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MC-41101400 伺服驱动器 可以用来控制伺服电机

MC-41101400伺服驱动器是用来控制伺服电机的一种控制器,其作用类似于变频器作用于普通交流马达,属于伺服系统的一部分,主要应用于高精度的定位系统。使用伺服驱动器可以使控制速度、位置精度非常准确。

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MC-41101400 伺服驱动器 可以用来控制伺服电机

MC-41101400.jpg

型号:MC-41101400

预计运输规模

尺寸:2.5" x 12.0" x 10.0"

(6.3厘米× 30.5厘米× 25.4厘米)

重量:6磅8盎司(2.9公斤)

税则号:8504409570

原产地:德国

MC-41101400伺服驱动器是用来控制伺服电机的一种控制器,其作用类似于变频器作用于普通交流马达,属于伺服系统的一部分,主要应用于高精度的定位系统。使用伺服驱动器可以使控制速度、位置精度非常准确。

MC-41101400伺服驱动器的参数设置需要根据具体的应用场景和需求来确定,以下是一些常见的伺服驱动器参数设置方法:

1. 设置控制模式:根据实际应用场景选择合适的控制模式,如位置控制、速度控制、转矩控制等。

2. 设置电机参数:根据实际使用的电机型号和参数,设置伺服驱动器的电机参数,如电机极对数、额定电流、额定转速等。

3. 设置控制参数:根据实际应用场景设置伺服驱动器的控制参数,如位置环增益、速度环增益、电流环增益等。

4. 设置保护参数:根据实际应用场景设置伺服驱动器的保护参数,如过流保护、过压保护、欠压保护等。

5. 设置报警参数:根据实际应用场景设置伺服驱动器的报警参数,如报警电流、报警电压、报警温度等。

MC-41101400 伺服驱动器 可以用来控制伺服电机

MC-41101400.jpg



Model: MC-41101400

Expected transport scale

Size :2.5" x 12.0" x 10.0"

(6.3 cm × 30.5 cm × 25.4 cm)

Weight :6 lb. 8 oz. (2.9 kg)


Tax Code :8504409570

Country of Origin: Germany

MC-41101400 servo driver is a controller used to control the servo motor, its role is similar to the frequency converter acting on the ordinary AC motor, is a part of the servo system, mainly used in high-precision positioning system. The use of servo drive can make the control speed, position accuracy is very accurate.

The parameter setting of MC-41101400 servo drive needs to be determined according to the specific application scenario and requirements. The following are some common ways to set the parameters of the servo drive:

1. Set the control mode: Select the appropriate control mode according to the actual application scenario, such as position control, speed control, torque control, etc.

2. Set motor parameters: According to the actual motor model and parameters, set the motor parameters of the servo drive, such as the number of motor poles, rated current, rated speed, etc.

3. Set control parameters: Set the control parameters of the servo driver based on the actual application scenario, such as position loop gain, speed loop gain, and current loop gain.

4. Set protection parameters: Set the protection parameters of the servo drive based on the actual application scenario, such as overcurrent protection, overvoltage protection, and undervoltage protection.

5. Set alarm parameters: According to the actual application scenario, set alarm parameters of the servo driver, such as alarm current, alarm voltage, alarm temperature, etc.

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