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Vector Technics 4006 SL 400KV Motor 7,099.00 Save:709.00(9%) excl. GST
Description
Kv (Motor Velocity Constant) 400 RPM/V
Kt (Motor Torque Constant) 0.030 Nm/A @ 4800 rpm
Maximum Continuous Current* 10 A (180 s)
Maximum Continuous Power* 250 W (180 s)
Power Denisity 2.72 W/g (Rated), 5.11 W/g (Maximum)
Voltage Range 24 V(6S LiHV)
Io (@24V) 0.7 A
Inductance per phase (Winding Inductance) 0.110 mH ( ?0.03)
Rph (Wind Resistance per phase) 0.23 ? ( ?0.03)
Stator Poles 18S(18S24P)
Magnetic Poles 24P (24P18S)
Bearings Dual, 619/4-2RS (SKF)
Stick Out Shaft Diameter ?4 mm
Motor Diameter ?44.6mm
Motor Length 20mm
Motor Weight 67g
Mount Pattern @ 90 deg 4XM3 ?2.5mm ?25mm
Propeller Blade Size* Max Propller Size – 16inch
Propeller Mount Pattern 6XM3 @ PCD 12 ? 3mm
Overview of Motor Performance

Vector Technics 4006 SL 400KV motor, designed with a Kv (Motor Velocity Constant) of 400 RPM/V, offers reliable and precise performance across various applications. With a Kt (Motor Torque Constant) of 0.030 Nm/A at 4800 rpm, it consistently delivers torque, ensuring dependable operation. Additionally, the motor can handle a maximum continuous current of 10 A for up to 180 seconds, allowing for sustained power delivery. The motor’s maximum continuous power reaches 250 W, making it capable of performing impressively under demanding conditions.

Efficiency and Design

This motor is engineered with a power density of 2.72 W/g at its rated output, offering efficient performance. Furthermore, it can achieve a maximum power density of 5.11 W/g, ensuring compact and powerful operation. The voltage range is set at 24 V (6S LiHV), which is compatible with standard applications. Moreover, the no-load current (Io) is 0.7 A at 24 V, indicating energy efficiency even when not under load.

Additionally, the Vector Technics 4006 SL 400KV motor, designed with a Kv (Motor Velocity Constant) of 400 RPM/V, offers reliable and precise performance across various applications. 4006 SL 400KV motor features a winding inductance of 0.110 mH per phase, contributing to smooth and reliable performance. Its phase resistance (Rph) of 0.23 ? further enhances the motor’s operational efficiency. Designed with 18 stator poles (18S) and 24 magnetic poles (24P), the motor ensures balanced and efficient performance. Additionally, the dual SKF 619/4-2RS bearings enhance durability, providing stable and smooth operation over extended periods.

Structural Specifications

In terms of physical design, the motor has a stick-out shaft diameter of 4 mm, offering compatibility with various setups. It has a motor diameter of 44.6 mm and a length of 20 mm, ensuring a compact form factor. Weighing just 67 g, the motor is lightweight yet powerful, making it suitable for a variety of applications. Furthermore, the mount pattern at 90 degrees includes 4XM3 bolts at a 25 mm diameter, ensuring secure attachment.

The motor supports a maximum propeller size of 16 inches, making it versatile for different configurations. Additionally, the propeller mount pattern includes 6XM3 bolts at a 12 mm pitch circle diameter, ensuring secure propeller installation.

Specifications
Propeller Voltage PWM RPM Thrust (g) Torque (N*m) Current (A) Electrical Power Efficiency Temperature (Celcius)
14*4.8″ CF Fixed
25.2 1300 2318 155 0.04 0.5 12.6 12.2 45.8
25.1 1400 3126 309 0.06 1.1 27.6 11.1 46.9
25.1 1500 4060 564 0.1 2.3 57.7 9.7 48.8
25 1600 4843 800 0.14 3.8 95.0 8.5 50.1
25 1700 5417 1044 0.19 5.6 140.0 7.5 50.9
24.9 1800 6015 1305 0.23 7.7 191.7 6.8 51.8
24.8 1900 6586 1591 0.29 10.4 257.9 6.2 51.2
24.8 1950 6700 1652 0.29 10.9 270.3 6.1 49.9
24.8 2000 6703 1644 0.29 10.9 270.3 6.1 48.5

 

Propeller Voltage PWM RPM Thrust (g) Torque (N*m) Current (A) Electrical Power Efficiency Temperature (Celcius)
16.2*5.3″ CF Foldable
25 1300 2120 240 0.05 0.7 17.5 13.8 50.3
25 1400 2815 457 0.09 1.6 40.0 11.6 51.7
24.9 1500 3613 757 0.14 3.1 77.2 9.9 53.2
24.8 1600 4288 1047 0.19 5 124.0 8.4 54.5
24.7 1700 4812 1327 0.24 7.4 182.8 7.3 54.9
24.6 1800 5311 1565 0.29 10 246.0 6.3 55.1
24.5 1900 5747 1882 0.34 13.2 323.4 5.8 52.8
24.5 1950 5803 1934 0.35 13.9 340.6 5.7 50.8
24.5 2000 5785 1956 0.36 14 343.0 5.7 48.6