FLIR Si2x-Pro

FLIR Si2x-Pro Hazardous Location Acoustic Imaging Camera for Gas Leak, Mechanical Fault, and Partial Discharge Detection

The FLIR Si2x-Pro Acoustic Imaging Camera by Teledyne FLIR is specifically designed for use in hazardous gas and explosive dust environments, to easily reduce leaks of toxic or flammable gases to improve safety, or cut expenses associated with compressed air or gas leaks in your facilities.

FLIR Si2x-Pro​

With its advanced analysis tools, the Si2x-Pro provides a robust solution for lowering costs associated with mechanical bearing issues and partial discharge on electrical equipment. Engineered for hazardous operations, it offers best-in-class performance, decision support, and fleet management, along with enterprise data integration for optimal efficiency and safety.

For those not requiring partial discharge detection, you can opt for the Si2x-LD for leak and mechanical fault detection.

Technical Specifications
Acoustic Measurement 124 low-noise MEMS microphones, real-time sound visualization
Severity Assessment Automatic AI-based partial discharge severity assessment including recommended actions onboard camera
Distance From 0.3 m (1.0 ft) up to 200 m (656 ft)
Leak Rate 0.0032 l/min from 2.5 m (8.2 ft), 0.0044 l/min from 6 m (19.6 ft)
Wireless Data Transfer Wi-Fi 2.4 GHz and 5 GHz IEEE 802.11.b/g/n/ac wireless LAN

Features

Below, you will find the main features of the product.

Advanced Leak And Partial Discharge Detection

Precisely detect, locate, and measure compressed air leaks, gas leaks, and partial discharges. Identify and quantify both minor and elusive issues from up to 200 m (656 ft) away—boosting operational efficiency and ensuring safety.

Fleet Management Functionality

Ensure optimal use and maintenance of equipment in large-scale industrial settings with fleet management, cloud data integration, and OTA software updates. Combine acoustic and thermal imaging in the same report.

Mechanical Fault Analysis

Save on costly repairs, reduce downtime, and enhance maintenance efficiency by identifying bearing and other mechanical defects before they overheat or cause equipment failure.

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