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F940GOT-SWD-C Market price | F940GOT-SWD-C Introduction
MITSUBISHI F940GOT-SWD-C
Function: CPU module (internal service power supply).
Input and output points: 80 points.
Power supply capacity (DC5V power): 1100mA.
Power supply capacity (DC24V service power supply): 600mA.
Input / output mode: DC input (drain / source) / transistor (source).
Input points: 40 points.
Output points: 40 points.
The new expansion module is more convenient!
Pioneer products with advanced built-in functions and rich extensibility F940GOT-SWD-C
FX5U built-in analog, communication, high speed input and output,
By extending the board and adapter can be easily extended system.
In addition, through the high speed system bus,
Can maximize the role of the built-in intelligent functions of the expansion device.
Motor series: low inertia, medium power.
Rated output power: 11.0kw.
Rated speed: 1500r/min.
Whether to bring the brakes: with.
Shaft end: Standard (straight).
Voltage: 400V type.
Protection level: IP65 (IP67).
Features: low inertia from low speed to high speed, three modes can be selected, suitable for different application range. As a standard port, 30KW or greater power is suitable for flange (type) installation and support foot mounting.
Application example: injection molding machine, semiconductor manufacturing equipment, large conveyor machinery.
High resolution encoder 131072p/rev (17 bit).
The encoder with high resolution ensures excellent performance and stability at low speed.
All motor dimensions are the same as before and all are compatible with the wiring. MITSUBISHI inverter FR-F740 series.
Voltage level: three phase 400V.
Frequency converter capacity: 400KW.
The main circuit of the inverter can be divided into two categories in general: voltage type is the voltage source of the DC converter for AC inverter,
The filtering of the DC circuit is the capacitance; the current mode is the DC conversion of the current source to the AC inverter,
The DC loop filter is the inductor.
Why is the frequency of the inverter voltage proportional to the change?
The electromagnetic torque of any motor is the result of the interaction between the current and the magnetic flux, the current is not allowed to exceed the rated value, otherwise it will cause the heating of the motor.
Therefore, if the magnetic flux decreases, the electromagnetic torque will decrease, which leads to the reduction of the load carrying capacity.
F940GOT-SWD-C Operation manual/Instructions/Model selection sample download link: /searchDownload.html?Search=F940GOT-SWD-C&select=5


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