Mirokaï
Mirokaï robots from Enchanted Tools combine advanced AI, imaginative design, and innovative movement to create user-friendly robots that are as functional as they are engaging.
Humanoid.Guide skill score: 3/10 This score is calculated as the combined total of Navigation and Manipulation performance.

Specifications and details:
Availability | Prototype |
---|---|
CPU/GPU | 2 |
Camera resolution | 1920×1080 |
Connectivity | Wifi 2,4 ghz & 5ghz |
Degrees of freedom, hands | 2 |
Degrees of freedom, overall | 26 |
Gear tech | – |
Height [cm] | 123 |
Ingress protection | – |
LLM integration | – |
Latency glass to action | – |
Main market | Social environments |
Main structural material | Aluminium |
Manipulation performance | 1 |
Max speed (km/h) | 3 |
Motor tech | brushless |
Nationality | French |
Navigation performance | 2 |
Number of fingers | 8 |
Operating system | Custom Linux |
Runtime pr charge (hours) | 4 |
Safe with humans | Yes |
Strength [kg] | 1.5 |
Website | https://enchanted.tools/ |
Weight [kg] | 29 |
Description
Enchanted Tools has developed Mirokaï, a new generation of robots created to address the challenges of modern robotics. Their approach is to blend practical utility with a sense of wonder, making robots that are both helpful and engaging for users.
Mirokaï robots employ multiple artificial intelligences, allowing them to interact naturally with people, find their own way in various environments, and handle logistical tasks even when working with users who have no technical training. This makes them accessible and adaptable in many settings.
The design of Mirokaï is inspired by a unique, imaginary world. This gives each robot a distinctive look, standing out from more traditional robots. Their technical features are equally innovative, including an interactive face that responds in real time, as well as two arms and two hands capable of manipulating objects with precision.
One of the most notable aspects of Mirokaï is their movement system, which is based on a rolling globe. This inventive mechanism adds to their agility and makes their motion appear both fluid and unique.