Optoelectronic Module (NeuroCircuit)

The optoelectronic module (NeuroCircuit) can transfer optical and electrical signals in time, it’s a new generation product can be used to transmit signal at high data rate and big data transmission.

What is NeuroCircuit?

NeuroCircuit’s operation concept is close to the working principle of “neuron system”. The operation will start from Dendrite (Connector), and the electrical signal will be converted into optical signal by cell body with Hillock (Tx, Transmitter) and transmits through Axon/Myelin (Waveguide) to the Axon terminal (Rx, Receiver), to complete the continuous high-speed signal transmission of stimulation, integration of information and conduction impulse.

Applications of NeuroCircuit

Strength of NeuroCircuit

Paper for Oral Presentation in OFC 2024

Ultra-Thin Bottom-Emission VCSEL-Based Optoelectronic Flexible Printed Circuit Module for High-Speed Transmission

With the increasing demand for high-bandwidth applications in the consumer electronics market, various interfaces such as USB, Thunderbolt, PCIe, HDMI, MIPI, etc. [1 – 4] have continuously introduced new specifications to meet the high data transmission requirements associated with higher-resolution videos, larger-pixel cameras, and increased data streaming between application processors and modules. Furthermore, mobile devices have become smaller, thinner, and lighter than ever before, incorporating diverse antennas and receiving modules such as Bluetooth, wireless LAN (local area network), GPS (global positioning system), NFC (near-field communication), satellite phones, and more. As a result, the signal quality, into which electromagnetic interference (EMI) noises are mixed, must further deteriorate under ultrahigh circuit density. To address this challenge, some researchers have proposed the application of optoelectronic interconnection modules for transmitting high-speed optical signals. This innovative approach not only prevents EMI problems but also allows mobile devices to maintain their usual compactness [5].
OFC paper
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