INTRODUCTION
UXC95050B power module is a bidirectional EV charger designed for direct micro-grid applications. This module offers competitive advantages with a wide voltage range and high efficiency. It also features advanced protection, high power density, and a wide working temperature range.
UXC95050B can be widely used for interaction between DC bus side and battery side in applications such as energy storage, PV systems, ESS and charging, battery cascade utilization, data centers, and other multi-energy complementary scenarios, provides a reliable bidirectional charging solution.
ADVANTAGES
A bidirectional EV charger is an innovative charging system that not only powers electric vehicles but also enables energy to flow back into homes or the electricity grid. Unlike standard chargers, an EV bidirectional charger integrates advanced power conversion technology, using an isolated DC DC module to convert AC to DC during charging and switching back during discharging.
With solutions like the UXC95050B 950V power module from Winline Technology, users can achieve efficient and flexible energy management. These systems are designed with high-voltage capability, ensuring compatibility with modern EV platforms and energy storage applications.
Winline Technology delivers reliable bidirectional power modules that support grid stability, renewable integration, and even backup power for homes - paving the way for a smarter, more sustainable energy future.
The UXC95050B bidirectional power module deliver high-efficiency charge-discharge performance for renewable energy storage and backup power.
With its wide voltage range, this 950V power module supports stable interaction between PV systems, the DC bus, and batteries.
As a core component of a bidirectional EV charger, the UXC95050B enables two-way energy flow for smart charging and grid interaction.
This 20kw EV charger module allows repurposing of retired EV batteries, extending their lifecycle and enabling sustainable energy use.
Its reliable bidirectional power module design supports stable operation in data centers and other complex multi-energy scenarios.



