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Design and CMOS Implementation of a Low Power System-on-chip Integrated Circuit

机译:设计和CMOS实现低功耗系统上整体集成电路

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A low power 32-bit microcontroller using different kinds of low-power techniques to adapt to the dynamically changing performance demands and power consumption constraints of battery powered applications is designed and tested.Four power domains and six power modes are designed to fulfill low-power targets and meet different functional requirements.Varieties of low power methods such as dynamic voltage and frequency scaling (DVFS),multiple supply voltages (MSV),power gating (PG) and so on are applied.A novel zero steady-state current POR circuit which makes excellent performance in the chip's OFF mode is also integrated.The SoC occupies 20 mm2 in a 0.18 um,1.8 V nominal-supply,CMOS process.Test results show that the microcontroller works normally at the frequency of 70MHz and performs well in different power modes.Yet it only consumes 1.67μA leakage current in the OFF mode.
机译:设计并测试了使用不同种类的低功耗技术适应电池供电应用的动态变化性能需求和功耗限制的低功率32位微控制器.FUR电源域和六种电源模式旨在满足低功耗目标并满足不同的功能要求。应用低功耗方法,如动态电压和频率缩放(DVF),多个电源电压(MSV),功率门控(PG)等。一种新型零稳态电流POR电路这在芯片的关闭模式下进行了出色的性能。SOC占用了0.18 um,1.8 V名义供应,CMOS过程中的20 mm2。最终结果表明,微控制器正常工作在70MHz的频率下,并在不同的情况下执行良好电源模式。yet它仅在关闭模式下消耗1.67μA漏电流。

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