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Address: 4-2, Building E, Huazhong Enterprise City, 16 North Avenue, Hankou, Wuhan City

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  • 6OMD-II型 PXF-L型 PXF-L-R型低压柜.jpg

OMD-II type PXF-L type PXF-L-R type low voltage cabinet

Classification:


Electrical products with voltage levels ranging from 3.6kV to 550kV, used for power generation, transmission, distribution, energy conversion, and consumption in the power system to provide on/off, control, or protection functions


Product Details


Overview
1.14kV pumping unit dedicated energy-saving reactive power compensation cabinet.
The OMD-II type 1.14kV pumping unit reactive power compensation cabinet is an energy-saving control device developed for the beam pumping unit of the 1.14kV system in China's oil field power grid.
The device has the characteristics of remarkable power saving performance, safe and convenient operation, convenient maintenance, compact structure, small footprint, simple installation, and suitable for pumping units with different well depths.
The device fills the gap of energy-saving equipment in the local automatic compensation system of 1.14kV pumping unit in China.

The switch cabinet has the functions of overhead incoming and outgoing lines, cable incoming and outgoing lines, bus connection, etc. Mainly suitable for power plants, substations, petrochemical, metallurgical steel rolling, light industry and textile, factories and mining enterprises and residential areas, high-rise buildings and other different places. It mainly includes high-voltage isolating switch and grounding switch, high-voltage load switch, high-voltage automatic coincidence and segmenter, high-voltage operating mechanism, high-voltage explosion-proof distribution device and high-voltage switch cabinet.

Correct Selection of Breaker Breaking Capacity
On the primary system diagram, the selected circuit breaker, indicating the circuit breaker model, rated working voltage and rated working current, must also be selected for the breaking capacity of the circuit breaker. With user drawings, the breaking capacity of the circuit breaker is not selected, which makes it difficult for the manufacturer to carry out engineering design. The breaking capacity selection should be based on the system short-circuit parameters. If the manufacturer does not understand the system short-circuit parameters, it is difficult to make the correct choice. There are also some user drawings, regardless of the system short-circuit parameters, blindly select high-break parameters, resulting in unnecessary waste of funds. The correct choice of breaking capacity is very important, not only to ensure safe operation, but also to consider reducing product costs.


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