Product Overview
The EMMS2000 UAV radiation emergency monitoring system has the advantages of small size, light weight, and fast deployment. The ground workstation displays radiation data and meteorological data in real time, and can quickly grasp the environmental radioactivity level and the accumulation and diffusion of radioactive materials. The system is combined with electronic maps to intuitively understand the overall radiation situation in the region, meeting the application of large-area radiation contamination measurement in nuclear accident emergencies.
Product Overview
The EMMS2000 UAV radiation emergency monitoring system has the advantages of small size, light weight, and fast deployment. The ground workstation displays radiation data and meteorological data in real time, and can quickly grasp the environmental radioactivity level and the accumulation and diffusion of radioactive materials. The system is combined with electronic maps to intuitively understand the overall radiation situation in the region, meeting the application of large-area radiation contamination measurement in nuclear accident emergencies.
Features
① Real-time measurement: automatic nuclide identification and dose calculation, real-time calculation of single nuclide contribution dose rate and total dose rate;
② Passive spectrum stabilization: automatic spectrum stabilization using natural nuclides to ensure accuracy;
③ Trend distribution map: electronic map displays radiation measurement data, geographic location and other information, and draws radiation equipotential map;
④ Data backtracking: provides data query and playback functions to facilitate accident analysis;
⑤ Portable and easy to use: small size, light weight, easy to carry, capable of vertical take-off and landing, and hovering in the air;
⑥ Scalability: the monitoring system reserves multiple communication interfaces, which can expand other communication methods to ensure use in emergency situations.
Features
① Real-time measurement: automatic nuclide identification and dose calculation, real-time calculation of single nuclide contribution dose rate and total dose rate;
② Passive spectrum stabilization: automatic spectrum stabilization using natural nuclides to ensure accuracy;
③ Trend distribution map: electronic map displays radiation measurement data, geographic location and other information, and draws radiation equipotential map;
④ Data backtracking: provides data query and playback functions to facilitate accident analysis;
⑤ Portable and easy to use: small size, light weight, easy to carry, capable of vertical take-off and landing, and hovering in the air;
⑥ Scalability: the monitoring system reserves multiple communication interfaces, which can expand other communication methods to ensure use in emergency situations.
Technical Parameters
Product Name |
UAV Radiation Monitoring System |
Product Name |
Drone (optional) |
Detector Type |
NaI(Tl) crystal + GM tube (energy compensation type) (LaBr3(Ce) crystal and neutron detector are optional) |
Maximum wingspan |
2570±10mm |
No-load hovering time |
≥75min (below 1000m above sea level, 25℃) |
||
Detector size |
3 inches (1L/2L/4L optional) |
Hovering time with 15kg load |
≥30min (below 1000m above sea level, 25℃) |
Maximum flight speed |
18m/s |
||
Measuring range |
0.01μSv/h~100mSv/h (Expandable to 10Sv/h) |
Maximum climbing speed |
4m/s |
Maximum descent speed |
3m/s |
||
Energy range |
30keV~3MeV |
Relative climbing height |
4000m (plain) |
Energy resolution |
≤7.5%(662keV,137Cs) |
Maximum operating altitude |
5000m (altitude, relative climb 1500m) |
MCA Channels |
1024、2048 |
Wind resistance |
Level 7 |
Communication |
RS485, 4G, expandable RF, satellite, etc. |
Maximum control distance of remote control |
≥7km |
Maximum control distance of ground station |
≥10km |
Technical Parameters
Product Name |
UAV Radiation Monitoring System |
Product Name |
Drone (optional) |
Detector Type |
NaI(Tl) crystal + GM tube (energy compensation type) (LaBr3(Ce) crystal and neutron detector are optional) |
Maximum wingspan |
2570±10mm |
No-load hovering time |
≥75min (below 1000m above sea level, 25℃) |
||
Detector size |
3 inches (1L/2L/4L optional) |
Hovering time with 15kg load |
≥30min (below 1000m above sea level, 25℃) |
Maximum flight speed |
18m/s |
||
Measuring range |
0.01μSv/h~100mSv/h (Expandable to 10Sv/h) |
Maximum climbing speed |
4m/s |
Maximum descent speed |
3m/s |
||
Energy range |
30keV~3MeV |
Relative climbing height |
4000m (plain) |
Energy resolution |
≤7.5%(662keV,137Cs) |
Maximum operating altitude |
5000m (altitude, relative climb 1500m) |
MCA Channels |
1024、2048 |
Wind resistance |
Level 7 |
Communication |
RS485, 4G, expandable RF, satellite, etc. |
Maximum control distance of remote control |
≥7km |
Maximum control distance of ground station |
≥10km |