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ElliQ vs XMAN-R1

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Quick verdict

ElliQ leads on 6 of 10 comparable rows

ElliQ leads on Readiness Score, Reality Score, Price, and Perception (+2 more). XMAN-R1 leads on Countries, Mobility, Manipulation, and Home Navigation.

Who should choose which?

ElliQ
Choose ElliQ if…
  • You want higher readiness (86/100 vs peers) for near-term home use.
  • Budget is a priority and ElliQ lists lower ($250).
  • You need a buy now path today while alternatives are still prototype or coming soon.
  • Your main goal is elder care, which ElliQ targets directly.
  • Strengths like social interaction and perception match how you plan to use it at home.
XMAN-R1
Choose XMAN-R1 if…
  • Your main goal is conversation, which XMAN-R1 targets directly.
  • Strengths like social interaction and perception match how you plan to use it at home.
  • You prefer a humanoid form factor over the alternatives in this compare.
Performance
Readiness Score
86
76
Reality Score
74
72
Data Freshness
100%
100%
SpeedNot mobile2.9 km/h
PayloadUnknown3 kg
Specs
Height37 cm172 cm
Weight2.4 kg (5.3 lb)110 kg
BatteryPlug-in3 h
FormDesktopHumanoid
Availability
Price$250$100,000+
Market StatusBuy NowLimited
AvailabilityAvailableLimited
CountriesUnited StatesChina, United States
Intelligence
Mobility
5
74
Manipulation
8
70
Perception
86
84
Autonomy
82
78
Social Interaction
96
90
Home Navigation
5
52
Sensors12 MP camera (1080p video, 120° FOV), 4-mic array, ambient light, ambient temperature, touch-sensitive baseMultimodal fusion perception, spatial awareness, human-interaction sensing (fleet coordination stack)
ConnectivityWi-Fi ac (2.4/5 GHz), Bluetooth 5+Wi-Fi, KEENON cloud fleet platform
EcosystemElliQ membership (leased device); Family companion app; Generative AI wellness prompts; Video calls and photo sharing; State and municipal aging programsKOM2.0 vision-language-action stack; KEENON ProS hotel domain models; Multi-robot fleet coordination with DINERBOT, KLEENBOT, BUTLERBOT, S100; KEENON App and Cloud Platform
Green cells mark the stronger value in each row across 2 robots.