Discover our flagship engineering solutions optimized for commercial, fleet, and temporary infrastructure deployments.
Guangzhou LA Charge Co., Ltd. is a globally recognized pioneer in high-power charging technology. We specialize in designing, manufacturing, and deploying robust Indoor and Outdoor DC Charging Stations, rapid-deployment grid buffers, intelligent DC management frameworks, and versatile fleet charging topologies.
Headquartered in the high-tech hub of Guangzhou, China, our advanced facility spans 25,000 square meters of state-of-the-art production capacity. Our manufacturing excellence is backed by sophisticated assembly lines, extreme-weather simulation labs, and continuous stress testing chambers, ensuring that every product delivers reliable power regardless of environment.
How temporary energy infrastructure is resolving the global grid gap and supporting dynamic commercial operational models.
As electric vehicle adoption surges, the timeline to design and install permanent grid connections has emerged as a primary bottleneck for logistics operators, site developers, and municipalities. Temporary DC charging stations solve this problem, acting as an agile bridge. These modular, mobile systems mitigate grid upgrades, facilitate high-density power delivery at seasonal events, and provide scalable backup infrastructure for transitionary commercial fleets.
Understanding critical design, safety, and operational standards required by procurement departments worldwide.
Industrial components demand continuous duty cycles under extreme temperatures. Our systems use advanced liquid cooling paths or rugged multi-fan dynamic air extraction schemes to guarantee sustained peak power output.
Our units deploy OCPP 1.6 JSON and OCPP 2.0.1 compliance layers, facilitating seamless compatibility with utility backend portals, payment networks, and enterprise asset management software.
Guaranteed protection via integrated insulation monitoring devices (IMD), surge suppression networks (SPD Type 2), overcurrent protection breakers, and auto-shutoff emergency loops.
| Feature Parameter | Guangzhou LA Charge Standard Specs | Operational Advantages |
|---|---|---|
| Power Range | 30kW - 400kW (Dual Gun Dynamic Load Splitting) | Enables fast charge matching for delivery fleets and heavy buses alike. |
| Environmental Protection | IP54 / NEMA 3R (Optional IP55 Cabinets) | Resilient in dust, sand, heavy rain, and extreme condensation cycles. |
| Enclosure Construction | Reinforced Galvanized Steel / Anti-corrosion C5 Coating | Ensures high structural integrity under active mobility demands. |
| Cooling Topology | Intelligent forced air cooling with dust filtering | Reduces maintenance intervals and maintains optimal converter efficiency. |
Tailoring hardware and software ecosystems to the exact deployment environments of global operators.
During peak holiday travel seasons, highway charging hubs experience massive demand spikes. Our high-power fast charging piles offer modular expandability to prevent queue fatigue. Combining our 180kW and 240kW stations with solar arrays offers a clean, resilient, self-sustaining microgrid buffer system.
For large-scale logistics fleets (e.g., e-trucks and delivery vans), downtime is costly. Our high-power Megawatt charging systems and dynamic dual-gun chargers support high-voltage architectures, ensuring rapid vehicle turnaround and optimizing asset utilization.
Incorporating interactive displays, parking lot license plate recognition modules, and smart OCPP management systems into retail parks, shopping malls, and office buildings transforms charging infrastructure into a profitable business asset.
Navigating global electrical grids, regulatory compliance frameworks, and local utility demands.
Entering international markets requires strict compliance with regional electrical safety regulations. Guangzhou LA Charge Co., Ltd. builds international compliance into the core of our R&D cycle. Our products are designed to adapt to various regional grid configurations, including varying grid frequencies (50Hz vs 60Hz), grounding systems (TN-S, TN-C-S, TT), and communication protocols.
Fully compliant with CE Mark directives, IEC 61851-1/23 standards, and type-2 connector configurations with integrated residual current monitoring (RCD Type B / 6mA DC protection).
Designed to align with UL 2202, UL 2231-1/2 safety criteria, supporting CCS1 and NACS connection options, along with strict compliance to Energy Star requirements.
Compliant with GB/T national standards, supporting localized power profiles, single/three-phase adaptations, and custom OCPP integration for regional billing networks.
A forward-looking technical perspective on how we are designing future charging architectures.
Our technical team is focused on evolving current charging platforms to meet future needs, including ultra-high power delivery, grid stabilization, and smart charging intelligence. Our R&D pipeline targets three key innovation pillars:
By shifting from traditional Silicon IGBTs to Silicon Carbide (SiC) MOSFET power conversion modules, we are targeting module power conversion efficiencies exceeding 97.5%. This shift minimizes heat generation, allowing for smaller, lighter cabinet designs.
Our future platforms will support bidirectional power flow. This allows fleets to serve as virtual power plants (VPPs), feeding power back into the grid during peak demand to generate new revenue streams for fleet operators.
To support heavy-duty electric trucks and maritime vessels, we are developing liquid-cooled charging systems capable of delivering up to 1.2 Megawatts per connector, ensuring very fast turnaround times.
Answers to key technical questions from engineers, operators, and procurement managers.
From compact wall-mounted smart AC chargers to ultra-high-power DC charging cabinets.