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A digitally controlled on-chip monotonic reference current generator with low LSB current for fast and accurate optical level monitoring

机译:具有低LSB电流的数控片上单调参考电流发生器,用于快速,准确地监控光学电平

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This paper describes a digitally controlled on-chip monotonic Reference Current Generator (RCG) with 8-bit resolution and a LSB (Least Significant Bit) current as low as 100 nA. It was designed as a building block of a generic DC-coupled Burst Mode Laser Diode Driver (BM-LDD) for GPON (Gigabit Passive Optical Network) applications and acts as an on-chip RCG with a settling time of 18 ns for fast and accurate optical level monitoring with guaranteed monotony. The proposed architecture of the on-chip RCG is based on an 8-bit segmented current-steering Digital-to-Analog Converter (IDAC) and a bandgap voltage reference. The (3 + 5) segmented architecture of the 8-bit IDAC is an optimum combination of a 3-bit MSBs (Most Significant Bits) unit-element sub-DAC and a 5-bit LSBs binary-weighted sub-DAC offering good DNL (Differential Nonlinearity) performance. The bandgap voltage reference deviates only 0.6% of the nominal value over temperature and power supply variations. A cascade current mirror with a super beta helper circuit is used to guarantee monotony and high accuracy. The linearity errors caused by systematic influences and random variations are reduced by the proposed 2-D double centroid symmetrical architecture. Experiments confirm a DNL of ±0.5 LSB for the proposed RCG. The tested performance of optical level monitoring and APC (Automatic Power Control) algorithm is compliant to ITU-T GPON standards. The design was realized in a 0.35 μm SiGe BiCMOS technology with 3.3 V power supply. The technology choice was made by heavy requirements of the innovative DC-coupled 1.25 Gbit/s BM-LDD chip. Although the proposed structure was designed as a building block for a BM-LDD chip, the design concept can be applied for developing other high linearity on-chip RCG for a wide junction temperature range (?40 to 110°C).
机译:本文介绍了一种数字控制的片上单调参考电流发生器(RCG),其具有8位分辨率和LSB(最低有效位)电流低至100nA。它被设计为通用的直流耦合突发模式激光二极管驱动器(BM-LDD)的构建模块,适用于GPON(千兆位无源光网络)应用,并用作片上RCG,建立时间为18 ns,可实现快速且稳定的输出。精确的光学液位监控,确保单调。所建议的片上RCG架构基于8位分段电流控制数模转换器(IDAC)和带隙电压基准。 8位IDAC的(3 + 5)分段架构是3位MSB(最高有效位)单元元素子DAC和5位LSB二进制加权子DAC的最佳组合,可提供良好的DNL (差分非线性)性能。在温度和电源变化的情况下,带隙基准电压仅偏离标称值的0.6%。具有超级β辅助电路的级联电流镜用于确保单调性和高精度。所提出的二维双质心对称体系结构减少了系统影响和随机变化引起的线性误差。实验证实了建议的RCG的DNL为±0.5 LSB。经测试的光学水平监控和APC(自动功率控制)算法的性能符合ITU-T GPON标准。该设计是通过具有3.3 V电源的0.35μmSiGe BiCMOS技术实现的。该技术选择是基于对创新的直流耦合1.25 Gbit / s BM-LDD芯片的苛刻要求而做出的。尽管所提议的结构被设计为BM-LDD芯片的构建块,但该设计思想可用于开发其他高线性度的片上RCG,适用于较宽的结温范围(?40至110°C)。

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