Opsydia utilizes advanced laser technology to create nearly invisible identifiers within transparent materials, such as diamonds and polymers, without compromising their structural integrity. This capability enhances traceability and security in the diamond supply chain and enables the incorporation of aesthetic features in various transparent products.
Funding
$8.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Counterfeit gemstones and diamonds pose a significant threat to the luxury goods industry, undermining consumer trust and devaluing authentic products. Traditional identification methods can be easily circumvented, making it difficult to trace a gemstone's origin and verify its authenticity throughout the supply chain. This lack of transparency impacts all stages, from mining and manufacturing to retail and resale.
Solution
Opsydia provides advanced laser systems that create virtually invisible, secure identifiers within transparent materials like diamonds and polymers. These subsurface Nano IDs do not compromise the material's integrity and offer a robust method for confirming a gemstone's identity. The technology enables a physical link between a specific diamond and its grading report, blockchain record, or branded jewelry origins, empowering all stages of the diamond supply chain to protect the integrity of diamonds and other gemstones. Opsydia's systems are designed for volume operation and can be deployed in factory, grading laboratory, or standard office environments.
Target Audience
Opsydia's primary customers include diamond manufacturers, grading laboratories, luxury brands, and technology specialists seeking to enhance traceability, authenticity, and brand protection in the gem and jewelry industry.
Features
- Ultra-precise laser technology for creating sub-surface Nano ID inscriptions within transparent materials
- Identifiers are virtually invisible and do not compromise the material's structural integrity
- Provides a physical link between a gemstone and its grading report, blockchain record, or branded jewelry origins
- Enables traceability and transparency throughout the diamond and gemstone supply chain
- Suitable for deployment in factory, grading laboratory, or standard office environments
- Designed for volume operation, processing over 100,000 gemstones per year
- Can be used to create aesthetic features, security marks, serial numbers, and holograms in transparent materials
- Technology can create high spatial resolution electrically conductive tracks, arrays of electrodes, and quantum color centers within diamond wafers for advanced applications