Explore our top-tier catalog of DC fast-charging modules, smart AC charging piles, and next-gen cryogenic storage systems engineered for universal compatibility.
The global EV landscape is witnessing a structural shift. While standard AC home charging has served as the baseline for residential energy replenishment, the limitations of onboard chargers (OBC) restrict home charging speeds and overall network throughput. Enter Low-Power DC Fast Chargers for Home Applications. By bypassing the vehicle’s internal rectifier, home DC charging stations inject power directly into the high-voltage battery bank, mitigating thermal losses and accelerating refueling intervals.
For fleet managers, micro-depots, and high-end residential customers seeking rapid vehicle turnaround, sourcing directly from a vertically integrated factory ensures technical reliability. Utilizing advanced power topologies, our products maximize heat dissipation, guarantee power-factor correction (PFC), and provide robust communication protocols compatible with current and future utility requirements.
As the automotive industry pivots toward high-voltage architectures, we explore the integration of SiC semiconductors, solid-state batteries, and liquid-cooled infrastructures.
Transitioning from traditional Silicon IGBTs to next-generation Silicon Carbide (SiC) MOSFETs within our charging modules allows for elevated switching frequencies, reduced heat dissipation, and an ultra-compact footprint. This permits 30KW and 40KW chargers to be mounted effortlessly in residential garages without requiring bulky commercial enclosures.
The emergence of solid-state chemistries, such as our 13Ah Solid-State Pouch Ultra-Cryogenic Lithium-ion Battery operating under extreme ambient conditions (-80 °C to 55 °C), demands highly sophisticated Constant-Current Constant-Voltage (CC-CV) control algorithms. Our software systems proactively regulate power delivery to prevent degradation, preparing your charging infrastructure for the aerospace, drone, and EV battery designs of tomorrow.
To eliminate cable weight and manage heat inside high-current connectors, our thermal engineering division integrates active liquid cooling. Similar to our 500A CCS1 Liquid Cooling EV Charger design, we are porting scaled-down closed-loop thermal pathways to residential platforms to sustain safe, continuous, high-current charging without driver strain.
Deploying residential DC chargers at scale requires smart grid management to avoid local electrical distribution bottlenecks.
Our home DC chargers monitor household power consumption in real time. Through advanced sensor integration, the charger automatically reduces its output when home appliances are in peak use, preventing nuisance tripping while ensuring optimal EV replenishment during off-peak hours.
By transforming charging piles into bidirectional power gateways, vehicles function as localized home energy storage systems (BESS). In times of grid outages or high time-of-use tariffs, the DC fast charger pulls power from the vehicle, routing it back into the residential panel via clean inverter technology.
Integrating local photovoltaic (PV) setups with low-power DC chargers reduces reliance on municipal grids. DC chargers accept direct DC input from residential PV strings or hybrid inverters, avoiding secondary conversion steps to achieve maximum green energy round-trip efficiency.
Our vertically integrated manufacturing facility in China optimizes raw materials, sheet metal, and electrical assembly to deliver superior product reliability and cost advantages.
Using precision computerized laser cutting to prepare structural chassis sheets with tolerances under 0.05mm, ensuring robust and uniform structural enclosures.
State-of-the-art CNC bending and robotic welding assemble premium steel sheets, adding anti-corrosive primer and structural reinforcement for lifetime durability.
Enclosure panels are sealed, insulated, and equipped with weather stripping to achieve IP54/IP55 water and dust resistance, ideal for severe climates.
Visual and mechanical validation procedures verify ingress protection levels, torque specs on hinges, and alignment tolerances before electronics integration.
Cleanroom SMT lines assemble power modules, control boards, and filters, applying conformal coatings to isolate circuits against dust and ambient humidity.
Wiring harnesses, high-voltage switches, fuses, and communication modules are hand-routed and torque-tested to prevent thermal hotspots.
Every charging station undergoes active load simulation, high-voltage dielectric insulation tests, and communication protocol testing prior to final crating.




Deploying chargers globally requires rigid alignment with regional safety certifications and local grid codes.
Our R&D team designs equipment for compliance with CE, FCC, UL, and GBT standards. We integrate Type-A or Type-B residual current devices (RCD) and surge protective devices (SPD) to isolate fault currents, safeguarding homeowners and vehicles.
Equipped with native CCS1, CCS2, and GB/T connector variants, our systems interface natively with standard charging networks. Embedded controllers support OCPP 1.6J and OCPP 2.0.1, ensuring seamless updates and remote operation via back-end management platforms.
We supply localized languages, UI customization, and country-specific grid frequency firmware (50Hz/60Hz). From remote field support to cloud diagnostic access, our service architecture helps operators maintain maximum uptime.




At Beihai Power (China Beihai Power Co., Ltd.), we specialize in engineering adaptations to resolve demanding energy requirements for governments, automotive fleets, and commercial clients across Europe, the Americas, Central and Southeast Asia, the Middle East, and Africa.
We do not offer "one-size-fits-all" solutions. Our design capacity spans from high-capacity 480KW units to compact commercial/home charging stations (20, 30, and 40KW). We also produce high-value adaptations, such as our 150kW Mobile DC Fast-Charging Solution integrated into commercial vans, developed specifically to meet the unique grid and environmental requirements of our clients in Colombia and the USA.
Our general-manager-led tracking and user service system ensures full visibility from the factory line to final installation, supporting quick turnaround times for sample batches and bulk shipments, such as our recent export of 24 custom-configured DC fast-charging piles to Uzbekistan.
Our adherence to strict global quality standards guarantees that every station leaves our facility with verified international accreditations.





Clear, technical answers to common queries regarding residential DC charging installations and battery technology.
Industrial-grade charging stations and high-durability battery systems configured for global distribution networks.