₹ 3820537.07 includes GST and import duties. | |
B2B customers can avail ₹ 582631.9 ITC on this product | |
100% Secure Payments | 100% Genuine product | |
The product is eligible for Free Shipping |
Description
Product Overview
T912502 is a Si2x-LD hazardous location acoustic imaging camera for pressurized leak detection and mechanical fault detection. It 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. With its advanced analysis tools, the Si2x-LD provides a robust solution for lowering costs associated with mechanical bearing issues. 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.
- Detects, locates and measures compressed air leaks, gas leaks, bearing faults from up to 200m away
- Offers built-in measurement & cost analysis for industrial gases including NH3, H, CO2, CH4, He, Ar
- Supports one-handed operation with automatic tuning, 8x zoom, and a 12MP digital camera
- Features mechanical fault mode, automatic selection
- Optimization of filters for finding critical mechanical issues such as bearing faults
- 5" 1280 × 720 size, resistive touch screen, TFT LCD, MIPI DSI display
- Powered by li-ion rechargeable battery pack
- IP54 rated
- Operating temperature range from -10°C to 50°C (14°F to 122°F)
- Camera size 184 × 276 × 167mm
Product details
Other details
Brand | FLIR |
Part Number | T912502 |
Quantity | Each |
Technical Data Sheet EN | ![]() |
All product and company names are trademarks™ or registered® trademarks of their respective holders. Use of them does not imply any affiliation with or endorsement by them.
Bulk Discount
Quantity | Price |
2 | ₹ 3744126.33 |
3-5 | ₹ 3705920.96 |
5-10 | ₹ 3629510.22 |
10+ | ₹ 3553099.48 |
Bulk discount will be automatically applied during checkout based on quantity.