This project aims to develop compact, chip-scale, energy-efficient hardware modules that form the foundational building blocks of quantum computing network and quantum internet architectures. As quantum computing and quantum communication networks grow in scale and complexity, there is a need for practical quantum networking units capable of operating reliably across heterogeneous platforms. Current implementations are limited by low efficiency, poor interoperability, and challenging scaling constraints. By leveraging advances in superconducting, semiconductor, and hybrid quantum technologies, this project will design and prototype hardware units that deliver enhanced coherence, low-loss signal conversion, and robust integration with existing fibre-optic and free-space links.