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Project Background

The home appliance manufacturing industry faces multiple challenges, including rising labor costs, increasing quality control pressures, and insufficient flexibility of production lines. To address these pain points, DexForce leverages embodied intelligence to empower the core links of home appliance production, and its spatial and embodied intelligence suite, powered by the DexVerse™ engine, acts as a catalyst to inject intelligent transformation into home appliance production lines.

Project Challenges

⦁ Highly reflective surfaces of rotors make point cloud imaging challenging.

⦁ Fast cycle time is required to handle the high density of rotors in a single layer.

⦁ High precision is needed to grasp the rotors near the container walls.

Case Video

Core Values

Complete Imaging of Highly Reflective Workpieces

Complete Imaging of Highly Reflective Workpieces

Guaranteed by the high-precision 3D camera that can generate high-fidelity images for highly reflective rotors.
Precise Positioning

Precise Positioning

Enabled by advanced vision algorithms that accurately locate the rotor's center and avoid the collision with the container.

Product Recommendations

Higher Precision 3D Imaging Capability

Higher Precision 3D Imaging Capability

Based on self-developed high-precision 3D imaging algorithms and HDR technology, Z-axis measurement accuracy reaches up to 50µm at a working distance of 600mm, applicable to industrial inspection fields with high precision requirements
Integrated Imaging and Perception

Integrated Imaging and Perception

Equipped with NVIDIA Jetson Nano core, built-in computing and control algorithms, endowing the camera with point cloud analysis capabilities and optimizing image quality; fast speed, more stable, enabling lightweight, edge deployment
Industrial-Grade Design, Addressing Real-World Scenario Challenges

Industrial-Grade Design, Addressing Real-World Scenario Challenges

IP65 dustproof and waterproof design; wide temperature design, supports operation in working environments from -10°C to 50°C, adaptable to most industrial scenarios; has passed certifications such as EU CE, RoHS, US FCC, etc., better coping with harsh industrial environments like humidity, electromagnetic interference, dust
Algorithm Development for Extreme Conditions

Algorithm Development for Extreme Conditions

Exposure modes specifically optimized for highly reflective object surfaces, effectively improving the camera's accuracy and stability in measuring highly reflective surfaces. Proprietary compensation algorithms can effectively reduce depth measurement errors, minimizing the impact of object surface textures on depth images
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