The S3GB from ON Semiconductor is a high-performance rectifier diode designed to meet a wide range of application requirements. This component is part of the SxGB series, which is known for its reliability and efficiency in converting alternating current (AC) to direct current (DC). With its glass passivated chip, the S3GB ensures stable performance and longevity, making it a trusted choice for engineers and designers in various industries.
Key Features
- High Surge Capability: The S3GB is capable of handling high surge currents, which makes it suitable for applications that experience occasional spikes in power demand.
- Low Forward Voltage Drop: This rectifier offers a low forward voltage drop, which translates to reduced power loss and improved efficiency in electrical circuits.
- High Reliability: With its glass passivated junction, the S3GB provides a robust and reliable solution for rectification needs, ensuring long-term stability and performance.
- Reverse Voltage: Rated at 400 volts, this diode is well-suited for moderate voltage applications, providing ample protection against reverse voltage conditions.
- Lead-Free and RoHS Compliant: ON Semiconductor is committed to environmental sustainability, and the S3GB adheres to these standards by being lead-free and RoHS compliant, reducing the environmental impact of electronic components.
Applications
The versatility of the S3GB makes it ideal for a variety of applications, including:
- Power supply units
- Automotive inverters
- Consumer electronics
- Industrial and commercial systems
- Telecommunication equipment
Technical Specifications
| Parameter |
Value |
| Package / Case |
DO-201AD |
| Maximum Reverse Voltage (VR) |
400 V |
| Maximum Forward Voltage Drop (VF) at IF |
1.1 V at 3 A |
| Maximum Surge Current (IFSM) |
100 A |
| Operating Temperature Range |
-55°C to +150°C |
With its robust design and dependable performance, the S3GB from ON Semiconductor is a solid choice for engineers looking for a rectifier diode that can deliver both efficiency and durability.