C10050 Fixed-Wing Drone Motor | Superior Reliability
C10050 fixed wing drone motor
C10050
Universally versatile for both fixed-wing and
vertical take-off and landing (VTOL) drones.
Meant to seamlessly replace 150CC combustion engines.
Efficient Cooling with Great Power
Paired with
30-inch propellers
the motor delivers up to
a maximum thrust of
41kg at 92V
It easily handles rapid transitions
across diverse flight conditions.
Under the same voltage, compared
with motors of the same
specifications from other brands,
the continuous heavy-load operating
time is increased by approximately
25%*.
(Tested per Hobbywing laboratory standards,
with coil temperature reaching 180°C)
HOBBYWING C10030 fixed wing motor
The rotor bracket features a
rectangular exhaust outlet with
a centrifugal fan design,
reducing airflow resistance and
turbulence, enhancing heat
exhaust efficiency.
The motor dissipation efficiency improves by 20%
Ensuring stable and long-term
operation even in high-load flight
conditions.
High Protection,
Superior Reliability
High Protection
The motor is designed with
upper and
lower steel
mesh structure

Effectively prevents
particles ≥1mm
in diameter

Adapts to harsh
flight environments
such as dust and rain
Flexible Choice, Convenient Application
intelligent propeller control component of UAV motor
IPC Sensor Optional
The stator base is compatible with an IPC (Intelligent Propeller Control) component, allowing for flexible selection.
IPC Propeller Positioning
Paired with an IPC ESC, users can customize the propeller stopping position to minimize the risk of colliding with the ground.
rotor bracket with boss clearance design
Boss Clearance Design
The rotor bracket adopts a boss clearance design that effectively prevents interference with the edge structure of propeller roots, accommodating both non-folding and folding propellers.
Drone Motor with propeller
Multi-propeller Compatibility
Supports multiple mounting configurations to quickly adapt and meet demands of diverse applications.
  • IPC Sensor
    Optional
  • IPC Propeller
    Positioning
  • Boss Clearance
    Design
  • Multi-propeller
    Compatibility
The stator base is compatible with an IPC (Intelligent Propeller Control) component,
allowing for flexible selection.
Paired with an IPC ESC, users can customize the propeller stopping position to
minimize the risk of colliding with the ground.
The rotor bracket adopts a boss clearance design that effectively prevents interference with the
edge structure of propeller roots, accommodating both non-folding and folding propellers.
Supports multiple mounting configurations to quickly adapt and meet demands of
diverse applications.
Superior Material and
Design for a Safer Flight
Knurled Shaft for dual redundant security
Knurled Shaft
Knurled shaft-to-bracket interface with side set screw locking for dual redundant security.
Anti-Loosening Design
Multi-Layer Securing Mechanism
Multi-layer securing mechanism at the rotor shaft end, utilizing copper washer, circlip, and screw fastening for enhanced stability and reliability.
Triple-Bearing Architecture
Triple-Bearing System
The triple-bearing system with precision dynamic balancing, enhancing impact resistance and durability for worry-free flight operations.
Silicone Rubber Cable Sleeves
Silicon Steel and Enameled Wires
It is designed with industry-leading 0.2mm low-loss silicon steel cores and high-grade 240°C temperature-resistant enameled wires.
Magnet Segment
The high-grade, strong magnetic arc-shaped magnets enhance the magnetic energy density, delivering powerful torque for the motor. This meets large-thrust needs during climbing, while maintaining high efficiency during cruise, improving cruise flight efficiency by 2-4% compared to motors of similar grades.
Silicon Steel and Enameled Wires
Silicone Rubber Cable Sleeves
The motor’s three-phase wire outlet comes with a custom silicone rubber cable sleeve, combining aesthetic appeal with superior insulation.
Brand-New Magnetic Circuit,
Optimized Design

The newly designed magnetic circuit highly matches the driving parameter requirements,

ensuring a more rapid propulsion output response.

Proven Durability Through
1000+ Hour Testing

Rigorous suite of industrial tests (compatibility, waterproof, salt spray, stress,combined env/vibration, long-term
fatigue) ensures the motor maintains peak performance and reliability throughout its extended lifecycle.

C10030 motor Water Ingress Testing
Water Ingress Testing
High Temperature Operation Test
Motor Low Temperature Operation Test
Low Temperature Operation Test
Recommended Combinations
Motor
C10050-90KV
Propeller
30x12
ESC
XRotor Pro H300A 24S BLDC IPC G3
Battery
24S Lipo
Takeoff weight of Single motor
65~70kg
fixed-wing drone
C10050 CAD
Product NameC10050
Specification
  • Model
  • Protection level
  • Motor Size
  • Slot& Pole
  • Dynamic balance
  • Bearing
  • Enamelled wire
  • Motor axle diameter
  • Magnet
  • Props mounting dimensions
  • Isolation test
  • Motor mounting dimensions
  • Rated power input
  • Rated power output
  • Stator process
  • C10050-90KV
  • IPX5
  • Φ110*H108.2 mm
  • 24N28P
  • ≤25 mg
  • Water proof bearing
  • 240 ℃
  • Φ12 mm
  • 140 ℃
  • 6×M5@D29 mm & 6×M5@D30 mm
  • 1000V AC high voltage resistance test
  • 4×M6@D55 mm
  • 2950 W
  • 2450 W
  • High standard silicon steel sheet, rust proof, 180℃ high temperature resistance paint-coat
Specification
  • KV
  • Battery(LiPo)
  • No-load current
  • Maximum current (non-hermetic ambient temperature ≤ 25℃)
  • Rated thrust
  • Max thrust
  • Resistance
  • Wire Size
  • Three-phase wires length
  • Magnetic encoder cable length
  • Weight(with wires)
  • 90 KV
  • LiPo-24S (92V)
  • ≤9.1 A
  • 153 A
  • 14~16 kg (92V@30x12)
  • 41 kg (92V@30x12)
  • 8.32~8.84 mΩ
  • enameled wire direct lead-out
  • 100mm
  • 130mm
  • 2434 g
Recommended application combinations
  • Motor
  • Propeller
  • ESC
  • Battery
  • Takeoff weight of Single motor
  • C10050-90KV
  • 30x12
  • XRotor Pro H300A 24S BLDC IPC G3
  • 24S LiPo
  • 65~70kg
90KV+30x12 (88V) Load Performance Parameters
90KV+30x12 (88V) Motor Propeller Pull Test Data

Voltage(V)

Propeller

Throttle(%)

Thrust(g)

Current(A)

Power Input(W)

Speed(RPM)

Efficiency(g/W)

Torque(N·m)

Power Output(W)

Temperature(℃)

88V (24S LiPo)

30x12

35%

6260

10.2

895.1

2698

7.0

2.12

599.0

/

37% 

6972  

11.6  

1018.1  

2842  

6.8  

2.37  

704.6  

39% 

7729  

13.1  

1151.8  

2988  

6.7  

2.63  

822.6  

42% 

8919  

15.6  

1370.4  

3204  

6.5  

3.04  

1019.8  

45% 

10150  

18.3  

1610.1  

3413  

6.3  

3.47  

1238.4  

48% 

11409  

21.3  

1870.9  

3613  

6.1  

3.90  

1476.9  

51% 

12693  

24.5  

2154.4  

3805  

5.9  

4.36  

1735.7  

54% 

14010  

28.0  

2463.4  

3992  

5.7  

4.83  

2017.1  

57% 

15377  

31.8  

2801.9  

4174  

5.5  

5.32  

2325.0  

60% 

16812  

36.1  

3174.9  

4356  

5.3  

5.84  

2664.6  

63% 

18334  

40.8  

3587.5  

4539  

5.1  

6.40  

3041.5  

66% 

19963  

45.9  

4043.8  

4723  

4.9  

7.00  

3461.0  

69% 

21710  

51.7  

4546.9  

4910  

4.8  

7.64  

3927.0  

72% 

23581  

57.9  

5098.0  

5097  

4.6  

8.32  

4441.4  

75% 

25568  

64.7  

5698.6  

5284  

4.5  

9.05  

5004.3  

78% 

27652  

72.2  

6353.5  

5468  

4.4  

9.81  

5616.6  

81% 

29796  

80.4  

7074.4  

5649  

4.2  

10.62  

6282.7  

84% 

31941  

89.5  

7880.5  

5828  

4.1  

11.49  

7012.8  

87% 

34008  

99.8  

8788.6  

6008  

3.9  

12.43  

7818.4  

90% 

35891  

111.2  

9786.1  

6187  

3.7  

13.42  

8692.4  

100% 

38919  

135.3  

11910.6  

6536  

3.3  

15.44  

10565.0  

*The above data was measured by HOBBYWING Laboratory at room temperature 25°C, at sea level, with varying throttle input, for reference only.
90KV+30x12 (92V) Load Performance Parameters
90KV+30x12 (92V) Motor Propeller Pull Test Data

Voltage(V)

Propeller

Throttle(%)

Thrust(g)

Current(A)

Power Input(W)

Speed(RPM)

Efficiency(g/W)

Torque(N·m)

Power Output(W)

Temperature(℃)

92V (24S LiPo)

30x12

35%

6784

10.9

999.3

2802

6.8

2.30

676.0

86℃

37%

7546 

12.4 

1139.3 

2953 

6.6 

2.57 

796.0 

39%

8389 

14.1 

1294.3 

3111 

6.5 

2.87 

934.0 

42%

9741 

16.8 

1548.5 

3346 

6.3 

3.33 

1167.0 

45%

11137 

19.8 

1825.0 

3569 

6.1 

3.81 

1423.3 

48%

12533 

23.1 

2121.6 

3777 

5.9 

4.29 

1697.0 

51%

13914 

26.5 

2437.1 

3970 

5.7 

4.78 

1985.7 

54%

15285 

30.1 

2772.3 

4153 

5.5 

5.27 

2290.3 

57%

16667 

34.0 

3131.3 

4328 

5.3 

5.77 

2615.1 

60%

18090 

38.3 

3520.4 

4501 

5.1 

6.30 

2967.7 

63%

19591 

42.9 

3948.5 

4676 

5.0 

6.86 

3357.2 

66%

21206 

48.1 

4424.4 

4856 

4.8 

7.46 

3793.8 

69%

22967 

53.9 

4955.4 

5042 

4.6 

8.12 

4286.0 

72%

24894 

60.3 

5546.7 

5234 

4.5 

8.83 

4839.5 

75%

26991 

67.4 

6203.2 

5428 

4.4 

9.60 

5456.6 

78%

29242 

75.4 

6936.2 

5622 

4.2 

10.43 

6140.7 

81%

31605 

84.5 

7774.2 

5815 

4.1 

11.34 

6905.6 

84%

34004 

95.3 

8769.6 

6010 

3.9 

12.37 

7785.4 

87%

36330 

108.5 

9981.0 

6215 

3.6 

13.57 

8830.0 

90%

38430 

124.0 

11406.1 

6433 

3.4 

14.93 

10057.0 

100%

41241 

152.9 

14070.2 

6820 

2.9 

17.41 

12430.4 

* The above data was measured by HOBBYWING Laboratory at room temperature 25°C, at sea level, with varying throttle input. The motor housing temperature is measured after running for 10 minutes at 90% throttle, for reference only.
Support

Manuals & Documents

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FAQ

C10050
C10050 fixed wing drone motor
C10050
Universally versatile for both fixed-wing and
vertical take-off and landing (VTOL) drones.
Meant to seamlessly replace 150CC combustion engines.
Efficient Cooling with Great Power
Paired with
30-inch propellers
the motor delivers up to
a maximum thrust of
41kg at 92V
It easily handles rapid transitions
across diverse flight conditions.
Under the same voltage, compared
with motors of the same
specifications from other brands,
the continuous heavy-load operating
time is increased by approximately
25%*.
(Tested per Hobbywing laboratory standards,
with coil temperature reaching 180°C)
HOBBYWING C10030 fixed wing motor
The rotor bracket features a
rectangular exhaust outlet with
a centrifugal fan design,
reducing airflow resistance and
turbulence, enhancing heat
exhaust efficiency.
The motor dissipation efficiency improves by 20%
Ensuring stable and long-term
operation even in high-load flight
conditions.
High Protection,
Superior Reliability
High Protection
The motor is designed with
upper and
lower steel
mesh structure

Effectively prevents
particles ≥1mm
in diameter

Adapts to harsh
flight environments
such as dust and rain
Flexible Choice, Convenient Application
intelligent propeller control component of UAV motor
IPC Sensor Optional
The stator base is compatible with an IPC (Intelligent Propeller Control) component, allowing for flexible selection.
IPC Propeller Positioning
Paired with an IPC ESC, users can customize the propeller stopping position to minimize the risk of colliding with the ground.
rotor bracket with boss clearance design
Boss Clearance Design
The rotor bracket adopts a boss clearance design that effectively prevents interference with the edge structure of propeller roots, accommodating both non-folding and folding propellers.
Drone Motor with propeller
Multi-propeller Compatibility
Supports multiple mounting configurations to quickly adapt and meet demands of diverse applications.
  • IPC Sensor
    Optional
  • IPC Propeller
    Positioning
  • Boss Clearance
    Design
  • Multi-propeller
    Compatibility
The stator base is compatible with an IPC (Intelligent Propeller Control) component,
allowing for flexible selection.
Paired with an IPC ESC, users can customize the propeller stopping position to
minimize the risk of colliding with the ground.
The rotor bracket adopts a boss clearance design that effectively prevents interference with the
edge structure of propeller roots, accommodating both non-folding and folding propellers.
Supports multiple mounting configurations to quickly adapt and meet demands of
diverse applications.
Superior Material and
Design for a Safer Flight
Knurled Shaft for dual redundant security
Knurled Shaft
Knurled shaft-to-bracket interface with side set screw locking for dual redundant security.
Anti-Loosening Design
Multi-Layer Securing Mechanism
Multi-layer securing mechanism at the rotor shaft end, utilizing copper washer, circlip, and screw fastening for enhanced stability and reliability.
Triple-Bearing Architecture
Triple-Bearing System
The triple-bearing system with precision dynamic balancing, enhancing impact resistance and durability for worry-free flight operations.
Silicone Rubber Cable Sleeves
Silicon Steel and Enameled Wires
It is designed with industry-leading 0.2mm low-loss silicon steel cores and high-grade 240°C temperature-resistant enameled wires.
Magnet Segment
The high-grade, strong magnetic arc-shaped magnets enhance the magnetic energy density, delivering powerful torque for the motor. This meets large-thrust needs during climbing, while maintaining high efficiency during cruise, improving cruise flight efficiency by 2-4% compared to motors of similar grades.
Silicon Steel and Enameled Wires
Silicone Rubber Cable Sleeves
The motor’s three-phase wire outlet comes with a custom silicone rubber cable sleeve, combining aesthetic appeal with superior insulation.
Brand-New Magnetic Circuit,
Optimized Design

The newly designed magnetic circuit highly matches the driving parameter requirements,

ensuring a more rapid propulsion output response.

Proven Durability Through
1000+ Hour Testing

Rigorous suite of industrial tests (compatibility, waterproof, salt spray, stress,combined env/vibration, long-term
fatigue) ensures the motor maintains peak performance and reliability throughout its extended lifecycle.

C10030 motor Water Ingress Testing
Water Ingress Testing
High Temperature Operation Test
Motor Low Temperature Operation Test
Low Temperature Operation Test
Recommended Combinations
Motor
C10050-90KV
Propeller
30x12
ESC
XRotor Pro H300A 24S BLDC IPC G3
Battery
24S Lipo
Takeoff weight of Single motor
65~70kg
fixed-wing drone
C10050 CAD
Product NameC10050
Specification
  • Model
  • Protection level
  • Motor Size
  • Slot& Pole
  • Dynamic balance
  • Bearing
  • Enamelled wire
  • Motor axle diameter
  • Magnet
  • Props mounting dimensions
  • Isolation test
  • Motor mounting dimensions
  • Rated power input
  • Rated power output
  • Stator process
  • C10050-90KV
  • IPX5
  • Φ110*H108.2 mm
  • 24N28P
  • ≤25 mg
  • Water proof bearing
  • 240 ℃
  • Φ12 mm
  • 140 ℃
  • 6×M5@D29 mm & 6×M5@D30 mm
  • 1000V AC high voltage resistance test
  • 4×M6@D55 mm
  • 2950 W
  • 2450 W
  • High standard silicon steel sheet, rust proof, 180℃ high temperature resistance paint-coat
Specification
  • KV
  • Battery(LiPo)
  • No-load current
  • Maximum current (non-hermetic ambient temperature ≤ 25℃)
  • Rated thrust
  • Max thrust
  • Resistance
  • Wire Size
  • Three-phase wires length
  • Magnetic encoder cable length
  • Weight(with wires)
  • 90 KV
  • LiPo-24S (92V)
  • ≤9.1 A
  • 153 A
  • 14~16 kg (92V@30x12)
  • 41 kg (92V@30x12)
  • 8.32~8.84 mΩ
  • enameled wire direct lead-out
  • 100mm
  • 130mm
  • 2434 g
Recommended application combinations
  • Motor
  • Propeller
  • ESC
  • Battery
  • Takeoff weight of Single motor
  • C10050-90KV
  • 30x12
  • XRotor Pro H300A 24S BLDC IPC G3
  • 24S LiPo
  • 65~70kg
90KV+30x12 (88V) Load Performance Parameters
90KV+30x12 (88V) Motor Propeller Pull Test Data

Voltage(V)

Propeller

Throttle(%)

Thrust(g)

Current(A)

Power Input(W)

Speed(RPM)

Efficiency(g/W)

Torque(N·m)

Power Output(W)

Temperature(℃)

88V (24S LiPo)

30x12

35%

6260

10.2

895.1

2698

7.0

2.12

599.0

/

37% 

6972  

11.6  

1018.1  

2842  

6.8  

2.37  

704.6  

39% 

7729  

13.1  

1151.8  

2988  

6.7  

2.63  

822.6  

42% 

8919  

15.6  

1370.4  

3204  

6.5  

3.04  

1019.8  

45% 

10150  

18.3  

1610.1  

3413  

6.3  

3.47  

1238.4  

48% 

11409  

21.3  

1870.9  

3613  

6.1  

3.90  

1476.9  

51% 

12693  

24.5  

2154.4  

3805  

5.9  

4.36  

1735.7  

54% 

14010  

28.0  

2463.4  

3992  

5.7  

4.83  

2017.1  

57% 

15377  

31.8  

2801.9  

4174  

5.5  

5.32  

2325.0  

60% 

16812  

36.1  

3174.9  

4356  

5.3  

5.84  

2664.6  

63% 

18334  

40.8  

3587.5  

4539  

5.1  

6.40  

3041.5  

66% 

19963  

45.9  

4043.8  

4723  

4.9  

7.00  

3461.0  

69% 

21710  

51.7  

4546.9  

4910  

4.8  

7.64  

3927.0  

72% 

23581  

57.9  

5098.0  

5097  

4.6  

8.32  

4441.4  

75% 

25568  

64.7  

5698.6  

5284  

4.5  

9.05  

5004.3  

78% 

27652  

72.2  

6353.5  

5468  

4.4  

9.81  

5616.6  

81% 

29796  

80.4  

7074.4  

5649  

4.2  

10.62  

6282.7  

84% 

31941  

89.5  

7880.5  

5828  

4.1  

11.49  

7012.8  

87% 

34008  

99.8  

8788.6  

6008  

3.9  

12.43  

7818.4  

90% 

35891  

111.2  

9786.1  

6187  

3.7  

13.42  

8692.4  

100% 

38919  

135.3  

11910.6  

6536  

3.3  

15.44  

10565.0  

*The above data was measured by HOBBYWING Laboratory at room temperature 25°C, at sea level, with varying throttle input, for reference only.
90KV+30x12 (92V) Load Performance Parameters
90KV+30x12 (92V) Motor Propeller Pull Test Data

Voltage(V)

Propeller

Throttle(%)

Thrust(g)

Current(A)

Power Input(W)

Speed(RPM)

Efficiency(g/W)

Torque(N·m)

Power Output(W)

Temperature(℃)

92V (24S LiPo)

30x12

35%

6784

10.9

999.3

2802

6.8

2.30

676.0

86℃

37%

7546 

12.4 

1139.3 

2953 

6.6 

2.57 

796.0 

39%

8389 

14.1 

1294.3 

3111 

6.5 

2.87 

934.0 

42%

9741 

16.8 

1548.5 

3346 

6.3 

3.33 

1167.0 

45%

11137 

19.8 

1825.0 

3569 

6.1 

3.81 

1423.3 

48%

12533 

23.1 

2121.6 

3777 

5.9 

4.29 

1697.0 

51%

13914 

26.5 

2437.1 

3970 

5.7 

4.78 

1985.7 

54%

15285 

30.1 

2772.3 

4153 

5.5 

5.27 

2290.3 

57%

16667 

34.0 

3131.3 

4328 

5.3 

5.77 

2615.1 

60%

18090 

38.3 

3520.4 

4501 

5.1 

6.30 

2967.7 

63%

19591 

42.9 

3948.5 

4676 

5.0 

6.86 

3357.2 

66%

21206 

48.1 

4424.4 

4856 

4.8 

7.46 

3793.8 

69%

22967 

53.9 

4955.4 

5042 

4.6 

8.12 

4286.0 

72%

24894 

60.3 

5546.7 

5234 

4.5 

8.83 

4839.5 

75%

26991 

67.4 

6203.2 

5428 

4.4 

9.60 

5456.6 

78%

29242 

75.4 

6936.2 

5622 

4.2 

10.43 

6140.7 

81%

31605 

84.5 

7774.2 

5815 

4.1 

11.34 

6905.6 

84%

34004 

95.3 

8769.6 

6010 

3.9 

12.37 

7785.4 

87%

36330 

108.5 

9981.0 

6215 

3.6 

13.57 

8830.0 

90%

38430 

124.0 

11406.1 

6433 

3.4 

14.93 

10057.0 

100%

41241 

152.9 

14070.2 

6820 

2.9 

17.41 

12430.4 

* The above data was measured by HOBBYWING Laboratory at room temperature 25°C, at sea level, with varying throttle input. The motor housing temperature is measured after running for 10 minutes at 90% throttle, for reference only.
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