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1X Technologies EVEvsSanctuary AI Phoenix

Side-by-side comparison of 1X Technologies EVE and Sanctuary AI Phoenix: specs, price, use cases and SDKs.

Specifications

SpecEVEPhoenix
Price (USD)
$0
$0
Category
humanoid
humanoid
Payload
15 kg
25 kg
Runtime
6 h
8 h
Speed
4 m/s
1.33 m/s
Weight
87.09 kg
70 kg
Degrees of Freedom
25
21
Battery
1.05 kWh lithium-ion battery
Shared use cases
No shared use cases
Only on EVE
  • Logistics
  • Security patrolling
  • Retail tasks
  • Manufacturing assistance
  • Healthcare
  • Personal assistance
Only on Phoenix
  • Automotive manufacturing
  • Electronics manufacturing
  • Pharmaceutical packaging
  • Precision logistics
  • Retail operations
  • Warehouse fulfillment
  • Healthcare assistance
  • General labor tasks
  • Research and Development

When to pick which

When to pick EVE

Choose 1X Technologies EVE for large-scale facility management, such as security patrolling or logistics in expansive warehouses. Its wheeled base enables a top speed of 4 m/s, significantly outperforming the Phoenix for tasks requiring rapid movement across flat surfaces. For developers in research or healthcare, the ROS2 and OpenCV compatibility allows for seamless integration into existing open-source workflows. EVE is the superior choice when the deployment constraint is rapid response time or covering long distances quickly, rather than heavy lifting, making it ideal for monitoring or light-duty transport in dynamic retail environments.

When to pick Phoenix

Opt for Sanctuary AI Phoenix for precision-heavy industrial applications like automotive manufacturing or pharmaceutical packaging. With a 25kg payload capacity, it handles significantly heavier components than EVE, while its Carbon AI SDK is specifically designed for high-dexterity tasks requiring human-like intelligence. The 8-hour runtime supports full-shift operations in warehouse fulfillment or electronics assembly with fewer charging interruptions. Phoenix is the better investment for buyers prioritizing strength and complex manipulation over mobility speed, particularly in structured environments where the robot must perform repetitive, high-load labor or intricate assembly tasks.

AI-generated buyer guidance based on public specs.

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