DJI Mavic 3 Multispectral Edition - See more, work smarter - DJI (2023)

DJI Mavic 3 Multispectral Edition - See more, work smarter - DJI (1)

See more, work smarter

Effective aerial surveying must see the unseen. For that reason, the Mavic 3 Multispectral has two views. Combine an RGB camera with a multispectral camera to scan and analyze plant growth with absolute clarity. Farm production management requires precision and data, and the Mavic 3M delivers both.

compact and portable

Collapsible for easy storage.

multispectral camera

4 × 5 megapixels
V/R/RE/NIR

camara rgb

20MP
4/3 CMOS, mechanical shutter

safe and stable

omnidirectional obstacle avoidance[1]
15 km transmission range[2]

precise positioning

RTK positioning at centimeter level
Time synchronization at the microsecond level

efficient air measurement

Up to 200 hectares per flight[3]

Multispectral + RGB imaging system

Highly integrated imaging system

Newly enhanced imaging system with one 20 MP RGB camera and four 5 MP multispectral cameras (green, red, red edge, and near-infrared). It enables applications such as high-precision aerial surveying, plant growth monitoring, and natural resource surveying.

Near Infrared (NIR)

860 nm ± 26 nm

Roter Rand (RE)

730 nm ± 16 nm

rot(R)

650 nm ± 16 nm

Verde (G)

560 nm ± 16 nm

(Video) Introducing DJI Mavic 3 Multispectral

RGB camera properties

CMOS 4/3

20MP image sensor

1/2000er

Faster mechanical shutter speed

0.7 seconds

High speed burst when using RGB camera

sunlight sensor

The integrated sunlight sensor captures solar radiation and records it to an image file, enabling light compensation of the image data during 2D reconstruction. This leads to more accurate NDVI results, as well as greater accuracy and consistency of the data collected over time.

Multispectral + RGB imaging system

Highly integrated imaging system

Newly enhanced imaging system with one 20 MP RGB camera and four 5 MP multispectral cameras (green, red, red edge, and near-infrared). It enables applications such as high-precision aerial surveying, plant growth monitoring, and natural resource surveying.

5 MP multispectral camera

Near Infrared (NIR)

860 nm ± 26 nm

Roter Rand (RE)

730 nm ± 16 nm

rot(R)

650 nm ± 16 nm

Verde (G)

560 nm ± 16 nm

RGB camera properties

CMOS 4/3

20MP image sensor

1/2000er

Faster mechanical shutter speed

0.7 seconds

High speed burst when using RGB camera

(Video) DJI Mavic 3 Multispectral Part-2 Multispectral analysis

sunlight sensor

The integrated sunlight sensor captures solar radiation and records it to an image file, enabling light compensation of the image data during 2D reconstruction. This leads to more accurate NDVI results, as well as greater accuracy and consistency of the data collected over time.

DJI Automotive Deals

Module RTK

Precise images that capture every pixel

Mavic 3M with RTK module for positioning with centimeter precision. The flight controller, camera, and RTK module synchronize within microseconds to accurately capture the center position of each camera's image. This allows the Mavic 3M to perform high-precision aerial surveys without using ground control points.

Efficient and reliable battery life

Ultra-long battery life, fast bursts

43 minutes[4]

cruise time

200 hectares[3]

A single flight can carry out mapping operations over an area of ​​200 hectares.

fast charge

100W battery charging station

Highly efficient fast charging

88W fast charge

airplane

Stable signal, smooth image transmission

(Video) DJI Mavic 3 Multispectral Introduction

O3 transmission integrates two transmit signals and four receive signals to support ultra-long transmission distance of 15km.

Omnidirectional obstacle detection[1], Terrain follows aerial survey

The aircraft has multiple wide FOV vision sensors that accurately detect obstacles in all directions for obstacle avoidance in all directions. Terrain-following aerial survey can be easily performed in landscapes with steep slopes.

forms

orchard mapping

The Mavic 3M enables ground-monitoring aerial surveys of orchards, even in sloping landscapes. Paired with DJI Terra or DJI SmartFarm Platform[6]to rebuild high-resolution plantation maps, automatically identify the number of trees, distinguish trees from other obstacles or objects, and generate three-dimensional agricultural drone operation routes to make operations safer and more efficient.

Mavic 3M Aerial Inspection

Mavic 3M Aerial Inspection

DJI Terra / DJI SmartFarm platform[6]cartography

DJI Terra / DJI SmartFarm platform[6]cartography

Generate 3D routes

Generate 3D routes

agricultural drone operation

agricultural drone operation

Run Variable Rate Applications

For rice fertilization, cotton growth regulation, and foliar fertilizer spraying of potatoes, the 3M Mavic is used to obtain multispectral images of plants. DJI Terra or the DJI SmartFarm platform[6]you can then generate NDVI and other vegetation index maps, capture differences in crop potential, and create regulatory maps that allow agricultural drones to make variable rate applications. In this way, users can reduce costs, increase yields and protect the environment.

Mavic 3M Aerial Inspection

Mavic 3M Aerial Inspection

Platform DJI SmartFarm

Platform DJI SmartFarm

Generate cropland application maps

Generate cropland application maps

agricultural drone

agricultural drone

(Video) How to use DJI Mavic 3 Multispectral | PIX4Dfields in-field Tutorials

smart field scan

Mavic 3M can perform automatic field recognition. Field Scout images can be uploaded to the DJI SmartFarm platform[6]in real time through a 4G network. There may be anomalies such as lack of emergence, weed pressure, and timely storage of plants. You can also perform intelligent analysis such as B. Identify cotton seedlings and test rice production, using AI identification to share real-time plant growth information, guide agronomic activities, and easily manage 70 hectares of farmland for one person.

Environmental surveillance and survey of natural resources

The Mavic 3M can also be used to investigate the environment and natural resources, e.g. B. for water recharge monitoring, forest distribution study, urban green space study and more.

Water enrichment monitoring

forest distribution surveys

Surveys of urban green spaces

open ecosystem

Cloud APIs

The Mavic 3M can be directly connected to a third-party cloud platform via Pilot 2's built-in DJI Cloud API based on the MQTT protocol. There is no need to develop a separate application to enable the transmission of UAV device information, live streaming, photographic data and other information.

MSDK

Mavic 3M supports Mobile SDK 5 (MSDK5) with a full open source production code sample. MSDK5 enables the development of a proprietary control application for UAV field patrol, smart survey and other scenarios and makes it easy to use.

If you would like to purchase products or become a dealer, please contact us at IUAV@DJI.COM. You can also leave your contact details below and we will get back to you as soon as possible.

1. DO NOT fly in extreme weather conditions, such as B. strong wind (wind speed 12m/s or more), snow, rain, or lightning. DO NOT fly in areas 6,000 meters or more above sea level. DO NOT fly the aircraft in environments where the temperature is below -10°C (14°F) or above 40°C (104°F). DO NOT take off from moving objects such as cars and boats. DO NOT fly near reflective surfaces such as water or snow. Otherwise, the optical positioning system may not work properly. If the GNSS signal is weak, fly the aircraft in areas with good lighting and visibility. In low light conditions, the vision system may not work properly. Pay attention to flight safety when flying near sources of electromagnetic interference. Common sources of electromagnetic interference are high voltage power lines, high voltage transmission stations, radar stations, cell phone base stations, cell phone towers, Wi-Fi access points, routers and Bluetooth devices.
2. The transmission distance of 15 km can only be achieved according to the FCC standard when measured in open air without interference. The SRRC standard is adopted in mainland China, and the longest transmission distance is 8 km. The above data is the farthest communication distances for one-way flights under each standard. Pay attention to the instructions in the DJI Pilot 2 app during the flight.
3. Specific test conditions: In a sunny and windless environment, in-flight orthographic aerial photography is taken with a flight speed of 15m/s, a flight altitude of 217m, a ground scan distance (GSD) of 5.73 cm for visible and 10 cm for multispectral, a longitudinal overlap ratio of 70% and a page overlap ratio of 60%.
4. Data was measured with a DJI Mavic 3M flying at a constant speed of 36 km/h at sea level in a windless environment until 0% power was left. It is for reference only. Pay attention to the return home directions in the DJI Pilot 2 app during the flight.
5. Optional accessories. This service is not available in some countries. Contact your local dealer for more details. Do not install the DJI Cellular module when using a multispectral camera for data acquisition to avoid blocking the intensity sensor.
6. DJI Smart Agriculture Platform will be supported in Q2 2023. This service is not available in some countries. Contact your local dealer for more details.

Videos

1. DJI Mavic 3T vs M30T: Thermal Drone Face-Off
(Aerial Influence)
2. Mavic 3M Review: How M3M Work in Different Operation Scenarios
(DJI Agriculture)
3. DJI Mavic 3 Enterprise Series: Everything You Need To Know
(DJI Enterprise)
4. DJI Mavic 3 Enterprise - Mapping With DroneDeploy
(Billy Kyle)
5. DJI Mavic 3T roof inspection walk through
(OriginaldoBo)
6. DJI Mavic 3 Enterprise - The NEW King of Drone Photogrammetry
(Dylan Gorman)

References

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