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Ethio-flying car
Introduction
practical flying car would have to be capable of
safely taking off, flying and landing throughout
heavily populated urban environments. To
produce such an aircraft would require a
propulsion system that is quiet, to avoid noise
complaints, and has non-exposed rotors so it could
be flown safely in urban environments.
Additionally, for such aircraft to become airborne,
they would require very powerful engines.
advantage of the project
• MODERNIZATION IN TECHNOLOGY(technological
advancement)
• It can roll in solid surface and on the sky under
user specified direction
• REDUCE LAND TRAFFIC PROBLEM (Minimizing
traffic pollution)
• (For medical purpose) Mostly and importantly
they replace the movable Ambulance car in to
flying one this highly increase efficiency and
decrease the number of people that probably die
by lack of fast service
…To be continued
• It uses environmentally friendly energy
source(electricity)
Simulation
• Using software like Arduino IDE, Proteus, and solid
works, I will simulate the electrical components as well
as the mechanical components.
• Using Arduino IDE, I can program/upload the necessary
code for the microcontroller.
• Using Proteus, software that is mostly used for
electrical simulation purposes, I will simulate
components like servomotor, transmitter, receiver,
etc… additionally, I can also build, analyze and evaluate
the circuit using proteus.
• Using solid works, I will design the mechanical parts of
the prototype.
Disadvantage of flying car
No Parts required Quantity Estimated unit Coast
1. PCB board 2 0.50-17.10 ETB
2. Arduino Nano(V.3.0) 2 100 ETB
3. Slide Switch 1 20 ETB
4. LIPO battery 2 126.70-253.40 ETB
5. Toggle Switch 2 6.34-11.09 ETB
6. NRF24-radio module +PA
Antenna
1 400 ETB
7. NRF24-radio module 1 0.3168-7.29 ETB
8. Voltage
regulator(3.3V)(AMS1117)
2 538(each)
9. 10𝜇F electrolytic capacitor 2 ……..
10. 100nF ceramic capacitor 2 ……..
11. Servo motor(Small size) 2 91.86(each)
12. Brushless DC motor(2000KV)
12V
5 170.41-218.56 ETB
(each)
13. PCB pin 6 20 ETB
14. HOT Glue GUN 1 200 ETB
Facilities and funding
Ethio flying car

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Ethio flying car

  • 2. Introduction practical flying car would have to be capable of safely taking off, flying and landing throughout heavily populated urban environments. To produce such an aircraft would require a propulsion system that is quiet, to avoid noise complaints, and has non-exposed rotors so it could be flown safely in urban environments. Additionally, for such aircraft to become airborne, they would require very powerful engines.
  • 3. advantage of the project • MODERNIZATION IN TECHNOLOGY(technological advancement) • It can roll in solid surface and on the sky under user specified direction • REDUCE LAND TRAFFIC PROBLEM (Minimizing traffic pollution) • (For medical purpose) Mostly and importantly they replace the movable Ambulance car in to flying one this highly increase efficiency and decrease the number of people that probably die by lack of fast service
  • 4. …To be continued • It uses environmentally friendly energy source(electricity)
  • 5. Simulation • Using software like Arduino IDE, Proteus, and solid works, I will simulate the electrical components as well as the mechanical components. • Using Arduino IDE, I can program/upload the necessary code for the microcontroller. • Using Proteus, software that is mostly used for electrical simulation purposes, I will simulate components like servomotor, transmitter, receiver, etc… additionally, I can also build, analyze and evaluate the circuit using proteus. • Using solid works, I will design the mechanical parts of the prototype.
  • 6.
  • 7. Disadvantage of flying car No Parts required Quantity Estimated unit Coast 1. PCB board 2 0.50-17.10 ETB 2. Arduino Nano(V.3.0) 2 100 ETB 3. Slide Switch 1 20 ETB 4. LIPO battery 2 126.70-253.40 ETB 5. Toggle Switch 2 6.34-11.09 ETB 6. NRF24-radio module +PA Antenna 1 400 ETB 7. NRF24-radio module 1 0.3168-7.29 ETB 8. Voltage regulator(3.3V)(AMS1117) 2 538(each) 9. 10𝜇F electrolytic capacitor 2 …….. 10. 100nF ceramic capacitor 2 …….. 11. Servo motor(Small size) 2 91.86(each) 12. Brushless DC motor(2000KV) 12V 5 170.41-218.56 ETB (each) 13. PCB pin 6 20 ETB 14. HOT Glue GUN 1 200 ETB Facilities and funding