2-1 Draw Stator circuits for different types of single phase induction motor (starting method) and compare their torque speed characteristics.

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2-1 Draw Stator circuits for different types of single phase induction motor (starting
method) and compare their torque speed characteristics.
2-2 An experimental 127V, 0.25-hp, 60 Hz, split phase motor has the following locked-
rotor parameters referred to the respective main and auxiliary windings:
Rmw = 4.642
Raw = 9.12 2
Xmw = 4.90 2
Xaw = 7.982
Determine the amount of capacitance required in series with the auxiliary winding in order
to obtain a 850 phase displacement between the current in the stator main winding and the
current in the auxiliary winding
Transcribed Image Text:2-1 Draw Stator circuits for different types of single phase induction motor (starting method) and compare their torque speed characteristics. 2-2 An experimental 127V, 0.25-hp, 60 Hz, split phase motor has the following locked- rotor parameters referred to the respective main and auxiliary windings: Rmw = 4.642 Raw = 9.12 2 Xmw = 4.90 2 Xaw = 7.982 Determine the amount of capacitance required in series with the auxiliary winding in order to obtain a 850 phase displacement between the current in the stator main winding and the current in the auxiliary winding
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