Study of Stepper Motor
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We offer Study of Stepper Motor useful for control labs. This experimental set-up aims at providing an exposure to the basic operation of a stepper motor, its drive and logic, and limitations as far as the internal dynamics is concerned. >>Highlights Stepper motor operation through pulse circuit Stepper motor operation through 8085 mp kit Built-in programs in EPROM Dynamic response study >>Experiments Manual stepping through push button switch. Measurement of step angle. Speed and direction control logic by recording the pulse sequence. Study of resonance effect at various speeds Display and measurement of the dynamic characteristics of the motor in the wobble mode. Calculation of ‘single stepping’ and ‘slew’ regions. Programming the microprocessor kit to implement features like direction, speed, angle of rotation, number of steps or an arbitrary motion Study of the effect of inertial and frictional loading on the dynamic performance >>Features and Specifications Single stepping and free running modes of operation with speed variation and direction reversal - internal TTL circuit. 360° motion Servo-Potentiometer position -pickup for motor dynamics Operation through microprocessor kit – sample control programs provided Stepper motor specification Torque: 2.8 Kg-cm Step angle: 1.8° Power: 12V, 1A/phase Essential accessory – a CRO The experiment is complete in all respect except a CRO.
Study of Stepper Motor
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We offer Study of Stepper Motor useful for control labs. This experimental set-up aims at providing an exposure to the basic operation of a stepper motor, its drive and logic, and limitations as far as the internal dynamics is concerned. Experiments have been designed to demonstrate the effect of external load inertial and frictional, on the motor performance. Provisions are available for free running operation as well as single stepping mode with LED indication for the active phase. The unit may also be operated by a microprocessor kit for which a built-in interfacing and automatic changeover has been provided. It may be seen that this is a complete experiment set and not a microprocessor kit with an ADD-ON card and a motor. Highlights >>Stepper motor operation through pulse circuit >>Stepper motor operation through 8085 mp kit >>Built-in programs in EPROM >>Dynamic response study Experiments >>Manual stepping through push button switch. Measurement of step angle. >>Speed and direction control logic by recording the pulse sequence. >>Study of resonance effect at various speeds >>Display and measurement of the dynamic characteristics of the motor in the wobble mode. >>Calculation of 'single stepping' and 'slew' regions. >>Programming the microprocessor kit to implement features like direction, speed, angle of rotation, number of steps or an arbitrary motion >>Study of the effect of inertial and frictional loading on the dynamic performance Features and Specifications >>Single stepping and free running modes of operation with speed variation and direction reversal - internal TTL circuit. >>360 degree motion Servo-Potentiometer position -pickup for motor dynamics >>Operation through microprocessor kit sample control programs provided >>Stepper motor specification Torque: 2.8 Kg-cm Step angle: 1.8 degree Power: 12V, 1A/phase >>Essential accessory - a CRO The experiment is complete in all respect except - a CRO.
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