Manufacturer Part Number
SZ1SMA24AT3G
Manufacturer
littelfuse
Introduction
The SZ1SMA24AT3G is a high-performance transient voltage suppressor (TVS) diode from Littelfuse. It is designed to provide robust protection against electrostatic discharge (ESD), electrical fast transients (EFT), and other voltage spikes in electronic circuits and systems.
Product Features and Performance
Unidirectional TVS diode with a single channel
Reverse standoff voltage (Typ.): 24V
Breakdown voltage (Min.): 26.7V
Clamping voltage (Max. @ Ipp): 38.9V
Peak pulse current (10/1000μs): 10.3A
Peak pulse power: 400W
Capacitance @ 1MHz: 500pF
Operating temperature range: -65°C to 150°C
Product Advantages
Reliable and robust protection against voltage transients
Compact surface-mount package (DO-214AC, SMA)
Automotive-grade AEC-Q101 qualified
Suitable for a wide range of applications
Key Reasons to Choose This Product
Provides effective protection against electrical overstress events
Ensures reliable operation and extends the lifespan of sensitive electronic components
Compact size and surface-mount design make it easy to integrate into space-constrained PCBs
Automotive-grade quality and reliability for demanding applications
Quality and Safety Features
Automotive-grade AEC-Q101 qualification
Complies with RoHS and REACH requirements
Compatibility
This TVS diode is compatible with a wide range of electronic circuits and systems, including:
Automotive electronics
Industrial automation and control systems
Power supplies and power management circuits
Consumer electronics
Telecommunications equipment
Application Areas
Electrostatic discharge (ESD) protection
Transient voltage suppression
Overvoltage protection
Power supply and interface protection
Product Lifecycle
The SZ1SMA24AT3G is an active product, and Littelfuse continues to manufacture and support this model. There are no known equivalent or alternative models available at this time. If you have any further questions or require additional information, please contact our website's sales team.