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1.5 Gbit/s Multi-Channel Visible Light Communications Using CMOS-Controlled GaN-Based LEDs

机译:1.5 Gbit / S多通道可见光通信使用CMOS控制的基于GaN的LED

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摘要

An on-chip multi-channel visible light communication (VLC) system is realized through a blue (450 nm) GaN-based micron-size light-emitting diode (μLED) array integrated with complementary metal-oxide-semiconductor (CMOS) electronics. When driven by a custom-made CMOS driving board with 16 independent parallel data input ports, this μLED array device is computer controllable via a standard USB interface and is capable of delivering high speed parallel data streams for VLC. A total maximum error-free data transmission rate of 1.5 Gbit/s is achieved over free space by modulating four μLED pixels simultaneously using an on-off key non-return to zero modulation scheme. Electrical and optical crosstalk of the system has also been investigated in detail and the further optimization of CMOS design to minimize the crosstalk is proposed.
机译:片上多通道可见光通信(VLC)系统通过与互补金属氧化物半导体(CMOS)电子集成的蓝色(450nm)GaN基微米尺寸发光二极管(μLD)阵列实现。当由具有16个独立并行数据输入端口的定制CMOS驱动板驱动时,该μLE阵列设备是通过标准USB接口控制的计算机,并且能够为VLC提供高速并行数据流。通过使用OFF关键不返回到零调制方案,通过同时调制四个μL像素来实现1.5Gbit / s的总最大差错数据传输速率。还研究了系统的电气和光学串扰,并提出了CMOS设计的进一步优化以最小化串扰。

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