The SMA6T28CAY is a high-quality Transil™ diode from STMicroelectronics, designed to provide state-of-the-art overvoltage protection for sensitive electronics. This device is a member of STMicroelectronics' Transil series, which is specifically engineered to protect against transient voltage spikes and surges, ensuring the reliability and longevity of electronic components.
Key Features
- Stand-off Voltage: The SMA6T28CAY has a stand-off voltage of 28V, making it suitable for a range of applications that require a specific operating voltage level.
- Peak Pulse Power: With a peak pulse power dissipation of 600W (10/1000µs), this device is capable of handling significant energy transients without compromising its protective capabilities.
- Low Clamping Voltage: The low clamping voltage ensures that in the event of a surge, the voltage presented to the protected component is kept within safe limits, minimizing the risk of damage.
- Fast Response Time: The Transil diode reacts quickly to transient overvoltage events, providing immediate protection to sensitive circuits.
- Package: Housed in an SMA (DO-214AC) package, the SMA6T28CAY is compact and suitable for high-density circuit board designs.
Applications
The SMA6T28CAY is versatile and can be used in a variety of applications, including:
- Power supply protection
- Industrial systems
- Telecommunication devices
- Computer interfaces
- Consumer electronics
Benefits
Integrating the SMA6T28CAY into your designs offers several benefits:
- Enhanced Protection: It provides robust protection against voltage transients caused by inductive load switching and lightning strikes.
- Reliability: Manufactured by STMicroelectronics, a leader in semiconductor solutions, the SMA6T28CAY is built to meet high-quality standards for reliability and performance.
- Space-saving: The compact SMA package allows for efficient use of board space in dense electronic assemblies.
Overall, the SMA6T28CAY Transil diode is an excellent choice for designers looking to enhance the overvoltage protection of their electronic systems without compromising on space or performance.