SGMDH12A2AYR13 AC 2000RPM 1150W 200V 7.3AMP 5.49NM
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SGMDH-12A2A-YR14
SGMDH12A2AYR14 SERVO MOTOR
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SGMDH-12A2A-YR15
SGMDH12A2AYR15 SERVO MOTOR
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SGMDH-12A2A-YR21
SGMDH12A2AYR21 SERVO MOTOR
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SGMDH-12A2A-YRA1
SGMDH12A2AYRA1 SERVO MOTOR
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SGMDH-13A2A-YR23
SGMDH13A2AYR23 SERVO MOTOR
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SGMDH-20A2A21
SGMDH20A2A21 SERVO MOTOR
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SGMDH-22A2
SGMDH22A2 SERVO MOTOR
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SGMDH-22A2A-YR11
SGMDH22A2AYR11 SIGMA II 2.2KW L/U AXIS SK45X
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SGMDH-22A2A-YR12
SGMDH22A2AYR12 SERVO MOTOR
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SGMDH-22A2A-YR13
SGMDH22A2AYR13 SERVO MOTOR
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SGMDH-22A2A-YR13YA
SGMDH22A2AYR13YA SERVO MOTOR
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SGMDH-22A2A-YR14
SGMDH22A2AYR14 SERVO MOTOR
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SGMDH-22A2A-YR32
SGMDH22A2AYR32 SERVO MOTOR
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SGMDH-22ACA61
SGMDH22ACA61 SERVO MOTOR
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SGMDH-30A2A-YR31
SGMDH30A2AYR31 SERVO MOTOR
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SGMDH-30A2A-YR32
SGMDH30A2AYR32 SERVO MOTOR
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SGMDH-32A2
SGMDH32A2 SERVO MOTOR
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SGMDH-32A2A
SGMDH32A2A SERVO MOTOR
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SGMDH-32A2A-YA14
SGMDH32A2AYA14 SERVO MOTOR
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SGMDH-32A2A-YR11
SGMDH32A2AYR11 SERVO MOTOR
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SGMDH-32A2A-YR12
SGMDH32A2AYR12 SERVO MOTOR
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SGMDH-32A2A-YR13
SGMDH32A2AYR13 AC 3.2KW SIGMA 2 S-AXIS
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SGMDH-32A2A-YR14
SGMDH32A2AYR14 SERVO MOTOR
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SGMDH-32A2A-YR51
SGMDH32A2AYR51 SERVO MOTOR
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SGMDH-32A2A-YRA1
SGMDH32A2AYRA1 SERVO MOTOR
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SGMDH-32ACA-MK11
SGMDH32ACAMK11 SERVO MOTOR
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SGMDH-32P5A
SGMDH32P5A SERVO MOTOR
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SGMDH-40A2
SGMDH40A2 SERVO MOTOR
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SGMDH-40A2A
SGMDH40A2A SERVO MOTOR
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SGMDH-40ACA21
SGMDH40ACA21 SERVO MOTOR
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SGMDH-44A2A-YR14
SGMDH44A2AYR14 SERVO MOTOR
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SGMDH-44A2A-YR15
SGMDH44A2AYR15 SERVO MOTOR
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SGMDH-45A2A6C
SGMDH45A2A6C SERVO MOTOR
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SGMDH-45A2B61
SGMDH45A2B61 SERVO MOTOR
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SGMDH-45A2BYR
SGMDH45A2BYR SERVO MOTOR
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SGMDH-45A2B-YR13
SGMDH45A2BYR13 SERVO MOTOR
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SGMDH-45A2BYR14
SGMDH45A2BYR14 SERVO MOTOR
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SGMDH-45A2B-YR14
SGMDH45A2BYR14 SERVO MOTOR
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SGMDH-45A2BYR15
SGMDH45A2BYR15 SERVO MOTOR
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SGMDH-45A2B-YR15
SGMDH45A2BYR15 SERVO MOTOR
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SGMDH-6A2A-YR13
SGMDH6A2AYR13 SERVO MOTOR
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SGMDH-6A2A-YR25
SGMDH6A2AYR25 SERVO MOTOR
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SGMDH-A2
SGMDHA2 SERVO MOTOR
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SGMDH-A2A
SGMDHA2A SERVO MOTOR
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More compact than other motors with similar ratings, for a better fit in tight spaces Completely compatible with Sigma-7 servos
Neodymium iron boron permanent magnets with a high flux density reduce rotor size Advanced magnetic circuitry and optimum winding geometry deliver very low cogging torque
Safety rated at SIL 3 (IEC 61508)
IP67 rated for resistance to dust, water washdown
Functions in temperatures above 60oC, altitudes above 2000 ft.
Peak acceleration torque up to 300% of rated torque
Peak torque can be maintained for up to three seconds
Rated speed of 3,000 rpm, max speed of 6,000 rpm
Runs 20% cooler than previous generation products
Holding Brake and Shaft Seal option available
This is where the gear system inside a servomechanism comes into the picture. The gear mechanism will take high input speed of the motor (fast) and at the output, we will get an output speed which is slower than original input speed but more practical and widely applicable. Say at initial position of servo motor shaft, the position of the potentiometer knob is such that there is no electrical signal generated at the output port of the potentiometer. This output port of the potentiometer is connected with one of the input terminals of the error detector amplifier. Now an electrical signal is given to another input terminal of the error detector amplifier. Now difference between these two signals, one comes from potentiometer and another comes from external source, will be amplified in the error detector amplifier and feeds the DC motor.
This amplified error signal acts as the input power of the DC motor and the motor starts rotating in desired direction. As the motor shaft progresses the potentiometer knob also rotates as it is coupled with motor shaft with help of gear arrangement. As the position of the potentiometer knob changes there will be an electrical signal produced at the potentiometer port. As the angular position of the potentiometer knob progresses the output or feedback signal increases. After desired angular position of motor shaft the potentiometer knob is reaches at such position the electrical signal generated in the potentiometer becomes same as of external electrical signal given to amplifier. At this condition, there will be no output signal from the amplifier to the motor input as there is no difference between external applied signal and the signal generated at potentiometer. As the input signal to the motor is nil at that position, the motor stops rotating. This is how a simple conceptual servo motor works.
There is no need to worry about damage to your products during transport. We know how important it is to deliver a product safely. Thanks to our long-term cooperation with UPS, we have developed innovative ways of securing devices for transport.
We use three types of packaging for sending devices:
WOODEN CRATE DESIGNED FOR SERVO MOTORS FOR MAXIMUM SAFETY. BY SECURELY FIXING OUR PRODUCTS, WE ENSURE THAT THEY REACH OUR CUSTOMERS IN PERFECT CONDITION.
INSTAPAK - SPECIALLY SELECTED POLYURETHANE FILLER ADAPTS TO THE SHAPE OF THE DEVICE FOR MAXIMUM PROTECTION
DEDICATED PALLET DEVICES WITH NON-STANDARD DIMENIONS OR WEIGHT, ARE TRANSPORTED ON DEDICATED PALLETS, ALLOWING FOR THE SAFE SHIPPING OF LARGE EQUIPMENT.