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DYS Motor D2826 1100KV
₹999.00 Original price was: ₹999.00.₹949.00Current price is: ₹949.00. inc. GST
- Item name: D2826 1100KV
- Voltage: 4V~14.8V
- Battery: 2~4s LiPoly
- Max watt: 102
- Max Current: 19A
- Suggested prop: 9045
- Pull: 660g
- Shaft: 3.17mm in Diameter
- Thrust: 1050g (9045 prop/4s)
- Efficiency: <4g/W
- Suggested Propeller: 8×6(2s) 7×4(3s)
- ESC: 30A
- Shaft: M5
- Pull: 660g
- Motor Mount Holes: M3 x 16/19mm
- Dimensions: 26.2 × 27.7mm
- Weight: 51g
DYS Motor D2826 1100KV is a brushless synchronous motor powered by a DC electric source with a 1100kv rating. These Brushless motors powered via an integrated inverter/switching power supply. Thus produces an AC electric signal to drive the motor. A sinusoidal waveform not generated in this motor, but rather a bi-directional current generated, with no restriction on the waveform.
A brushless motor lacks the brushes and the commutator. This motor makes use of a permanent magnet as the external rotor, and the locations of the magnets and windings reversed. So the magnets are fixed on the conventional motor shaft and the copper windings of the armature are fixed and surround the shaft. Moreover, brushless motors can be more powerful overall as it uses three phases of driving coils and a specialized sensor that tracks rotor position makes it suitable for a wide range of applications.
DYS D2826 1100KV brushless motor ideally suitable for sport, scale, and 3D type models. This brushless motor highly recommended to use with 9″ props, 2~4 cell Lipo batteries and thus provides a 1050g of thrust at a modest 19A on the test. This makes making the D2826 brushless motor a great all-rounder. The motor consists of a machined prop adapter covered protected completely, thus allowing it to mounted either way round.
APPLICATIONS
- Drones
- Quadcopters
- Multirotors
- RC Airplanes
- UAV

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- Operating Voltage: 3~12 V DC
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- No Load Current: 40-180mA.
- Rated Speed(After Reduction): 100 RPM
- Rated Torque: 1 Kgcm
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- Elimination of machining operations.
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30AMPS ESC DYS
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- Supported motor speed (Maximum): 210000 RPM (2 poles), 70000 RPM (6 poles), 35000 RPM (12 poles).
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5V Stepper Motor 28BYJ-48 with ULN2003
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- No of phase: 4
- Speed variation ratio: 1/64
- Pull-in torque: 300 gf.cm
- Friction torque: 600-1200 gf.cm
- DC resistance: 50Ω±7% (25°C)
- Insulated resistance: >10MΩ (500V)
- Insulated power: 600VAC/1mA/1s
- Rise in Temperature <40K(120Hz
- Noise <35dB(120Hz,No load,10cm
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A2212 BRUSHLESS DC MOTOR 2200KV
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- Operating voltage: 7.2V to 12V (2 to 3Li-poly or 6to10 NiCad)
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- No-load Current: 10 V: 0.5 A.
- Current Capacity: 12A/60S
- Maximum current:13Amp for 60Sec
- Maximum Watts:150 Watt
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- Shaft Diameter: 3.17 mm
- Prop Adapter is quality tested
- Minimum ESC Specification: 18A (30A Suggested)
- Maximum operating temperature: + 80°C
- Complete speed control because of three phase connection.
- Long life as there are no moving contact
- Thrust @ 3S with 1045 propeller: 1000gms approx.
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- Thrust @ 3S with 0845 propeller: 650gms approx.
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Brushless DC Motor BLDC Motor
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- Higher speed range and lower electric noise generation.
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- High efficiency and high output power to size ratio due to the use of permanent magnet rotor
- High speed of operation even in loaded and unloaded conditions due to the absence of brushes that limits the speed
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- Long life as no inspection and maintenance is required for commutator system
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NEMA 23 10.1 kg-cm
- Operating Voltage : 2.3 Volts
- Step Angle : 1.8°
- Holding Torque : 10.1 kg-cm
- Supply Current (A) : 2.8 Ampere/Phase
- Number of Leads : 4
- Inductance : 2.2 mH/Phase
- Resistance : 0.83 Ohm
- Rotor Inertia : 275 gm-cm2
- Weight (gm) : 650
- Detent Torque (kg-cm) : 0.36
- Frame Size (mm) : 57 x 57
- Inductance Accuracy : ±20%
- Resistance Accuracy : ±10%
- Shaft Diameter (mm) : 6.35
- Shaft Length (mm) : 20.6
- Step Angle Accuracy : ±5%
- Comparably more powerful than NEMA17 motors.
- The input pulse decides the rotation angle of the motor.
- High accuracy of around 3 to 5% a step.
- It provides good starting, stopping, and reversing.
- Control of this motor is less costly because of the exclusion of complex control circuitry.
- The speed is proportional to the frequency of the input pulses.

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