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Potential use of Three.js for 3D environments or D3.js for statistical data (entropy/noise graphs).

Dashboard showing CPU/Battery health and signal strength for "Nane" (nanotech/embedded) modules.

WebSockets for bidirectional communication between the visualizer and the Rava hardware. 🚀 Future Roadmap

Allowing multiple users to view the same visualizer "session" for remote troubleshooting.

Likely built with React or Vue.js for high-speed UI updates.

Providing 3D spatial orientation for users operating Rava telepresence robots .

Simplifying DevOps or nanotechnology concepts for students and researchers. 📊 System Features Description Real-Time Feed Low-latency stream integration from onboard Rava cameras. Spatial Mapping

Predictive maintenance alerts for nanotech components using integrated AI chips.

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Rava_nane_hello_visualizer Apr 2026

Potential use of Three.js for 3D environments or D3.js for statistical data (entropy/noise graphs).

Dashboard showing CPU/Battery health and signal strength for "Nane" (nanotech/embedded) modules.

WebSockets for bidirectional communication between the visualizer and the Rava hardware. 🚀 Future Roadmap

Allowing multiple users to view the same visualizer "session" for remote troubleshooting.

Likely built with React or Vue.js for high-speed UI updates.

Providing 3D spatial orientation for users operating Rava telepresence robots .

Simplifying DevOps or nanotechnology concepts for students and researchers. 📊 System Features Description Real-Time Feed Low-latency stream integration from onboard Rava cameras. Spatial Mapping

Predictive maintenance alerts for nanotech components using integrated AI chips.

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