- Joined
- Sep 21, 2020
- Messages
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- Age
- 47
I introduce myself, I am Luca, I am Italian, and I wanted to present the beta version of a project that I am carrying out to create a drone dedicated to SAR operations.
The project is called JS04X, it is based on Inspire 1 drone, to which several changes have been applied.
I list the salient features:
Redundant system with 3 batteries, controlled with an anti-fault and redundancy circuit to ensure maximum reliability.
The batteries are integrated with a self-heating system, to maintain the constant temperature of the batteries.
Batteries are hot swappable.
The system is equipped with 4 FPV cameras for the pilot, which can be selected remotely individually or visible in mosaic at the same time.
The camera placed on the nose can be tilted 45 ° upwards and 45 ° downwards, it can maintain leveling with the ground thanks to the use of inclinometers.
The video transmission is entrusted to a radio link at 5.8Ghz and 2Watt of power.
The system is equipped in the front camera with OSD with auxiliary telemetry, equipped with GPS and barometric sensor.
An ARDUINO UNO system was installed, equipped with a LoRa connection at 868mhz for the transmission of data detected by interchangeable sensors:
Geiger sensor
MultiGas sensor
ARDUINO is also equipped with a double barometer and accelerometer and inclinometer, it also mounts temperature and humidity sensors for sensor management and calibration.
These are some of the main features, I will update you later.







The project is called JS04X, it is based on Inspire 1 drone, to which several changes have been applied.
I list the salient features:
Redundant system with 3 batteries, controlled with an anti-fault and redundancy circuit to ensure maximum reliability.
The batteries are integrated with a self-heating system, to maintain the constant temperature of the batteries.
Batteries are hot swappable.
The system is equipped with 4 FPV cameras for the pilot, which can be selected remotely individually or visible in mosaic at the same time.
The camera placed on the nose can be tilted 45 ° upwards and 45 ° downwards, it can maintain leveling with the ground thanks to the use of inclinometers.
The video transmission is entrusted to a radio link at 5.8Ghz and 2Watt of power.
The system is equipped in the front camera with OSD with auxiliary telemetry, equipped with GPS and barometric sensor.
An ARDUINO UNO system was installed, equipped with a LoRa connection at 868mhz for the transmission of data detected by interchangeable sensors:
Geiger sensor
MultiGas sensor
ARDUINO is also equipped with a double barometer and accelerometer and inclinometer, it also mounts temperature and humidity sensors for sensor management and calibration.
These are some of the main features, I will update you later.






