LITEON Technology (2301.TW) will participate in the 2026 SNEC PV+ International Photovoltaic Power Generation and Smart Energy Conference & Exhibition at the National Exhibition and Convention Center (Shanghai) from June 3 to 5, 2026. Under the theme “Architecting the Future of Intelligence with Photonics,” LITEON will spotlight the critical applications of advanced optocoupler isolation technologies in new energy and AI power infrastructure, featuring its High-Voltage System Reinforced Insulation Solution, Optical Relay and Photovoltaic Output Driver Optocoupler Solutions, Inverter Gate Driver Isolation Solution, and High-Speed Signal Transmission Isolator Solution. The showcase demonstrates LITEON’s innovation capabilities and R&D strength developed through years of deep expertise in the optoelectronic semiconductor field.
Sander Su, General Manager of LITEON’s Optoelectronics Products Solutions, said, “As a leading global supplier of optoelectronic semiconductors, LITEON has built long-term expertise in packaging and testing technologies while continuously advancing low-carbon sustainability and innovation in advanced manufacturing processes. As applications such as photovoltaics, energy storage, and AI data centers evolve rapidly, high voltage, high power, and high power density have become key development trends. With optoelectronic semiconductors at its core, together with a comprehensive product portfolio and system integration capabilities, LITEON helps customers build intelligent power systems that deliver safety, stability, and long-term reliability. Looking ahead, we will continue to deepen our technology roadmap and work closely with industry partners to accelerate the global energy transition and AI development.”
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LITEON Builds High-Voltage System Insulation Solutions to Strengthen Power Safety and Reliability for New Energy and AI Data Centers |
In response to the growing safety and reliability requirements driven by the shift toward higher voltage and higher power in photovoltaic, energy storage, and 800 VDC data center power architectures, LITEON has introduced a high-voltage system insulation solution. With outstanding isolation withstand voltage design, the solution addresses the stringent system safety and long-term reliability demands of high-voltage environments. It integrates core components including optocouplers, optical relays, and capacitive isolators, covering transistor-output, high-speed, and gate driver optocouplers, as well as high-voltage optical relays, to provide comprehensive support from signal control to system protection. Through this integrated solution, LITEON helps customers build intelligent power systems with safety, stability, and long-term reliability, accelerating the deployment of new energy and AI applications.
LITEON’s reinforced insulation solution covers multiple key optoelectronic technologies:
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LITEON Showcases Optical Relay and MOSFET Driver Solutions to Enhance High-Voltage Insulation and Battery Management Performance |
LITEON is presenting a complete portfolio of optical relay and photovoltaic-output MOSFET driver optocoupler solutions, extending its reinforced insulation technology for high-voltage systems into battery management systems (BMS) for energy storage and high-reliability applications such as backup battery units (BBU) for high-voltage data center power systems. Through highly integrated solutions, LITEON helps customers optimize battery management performance and high-voltage system control capabilities, enabling the long-term stable operation of new energy and AI infrastructure and addressing the critical demands of next-generation high-voltage power applications.
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LITEON Unveils Gate Driver Isolation Solutions for Inverters and HVDC Power Systems |
LITEON has introduced inverter and high-voltage power system gate driver isolation solutions that combine optocoupler and capacitive isolation technologies to precisely address applications across different power levels and high-speed switching requirements. The solution integrates optocoupler-based and dual-channel capacitive isolation architectures, balancing high withstand-voltage isolation performance with high-speed signal transmission capability to effectively support the stable operation of high-voltage, high-power-density systems. By advancing both technologies in parallel, LITEON helps customers improve the performance and reliability of inverter and high-voltage power systems, meeting the critical requirements of data center and energy applications for high power density and high-speed switching.
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LITEON Showcases Capacitive Multi-Channel High-Speed Isolators Supporting 150 Mbps Low-Latency Transmission |
In the field of high-speed signal isolation, in addition to its existing high-speed optocoupler products, LITEON has further expanded its portfolio into capacitive high-speed digital isolators. The products on display support data transmission rates of up to 150 Mbps (megabits per second), offering low latency, high noise immunity, and excellent signal integrity. The series is available in multiple channel configurations for industrial automation, power systems, and a variety of high-speed control and communication interfaces. It effectively simplifies circuit design while providing high integration and application flexibility for high-speed, multi-channel isolated transmission requirements.
With years of deep expertise in the optoelectronic semiconductor field and a complete industrial chain spanning R&D, packaging, and testing, LITEON continues to provide global customers with high-performance, high-safety isolation technology solutions. As the global transition toward new energy accelerates and AI infrastructure grows rapidly, LITEON will continue breaking through performance barriers through innovation and work with global partners to build a safer, more efficient future for smart power and green energy.
2026 SNEC PV+ International Photovoltaic Power Generation and Smart Energy Conference & Exhibition:
Date: June 3–5, 2026
Venue: National Exhibition and Convention Center (Shanghai)
Booth: Hall 6.1 – E570
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