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SGMGV-05A3A6E Rotary servo motor Design sequence: standard YASKAWA SGMGV-05A3A6E

Brand: Yaskawa
Name: Rotary servo motor
Model: SGMGV-05A3A6E
Sigma -V series servo motor SGMGV.
Rated output: 450W (0.45KW).
Power supply voltage: AC200V.
Serial encoder: 20 bit absolute value type (standard).
Design sequence: standard.
Shaft end: straight shaft with keyway, with screw (optional).
Optional: with oil seal, with the brake (DC24V).
A variety of mechanical feed shaft drive (high speed feed).
Variety is complete (300W ~ 15kW, with hold brake).
Equipped with a high resolution serial encoder (20 bit).
Standard using IP67.
Use example:
Machine tool。
Transport machinery.
Handling machinery。
Food processing machinery.
Rating 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: F.
Insulation withstand voltage: AC1500V 1 minutes (200V), AC1800V 1 minutes (400V).
Protection mode: fully enclosed self cooling type IP67 (except shaft through part).
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

Equipped with DeviceNet communication function type servo unit (external power supply drive type)
Maximum applicable motor capacity: 0.1kw.
Power supply voltage: single phase AC100V.
Interface: instruction selection and installation (linear servo motor).
Matching (hardware): paint.
Matching (software): standard YASKAWA SGMGV-05A3A6E.
Matching (parameter): standard.
Optional modules: DeviceNet module (external power driver) SGMGV-05A3A6E
Communication specifications for DeviceNet based on open field network.
The combination of the DeviceNet controller and the V can be used to implement motion control in a simple way.
Can make use of the city''s rich DeviceNet support software.
Can use the upper controller to manage the servo information YASKAWA SGMGV-05A3A6E.
Through the network from the host controller to monitor the running status of the servo drive, alarm information.
Using the upper controller to manage the servo information, which can improve the maintenance (shorten the debugging time, improve the efficiency of maintenance operations).
Save wiring, reduce the cost and improve the reliability.
Because the upper controller and the servo unit are connected through the communication network, the connection is greatly saved YASKAWA SGMGV-05A3A6E.
Built in rich positioning function.
Can be from the upper controller (PLC or computer) to carry out a variety of simple positioning action.
Equipped with simple positioning, continuous rotation, and return to the origin of continuous rotary motion positioning, running and other rich positioning function YASKAWA Rotary servo motor YASKAWA Rotary servo motor. Sigma -v series servo unit SGDV.
Maximum applicable motor capacity: 0.75kw.
Power supply voltage: single phase AC200V.
Design sequence: A type.
Interface: MECHATROLINK- III communication command type (linear servo motor).
Matching (hardware): paint.
Realize real time communication
With the maximum transmission speed of 100Mbps and the set of communication cycle 125S ~ 4ms, to achieve a more than 62 stations of the high speed control YASKAWA Rotary servo motor.
Through the high speed of communication, can send and receive all kinds of control information in real time.
Contribute to cost savings
A maximum of 62 stations can be connected to the communication line, can significantly reduce wiring costs and time.
The command connector of the upper controller only needs 1,
Pullse generator for D/A converter or position instruction without speed / torque command SGMGV-05A3A6E.
High precision motion control is realized.
In addition to torque, position and speed control, but also to achieve high precision synchronizzation phase control YASKAWA SGMGV-05A3A6E.
Because the control mode can be switched on line, the complicated mechanical action can be realized more effectively and smoothly.


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