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Faith2 SE Aerial Survey Drone Foldable Remote Control Drone With Camera

Product Details

Place of Origin: China

Brand Name: ZAi

Certification: CE ROHS FCC SGS

Model Number: Faith2 SE

Payment & Shipping Terms

Minimum Order Quantity: 1000

Price: Negotiatial

Packaging Details: Standard Packages

Delivery Time: sample3-5 days, 30 days around for mass order

Payment Terms: L/C, D/A, D/P, T/T, Western Union

Supply Ability: 100,000 pcs per month

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Specifications
Highlight:

Faith2 SE Aerial Survey Drone

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Aerial Survey Drone Foldable

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Remote Control Drone With Camera

Name:
Aerial Survey Drone
Maximum Distance:
1080P 10km
Wheelbase:
Foldable
Gimbal:
Two Axis
Battery:
3000mAh
Satellite Positioning Systems:
GPS/GLONASS
Maximum Ascend Speed:
4m/s
Maximum Decsend Speed:
3m/s
Maximum Speed:
17m/s
Max Service Ceiling Above Sea Level:
4000m
Flight Time:
40mins(no Load) ,29mins(full Load)
4G Extended Image Transmission:
Global 4G Image Transmission, Unlimited Distance
Flight Control:
Compatible With Mavlink Protocol Flight Control
Operating Temperature Range:
-5-40℃
Take Off Weight:
About 3178g
Screen Type:
LCD
Name:
Aerial Survey Drone
Maximum Distance:
1080P 10km
Wheelbase:
Foldable
Gimbal:
Two Axis
Battery:
3000mAh
Satellite Positioning Systems:
GPS/GLONASS
Maximum Ascend Speed:
4m/s
Maximum Decsend Speed:
3m/s
Maximum Speed:
17m/s
Max Service Ceiling Above Sea Level:
4000m
Flight Time:
40mins(no Load) ,29mins(full Load)
4G Extended Image Transmission:
Global 4G Image Transmission, Unlimited Distance
Flight Control:
Compatible With Mavlink Protocol Flight Control
Operating Temperature Range:
-5-40℃
Take Off Weight:
About 3178g
Screen Type:
LCD
Description
Faith2 SE Aerial Survey Drone Foldable Remote Control Drone With Camera

 

 Specification 

1 aircraft  
Dimensions (including obstacle avoidance module, excluding
paddle)
Expansion: length 186 × width 258 × height 112 mm
Folded: length 167 × width 97 × height 112 mm
Diagonal wheelbase 280mm
Weight (including battery, propeller and avoidance
fault module)
500 g (with three-axis gimbal)
maximum ascent speed 4m/s (sports gear)
3m/s (normal speed)
3.5m/s (return mode)
maximum descent speed 3m/s (sports gear)
2m/s (normal speed)
3m/s (return mode)
maximum horizontal flight speed 14m/s (sports gear)
10m/s (normal speed)
12m/s (return mode)
Maximum flight altitude 4000m
longest flight time 27 minutes
Working temperature 0°C to 40°C
Satellite positioning module GPS/GLONASS dual mode
Hover accuracy Vertical: +/- 0.5 meters
± 0.2 m (when optical flow positioning and ultrasonic height fixing are working normally)
Level: +/- 1.5 meters
± 0.3 m (when optical flow positioning is working normally)
working frequency 5.8GHz
flight altitude Default 120 meters, maximum 500 meters (must manually change APP settings)
2 Optical flow positioning system  
Optical flow positioning system have
Usage environment The surface has rich texture and sufficient lighting conditions (>15 lux, normal indoor fluorescent lighting environment)
Speed measurement range Flight speed ≤ 1.5m/s (height 2 meters, sufficient light)
effective height 0.5 ~6 meters
3 Ultrasonic height-fixing system  
Ultrasonic height setting system have
Usage environment Except for water surfaces or floors made of absorbing materials (such as thick carpets)
Speed measurement range Flight speed ≤ 3m/s
Height measurement range 0.05 ~4.5 meters
4 Obstacle avoidance system (optional)  
Obstacle avoidance type Two-axis laser
Obstacle avoidance direction 540°, front, back, left, right, up
Maximum detection distance 20m
Maximum obstacle avoidance speed 10m/s
5 three-axis gimbal  
stabilization method Mechanical stabilization of brushless motors
Controllable rotation range Pitch: -90° to 0° (default setting) -90° to 20° (extended setting)
stable system Three axes (pitch +35/-125°, roll ±35°, direction ±30°)
6 Camera specifications  
image sensor Sony Sensor CMOS
photo size 3840x2160 (8 million)
Photo shooting mode Single shooting, continuous shooting, time-lapse shooting
Record video maximum resolution 3840×2160 (4K) 15FPS, 2716×1524 (2.7k) 25FPS
Maximum bit rate for recording video 25Mbps
Support file system FAT32
Image Format JPEG
video format MP4
Supported memory card types MicroSD card, supports up to 128GB, Micro SD card with transfer speed reaching c10 rating.
Working temperature 0°C to 40°C
7 flight batteries  
capacity 3000mAh
Voltage 11.4V
Battery Type LiPo 3S
energy 29.64 Wh
Overall battery weight About 170g
Working temperature 0°C to 40°C
Maximum charging power 29W
Charging time < 4h (using 5V 2A power adapter)
8 APP/image transmission  
Mobile App CFLY 2
Real-time image transmission Maximum 720P, will automatically switch the resolution according to environmental conditions
Maximum image transmission distance 3000m
Aerial photography mode Fading away mode, surround mode, skyrocketing mode, spiral mode
Mobile phone system version requirements Andrio 6.0 or above, IOS 10.0 or above
9 charger  
enter 5V 2A (recommended, the power of the power adapter determines the charging time)
output 4.35V 0.7A×3
rated power 10 W
10 remote control  
working frequency 5.8GHz
Maximum signal effective distance 3000m
Equivalent isotropic radiated power
(EIRP)
<26 dBm (FCC),
<20 dBm (CE/SRRC/MIC)
Working current 700mA
Mobile device holder Thickness 6.5-8.5 mm, maximum length 80 mm
battery capacity 2600 mAh
Length of use 2.5h (different mobile phones will vary)
battery voltage 3.7V
Battery Type LiPo 18650
Battery energy 9.62 Wh
Working temperature 0°C to 40°C
charging method USB
Maximum charging power 10W
Charging time < 2.5h (It is recommended to use a 5V 2A power adapter, its power determines the charging time)

 

 

Description

 

Aerial Survey Drone, also known as an UAV (Unmanned Aerial Vehicle) or UAS (Unmanned Aerial System) for aerial , is an unmanned aircraft equipped with specialized sensors and cameras used to capture high-resolution imagery and data from an aerial perspective for and applications. These drones are specifically designed for conducting surveys and collecting geospatial information efficiently and accurately.

 

Features

 

  • High-Resolution Imaging Sensors: Aerial Survey Drones are equipped with high-resolution cameras or sensors capable of capturing detailed imagery from the air. These sensors may include RGB (Red, Green, Blue) cameras, multispectral cameras, thermal cameras, or Lidar sensors, depending on the specific survey requirements.
  • Global Navigation Satellite System (GNSS): Aerial Survey Drones utilize GNSS, such as GPS (Global Positioning System), for accurate positioning and navigation. GNSS receivers enable precise geolocation of the captured imagery and data, ensuring accurate and results.
  • Inertial Measurement Unit (IMU): An IMU is often integrated into Aerial Survey Drones to measure the drone's orientation, velocity, and acceleration. This data, combined with GNSS information, improves the accuracy of the captured imagery and data by compensating for any drone movement during the survey.

Applications

 

  • Land and : Aerial Survey Drones are extensively used in land and applications. They can capture high-resolution imagery and collect geospatial data to create accurate maps, orthophotos, and digital elevation models (DEMs). These drones enable efficient and cost-effective land , boundary , and cadastral surveys.
  • Construction and Infrastructure Monitoring: Aerial Survey Drones play a vital role in construction and infrastructure monitoring. They can provide aerial imagery and data for monitoring construction progress, assessing site conditions, and conducting inspections of bridges, roads, buildings, and other infrastructure projects. Drones help in identifying potential issues, optimizing project management, and ensuring compliance with design specifications.
  • Environmental Monitoring and Conservation: Aerial Survey Drones are used for environmental monitoring and conservation efforts. They can capture imagery and data to assess and monitor ecosystems, wildlife habitats, and protected areas. These drones aid in monitoring environmental changes, tracking wildlife populations, detecting invasive species, and assessing the impact of human activities on natural habitats.
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