Features
- Poor Flexibility in Deployment. Scenarios in energy, agriculture, solid waste treatment and scientific research cover various methane emission sources, requiring a new device to reduce cost and improve efficiency.
- Challenges in Low concentration Detection. Fixed monitoring equipment has limitations in detecting low-concentration methane leaks.
- Limited Work Scenario & Long Response Time. Laser scanning can easily be affected by the object surfaces or obstacles.
Tunable Diode Laser Absorption Spectroscopy (TDLAS)
Detection method: Tunable Diode Laser Absorption Spectroscopy (TDLAS)
Superior Gas Selectivity
Sensitive to methane Only, contact-based and closed-path TDLAS for quantitative methane detection.
Short Response Time
Built-in air pump and ultra-compact cabin allow response to the concentration changes within seconds and even shorter.
Internal Vibration Reduction Mechanism
Ultra compact & lightweight structural design for internal vibration reduction mechanism significantly reduces the vibration effects from the moving platforms, acquiring the best data quality.

Range
0~10000ppm
Resolution
1ppm (Static Noise Level <300ppb)
Detection Limit
1~1.5ppm
ldeal Operating Temperature
15~25℃ (Built-in 2-stage temp.control)
Conforming to
USEPA Method 21
Mobile Methane Monitoring Solutions at 1ppm Resolution
Flexibly integrated on mobile platforms such as UAVs and robot dogs, a single device can simultaneously meet the needs of airborne and ground-based mobile GHG monitoring, making it easy to build a 3D monitoring network.
Simple Integration with UAVs
Sniffer4D 1ppm TDLAS Methane Sensing & Mapping System supports connecting to 1 ppm NDIR CO2 Sensing Module, Ultrasonic Wind Speed & Direction Sensing Module, Nuclear Radiation Sensing Module

DJI Dock
Opening up Infinite Possibilities
Integrated with DJI M30 series and DJI Dock, the system significantly reduces the cost and boosts the efficiency for unmanned inspections on industrial sites and pipeline leakages, opening up infinite possibilities.
Collaboration for Added Value
Ultra compact & lightweight structural design releases the UAV payload, fully achieving autonomous aerial gas sensing to provide mroe added value for the flights.



DJI Flight Hub 2 Supported
Sniffer4D 1ppm TDLAS Methane Sensing & Mapping System also supports real-time data display and remote control from DJI Flight Hub 2, allowing automatic forwarding to Cloud and achieving private deployment.
Sniffer4D System——One-stop Workflow
One-stop workflow allows users to easily finish data collection and work report in one mission.

Supports Private Deployment to Third-party Platforms
* Contact Soarability to activate access
Sniffer4D hardware supports real-time data outputting to user-specified platforms through the MQTT protocol.
Sniffer4D Mapper software also supports outputting the decoded data (json format) to a designated IP address through UDP.
One-stop Workflow
One-stop workflow allows users to easily finish data collection and work report in one mission.

Flexible Choice of Operation
Gas from the air

Multi-ends Real-time Monitoring
Built-in 4G connectivity for real-time data transmission to one or multiple ends. Swarm supported.

Smart Warming
Sniffer4D's front & rear high-brightness warning LEDs change their color automatically under different gas concentrations, notifying on-site personnel about the risks.

Real-time Data Analysis & Visualization
Sniffer4D Mapper software visualizes and analyzes data from one or more Sniffer4Ds in real-time. Three types of visualization (2D grid/2D isoline/3D point cloud map) provide intuitive & insightful information for decision makers.

One-click Result Delivery
After a mission, simply click a button to generate a PDF mission report containing key results, or a CSV file containing all the raw data.

Post-mission Analysis
Historical missions can be downloaded and loaded to Sniffer4D Mapper for post-mission analysis, fully utilizing the data in the analysis of greenhouse gases.