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HAL Lumbar Type vs KUAVO 3.0

Side-by-side comparison of HAL Lumbar Type (Cyberdyne) and KUAVO 3.0 (Leju (Shenzhen) Robotics Co., Ltd.) — specs, pricing, Robolist Trust Score, and verified deployments. Updated daily.

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HAL Lumbar TypeHAL Lumbar TypehumanoidCyberdyne
Trust Score
KUAVO 3.0KUAVO 3.0humanoidLeju (Shenzhen) Robotics Co., Ltd.
Trust Score
Layer 1: Identity & Trust
Verified Deployments0 Deployments0 Deployments
Layer 2: Operational
Price Range (USD) (values differ)US$30,000
Battery / Shift Runtime (values differ)4.5 hrs7 hrs
Availability StatusACTIVEACTIVE
Layer 3: Category Specific
Physical Form Factor
Height (values differ)522 mm1750 mm
Weight (values differ)3.160 kg
Humanoid Subtype (values differ)null
Walking Speed (values differ)4.6 m/s
Terrain (values differ)indoorboth
Payload & Dexterity
Payload (values differ)0 kg10 kg
Total DOF (values differ)26
Arm DOF (values differ)14
Hand DOF (values differ)10
Compute & AI
Onboard Compute (values differ)Embedded platform with KaihongOS
Programming (values differ)code_ros, proprietary_app
Battery & Power
Runtime (values differ)4.5 hrs7 hrs
Software
SDK Languages (values differ)code_ros, proprietary_app
Reliability
IP Rating (values differ)IPX4 IP5X
Commercial
Price (USD) (values differ)$30,000
Price Tier (values differ)30-40K
Pricing Model (values differ)purchase
Applications (values differ)eldercare_assistance, labor supportsmart_home, industrial_manufacturing, public/commercial_service, smart_healthcare

Insufficient data for full comparison

The following fields had no data for any of the selected robots: Manufacturer Country, Year First Available, Mobility Type, Running Capable, Stair Climbing, Payload (Peak), Arm Reach, Grip Strength, Manipulation Repeatability, Bimanual Coordination, Tool Use, Compute Platform, VLM Capable, Foundation Models, Imitation Learning, Teleoperation, Battery Capacity, Charging Time, Charging Method, Battery Swap, Avg Power Consumption, Force-Limited Arms, Fall Recovery, Fall Detection Response, Emergency Stops, Human Detection Method, Safe Speed Near Humans, ROS Support, Simulation Platforms, Open API, Air-Gap Capable, MTBF, Task Success Rate, Deployment Maturity, Noise Level, RaaS / Month, Developer Unit Price, Delivery Lead Time, Warranty, Production Pilots

best in categoryweakest in categoryvalues differ

About this comparison

HAL Lumbar Type vs KUAVO 3.0 compares two robots in the humanoid category. All data is sourced from manufacturer spec sheets, verified deployments, and third-party filings; see our methodology for how the Robolist Trust Score is calculated.