DCS; Industrial control system
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IS200VPROH2B IS200VPROH1BEF IS200VPWRH1AHD
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IS200VPROH2B IS200VPROH1BEF IS200VPWRH1AHD

IS200VPROH2B IS200VPROH1BEF IS200VPWRH1AHD

26444.00
¥61456.00
¥61456.00
¥61456.00
Weight:17.180KG
Description

IS200VPROH2B IS200VPROH1BEF IS200VPWRH1AHD


GE IS200VPROH2B IS200VPROH1BEF IS200VPWRH1AHD

IS200VPROH2B

Advanced control algorithms: Utilizes state – of – the – art control algorithms that are highly accurate and responsive.

These algorithms are optimized for power system applications, allowing for precise control of power generation, transmission, and distribution processes.

For example, in a power generation plant, it can precisely control the excitation system of generators to maintain stable voltage levels under varying load conditions.

Reliable protection mechanisms: Incorporates a comprehensive set of protection functions.

The over – current protection can quickly detect abnormal current levels and take appropriate actions to prevent equipment damage.

The differential protection is highly sensitive to internal faults in power transformers and can isolate the faulty section in a timely manner, minimizing the impact on the overall power system.

High – speed communication: Supports high – speed communication protocols, enabling seamless integration with other power system components.

This allows for real – time data exchange and coordinated control. For instance, it can communicate with a central control station in a substation, providing up – to – date information about the power system’s status and receiving control commands instantaneously.

IS200VPROH1BEF

Comprehensive power quality monitoring: Can monitor a wide range of power quality parameters simultaneously.

This includes not only basic parameters like voltage and current but also more complex ones such as harmonic distortion and flicker. 

By providing a detailed analysis of power quality, it helps power system operators identify and address issues that could affect the performance of sensitive equipment connected to the grid.

Intelligent control capabilities: The module’s intelligent control algorithms can automatically adjust power system operations based on the monitored data.

 For example, if it detects a low power factor in a distribution network, it can automatically switch on or off capacitors to improve the power factor, thereby reducing energy losses and improving the efficiency of the power system.

Remote monitoring and control: With its Ethernet and DNP3 communication capabilities, it enables remote monitoring and control. 

Power system operators can access the module’s data and control its functions from a central control room or even a remote location. 

This is extremely useful for large – scale power systems spread over a wide geographical area, as it reduces the need for on – site visits for routine monitoring and maintenance.

IS200VPWRH1AHD

High – efficiency power conversion: Achieves high power conversion efficiency, which is crucial for reducing power losses in the power system.

The high – efficiency design not only saves energy but also reduces heat generation, which in turn improves the reliability and lifespan of the power supply module.

In a large – scale data center’s power system, where multiple power supply modules are used, the high – efficiency of this module can lead to significant energy savings over time.

Robust protection features: The multiple protection mechanisms, including over – voltage, over – current, and short – circuit protection, provide reliable protection for the connected power system components.

In case of a power supply anomaly, these protection features can quickly isolate the problem and prevent damage to other modules in the power system.

For example, if a short – circuit occurs in a control module, the over – current protection in the IS200VPWRH1AHD will trip the circuit, protecting both the power supply module and the faulty control module from further damage.

Redundancy support: The ability to support redundant power supply configurations enhances the reliability of the power system.

In critical power applications, such as in hospitals or industrial plants where continuous power supply is essential, redundant power supply modules can be installed.

If one module fails, the other can immediately take over the power supply function, ensuring uninterrupted operation of the power system.


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