
The JP series multi-function outdoor distribution cabinet (hereinafter referred to as “JP cabinet”) is an integrated electrical device specially designed for the modernization of urban and rural electrical networks, as well as for 0.4 kV low-voltage distribution systems.
The JP series multi-function outdoor distribution cabinet (hereinafter referred to as “JP cabinet”) is an integrated electrical device specially designed for the modernization of urban and rural electrical networks, as well as for 0.4 kV low-voltage distribution systems. It combines in one housing for outdoor installation the functions of electricity metering, power distribution, reactive power compensation, intelligent control and multi-level protection. This equipment is usually mounted directly on a pole below the step-down transformer or on the ground, acting as the “master manager” on the low-voltage side of the transformer. It can effectively solve problems at the end of electrical networks in rural areas and industrial parks, such as low voltage, high line losses, low power factor. This device is a key node for standardization, miniaturization and intelligentization of distribution networks.
1.Integrated modular design: Adopts modular structure; the internal space is rationally divided into a metering section, a switching section, a compensation section and a section of outgoing lines. The metering compartment is made hermetically sealed, which completely eliminates the risk of electricity theft. Functional compartments do not affect each other, which saves space during the construction of substations and transformer points, and also significantly reduces installation and commissioning time on site.
2. Intelligent reactive power compensation: Equipped with a high-precision intelligent controller and self-healing low-voltage parallel capacitors. Channel-by-channel, three-phase and mixed compensation modes are supported.
3.All-round safety and protection: Provides protection against short circuit, overload, overvoltage, undervoltage, phase loss and current leakage.