UseOpenVision's profile picture. Training the world's Vision Language Model using your camera & GPU. Powered by MCP. Earn $VISION. Decentralized. Permissionless. Real-world AI.

OpenVision

@UseOpenVision

Training the world's Vision Language Model using your camera & GPU. Powered by MCP. Earn $VISION. Decentralized. Permissionless. Real-world AI.

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On Jan 6, 2025, NVIDIA’s CEO stood on the CES stage and laid out the entire history of AI in one sentence: “We started with perception. Then generative. Then agentic. Now we enter the era of Physical AI - where intelligence doesn’t just talk, it sees and acts in the real world.”…

UseOpenVision's tweet image. On Jan 6, 2025, NVIDIA’s CEO stood on the CES stage and laid out the entire history of AI in one sentence:

“We started with perception. Then generative. Then agentic. Now we enter the era of Physical AI - where intelligence doesn’t just talk, it sees and acts in the real world.”…

Parallax VLM for AR: Enables AR glasses and edge devices to identify objects, walls, tables, and users in real time. Local AI Training: VisionNodes run models directly on hardware — no cloud needed. Outcome: Low latency, high privacy, real-world responsive AI for immersive AR…

UseOpenVision's tweet image. Parallax VLM for AR: Enables AR glasses and edge devices to identify objects, walls, tables, and users in real time.

Local AI Training: VisionNodes run models directly on hardware — no cloud needed.

Outcome: Low latency, high privacy, real-world responsive AI for immersive AR…

Parallax VLM empowers AR glasses and edge devices to understand physical space in real-time by identifying walls, tables, objects, and users. By training AI models on local hardware, VisionNodes ensure low latency and high privacy. No cloud required—just intelligent, on-device…

UseOpenVision's tweet image. Parallax VLM empowers AR glasses and edge devices to understand physical space in real-time by identifying walls, tables, objects, and users.

By training AI models on local hardware, VisionNodes ensure low latency and high privacy. No cloud required—just intelligent, on-device…

VLM (Vision-Language Models): Merge visual data with linguistic context. Advantage over LLMs: Outperform text-only models in real-world scenarios requiring perception + understanding. Multimodal Edge: Higher accuracy, broader applicability, and enhanced decision-making across…

UseOpenVision's tweet image. VLM (Vision-Language Models): Merge visual data with linguistic context.

Advantage over LLMs: Outperform text-only models in real-world scenarios requiring perception + understanding.

Multimodal Edge: Higher accuracy, broader applicability, and enhanced decision-making across…

Global Collaboration: Anyone can contribute compute power and data. Open-Source Framework: Promotes innovation and transparency. Impact: Improves AI models, accelerates research, and ensures decentralization at scale.

UseOpenVision's tweet image. Global Collaboration: Anyone can contribute compute power and data.

Open-Source Framework: Promotes innovation and transparency.

Impact: Improves AI models, accelerates research, and ensures decentralization at scale.

At OpenVision, we understand the importance of privacy. Unlike traditional AI platforms that upload your data to centralized servers—leaving it vulnerable to misuse and surveillance. OpenVision keeps your data private. By processing video locally on VisionNodes and using…

UseOpenVision's tweet image. At OpenVision, we understand the importance of privacy. Unlike traditional AI platforms that upload your data to centralized servers—leaving it vulnerable to misuse and surveillance.

OpenVision keeps your data private. By processing video locally on VisionNodes and using…

Compression & Bandwidth Optimization Advanced Compression: Shrinks data transmission sizes dramatically. Network Performance Boost: Faster data flow across nodes. Efficiency: Reduces bandwidth usage, making decentralized AI more scalable.

UseOpenVision's tweet image. Compression & Bandwidth Optimization

Advanced Compression: Shrinks data transmission sizes dramatically.

Network Performance Boost: Faster data flow across nodes.

Efficiency: Reduces bandwidth usage, making decentralized AI more scalable.

Zero-Knowledge Proofs (ZKPs): Verify VisionNode computations without exposing raw video. Transparency + Privacy: Results are provable while footage remains unseen. Scalable Security: Designed to protect contributors while enabling trustless AI training.

UseOpenVision's tweet image. Zero-Knowledge Proofs (ZKPs): Verify VisionNode computations without exposing raw video.

Transparency + Privacy: Results are provable while footage remains unseen.

Scalable Security: Designed to protect contributors while enabling trustless AI training.

Layered Neural Design: Parallax stacks multiple visual processing layers. Enhanced Capability: Better at interpreting complex visual information. Efficiency Gains: More accurate analysis, faster AI learning.


Centralized AI Risks: Data can be sold, leaked, or hidden inside black-box models. OpenVision Difference: Local video processing on your device. Zero-knowledge proofs confirm validity without revealing content. Full privacy while still powering AI. Result: Private,…

UseOpenVision's tweet image. Centralized AI Risks: Data can be sold, leaked, or hidden inside black-box models.

OpenVision Difference:

Local video processing on your device.

Zero-knowledge proofs confirm validity without revealing content.

Full privacy while still powering AI.

Result: Private,…

Vision-Language Models (VLMs) go beyond traditional Language Models (LLMs) by combining visual data with linguistic understanding. This gives VLMs the edge in real-world scenarios, outperforming text-only models. Their multimodal approach enhances both accuracy and…

UseOpenVision's tweet image. Vision-Language Models (VLMs) go beyond traditional Language Models (LLMs) by combining visual data with linguistic understanding. This gives VLMs the edge in real-world scenarios, outperforming text-only models.

Their multimodal approach enhances both accuracy and…

OpenVision’s Parallax neural architecture enhances the network’s ability to interpret and analyze complex visual data more efficiently. By layering visual processing capabilities, it allows the system to gain deeper insights from video and images, improving overall AI…

UseOpenVision's tweet image. OpenVision’s Parallax neural architecture enhances the network’s ability to interpret and analyze complex visual data more efficiently. By layering visual processing capabilities, it allows the system to gain deeper insights from video and images, improving overall AI…

Proving Trust Without Exposing Data 🔒 At OpenVision, we use Zero-Knowledge Proofs (ZK Proofs) to ensure your VisionNode has completed AI training tasks, without ever exposing the underlying video content. ✅ Privacy First This innovative method allows us to validate your data…

UseOpenVision's tweet image. Proving Trust Without Exposing Data 🔒

At OpenVision, we use Zero-Knowledge Proofs (ZK Proofs) to ensure your VisionNode has completed AI training tasks, without ever exposing the underlying video content.

✅ Privacy First
This innovative method allows us to validate your data…

OpenVision takes connectivity to the next level by effortlessly integrating edge devices like cameras and sensors. This enables real-time processing and seamless data flow across decentralized networks, optimizing system responsiveness and reducing latency. Whether it’s video…

UseOpenVision's tweet image. OpenVision takes connectivity to the next level by effortlessly integrating edge devices like cameras and sensors. This enables real-time processing and seamless data flow across decentralized networks, optimizing system responsiveness and reducing latency. Whether it’s video…

Seamless Integration: Cameras and sensors connect directly to the network. Real-Time Processing: Data is processed instantly at the edge. Decentralized Flow: Information moves securely across distributed nodes. Outcome: Faster responsiveness, lower latency, stronger AI…

UseOpenVision's tweet image. Seamless Integration: Cameras and sensors connect directly to the network.

Real-Time Processing: Data is processed instantly at the edge.

Decentralized Flow: Information moves securely across distributed nodes.

Outcome: Faster responsiveness, lower latency, stronger AI…

In today’s digital world, bandwidth is the lifeblood of all connected systems. OpenVision is at the forefront of optimizing how data is transmitted across decentralized networks. Through advanced compression techniques, OpenVision significantly reduces transmission sizes,…

UseOpenVision's tweet image. In today’s digital world, bandwidth is the lifeblood of all connected systems. OpenVision is at the forefront of optimizing how data is transmitted across decentralized networks. 

Through advanced compression techniques, OpenVision significantly reduces transmission sizes,…

Every Camera is a Node In the OpenVision network, every camera becomes a node. Each camera captures video data, processes it locally, and contributes to improving Parallax VLM, the vision-based learning model. Decentralized Learning & AI VisionNode processes video input to…

UseOpenVision's tweet image. Every Camera is a Node
In the OpenVision network, every camera becomes a node. Each camera captures video data, processes it locally, and contributes to improving Parallax VLM, the vision-based learning model.

Decentralized Learning & AI
VisionNode processes video input to…

Open-Source Node Contribution 🌍 OpenVision is revolutionizing the way developers and researchers collaborate on global-scale AI and data-driven projects. By contributing compute power and data to the network, participants are driving forward the next wave of innovation in AI…

UseOpenVision's tweet image. Open-Source Node Contribution 🌍

OpenVision is revolutionizing the way developers and researchers collaborate on global-scale AI and data-driven projects. By contributing compute power and data to the network, participants are driving forward the next wave of innovation in AI…

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