Sensor-Based Interactive Epoxy Flooring

What is Sensor-Based Interactive Epoxy Flooring?

Sensor-Based Interactive Epoxy Flooring is an advanced immersive technology where a seamless epoxy surface is layered over intelligent sensors, transforming the floor into a responsive and interactive medium. Every step, pause, or movement triggers real-time visual, light, or audio effects, turning visitors into active participants rather than passive observers.

Our Capabilities

At Looming Technologies Pvt. Ltd., we design and deploy intelligent flooring systems that merge durability, aesthetics, and immersive interaction.

How It Works?

  1. Sensor Layer Installation: Pressure, proximity, or capacitive sensors are installed beneath the flooring surface.
  2. Epoxy Surface Application: A transparent or customized epoxy layer seals and protects the technology.
  3. Real-Time Processing: Sensor data is processed through controllers and media servers.
  4. Interactive Output: Visuals, lighting, and sound react instantly to human movement.

Interactive Experiences Enabled



Technologies Used

Pressure Sensors

Detect footsteps and trigger interactive responses such as ripples, light waves, or visuals.

Motion & Proximity Sensors

Enable touchless interaction ideal for museums and heritage environments.

Projection Mapping

Projects dynamic visuals aligned perfectly with floor movement and interaction.

Industrial Epoxy Flooring

Durable, seamless, anti-slip surface protecting embedded technology.

Optical Fiber Ceiling Integration

Creates complete immersive environments by synchronizing floor and ceiling effects.



Applications

Museums & Heritage Sites

Experience Centers & Exhibitions

Science Parks & Innovation Hubs

Luxury Immersive Interiors

Why Looming Technologies Pvt. Ltd.?

We design immersive environments — not just installations. With expertise in optical fiber ceilings, kinetic walls, projection mapping, AR/VR/MR, and interactive storytelling, we deliver end-to-end immersive solutions from concept to execution.