CDOT Barcode provides a durable 2D barcode solution for marking and tracing industrial parts subjected to heavy processes and challenging conditions. This technology enables precise part-based traceability across various materials and manufacturing environments, ensuring 100% read accuracy with existing marking and reading devices.
Funding
Funding not disclosed
Founders
Product
Problem
Many industrial parts undergo harsh manufacturing processes that damage or destroy traditional barcodes, making part tracking and traceability difficult. Existing barcode solutions often fail to withstand extreme temperatures, chemical exposure, and physical abrasion. This lack of durable marking leads to inefficiencies, errors, and increased costs in manufacturing and supply chain operations.
Solution
CDOT Barcode provides a durable 2D barcode solution designed for marking and tracing industrial parts subjected to heavy processes and challenging conditions. The AI-powered barcode technology ensures high read accuracy even after exposure to painting, heat treatment, metallized coating, and other demanding processes. CDOT barcodes are compatible with existing printer/laser marking devices for writing and camera/2D reader models for reading, enabling seamless integration into current manufacturing workflows. The solution provides a unique serialized digital ID for each part, facilitating computable product data for advanced manufacturing initiatives and comprehensive part-based traceability.
Target Audience
The primary customers are manufacturers in industries such as iron and steel, sand casting, and appliance manufacturing who require durable and reliable part tracking throughout their production processes.
Features
- Durable 2D barcode resistant to painting, heat treatment, and metallized coating
- Compatible with existing printer/laser marking devices and camera/2D reader models
- AI-powered technology ensures high read accuracy in challenging conditions
- Unique serialized digital ID for each part
- Supports all conventional file formats
- Applicable to a wide range of materials, including iron, steel, copper, aluminum, and porcelain