Re-Fle(x)T reimagines spatial computing by removing the primary friction point of modern AR/VR: the headset which isolate users behind eye screens, cause facial fatigue, and limit visual experiences to a single viewer. Re-Fle(x)T turns this paradigm inside out. By using custom optometric lenses and a concave-convex light engine, Re-Fle(x)T projects high-density volumetric holograms directly into physical room space. It acts as an open-air display through transforming homes into immersive digital art galleries and turning classrooms or research labs into collaborative 3D learning hubs.
The Need: Tech-forward homeowners and digital art collectors want immersive visual experiences (e.g., dynamic 3D light sculptures, volumetric ambient art, spatial digital media) integrated into their living rooms without installing clunky flat screens or requiring family and guests to wear headsets.
Why Re-Fle(x)T: It acts as an ambient visual display piece. It projects floating, volumetric art into open space that anyone in the room can admire simultaneously from different angles.
The Need: Universities, medical schools, and research facilities require high-fidelity 3D visual models (e.g., cardiovascular anatomy, complex molecular structures, mechanical engine assemblies) for interactive pedagogical instruction. Outfitting entire cohorts with individual AR headsets is costly, hygienic-heavy, and isolates students from group discussion.
Why Re-Fle(x)T: A single unit mounted over a lab worktable projects shared 3D anatomical or scientific holograms, allowing professors and students to gather, point, and analyze complex models together in real time.
The Need: Art galleries, cultural museums, and experiential marketing agencies are constantly seeking novel ways to showcase historical artifacts, interactive exhibits, and brand installations. However, traditional VR/AR exhibits suffer from long queue times, device sanitation overhead, and headset fatigue.
Why Re-Fle(x)T: Curators can deploy Re-Fle(x)T units across gallery spaces to project high-contrast 3D holograms of delicate artifacts or contemporary light art, offering an open-air display that hundreds of visitors can experience simultaneously.
The Need: Architects, industrial designers, and power users who work with spatial models daily (often paired with systems like (F)Re-Mote or Re-ViVE) need a dedicated, desktop-scale volumetric monitor for quick visual inspection without putting on a full VR helmet every time they render a scene.
Why Re-Fle(x)T: It serves as a dedicated 3D volumetric monitor, providing real-world optical depth via its optometric concave-convex optics so creators can inspect design iterations directly on their desks.
Concave-Convex Optical Engine: Combines specialized convex focusing lenses with a 30° angled concave refraction panel to project bright, stable volumetric light into open air without requiring physical glass screens or smoke/fog mediums.
State-of-the-Art Optometric Lenses: Precision-molded glass elements ensure crisp focal depth, vivid color accuracy, and high visual contrast even in ambient room lighting.
Multi-Viewer Parallax Alignment: Enables multiple people to view and gather around the same 3D hologram simultaneously from different angles, preserving realistic spatial depth and perspective.
Compact Architectural Form Factor: Housed in a brushed-metal aluminum frame with a clear protective casing, designed to sit naturally on pedestal mounts, desktop workspaces, or gallery pedestals.
Living Room & Residential Digital Art Exhibits
Transform home interiors into dynamic digital art galleries. Display morphing 3D light sculptures, volumetric ambient art, or spatial family portraits that float quietly in room space without requiring a blacked-out room or dedicated screen space.
Pedagogical Classrooms & Research Labs
Enhance STEM and medical education by projecting detailed 3D models, such as dynamic cardiovascular systems, DNA helix structures, or complex mechanical assemblies that can be directly integrated and impelemented onto lab worktables for group discussion and interactive study.
Museum Exhibits & Immersive Installations
Curators can set up multiple RE-FLE(X)T units across exhibition spaces to create synchronized, room-scale holographic displays. Visitors experience immersive artifact reconstructions and interactive art installations naturally, without wearing shared headsets or holding smart devices.
Spatial Workstation Syncing
Pairs seamlessly with the (F)Re-Mote multidimensional controller and Re-ViVE dual-phone compute engine to stream, rotate, and manipulate complex spatial models in real time.