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ABB YPK112A 3ASD573001A13 旋转晶闸管励磁系统 成都阳光熹禾

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  • 高精度控制:YPK112A 3ASD573001A13旋转晶闸管励磁系统采用先进的控制技术和算法,能够实现高精度的电压和电流控制。这有助于确保发电机、变压器和电动设备等在最佳状态下运行。
  • 高可靠性:该系统采用高品质的元器件和优化的电路设计,具有较高的可靠性和稳定性。在恶劣的工作环境下也能保持稳定的性能输出。
  • 易于维护:YPK112A 3ASD573001A13旋转晶闸管励磁系统具有简洁的结构和方便的维护接口,使得系统的维护和保养变得更加容易和高效。
  • 电话/Phone:17350011025 (微信同号)
  • 邮箱/Email:1713556114@qq.com
  • QQ:1713556114

产品细节说明:YPK112A 3ASD573001A13 ABB 旋转晶闸管励磁系统

  • 系统组成:YPK112A 3ASD573001A13旋转晶闸管励磁系统主要由交流励磁机、固定磁场和旋转电枢组成。励磁机的输出通过全波晶闸管桥式整流器电路整流后,提供给主交流发电机励磁绕组。此外,交流发电机励磁绕组也通过另一个整流器电路供电。
  • 工作原理:系统的励磁机电压可以通过使用其剩余磁通来建立。电源和整流器控制产生受控的触发信号,以调节励磁电流。交流发电机电压信号被平均,并直接与自动操作模式下的操作员电压调整进行比较,以实现精确的电压和电流控制。

YPK112A 3ASD573001A13

产品详情参数 :YPK112A 3ASD573001A13 ABB 旋转晶闸管励磁系统

  • 高精度控制:YPK112A 3ASD573001A13旋转晶闸管励磁系统采用先进的控制技术和算法,能够实现高精度的电压和电流控制。这有助于确保发电机、变压器和电动设备等在最佳状态下运行。
  • 高可靠性:该系统采用高品质的元器件和优化的电路设计,具有较高的可靠性和稳定性。在恶劣的工作环境下也能保持稳定的性能输出。
  • 易于维护:YPK112A 3ASD573001A13旋转晶闸管励磁系统具有简洁的结构和方便的维护接口,使得系统的维护和保养变得更加容易和高效。

YPK112A 3ASD573001A13 ABB  应用领域:

  • 发电厂:在发电厂中,YPK112A 3ASD573001A13旋转晶闸管励磁系统可用于调节和控制发电机的励磁电流,以确保发电机的稳定性和输出功率的调节。这有助于优化发电效率,并满足电网对电力质量和稳定性的要求。
  • 变电站:在变电站中,该系统可用于控制变压器的励磁过程,以调节电网的电压和电力传输。通过精确控制变压器的励磁电流,可以确保电网电压的稳定性和电力传输的效率。
  • 工业自动化:在工业自动化应用中,YPK112A 3ASD573001A13旋转晶闸管励磁系统可用于控制马达、发电机或其他电动设备的励磁过程。这有助于实现精确的速度和功率控制,提高工业自动化系统的运行效率和稳定性。
  • 铁路和轨道交通:在铁路和轨道交通系统中,该系统用于控制电动列车的励磁过程。通过精确控制列车的励磁电流,可以确保列车在加速和制动过程中的平稳性,提高乘客的舒适度和安全性。

Product Details: YPK112A 3ASD573001A13 ABB Rotating Thyristor Excitation System
System composition: YPK112A 3ASD573001A13 rotating thyristor excitation system mainly consists of an AC excitation machine, a fixed magnetic field, and a rotating armature. The output of the exciter is rectified by a full wave thyristor bridge rectifier circuit and provided to the excitation winding of the main AC generator. In addition, the excitation winding of the AC generator is also powered by another rectifier circuit.
Working principle: The excitation voltage of the system can be established by using its residual magnetic flux. The power supply and rectifier control generate controlled trigger signals to regulate the excitation current. The voltage signal of the AC generator is averaged and directly compared with the operator voltage adjustment in automatic operation mode to achieve precise voltage and current control.
Product details and parameters: YPK112A 3ASD573001A13 ABB rotary thyristor excitation system
High precision control: The YPK112A 3ASD573001A13 rotary thyristor excitation system adopts advanced control technology and algorithms, which can achieve high-precision voltage and current control. This helps ensure that generators, transformers, and electric equipment operate in optimal condition.
High reliability: The system adopts high-quality components and optimized circuit design, with high reliability and stability. It can maintain stable performance output even in harsh working environments.
Easy to maintain: The YPK112A 3ASD573001A13 rotary thyristor excitation system has a simple structure and convenient maintenance interface, making system maintenance and upkeep easier and more efficient.
YPK112A 3ASD573001A13 ABB Application Fields:
Power plant: In the power plant, the YPK112A 3ASD573001A13 rotary thyristor excitation system can be used to regulate and control the excitation current of the generator to ensure the stability of the generator and the regulation of output power. This helps optimize power generation efficiency and meet the requirements of the power grid for power quality and stability.
Substation: In a substation, this system can be used to control the excitation process of transformers to regulate the voltage and power transmission of the power grid. By precisely controlling the excitation current of the transformer, the stability of the grid voltage and the efficiency of power transmission can be ensured.
Industrial Automation: In industrial automation applications, the YPK112A 3ASD573001A13 rotary thyristor excitation system can be used to control the excitation process of motors, generators, or other electric equipment. This helps to achieve precise speed and power control, improving the operational efficiency and stability of industrial automation systems.
Railway and Rail Transit: In railway and rail transit systems, this system is used to control the excitation process of electric trains. By precisely controlling the excitation current of the train, the stability of the train during acceleration and braking can be ensured, improving passenger comfort and safety.

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