Wholesale Electric Vehicle Infrastructure Supplier & Factories

Providing Global Tier-1 Smart EV Charging Solutions and Integrated Energy Storage Systems for a Sustainable Future.

Global EV Infrastructure: The Dawn of an Energy Revolution

As the world pivots toward decarbonization, the demand for robust Electric Vehicle (EV) infrastructure has transitioned from a niche requirement to a global industrial imperative. With over 23 years of specialized experience, TONGXING NEW ENERGY TECHNOLOGY CO., LTD. stands at the vanguard of this transition, operating as a certified National High-Tech Enterprise dedicated to the research, development, and mass-scale production of smart charging ecosystems.

The global EV charging station market is projected to grow at a CAGR of over 30% through 2030. This growth is driven not just by passenger vehicle adoption, but by the electrification of heavy-duty logistics, public transit, and industrial fleets. As a wholesale supplier and factory powerhouse, we provide the scalability required by grid operators, real estate developers, and municipal planners to meet this unprecedented demand.

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Global Market Status

Current infrastructure is shifting from simple AC charging to high-power DC fast charging (HPDC). Regions like the EU and North America are implementing strict regulations (AFIR) to ensure charger density and interoperability.

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Industrial Growth

The "PV-Storage-Charging" integration is the leading trend. By combining solar power with LiFePO4 energy storage, charging stations are becoming self-sufficient microgrids, reducing operational costs by up to 40%.

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Battery Technology

High-voltage (800V) architectures are becoming standard, necessitating chargers that can deliver 240kW to 960kW. Our factories are already optimized for these next-gen power modules.

Manufacturing Excellence & R&D Power

72,000m²

Production Base

23+

Years Experience

140+

Certified Engineers

98.6%

Field Reliability

Full-Stack Development Competence

Unlike assembly-only factories, Tongxing maintains full-stack control over both hardware and software. Our circuit topology optimization ensures 78% reduction in standby power, while our proprietary OCPP 2.0.1 cloud platform allows for seamless global roaming and payment integration.

  • ✅ 18 Automated Assembly Lines
  • ✅ ISO-9001/14001/45001 Certified
  • ✅ Dual-Core Redundancy Protection
  • ✅ CE, IEC, UL, and GB/T Compliance

Full-Scenario Energy Ecosystem Solutions

We don't just sell chargers; we engineer ecosystems. Our integrated "Photovoltaic-Energy Storage-Charging" solution redefines the charging experience for commercial and industrial sectors.

Industrial & Commercial

Perfect for factories, logistics parks, and office complexes. Reduce peak electricity demand by utilizing stored solar energy, lowering costs by 27% on average.

Residential Smart Home

Unlock a low-carbon lifestyle with 7kW-22kW AC wallboxes paired with 5kWh-20kWh home energy storage. Achieve up to 85% energy self-sufficiency.

Off-Grid & Rural Areas

Deploy containerized charging stations in remote locations. Includes intelligent islanding protection for 72-hour continuous power supply without grid access.

Comparative Advantage: Traditional vs. Integrated Solutions

Performance Indicator Traditional Grid Charging Tongxing Integrated Solution Efficiency Gain
Renewable Self-Consumption <10% 85% - 95% +750% Improvement
Avg. Electricity Cost 0.85 USD/kWh 0.62 USD/kWh -27% Savings
Carbon Footprint Reduction Minimal 40% - 60% Annually High ESG Value
Grid Peak Stress High Low (Peak Shaving) Infrastructure Safety

Technological Roadmap: The Future of E-Mobility

The next decade of EV infrastructure will be defined by speed, intelligence, and bi-directionality. Our R&D center is currently focusing on three core pillars:

1. V2G (Vehicle-to-Grid) Technology

Allowing EV batteries to discharge energy back into the grid during peak hours, turning every electric car into a mobile energy storage unit.

2. Silicon Carbide (SiC) Power Modules

Transitioning from traditional IGBTs to SiC MOSFETs to achieve 98%+ conversion efficiency and more compact charger designs.

3. AI-Driven Predictive Maintenance

Using IoT data to predict component failure before it happens, ensuring 99.9% uptime for public charging networks.

Visualization of a Smart Urban Energy Hub

Expert Q&A: Navigating EV Infrastructure Procurement

What are the primary differences between GB/T, CCS1, and CCS2 standards?

GB/T is the Chinese national standard, CCS1 is primarily used in North America, and CCS2 is the European standard. Our 60kW-240kW DC stations are designed with modularity, allowing us to supply any of these connector types depending on your local market requirements.

How does Dynamic Load Balancing (DLB) work in commercial settings?

DLB intelligently monitors the total energy consumption of a building and allocates the remaining power to the EV chargers. This prevents grid overloads and allows businesses to install more chargers without expensive grid upgrades.

Is LiFePO4 the best choice for energy storage systems (ESS)?

Yes. Lithium Iron Phosphate (LiFePO4) offers superior thermal stability and a cycle life of over 6,000 times (at 80% DOD), making it the safest and most cost-effective chemistry for stationary energy storage compared to NCM batteries.

Can your chargers withstand extreme environmental conditions?

Our stations are IP55/IP65 rated and engineered with military-grade materials. They are tested to operate flawlessly in temperatures ranging from -35°C (Arctic conditions) to +75°C (Desert heat).

What support do you offer for B2B wholesale partners?

We provide full white-label (OEM/ODM) services, 24-month warranties, lifetime technical support, and assistance with local certification compliance (UL, CE, TUV).