in modern communication devices, particularly for spread-spectrum systems, is the frequency synthesizer. In this paper, the first power-consumption model for an ultralow-power ROM-based direct digital frequency synthesizer has been developed, which can help the designer in the power optimization at a high level prior to transistor implementation.
机译:要求亚兆瓦级功耗的各种应用的未来严格取决于以最小的电源成本满足设计规范的能力。尽管存在几种计算机辅助设计工具来估算晶体管级现代IC的功耗,但要预测较高级的功耗却非常困难。鉴于现代通信设备的上市时间缩短,经常需要在晶体管级设计之前进行准确的功率估算。将过于保守的功率预算分配给一个块意味着在构成系统的构建块的规格与其功耗之间可能存在较差的折衷。对于未来功率受限的无线设备(例如传感器网络中的无线节点),拥有高级模型非常重要,该模型可以帮助设计人员进行初始的高级选择,而无需进入晶体管级设计。频率合成器是现代通信设备(尤其是扩频系统)中的重要模块之一。本文针对基于超低功耗ROM的直接数字频率合成器开发了第一个功耗模型,该模型可以帮助设计人员在晶体管实现之前进行高水平的功耗优化。

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