Phantom 4 Multispectral Combo with RTK
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Gather precise plant-level data using the P4 Multispectral – a high-precision drone with a seamlessly integrated multispectral imaging system built for agriculture missions, environmental monitoring, and more.
- Multispectral Imaging System
- Live NDVI View
- RTK Module
- TimeSync
Farm to Figures |
Gain Immediate Insights into Plant Health
|
See Beneath the Surface |
Agriculture imagery collection is now simpler and more efficient than ever before with a built-in stabilized imaging system that collects comprehensive data sets right out of the box. Access information collected by 1 RGB camera and a multispectral camera array with 5 cameras covering Blue, Green, Red, Red Edge, and Near Infrared bands – all at 2 MP with global shutter, on a 3-axis stabilized gimbal. |
Integrated Spectral Sunlight Sensor for Accurate Results |
An integrated spectral sunlight sensor on top of the drone captures solar irradiance, which maximizes accuracy and consistency of data collection through different times of day. When combined with post-processed data, this information helps to obtain the most accurate NDVI results. |
Meaningful Data at Your Disposal |
View Both RGB and NDVI Feeds
|
Centimeter-level Precision |
Get real-time, accurate positioning data on images captured by all six cameras with DJI’s TimeSync system, providing centimeter-level accurate measurements. The TimeSync system continually aligns the flight controller, RGB and NB cameras, and RTK module, fixing the positioning data to the center of the CMOS and ensuring each photo uses the most accurate metadata. All cameras go through a rigorous calibration process where radial and tangential lens distortions are measured. The distortion parameters gathered are saved into each image’s metadata, letting post-processing software adjust uniquely for every user. |
D-RTK 2 Mobile Station and NTRIP Compatibility |
Enhance the accuracy of RTK positioning without internet connection by connecting the P4 Multispectral to the D-RTK 2 High Precision GNSS Mobile Station and NTRIP (Network Transport of RTCM via Internet Protocol)2, or store the satellite observation data to be used for Post Processed Kinematics (PPK). |
The Beginning of Intelligent Agriculture Missions |
Plan Flights |
Plan flights, execute automated missions, and manage flight data using GS PRO – DJI’s leading flight planning iOS app. |
Capture Data |
Collect multispectral images efficiently across a large area using the P4 Multispectral and gain an overview of problem areas. |
Analyze Data |
Easily access and process aerial data by applying plant-specific metrics and parameters to acquire the desired results on plant health. |
Applications |
Precision agriculture |
Environmental monitoring and inspection
|
SPECS
Aircraft
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Takeoff Weight
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1487 g
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Diagonal Distance (Propellers Excluded)
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350 mm
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Max Service Ceiling Above Sea Level
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19685 ft (6000 m)
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Max Ascent Speed
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6 m/s (automatic flight); 5 m/s (manual control)
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Max Descent Speed
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3 m/s
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Max Speed
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31 mph (50 kph) (P-mode); 36 mph (58 kph) (A-mode)
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Max Flight Time
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Approx. 27 minutes
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Operating Temperature
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0° to 40° C (32° to 104° F)
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Operating Frequency
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2.4000 GHz to 2.4835 GHz (Europe, Japan, Korea)
5.725 GHz to 5.850 GHz (Other countries/regions)[1]
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Transmission Power (EIRP)
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2.4 GHz: < 20 dBm (CE / MIC / KCC)
5.8 GHz: < 26 dBm (FCC / SRRC / NCC)
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Hover Accuracy Range
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RTK enabled and functioning properly:
Vertical: ± 0.1 m; Horizontal: ± 0.1 m
RTK disabled:
Vertical: ± 0.1 m (with vision positioning); ± 0.5 m (with GNSS positioning)
Horizontal: ± 0.3 m (with vision positioning); ± 1.5 m (with GNSS positioning)
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Image Position Compensation
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The relative positions of the centers of the six cameras’ CMOS and the phase center of the onboard D-RTK antenna have been calibrated and are recorded in the EXIF data of each image.
GNSS
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Single-Frequency High-Sensitivity GNSS
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GPS + BeiDou + Galileo[2] (Asia); GPS + GLONASS + Galileo[2] (other regions)
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Multi-Frequency Multi-System High-Precision RTK GNSS
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Frequency Used
GPS: L1/L2; GLONASS: L1/L2; BeiDou: B1/B2; Galileo[2]: E1/E5
First-Fixed Time: < 50 s
Positioning Accuracy: Vertical 1.5 cm + 1 ppm (RMS); Horizontal 1 cm + 1 ppm (RMS).
1 ppm indicates error with a 1 mm increase over 1 km of movement.
Velocity Accuracy: 0.03 m/s
Mapping Functions
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Ground Sample Distance (GSD)
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(H/18.9) cm/pixel, H indicates the aircraft altitude relative to the area mapped (unit: m)
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Rate of Data Collection
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Max operating area of approx. 0.47 km2 for a single flight at an altitude of 180 m, i.e., GSD is approx. 9.52 cm/pixel
Gimbal
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Controllable Range
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Tilt: -90° to +30°
Vision System
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Velocity Range
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≤ 31 mph (50 kph) at 6.6 ft (2 m) above ground with adequate lighting
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Altitude Range
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0 - 33 ft (0 - 10 m)
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Operating Range
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0 - 33 ft (0 - 10 m)
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Obstacle Sensory Range
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2 - 98 ft (0.7 - 30 m)
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Operating Environment
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Surfaces with clear patterns and adequate lighting (> 15 lux)
Camera
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Sensors
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Six 1/2.9” CMOS, including one RGB sensor for visible light imaging and five monochrome sensors for multispectral imaging.
Each Sensor: Effective pixels 2.08 MP (2.12 MP in total)
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Filters
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Blue (B): 450 nm ± 16 nm; Green (G): 560 nm ± 16 nm; Red (R): 650 nm ± 16 nm; Red edge (RE): 730 nm ± 16 nm; Near-infrared (NIR): 840 nm ± 26 nm
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Lenses
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FOV (Field of View): 62.7°
Focal Length: 5.74 mm (35 mm format equivalent: 40 mm), autofocus set at ∞
Aperture: f/2.2
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RGB Sensor ISO Range
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200 - 800
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Monochrome Sensor Gain
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1 - 8x
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Electronic Global Shutter
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1/100 - 1/20000 s (visible light imaging); 1/100 - 1/10000 s (multispectral imaging)
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Max Image Size
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1600×1300 (4:3.25)
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Photo Format
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JPEG (visible light imaging) + TIFF (multispectral imaging)
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Supported File Systems
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FAT32 (£ 32 GB); exFAT (> 32 GB)
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Supported SD Cards
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microSD with a minimum write speed of 15 MB/s. Max Capacity: 128 GB. Class 10 or UHS-1 rating required
(18382)
SKU | 18382 |
Brand | DJI |
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