The SMBJ110AE3/TR13 from Microchip Technology is a state-of-the-art transient voltage suppression (TVS) diode designed to protect sensitive electronic equipment from voltage spikes and transients. This robust diode is specifically engineered to safeguard components by clamping excess transient voltages to a safe level before they can cause any damage.
Housed in a compact SMB (DO-214AA) package, the SMBJ110AE3/TR13 is ideal for space-constrained applications. It offers a stand-off voltage of 110V, which makes it suitable for a range of industrial, computing, and telecommunication devices that require high-level voltage protection. Its peak pulse power dissipation is an impressive 600W for 10/1000μs waveforms, ensuring reliable protection against high-energy transients.
This TVS diode is characterized by its fast response time to transient events, typically in the picosecond range, which means it can react almost instantaneously to overvoltage events, thus providing immediate protection to downstream components. The SMBJ110AE3/TR13 is also designed with a low incremental surge resistance, which enhances its ability to handle large surge currents without significant voltage overshoot.
The device is bidirectional, offering protection in both directions and making it versatile for various circuit configurations. Additionally, it meets the IEC 61000-4-2 standard for electrostatic discharge (ESD) immunity, IEC 61000-4-4 for electrical fast transients (EFT), and IEC 61000-4-5 for surge immunity. This ensures that devices using the SMBJ110AE3/TR13 are compliant with essential regulatory requirements for electromagnetic compatibility (EMC).
The SMBJ110AE3/TR13 comes in a tape and reel packaging format with the suffix "/TR13" indicating the reel size, which facilitates automatic pick-and-place assembly processes, making it ideal for high-volume production environments. As a product from Microchip Technology, a leader in the field of microcontroller and analog semiconductors, customers can expect reliable performance and quality from the SMBJ110AE3/TR13 TVS diode.