Choi Yejin, Li Juntong, Jung Dukyoo, Choi Seonhan, Park Sung-Min
Division of Electronic & Semiconductor Engineering, Ewha Womans University, Seoul 03760, Republic of Korea.
Graduate Program in Smart Factory, Ewha Womans University, Seoul 03760, Republic of Korea.
Sensors (Basel). 2025 Jan 26;25(3):753. doi: 10.3390/s25030753.
This paper presents an optoelectronic transceiver (OTRx) realized in a 180 nm CMOS technology for applications of short-range LiDAR sensors, in which a modified current-mode single-ended VCSEL driver (m-CMVD) is exploited as a transmitter (Tx) and a voltage-mode fully differential transimpedance amplifier (FD-TIA) is employed as a receiver (Rx). Especially for Tx, a concurrent automatic power control (APC) circuit is incorporated to compensate for the inevitable increase in the threshold current in a VCSEL diode. For Rx, two on-chip spatially modulated P/N- well avalanche photodiodes (APDs) are integrated with the FD-TIA to achieve circuit symmetry. Also, an extra APD is added to facilitate the APC operations in Tx, i.e., concurrently adjusting the bias current of the VCSEL diode by the action of the newly proposed APC path in Rx. Measured results of test chips demonstrate that the proposed OTRx causes the DC bias current to increase from 0.93 mA to 1.42 mA as the input current decreases from 250 µA to 3 µA, highlighting its suitability for short-range sensor applications utilizing a cost-effective CMOS process.
本文介绍了一种采用180纳米CMOS技术实现的光电收发器(OTRx),用于短程激光雷达传感器应用,其中采用改进的电流模式单端垂直腔面发射激光器驱动器(m-CMVD)作为发射器(Tx),并采用电压模式全差分跨阻放大器(FD-TIA)作为接收器(Rx)。特别是对于Tx,集成了一个并发自动功率控制(APC)电路,以补偿垂直腔面发射激光器二极管中阈值电流不可避免的增加。对于Rx,两个片上空间调制的P/N阱雪崩光电二极管(APD)与FD-TIA集成在一起,以实现电路对称性。此外,还增加了一个额外的APD,以促进Tx中的APC操作,即通过Rx中新提出的APC路径的作用同时调整垂直腔面发射激光器二极管的偏置电流。测试芯片的测量结果表明,随着输入电流从250微安降至3微安,所提出的OTRx使直流偏置电流从0.93毫安增加到1.42毫安,突出了其适用于利用具有成本效益的CMOS工艺的短程传感器应用。