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BACKGROUND V2
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DELTA DART

1 m
Lengh
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1400 g
RTF
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41g/dm²
Wing load
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-STL files
-3mf bambu studio
-Scheme design
SERVO-CONTROLLED LAUNCH DOLLY
EDF 50mm
THRUST VECTOR

ASSEMBLY GUIDE

SPECIFICATIONS

PRINTED WEIGHT             800g
TAKE OFF WEIGHT            1400g
STALL SPEED                   28km/h
WING LOADING               41g/dm²

WING SPAN                 800mm (31")
WING SURFACE            34dm²
WING ASPECT RATIO    1
LENGTH                      1070mm

Take your flying experience to the next level with the Delta Dart, a high-performance 3D-printed delta EDF aircraft designed around one key feature: thrust vectoring. The thrust vectoring system gives the Delta Dart an extraordinary level of maneuverability, allowing it to perform spectacular maneuvers that would be impossible with a conventional control setup. It enables extreme angles of attack, rapid pitch changes, high-alpha flight, and impressive post-stall maneuvers, turning this compact delta into a highly capable aerobatic machine. Power comes from two 50mm EDF units, combining high speed with the exceptional agility of the delta configuration. The two independent EDFs also allow differential thrust, providing direct yaw control. This is particularly useful during takeoff, helping maintain directional control before the aerodynamic control surfaces become fully effective. Launching the Delta Dart is made safe and straightforward thanks to its servo-controlled launch dolly. It remains securely attached during the takeoff run, preventing bumps or uneven surfaces from causing a premature separation. Once airborne, the dolly is released, leaving the aircraft completely free for flight. As with all Eclipson designs, the Delta Dart has been optimized specifically for 3D printing, combining a lightweight and strong airframe with an efficient and accessible printing process. Twin EDF power, differential thrust, delta agility, and thrust vectoring come together to create a unique flying experience for pilots looking to push the limits of 3D-printed RC aircraft.

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TWIN EDF 50mm

THRUST VECTORING

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SERVO-CONTROLLED LAUNCH DOLLY

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"SOLO TURK" SCHEME DESIGN

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ARRANGEMENT DRAWING AND PRINTING PARAMETERS​

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SHOPPING LIST

ALL THE COMPONENTS THAT YOU HAVE TO BUY TO FLY THE AIRPLANE

3D PRINTER
MIN PRINTING VOLUME - 200x200X200 (X,Y,Z)
NOZZLE DIAMETER - 0,4 mm


Recommended

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FILAMENT
QUANTITY -  600g (LW-PLA) 500g (PLA+) 40g (TPU)

Recommended

Note: Although the ideal wing loading and thrust-to-weight ratio are achieved by using LW-PLA, as indicated in the instructions, for this particular model it is not critical to print the model entirely using Category D (regular filaments). However, due to the additional weight, a higher level of piloting experience is required.

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ECLIPSON STANDARD 50 EDF PACK
EDF NEEDED- X2
ESC NEEDED-X2
SERVOS NEEDED - x5


Recommended
 

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BATTERIES
VOLTAGE - 14,8V (4S) 
CAPACITY - 1800 to 2500 mAh

Recommended
BAT3
 

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RADIO CONTROL SYSTEM
MIN CHANNELS - 7CH

Recommended

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OTHER PARTS
-PUSH RODS - D1,2mm(min length 600mm) 2units          
-PUSH RODS CONNECTORS  4units
-STEEL ROD D3mm (Length 30mm) 4units
-SERVO LEAD EXTENSION (
min 350mm) 2units
-MOTOR CABLE EXTENSION - AWG 14 (Length 250mm) 6units
-BULLET CONNECTOR (for the above cable extensions) D3.5 mm - 6 pairs

-SCREW - M2X8mm (approx.) 32units
-GLUE - cyanoacrylate
-RUBBER BAND- L50mm (approx.)
-VELCRO


Recommended

Eclipson 3d printed aircraft
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