Versatile Solution

Innovative tech

Envimo is an advanced robotic systems engineered for sidewalk-based logistics and urban data acquisition.

Our platform integrates modular hardware with a robust AI stack—featuring cloud-based remote operations, computer vision (CV), machine learning, visual-language perception models (VLMs), and smart navigation powered by large language models (LLMs). Designed for real-time delivery and city monitoring, Envimo’s technology enables cost-efficient autonomy, regulatory compliance, and scalable insights for urban infrastructure.


Last-Mile Delivery

Envimo’s autonomous robot is engineered for reliable last-mile delivery within dense urban environments. Featuring a 4-wheel drive system with flexible suspension, it ensures stable operation over uneven sidewalk surfaces. Its onboard systems allow for secure compartment locking, thermal insulation for food-grade payloads, and remote monitoring of cargo status. With real-time GPS tracking and seamless customer integration, Envimo enables cost-effective, fast, and traceable delivery operations.


Urban Insight Platform

Beyond delivery, Envimo is equipped to function as a mobile urban sensor platform. Modular sensor mounts support high-resolution cameras, air quality meters, microphones, and LIDAR, feeding data into a custom perception server. The robot can quantify cyclist and pedestrian flows, classify mobility types (e.g., e-scooters, public bikes), and gather anonymized demographic data. These insights support municipal planning, real-time traffic evaluation, and infrastructure optimization, transforming delivery robots into active contributors to smart city ecosystems.


Smart Navigation

Envimo leverages a multi-layered AI architecture that combines Visual-Language Models (VLMs) and Large Language Models (LLMs) for context-aware autonomous navigation. The robot recognizes pedestrians, vehicles, and road signage while predicting dynamic movements like people running, cycling, or bending. This enables safe and rule-compliant route planning through complex pedestrian infrastructure.


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Modular Cargo Solutions

The robot is built with a modular architecture that supports interchangeable rear compartments, akin to a small-scale truck system. These modules can be swapped out depending on delivery requirements—be it frozen goods, sterile medical supplies, or standard groceries. The mounting system is engineered for rapid attach/detach and integrates seamlessly with power and sensor systems. This design maximizes versatility, lowers fleet complexity, and allows customers to expand use cases without redesigning the robot core.

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