EBC10296 & EBC10320 SSR + GaN System-in-Package Modules


EBC10296 & EBC10320 SSR + GaN System-in-Package Modules

Manufacturer

Part #

Category

Renesas Electronics EBC10296 / EBC10320 Power

Description

Renesas Electronics EBC10296 and EBC10320 System-in-Package modules combine a solid-state relay (SSR) and gallium nitride (GaN) power components for power designs up to 100 W. The EBC10296 supports zero-standby power below 5 mW with no load, while the EBC10320 offers standby power below 75 mW and over 94% efficiency at full load.


Renesas EBC10296 and EBC10320 SSR + GaN System-in-Package Modules

Introduction

The Renesas EBC10296 and EBC10320 are compact System-in-Package (SiP) power modules designed to simplify efficient power-switching designs up to 100 W. By combining solid-state relay technology with gallium nitride (GaN) power components, these modules help designers create smaller, lower-loss, and energy-conscious power systems.

Part Description

Renesas Electronics EBC10296 and EBC10320 modules integrate a solid-state relay (SSR) and GaN power devices in a single package. This integration can reduce external component requirements and support compact power-conversion or load-switching implementations.

The EBC10296 is optimized for exceptionally low no-load energy consumption, supporting zero-standby-power designs with standby power below 5 mW when no load is present. It is well suited to products that must minimize energy use while idle or disconnected from their primary load.

The EBC10320 is designed for high-efficiency applications, offering standby power below 75 mW and efficiency greater than 94% at full load. Its performance makes it appropriate for systems that require efficient operation across active and standby modes.

Key characteristics include:

  • System-in-Package module combining SSR and GaN power technology
  • Designed for power applications up to 100 W
  • Compact integrated solution for power switching and conversion designs
  • EBC10296 supports no-load standby power below 5 mW
  • EBC10320 supports standby power below 75 mW
  • EBC10320 achieves over 94% efficiency at full load

Applications

Potential applications for the EBC10296 and EBC10320 include:

  • USB-C power adapters and chargers
  • AC/DC wall adapters
  • Consumer power supplies
  • Smart-home controllers and hubs
  • Appliance power-control systems
  • LED lighting power supplies
  • Networked sensors and IoT gateways
  • Industrial auxiliary power supplies
  • Building automation equipment
  • Compact embedded power systems
  • Low-standby-power electronic products
  • Switched power outlets and load-control units

Industries

These SiP modules may be used in a range of industries, including:

  • Consumer electronics
  • Smart home and home automation
  • Industrial automation
  • Building management systems
  • Telecommunications and networking
  • Lighting and LED technology
  • Medical and healthcare equipment
  • Office and business equipment
  • Internet of Things (IoT)
  • Energy management and efficiency solutions

Usage Ideas

  1. Ultra-Low-Standby Smart Plug
    Use the EBC10296 in a smart plug design that minimizes no-load energy consumption while maintaining electronically controlled load switching.

  2. High-Efficiency 100 W USB-C Charger
    Build a compact power adapter around the EBC10320 to support high full-load efficiency and reduced standby energy use.

  3. Industrial Sensor Power Module
    Design a small auxiliary power supply for an industrial sensor gateway, using the integrated SSR and GaN functionality to reduce board space and component count.

Conclusion

The Renesas EBC10296 and EBC10320 SSR + GaN System-in-Package modules provide an integrated approach to power designs up to 100 W. The EBC10296 is especially attractive for ultra-low no-load standby requirements, while the EBC10320 targets high full-load efficiency with low standby consumption. Together, these modules offer practical options for compact, efficient power products across consumer, industrial, smart-building, and connected-device applications.