The robustness of current and voltage references to process, voltage and temperature (PVT) variations is paramount to the operation of integrated circuits in real-world conditions. However, while recent voltage references can meet most of these requirements with a handful of transistors, current references remain rather complex, requiring significant design time and silicon area. In this paper, we present a family of simple current references consisting of a two-transistor (2T) ultra-low-power voltage reference, buffered onto a voltage-to-current converter by a single transistor. Two topologies are fabricated in a 0.18-$\mu$m partially-depleted silicon-on-insulator (SOI) technology and measured over 10 dies. First, a 7T nA-range proportional-to-absolute-temperature (PTAT) reference intended for constant-$g_m$ biasing of subthreshold operational amplifiers demonstrates a 0.096-nA current with a line sensitivity (LS) of 1.48 %/V, a temperature coefficient (TC) of 0.75 %/$^\circ$C, and a variability $(\sigma/\mu)$ of 1.66 %. Then, two 4T+1R $\mu$A-range constant-with-temperature (CWT) references with (resp. without) TC calibration exhibit a 1.09-$\mu$A (resp. 0.99-$\mu$A) current with a 0.21-%/V (resp. 0.20-%/V) LS, a 38-ppm/$^\circ$C (resp. 290-ppm/$^\circ$C) TC, and a 0.87-% (resp. 0.65-%) $(\sigma/\mu)$. In addition, portability to common scaled CMOS technologies, such as 65-nm bulk and 28-nm fully-depleted SOI, is discussed and validated through post-layout simulations.
翻译:目前和电压引用进程、 电压和温度( PVT) 变化的强度对于在现实世界条件下集成电路的运作至关重要。 然而, 虽然最近的电压引用可以用少量晶体管满足大部分这些要求, 当前的引用仍然相当复杂, 需要大量设计时间和硅区域。 在本文中, 我们展示了一个简单当前引用的组合, 包括两个传输器(2T) 超低功率电压引用, 缓冲到一个电压至电流的电流转换器。 两种表象以0.18- 美元( 美元) 模拟电路路路路路路路路路路路路路路路路路路路路路路路路路路路路路路通 。 两种表( 0. 48%/ 美元) 电路路路路路通路路路路路路路通( 0.1- 美元 通路路路路路路通路通路路路路通/通路通路通路通路通路路通路路路路路通路通路通路通路通路通路通路通路通路通路通路路路路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通路通