Due to the rising global demand for commercial and industrial (C&I) energy storage, GSL ENERGY has officially released multiple new-generation all-in-one C&I Energy Storage Systems (C&I ESS).
The new product lineup encompasses both liquid-cooling and air-cooling technology, achieving greater flexibility in power and capacity configurations. This comprehensively meets the diverse application needs of various scenarios, including industrial parks, manufacturing plants, commercial complexes, and distributed energy resources.
The core newly released products include:
GSL-BESS125K418 Liquid-cooling All-in-one ESS
GSL-BESS125K261 Liquid-cooling All-in-one ESS
GSL-BESS80K261 Liquid-cooling All-in-one ESS
GSL-BESS125K241 Air-cooling All-in-one ESS
GSL-BESS125K215 Air-cooling All-in-one ESS
Covering a power range of 80kW–125kW and a capacity range of 215kWh–418kWh, the products support flexible selection and project-level customization. They are suitable for various typical C&I application scenarios such as peak shaving & valley filling, demand management, PV-storage integration, and backup power.
As the technological core of this new release, GSL's self-developed high-voltage BMS (Battery Management System) has achieved significant breakthroughs once again:
Ultra-Wide Voltage Platform: 100–1000Vdc high-voltage DC architecture meets the needs of mainstream and future C&I energy storage systems.
Multiple Current Specifications Available: Supports 100A/ 200A/300A, offering flexible matching for system designs across different power ranges.
System-Level Safety & Refined Management: Achieves cell-level monitoring, balancing control, high-precision SOC/SOH algorithms, and multiple active protection strategies.
This high-voltage BMS is not designed for "single product adaptation" but is architected with the goals of platformization, engineering robustness, and long-term evolution, providing the foundational guarantee for the stable operation and long-term returns of C&I energy storage systems.
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Currently, GSL's high-voltage BMS has completed system-level adaptation and joint commissioning verification with the Solis C&I energy storage inverter platform. It has also achieved comprehensive compatibility with multiple leading brands' 125kVA C&I energy storage inverter series, including Deye, Solis, Fox ESS, Solinteg, and Inhenergy.
Through deep adaptation of BMS-PCS communication protocols and physical joint commissioning verification, system consistency is ensured across grid connection control, power response, protection logic, and operational strategy. This significantly reduces project integration risks and shortens delivery cycles.
Compatibility is not just "parameter matching" but system-level verification. This is precisely the core competitive edge of GSL high-voltage BMS.
Liquid-Cooling All-in-one ESS:
Constant temperature control ensures better cell consistency.
Suitable for high-temperature, high-load, long-lifespan application scenarios.
Higher system efficiency and life-cycle value.
Air-Cooling All-in-one ESS:
Mature structure and convenient maintenance.
Balanced cost and performance, ideal for rapid deployment in standardized C&I projects.
Through its unified high-voltage BMS platform, GSL delivers consistent control logic and operational experience across different thermal management architectures. This empowers customers to select the optimal model based on project needs, rather than being constrained by system limitations.
From cell selection to system architecture, from hardware design to software algorithms, GSL ENERGY consistently adheres to the "self-developed core technology" strategy. This concentrated launch of multiple new products is not merely an upgrade of the product portfolio but a concentrated demonstration of the platform capabilities of GSL's high-voltage BMS.
In the future, GSL will continue to deepen the technical collaboration with global mainstream PCS manufacturers, driving the evolution of C&I energy storage systems towards being safer, more efficient, easier to integrate, and delivering greater long-term value.