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A06B-6240-H105  FANUC SERVO AMP MODULE AISV 80 / FOR 30I-B SERIES 1-AXIS

A06B-6240-H105  FANUC SERVO AMP MODULE AISV 80 / FOR 30I-B SERIES 1-AXIS

Manufacturers :FANUC
Model(s)  :A06B-6240-H105
Additional Information :SERVO AMP MODULE AISV 80 / FOR 30I-B SERIES 1-AXIS
Estimated Shipping Size
Dimensions: 263 × 58 × 28mm
Weight:.4.3 kg
Country of Origin: United States of America

 

Categories: , SKU: A06B-6240-H105

Description

Overview


Essential details:A06B-6240-H105  FANUC SERVO AMP MODULE AISV 80 / FOR 30I-B SERIES 1-AXIS

1, the standard serial encoder built into the motor provides high feedback accuracy, α series 64K per revolution, while β series 32K per revolution (α series feedback accuracy is much higher than β series)
2, α series encoder resolution 16 million/revolution, β series encoder resolution 128,000 / revolution.
3. α series servo amplifier with high precision current detection function
4, the torsion of the α series is also much larger than the β series
5. The protection grade α series is higher than β series
6, β series servo amplifier can run on a single power supply; However, the amplifier’s lifetime is shortened by higher input and ripple currents
7, the α series servo system uses an independent feedback discharge regenerative discharge element, his design with a rear-rear mounting heat sink, extending out through a hole in the mounting panel. This design removes most of the heat from the control case.
Beta series servo amplifiers are panel mounted devices. When installing the amplifier, ensure that the adjacent amplifier above, below, between the specified space, so that the amplifier can be convection
8, α series control accuracy is higher than β series, α series is suitable for straight line, contour control (that is, higher precision processing), β series is suitable for point control

A06B-6240-H105

lf you need to inquire or purchase ,please send the product models to my email or call medirectly .

sunny  He

[Email] sales@xiongbagk.cn

[Mobile] 86-18059884797

[WhatsApp] 86-18059884797

[Skype] sales@saulcontrol.com

A06B-6240-H105  FANUC SERVO AMP MODULE AISV 80 / FOR 30I-B SERIES 1-AXIS

Compared with the DC servo motor, AC servo motor has the characteristics of maintenance-free, low loss and small size, which has gradually replaced the DC motor in the modern control field. Ac servo motor is widely used in various control fields. FANUC has gradually used AC motor since the 1980s. From the development and application to the widely used Alpha series motor, it has been updated for three generations, from the simulated AC control unit driven servo motor to the S-series motor, and then developed into the AC Alpha series servo motor in use now. The performance of the servo motor has been improved, and the volume of the motor is smaller. In particular, the Alpha series of Hoi motor is now used, the motor model is more complete, and the use of stronger magnetic materials, servo motor feedback uses high-speed and high-precision serial position encoder, which can be applied to a variety of different lead screws without the need to select the number of lines of the encoder, and the series has standard series, small inertia series, medium inertia series, medium inertia series. Economical AC series and high voltage (380V) HV series motor. Please refer to the following table:
(1) The structure of the AC motor
At present, the AC servo motor used in the control field is generally synchronous motor (brushless DC motor), the motor is mainly composed of three parts, namely: stator, rotor, and detection components, of which the stator is basically the same as the ordinary AC induction motor, mainly the stator stamping, three-phase winding coil, in addition to the front and back end caps and bearings of the impact rotor, etc. The rotor of the servo motor is mainly composed of multi-pole magnetic steel, stator punch and motor shaft, and the detection component is composed of a position encoder installed at the end of the motor. At present, the encoder of the Alpha series motor uses a Shen-line pulse encoder, because the motor’s excitation must be perpendicular to the pole position of the rotor. Therefore, the position feedback of the machine should be able to feedback the magnetic pole position of the motor to the servo system to generate vector control of the excitation of the AC servo motor.