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A Novel CMOS Current Reference with Low Temperature and Supply Dependence

机译:具有低温和电源依赖性的新型CMOS电流基准

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A new CMOS current reference solution is presented, by creating a new negative temperature coefficient (TC) current resulted from negative-TC voltage which is generated in the bandgap circuit whose zero-TC (ZTC) point is specially selected, and proposing low line regulation mechanism which is realized by compensating variations of source-to-gate voltage and threshold voltage versus supply voltages. Based on the SMIC CMOS 0.35μm model, simulation results in Cadence Hspice indicate that the current reference has a TC of 6.9ppm/°C over the temperature range from -40 to 85°C and a line regulation of 10.6ppm/V for a supply voltage of 3.0 to 3.6V, which are much lower than the specifications in recent designs. The new solution has been implemented into a 10 bit 100MSample/s ADC design and is promising to be applied in the research and development of analog/mixed signal systems.
机译:提出了一种新的CMOS电流参考解决方案,该方法通过创建由负TC电压产生的新的负温度系数(TC)电流产生,该负TC电压在专门选择零TC(ZTC)点的带隙电路中产生,并提出低线路调节通过补偿源极到栅极电压和阈值电压相对于电源电压的变化实现的机制。基于SMIC CMOS0.35μm模型,Cadence Hspice的仿真结果表明,电流基准在-40至85°C的温度范围内具有6.9ppm /°C的TC和对于10.6ppm / V的线性调节。电源电压为3.0至3.6V,远低于最新设计的规格。该新解决方案已实现到10位100MSample / s ADC设计中,有望在模拟/混合信号系统的研究和开发中得到应用。

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