DexForce develops AI-enabled robots with integrated 3D vision cameras specifically designed for manufacturing environments. These robots automate complex tasks, enhancing precision and operational efficiency in production processes.
Funding
Funding not disclosed
Founders
Product
Problem
Many manufacturing processes rely on traditional robotic systems that struggle with unstructured environments, variable lighting, and the need to manipulate diverse objects, leading to inefficiencies and limitations in automation. Existing 3D vision systems often lack the robustness and adaptability required for reliable object recognition and precise manipulation in dynamic real-world scenarios.
Solution
DexForce provides embodied intelligence solutions for robots, enabling them to grasp and manipulate objects in varied environmental conditions. The company's core offering, DexVerse™, is an AI and synthetic data engine that powers general-purpose robot intelligence. Integrated with intelligent sensors, 3D foundation models, and specialized software, DexForce's technology allows robotic systems to perform complex tasks through vision and language instruction. The Kingfisher series of AI-enabled 3D cameras provides perception and object localization, while the RoPilot controllers use 3D vision-language-action models for task scheduling and execution.
Target Audience
DexForce targets robotics system integrators and end-users in manufacturing, logistics, and other industries seeking to automate complex manipulation tasks with greater flexibility and precision.
Features
- DexVerse™: An AI and synthetic data engine for general-purpose robot intelligence
- 3D generative AI for creating synthetic training data
- Differentiable simulation and rendering for accurate physics-based interactions
- 3D foundation models for object recognition and manipulation
- Model lightweighting techniques for efficient deployment on edge devices
- Kingfisher: AI-enabled 3D cameras for perception and object localization, designed to function in diverse lighting conditions
- RoPilot Controllers: AI-enabled robot controllers driven by 3D vision-language-action foundation models
- Solutions for 3D vision-guided picking, placing, and depalletization