Compare
aeo vs Jennie
Quick verdict
aeo leads on 8 of 10 comparable rows
aeo leads on Reality Score, Data Freshness, Battery, and Countries (+4 more). Jennie leads on Perception and Social Interaction.
Who should choose which?

Choose aeo if…
- Verified shipping and public proof matter more to you (reality score 82/100).
- Strengths like manipulation and perception match how you plan to use it at home.
- You prefer a humanoid form factor over the alternatives in this compare.

Choose Jennie if…
- Strengths like social interaction and perception match how you plan to use it at home.
- You prefer a animal-like form factor over the alternatives in this compare.
| Spec | ![]() aeo Aeolus RoboticsLeads 8 | ![]() Jennie TombotLeads 2 |
|---|---|---|
| Performance | ||
| Readiness Score | 78 | 78 |
| Reality Score | 82 | 66 |
| Data Freshness | 100% | 85% |
| Speed | Unknown | Not mobile |
| Payload | 3.6 kg per arm | Unknown |
| Specs | ||
| Height | Unknown | 35 cm |
| Weight | Unknown | 2.95 kg (6.5 lb) |
| Battery | 8 h | 4–6 h |
| Form | Humanoid | Animal-like |
| Availability | ||
| Price | Unknown | $1,500 |
| Market Status | Limited | Waitlist |
| Availability | Limited | Waitlist |
| Countries | Japan, Hong Kong, Taiwan, United States | United States |
| Intelligence | ||
| Mobility | 80 | 8 |
| Manipulation | 84 | 18 |
| Perception | 82 | 84 |
| Autonomy | 78 | 52 |
| Social Interaction | 72 | 97 |
| Home Navigation | 68 | 5 |
| Sensors | 360° vision, night-vision camera, posture/position detection, obstacle avoidance | Capacitive touch (full body), microphone array, accelerometer, gyroscope, ambient light, temperature |
| Connectivity | Wi-Fi, web apps, native smartphone apps | Bluetooth, peer-to-peer Wi-Fi (companion app) |
| Ecosystem | Robot-as-a-service (RaaS) leasing; Plug-and-play attachments; Asratec integrations (Japan); Malibu AI integrations (Taiwan); Remote scheduling and alerting apps | Tombot smartphone app; Over-the-air behavior updates; ComfortResponse vocal stress detection |
Green cells mark the stronger value in each row across 2 robots.

