TEND-X is a high-performance Touchless Explosive Nano-vapor Detector that detects nano-sized explosive particles (vapor) in the air. This provides excellent performance in detecting unauthorized explosives, such as IEDs and land mines. While most explosive trace detectors on the market are contact-based (touch), this equipment is non-contact (touchless), which can improve detection accuracy, convenience, and safety between detection. Having streamlined user interface features, fast initialization times and fast analysis times enables fast and accurate detection
TEND-X1
TEND-X2
TEND-X3
TEND-X4
SPECIFICATION
01Detects a wide range of explosives including Nitroaromatics, Nitro-amine, Nitrate-esters, etc
02Without direct contact with explosive, particles (nano-size) of explosive components are detected by vapor a sampling at a distance of about 50 cm from the explosive
03Detectable in environments such as small bottles, packaged containers, closed or open compartments, entrance gates, package inspection, and outdoors
04Explosives are quickly detected through real-time sensitivity of detected explosive components and danger warnin
05We provides 4 kinds of Touchless Nano-Vapor Detectors such as TEND-X1 (Mobile Type Detector), TEND-X2 (Land Mine Detector), TEND-X3 (Standalone Explosive Detector) and TEND-X4 (Drone-based Explosive Detector)
FLUORESCENCE & FLUORESCENCE QUENCHING
01
According to the Frank-Condon principle, our chemical sensor emits light energy, symmetrically when it receives external light energy. However, when it reacts with explosive substances of the Nitro-group, it creates a fluorescence quenching phenomenon
02
According to the Frank-Condon principle, our chemical sensor emits light energy, symmetrically when it receives external light energy. However, when it reacts with explosive substances of the Nitro-group, it creates a fluorescence quenching phenomenon
03
According to the fluorescence properties of molecules and the nitro group reaction of chemicals, this is a system that detects explosives using fluorescence quenching
04
The 3D core module of explosive nano-vapor detection system