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1336E-MC2-SP42A 变频器 控制器接收外部信号

1336E-MC2-SP42A变频器(Variable Frequency Drive,VFD)是一种用于控制交流电动机速度的电子设备。它通过改变输入到电动机的电源频率和电压来控制电动机的转速。

1336E-MC2-SP42A变频器通常由一个控制器和一个功率转换器组成。控制器接收外部信号,如速度设定值或传感器信号,并根据这些信号计算出所需的电源频率和电压。功率转换器将输入的交流电源转换为所需的频率和电压,并将其输出到电动机。


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产品详情

1336E-MC2-SP42A 变频器  控制器接收外部信号

1336E-MC2-SP42A.jpg

1336E-MC2-SP42A A-B变频器


产品参数

输入电压:380-480VAC

频率范围:50/60Hz

输出电压:0-480VAC

额定电流:42A

控制方式:矢量控制

输出频率:0-400Hz

产品规格

外形尺寸:300mm x 200mm x 150mm

净重:4.5kg

防护等级:IP20

安装方式:壁挂式

1336E-MC2-SP42A变频器(Variable Frequency Drive,VFD)是一种用于控制交流电动机速度的电子设备。它通过改变输入到电动机的电源频率和电压来控制电动机的转速。


1336E-MC2-SP42A变频器通常由一个控制器和一个功率转换器组成。控制器接收外部信号,如速度设定值或传感器信号,并根据这些信号计算出所需的电源频率和电压。功率转换器将输入的交流电源转换为所需的频率和电压,并将其输出到电动机。


变频器的优点包括可以实现电动机的无级调速、节能、减少机械磨损、提高生产效率等。它们广泛应用于工业自动化、空调、电梯、水泵、风机等领域。


在选择变频器时,需要考虑其功率、输入电压、输出电压、频率范围、控制方式等因素,以满足特定的应用需求。

变频器的工作原理是通过改变输入到电动机的电源频率和电压来控制电动机的转速。具体来说,变频器主要包括以下几个部分:

1.  控制器:1336E-MC2-SP42A控制器接收外部信号,如速度设定值或传感器信号,并根据这些信号计算出所需的电源频率和电压。

2.  功率转换器:功率转换器将输入的交流电源转换为所需的频率和电压,并将其输出到电动机。功率转换器通常由电力电子元件(如 IGBT、MOSFET 等)组成。

3.  滤波器:1336E-MC2-SP42A滤波器用于减少输出电压和电流的谐波含量,提高电动机的运行效率和稳定性。

4.  电动机:电动机是变频器的输出设备,它根据输入的电源频率和电压来调整转速。


在工作过程中,控制器将输入的电源频率和电压信号发送给功率转换器,功率转换器将其转换为所需的频率和电压,并将其输出到电动机。电动机根据输入的电源频率和电压来调整转速,从而实现电动机的无级调速。


变频器的优点包括可以实现电动机的无级调速、节能、减少机械磨损、提高生产效率等。它们广泛应用于工业自动化、空调、电梯、水泵、风机等领域。

1336E-MC2-SP42A 变频器  控制器接收外部信号

1336E-MC2-SP42A.jpg

13P36E -MC2-SP42A A-B inverter


Product parameter

Input voltage: 380-480VAC

Frequency range: 50/60Hz

Output voltage: 0-480VAC

Rated current: 42A

Control mode: vector control

Output frequency: 0-400Hz

Product specification

Overall dimensions: 300mm x 200mm x 150mm

Net weight: 4.5kg

Protection level: IP20

Installation mode: wall hanging

The 13P36E MC2-SP42A Variable Frequency Drive (VFD) is an electronic device used to control the speed of an AC motor. It controls the speed of the motor by changing the frequency and voltage of the power input to the motor.


The 13P36E MC2-SP42A frequency converter usually consists of a controller and a power converter. The controller receives external signals, such as speed setpoints or sensor signals, and calculates the required power frequency and voltage based on these signals. The power converter converts the input AC power to the desired frequency and voltage and outputs it to the motor.


The advantages of the inverter include the realization of stepless speed regulation of the motor, energy saving, reducing mechanical wear and improving production efficiency. They are widely used in industrial automation, air conditioning, elevators, pumps, fans and other fields.


When selecting a inverter, it is necessary to consider its power, input voltage, output voltage, frequency range, control mode and other factors to meet the specific application needs.

The working principle of the inverter is to control the speed of the motor by changing the frequency and voltage of the power input to the motor. Specifically, the inverter mainly includes the following parts:

1. Controller: 13P36E -MC2-SP42A controller receives external signals, such as speed setpoints or sensor signals, and calculates the required power frequency and voltage based on these signals.

2. Power converter: The power converter converts the input AC power to the required frequency and voltage, and outputs it to the motor. Power converters usually consist of power electronic components (such as IGBTs, MOSFETs, etc.).

3. Filter: 13P36E -MC2-SP42A filter is used to reduce the harmonic content of output voltage and current, improve the operating efficiency and stability of the motor.

4. Motor: The motor is the output device of the inverter, which adjusts the speed according to the input power frequency and voltage.


During operation, the controller sends the input power frequency and voltage signals to the power converter, which converts them to the required frequency and voltage and outputs them to the motor. The motor adjusts the speed according to the input power frequency and voltage, so as to realize the motor's stepless speed regulation.


The advantages of the inverter include the realization of stepless speed regulation of the motor, energy saving, reducing mechanical wear and improving production efficiency. They are widely used in industrial automation, air conditioning, elevators, pumps, fans and other fields.

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