Powering the Low-Carbon Future: How Formosa Smart Energy Tech Exemplifies Taiwan’s Smart Energy Pavilion
Featured Case Study: Formosa Smart Energy Tech Corporation (FSET)
Established in 2022 through a joint investment from Formosa Plastics Group, Nan Ya Plastics, Formosa Petrochemical, Formosa Chemicals & Fibre, and Formosa Biomedical, Formosa Smart Energy Tech Corporation (FSET) integrates upstream, midstream, and downstream resources across energy saving, energy storage, new energies, and recycling. Anchored by the completion and mass production of its 2.1GWh plant in Changhua Coastal Industrial Park—built with an investment exceeding tens of billions of NTD as Taiwan’s largest lithium iron phosphate (LFP) battery cell base—FSET delivers a 100% Made-in-Taiwan (MIT), Non-China supply chain to energy storage and EV markets.
FSET secured large-scale orders prior to mass production and initiated Phase 2 expansion. Confirmed shipments include 100MW/350MWh storage projects, e-bus battery packs, e-logistics test packs, and a UPS system tailored for U.S. data centers and AI computing. Showcased at Taiwan Expo USA, FSET’s UL-certified, 3TG-free LFP cells feature high-rate Energy (2C) and Power (3C/9C) configurations. Its containerized Energy Storage Systems pack up to 4.6MWh into a 20ft container with C5 corrosion resistance and built-in fire suppression, empowering green computing and grid infrastructure with safe, sustainable, and fully integrated LFP battery solutions.
Pavilion Overview: Smart Energy
Smart Energy focuses on the power generation, energy storage, energy management, energy efficiency, and resource circularity required for the global energy transition. Demonstrating how cities, industries, and transportation environments can build stable, efficient, and sustainable power systems, the pavilion showcases Taiwan's integrated capabilities across low-carbon energy applications.
The pavilion highlights building-integrated solar solutions, hydrogen and distributed energy, energy storage and management, charging infrastructure, low-carbon materials, low-carbon mobility, and recycling technologies. Building-integrated solar improves urban renewable generation while maintaining architectural consistency, while energy storage enables flexible power dispatch and system resilience. Low-carbon materials enhance performance across energy, electronics, and transportation sectors, while hydrogen and recycling technologies extend resource circularity. By uniting efficiency, flexibility, and circular value, Taiwan demonstrates how it supports the U.S. transition toward an intelligent, resilient, and low-carbon energy future.
Additional Solutions
minica blends European retro aesthetics with a scalable IoT cloud ecosystem, localized assembly, and recyclable materials to fulfill global ESG commitments. Designed to replace a family gas SUV, its low-gravity frame features smart torque sensing and dual motors for effortless fully-loaded starts. Equipped with CBS braking and a high-capacity battery that reduce braking distance and charging frequency by 40%, the e-cargo bike delivers a stylish, versatile, and sustainable urban mobility alternative.
MSI EVSE delivers smart, reliable, and user-friendly charging hardware. The Hyper 80 Dual features an ultra-slim 300 mm footprint, 80 kW dynamic dual charging (CCS1), ISO 15118 Plug & Charge, and IP55/IK10 durability. The solar-ready ECO Series offers native NACS and Type 1 connectors, OCA-certified OCPP compliance, and extreme weather resilience (−30°F to 131°F, IP65/IK08). Additionally, the EZgo portable charger provides 9.6 kW power, an app-free 1.8-inch LCD screen, a Quick Coupler wall-to-portable design, run-over tested enclosure durability, and IP66 weatherproofing (−22°F to 122°F).
TCMC specializes in scalable graphene, CNT, and carbon-based materials to optimize thermal and electrical performance. Supported by the U.S. SBIR program, the thin X-Cooler® graphene thermal spreading sheet eliminates hotspots in AI servers and semiconductor modules. TCMC also offers E-Closer® graphene-CNT conductive additives to lower internal resistance and boost high-rate performance for EV, ESS, and BBU lithium-ion batteries, as well as X-Conductor™ screen-printable Ag-carbon hybrid pastes for RFPC, sensors, and automotive electronics.
TSGC provides AI-powered solar recycling technology requiring zero chemicals or thermal treatment, delivering a zero-pollution process with over 99% material recovery and emissions under 1 kg CO₂e per panel (<1 kWh energy used). Fully compliant with California’s strict environmental standards, TSGC offers modular on-site equipment and turnkey recycling services. Featuring integrated data tracking and material upcycling, TSGC eliminates regulatory risks while streamlining decommissioning and ESG reporting for end-of-life solar assets.
Explore More Solutions & Technology Partners
Discover additional solutions and technology partners driving sustainable transition on the official Smart Energy Pavilion Page.
View Smart Energy Exhibitors