Description
Product details:
A06B-6096-H106 FANUC servo amplifier module
The manufacturer has discontinued production.
Servo drive
Servo amplifier
Servo amplifier module SVM1-130/SVM 1-130 FSSB interface Alpha
Alpha servo model SVM1-130
283-325 volts direct current
9.1 kw
230 volts AC output
Computer Numerical Control
A06B-6096-H106 FANUC servo amplifier module, AC servo motor is similar to single-phase asynchronous motor in structure, its stator core is placed with two phase windings with a space difference of 90° electrical Angle. One is the excitation winding and the other is the control winding. When the motor is working, the excitation winding is connected to the single-phase AC voltage, and the control winding is connected to the control signal voltage. The two phase voltages are required to be of the same frequency.
Ac servo motor rotor has two forms of structure. One is cage rotor, which is similar to the cage rotor of ordinary three-phase asynchronous motor, but more slender in shape, which reduces the moment of inertia of the rotor and reduces the electromechanical time constant of the motor. The cage-rotor AC servo motor has large volume, small air gap, small excitation current required, high power factor and large mechanical strength, but the fast response performance is a little poor, and the low speed operation is not smooth enough.
A06B-6096-H106 FANUC servo amplifier module, in AC servo motor, in addition to the requirement that the motor cannot “spin”, but also to change the size and phase of the voltage applied to the control winding can change the size and direction of the motor speed.
According to the theory of rotating magnetomotive force, a rotating magnetic field is produced by the joint action of excitation winding and control winding, and the rotation direction of the rotating magnetic field is from the winding with phase advance to the winding with phase lag. By changing the phase of the control voltage in the control winding, the lead-lag relationship of the two-phase winding can be changed, so as to change the rotation direction of the rotating magnetic field, and the speed direction of the AC servo motor will also change. Changing the size and phase of the control voltage can change the flux of the rotating magnetic field, thus changing the electromagnetic torque of the motor, and the speed of the AC servo motor will also change.
The speed control methods of AC motor include amplitude control, phase control and amplitude phase control.
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