Aventix provides SCARLETT, a non‑contact benchtop system that uses optical sensors and the SensVue software to deliver microliter‑level volume measurements across 96‑ to 1536‑well plates. The automated, HEPA‑filtered instrument produces rapid, traceable data that integrates with existing lab workflows, reducing reagent waste, improving reproducibility, and accelerating research in chemical, agricultural, pharmaceutical, and cosmetic labs.
Funding
Funding not disclosed
Founders
Product
Problem
Laboratories often rely on manual or low-precision volume measurement methods that introduce variability, waste reagents, and hinder reproducibility across experiments, especially when working with high‑density well plates.
Solution
Aventix offers SCARLETT, a non‑contact, benchtop volume measurement system that combines next‑generation sensors with advanced software (SensVue) to deliver microliter‑level precision across 96‑ to 1536‑well plates. The instrument performs rapid, automated measurements in a HEPA‑filtered environment, eliminating operator bias and reducing the need for manual adjustments. SensVue processes the data in real time, providing traceable, exportable results and analytics that integrate with existing laboratory workflows. By delivering consistent, high‑accuracy volume data, SCARLETT helps labs improve experimental outcomes, reduce reagent waste, and accelerate discovery.
Target Audience
Primary customers are research laboratories in chemical, agricultural, pharmaceutical, and cosmetic sectors that require high‑throughput, precise volume measurements for assay development and routine testing.
Features
- Non‑contact optical sensing for volume measurement in ANSI/SLAS‑compatible plates (96, 384, 1536 wells)
- Automated, bench‑top instrument delivering results in seconds with HEPA‑filtered environment
- Real‑time data processing and AI‑enhanced analytics via the SensVue software platform
- Interactive visualization, comparison, and export of results from any device
- Automation‑ready API and traceability features for integration into existing lab workflows
- Scalable precision that maintains accuracy across diverse plate formats, including deep‑well plates