Product Overview: 1SMC9.0AT3
The 1SMC9.0AT3 is a robust transient voltage suppression (TVS) diode designed by ON Semiconductor, a leading manufacturer in the semiconductor industry. This component is engineered to protect sensitive electronic equipment from voltage spikes and surges that can occur due to sudden changes in voltage levels, such as lightning strikes, electrostatic discharge, or power surges.
Key Features
- Stand-off Voltage: The 1SMC9.0AT3 has a stand-off voltage of 9.0V, making it suitable for a range of applications where this voltage level is critical for circuit protection.
- Peak Pulse Power: It can handle a peak pulse power of 1500 Watts for a short duration of 10/1000 µs waveform, which demonstrates its capability to absorb high energy spikes without damage.
- Low Incremental Surge Resistance: The device features a low incremental surge resistance, which ensures minimal voltage drop during surge events, providing better overall protection.
- Fast Response Time: With a response time of less than 1 picosecond from 0V to BV min, the 1SMC9.0AT3 can react quickly to transient events, minimizing the risk of damage to the protected component.
- Operating Temperature Range: The diode operates effectively across a wide temperature range from -55°C to +150°C, ensuring reliability in various environmental conditions.
Applications
The 1SMC9.0AT3 is versatile and can be used in a multitude of applications, including:
- Power supply circuits
- Communication systems
- Automotive systems
- Industrial equipment
- Consumer electronics
Quality and Reliability
ON Semiconductor is committed to providing high-quality products. The 1SMC9.0AT3 is manufactured in compliance with stringent industry standards, ensuring both quality and reliability. It is also RoHS compliant, reflecting ON Semiconductor's dedication to environmental responsibility.
Whether you're designing a new system or looking to upgrade existing circuit protection, the 1SMC9.0AT3 from ON Semiconductor offers excellent performance and peace of mind, thanks to its superior surge protection capabilities.