Matrice 300 RTK Parameters
- Place of Origin: Guangdong, China
- Model Number: M300 RTK
- Material: Other
- Power: BATTERY
- Function: With Camera, With Remote Control
- Operator Skill Level: Intermediate
- Control Type: Remote Control
- image transmission distance: 10KM
- Dimensions: Unfolded 810*670*430 mm
- Supported Gimbals: Zenmuse XT2/XT S/Z30/H20/H20T
- Weight: Approx. 3.6 kg (without batteries) Approx. 6.3 kg (with two batteries)
- Battery: TB60 Battery
- Flight Time: max 55mins
- Suitable for: Security, Mapping, Survey, Protection
- Max Payload: 2.7kg
- Max Takeoff Weight: 9 kg
- Type: Remote Control
- Certification: ce
Products Description
Feature of Matrice 300 RTK
*Advanced Dual control
*Aviation-grade Situational Awareness
*Smart Track
*Pin Point
*Waypoint 2.0
*AI Spot Check
*Live Misssion Recording
*Multiple payload Configurations
What Camera can be used on Matrice 300 RTK drone
Zenmuse H20
Zenmuse H20t
Zenmuse XT2
Zenmuse Z30
Third-party payloads
Search and Rescue, Firefighting - Quickly Locate Missing People, Better Plan Rescues: Act Fast, Save Lives without Endangering Personnel. Learn More.
By equipping firefighters with real-time situational awareness, DJI technology empowers them to make swift, informed, and safety-driven decisions. Moreover, drones have become critical tools for law enforcement agencies, allowing for faster and more effective responses.
Matrice 300 RTK industrial drones significantly enhance rescue services by providing overhead guidance, allowing emergency responders to quickly identify targets and deploy care more efficiently.
Ebook: Exploring the Benefits of Drones in Search and Rescue Operations for Law Enforcement, with potential applications in combating COVID-19 in the United States.
The Matrice 300 RTK drone has a maximum transmission distance of 15km, with a maximum flight time of 55 minutes. It operates in temperatures ranging from -20°C to 50°C and features a hot-swappable UAV health management system for its battery.
Improved Flight Capabilities: Our refined airframe and propulsion system design ensures a more efficient, stable, and reliable flight performance, even in challenging weather conditions or extreme environments.