
In the first half of 2026, Sunwoda experienced strong growth in orders for its AIDC energy solutions, highlighting the increasing demand for reliable and intelligent power infrastructure as AI computing continues to expand rapidly. As AI workloads become more complex, data centers are facing higher requirements for power density, response speed, system reliability, and intelligent energy management.
Recently, CCTV Finance visited Sunwoda’s intelligent AIDC manufacturing facility as part of its Economic Half-Hour program, showcasing the company’s complete production process, from battery cell manufacturing and battery pack assembly to system testing and final delivery.
The rapid growth of AI applications is driving significant changes in data center power requirements. Higher server power density and constantly changing computing workloads require energy systems capable of providing stable power output, rapid response, and efficient energy management.
“We are entering the third energy revolution, characterized by low-carbon energy generation, intelligent energy management, and increasingly electrified consumption. Energy storage plays a key role at the intersection of these three trends,” said Richard Liang, Vice President and Chief Sustainability Officer of Sunwoda, during the CCTV Finance interview.
According to Liang, AIDC backup power represents an emerging opportunity for the energy storage industry. “AI computing ultimately depends on electricity,” he noted, emphasizing that safety and intelligent energy management will become essential elements of future data center power systems.
With the evolution of AI infrastructure, batteries are no longer limited to emergency backup applications. They are increasingly being used for rapid load balancing, power stabilization, and intelligent energy optimization to support the dynamic requirements of AI data centers.
Sunwoda’s dedicated AIDC energy solution adopts a highly integrated modular architecture, delivering up to 760 kW of power per cabinet. The high-power-density design helps reduce system footprint while improving overall cost efficiency.
The solution supports 5C pulse charging and 10C high-power discharge, enabling fast responses to sudden changes in AI computing demand. Based on its advanced high-rate lithium-ion cell technology, Sunwoda has developed a product portfolio featuring 6C and 10C high-rate cells, combined with an 800V high-voltage platform.
The prefabricated system design simplifies onsite installation, integration, and commissioning, helping accelerate project deployment. In addition, Sunwoda is promoting an integrated “backup power + energy storage” solution model to address broader energy management requirements throughout AI data center operations.
With nearly 30 years of experience in battery technology development and a decade of expertise in energy storage systems, Sunwoda has built comprehensive capabilities covering battery cells, battery packs, battery management systems (BMS), integrated BMS solutions, bidirectional DC-DC modules, system integration, testing, validation, and complete system delivery.
This vertically integrated approach allows Sunwoda to coordinate improvements across multiple areas, including battery performance, system safety, power response capability, and manufacturing quality.
The company is also applying its self-developed industrial AI simulation platform throughout product development and manufacturing processes. Sunwoda’s next-generation AIDC BMS integrates electrochemical impedance spectroscopy (EIS) technology with AI Agent capabilities, enabling more accurate cell health evaluation, early risk detection, and improved state-of-charge (SOC) and state-of-health (SOH) estimation.
To support increasing market demand, Sunwoda is expanding its production capacity for AIDC battery cells, battery packs, and integrated energy storage systems. Two additional production lines are expected to begin operations in the third quarter of 2026.
Meanwhile, the company is advancing overseas capacity expansion plans based on global customer demand, with related projects expected to gradually enter deployment from 2027 onward.
By combining high-rate battery technology, intelligent energy management, and scalable manufacturing capabilities, Sunwoda is strengthening the power infrastructure required to support the continued growth of AI computing and next-generation data centers.
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