Highest quality standards are achieved through the implementations of latest technology, decades of experience and everlasting moral values , which have helped us to retain our customers as well as multiply them.
A.C. Synchronous Servo Motor
These motors are operated from single phase source with R-C Phase shifting network. The speed of the motor is proportional to applied frequency of the supply. It attains its full synchronous speed within 5 to 25 ms. We manufacture various models of motors with torque capacities of 2.5, 3, 5, 7,10, 20, 30, 40, 60 kg.cm. We also make as per your requirements.
Our range is manufactured by using high grade copper, stampings, milmex paper, varnish, inner, rods and shafts
Features:
Permanent Magnet AC Motors - No winding on rotor.
Extremely rapid starting, stopping and reversing characteristics.
Basic constant synchronous speed of 60 rpm at 50 Hz.
Torque from 2 kg.cm to 60 kg.cm.
Gearing possible to achieve reduced speeds Built in overload protection -motor stops if overloaded but does not burn.
Starting and operating currents are identical.
Magnetically rotor can be locked by D.C. applying.
Power coated cast aluminium body with steel shaft.
Applications:
These motors are finding applications in servo control applications where precise positioning is required. The Instantaneous starting stopping and reversing characteristics of the motors make them very aptly suited for following applications among many:
Servo Voltage Stabilizers.
Diamond machines.
D.C Drives.
Precise positioning.
Valve Controls.
Automated Welding Equipments.
Medical Equipments.
Conveyor Systems.
Actuators.
Fluid Metering.
Textile edge guide control.
Paper Feed.
Characteristics:
A.C. Operation : Motor can be directly connected to 240 V; 50Hz, supply along with "APPLE" supplied R-C network in series with one of the stator winding. Change of this R-C network from one winding to other results reversal of motor direction. Single pole three position switch can be used for Forward, Reverse and Off control as shown in the following diagram. Metal varistor oxide may be used to minimize the switch contact arcing.
Starting : Motor start within 1 1/2 Cycles of its applied frequency & will reach 60 RPM within 5 to 30 ms at 50 Hz. Since motor has no significant current rise on starting, this motor is ideal to an application which requires six or more starts per minute.
Stalling : Motor will not be overheated if stalled because starting, full load and no load currents are same. However prolonged operation against a solid stop will eventually produce bearing failure due to the resultant shaft vibrations.
Inertia Limitations : Since the motors are having extremely rapid starting, there is a limit to the inertia load at which the motor will start from rest. Addition of resilient coupling with app. 5 degree of rotational freedom or gearing with backlash between motor & load can increase the permissible inertia load handing capability.
Phase Shift Network : The values of R-C network have considerable effect on motor performance. They have been chosen by "APPLE"' in such a manner that no reverse torque is produced when voltage is applied.
R-C values should not be varied more than 5% so as to enhance smoother starting, give quieter operation, maximize torque & improve efficiency.
Other values may be recommended by "APPLE" for the continuous duty specific OEM application.
Stopping & Holding (Braking) : Due to magnetic rotor, these motors decelerate faster than conventional motors and stop within 5 degree after turnoff with no external inertia. Application of D.C. supply to one or both motor windings after removal of A.C. supply results deceleration time 1/10th to 1/20th those available with conventional motor & the motor shaft is electrically locked after the stop. A typical circuit for applying, stopping & or holding current is shown in the following diagram.
Back Driving : These motors act as generators when back driven. Rotating in access of 1400 RPM is not recommended because high voltages can be generated. At 1400 RPM or below suitable precautions for protection of personnel/phase shift capacitor & any other connected circuitry may be necessary when back driving.
60 Hz Operation : These motors may be operated on 60 Hz, but may require a different R-C network, the factory must be consulted. Torque rating should be similar to those shown for 50Hz & speed is 72 RPM @ 60 Hz.
microServo Voltage Controller
This product is designed with innovative software algorithms residing on latest technology PIC microcontroller chips. The design is conceived so as to reduce production overheads like wiring and testing when it is put on the servo voltage stabilizer. Integrated voltage stabilizer controller greatly reduces labour costs and increases production rate of the voltage stabilizers.
Features
Advanced PIC Microcontroller based, indigenous design.
Panel mounted Servo Voltage Controller.
Inbuilt driver for AC synchronous servo motor.
Bright 3 digit, 7 Segment display.
Measures & displays 4 parameters including:
Output Voltage, Input Voltage, Output Current, Frequency
Auto trip for Under voltage, Over voltage and Over load with time delay.
Audio/Visual alarm.
Manual mode for field testing.
Fully programmable (on-site/off-site) with 2-level password protection.
User programmable parameters:
Under Voltage, Over Voltage, Over Load, Time delay, Output voltage, Sensitivity, CT Ratio
Advantages Over Conventional PCB Controllers:
Single centralized controller box and hence control and delay PCBs not required.
Control transformers also included within the controller box.
Software based controller takes care of various fault tripping and thereby avoids external relay logic for various tripping conditions.
3 digit segment displays simultaneously input, output voltages, input current and frequency. This completely avoids meters and selector switches. More importantly the interconnections of these components are also avoided saving labor costs and increasing reliability.
Electronic overload tripping feature included in the controller avoids extra hardware otherwise required.
Single contactor required for under voltage, over voltage and over load trips substantially reduced and simplified control wiring reduces the labor cost significantly.
TRIACS used for motor switching are optically isolated from control circuit to protect control PCB and wiring.
iOTS - Intelligent OTS control panel for Motorized High Voltage BDV Insulation Oil Test Set
This product is designed with innovative software algorithms residing on latest technology PIC microcontroller chips. The design is conceived so as to reduce production overheads like wiring and testing when it is put on the Motorized High Voltage Oil Test Set.
Features
Advanced PIC Microcontroller based, indigenous design
Supports different capacities of 60 kV, 80 kV and 100 kV
Panel mounted ergonomic design with easy to operate keys
Full integrated drive for AC Synchronous Servo Motor
Bright 3 digit, 7 Segment LED Display
Indications for AUTO, MANUAL, DOOR, RISE and ZERO
Incorporates automatic tripping mechanism
Provision for safety interlocking for high voltage test chamber
Provision for both AUTO and MANUAL mode
Break down voltage protection at milliamp current
* To embrace new technologies and methods. * To give unsurpassed products and services to the clients. * To constantly look for improvement and changes.