HRS-365SA
Classification:
Brushed DC motor series
Key words:
DC motor
A DC motor is a motor that converts DC electrical energy into mechanical energy. Because of its good speed performance, it is widely used in electric drive. According to the excitation mode, DC motors are divided into three categories: permanent magnet, other excitation and self-excitation, in which self-excitation is divided into parallel excitation, series excitation and compound excitation.
When the DC power supply supplies power to the armature winding through the brush, the N-pole lower conductor on the armature surface can flow current in the same direction, and the conductor will be subjected to counterclockwise torque according to the left-hand code. The S-pole lower part of the armature surface also flows current in the same direction, and the conductor will also be subjected to counterclockwise torque according to the left-hand code. In this way, the entire armature winding, that is, the rotor, will rotate counterclockwise, and the input DC electrical energy will be converted into mechanical energy output on the rotor shaft. Composed of stator and rotor, stator: base, main pole, commutating pole, brush device, etc.; rotor (armature): armature core, armature winding, commutator, rotating shaft and fan, etc.
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Product Description
A DC motor is a motor that converts DC electrical energy into mechanical energy. Because of its good speed performance, it is widely used in electric drive. According to the excitation mode, DC motors are divided into three categories: permanent magnet, other excitation and self-excitation, in which self-excitation is divided into parallel excitation, series excitation and compound excitation.
When the DC power supply supplies power to the armature winding through the brush, the N-pole lower conductor on the armature surface can flow current in the same direction, and the conductor will be subjected to counterclockwise torque according to the left-hand code. The S-pole lower part of the armature surface also flows current in the same direction, and the conductor will also be subjected to counterclockwise torque according to the left-hand code. In this way, the entire armature winding, that is, the rotor, will rotate counterclockwise, and the input DC electrical energy will be converted into mechanical energy output on the rotor shaft. Composed of stator and rotor, stator: base, main pole, commutating pole, brush device, etc.; rotor (armature): armature core, armature winding, commutator, rotating shaft and fan, etc.
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