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- W3127820171 abstract "In this paper, a low voltage cold start-up ring oscillator with dynamic body biasing technique for battery-assistance DC energy harvesting systems is presented. The cold start-up ring oscillator consists of 21-stage low voltage delay elements. To overcome Meindl's fundamental limit on the minimal supply voltage for standard inverters, dynamic body biasing technique is introduced. Bodies of pull-down transistor and pull-up transistor are tied together. Meanwhile, a voltage level shifter (VLS) and a high voltage supply (VDDH) powered by extra battery are inserted to enlarge the voltage swing at bodies of pull-down transistor and pull-up transistor. In this paper, only one stage in the low voltage cold start-up ring oscillator is controlled by the VLS and others are controlled by stacked inverters (SI). The prototype is implemented in a standard 180nm CMOS process. The postlayout simulations show that the proposed cold start-up ring oscillator can maintain oscillation under a power supply 26mV and VDDH=100mV at a typical corner and room temperature." @default.
- W3127820171 created "2021-02-15" @default.
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- W3127820171 date "2020-11-06" @default.
- W3127820171 modified "2023-10-16" @default.
- W3127820171 title "Low Voltage Cold Start-Up Ring Oscillator with Dynamic Body Biasing Technique for Battery-Assistance DC Energy Harvesting Systems" @default.
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- W3127820171 doi "https://doi.org/10.1145/3443467.3443910" @default.
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