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SGMCS-02B3C11 | Yaskawa Direct drive servo motor SGMCS-02B3C11

Yaskawa SGMCS-02B3C11 Manual And Instructions
SGMCS-02B3C11 Setup Rotational MotorUSER'S MANUAL

Yaskawa SGMCS-02B3C11 Product information and technical parameters:
Brand: Yaskawa
Name: Direct drive servo motor
Model: SGMCS-02B3C11
SGMCS small capacity type of direct drive servo motor.
Rated torque: M \/ 2.0N.
Servo motor outside diameter size: 135mm.
Serial encoder: 20 bit absolute value type (absolute value of 1 circles) (standard).
Design sequence: the outer diameter of the servo motor is marked as B, C and D.
Flange specification: face C, reverse load side.
Optional specifications: no matching.
Under the condition of no speed reducer, the load is directly driven.
Can be realized from low speed to high speed of the strong smooth running
(instantaneous maximum torque: 6 ~ 600N \/ m, maximum speed: 250 ~ 500r\/min).
By using 20 bit high resolution encoder, the high precision can be carried out.
The use of hollow structure, convenient wiring and piping.
Use example:
Semiconductor manufacturing equipment.
Liquid crystal circuit board manufacturing equipment.
Various inspection and test equipment.
Electronic part packaging machine.
IC information processor.
IC inspection equipment.
A variety of automated machinery.
Robot。
Small capacity ratings and specifications:
Rated time: continuous.
Vibration level: V15.
Insulation resistance: DC500V, 10M, or above.
Using ambient temperature: 0 ~ 40 degrees C.
Excitation mode: permanent magnet type.
Installation method: flange type.
Heat resistance grade: A.
Insulation withstand voltage: AC1500V 1 minutes.
Protection mode: fully enclosed self cooling type IP42 (except for the rotating part of the output shaft).
The use of environmental humidity: 20 ~ 80% (not dew).
Connection mode: direct connection.
Rotation direction: clockwise direction (CCW) rotation at the load side under the direction of rotation

Servo motor type SGMAH (speed: 3000r\/min).
Power: 0.1kw.
Power supply voltage: single phase AC200V.
Serial encoder: 13 bit relative value.
Design sequence: A.
Shaft end: straight shaft with screw.
Optional parts: with DC24V brake.
Improve mechanical properties.
In order to achieve a higher production efficiency, SGDMAH type to the best control to explore the highest performance of the machine,
Compared with the original models, CPU computing time for its 1\/2, through the expansion of the new control algorithm,
Positioning time is shortened to the original product of 1\/3, to achieve a good response Yaskawa SGMCS-02B3C11 SGMCS-02B3C11
The parameter setting and maintenance time is shortened.
In order to establish a high degree system in a short time, the use of the simplicity of the Yaskawa SGMCS-02B3C11.
Flexible use of online automatic adjustment function,
Automatic adjustment of servo system with mechanical characteristics.
Then use the main loop \/ control circuit power separation and alarm tracking memory function, can be simple to carry out maintenanceServo motor type SGMPH (speed: 3000r\/min).
Power: 0.4kw.
Power supply voltage: single phase AC200V Yaskawa SGMCS-02B3C11.
Serial encoder: 16 bit absolute value.









Large capacity servo unit.
Maximum applicable motor capacity: 22KW.
Power supply voltage: three phase AC200V.
Buckle: analog voltage \/ pulse sequence command type (rotary servo motor).
Design sequence: A.
Optional parts (hardware): ventilation duct installation type.
Improve the performance of large torque transmission machinery!
Vibration suppression function.
When the driving system of the machine is vibrating, the observer is used to reduce the vibration and suppress the vibration of the device.
Friction compensation function.
EEven when the load fluctuation, the gain can be suppressed without changing the position deviation SGMCS-02B3C11.
Therefore, the overshoot can be suppressed to ensure the stability of the device.
Feature tracking control.
Even the lower mechanical properties, but also the characteristics of the mechanical recovery,
Make the mechanical properties of the control action, thereby reducing the time to adjust the time


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