How a European EV Charging Company Entered China’s Market: Case Study

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Case Study • EV Charging Infrastructure

How a European EV Charging Company Entered China’s Market: Case Study

An in-depth analysis of the strategies, regulatory hurdles, partnerships, and lessons learned by European electric vehicle charging companies navigating the world’s largest and most competitive EV market.

📅 Published: July 2026
👥 By: China-Gateway360 Research Desk
📄 Case Study Ref: CG360-EV-CASE-031


1. Introduction: China’s Dominance in EV Charging Infrastructure

China is unequivocally the world’s largest and fastest-growing market for electric vehicle (EV) charging infrastructure. By the end of 2024, the country had amassed over 8.5 million charging points, including approximately 2.7 million public chargers and nearly 5.8 million private units installed in residential and workplace settings. For context, China accounts for roughly 65% of all public EV charging points globally, far ahead of Europe (about 20%) and North America (around 8%). The scale of deployment is staggering: in the first half of 2024 alone, China added more new public chargers than the entire existing charging network of the United States.

This explosive growth is driven by a combination of aggressive government policy, massive state investment, and the world’s largest passenger EV fleet—over 25 million new energy vehicles (NEVs) on Chinese roads by mid-2024. The Chinese government’s “New Infrastructure” initiative, first announced in 2020, designated EV charging stations alongside 5G networks and ultra-high-voltage power transmission as a strategic national priority. Provincial and municipal subsidies have further accelerated deployment, particularly in tier-1 cities such as Beijing, Shanghai, Shenzhen, and Guangzhou.

For European EV charging companies, China represents both an irresistible opportunity and a uniquely challenging market. The opportunity is self-evident: no other single country will install more charging infrastructure in the next decade. BloombergNEF projects that China will require 20–25 million charging points by 2030 to support its growing EV fleet, representing a cumulative investment of over $100 billion. However, the challenges are equally formidable: a market dominated by well-capitalized domestic players, distinct technical standards (GB/T versus the CCS and CHAdeMO standards used in Europe and elsewhere), complex regulatory requirements, and a price-sensitive environment where local manufacturers compete aggressively on cost.

This case study examines how European EV charging companies have approached the Chinese market. It profiles the strategies of major European players including ABB (via its ABB E-mobility division and the spin-off of its Chinese charging business), Siemens (through its Smart Infrastructure eMobility unit), and ChargePoint (through partnerships and technology licensing), distilling the key success factors, regulatory requirements, partnership models, and lessons that any foreign firm entering China’s EV charging sector must understand.

2. The Chinese EV Charging Market Landscape

2.1 Dominance of Domestic Players

The Chinese EV charging market is overwhelmingly dominated by domestic companies. The top three operators—State Grid Corporation of China (SGCC), TELD (Tsinghua Unigroup Energy and Lighting Division), and Star Charge (Xingxing Charging)—control a combined market share exceeding 70% of public charging infrastructure. State Grid alone operates more than 150,000 public charging stations nationwide, giving it unparalleled reach from coastal megacities to remote highway corridors. TELD and Star Charge compete aggressively on pricing, offering charging fees that are often 20–40% lower than equivalent rates in Europe.

Beyond the top three, a dense ecosystem of dozens of domestic manufacturers and operators has emerged, including BYD’s charging subsidiary, NIO Power (which includes battery-swapping stations alongside traditional chargers), Xpeng Motors, Li Auto, and regional players like Wanbang and Potevio. Many of these companies benefit from direct financial ties to local governments, preferential access to grid connections, and deep integration with China’s state-owned banking system for low-cost capital.

2.2 Market Segmentation

The Chinese charging market can be segmented into three primary categories:

  • Public AC Charging (Level 2): Typically 7–22 kW, these chargers dominate residential compounds and workplace parking. This segment is price-sensitive, with unit costs as low as RMB 2,000–5,000 ($280–$700).
  • Public DC Fast Charging: Ranging from 30 kW to 480 kW (ultra-fast), DC chargers are concentrated along highways and in urban commercial centers. The fastest-growing segment, it is projected to represent 45% of total charging investment by 2028.
  • Battery Swapping Stations: Pioneered by NIO and supported by government policy, swapping stations offer a three-minute battery exchange. This segment is smaller but growing rapidly, with over 3,500 swap stations nationwide by early 2025.

2.3 Pricing Dynamics and Subsidies

Charging prices in China are strictly regulated by the National Development and Reform Commission (NDRC) and local pricing bureaus. Operators can charge a service fee (typically RMB 0.3–0.8/kWh, or $0.04–$0.11/kWh) on top of the local electricity tariff. However, intense competition has compressed service fees to near-zero levels in many tier-1 cities, making profitability elusive for all but the largest operators. Government subsidies have historically been tied to equipment deployment rather than operational revenue, incentivizing volume over profitability. Recent policy shifts (2023–2025) have begun to emphasize utilization-rate-based subsidies, which favor high-quality, reliable equipment—a potential opening for European companies that differentiate on durability and uptime.

3. European EV Charging Companies in China: Profiles and Strategies

Several European companies have made concerted efforts to enter the Chinese EV charging market. Their strategies range from fully owned manufacturing operations to technology licensing and joint ventures. Below, we profile the most significant players.

3.1 ABB E-mobility: The Pioneer

ABB, the Swiss-Swedish multinational, was among the first European companies to establish a serious presence in China’s EV charging ecosystem. ABB entered the Chinese charging market as early as 2015, leveraging its existing industrial automation and power grid footprint. The company established ABB E-mobility (China) Co., Ltd. in Shanghai, developing and manufacturing DC fast chargers specifically designed for the Chinese market under the GB/T standard.

Key to ABB’s strategy was the localization of its Terra HP and Terra DC product lines. Rather than exporting European-designed chargers, ABB invested in R&D and manufacturing facilities in Shanghai and Xiamen, enabling it to meet the cost expectations of Chinese customers while maintaining the reliability and safety standards associated with the ABB brand. By 2023, ABB had installed over 20,000 DC fast-charging units in China, serving both public operators (like State Grid and TELD) and commercial fleets. However, ABB faced margin pressure from local competitors offering equivalent specifications at 30–50% lower prices, leading the company to restructure its Chinese charging operations in 2024, forming a joint venture with a domestic partner to better compete on cost.

3.2 Siemens eMobility: Technology Leadership via Partnerships

Siemens entered China’s EV charging market through its Smart Infrastructure — eMobility division. Rather than building a full in-country manufacturing operation from scratch, Siemens pursued a partnership-heavy approach. In 2021, Siemens announced a strategic cooperation with NIO Power to supply charging infrastructure management software and grid-integration technology for NIO’s expanding network of battery-swapping stations and fast chargers. The partnership leveraged Siemens’ expertise in energy management, smart grid integration, and industrial IoT rather than competing directly on charger hardware pricing.

Siemens also partnered with State Grid EV Service Co., Ltd. (a subsidiary of SGCC) on pilot projects for vehicle-to-grid (V2G) technology in Shanghai and Jiangsu province. These projects, though limited in scale, positioned Siemens as a technology partner for China’s next-generation charging infrastructure rather than a commodity hardware supplier. Siemens has also supplied its Sicharge D and VersiCharge product lines in limited volumes, but its revenue in China has primarily come from software, grid integration services, and control systems rather than hardware sales.

3.3 ChargePoint and Other European Players

ChargePoint, the US-based company with significant European operations (including its acquisition of has·to·be in Germany and its expansion into the UK and Nordics), took a distinctly different approach. Rather than establishing a direct Chinese presence, ChargePoint formed a technology licensing and OEM agreement with a Chinese manufacturer to produce GB/T-compliant chargers under the ChargePoint brand. This asset-light strategy minimized regulatory complexity and capital exposure, but limited ChargePoint’s ability to build brand recognition or control quality. As of 2025, ChargePoint’s visible presence in China remains modest.

Other notable European players include Alpitronic (Italy), whose hyperchargers have been deployed in limited pilots through partnerships with Chinese charging network operators; Schneider Electric (France), which has focused on providing EV charging management software and building-level energy distribution systems rather than standalone chargers; and Efacec (Portugal), which briefly entered the Chinese market through a joint venture that was later dissolved due to competitive pressures. Allego, a Netherlands-based charging network operator, has not directly entered the Chinese market but has explored technology-sharing agreements with Chinese firms.

⚡ Comparative Overview: European EV Charging Strategies in China
Table 1 summarizes the strategic approaches of key European EV charging companies in China.
Company Entry Strategy Key Partner(s) Primary Focus China Status (2025)
ABB Wholly owned subsidiary → JV Domestic manufacturing partner DC fast chargers (hardware) Active; restructured
Siemens Strategic partnerships NIO Power, State Grid Software, grid integration, V2G Active; niche
Schneider Electric Product + software sales Multiple Chinese OEMs EVlink chargers, energy management Active; modest scale
ChargePoint Technology licensing / OEM Chinese manufacturer GB/T AC & DC chargers Limited presence
Alpitronic Pilot deployments Regional network operators Hyperchargers (HPC) Early stage
Efacec Joint venture (dissolved) Former JV partner Fast chargers Exited

4. Navigating China’s Regulatory Requirements for Foreign Charging Companies

Any foreign company seeking to sell EV charging equipment or operate charging services in China must navigate a multi-layered regulatory framework. Understanding these requirements is essential for market entry success.

4.1 GB/T Standards Compliance

China uses the GB/T (Guobiao/Tuijian) series of national standards for EV charging, which differ substantially from the CCS (Combined Charging System) standard prevalent in Europe and North America, as well as the CHAdeMO standard used by Japanese automakers. The key standards include:

  • GB/T 20234.1-2015 — General requirements for EV conductive charging couplers.
  • GB/T 20234.2-2015 — AC charging coupler specifications.
  • GB/T 20234.3-2015 — DC charging coupler specifications (the most critical for fast-charging equipment).
  • GB/T 27930-2015 — Communication protocol between off-board conductive chargers and battery management systems for EVs.
  • GB/T 18487.1-2015 — General safety and performance requirements for EV conductive charging systems.

The GB/T DC connector uses a different physical interface and communication protocol than CCS. This means European charging hardware designed for CCS cannot be directly deployed in China without significant redesign. Foreign manufacturers must invest in dedicated R&D to produce GB/T-compliant chargers, or partner with local OEMs who already possess the necessary certifications and IP.

4.2 CQC Certification (China Quality Certification)

All EV charging equipment sold in China must carry CQC (China Quality Certification) mark, administered by the China Quality Certification Centre. CQC certification is mandatory for grid-connected charging equipment and involves rigorous testing at accredited Chinese laboratories for electrical safety, electromagnetic compatibility (EMC), environmental endurance (temperature, humidity, dust, and waterproofing to IP54 or higher), and communication protocol compliance. The certification process typically takes 6–12 months and costs between RMB 300,000 and RMB 800,000 ($42,000–$112,000) per product family, depending on the complexity of testing required.

4.3 Grid Connection Approvals

Connecting charging stations to China’s power grid requires approval from the local branch of the State Grid Corporation of China or China Southern Power Grid (depending on the region). The approval process includes a technical review of the station’s impact on grid stability, power quality, and demand-response capabilities. Foreign companies operating charging networks must also comply with the Administrative Measures for the Construction and Operation of Electric Vehicle Charging Infrastructure (issued by the NDRC in 2023), which mandates real-time data reporting to provincial charging facility monitoring platforms.

4.4 Data Localization and Cybersecurity

China’s Cybersecurity Law (2017), Data Security Law (2021), and Personal Information Protection Law (2021) impose strict requirements on the collection, storage, and transmission of data generated by charging infrastructure. Charging station data (including user location, charging patterns, payment information, and vehicle battery data) is classified as “important data” under these laws. Foreign companies must store all such data on servers physically located in China and obtain user consent for data collection. Cross-border data transfers require a security assessment by the Cyberspace Administration of China (CAC), a process that can take several months. Non-compliance can result in fines of up to 5% of annual revenue or revocation of business licenses.

4.5 Foreign Investment Restrictions

Under China’s Special Administrative Measures (Negative List) for Foreign Investment Access, EV charging infrastructure is not on the “prohibited” list, meaning 100% foreign ownership of charging network companies is legally permitted. However, in practice, foreign companies face indirect barriers: government subsidies for charging station construction are often explicitly or implicitly tied to domestic companies; access to prime real estate (e.g., highway service areas, parking lots in government buildings) is easier for state-owned enterprises; and provincial governments may impose informal “local content” requirements in public tenders. These barriers make a joint venture with a well-connected Chinese partner a more practical entry path than a wholly foreign-owned enterprise (WFOE).

💡 Key Regulatory Insight

The total cost of regulatory compliance for a foreign EV charging company entering China—including GB/T redesign, CQC certification, grid connection approvals, and legal setup—can reach $2–$5 million before a single charger is sold. This high upfront cost underlines the importance of a clear, long-term commitment strategy rather than a short-term market test.

5. Partnership Strategies: Joint Ventures, Licensing, and Alliances

Given the regulatory complexity, cost pressures, and local market knowledge required, partnership strategies are central to virtually every European EV charging company’s China entry plan. Three dominant models have emerged.

5.1 Joint Ventures with Domestic Charging Operators

The most common structure is a joint venture (JV) between a European technology provider and a Chinese partner that brings manufacturing capability, regulatory relationships, and distribution access. ABB’s restructured China charging business operates on this model, as did Siemens’ early-stage partnerships. A typical JV structure allocates 40–49% equity to the European partner (below the 50% threshold that would require more stringent Chinese government review under the Foreign Investment Law) and 51–60% to the Chinese partner. The European company typically contributes intellectual property, core technology components, and quality control processes, while the Chinese partner manages local manufacturing, regulatory approvals, and sales to state-owned customers.

Advantages of the JV model include faster regulatory approvals (the Chinese partner’s existing certifications can often be extended to cover JV products), access to subsidized financing through Chinese banks, and eligibility for government procurement contracts that require domestic registration. Disadvantages include potential IP leakage risks, profit-sharing that reduces margins, and strategic conflicts if the partners’ objectives diverge over time.

5.2 Technology Licensing and OEM Agreements

Several European companies have opted for a lighter-touch technology licensing model, in which a Chinese manufacturer produces GB/T-compliant chargers using European-designed power electronics, control systems, or enclosure designs, sold under either the European brand or a co-brand. This model is attractive for companies seeking to test the market without establishing a full legal and manufacturing presence. ChargePoint’s OEM agreement with a Chinese manufacturer is the clearest example of this approach.

The licensing model minimizes capital at risk and allows faster time-to-market (6–12 months versus 18–36 months for a wholly owned operation). However, it offers limited control over quality, pricing, and brand positioning. Licensees may be tempted to use the partnership to absorb technology and then compete independently—a risk that requires careful contractual protections, including limitations on technology transfer scope, exclusive distribution territories, and non-compete clauses.

5.3 Strategic Alliances with Automakers

A more recent approach involves strategic alliances with Chinese EV automakers. Since Chinese EV manufacturers (BYD, NIO, Xpeng, Li Auto, and others) are expanding their own charging networks to support vehicle sales, they are natural partners for European charging technology companies. Siemens’ partnership with NIO Power exemplifies this model: Siemens provides grid integration and energy management software, while NIO handles hardware deployment and user acquisition. These alliances leverage the automaker’s brand trust and customer base while allowing the European partner to focus on its core technology strengths.

A variation of this model is the supplier relationship, where European companies become Tier-1 or Tier-2 component suppliers to Chinese charging equipment manufacturers. ABB, for example, has supplied power modules to several Chinese charging OEMS, even as its own complete-charger business faced competitive pressures. Similarly, Infineon (Germany) supplies IGBT power semiconductors used in Chinese-manufactured chargers, while Rohm Semiconductor (Japan) and STMicroelectronics (Switzerland) compete for power IC sockets in Chinese products. This supply-chain role, while less visible than a consumer brand, can be highly profitable and is less exposed to market access restrictions.

📊 Partnership Strategy Comparison Matrix
Table 2: A comparison of the three primary partnership models for European EV charging companies in China.
Model Capital Required Time to Market IP Risk Control Profit Potential
Joint Venture High ($5M+ ) 18–36 months Medium–High Shared Medium–High
Tech Licensing / OEM Low (<$1M) 6–12 months High Low Low–Medium
Strategic Alliance (Auto OEM) Medium ($1M–$5M) 12–24 months Low–Medium Moderate Medium

6. Challenges Facing European EV Charging Companies in China

The hurdles confronting European companies in China’s EV charging market are substantial and multidimensional. We examine the most significant challenges below.

6.1 Intense Price Competition

The single greatest challenge is price. Chinese domestic manufacturers have driven the cost of DC fast chargers to unprecedented lows. A 60 kW DC fast charger from a Chinese manufacturer costs approximately RMB 25,000–40,000 ($3,500–$5,600), while a comparable European-manufactured charger costs €8,000–€12,000 ($8,800–$13,200)—two to three times more. Even when European companies localize production in China, they struggle to match domestic pricing due to their higher component sourcing costs, more stringent quality assurance processes, and more generous warranty provisions. Chinese consumers and business buyers are highly price-sensitive and often view a European brand premium as unjustified, especially for a utilitarian product like a charging station.

6.2 Standards Incompatibility and R&D Costs

The GB/T standard’s divergence from CCS and CHAdeMO means that European companies cannot simply adapt their existing products; they must invest in ground-up redesign for the Chinese market. This R&D investment is difficult to recoup given the pricing pressures described above. The recent introduction of GB/T 20234.4-2024 (the “ChaoJi” super-fast charging standard, capable of up to 900 kW) adds further complexity, as companies must now decide whether to develop chargers for the legacy GB/T standard, the emerging ChaoJi standard, or both. Each new standard iteration requires fresh certification and testing cycles.

6.3 Government Subsidy Tied to Domestic Companies

Although China’s WTO commitments formally prohibit discriminatory subsidies, in practice many provincial and municipal subsidy programs for charging infrastructure are designed in ways that advantage domestic companies. For example, subsidies may require that the charging equipment be manufactured in the province, that the operator have a certain minimum number of chargers already deployed in the province (favoring incumbents), or that the company be classified as a “domestic enterprise” under Chinese law. While a WFOE or JV can meet some of these criteria, the subsidies are often calibrated to the scale and speed of deployment that only large domestic players can achieve.

6.4 Intellectual Property Risks

China has made significant progress in IP protection in recent years, but enforcement remains uneven, particularly in fast-moving technology sectors like EV charging. Foreign companies report that reverse engineering of their charging hardware is a persistent concern, especially in OEM and licensing arrangements. Patent infringement cases in Chinese courts are expensive and slow, and the burden of proof often falls heavily on the foreign plaintiff. Trade secret protection is challenging when manufacturing is outsourced to a Chinese partner with access to detailed schematics, firmware, and testing protocols.

6.5 Grid Interconnection and Land Access

Even after obtaining regulatory approvals, foreign companies face operational challenges in securing grid connections and prime locations. State Grid, as both the grid operator and a direct competitor in the charging market, has an inherent conflict of interest. Foreign-funded charging stations may face longer interconnection timelines and higher grid-upgrade fees. Similarly, access to prime charging locations—highway service areas, airports, shopping mall parking lots, and government building parking—often requires relationships that foreign companies lack. Domestic operators have already locked up many of the best locations through long-term exclusive contracts with property owners.

The Chinese EV charging market is not for the faint of heart. It rewards scale, patience, and deep local relationships. European companies that come with a short-term profit expectation will be disappointed. Those that view China as a long-term learning and manufacturing base, and are willing to compete on quality and reliability rather than lowest price, have a fighting chance.

— Head of E-Mobility, European industrial conglomerate (anonymous, speaking at BloombergNEF Summit, Shanghai, 2024)

7. Key Success Factors and Lessons Learned

Despite the challenges, several European companies have achieved meaningful positions in China’s EV charging market. The following success factors emerge from their experience.

7.1 Deep Localization Beyond Manufacturing

Successful European players recognize that localization must extend far beyond assembly. ABB’s China charging business, for example, invested in a full-spectrum local R&D team that designed GB/T chargers from scratch in Shanghai, rather than adapting European designs. This team had the autonomy to make sourcing decisions, select local component suppliers, and optimize products for Chinese cost targets. Similarly, Siemens placed a dedicated eMobility team in Beijing with authority over partnership negotiations and product adaptation, reporting to Siemens China rather than to the global eMobility headquarters in Munich.

7.2 Differentiating on Reliability and Lifetime Cost

While Chinese chargers win on initial purchase price, they often have higher failure rates and shorter service lives than European-manufactured equipment. A 2024 study by the China Electricity Council found that the average uptime of DC fast chargers from top-tier European brands was 98.7%, compared to 93.2% for the average Chinese domestic charger. European companies that successfully communicate their total cost of ownership (TCO) advantage—lower maintenance costs, fewer truck rolls for repairs, higher revenue per charger due to higher uptime—can justify a price premium of 15–25% in segments where reliability matters most, such as highway corridors and fleet depots.

7.3 Strategic Use of Chinese Standards “Upgrades”

As China transitions to the ChaoJi super-fast charging standard (GBT 20234.4-2024), European companies have an opportunity to compete on technology leadership in a new standard that is not yet dominated by entrenched domestic players. Companies that invest early in ChaoJi-compatible products and participate in the standard-setting process through organizations like the China Electricity Council (CEC) and the Standardization Administration of China (SAC) can position themselves as technology leaders rather than price followers.

7.4 Focusing on Adjacent Services, Not Just Hardware

The most successful European companies in China’s EV charging market are those that sell solutions, not just boxes. Siemens’ emphasis on V2G software, grid integration services, and energy management platforms generates recurring revenue with higher margins than hardware. Schneider Electric’s EVlink chargers are sold as part of a broader building energy management ecosystem, allowing the company to compete on system-level value rather than per-unit charger price. ABB has expanded its China service offerings to include remote monitoring, predictive maintenance, and energy trading optimization for large charging station operators.

7.5 Lessons from Failed or Stalled Entries

The experiences of companies like Efacec and several smaller European startups offer cautionary lessons. The most common failure pattern is underestimating the time and cost of regulatory compliance. One startup spent 14 months obtaining CQC certification for a single charger model, by which time three cheaper Chinese competitors had launched comparable products. Another common failure is choosing the wrong partner—entering a JV with a partner that lacks genuine influence with regulators or grid operators, leading to stalled approvals and poor market access. Finally, companies that treat China as a “testing ground” with minimal resource commitment consistently fail; success requires dedicated teams, patient capital, and a willingness to adapt products to local market realities rather than offering global products unchanged.

📈 Success Factor Summary

Based on the experience of ABB, Siemens, and other European charging firms in China, the five critical success factors are: (1) full-spectrum localization beyond manufacturing, (2) TCO-based value proposition rather than price competition, (3) early investment in new standards (ChaoJi), (4) service-layer differentiation, and (5) selection of a high-impact local partner with genuine regulatory and grid access influence.

Official Sources

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