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SGM7P-15AFA6C Optional parts: with brake (DC24V) YASKAWA SGM7P-15AFA6C

Brand: Yaskawa
Name: Medium inertia, flat servo motor
Model: SGM7P-15AFA6C
SGM7P type (rated speed: 3000r\/min) of inertia and flat servo motor in non speed reducer.
Rated output: 1.5kw.
Power supply voltage: AC200V.
Serial encoder: 24 bit delta.
Design sequence: IP65.
Shaft end: straight shaft with keyway, with screw.
Optional parts: with brake (DC24V).
Yaskawa servo motor, also known as YASKAWA Yaskawa servo motor,
Origin of Japan, in Shenyang, China, Jiading, Shanghai also has a factory,
Is to make the position of the object, the position, the state and other output controlled,
Automatic control system capable of following an arbitrary change of an input target value (or a given value).
It is divided into AC servo motor and DC servo motor,
In the domestic semiconductor, liquid crystal manufacturing devices, electronic components packaging equipment, machine tools and general machinery has been widely used in.
As a leading enterprise for the first time Yaskawa servo drive, put forward the concept of "mechatronics",
Now has become a universal term

Servo motor SGMSH type.
Rated speed: 3000r\/min.
Power: 5.0kw.
Power supply voltage: three phase AC200V.
Serial encoder: 17 bit relative value.
Design sequence: A YASKAWA SGM7P-15AFA6C.
Shaft end: taper 1\/10, with parallel key.
Optional parts: with oil seal, DC24V brake.
Ultra high power response series: the need for small inertia, high torque.
Online automatic adjustment, automatic measurement of mechanical properties, set the required servo gain SGM7P-15AFA6C
Even if the initial contact, can also be completed in a short time the best set.
Automatic identification of the motor, servo drive automatic identification of servo motor power, specifications, automatic setting motor parameters YASKAWA SGM7P-15AFA6C.
Standard for regenerative resistance connection terminals.
Connecting terminal equipped with external regenerative resistance,
Convenient connection regenerative resistorSigma -V series servo motor SGMJV.
Rated output: 0.05kw (50W).
Power supply voltage: AC200V YASKAWA SGM7P-15AFA6C.
Serial encoder: 13 bit Delta (standard).
Design sequence: standard.
Shaft end: straight shaft with keyway, with screw (optional).
Optional: with hold brake (DC24V).
Medium inertia.
Instantaneous maximum torque (rating 350%).
Equipped with a high resolution serial encoder (13\/20 bit) YASKAWA Medium inertia.
Max speed up to 6000r\/min.
Variety is complete (50 ~ 750W, with hold brake).
Use example:
Semiconductor manufacturing equipment,
Placement machine,
Punch printed cirrcuit board,
Robot,
Handling machinery,
Food processing machinery flat servo motor.
Rating and specifications:
Rated time: continuous YASKAWA Medium inertia.
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: B.
Insulation withstand voltage: AC1500V 1 minutes.
Protection mode: fully enclosed self cooling type IP65 (except shaft through part) YASKAWA Medium inertia.
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 rotationHigh performance, use the best type of servo unit (high performance).
Maximum applicable motor capacity: 0.5kw.
Power supply voltage: three phase AC200V.
Design sequence: A.
Hardware specifications: paint.
Interface: MECHATROLINK-III communication command type (linear servo motor).
Function: support 125 s communication cycle.
High performance sigma shaped -V-EX series.
2 models of high performance servo unit SGM7P-15AFA6C.
EX001 (support M- III high speed communication): the communication cycle is the minimum value of 125 s, which makes the response of the instruction becomes faster, and the track accuracy and processing ability are improved. flat servo motor.
EX002 (no deviation of the specification): greatly improve the command tracking performance, and further improve the accuracy of trajectory control.


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