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The TH-DCC-P-V1/V2 series Full Matrix PDU (One In Multiple Out) is a core power distribution unit designed for charging cabinet systems, developed by the smart charging business division. Built with a full matrix sampling architecture, this unit enables flexible power channel management for cabinet-integrated charging systems, addressing common pain points in commercial charging infrastructure such as unbalanced power allocation and low system utilization. It serves as a compatible component for charging station motherboards and integrated charging solutions, supporting stable and efficient power distribution for various commercial charging setups.
This full matrix PDU supports channel switching between 1-in-6-out and 1-in-8-out configurations, allowing flexible power access to any module inside the charging cabinet. This design adjusts power distribution dynamically based on real-time charging demands, which elevates overall system power utilization. For commercial charging operators, this channel flexibility reduces idle power resources and supports adaptive power allocation across different charging modules, without requiring extra hardware replacement or system reconstruction.
The PDU supports parallel connection between multiple units, bringing more flexibility to high-power charging system construction. This parallel capability allows operators to scale up power capacity gradually as charging demand grows, rather than investing in oversized power systems at the initial project stage. This design also refines the granularity of power regulation for high-power charging scenarios, supporting stable power output for multi-port charging systems. In addition, the unit operates with low noise, which reduces acoustic impact on charging station sites and surrounding areas.
Adopting a modular design with a simple, compact appearance, this PDU helps lower overall site construction costs for commercial charging projects. Its compact size optimizes space usage inside charging cabinets, allowing more flexible layout design for equipment rooms with limited space. The unit’s low-noise operation design also reduces the need for additional sound insulation facilities in station construction. This modular form factor simplifies subsequent equipment upgrades, as operators can replace or add units without rebuilding the entire power distribution framework.
Category | Technical Details |
Flexible charging | Support parallel operation and flexible high-power charging |
Modular design | Compact size, low noise, improving space utilization and cost-effectiveness Drawer style installation, convenient for quick assembly and maintenance |
Power combination | Support channel switching between 1-in-6-out or 1-in-8-out Large width design reduces website construction costs |
As a core power distribution component for smart charging systems, this full matrix PDU fits into multiple commercial and industrial charging scenarios. It is widely deployed in public charging stations, cabinet-type centralized charging sites, and modular energy storage charging systems, matching the power distribution demands of multi-port charging setups. For operators building large-scale charging fleets, the PDU works with charging station motherboards and management platforms to form a complete charging solution, enabling unified power scheduling across the entire station.
It also adapts to low-voltage and high-altitude charging projects, supporting stable power distribution in various site environments. For enterprises building internal charging fleets for commercial vehicle teams, this unit simplifies power system layout and lowers long-term operation and maintenance workload. It also aligns with the power distribution requirements of special charging equipment and new energy vehicle testing systems under the intelligent equipment business division.
This full matrix PDU adopts a drawer-style installation design, which supports quick assembly and on-site maintenance. The drawer structure allows operators to slide the unit in and out of standard cabinet slots without complex disassembly work, cutting down on installation time for large-scale charging projects. For daily maintenance and component replacement, technicians can remove a single unit without shutting down the entire power system, which reduces downtime for charging operations.
The modular design also simplifies spare parts management, as standard units are interchangeable across different cabinet positions. It is recommended to install the unit in a dry, well-ventilated cabinet space to support stable long-term operation. Regular visual checks of connection ports and cooling vents are advised to maintain consistent performance throughout the product lifecycle.
The TH-DCC-P-V1/V2 series supports channel switching between 1-in-6-out and 1-in-8-out configurations. Users can adjust the channel setup based on the number of charging modules in the cabinet, to achieve flexible power access to any internal module of the cabinet.
Yes, this PDU series supports parallel connection. Parallel operation enables more flexible high-power charging deployment, and improves the granularity of power regulation for large-scale charging systems. Operators can connect multiple units based on their actual power capacity demands and site layout.
This full matrix PDU uses a drawer-style installation design. This structure supports quick assembly and convenient maintenance, and is compatible with standard charging cabinet slots. It helps reduce on-site construction time and simplifies subsequent equipment maintenance and replacement.
For commercial procurement teams and charging infrastructure builders, this full matrix PDU offers a practical power distribution solution for scalable charging system construction. It can be integrated with charging motherboards, management platforms and complete charging solutions to build a fully functional smart charging system. For custom configuration requirements or project-specific consultation, users can contact our technical team for detailed support.