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C400/10/1/1/1/00 | 伺服驱动器 | DB-5 | VIA1002C01F0000 | VIA1002C01A0000

型号:C400/10/1/1/1/00

类别:伺服驱动器

货期:现货

发货方式:顺丰/德邦

质保:一年


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C400/10/1/1/1/00  | 伺服驱动器  |   DB-5  |  VIA1002C01F0000 |  VIA1002C01A0000

型号:C400/10/1/1/1/00

类别:伺服驱动器

货期:现货

发货方式:顺丰/德邦

质保:一年


伺服驱动器是一种用于控制伺服电机的电子设备,也被称为伺服控制器或伺服放大器。它的作用类似于变频器对普通交流马达的控制,是伺服系统的重要组成部分,主要应用于高精度的定位系统。伺服驱动器通过接收来自控制器的指令信号,对伺服电机的电流、速度和位置进行精确控制,以实现高精度、高速度、高效率的运动控制。


伺服驱动器和变频器在多个方面存在明显的区别:


控制对象:C400/10/1/1/1/00 伺服驱动器主要控制伺服电机,通常采用带编码反馈环的方式进行控制。而变频器主要用于控制交流异步电机,实现软启动、变频调速等功能。

控制精度:伺服系统的控制精度由伺服电机轴后端的旋转编码器保证,市面上常用的编码器为增量式光电编码器和绝对值式光电编码器,其精度较高。相比之下,变频器的控制精度通常较低。

抗过载能力:C400/10/1/1/1/00 伺服驱动器一般具有3倍过载能力,可以克服惯性负载在启动瞬间的惯性力矩。而变频器的过载能力通常为1.5倍,抗过载能力相对较弱。

低频特性:伺服电机在低频时运转非常平稳,不会出现振动现象。而变频系统的电机在低频时转矩可能不够,可能导致振动现象。

加减速性能:C400/10/1/1/1/00 伺服系统加速快,在空载情况下,伺服电机从静止状态到2000rpm,用时不超过20ms。而变频器电机的加减速较缓慢。

动态响应品质:伺服驱动器在动态响应品质上通常优于变频器。

总的来说,伺服驱动器和变频器在功能和应用上各有特点,应根据具体需求和应用场景选择合适的设备。


C400/10/1/1/00 | servo drive | DB-5 | VIA1002C01F0000 | VIA1002C01A0000

Model: C400/10/1/1/1/00

Category: Servo drive

Delivery time: from stock

Delivery method: SF Express/Deppon

Warranty: One year


A servo driver is an electronic device used to control a servo motor, also known as a servo controller or servo amplifier. Its role is similar to the control of the inverter to the ordinary AC motor, is an important part of the servo system, mainly used in high-precision positioning system. By receiving the command signal from the controller, the servo driver can precisely control the current, speed and position of the servo motor to achieve high precision, high speed and high efficiency motion control.


There are obvious differences between servo drives and frequency converters in several ways:


Control object: C400/10/1/1/1/00 servo driver mainly controls the servo motor, which is usually controlled by a coded feedback loop. The inverter is mainly used to control the AC asynchronous motor to achieve soft start, frequency conversion speed regulation and other functions.

Control accuracy: The control accuracy of the servo system is guaranteed by the rotary encoder at the back of the servo motor shaft. The commonly used encoders on the market are incremental photoelectric encoders and absolute photoelectric encoders, which have high accuracy. In contrast, the control accuracy of the inverter is usually low.

Anti-overload capability: The C400/10/1/1/1/00 servo drive generally has 3 times the overload capability, which can overcome the inertial torque of the inertial load at the moment of start. The overload capacity of the inverter is usually 1.5 times, and the anti-overload capacity is relatively weak.

Low frequency characteristics: the servo motor runs very smoothly at low frequencies, and there is no vibration phenomenon. The motor of the frequency conversion system may not have enough torque at low frequencies, which may lead to vibration.

Acceleration and deceleration performance: C400/10/1/1/1/00 servo system accelerates fast, in no-load condition, servo motor from static state to 2000rpm, the time does not exceed 20ms. The acceleration and deceleration of the inverter motor is slow.

Dynamic response quality: Servo drives are generally superior to inverters in terms of dynamic response quality.

In general, the servo drive and inverter have their own characteristics in function and application, and the appropriate equipment should be selected according to the specific needs and application scenarios.


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