DJI Phantom 4 RTK UAV

£4,225.00 exc. VAT £4,225.00 inc. VAT
SKU: DJI-P4-RTK
The Phantom 4 is DJI’s most compact and accurate low altitude mapping solution offering centimetre-accurate data while requiring fewer ground points.

A new RTK module is integrated directly into the Phantom 4RTK, providing real-time, centimetre-level positioning data for improved absolute accuracy on image metadata. Sitting just beneath the RTK receiver is a redundant GNSS module, installed to maintain flight stability in signal-poor regions such as dense cites.
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    Product Information
    The Phantom 4 is DJI’s most compact and accurate low altitude mapping solution offering centimetre-accurate data while requiring fewer ground points.

    A new RTK module is integrated directly into the Phantom 4RTK, providing real-time, centimetre-level positioning data for improved absolute accuracy on image metadata. Sitting just beneath the RTK receiver is a redundant GNSS module, installed to maintain flight stability in signal-poor regions such as dense cites. Combining both modules, the Phantom 4RTK is able to optimise flight safety while ensuring the most precise data is captured for complex surveying, mapping and inspection workflows.

    Fit the Phantom 4 RTK to any workflow, with the ability to connect this positioning system to the D-RTK 2 Mobile Station, NTRIP (Network Transport of RTCM via Internet Protocol) using a 4G dongle or WiFi hotspot, to store the satellite observation data to be used for Post Processed Kinematics (PPK).

    To take full advantage of the Phantom 4RTK’s positioning modules, the new TimeSync system was created to continually align the flight controller, camera and RTK module. Additionally, TimeSync ensures each photo uses the most accurate metadata and fixes the positioning data to the centre of the CMOS – optimising the results from photogrammetric methods and letting the image achieve centimetre-level positioning data.

    To legally fly a small unmanned aerial system in the UK the Operator is legally required to hold a Permission for Commercial Operations (PfCO) from the UK Civil Aviation Authority (CAA). Before a PfCO is issued the Operator must write and have approved an Operations Manual. Also any pilots who are to fly for that Operator must hold a CAA approved NQE issued qualification demonstrating their operating competence and flying capability.
    Technical Information
    Aircraft

    Weight (Battery & Propellers Included)

    1391 g

    Max Service Ceiling Above Sea Level

    19685 ft (6000 m)

    Max Ascent Speed

    6 m/s (automatic flight); 5 m/s (manual control)

    Max Descent Speed

    3 m/s

    Max Speed

    31 mph (50 kph)(P-mode); 36 mph (58 kph) (A-mode)

    Max Flight Time

    Approx. 30 minutes

    Operating Temperature

    32° to 104° F (0° to 40° C)

    Operating Frequency

    2.400 GHz to 2.483 GHz(Europe, Japan, Korea)
    5.725 GHz to 5.850 GHz (United States, China)

    EIRP

    2.4 GHz
    CE (Europe) / MIC (Japan) / KCC (Korea): < 20 dBm
    5.8 GHz
    FCC (United States) / SRRC (Mainland China) / NCC (Taiwan, China): < 26 dBm

    Hover Accuracy Range

    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)

    Image Position Offset

    The position of the camera center is relative to the phase center of the onboard D-RTK antenna under the aircraft body’s axis: (36, 0, and 192 mm) already applied to the image coordinates in Exif data. The positive x, y, and z axes of the aircraft body point to the forward, rightward, and downward of the aircraft, respectively.

    GNSS

    Single-Frequency High-Sensitivity GNSS

    GPS + BeiDou + Galileo* (Asia); GPS + GLONASS + Galileo* (other regions)

    Multi-Frequency Multi-System High-Precision RTK GNSS

    Frequency Used
    GPS: L1/L2; GLONASS: L1/L2; BeiDou: B1/B2; Galileo*: 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

    Mapping Accuracy**

    Mapping accuracy meets the requirements of the ASPRS Accuracy Standards for Digital Orthophotos Class III.

    Ground Sample Distance (GSD)

    (H/36.5) cm/pixel, H indicates the aircraft altitude relative to the shooting scene (unit: m)

    Acquisition Efficiency

    Max operating area of approx. 1 km2 for a single flight (at an altitude of 182 m, i.e., GSD is approx. 5 cm/pixel, meeting the requirements of the ASPRS Accuracy Standards for Digital Orthophotos Class III).

    * Supported later.
    ** The actual accuracy depends on surrounding lighting and patterns, aircraft altitude, mapping software used, and other factors when shooting.

    Gimbal

    Stabilization

    3-axis (pitch, roll, yaw)

    Controllable Range

    Pitch: -90° to +30°

    Max Controllable Angular Speed

    Pitch: 90°/s

    Angular Vibration Range

    ±0.02°

    Vision System

    Velocity Range

    ≤ 31 mph (50 kph) at 6.6 ft (2 m) above ground with adequate lighting

    Altitude Range

    0 - 33 ft (0 - 10 m)

    Operating Range

    0 - 33 ft (0 - 10 m)

    Obstacle Sensory Range

    2 - 98 ft (0.7 - 30 m)

    FOV

    Forward/Rear: 60° (horizontal), ±27° (vertical)
    Downward: 70° (front and rear), 50° (left and right)

    Measuring Frequency

    Forward/Rear: 10 Hz
    Downward: 20 Hz

    Operating Environment

    Surfaces with clear patterns and adequate lighting (> 15 lux)

    Infrared Sensing System

    Obstacle Sensory Range

    0.6 - 23 ft (0.2 - 7 m)

    FOV

    70°(Horizontal), ±10°(Vertical)

    Measuring Frequency

    10 Hz

    Operating Environment

    Surface with diffuse reflection material, and reflectivity > 8% (such as wall, trees, humans, etc.)

    Camera

    Sensor

    1’’ CMOS; Effective pixels: 20M

    Lens

    FOV (Field of View) 84°, 8.8 mm (35 mm format equivalent: 24 mm), f/2.8 - f/11, auto focus at 1 m - ∞

    ISO Range

    Video: 100 - 3200 (Auto), 100 - 6400 (Manual); Photo: 100 - 3200 (Auto), 100 - 12800 (Manual)

    Mechanical Shutter

    8 - 1/2000 s

    Electronic Shutter

    8 - 1/8000 s

    Max Image Size

    4864×3648 (4:3); 5472×3648 (3:2)

    Still Photography Modes

    Single shot

    Video Recording Modes

    H.264, 4K: 3840×2160 30p

    Photo

    JPEG

    Video

    MOV

    Supported File Systems

    FAT32 (≤ 32 GB); exFAT (> 32 GB)

    Supported SD Cards

    microSD, Max Capacity: 128 GB. Write speed ≥15MB/s, class 10 or UHS-1 rating required

    Operating Temperature

    32° to 104° F (0° to 40° C)

    Remote Controller

    Operating Frequency

    2.400 GHz to 2.483 GHz (Europe, Japan, Korea)
    5.725 GHz to 5.850 GHz (United States, China)

    EIRP

    2.4 GHz
    CE / MIC / KCC: < 20 dBm
    5.8 GHz
    FCC / SRRC / NCC: < 26 dBm

    Max Transmission Distance

    FCC / NCC: 4.3 mi (7 km); CE / MIC / KCC / SRRC: 3.1 mi (5 km)
    (Unobstructed, free of interference)

    Power Consumption

    16 W (typical value)

    Display Device

    5.5 inch screen, 1920×1080, 1000 cd/m2, Android system, 4G RAM + 16G ROM

    Operating Temperature

    32° to 104° F (0° to 40° C)

    Intelligent Flight Battery (PH4-5870mAh-15.2V)

    Capacity

    5870 mAh

    Voltage

    15.2 V

    Battery Type

    LiPo 4S

    Energy

    89.2 Wh

    Net Weight

    468 g

    Operating Temperature

    14° to 104° F (-10° to 40° C)

    Max Charging Power

    160 W

    Intelligent Flight Battery Charging Hub (P4CH)

    Voltage

    17.5 V

    Operating Temperature

    41° to 104° F (5° to 40° C)

    Remote Controller Intelligent Battery (WB37-4920mAh-7.6V)

    Capacity

    4920 mAh

    Voltage

    7.6 V

    Battery Type

    LiPo 2S

    Energy

    37.39 Wh

    Operating Temperature

    -4° to 104° F (-20° to 40° C)

    Intelligent Battery Charging Hub (WCH2)

    Input Voltage

    17.3 to 26.2 V

    Output Voltage and Current

    8.7 V, 6 A; 5 V, 2 A

    Operating Temperature

    41° to 104° F (5° to 40° C)

    AC Power Adapter (PH4C160)

    Voltage

    17.4 V

    Rated Power

    160 W


    To legally fly a small unmanned aerial system in the UK the Operator is legally required to hold a Permission for Commercial Operations (PfCO) from the UK Civil Aviation Authority (CAA). Before a PfCO is issued the Operator must write and have approved an Operations Manual. Also any pilots who are to fly for that Operator must hold a CAA approved NQE issued qualification demonstrating their operating competence and flying capability.
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