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From Grid Management to Value Creation: JingTsing Digital Power Redefines Transformer-Level Energy Storage
2026-07-31

From Grid Management to Value Creation: JingTsing Digital Power Redefines Transformer-Level Energy Storage

Addressing Distribution Network Challenges: How Transformer-Level Energy Storage Solves Five Key IssuesToday’s distribution networks face a range of critical challenges, including transformer overload, bidirectional power flow overload, three-phase imbalance, harmonic distortion, reactive power imbalance, insufficient power supply reliability, and difficulties in renewable energy integration.Traditional solutions, such as transformer capacity expansion and grid infrastructure upgrades, often involve high investment costs and long implementation cycles, making it difficult to balance economic efficiency and rapid deployment.As a distributed energy storage solution deployed on the low-voltage side of distribution transformers, transformer-level energy storage is designed to address these challenges by improving grid flexibility, stability, and renewable energy utilization.01 | Overcoming Reverse Power Flow from Distributed PVBy the end of 2025, China’s cumulative distributed photovoltaic (PV) capacity had exceeded 530 GW. During peak solar generation periods at noon, PV output can significantly exceed local load consumption capacity, causing reverse power flow toward upstream grids.Transformer-level energy storage enables local absorption of excess PV generation through charging, effectively mitigating reverse power flow issues and improving renewable energy utilization.02 | Managing Voltage Fluctuations and Voltage ViolationsIn rural distribution networks, long feeder lines often cause voltage drops during peak electricity demand periods, while high PV generation can lead to excessive voltage rise.Transformer-level energy storage functions as an intelligent power regulation device, dynamically absorbing or injecting power to maintain voltage within a safe and stable operating range.03 | Precise Three-Phase Imbalance MitigationMany rural distribution transformer areas contain a large proportion of single-phase loads with highly variable consumption patterns. Severe three-phase imbalance can increase neutral line current, trigger zero-sequence protection malfunctions, and significantly increase line losses.JTES-SiC130K-A adopts a phase-level independent control topology, enabling real-time monitoring of three-phase load variations and differentiated current compensation for each phase. This allows dynamic balancing of phase power and significantly improves distribution network efficiency.04 | Reactive Power Compensation and Power Factor ImprovementThe combination of inductive loads, such as air conditioners, pumps, and motors, together with distributed PV systems, can result in reactive power imbalance.With millisecond-level response capability, transformer-level energy storage can dynamically inject or absorb reactive power, improving the grid connection point power factor to above 0.95, reducing line losses, and releasing available transformer capacity.05 | Enhancing Power Supply ReliabilityRural and remote distribution transformer areas often suffer from long feeder distances and higher risks of outages caused by lightning strikes or external damage. Annual outage durations can range from several hours to more than ten hours.During unexpected grid failures, critical loads such as communication base stations and agricultural temperature-control systems may face service interruptions.By integrating with STS (Static Transfer Switch) technology, transformer-level energy storage enables a seamless grid-connected/off-grid transition system, ensuring uninterrupted power supply for critical loads.From Parameter Competition to Scenario-Based CompetitionAs transformer-level energy storage moves toward large-scale deployment, market evaluation criteria are evolving.Customers are no longer focused solely on PCS conversion efficiency. They increasingly value whether products truly understand distribution network operating characteristics and whether they can precisely adapt to real-world transformer-level energy storage applications.In the future, PCS competition will shift from “parameter-driven competition” to “scenario-driven competition.”The companies capable of solving real distribution network challenges will define the future market.JTES-SiC130K-A: Precisely Designed for Transformer-Level Energy Storage ApplicationsBased on the operational characteristics of distribution networks and the practical requirements of transformer-level energy storage, JingTsing Digital Power’s JTES-SiC130K-A String-Type SiC Intelligent Air-Cooled Energy Storage PCS has been specifically optimized for applications requiring:High-frequency power regulationFast responsePhase-level independent controlHigh reliabilityLong-term stable operationThrough optimized control strategies, system architecture, response performance, and environmental adaptability, JTES-SiC130K-A achieves precise alignment between product capabilities and transformer-level energy storage scenarios.01 | Millisecond-Level Response for Faster Grid RegulationFacing scenarios such as rapid PV output fluctuations, concentrated EV charging, and dynamic load changes, JTES-SiC130K-A provides 20 ms-level active and reactive power response, enabling rapid charge/discharge switching and timely voltage stabilization.It delivers flexible distribution network regulation, keeping transformer areas operating in an optimal state.02 | Phase-Level Control for More Accurate Three-Phase ManagementUnlike conventional PCS solutions, JTES-SiC130K-A adopts a three-phase four-leg topology with independent phase control capability.The system continuously monitors three-phase load variations and dynamically compensates phase power, achieving precise three-phase imbalance mitigation.The imbalance level can be controlled within 2%–4%, effectively reducing line losses and improving distribution network efficiency.03 | Seamless Grid-Connected/Off-Grid Switching for Continuous Power SupplyJTES-SiC130K-A supports seamless grid-connected/off-grid switching within 20 ms and can handle 100% three-phase unbalanced loads.With support for VF/VSG operating modes and black start capability, the system can rapidly establish a microgrid during grid failures, enabling zero-interruption power supply for critical loads.It provides reliable energy security for industrial production, commercial operations, and critical public facilities.04 | Intelligent Energy Management: Transforming Storage from Grid Tool into Energy AssetFuture transformer-level energy storage will not only support distribution network management but also participate in electricity market operations.Equipped with standardized communication interfaces and open protocols, JTES-SiC130K-A enables deep integration with EMS, dispatch platforms, and Virtual Power Plant (VPP) systems.It supports applications including PV peak regulation, demand response, and VPP aggregation transactions, maximizing the operational value of energy storage assets.05 | Full SiC High-Efficiency Architecture for Long-Term Value CreationJTES-SiC130K-A adopts advanced SiC power modules, achieving:>99% peak conversion efficiency>98% rated efficiencyThe high-efficiency architecture significantly improves the lifecycle economics of energy storage systems.Compared with conventional solutions, JingTsing Digital Power’s modular SiC packaging design enhances device consistency and thermal balance while maintaining exceptional efficiency, ensuring stable and reliable long-term operation.06 | Designed for Harsh Environments and Complex Operating ConditionsTransformer-level energy storage systems are typically deployed in outdoor substations, box-type transformers, and other unattended environments, requiring reliable operation under extreme conditions including high temperature, low temperature, humidity, and dust exposure.Following the philosophy of “Scenario-Driven Product Design,” Jingqing Digital Power continuously enhances product adaptability for long-term distribution network operation.JTES-SiC130K-A supports:Wide operating temperature range: -30°C to +60°CFull-power operation without derating at 50°CHigh-voltage DC integrated design for improved system safetySealed and encapsulated power components for enhanced protection against moisture, dust, and insectsThe product is designed for reliable long-term operation in industrial parks, mining sites, coastal areas, and other demanding environments.Scenario-Driven Innovation Defines the New Standard for Transformer-Level Energy Storage PCSWith the continued development of high-quality distribution networks, transformer-level energy storage is becoming a critical connection between renewable energy, power grids, and end users, and will serve as a key infrastructure component for future flexible distribution systems.For transformer-level energy storage applications, PCS is not merely an energy conversion device — it is the “intelligent brain” of the entire system.It determines system efficiency, grid management performance, and the long-term value of energy storage assets.JingTsing Digital Power remains committed to driving technological innovation through real-world application scenarios. By continuously enhancing PCS capabilities in fast response, precise control, intelligent dispatch, and environmental adaptability, the company delivers solutions that better understand transformer-level energy storage requirements, better fit distribution network applications, and better support the future evolution of power systems.Looking ahead, JingTsing Digital Power will continue focusing on core PCS technology innovation, providing safer, more efficient, and more reliable energy storage products and solutions to accelerate the development of advanced distribution networks and contribute to a more flexible and resilient global new energy system.

JingTsing Officially Launches Langfang Smart Manufacturing Facility
2026-06-10

JingTsing Officially Launches Langfang Smart Manufacturing Facility

On June 10, JingTsing officially celebrated the commissioning of its Langfang Smart Manufacturing Facility, marking a major milestone in the company's growth.Distinguished guests attending the ceremony included Prof. Li Yongdong, Academician and Professor of the Department of Electrical Engineering at Tsinghua University; Dr. Guan Eryong, Founder, Chairman and CEO of JingTsing; Yu Penghui, Deputy Director of the Langfang Bureau of Industry and Information Technology; Zhang Huawei, Chairman of Langfang Caixin Investment Group; representatives from Qihang Capital, manager of the Langfang Talent Fund; JingTsing's management team; and business partners from across the industry.The launch of the Langfang facility marks the official realization of JingTsing's dual-engine strategy, integrating world-class R&D capabilities with intelligent manufacturing to support the company's next phase of scalable, smart, and global growth.A New Chapter for Intelligent ManufacturingIn his opening remarks, Dr. Guan Eryong, Founder, Chairman and CEO of JingTsing, described the new facility as a significant milestone in the company's development.He emphasized that the factory will leverage advanced intelligent production lines to accelerate the commercialization of core products, including high-voltage liquid-cooled PCS and grid-forming energy storage systems, while further strengthening R&D investment in next-generation technologies such as Solid-State Transformers (SST) and Solid-State DC Transformers (SSDD) for AI infrastructure.Dr. Guan also expressed his sincere appreciation to government authorities, industry experts, investors, and business partners for their continued trust and support.Government and Industry Leaders Recognize Strategic ValueZhang Huawei, Chairman of Langfang Caixin Investment Group, congratulated JingTsing on the successful launch of the facility, highlighting the company's technological strengths and strong growth potential in the energy storage sector.He noted that the project represents an important milestone in the development of the regional new energy industrial cluster and expressed confidence that JingTsing will further integrate with the local industrial ecosystem, leveraging both regional advantages and advanced manufacturing capabilities to promote high-quality development of the new energy and high-end equipment manufacturing industries.Prof. Li Yongdong of Tsinghua University also delivered remarks, sharing insights into the future of the energy storage industry from the perspectives of technological innovation, industrial development, and industry-academia collaboration.He highly recognized JingTsing's achievements in high-voltage energy storage, liquid-cooled technologies, and grid-forming energy storage systems, encouraging the company to continue strengthening R&D, deepening collaborative innovation, and contributing to the global transition toward clean and low-carbon energy.Official Commissioning CeremonyFollowing the speeches, invited leaders and distinguished guests jointly participated in the commissioning ceremony by activating the symbolic launch pillar, officially announcing the start of operations at the Langfang Smart Manufacturing Facility.The ceremony marked the beginning of a new chapter in JingTsing's manufacturing capabilities and was celebrated by all attendees.Intelligent Manufacturing Driven by DigitalizationAfter the ceremony, guests toured the production facility to observe JingTsing's fully digitalized manufacturing process for high-voltage energy storage PCS products.The production line integrates intelligent assembly, automated performance testing, robotic material handling, AGV logistics, and a Manufacturing Execution System (MES) for comprehensive digital quality management.The facility's advanced automation, stringent quality control processes, and internationally aligned manufacturing standards received high praise from government officials and industry experts.Strengthening Global Manufacturing CapacityThe commissioning of the Langfang Smart Manufacturing Facility completes JingTsing's integrated innovation chain—from advanced R&D to intelligent manufacturing—significantly enhancing production capacity, delivery efficiency, and large-scale supply capabilities.As the company's core manufacturing hub and global delivery center, the facility will provide strong production support for JingTsing's expanding portfolio of advanced energy storage products and accelerate the company's international market growth.Looking ahead, JingTsing will continue embracing innovation and global collaboration, delivering safer, smarter, and more efficient energy storage technologies while contributing to the development of a sustainable, resilient, and low-carbon global energy system.

04-01
2026

JingTsing Showcases Liquid-Cooled PCS at ESIE 2026, Unlocking New Possibilities for Energy Storage

The 14th Energy Storage International Conference and Expo (ESIE 2026) officially opened today at the Capital International Exhibition & Convention Center in Beijing.As one of the world's largest and most influential energy storage exhibitions, ESIE 2026 brings together more than 1,000 exhibitors from over 50 countries and regions, providing a premier platform to showcase the latest technologies and explore the future of the global energy storage industry.At this year's exhibition, JingTsing proudly presents its latest Liquid-Cooled Power Conversion System (PCS) solutions, demonstrating cutting-edge technologies designed to meet the evolving needs of utility-scale, commercial, and industrial energy storage applications.We warmly welcome industry professionals, partners, and customers to visit our booth and explore new opportunities together.Strong Interest from Industry ProfessionalsFrom the opening day, JingTsing's booth attracted significant attention from industry experts, project developers, system integrators, and customers.Our technical specialists engaged visitors through in-depth discussions on liquid-cooled PCS technologies, product advantages, and application scenarios, providing tailored technical consultation and solution recommendations for a wide range of energy storage projects.The booth quickly became one of the exhibition's highlights, reflecting strong market interest in next-generation liquid-cooled PCS technologies.Featured Product: 430 kW Liquid-Cooled String PCSAt ESIE 2026, JingTsing is showcasing its DC1500V / AC690V 430 kW String-Type Liquid-Cooled PCS, specifically developed for utility-scale and long-duration energy storage applications.Designed to support 600 Ah+ high-capacity battery cells, the system adopts a "one cluster, one management" architecture, enabling flexible configuration for energy storage systems with different discharge durations while simplifying system integration.Key FeaturesCompact Integrated DesignOptimized dimensions enable flexible installation inside DC battery containers and improve system integration.High-Voltage Integration ReadySupports integrated high-voltage cabinet architecture with excellent scalability for long-duration energy storage systems.Reliable Full-Power Operation at High Ambient TemperaturesDelivers continuous full-load performance with cooling water inlet temperatures up to 50°C.Grid-Forming CapabilitySoftware-defined grid-forming functionality enables coordinated string-level operation and active grid support for enhanced system stability.Meet JingTsing at ESIE 2026Exhibition InformationDate: April 1–3, 2026Venue: Capital International Exhibition & Convention Center, BeijingBooth: B2-C09We look forward to welcoming customers, partners, and industry professionals to our booth for face-to-face discussions on the latest innovations in liquid-cooled energy storage technologies.Together, we can explore new opportunities, advance next-generation power systems, and accelerate the global transition toward a cleaner, smarter, and more sustainable energy future.

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