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MR-J3ENCBL20M-A1-L MITSUBISHI MR-J3ENCBL20M-A1-L
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MITSUBISHI MR-J3ENCBL20M-A1-L
Fiber length: 0.3 meters.
SSCNET III cables (standard optical fiber used in control cabinet).
Joints for CN1A and CN1B. Input type: DC input, positive common end.
Input points: 16 points.
Enter the response time: 1.5ms the following.
Rated input voltage / current: DC24V/5mA.
External connection: 3 wire MITSUBISHI MR-J3ENCBL20M-A1-L.
Sensor connector type (E-CON type).
Using industry standard E-CON type.
Simple wiring through sensor connector MR-J3ENCBL20M-A1-L
When installing the module can choose to use the DIN guide rail or screw mounting.
3 wire sensor input. Motor series: medium inertia, medium power.
Rated output power: 3.5kw.
Rated speed: 2000r/min MITSUBISHI MR-J3ENCBL20M-A1-L.
Whether to bring the brakes: with.
Shaft end: Standard (straight).
Power supply: 400V type .
Protection level: IP65 (IP67).
Features: medium inertia from low speed to high speed three modes for selection, suitable for different applications.
Application examples: transmission machinery, robots, X-Y working platform.
High resolution encoder 131072p/rev (17 bit).
The encoder with high resolution ensures excellent performance and stability at low speed MITSUBISHI MR-J3ENCBL20M-A1-L.
All motor dimensions are the same as before and all are compatible with the wiring . Drive: MR-H_ACN series CC-LINK features.
Rated output: 2.0KW.
The test system is composed of two parts, namely, the servo driver, the motor system and the host computer.
The host computer sends the speed command signal to the servo driver,
Servo drives start to run in accordance with the instructions.
In the course of operation, the running data of the servo system is collected by the host computer and the data acquisition circuit,
And carries on the preservation, the analysis and the display to the data. Because the motor is not loaded in this test system,
So compared with the previous two kinds of testing systems, the system has a relativelly small volume,
And thhe measurement and control circuit of the system is relatively simple,
But it also makes the system can not simulate the actual operation of the servo drive MR-J3ENCBL20M-A1-L.
Usually, such testing system is only used to test the rotational speeedd and angular displacement of the tested system under no-load condition,
And can not carry on the comprehensive and accurate test to the servo drive MR-J3ENCBL20M-A1-L.
MR-J3ENCBL20M-A1-L Operation manual/Instructions/Model selection sample download link: /searchDownload.html?Search=MR-J3ENCBL20M-A1-L&select=5


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