The ON Semiconductor P6SMB82AT3 is a robust Transient Voltage Suppressor (TVS) diode designed to protect sensitive electronic equipment from voltage transients induced by lightning and other transient voltage events. This device is ideal for the protection of I/O interfaces, VCC bus, and other vulnerable circuits used in a wide range of applications including consumer electronics, industrial equipment, and telecommunications systems.
Key Features:
- Stand-off Voltage: The P6SMB82AT3 has a stand-off voltage of 82V, making it suitable for a variety of circuits that require a high level of voltage protection.
- Peak Pulse Power: It can handle a peak pulse power of 600W for a 10/1000μs waveform, ensuring protection against high energy transients.
- Low Leakage Current: The low leakage current of the device ensures minimal power loss when the device is in standby mode, contributing to the energy efficiency of the overall system.
- Fast Response Time: The diode's fast response time ensures quick reaction to transient events, providing immediate protection for sensitive components.
- Operating Temperature: The P6SMB82AT3 can operate over a wide temperature range from -55°C to +150°C, making it suitable for harsh environmental conditions.
- Package: Supplied in a compact SMB package, the P6SMB82AT3 is designed for surface mount applications, saving valuable board space.
- Certifications: This TVS diode is RoHS compliant and meets the ISO 9001 quality management standard, ensuring reliability and environmental safety.
Applications:
- Protection of I/O Interfaces
- Protection of VCC Buses
- Telecommunications Systems
- Consumer Electronics
- Industrial Equipment
- Power Supply Protection
The P6SMB82AT3 from ON Semiconductor is a trusted solution for safeguarding electronic systems from voltage spikes and surges, ensuring the longevity and reliability of your devices. With its combination of high power capability, fast response time, and compact form factor, this TVS diode stands out as a preferred choice for circuit protection in a multitude of applications.