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A 160-??W, ring digitally controlled oscillator for UHF/VHF nano-satellites broadcasting tuners in 90nm CMOS process

机译:一个用于90nm CMOS工艺的UHF / VHF纳米卫星广播调谐器的160-W环形数字振荡器

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This paper presents a two-stages 5bit digitally controlled oscillator designed mainly for Nano-Satellites (Amateur) applications. The structure based on a ring oscillator and implemented with Schmitt trigger inverters (Hysteresis Delay Cell) to lead the low frequencies, which has power and area efficiency better as compared with conventional delay cells. The proposed DCO offers the possibility to adjust the oscillation frequency digitally, without analog voltage tuning. Simulations of the proposed DCO achieve controllable frequency range of 118MHz~462MHz with a wide linearity. Monte Carlo simulation demonstrates that the deviation offset frequency due to random process fluctuation is fewer than 7.4%. Phase noise at 436.5MHz carrier frequency and 1MHz offset is -100dBc/Hz. Figure of Merit (FoM) calculated is -174.78dBc/Hz. In 90nm CMOS technology, the circuit occupies an area of 0.0084mm2 and least significant bit (LSB) resolution of 5 kHz. With a supply voltage of 1.0V, the estimated average power values are 104 and 158μW at 145 and 436.5MHz, respectively.
机译:本文介绍了一种主要针对纳米卫星(业余)应用设计的两级5位数控振荡器。该结构基于环形振荡器,并通过施密特触发器反相器(迟滞延迟单元)实现以引导低频,与传统延迟单元相比,其功率和面积效率更高。提出的DCO提供了数字调整振荡频率的可能性,而无需进行模拟电压调整。拟议中的DCO的仿真实现了118MHz〜462MHz的可控制频率范围,并具有很宽的线性度。蒙特卡洛仿真表明,由于随机过程波动而引起的偏差偏移频率小于7.4%。载波频率为436.5MHz且偏移为1MHz时的相位噪声为-100dBc / Hz。计算的品质因数(FoM)为-174.78dBc / Hz。在90nm CMOS技术中,电路占用0.0084mm2的面积,最低有效位(LSB)分辨率为5 kHz。当电源电压为1.0V时,在145和436.5MHz时,估计的平均功率值分别为104和158μW。

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