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- W4382541736 abstract "A differential delay cell without a cross-coupled latch is proposed for a two-stage ring voltage-controlled oscillator (RVCO). In the proposed delay cell (PDC), an RC network is used in place of a cross-coupled latch to exhibit a negative conductance. It reduces the power consumption in the RVCO significantly. Two paths from the output node for discharging current are added in the PDC. It reduces the discharging time of the output node which enhances the operating frequency by almost 50%. The PDC utilizes an RC network to reduce the peak-to-peak jitter of the RVCO by making the noise current sharp, similar to an impulse function. This design approach effectively minimizes the root mean square (RMS) value of the impulse sensitivity function, resulting in stable output with reduced jitter. The post-layout simulations are performed in 65 nm CMOS technology using 1V supply voltage. At a frequency of 1.6 GHz, the proposed RVCO (PDC-RVCO) shows excellent performance with a phase noise of −100.4dBc/Hz at an offset frequency of 1 MHz. The power dissipation in the PDC-RVCO is reduced by 86.4% as compared to conventional RVCO. The peak-to-peak jitter is improved significantly by 29.7% and the Figure of merit (FOM) is improved by 11dB in the PDC-RVCO than conventional RVCO with a minor increment in area. The PDC-RVCO has the lowest (FOM)(the lower, the better) compared to other RVCO architectures in the literature." @default.
- W4382541736 created "2023-06-30" @default.
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- W4382541736 date "2023-06-18" @default.
- W4382541736 modified "2023-09-23" @default.
- W4382541736 title "A Low Power Differential Delay Cell without Cross-Coupled Latch for Ring VCO" @default.
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- W4382541736 doi "https://doi.org/10.1109/prime58259.2023.10161983" @default.
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