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A 1.5-ns Switching Time, 9-Bit Current-Mode DAC for High Speed Laser Diode Drivers

机译:1.5 ns开关时间,9位电流模式DAC,适用于高速激光二极管驱动器

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Evolution in consumer electronics has brought the need for high-current laser diode drivers (LDDs) compatible with integrated systems on chip (SOCs). Traditional solutions device-based are migrating to integrated architectures granting easy digital control, compliance to the voltage rails and fast switching times. The introduction of the digital control directly implies the need of digital-to-analog converter (DAC) structures for the modulation of the laser current and the chosen solution has to match the analog performances required for the particular application. This paper presents a current-mode DAC architecture for LDDs together with a 9-bit implementation which targets a rise time of 1.5 ns for a zero-to-full-current (51 mA) switching condition. A 0.105-mm2 prototype has been manufactured in a 130-nm BiCMOS technology, and the experimental measurements are reported.
机译:消费电子产品的发展带来了对与芯片上集成系统(SOC)兼容的高电流激光二极管驱动器(LDD)的需求。基于设备的传统解决方案正在迁移到集成架构,以提供简单的数字控制,电压轨顺应性和快速切换时间。数字控制的引入直接暗示着需要对激光电流进行调制的数模转换器(DAC)结构,并且所选解决方案必须与特定应用所需的模拟性能相匹配。本文介绍了一种用于LDD的电流模式DAC架构,以及9位实现方案,该方案的目标是在零至全电流(51 mA)开关条件下的上升时间为1.5 ns。一个0.105毫米 2 该原型已采用130纳米BiCMOS技术制造,并报告了实验测量结果。

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