
DJI Matrice 400 Enterprise Drone (No Batteries / No Care)
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Phone: +1 888 850 6533
Mon - Fri: 9 am - 5 pm (MT)
Phone: +1 888 850 6533
Mon - Fri: 9 am - 5 pm (MT)
✔ Price Match Guarantee
✔ Ships in 1-2 Business Days
✔ Unlimited After-Sales Support
Engineered for Excellence, Designed for Versatility
DJI Matrice 400, the enterprise flagship drone platform, boasts an impressive 59-minute flight time, a payload capacity of up to 6 kg, and integrated rotating LiDAR and mmWave radar for power-line-level obstacle sensing. It also supports the O4 Enterprise Enhanced Video Transmission and Airborne Relay Video Transmission, ensuring safer handling and easier operations. Combining Smart Detection with visible and thermal imaging, AR projection, ship-based takeoff/landing, and advanced automation, Matrice 400 excels in emergency response, power inspections, mapping, and AEC.
Matrice 400's flight capabilities are outstanding, offering up to 59 minutes of forward flight time even with a payload, and up to 53 minutes of hovering duration. These capabilities make it a reliable tool for long-duration and continuous operations such as search and rescue, firefighting, and large-scale mapping. It can also avoid large obstacles like buildings and mountains at flight speeds of up to 25 m/s.
Matrice 400's strong payload capacity allows it to easily meet the demands of a wide range of applications. With a maximum payload capacity of 6 kg, Matrice 400 supports seamless switching between a single downward gimbal and a dual downward gimbal. It also features a third gimbal connector on the underside for additional flexibility. The aircraft is equipped with 4 external E-Port V2 ports, enabling simultaneous mounting of up to 7 payloads.
With Zenmuse H30 Series' visible and thermal imaging, Matrice 400 can detect vehicles, vessels, and subjects during search and rescue operations or routine flights. It also supports switching to other models, enabling the expansion of application scenarios. Additionally, it supports high-res grid photos and features powerful tracking capabilities.
Matrice 400 supports Real-Time Terrain Follow flight in any horizontal direction. This feature can be enabled during both manual flight and automated flight routes, ensuring stable relative height to the ground.
During large-scale search and rescue operations, the size of ground subjects can be kept consistent on the remote controller screen, reducing the need for frequent zoom adjustments and improving efficiency. During mapping missions, a consistent ground sampling distance (GSD) can be maintained to obtain high-precision mapping data.
To address the needs of offshore operations such as maritime patrol and wind turbine inspection, Matrice 400 is equipped with the capability to take off from and land on ships, supporting takeoff from stationary vessels and landing on moving vessels. By detecting landing point patterns on the deck, it can achieve safe and precise landings.
When equipped with the L2 LiDAR system, Matrice 400 can perform automated power transmission and distribution line following flights. It uses the rotating LiDAR to detect obstacles in real time and automatically bypasses crossing lines.
Matrice 400 supports the planning and execution of slope and geometric routes via DJI Pilot 2 or DJI FlightHub 2. Whether conducting detailed aerial surveys of building facades, slopes, or other inclined surfaces, or collecting mapping data of individual buildings or structures, Matrice 400 can quickly plan slope or geometric routes to efficiently acquire high-precision data.
Max Flight Time | 59 minutes |
Max Hover Time | 53 minutes |
Max Payload Capacity | 6 kg |
Max Horizontal Speed | 25 m/s |
Max Takeoff Weight | 15.8 kg |
Operating Temperature | -20° to 50° C |
Ingress Protection | IP55 |
Video Transmission System | O4 Enterprise Enhanced |
Max Transmission Distance | 40 km (FCC) |
Sensing System | Rotating LiDAR, mmWave radar, Vision sensors |
Obstacle Sensing | Omnidirectional |
GNSS | GPS + Galileo + BeiDou + GLONASS* |
Hovering Accuracy (RTK) | ±0.1 m vertical/horizontal |
Takeoff Weight (with propellers) | Without Batteries: 5020±20 g With Batteries: 9740±40 g |
Max Takeoff Weight | 15.8 kg |
Dimensions | Unfolded: 980×760×480 mm (L×W×H) (with landing gear) Folded: 490×490×480 mm (L×W×H) (with landing gear and gimbal) |
Max Payload | 6 kg |
Propeller Size | 25 inches |
Diagonal Wheelbase | 1070 mm |
Max Ascent Speed | 10 m/s |
Max Descent Speed | 8 m/s |
Max Horizontal Speed (at sea level, no wind) | 25 m/s |
Max Takeoff Altitude | 7000 m |
Max Flight Time (no wind) | 59 minutes |
Max Hover Time (no wind) | 53 minutes |
Max Flight Distance (no wind) | 49 km |
Max Wind Speed Resistance | 12 m/s |
Max Yaw Angular Velocity | Yaw: 100°/s |
Max Pitch Angle | 35° |
Operating Temperature | -20° to 50° C (-4° to 122° F) (without solar radiation) |
Global Navigation Satellite System (GNSS) | GPS + Galileo + BeiDou + GLONASS* |
Hovering Accuracy Range (with moderate or no wind) | Vertical: ±0.1 m (with vision positioning) ±0.5 m (with satellite positioning) ±0.1 m (with RTK positioning) Horizontal: ±0.3 m (with vision positioning) ±0.5 m (with satellite positioning) ±0.1 m (with RTK positioning) |
RTK GNSS Accuracy | RTK Fix: 1 cm + 1 ppm (horizontal), 1.5 cm + 1 ppm (vertical) |
RTK Heading | Supports RTK heading with an accuracy better than 2° |
Airborne ADS-B In | Equipped with standard airborne ADS-B In receiver and dual antennas, supporting reception up to 20 km. |
Internal Storage | N/A |
Ports | USB-C Debug Port × 1: USB 2.0 E-Port V2 × 4: At the lower part of the drone, with 120W single-port power Cellular Dongle 2 Interface × 2: On the underside of the drone |
Propeller Model | 2510F |
Beacon | Built into the aircraft |
Ingress Protection Rating | IP55 |
Maximum Payload for Single Gimbal Connector | 1400 g |
Maximum Payload for Dual Gimbal Connector | 950 g |
Maximum Payload for Third Gimbal Connector | 3 kg for quick-release port, 6 kg for screw lock fastening |
Sensing Type | Omnidirectional binocular vision system (surround view provided by full-color fisheye vision sensors) Horizontal rotating LiDAR, upper LiDAR and downward 3D infrared range sensor Six-direction mmWave radar |
Forward | Measurement Range: 0.4-21 m Detection Range: 0.4-200 m Field of View (FOV): 90° (horizontal), 90° (vertical) |
Backward | Measurement Range: 0.4-21 m Detection Range: 0.4-200 m Field of View (FOV): 90° (horizontal), 90° (vertical) |
Lateral | Measurement Range: 0.6-21 m Detection Range: 0.5-200 m Field of View (FOV): 90° (horizontal), 90° (vertical) |
Downward | Measurement Range: 0.5-19 m The FOV to the front and rear is 160° and 105° to the right and left. |
Rotating LiDAR | Standard Measurement Range: 0.5-100 m @ 100,000 lux with 10% reflectivity target Measurement Range for Power Line: 35 m @ 30° @ 10,000 lux for 21.6 mm steel-core aluminum stranded wire with a relative body tilt angle of 30° to the left and right Field of View (FOV): 360° (horizontal), 58° (vertical) Point-Frequency: 520,000 points/second Laser Wavelength: 905 nm Eye Safety Level: Class 1 (IEC60825-1:2014), eye-safe |
Upper LiDAR (3D ToF) | 0.5-25 m at night (reflectivity > 10%) The FOV to the up and down is 60° and 60° to the right and left. |
Downward 3D Infrared Range Sensor | Measurement Range: 0.3-8 m (reflectivity > 10%) The FOV to the front and rear is 60° and 60° to the right and left. |
mmWave Radar | Measurement Range for Power Line: 36 m for a 12.5mm steel-core aluminum stranded wire 50 m for a 21.6mm steel-core aluminum stranded wire FOV: ± 45° (horizontal and vertical) |
* The actual product weight may vary due to differences in batch materials and external factors.
* The 6 kg payload is measured at the third gimbal connector under sea level conditions. Payload capacity decreases as altitude increases. For details, refer to the official user manual.
* Maximum dimensions excluding propellers.
* GLONASS is supported only when the RTK module is enabled.
* The rating is not permanently effective and may decrease due to product wear and tear.
* If exceeds, the gimbal damper lifespan will decrease from 1000 hours to 400 hours.
* Sufficient lighting conditions refer to an illuminance not lower than that of a nighttime city light scene.
* The mmWave radar function is unavailable in some countries/regions.