As EV battery capacities increase, the demand for 350kW+ chargers has surged. Our 720kW liquid-cooled systems are designed to minimize heat loss and maximize energy throughput, reducing charging times to under 15 minutes for modern long-range vehicles.
Future-proofing infrastructure requires Vehicle-to-Grid (V2G) readiness. Our chargers utilize OCPP 1.6J and 2.0.1 protocols, enabling peak shaving and bidirectional energy flow to stabilize local power grids during high demand.
With internet-connected charging piles, data security is paramount. We implement hardware-level encryption and IP54/IP65 ingress protection to ensure reliable operation in harsh environments from the Middle East to Scandinavia.
International enterprises and municipal governments are shifting focus from "lowest initial cost" to "Total Cost of Ownership (TCO)." This includes factors like energy efficiency ratios, maintenance frequency, and remote diagnostic capabilities.
Annual Production Capacity
Smart Monitoring System
Supply Chain Vertical Integration
Functional Testing (FVT)
The "China Advantage" has evolved beyond labor costs. It now represents a highly integrated ecosystem of semiconductor manufacturers, sheet metal fabricators, and software developers working in 400km radius. This "Factory 4.0" model allows Beihai Power to pivot from design to prototype in weeks, ensuring our clients stay ahead of competitors using legacy technologies.
Beihai Power is a specialized manufacturer dedicated to the innovation of DC fast-charging technology and smart AC charging technology. We bridge the gap between complex energy requirements and reliable infrastructure delivery for governments and commercial clients across Central Asia, Southeast Asia, the Middle East, Europe, Africa, South America, and North America.
Our core mission is to solve the critical challenges of charging speed, system reliability, and grid integration. By focusing on the performance of our integrated charging modules, we provide high-efficiency power solutions that ensure faster, safer, and more stable energy transfer for large-scale vehicle infrastructure projects.
Our 180kW and 240kW DC chargers are optimized for bus depots and taxi hubs, where duty cycles are high and uptime is non-negotiable. Split charging solutions allow multiple vehicles to share power dynamically.
Wall-mounted 7kW/22kW AC chargers provide sleek, space-saving solutions for apartment complexes and office buildings, featuring RFID and APP-based payment systems for monetization.
Unique 150kW Mobile Solutions integrated into vans—pioneered for clients in Colombia and the USA—allow for roadside emergency charging and flexible infrastructure deployment in developing grids.
Air-cooled chargers use fans to dissipate heat, which is cost-effective for power levels up to 180kW. Liquid-cooled systems circulate coolant through the charging cable and power modules, allowing for higher power (up to 720kW) in a smaller footprint without overheating the connectors.
Our R&D team performs "Site-Specific Engineering." This means we adjust input voltage tolerances (e.g., 480V in the US vs. 400V in Europe) and customize software logic to handle local grid fluctuations and standard protocols like CCS1, CCS2, and GBT.
For standard configurations, we maintain a rapid production cycle of 2-4 weeks. Large-scale government infrastructure projects (like our recent 24-unit export to Uzbekistan) are typically fulfilled within 45 days, including stringent QC and FVT testing.
Yes. By adhering strictly to the OCPP (Open Charge Point Protocol) standards, our hardware can be integrated with any CMS (Charge Management System) for billing, load balancing, and remote monitoring.