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Connection, Insight, Co-Creation: Seeking the Next-Gen Answers in Charging Technology
11
12
2025

Industrial evolution has never been a linear breakthrough driven by a single technology, but a systemic transformation born from countless interconnected nodes.
Today, innovation in charging technology has moved beyond simple power-level upgrades, evolving into a complex synergy spanning materials science, power electronics, artificial intelligence, and energy management. Finding the next-generation answer can no longer be accomplished within a closed laboratory or a single product line—it requires a unique arena capable of overseeing the whole landscape and catalyzing reactions across it.


Bridging Technological Islands, Catalyzing System-Level Innovation

True breakthroughs often emerge at the intersections of industries and disciplines. Key challenges now lie in questions such as:

  • How can the extreme power density and rapid-iteration philosophy of consumer electronics provide a pathway to miniaturization and cost reduction for ultra-fast EV charging?

  • How can the rigorous reliability standards and energy-recovery mechanisms from industrial electronics empower charging networks to become intelligent nodes that also stabilize the grid?

When engineering philosophies and technical languages from different fields are brought onto the same platform, their fusion becomes the source of solutions beyond the limits of current imagination.

This high-density “connection” aims to break traditional industry silos and integrate innovations such as wireless charging, wide-bandgap semiconductors, intelligent thermal management, and new battery chemistries—turning them into enabling forces for charging needs across scenarios, from wearable devices to heavy-duty commercial machinery.


Decoding Emerging Trends, Anchoring the Future Value Chain

In a landscape full of competing technical routes, discerning the fundamental trends matters more than chasing short-lived hotspots. Today, industries are converging around several irreversible directions:

  • The charging sector is shifting from “infrastructure deployment” to “operations” and “value creation.”

  • Green, low-carbon practices across the full lifecycle have become rule, not choice.

  • Charging infrastructure and the grid are evolving from “managed charging” toward “market-participating assets” that generate value.

  • Artificial intelligence is deeply reshaping operations, optimization, and safety assurance.

A forward-looking platform creates value by cutting through surface noise to reveal the forces that shape the future—helping participants anticipate sustainable technological pathways and upcoming business models, enabling strategic positioning ahead of time.


Co-building the Future Ecosystem, Defining Industry Standards

The next generation of charging technology will not be defined by any single company—it will be co-created by a healthy, open, and collaborative industrial ecosystem.

The 2026 World Charging Technology and Facility Exhibition is designed to become this core arena of connection, insight, and co-creation. It brings together global leading enterprises, academic institutions, investors, and procurement decision-makers onto one unified interface—spanning technology foresight, business matchmaking, and ecosystem collaboration. In this setting, the journey to find the answers becomes part of defining the answers themselves.

This exploration, rooted in technological connection, carries meaning far beyond business.

The next-generation answer for charging technology is ultimately about designing a more efficient, resilient, and sustainable global energy-use system. It directly influences deep decarbonization in transportation, supports the stable operation of a new power system dominated by renewables, and becomes a critical benchmark for a country’s technological competitiveness and industrial leadership in the global energy transition.

To participate in this pursuit is not only to stay aligned with the pulse of the industry—but to take part in shaping the future energy landscape.