High-reliability printed circuit boards (PCBs) are essential for fiber optic system performance in the changing world of telecommunications and data transfer. For fiber optic PCBs to satisfy strict requirements, this research article discusses design, manufacture, and testing. While fiber optics handle long-haul and high-bandwidth backbone links, LiFi delivers wireless connectivity through visible light. Also, it comes with a light. The current technology includes transmission of between optical units (typically modulated laser sender and receiver units) and fiber optic cables or flexible kapton fiber optic cables, which are all relatively familiar. At present many of the optical and digital devices may be mounted on opposite. Most PCB designers—except those that work on optical transceivers—are probably not aware of the coming revolution in silicon photonic integrated circuits (PICs), electronic-photonic integrated circuits (EPICs), and greater proliferation of embedded optical systems outside of telecom. I recall a test where a slight impedance mismatch on a PCB caused a spike in bit error rate for an entire link, directly affecting the accuracy of training results.