The broader impact and commercial potential of this Small Business Innovation Research (SBIR) Phase I project lies in making advanced light-based (optical) technologies more affordable and accessible by developing a new way to 3D-print tiny glass parts that control light. These parts, called micro-optics, are used in cameras, lasers, medical tools, communication systems, etc. Currently, making these components is slow, expensive, and requires putting together lots of small pieces. This project introduces a faster and easier method that can create complete light-controlling systems in one step. This could help more people and companies use high-quality optical technology, while also opening new possibilities in fields like telecommunications, healthcare, and self-driving vehicles. The new process costs less, works faster, and allows more creative designs, giving the company a strong advantage in a growing market. This Small Business Innovation Research (SBIR) Phase I project aims to overcome key limitations in the fabrication of high-performance glass micro-optics by developing a high-throughput 3D printing system utilizing an advanced two-photon polymerization (TPP) technique. Traditional methods for producing glass optics are hindered by high complexity, limited scalability, and elevated costs, and are unable to fabricate monolithic optical systems with integrated functionality. The proposed work will develop a novel 3D printing platform capable of producing high-precisio