Micro-optics for precise FAC/SAC collimation, beam shaping, and efficient coupling. Designed for controlled divergence, high beam quality, and compact laser modules.
Neuroscientific Imaging Micro-Optics for Multi-Channel Imaging, High-Resolution Fluorescence Techniques, and Advanced Neural Visualization Systems INGENERIC Startseite Optical neuroimaging is a central component of modern neuroscience. It enables the highly precise visualization of neural structures—from dendrites and synapses to functional networks—and thus forms the basis for accurate diagnosis and treatment. In neurosurgery in particular, the requirements […]
Fiber Array Units (FAU) Micro-Optics for Precise Mode-Field Matching, Low-Loss Fiber-to-Chip Coupling, and High-Density FAU Architectures INGENERIC Startseite Fiber Array Units (FAUs) are key components in modern optical data communication systems. They enable the precise alignment and parallel coupling of multiple optical fibers to photonic integrated circuits (PICs), laser modules, and optical engines. In data […]
Endoskopy Aspherical Micro-Optics for High-Resolution Imaging in Ultra-Compact Endoscope Systems INGENERIC Startseite Endoscopy is a key element of modern minimally invasive diagnostics and therapy. Whether in gastroenterology, urology, ENT, or laparoscopic surgery, advanced endoscopes require precise, high-resolution imaging (>4K UHD) while continuing to shrink in size. With ongoing miniaturization, increasing sensor resolutions, and the integration […]
Co-Packaged Optics (CPO) Microlens Arrays for High-Precision Optical Coupling in Co-Packaged Optics Architectures INGENERIC Startseite Co-Packaged Optics (CPO) refers to an architectural approach in which optical engines are integrated directly adjacent to, or within the same package as, switch ASICs or compute processors. The objective is to significantly shorten electrical interconnects, enabling higher data rates, […]