Pair-trawling teaching experiment platform for small-power permanent magnet motor
A permanent magnet motor and experimental platform technology, which is applied in the field of teaching and research equipment, can solve the problems of difficult for students to study motors, dangers, troubles in use, etc., and achieves the effect of facilitating research and study, ensuring safe realization and high safety factor
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Embodiment 1
[0013] see figure 1 and figure 2 , This small-power permanent magnet motor drag teaching experiment platform includes motor control core board (1), generator control core board (2), motor inverter power board (3), generator inverter power board (4 ), motor (5), generator (6), rectifier (7) and circuit breaker (8). It is characterized in that each component (1, 2, 3, 4, 5, 6, 7, 8) of the experiment platform is fixed inside the experiment box.
[0014] The various components are connected by wires or pins as follows:
[0015] The motor control core board (1) is connected to the motor inverter power board (3) through pins, and the motor inverter power board (3) is connected to the motor (5); the motor control core board (1) is connected to the motor inverter The power boards (3) are powered by the rectification device (7);
[0016] The generator control core board (2) is connected to the generator inverter power board (4) through pins, and the motor inverter power board (4)...
Embodiment 2
[0020] This embodiment is basically the same as Embodiment 1, and the special features are as follows:
[0021] The teaching and experiment platform is small in size, with a total weight of no more than 10 kg, and has the characteristics of portability. The power supply voltage of the inverter power boards (3, 4) and the control core boards (1, 2) does not exceed 36V, and has safety features. The permanent magnet synchronous motor PMSM is two permanent magnet synchronous low-power motors, each of which has a power of no more than 100W, has a photoelectric encoder and a Hall position sensor, and can output optical encoder signals and Hall signals.
Embodiment 3
[0023] This embodiment is basically the same as Embodiment 1, combining figure 1 The details are as follows:
[0024] exist figure 1 Among them, the control core board (1, 2) and the inverter power board (3, 4) are pluggable, and the inverter power board can be externally connected to a permanent magnet synchronous motor PMSM, a brushless DC motor BLDC, and a resistive inductive load. In addition, the inverter power board adopts the intelligent power module IPM, including six IGBTs, six anti-parallel diodes, protection, drive, alarm circuits, etc. In addition, the inverter power board also contains an incremental photoelectric encoder interface, Three-way Hall interface, with 2*20P interface, connected to the control core board. The inverter power board can withstand a maximum DC voltage of 50V and a maximum instantaneous current of 5A. In addition, there are hardware protections, which are divided into four aspects: overcurrent (instantaneous current exceeds 5A, automatic ...
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