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Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor

    Buy cheap Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor from wholesalers
     
    Buy cheap Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor from wholesalers
    • Buy cheap Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor from wholesalers
    • Buy cheap Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor from wholesalers

    Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor

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    Brand Name : SECORE
    Model Number : 42ZYT-SC4270
    Certification : RoHS
    Price : Negotiated The Price
    Payment Terms : T/T, D/A
    Supply Ability : 100000pcs per month
    Delivery Time : 9-12 working days
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    Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor

    Waterproof Brush Motor Reliable Performance In Harsh Environments IP68 Motor

    Main specification cases:

    1. Rated Voltage: DC 24V or custom made
    2. No load speed: 3000~5000RPM or custom made
    3. Waterproof Brushed Motor SC4270 Diameter: 42mm
    4. Waterproof Brushed Motor Length: 70mm
    5. Weight: 522g Approx
    6. Customized shaft, flange or performance etc.
    Motor Model42ZYT-4270-243000Unit
    Nominal voltage24V
    No load speed ±12%5000rpm
    No load current250mA
    Rated Speed ±12%4000rpm
    Rated Current1250mA
    Stall Torque270mN.m

    Motor dimensions

    How to calculate the torque of the motor?


    The torque produced by the motor can be calculated using the following formula:

    Torque (Nm) = power (W) / angular velocity (rad/s)

    Where:

    Power is the electrical power input to the motor, measured in watts (W)
    Angular velocity is the rotational speed of the motor in radians per second (rad/s)
    If the speed is given in revolutions per minute (RPM), it needs to be multiplied by 2π/60 to convert it to radians per second (rad/s).

    So the formula can be expressed as:

    Torque (Nm) = (Power (W) / (2π x RPM / 60))

    Note that this formula assumes the motor is running at 100% efficiency. In reality, the motor may be less than 100% efficient, so the actual torque output may be slightly lower than calculated. In addition, the load on the motor will also affect the torque output, so it is important to consider specific application requirements when selecting a motor.

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