TITAN
RoboForce

TITAN

TITAN by RoboForce is a rugged, AI-powered industrial humanoid robot with dual-arm manipulation, 1 mm precision and 40 kg payload, built to automate harsh outdoor and heavy-duty jobs.

Description

TITAN, developed by RoboForce, represents a paradigm shift in industrial robotics as the world's most capable general-purpose AI robot engineered for demanding outdoor and heavy-duty environments such as solar farms, mining operations, data centers, shipping ports, manufacturing plants, and space applications. Launched from prototypes in 2024, with TITAN Design v1, TITAN-W (wheeled base), and TITAN-T (tracked base) iterations, it stands at 210 cm tall, delivering dual-arm manipulation with 1 mm precision, 40 kg payload capacity over 1100 mm arm reach, and core primitives including pick, place, press, twist, and connect. Its modular architecture—comprising specialized hands (4-fingered for industrial grip), flexible waist for optimized reach and payload, and all-terrain bases—ensures adaptability to wheeled, tracked, or future configurations, facilitating navigation at up to 9 km/h in unstructured terrains while remaining safe around humans. Central to TITAN's architecture is RoboForce's Physical AI platform, powered by RF-Net v1, a proprietary 3D foundation model that excels in spatial intelligence, enabling millimeter-precise perception and manipulation in complex, dynamic settings. RF-Net integrates domain-specific intelligence with tight hardware-AI co-optimization, leveraging unique real-world datasets and efficient learning pipelines for robust generalization and continuous evolution. Each deployment refines the model, making TITAN smarter, faster, and more capable. Highlighted by NVIDIA CEO Jensen Huang at the GTC 2025 keynote in Washington D.C., TITAN demonstrates production-ready autonomy, underscoring its role in advancing embodied AI. TITAN's rugged build withstands punishing heat, dust, and harsh conditions, with an 8-hour runtime per swappable battery pack supporting 24/7 operations and delivering 3-5x efficiency gains (e.g., $300K value from $100K investment). Deployment history is accelerating: RoboForce, founded in 2023 by experts from CMU, Tesla Robotics, Waymo, and others, exited stealth in 2025 with $15M funding, a WEF Technology Pioneer award, first commercial pilot, and over 11,000 unit letters of intent (LOIs). Initial 'robot internships' are live in solar energy for construction, inspection, and maintenance, with pilots expanding to mining, manufacturing, logistics, data centers, and shipping. By end-2025, commercialization targets full-scale rollout, positioning TITAN as the cornerstone of Robo-Labor to automate dull, dirty, dangerous tasks, augmenting human capabilities across industries.

Key Features

Millimeter Precision Manipulation

Achieves 1 mm accuracy for fine-grained tasks with 40 kg payload and 1100 mm reach, executing primitives like pick, place, press, twist, and connect.

Modular Hardware Design

Configurable components: industrial hands, flexible waist, all-terrain bases (wheeled TITAN-W, tracked TITAN-T) for diverse environments.

Physical AI Powered by RF-Net

3D foundation model enables spatial intelligence, field-proven autonomy, and continuous learning from deployments.

Rugged Industrial Durability

Built for harsh outdoor conditions including heat, dust, and unstructured terrains, with 8-hour runtime and human-safe operation.

Scalable Robo-Labor Platform

Supports cross-industry generalization in solar, mining, manufacturing, shipping, data centers, and space via efficient data pipelines.

Specifications

AvailabilityPrototype
NationalityUS
Websitehttp://www.roboforce.ai
Height [Cm]210
Manipulation Performance2
Navigation Performance2
Max Speed (Km/H)9
Strength [Kg]40
Runtime Pr Charge (Hours)8
Safe With HumansYes
Number Of Fingers4
Main MarketData Center, Manufacturing, Mining, Shipping, Solar, Space
VerifiedNot verified
Walking Speed [Km/H]9
ManufacturerRoboForce
Height210 cm
Payload40 kg (dual-arm, full workspace)
Arm Reach1100 mm
Precision1 mm
Runtime8 hours per battery pack
Max Speed9 km/h
Mobility BasesWheeled (TITAN-W), Tracked (TITAN-T), extensible
Manipulation PrimitivesPick, Place, Press, Twist, Connect
Ai ModelRF-Net v1 (3D foundation model)
Fingers Per Hand4
ArchitectureModular: Hand, Waist, Base
SensorsNot specified (spatial perception via RF-Net)
MaterialsRugged industrial-grade (heat/dust resistant)
BatterySwappable packs (kWh/voltage not specified)
Thermal ManagementOptimized for harsh environments

Curated Videos

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Frequently Asked Questions

What makes TITAN suitable for harsh industrial environments?

TITAN features a rugged modular design with all-terrain bases (wheeled and tracked), dust/heat-resistant construction, and 8-hour battery life, enabling reliable autonomous operation in outdoor settings like solar farms and mines without human intervention.

What AI technologies power TITAN?

Powered by RF-Net v1, a 3D foundation model for spatial understanding and precise manipulation, combined with domain intelligence and Physical AI for generalization across tasks, evolving from real-world data for continuous improvement.

What are TITAN's key manipulation capabilities?

Dual arms handle 40 kg payloads with 1 mm precision over 1100 mm reach, performing essential industrial primitives: pick, place, press, twist, and connect, ideal for assembly, maintenance, and material handling.

What is the deployment status of TITAN?

Prototype in 2024, pilots in 2025 including solar 'robot internships'; secured 11,000+ unit LOIs, first commercial pilot signed, with expansions to mining, manufacturing, and more targeting 2026 commercialization.

How does TITAN integrate with existing workflows?

Modular and scalable, TITAN deploys in 4 weeks vs. 52-week hiring cycles, offers 24/7 operation with $300K annual value per unit, reducing labor variability and management overhead in industrial settings.

Is TITAN safe for human collaboration?

Yes, designed with human-safe navigation at 9 km/h speeds, advanced perception via RF-Net, and collaborative features for co-existence in dynamic environments like factories and ports.

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